Manual de serviço televisores philips chassis fm23 aa

Page 1

Colour Television

Chassis

FM23 AA

Contents

Page

1

2

2 3 4 5 6

7

Technical Specifications, Connections, and Chassis Overview Safety Instructions, Maintenance, Warnings, and Notes Directions for Use Mechanical Instructions Service Modes, Error Codes, Fault Finding, and Repair Tips Block Diagrams Block Diagram Video Block Diagram Audio Block Diagram Power Supply Power Lines Overview I2C-IC Overview Testpoint Overview Audio Amplifier Testpoint Overview Power Supply Testpoint Overview SCAVIO Wiring Diagram Electrical Diagrams and PWB lay-outs Audio Amplifier: DC Protection (Diagram A1) Audio Amplifier: Filters (Diagram A2) Audio Amplifier: Left High (Diagram A3) Audio Amplifier: Left Low (Diagram A4) Audio Amplifier: Right High (Diagram A5) Audio Amplifier: Right Low (Diagram A6) Audio Amp: Supply +DC Prot. (Diagram A7) LED/Switch Panel (Diagram LD) Power Supply: Function Blocks (Diagram P1) Power Supply: Filter + Standby (Diagram P2) Power Supply: Protections (Diagram P3) Power Supply: Fan Control (Diagram P4) Power Supply: Pre Conditioner (Diagram P5) Power Supply: LLC Supply (Diagram P6) Power Supply: Aux Supply (Diagram P7)

Contents

5 6 14 17

23 24 25 26 27 28 29 30 31 Diagram 32 33 34 35 36 37 38 41 43 44 45 46 47 48 49

PWB 39-40 39-40 39-40 39-40 39-40 39-40 39-40 42 50-56 50-56 50-56 50-56 50-56 50-56 50-56

Page

SCAVIO: Function Blocks SCAVIO: Sync Selection SCAVIO: Video Selection SCAVIO: Video ADC SCAVIO: Video Select. Decoder SCAVIO: VGA Input SCAVIO: Control Functions 1 SCAVIO: Control Functions 2 SCAVIO: Scaler Clock Gen. SCAVIO: PW Scaler + Memory SCAVIO: Back-End EPLD SCAVIO: Back-End LVDS Out SCAVIO: Audio Source Select. SCAVIO: Audio Processor SCAVIO: Audio Delay Line VGA Connector Panel 8 Electrical Alignments 9 Circuit Descriptions List of Abbreviations IC Data 10 Spare Parts List

(Diagr. SC1) (Diagr. SC2) (Diagr. SC3) (Diagr. SC4) (Diagr. SC5) (Diagr. SC6) (Diagr. SC7) (Diagr. SC8) (Diagr. SC9) (Diagr. SC10) (Diagr. SC11) (Diagr. SC12) (Diagr. SC13) (Diagr. SC14) (Diagr. SC15) (Diagr. VGA)

57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 82 85 88 108 110 113

72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 72-81 83-84

Š Copyright 2002 Philips Consumer Electronics B.V. Eindhoven, The Netherlands. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, or otherwise without the prior permission of Philips.

Published by RB0264 Service PaCE

Printed in the Netherlands

Subject to modification

EN 3122 785 11301


EN 2

1.

Technical Specifications, Connections and Chassis Overview

FM23

1. Technical Specifications, Connections and Chassis Overview 1.1

Technical Specifications

1.1.1

Picture

1.1.3

Display Screen size Resolution Contrast ratio 1.1.2

: : : :

Mains voltage Mains frequency Ambient temperature Maximum humidity Power consumption Standby Power consumption Weight Dimensions (WxHxD)

FHT plasma panel 32" (82 cm) 1024 x 852 pixels 400 : 1

Sound Maximum power

Miscellaneous : : : : : : : :

95 - 264 VAC 50/60 Hz + 5 to + 40 deg. C 90 % R.H. around 200 W <3W 24 kg 964 x 512 x 89 mm

: 30 Wrms

1.2

Connections

1.2.1

Rear Connections

AUDIO IN

AV2

L VGA1

VGA2

L

RC-OUT

R

R

RS323

MAINS

AV1 CVBS B/Pb/Cb H

L

DVI-D

DVI-D VGA2 VGA1

Y/C S SVHS

R

AUDIO AUDIO IN IN

! All Functional blocks shaded grey are required for the"Basic Configuration". The remainder is required for the "Enhanced Configuration".

AV3 B/Pr/Cr v

AUDIO IN

CL 16532099_010.eps 260801

Figure 1-1 Rear Connections VGA1 - In

RS232 1

1

5 6

6

9

11

Figure 1-2 RS232 connector (subD-9p) 1 2 - TXD 3 - RXD 4 - RL_ICN 5 6 - GL_ICN 7 - LD_ICN 8 - IR_TX 9 - IR_RX 10 11 -

(UART) (UART) (ICONN) Ground (ICONN) (ICONN) (ICONN) (ICONN) Ground Ground

5 10 15

Figure 1-3 VGA Connector , , ,

Audio - In (DVI-D) 1 - Audio - L 0.5 Vrms / 1 kΩ 2 - Audio - R 0.5 Vrms / 1 kΩ

Audio - In (VGA2) 1 - Audio - L 0.5 Vrms / 1 kΩ 2 - Audio - R 0.5 Vrms / 1 kΩ

Audio - In (VGA1) 1 - Audio - L 0.5 Vrms / 1 kΩ 2 - Audio - R 0.5 Vrms / 1 kΩ

1 - Red 2 - Green 3 - Blue 4 - TXD 5 6 - Red 7 - Green 8 - Blue 9 - RC 10 11 - RXD 12 - DDC_SDA 13 - H-sync 14 - V-sync 15 - DDC_SCL

0.7 Vpp / 75 Ω 0.7 Vpp / 75 Ω 0.7 Vpp / 75 Ω Ground Ground Ground Ground Ground

0-5V 0-5V

, , , , ,


Technical Specifications, Connections and Chassis Overview VGA2 - Out 1

AV2: SVHS - In 1 -Y 2 -C 3 -Y 4 - C / 16:9

5

6 11

10 15

Figure 1-4 VGA Connector 1 - Red 2 - Green 3 - Blue 4 - TXD 5 6 - Red 7 - Green 8 - Blue 9 10 11 - RXD 12 - DDC_SDA 13 - H-sync 14 - V-sync 15 - DDC_SCL

(0.7 Vpp/75 Ω) (0.7 Vpp/75 Ω) (0.7 Vpp/75 Ω)

, , , ,

Ground Ground Ground Ground

,

Ground

0-5V 0-5V

RC - Out - - RC

DVI-D 1 9 17

8 16 24

C5

Figure 1-5 DVI-D Connector 1 - RX22 - RX2+ 3 Ground 4 5 6 - DDC-SCL 7 - DDC-SDA 8 9 - RX110 - RX1+ 11 Ground 12 13 14 - 5V_STBY_SW 15 Ground 16 - 5V_STBY_SW 17 - RX018 - RX0+ 19 Ground 20 21 Ground 22 23 - RXC+ 24 - RXCc5 Ground

, ,

, , , ,

FM23

Ground Ground 1 Vpp / 75 Ω 0.3 Vpp / 75 Ω

1.

EN 3 , ,

AV2: Audio - In 1 - Audio - L 0.5 Vrms/10 kΩ 2 - Audio - R 0.5 Vrms/10 kΩ

AV1: Audio/Video - In 1 - CVBS 1 Vpp / 75 Ω 2 - Audio - L 0.5 Vrms / 10 kΩ 3 - Audio - R 0.5 Vrms / 10 kΩ

AV3: Audio/Video - In 1 - G/Y/Y 0.7 Vpp / 75 Ω 2 - B/Pb/Cb 0.7 Vpp / 75 Ω 3 - R/Pr/Cr 0.7 Vpp / 75 Ω 4 -H 5 -V 6 - Audio - L 0.5 Vrms / 10 kΩ 7 - Audio - R 0.5 Vrms / 10 kΩ


EN 4 1.3

1.

FM23

Technical Specifications, Connections and Chassis Overview

Chassis Overview

LD

LED / SWITCH PANEL

PLASMA DISPLAY PANEL

A

SC

VGA

AUDIO AMPLIFIER PANEL

POWER SUPPLY PANEL

P

SCAVIO PANEL

VGA CONNECTOR PANEL

CL 16532099_040.eps 260901

Figure 1-6 PWB Location


Safety Instructions, Warnings and Notes

FM23

2.

EN 5

2. Safety Instructions, Warnings and Notes 2.1

Safety Instructions Safety regulations require that during a repair: • Connect the set to the mains via an isolation transformer (= 800 VA). • Do not operate the monitor without the front glass plate. One function of this glass plate is to absorb IR radiation. Without this glass plate, the level of radiation could damage your eyes. • Replace safety components, indicated by the symbol , only by components identical to the original ones. Safety regulations require that after a repair, the set must be returned in its original condition. Pay, in particular, attention to the following points: • Route the wire trees correctly and fix them with the mounted cable clamps. • Check the insulation of the mains lead for external damage. • Check the electrical DC resistance between the mains plug and the secondary side (only for sets which have a mains isolated power supply): 1. Unplug the mains cord and connect a wire between the two pins of the mains plug. 2. Set the mains switch to the 'on' position (keep the mains cord unplugged!). 3. Measure the resistance value between the pins of the mains plug and the metal shielding of the tuner or the aerial connection on the set. The reading should be between 4.5 MΩ and 12 MΩ. 4. Switch 'off' the set, and remove the wire between the two pins of the mains plug. • Check the cabinet for defects, to avoid touching of any inner parts by the customer.

2.2

Warnings •

• • •

2.3

All ICs and many other semiconductors are susceptible to electrostatic discharges (ESD "). Careless handling during repair can reduce life drastically. Make sure that, during repair, you are connected with the same potential as the mass of the set by a wristband with resistance. Keep components and tools also at this same potential. Available ESD protection equipment: – Complete kit ESD3 (small tablemat, wristband, connection box, extension cable and earth cable) 4822 310 10671. – Wristband tester 4822 344 13999. Be careful during measurements in the high voltage section. Never replace modules or other components while the unit is switched 'on'. When you align the set, use plastic rather than metal tools. This will prevent any short circuits and the danger of a circuit becoming unstable.

Notes •

Clean the glass plate in front of the plasma display with a slightly humid cloth. If, due to circumstances, there is some dirt between the glass plate and the plasma display, this must be cleaned by a qualified service engineer (see chapter 4). Measure the direct voltages and oscillograms with regard to the chassis ground (,), or hot ground (-) as this is called. The direct voltages and oscillograms shown in the diagrams are indicative. Measure them in the Service Default Mode (see chapter 5).

Where necessary, measure the voltages in the power supply section both in normal operation (+) and in standby (/). These values are indicated by means of the appropriate symbols. The semiconductors indicated in the circuit diagram and in the parts lists, are interchangeable per position with the semiconductors in the unit, irrespective of the type indication on these semiconductors


EN 6

3.

FM23

3. Directions for Use

Directions for Use


Directions for Use

FM23

3.

EN 7


EN 8

3.

FM23

Directions for Use


Directions for Use

FM23

3.

EN 9


EN 10

3.

FM23

Directions for Use


Directions for Use

FM23

3.

EN 11


EN 12

3.

FM23

Directions for Use


Directions for Use

FM23

3.

EN 13


EN 14

4.

FM23

Mechanical Instructions

4. Mechanical Instructions Index of this chapter: • Service Position Monitor • Rear Cover Removal • Service Position Panels • PDP and Glass Plate Replacement • Re-assembly

4.3

Service Position Panels

4.3.1

SCAVIO Panel Solder-side SCAVIO

Note: Figures below can deviate from the actual situation, due to different set executions.

4.1

Service Position Monitor

B

CL 16532099_042.eps 200901

Figure 4-2 Service position SCAVIO (1)

CL 16532099_041.eps 250901

Figure 4-1 Service Position First, put the monitor in its service position. Therefore, disconnect all cables connected to the monitor and take the monitor of the wall (or tabletop stand). Then, place the monitor in the re-inforced transport cushions that function also as service stand (you can order them separately under code 3122 126 40612). See figure above.

4.2

Rear Cover Removal To be able to access or measure the panels, remove the rear cover (metal back plate): Warning: make sure that the mains power is disconnected before you remove the metal back plate. 1. Remove all fixation screws from the back plate, as indicated in figure above (five at the top, four at each side, seven at the bottom, and the two larger ones just below the ‘wall mounting holes’). 2. Remove the metal back plate. Make sure that wires and flat foils are not damaged during plate removal.

To access the panel: 1. Remove the cables from connectors 0320, 0305, 0301, 0319 and 0388 on the SCAVIO panel. 2. Remove the power cable from the mains power inlet to the power supply (connector 0308). 3. Remove the five screws at the bottom of the SCAVIO panel cover plate. 4. Hold the SCAVIO panel while removing the top screw, in order to prevent that it will fall. 5. Take the panel out, and turn it 180 degrees, so that you face the solder side of the SCAVIO panel. 6. Reconnect all cables. Use a standard power cable to connect the mains directly to PSU-connector 0308, and use the 'LED/Switch panel' service kit 3122 785 90410 (as the original cable is too short). Caution: When measuring, watch out for the 'hot' left heat sink of the PSU! Another way to measure the SCAVIO panel: 1. Remove the five screws at the bottom of the SCAVIO panel cover plate. 2. Hold the SCAVIO panel while removing the top screw, in order to prevent that it will fall. 3. Put a piece of paper (or cardboard) in front of the Power Supply. 4. Take the panel out, and turn it upward [B], so that you face the solder-side of the SCAVIO panel. Caution: Make sure that the metal connector plate does not touch any 'hot' part of the Power Supply (heatsink).


Mechanical Instructions

FM23

4.

EN 15

It is possible to perform most measurements from the component level side (thus, how the panel is mounted in the set). However, to reach the copper side of the Power Supply: 1. Unplug the power. 2. Remove all eight fixation screws from the Power Supply: three at each side and two in the middle. 3. Hinge the Power Supply forward, so that you can reach the copper side. Use a non-conducting part underneath, to support the PWB (e.g. a carton box). Caution: make sure that, when you hinge the Power Supply forward, you do not damage the cables. Pay special attention to the flat cable (on connector 0307) and the cable on connector 0306, because they can be easily damaged by the sharp edge of the connector plate. 4. To remove the Power Supply, unplug all cables. 5. Remove the Power Supply.

Component-side SCAVIO

4.3.4

Audio Amplifier Panel

CL 16532099_043.eps 250901

The solder-side of this panel is directly accessible. To access the component-side, or to remove the whole panel, unscrew the three fixation screws (see figure 'Power Supply Panel'), and (re)move the panel.

Figure 4-3 Service position SCAVIO (2) To access the other side of the SCAVIO panel: 1. Disconnect all cables going to the SCAVIO panel. 2. Remove all screws at the connectors of the connector plate, see figure 'Solder-side SCAVIO'. 3. Remove the three fixation screws that connect the SCAVIO panel to the connector plate, see figure 'Component-side SCAVIO'. 4. Reconnect the SCAVIO panel, be careful: do not make a short-circuit! 4.3.2

4.3.5

LED/Switch Panel and Speakers

Plastic backcover

VGA Connector Panel To remove the VGA Connector Panel: 1. Squeeze the three plastic pins that connect this panel to the SCAVIO board, while you pull it carefully upwards. 2. Unplug the flat cable.

4.3.3

Power Supply Panel

Foam cushion

B CL 16532099_045.eps 270901

Figure 4-5 Service Position LED/Switch Panel and Speakers

CL 16532099_044.eps 270901

Figure 4-4 Service Position Power Supply

To access or replace the LED/Switch panel and/or speakers: 1. Take the monitor from its service stand, and put it (face down) on a soft surface (blanket or foam cushion), to make sure that you do not damage the front glass plate. 2. Unscrew all fixation screws of the plastic back cover: four at the left and right side, three at the bottom and top side. 3. Lift and remove the plastic back cover. 4. You can access now the LED/Switch panel and/or the speakers.


EN 16 4.3.6

4.

Mechanical Instructions

FM23

LED/Switch panel To measure the component-side, or to remove the LED/Switch panel, unscrew one fixation screw (see enlarged part of figure 'LED/Switch Panel and Speakers'), and remove the panel.

4.3.7

Loudspeakers As soon as you have removed the plastic back cover, you must replace the speaker-box sealing foams (12nc: 3122 358 76221). This, to ensure that the loudspeakers are airtight. Do not stretch the foam during mounting. Pay special attention to the corners, to make sure that the foam is not stretched and that it is pushed in the corners.

4.4

PDP and Glass Plate Replacement

Shielding frame

CL 16532099_047.eps 260901

Figure 4-7 Exchange PDP To exchange the PDP panel: 1. Take out the SCAVIO panel and Power Supply panel, as described earlier. 2. Unscrew all fixation screws of the (metallised) shielding frame (two at the top and two at the bottom, see figure 'Exchange PDP'). 3. The shielding frame can now be taken off the PDP. 4. Replace the PDP. Foam cushion

Front display CL 16532099_046.eps 270901

Figure 4-6 Exchange Glass Plate Exchange the glass plate 1. Take the monitor from its service stand, and put it (face down) on a soft surface (blanket or foam cushion), to make sure that you do not damage the front glass plate. 2. Remove the metal back plate as described in paragraph 'Rear Cover Removal'. 3. Unscrew all fixation screws of the plastic back cover: four at the left and right side, three at the bottom and top side. 4. Lift and remove the plastic back cover. 5. Unscrew two fixation screws of the triangular shaped cable holder at the left bottom, see figure 'Exchange Glass Plate'. 6. Unscrew all fixation screws of the (metallised) shielding frame, four at both sides and four at the top and bottom, see figure 'Exchange Glass Plate'. 7. Unplug the cable of the LED/Switch panel, connector 0320. 8. You can now remove the (metallised) shielding frame, together with the PDP, Audio panel, Power supply and SCAVIO panel attached to it, see figure 'Exchange Glass Plate'. Note: To prevent scratches, make sure to put the shielding frame together with the PDP on a soft surface. 9. Replace the glass plate.

4.5

Re-assembly To re-assemble the whole set, do all processes in reverse order. Notes: • You must replace the speaker-box sealing foam, in case the plastic rear cover has been (re)moved. • While re-assembling, make sure all the cables are in their original position and make sure all the EMC foams are present to ensure 'EMC tightness'.


Service Modes, Error Codes and Fault Finding

FM23

5.

EN 17

5. Service Modes, Error Codes and Fault Finding Index of this chapter: 1. Test points 2. Service Modes 3. Problems and Solving Tips (related to CSM) 4. ComPair 5. Error Codes 6. The Blinking LED Procedure 7. Protections 8. Repair Tips

5.1

Normal operation

NORMAL OPERATION (and all other states)

Short SDM pins (also works from Standby)

Override software protections

RC sequence "0-6-2-5-9-6-MENU"

Mains ON

Ignore all "Service unfriendly" modes.

Test Points RC button.

Start blinking LED sequence to show the error codes according to the blinking LED procedure.

The chassis is equipped with test points (I- and F-points) printed on the circuit board assemblies. See test point overview in chapter 6.

Lineair audio and video settings are set to 50% (middle value) except volume (set to low volume level, 25% of max) OFF

Perform measurements under the following conditions: • Service Default Mode. • Video: colour bar signal (via PC or VGA-generator). • Audio: 1 kHz, 2 VPP (via PC or VGA-generator).

"UNDO" ignore all "Service unfriendly modes"

RC sequence "00" or "Standby"

Service Default Mode Display SDM in "top line" (all other OSD off). Blinking LED sequence.

Mains OFF

Reset to last status

5.2

RC-code 0-6-2-5-9-6-OSD or INFO+

Service Modes STANDBY

Service Default Mode (SDM) and Service Alignment Mode (SAM) offer several features for the service technician, while the Customer Service Mode (CSM) is used for communication between a Philips Customer Care Centre (P3C) and a customer.

Figure 5-1 SDM Flowchart How to enter SDM Use one of the following methods: • Use the standard RC-transmitter and key in the code 0 6 2 5 9 6, directly followed by the MENU button. • Short jumpers 1 and 2 of connector 0382 on the SCAVIO panel. After entering SDM, a blank screen is visible, with SDM in the upper left side for recognition. The Blinking LED procedure is started and will indicate any possible errors via the (orange) front LED.

Service Default Mode (SDM)

How to navigate To toggle to the SAM mode, use a standard customer RCtransmitter and key in the code 0 6 2 5 9 6, directly followed by the OSD (i+) key.

Purpose • To create a pre-defined setting to get the same measurement results as given in this manual. • To override SW protections (only when SDM is entered via the 'service pins' on connector 0382). • To start the blinking LED procedure. Specifications • All picture settings at 50% (brightness, contrast, etc.). • Colour temperature is set to 'normal'. • Bass, treble and balance at 50%; volume at 25%. • All service-unfriendly modes (if present) are disabled, like: • Video blanking, • Slow de-mute, • Anti ageing, • Automatic switch to Standby when no sync signals are received.

RC-code 0-6-2-5-9-6-menu CL 16532099_100.pdf 260901

There is also the option of using ComPair, a hardware interface between a computer (see requirements) and the FTV chassis. It offers the ability of structured trouble shooting, test pattern generation, error code reading, software version readout and software upgrading. Minimum requirements: a Pentium Processor, Windows 9x/NT/ 2000/XP, and a CD-ROM drive (see also paragraph 5.4). 5.2.1

SAM

How to exit Use one of the following methods (the set returns to its last status): • Switch the set to STANDBY by pressing the power button on the remote control transmitter (if you switch the set 'off' by removing the Mains power, the set will return in SDM, when the Mains power is re-applied). • Use the standard RC-transmitter and key in the code 0 0. 5.2.2

Service Alignment Mode (SAM) Purpose • To perform (software) alignments. • Easy way to identify the commercial type number of the set. • Easy identification of the used software versions. • To display (or clear) the error code buffer. • View operational hours. Specifications • Operation hours counter. • Software version reading. • Error buffer reading and erasing. • Software alignments. • Test pattern generation.


EN 18

5.

Service Modes, Error Codes and Fault Finding

FM23

6. Errors 1. Gives the last five errors of the error buffer. The last detected error is displayed at the most left position. The errors are displayed as 2 digit numbers and separated by a space. When less than 10 errors occurred, the rest of the line(s) is empty. In case of no errors the text 'No Errors' is displayed behind menu item 'Errors 1'. See paragraph 5.5 for a description. 7. Errors 2. Gives the first five errors of the error buffer. The last detected error is displayed at the most left position. 8. Operational hours. The Operations Hours indicate the time that the display was active with half an hour resolution. It represents the system hours (OTC), not the PDP hours. 9. Reset error buffer. Erase the contents of the error buffer. Press 'OK' on your remote control to activate. The content of the error buffer is cleared. 10. Store. This will store the performed alignments. Press 'OK' on your remote control to activate. Note: if you do not want to store the performed alignments, leave the SAM mode via code 0 0 on your remote control. Do not activate the 'store' item.

NORMAL OPERATION

RC button, e.g. P+ or P-

STANDBY

Mains ON RC sequence "0-6-2-5-9-6-OSD "(for Europe & A/P) or RC sequence "0-6-2-5-9-6-INFO+" (for USA/LatAm) or Short SAM pins (works also from Standby)

Do not store settings made during alignments

OFF (Settings made during alignments are stored)

Ignore all "Service unfriendly" modes RC button, e.g. P+ or P-

"UNDO" ignore all "Service unfriendly modes"

"Standby"

Mains OFF

RC sequence "00"

Service Alignment Mode Display "SAM" top level menu

RC-code "0-6-2-5-9-6-OSD" or RC-code "0-6-2-5-9-6-INFO+"

SDM

RC-code "0-6-2-5-9-6-MENU" -

Settings made during alignments are stored

Upper menu selection (with cursor buttons) Lower menu selection (with cursor buttons)

How to navigate Use one of the following methods: • Select the sub-menu's (upper line) with the CURSOR LEFT/RIGHT keys on the remote control transmitter. • Select the menu items with the CURSOR UP/DOWN keys. With the CURSOR LEFT/RIGHT keys it is possible to: – Activate the selected menu item. – Change the value of the selected menu item. • To toggle to the SDM mode, use the standard customer RC-transmitter and key in the code 0 6 2 5 9 6, directly followed by the MENU key.

SAM submenus (whitepoints, alignments, etc.)

CL 16532099_101.pdf 260901

STANDBY

Figure 5-2 SAM Flowchart How to enter Use one of the following methods: • Use a standard RC-transmitter and key in the code 0 6 2 5 9 6 directly followed by the OSD (i+) button. Note: the OSD (i+) is not available on the original FM23 remote control, therefore use another Philips remote control (e.g. MG, EMG or A10). • Short jumpers 3 and 4 of connector 0382 on the SCAVIO panel.

How to exit Use one of the following methods: • Switch the set 'off' (with the Mains switch or by pulling the Mains cord). Note: new alignment settings are always stored, even when item 'store' was not activated! • Switch the set to 'standby' by pressing the power button on the remote control transmitter. Note: new alignment settings are always stored, even when item 'store' was not activated! • Use the standard RC-transmitter and key in the code 0 0. Note: new alignment settings are not stored (except when item 'store' was activated)!

The following screen is visible:

Service Alignment Menu Type nr. - AG Code SW version OTC SW version PW SW version EPLD Errors 1 Errors 2 Operational hours Reset error buffer Store

General 32FD9944/01S (example) AAAABC-X.Y xxxxx AAAABC-X.Y xxxxx AAAABC-X.Y xxxxx xx xx xx xx xx xx xx xx xx xx xx Press OK to reset Press OK to store CL 16532099_102.pdf 260901

Figure 5-3 SAM Menu 'General' 1. Type Nr. Gives the commercial type number of the monitor, e.g. 32FD9944/01S. 2. AG Code. Is not implemented. 3. SW Version OTC (AAAABC-X.Y-xxxxx). Note: You will find details of the latest software versions in the chapter 'Software Survey' of the 'Product Survey Colour Television' publication, which is published four times each year. • A = the chassis name (FM23 for 32" displays or FM24 for 42" displays). • B = the region (E= Europe, A= Asia Pacific, U= NAFTA, L= LATAM or G = Global). • C = the configuration name (B= Basic, E= Enhanced). • X = the main software version number. • Y = the sub software version number. • x = last five digits of 12nc code. 4. SW Version PW (AAAABC-X.Y-xxxxx). See description above. 5. SW Version EPLD (AAAABC-X.Y-xxxxx). See description above.

5.2.3

Customer Service Mode (CSM) Purpose When a customer is having problems with his TV-set, he can call his dealer or helpdesk. The service technician can than ask the customer to activate the CSM, in order to identify the status of the set. Now, the service technician can judge the severness of the complaint. In many cases, he can advise the customer how to solve the problem, or he can decide if it is necessary to visit the customer. The CSM is a read only mode, therefore modifications in this mode are not possible.


Service Modes, Error Codes and Fault Finding

Normal operation mode

3. 4.

Key in sequence: 1-2-3-6-5-4 on RC

5.

Store current picture, sound and feature settings for later retrieval (only store if needed to go back to normal operation). Set pre-defined picture, sound and feature settings (to be able to see and hear if the set is working properly and to be able to read the CSM information). Ignore service unfriendly options

Display CSM information screen

"Cursor right"

To next CSM page

6. "Cursor left"

Volume up/down

Increase/decrease volume

Numerical key, external

Switch to preset/ channel or external

7.

To previous CSM page

8.

Other key, e.g. "menu" Restore picture, sound and feature settings (that were stored during entry)

If other key = standby

Standby (when the set is switched on, picture, sound and feature settings (that were stored during entry) are restored)

9.

mains off Off (when the set is switched on, picture, sound and feature settings (that were stored during entry) are restored)

10.

CL 16532099_103.pdf 260901

11.

Figure 5-4 CSM Flowchart 12. How to enter Use the standard customer RC-transmitter and key in the code 1 2 3 6 5 4. When CSM is entered, the values of brightness, contrast, etc. are set to 50% (of max. value), and volume is set to 25%, to ensure that you always have a picture and sound.

13. 14.

32FD9944/01S AG02 (example) AAAABC X.Y_xxxxx AAAABC X.Y_xxxxx AAAABC X.Y_xxxxx xx xx xx xx xx xx xx xx xx xx xx xx xx

Customer Service Menu 2 10 Colour 11 Tint 12 Sharpness 13 Soundmode 14 Source 15 AV Mute

xx xx xx xx xx xx CL 16532099_104.eps 270901

Figure 5-5 CSM Menu 1. Type Nr. - AG Code. Gives the commercial type number of the monitor, e.g. 32FD9944/01S. AG Code is not implemented. 2. SW Version OTC (AAAABC-X.Y-xxxxx) Note: You will find details of the latest software versions in the chapter 'Software Survey' of the 'Product Survey Colour Television' publication, which is published four times each year. • A = the chassis name (FM23 for 32" displays or FM24 for 42" displays). • B = the region (E= Europe, A= Asia Pacific, U= NAFTA, L= LATAM or G = Global). • C = the configuration name (B= Basic, E= Enhanced).

5.

EN 19

• X = the main software version number. • Y = the sub software version number. • x = last five digits of 12nc code. SW Version PW (AAAABC-X.Y-xxxxx). See description above. SW Version EPLD (AAAABC-X.Y-xxxxx). See description above. Code 1. Gives the last five errors of the error buffer. The last detected error is displayed at the most left position. The errors are displayed as 2 digit numbers and separated by a space. When less than 10 errors occurred, the rest of the line(s) is empty. In case of no errors, the text "No Errors" is displayed behind menu item "Code 1". See paragraph 5.5 for a description. Code 2. Gives the first five errors of the error buffer. The last detected error is displayed at the most left position. Volume. Gives the last volume status for the selected source, as set by the customer. Brightness. Gives the last brightness status for the selected source, as set by the customer. Contrast. Gives the last contrast status for the selected source, as set by the customer. Colour (not present in Basic configuration). Gives the last colour status for the selected source, as set by the customer. Tint (only for NTSC Enhanced configuration). Gives the last tint status for the selected source, as set by the customer. Sharpness. Gives the last sharpness status for the selected source, as set by the customer. Source. Gives the selected source, as set by the customer. AV Mute. Indicates if AV Mute is 'on' or 'off'.

How to navigate Use one of the following methods: • Switch to the other CSM page with the CURSOR LEFT/ RIGHT keys on the remote control. • You can increase/decrease volume with the VOLUME UP/ DOWN keys on the remote control. • You can switch to another source with the NUM/EXT keys on the remote control.

After switching 'on' the Customer Service Mode, the following screen will appear:

Customer Service Menu 1 1 Type Nr. AG Code 2 SW Version OTC 3 SW Version PW 4 SW Version EPLD 5 Code 1 6 Code 2 7 Volume 8 Brightness 9 Contrast

FM23

How to exit Use one of the following methods: • Press the MENU key of the remote control transmitter. • Switch the set to 'standby' with the Power switch on the remote control. • Switch the set 'off' with the Mains power switch.

5.3

Problems and Solving Tips (Related to CSM)

5.3.1

Picture Problems Note: Below described problems are all related to the monitor settings. The procedures to change the value (or status) of the different settings are described. Picture too dark or too bright Increase/decrease the BRIGHTNESS and/or the CONTRAST value when the picture improves after you have switched on the Customer Service Mode. The new value is automatically stored. White line around picture elements and text Decrease the SHARPNESS value when the picture improves after you have switched on the Customer Service Mode. The new value is automatically stored. Snowy picture and/or unstable picture A scrambled or decoded signal is received.


EN 20

5.

FM23

Service Modes, Error Codes and Fault Finding

Black and white picture Increase the COLOUR value when the picture improves after you have switched on the Customer Service Mode. The new value is automatically stored.

By a combination of automatic diagnostics and an interactive question / answer procedure, ComPair will enable you to find most problems in a fast and effective way. Beside fault finding, ComPair provides some additional features like: • Software upgrading (upload possible to OTC and PW Scaler). • Emulation of the (European) Dealer Service Tool (DST). • If both ComPair and SearchMan (Electronic Service Manual) are installed, all the schematics and the PWBs of the set are available by clicking on the appropriate hyperlink. Example: Measure the DC-voltage on capacitor C2228 (Schematic/Panel) of the SCAVIO panel. Click on the 'Panel' hyperlink to automatically show the PWB with a highlighted capacitor C2568. Click on the 'Schematic' hyperlink to automatically show the position of the highlighted capacitor.

Menu text not sharp enough Decrease the CONTRAST value when the picture improves after you have switched on the Customer Service Mode. The new value is automatically stored. 5.3.2

Sound Problems No sound from left or right speaker Check item 'Volume' in the CSM mode. If value is low, increase the volume level. The new value is automatically stored. No sound or sound too loud (after channel change/ switching on) Increase/decrease the VOLUME level when the volume is OK after you switched on the CSM. The new value is automatically stored.

5.4

ComPair

5.4.1

Introduction ComPair (Computer Aided Repair) is a service tool for Philips Consumer Electronics products. ComPair is a further development on the European DST (Dealer Service Tool), which allows faster and more accurate diagnostics. ComPair has three big advantages: • ComPair helps you to quickly get an understanding on how to repair the chassis in a short time by guiding you systematically through the repair procedures. • ComPair allows very detailed diagnostics (on I2C level) and is therefore capable of accurately indicating problem areas. You do not have to know anything about I2C commands yourself because ComPair takes care of this. • ComPair speeds up the repair time since it can automatically communicate with the chassis (when the microprocessor is working) and all repair information is directly available. When ComPair is installed together with the SearchMan electronic manual of the defective chassis, schematics and PWBs are only a mouse click away.

5.4.2

5.4.3

1. First, install the ComPair Browser software on your PC (read the installation instructions carefully). 2. Connect an RS232 interface cable between a free serial (COM) port on your PC and the RS232 connector on the FM23 plasma monitor. 3. Switch the plasma monitor 'off' and 'on' again (with the Mains switch). 4. Start the ComPair program and follow the instructions. Note: once the set is in ComPair mode, the front LED will blink red, at a frequency of 0.3 Hz. 5.4.4

The ComPair faultfinding program is able to determine the problem of the defective monitor. ComPair can gather diagnostic information in two ways: • Automatic (by communication with the monitor): ComPair can automatically read out the contents of the entire error buffer. Diagnosis is done on I2C level. ComPair can send and receive commands to the micro controller of the monitor, and so can access the I2C bus of the monitor. In this way, it is possible for ComPair to communicate (read and write) to devices on the I2C busses of the FTV monitor. • Manually (by asking questions to you): Automatic diagnosis is only possible if the micro controller of the monitor is working correctly and only to a certain extend. When this is not the case, ComPair will guide you through the faultfinding tree by asking you questions (e.g. Does the screen give a picture? Click on the correct answer: YES / NO) and showing you examples (e.g. Measure test-point F7 and click on the correct oscillogram you see on the oscilloscope). You can answer by clicking on a link (e.g. text or a waveform picture) that will bring you to the next step in the faultfinding process.

How to Order ComPair order codes: • Starter kit ComPair32 software (registration version): 3122 785 60040 • ComPair32 CD (update): 3122 785 60070 • Starter kit SearchMan32 software: 3122 785 60050 • SearchMan32 CD (update): 3122 785 60080 Note: The RS232 cable is not included. It is a standard cable (9p sub-D male-to-female) that can be obtained by a computer store. It is supplied however with the ComPair interface (4822 727 21631), necessary for servicing other Philips TVs.

Specifications ComPair consists of a Windows based faultfinding program, and an RS232 cable between PC and the (defective) product.

How to Connect

5.5

Error Buffer The error code buffer contains all detected errors since the last time the buffer was erased. The buffer is written from left to right. When an error occurs that is not yet in the error code buffer, it is written at the left side and all other errors shift one position to the right.

5.5.1

How to Read the Error Buffer Use one of the following methods: • On screen via the SAM (only if you have a picture). Examples: – Errors: 6 0 0 0 0, error code 6 is the last and only detected error. – Errors: 9 6 0 0 0, error code 6 was first detected and error code 9 is the last detected (newest) error. • Via the blinking LED procedure (when you have no picture). See paragraph 5.7. • Via ComPair.


Service Modes, Error Codes and Fault Finding 5.5.2

FM23

5.

EN 21

How to Clear the Error Buffer The error code buffer is cleared in the following cases: • By activation of the 'Reset error buffer' command in the SAM menu. • When you transmit the code 0 6 2 5 9 9 with a standard remote control transmitter.

5.5.3

Error Codes Table 5-1 Error code overview Error

Device

Description

1

TEA6422D

Audio switch (only Enhanced)

7798

SC13

2

MSP3451G

Sound processor

7812

SC14

3

PCF8574-SCAVIO

I/O expander SCAVIO

7540

SC8

4

PCF8591

AD-DA expander

7530

SC8

5

FS6377

Clock generator

7570

SC9

6

PCF8574-PSU

I/O expander PSU

7370

P3

7

24C16 OTC

NVM OTC

7430

SC7

8

24C16 PW

NVM PW

7580

SC9

Diagr.

SC5

9

SAA7118

Video decoder (only Enhanced)

7225

10

AD9887

ADC/TMDS receiver

7170

SC4

11

SDA9400

De-interlacer (only Enhanced)

7280

SC5

12

EP1K30QC

EPLD processor

7656

SC11

13

PDP

I2C error of the PDP

20

Download comm.

Errors during downloading

21

CSP comm.

CSP time-out error

30

PDP

Display HW error

40

Temperature alarm

Detection of over-temperature

70

Vs overvoltage

Overvoltage on Vs, Va, +3V3, +5V or a combination

7341

P3

71

Vs undervoltage

Undervoltage on Vs

7308A/B

P3

72

Va undervoltage

Undervoltage on Va

7308C/D

P3

73

+5V undervoltage

Undervoltage on +5V

7330A/B

P3

74

+3V3 undervoltage

Undervoltage on +3V3

7330C/D

P3

75

DC-PROT

Audio amplifier protection

7362

P3

76

TEMP-PSU

Over-temperature in PSU

7366A

P3

77

Protection with reason unknown

No valid protection can be read, but protection is active (PSU)

78

Protection after several retries

PW Scaler will not start comm. with OTC after several retries.

9x

OTC

Internal OTC error. Replace.

7383

SC7

Notes: • In case of non-intermittent faults, clear the error buffer before you begin the repair. This to ensure that old error codes are no longer present. • If possible, check the entire contents of the error buffer. In some situations, an error code is only the result of another error code and not the actual cause (e.g., a fault in the protection detection circuitry can also lead to a protection).

5.6

Item

The Blinking LED Procedure Via this procedure, you can make the contents of the error buffer visible via the front LED (orange colour).This is especially useful when there is no picture. When no errors are present, the LED will stay green. When the SDM is entered, or when code 0 6 2 5 0 0 is entered with the remote control, the LED will blink the contents of the error-buffer.

Error-codes ≥ 10 are shown as follows: 1. n long blinks of 750 ms, which is/are an indication of the decimal digit, 2. a pause of 1.5 s, 3. n short blinks (n = 1-9), 4. when all the error-codes are displayed, the sequence finishes with a LED blink of 3 s, 5. the sequence starts again. Example of error buffer: 12 9 6 0 0 After entering SDM: 1. 1 long blink of 750 ms followed by a pause of 1.5 s, 2. 2 short blinks followed by a pause of 3 s, 3. 9 short blinks followed by a pause of 3 s, 4. 6 short blinks followed by a pause of 3 s, 5. 1 long blink of 3 s to finish the sequence, 6. the sequence starts again.


EN 22 5.7

5.

FM23

Service Modes, Error Codes and Fault Finding

Protections You can read the error codes of the error buffer via the service menu (SAM), the blinking LED procedure, or via ComPair. If a fault situation is detected an error code will be generated and if necessary, the set will be put in the protection mode. Blinking of the red LED at a frequency of 5 Hz indicates the protection mode. In some error cases, the microprocessor does not put the set in the protection mode. The error codes are indicated by an orange front LED. To get a quick diagnosis the chassis has three service modes implemented: • The Customer Service Mode (CSM): easy way to read out the status of the set. • The Service Default Mode (SDM): start-up of the set in a predefined way. • The Service Alignment Mode (SAM): adjustment of the set via a menu and with the help of test patterns.

5.8

Repair Tips Below some failure symptoms are given, followed by a repair tip. • Error code indicates an under- or overvoltage protection (errors 70 - 74). Possible causes: – Short-circuit present on PSU. – Short-circuit present in PSU load circuit. – Converter not functioning (no start-up, or non shortcircuit failure). • Set starts up, but switches 'off' soon. 1. Check the PSU outputs. If no output at all, verify the Power Factor Corrector (= PFC or pre-conditioner) e.g. the relays. When PFC is not switching, the LLC is actively held off. 2. If PFC works, check VCEGO. 3. If VCEGO is high, check LLC (VS_UNSW). 4. If no VS, check pin 15. 5. If voltage is OK, check pins 12 and 14. 6. If no pulses, check controller pin 10. 7. If pin 10 < 1 V, the IC is probably defect. • If fuse 1004 (diagram P5) is blown. Check items 7005 and 7006. If one of them is defect, replace both! • If fuse 1400 (diagram P2) is blown. Check diode bridge 6600, diodes 6606 and 6607 and MOSFET 7610. • Set does not react on Remote Control Transmitter. If the monitor is set (by accident or deliberate) in ICONNmode (via SAM - Options), and there is no ICONN-Box connected, the RC-signal line to the OTC is interrupted. This can be solved by connecting pin 8 and 9 of the RS232 connector at the rear of the monitor.


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 23

6. Block Diagrams, Testpoint Overviews and Wiring Diagram Block Diagram Video VIDEO 1 2 3

11

6

VGA1-G

VGA1-G

4

VGA1-B

VGA1-B

6

VGA1-TXD

4

VGA1 IN 15P"D"SHELL CONNECTOR

5

7 2 8 3 9 4 10 15 5 12

VGA1-TXD

12

VGA1-RXD

13

VGA INPUT

VIDEO SELECTION

SC3

F303

29

F305

27

F308

21

F309

20

9 RC-VGA1

15

VGA1-B

7148

RC-VGA1

DCC-SCL-1

15

13

3

10

F307

7130

F152

13

12

B-ADC 100

VGA2-G

VGA2-G

19

VGA2-B

VGA2-B

21

VGA2-TXD

F311

16

F312

14

F313

12

9

VIDEO-SEL-1

10

VIDEO-SEL-2

V-ADC

81

H-ADC

82

GBLKSPL

93

SC10 GCOAST

VGA2-B

9

8 VGA2-H

2

3

8 N.C.

7160

VGA2-TXD

6

28

23

VGA2-V

25

11

VGA2-RXD

5

VGA1-V

1

F314

F315

6

B-YUV

5

VGA2-H

10

VGA2-V

8

SYNC SELECTION

7131

VGA1-V

2

VGA2-V

4

SYNC. PROC + CLOCK GENERATION

94

VIDEO-SEL-1

RXO+ 62

31

VGA2OUTN SC6

2

14

VIDEO-SEL-2

RXORX1+

59

RX1-

60

30

ADHS

140

ADSOG

134

GCLK

137

ADDE

RX2+

56

RX2-

57

RXC+

65

F619

F637

F633

SYNC DECODER AND TIMER

F618

1

SC10

DCLK

SC12

13

8x Y-OUT

SYNC

TMDS RECEIVER

PW-START

8x

SC7

PW-PRESET

SC9

MCLK

DATACK

F615 H-SYNC

SC5

V-SYNC

10

3608 3606

PW-SDA

3604

PW-SCL

3605

SC11

CLOCK GEN

DATA ADD CNTRL

MICROPROCESSOR

C-SYNC-LM

SC8

SC6

SDA SCL

F569

SC10

7580 M24C32

UART

VGA2-OUT VGA2-EN

SC8

LOGIC

O.S.

SC6

VGA1-V

V-HD

VGA1-H

H-HD

VGA2-V

SC6

SC6 TXD-PW SC2

SC5

SRAM

5 6

VGA2-H SYNC-SEL VIDEO-SEL-1

SC8 NVM

F567

VIDEO-SEL-2 DATA

ERR 8

VIDEO-SEL-2

SC10

B

PW-SCL

SYNC-ACT SC7

9

UART-ACT SC7

SC12

SC4

SC6

RS 232 INPUT

SC3

SCL-1-3V3

AV3 (HD) 7352 ST3232E

0376

5 10 4 9 3 8 2 7 1 6

1

14 13

12

RXD-2

9

8

10,13

VGA1-RXD

6

14

2Fh

H-HD-EXT

SC8

3913

7340 A+B 74HC4052D

I058

G-ATSC

F075

7084

VGA1-RXD

I078

I072

7310

5 TXD-PW

14

3

7315, 7316

14 10 LOGIC

TDX-PW

9

7325, 7326

6

1Fh

SC10

7100-B

CLAMP

BLANKING

7103

7100-C

CLAMP

BLANKING

7104

7100-A

CLAMP

BLANKING

R-YUV

10

5

G-YUV

SC11

ADC Ys

Y

VIDEO DECODER

7322

8x

Y-DEC

8x

UV-DEC

SC8

RC

7121 RC-OUT

Y-HD

SYNC CNTRL

P4 CVBS ERR 9

AV2

RC-CONTR 7321

3

2

1 5

SVHS

Y

UV-OUT

7040 LM 1881M

SC7 SDA1

V OUT-DEINT

60

H OUT-DEINT

2

SCL1

SYNC SLICER

V PEN

1250 SC9 VIDCLK 24.576MHz

26

6

ERR 11

SC6 SC3

SC10

TTL PARALLEL TO LVDS

SC11 8x B-OUT (0-7) 16,18-20 22-25

SC14

(LVDS ENCODER)

9

ADC

SC7

10

ERR 4

20

3 V-SYNC-LM

SCALER - CLOCK GENERATOR

F246

1 2

3531

TEMPSENSOR S1 (OPTIONAL)

0316 1 2

SDA-1

TX OUT1-P

13

42

TX OUT2-M

11

41

TX OUT2-P

9

38

TX OUT3-M

3

37

TX OUT3-P

1

38

TX CLK OUT-M

7

37

TX CLK OUT-P

5

27

F692

TEMPSENSOR S2 (OPTIONAL)

30 PARITY-OUT 25 DCLK

31

PWDWN--LVDS

32

TTL LVDS

SC12

7574 74LVC125A

7570 FS6377 2

13

3571

3

SC12

3684

F565 6

VXCA SC14 (18.432 MHz) AUDIO

18

SCL-1-3V3 PDP-GO

5

14

SDA-1-3V3 VIDCLK SC5 (24.567 MHz)

SC7

CPU-GO IRQ-PDP

PDP-GO

8

CPU-GO

10

IRQ-PDP

6

1 9

F563 8

ERR 5

SC10

4

POWER DOWN 3680

F566 15

12

SCL-1

15

45

BLANK-OUT

TEMP3-SENSOR P3

SC10

CLOCK GENERATOR

SC7

TX OUT1-M

H-SYNC-OUT

SC10

6

SC10

17

46

28

3

5

3285 PW-SCL

19

TX OUT0-P

F690

0315

2

3051

VGA2-EN

SC7

TX OUT0-M

47

F619

7060

CLKOUT-DEINT

F249 PW-SDA 3284 21

SC9

6-8 10-15

24.576 MHz

SC10

PW-SCL

VIDEO-SEL-2

C-SYNC-OUT SC11

F245

CLOCK

SC11

POWER-DOWN SC12

1 3532

1 C-SYNC-LM 15

SC9

61

PW-SDA 3250

F236 F235

Y-OUT

8x

SC10

48

V-SYNC-OUT

+5B

2

8x G-OUT (0-7)

SC6 SC3

7563

H-SYNC-CMP

54

3250

4

8x

62

clock

C RC-VGA1

SYNC

F247

F073

7320

22

VIDEO-SEL-1

3548

23

V-DEC

Cb

Cb

AV1

SC7

DEINTERLACER

H-DEC

7323

12

SC11 H-PRESNT

DE-INTERLACER

F240

Y-HD

9

MSP-RESET

SC11 HD-BLANKN

HD-CLAMPN

7280 SDA 9400

SC8 SELECT-2

+ -

50-56 2-4

SELECT-4

V-SYNC-CMP

VGA2-EN-NOT

7113 SELECT-3

ERR 3

8x R-OUT (0-7)

SC6 SELECT-3

12 7

PDP INTERFACE CONNECTOR 0318

LVDS

SELECT-2

11

+ -

7007-B 74HCT4053D

B-YUV

Cr

Cr

3540

6

7530 PCF8591

1

DECODER

SELECT-1

5

COMPARATOR

Y-HD

RXD-PW

4

I/O EXP.

H-SYNC-POL-N

VIDE-SELECTION DECODER 7225 SAA7118C

14

7

10

SC5

3541 15

10

7102

SC11 MATRIX-SEL

1fh BUFFER 7117

SDA1

SC7 SCL1

H-SYNC-TTL

RXC-

BACK-END-LVDS OUTP 7670 DS90CC385M

H-HD-EXT

RXD-OTC

12

13

RXC+

I083 TXD-OTC

SC7 SEE BLOCK DIAGRAM CONTROL

75 OHM-ON SC11

RXD+

15

1

B-NTSC 12

Pb

B-ATSC

1 TXD-OTC

3

I065

4

3

G-NTSC 2

Y

H SELECT-1

RGB MATRIX

7074

SC12

7025 A-B LM319D

R-NTSC 5 R-ATSC

CONTROL FUNCTIONS 7540 PCF8574A

V-SYNC-POL-N V-SYNC H-SYNC PROCESSING

RXD-

24

7089 74HCT4053D

I054

Pr

F072

IR_RX

7088 7090

7079

SC8

+5V-STBY-SW

23 B-2Fh

7000 - 7002 7006 - 7010

V-HD-EXT

G-2Fh

B

V

VGA1-TXD

1.4

SYNC SELECTION & SWITCHING

V-SYNC-TTL

18

V-HD-EXT

LD_ICN 5

SC2

6210

2fh 1fh 2fh

GL_ICN

IR_TX

RX1+

SC8

7303 A+B 2

7215 ST24FC21 RX1-

17 G

B/Pb/Cb SELECT-4

3

SDA

DDC 5 EPROM

VGA2-RXD

10 11

R-2Fh

7135

PS-232-ACT SC7

6

10

F074 6366

8

9

7

SCL

7138

F070

VGA2-TXD

RL_ICN

5

7

12

G/Y/Y

TXD

3

6

11

RXD

2

4

TXD-2

6

16

7303 C+D 11

RX2+

2

9

R/Pr/Cr RS-232 IN/OUT

RX2-

1

7141 R

PROG SOCKET

SUPPLY & GROUND

0375

VIDEO SELECTION & MATRIX

F071

585

C

DVI-D INPUT

DVI-D INPUT SOCKET

O.S.

PROM

ERR 12

3664 7

CNTRL

CONTROLS

SDA-1-3V3

3662 6378 VGA1-RXD 11

7655 EPC2

PW-SDA

VIDEO-SEL-1

VGA1-V 5

C-SYNC-OUT SC2

H-SYNC-COMP

7628 CY62126

7370 A+B VGA1-H

SYNC PROC.

V-SYNC-LM V-SYNC-COMP

PW-NVM

SC9

RXD-PW

SC10

VIDEO-SEL-2

SC2 HD_BLANKN SC3 HD_CLAMPN

H-SYNC-POL 7630 M29W160DT DATA FLASH ADD CNTRL ROM

F616

PW-SCL 3210

SYNC-SEL

SDA-2 SCL-2

SC7

H-ADC

3

H-PRESENT

H-SYNC-TTL

TV MODE

66

ERR 10

SC2

V-SYNC-POL-N

VPEN

SC7

75 OHM-ON

V-SYNC-TTL YUV TO RGB

8x

PW-SDA 3209 92

PWRDWN-LVDS

SC11 SC3 SYNC-SEL 6379

H-SYNC-OUT

BLANK-OUT

F638

1-2 FH

VOUT-DEINT

91

7065

+5V-STBY-SW

DEN

F634

FBX MODE

DE

H-HD

LOGIC

SYNC DELAY

F639

GCOAST

8x

F210

VGA2-OUTN 11-9

DHS

CLKOUT-DEINT

HOUT-DEINT

8x RXC-

VGA2-H 11

5

PARITY-OUT

8x UV-OUT

VGA2-EN NOT 6

VGA2-OUT

RC-OUT

3

32

+5V-STBY-SW

139

8x

V-ADC

7060

VGA2-EN

8x B-OUT (0-7)

DVS

8x

63

F211 3

9

RC-OUT

ADVS

8x

RTHERM 53

13

4

SC10

8x G-OUT (0-7)

8x DBG (0-7)

VIDEO PORT

8x

SC8

12,14

7915

138

V-HD

12

5

VGA-OUTN

8x GBO (0-7)

SC4

1,5

7007 A+C 74HCT4053T

SC11

VGA2-H

12

DDC-SCL-2 7907 ST24FC21

8x GBE (0-7)

8x

F158

7009 74HC4052D

VGA1-V VGA1-H

VGA2-H DDC NVM

8x

DIGITAL CONTRAST

8x DGE (0-7)

DCK EXT SC9

8x

ADC

3

LOGIC

VGA2-V

15

8x GGO (0-7)

8x

SC2

VGA2-V

14

4

B-2Fh

VGA1-H 15

VGA2-H

13

2

VGA2-B

SC7

DDC-SDA-2

12

8x GGE (0-7)

8x

8x R-OUT (0-7)

GBLKSPL

10

SC11

VGA2-V VGA2-RXD

VGA1-B

VGA1-H

10 11

8x

7158 74HC4052D

7157

VGA2OUTN

7910

7

8x GRO (0-7)

V-SYNC-OUT

SC8

7311-C

(EBOXPRESENT) SC7

9

27

VGA2-RXD

6

8x

PARITY

LOGIC

TV MODE

17

EPLD

A

8x DRE (0-7)

VGA2-G

VGA1-V

23

29

VGA2-R

5

9

VGA1-V

EBOX-PRESENT

VGA2-TXD

4

7 2 8 3 9 4 10 5

25

7656-A+B+C EP1K30FC256

G-YUV 14

SC6

2

15

F306

VGA1-H

7937 7940

VGA2-R

1

14

8

4

DDC NVM

7904 ST24FC21

0372

1

VGA1-H

10

10

5 7

13

4

VGA1-V

14

8x GRE (0-7)

8x

ADC

VGA1-H

13

VGA2 IN/OUT 15P"D"SHELL CONNECTOR

7154

VGA1-RXD DCC-SDA-1

8x

VGA1-G 15

7311-B 1

BACK-END-EPLD

PW

8x

ADC

G-ADC 110

G-2Fh

12

12

5

VGA2-G 11

11

6

1

R-YUV

R-ADC 119

3

VGA2-R

RC-VGA1

10

11

R-2Fh

F146

VGA1-RXD

8 9

SC11 7605 PW164

7311-A

VGA1-TXD

18

SCALER-PW164-MEMORY

ADC-TMDS

7151

6

7

SC10

7170 AD9887KS 7129

VGA2-R 4

VGA1-G

13 14

VIDEO SELECTION - ADC

VGA1-R 2

VGA1-R

31

F304

SC4 7146 74HC4052D

7145

0318

7900

6

1

2

SCALER

0318 VGA1-R

VGA1-R

PIXEL PROC.

SC6

0371

GRAPHICS PORT

VGA CONNECTOR

MUXES

VGA

3570 16

MCLK (120 MHz)

SC10

DCKEXT (36 MHz)

SC10

F564 10

12

11

PDP PLASMA DISPLAY PANEL

ERR 30

CL 26532038_001.eps 150402


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 24

Block Diagram Audio AUDIO AUDIO SOURCE SELECT

SC13

SC14

7714 LM833D

F710

2

L

L4

1

AUDIO-PROCESSOR

F711

6

R

5798

R4

7

7812 MSP3415G

7798 TEA6422D 3

2

L AUDIO FLEX VGA

2

F713

A 6

R

ERR 1

L5

1

7

B 7754 LM833D

L2

5

L3

6

L4

9

L5

10

1

6

7

R

12

PRE-OUT1-L

16

I2S-CLOCK

14

L-POS

7

7

L-POS

3

L-NEG

6

6

L-NEG

2

5

5

4

4

3

3

2

2

DAC DACM-R

R2

R2

24

R3

23

R4

20

R5

19

R6

18

R

DAC

13

3

SC13 AUDIO-ENABLE 1 R-POS

27 6

26

R-POS

7

1

R-NEG

1

L-NEG

5

3240

A4

7238-A LM833DT

F241

L-LOW

3

F235

AUDIO AMPLL-LOW

D-CTR-ONE

9

D-CTR-NIL

2

3415

3430

3222

2430 3437

2455 3462

+9V-STBY A

AU-EN-NOT

7455

3418

7465-1 IRF7343

3455

S

5460

VCC-10-NEG

VSDN-NEG

7440

L 31 OUT_PROT DAC

R 30 7

A7

7260-B LM833DT

SC1-R

R-HIGH

5

F273

A5

7

R

5

18.432 MHz

VXCA

6

SC9

L1

AUDIO AMPLR-HIGH

6

L

3515

3274

3530 7565-2 IRF7343

7530 2530 3537

2555 3552

F528

AUDIO DELAY LINE

7800 A+B 74HC4053D

B 7879 TC74HC590AF

15

7874 TC74HC590AF

B

7870 TC74HC590AF

5565

D

7555

3518

7565-1 IRF7343

3555

S

5560

VCC-10-NEG

7880 CY7C199B

VSDN-NEG

7540

7882 74HCT573

7881 74HCT573

7238-B LM833DT

14

OUT_RH

2565

G

1,4

7502

A

A

G

F565

F530

3

AUDIO DELAY PROC.

VSDN-POS D S

3528

7

R

SC15

5535

VCC-10-POS

7515 LM311D 8 2

R1

12

OUT_LL

2465

G

SC1-L

1

6

SC1-R

D

1,4

7402

F211

5465

F465

F430

3 F428

7211 BC857BM

VSDN-POS D

G S

3428

7

3234

7465-2 IRF7343

7430

7415 LM311D 8 2

2

5435

VCC-10-POS

1

6

R3

2

VSDN-NEG

7340

F817

7861 TS462CD

L3

SC1-L

5366

VCC-10-NEG

3220

AUDIO-ENABLE

7

8

L

AV3 AUDIO RGB YPbPr YCbPr

S

OUT_PROT

F816

41

PRE-OUT1-R

7365-1 IRF7343

3355

2355

G

A7

7851 LM833D

A

I659

DIGITAL SOUND PROC.

7355

3318

F231 1

I660

DACM-L

2355 3362

D

1,4

7302

OUT_LH

F365

F330 F328

3259

7225 LM833DT

8

5365

S

3328

7

VSDN-POS D

G

F813

40

25

R6

L

AUDIO YC

7

2330 3337

0388

8

5335 7365-2 IRF7343

7330

3

DSP

L2

AV2

0388

1

3330 VCC-10-POS

2

F812

B

11

L6

3

3315

7315 LM311D 8 2

F258

3207

12

I2S-DATA-OUT

AUDIO AMPLL-HIGH

1

7841 LM833D

6

PRESCALE

L-HIGH

3

SCL-1

3812

I2SDATA-IN2 MATRIX SWITCH

SC7

4811

I2SDATA-IN1 17

DAC

L6

2

SCL-AUDIO 27 3794

DEMODULATOR

21

R1

AUDIO DVI-D

AUDIO CVBS

4

R5

F714

L

L1

ERR 2

3

28 3795 SDA-AUDIO

A3 7260-A LM833DT

SDA-1

3813

13

7734 LM833D

AV1

4810

SCL-AUDIO

AUDIO VGA IN

FILTERS

A2 SDA-AUDIO

+8V6

OUT_PROT L-HIGH

5

F245

A7

7 10,11

COUNTER 7718

7803

COUNTER

7x

8x

RAM

6

A6

24 ms MONITOR

17

ANTI PLOP 7805 7806

I2S-DATA-IN1

4884

F872

3244

8x

7x

"D" F.F.

"D" F.F.

4894

15

7807 7808

I2S-DATA-IN2

AUDIO AMPLR-LOW

7x

D-CTR-NIL

8x

SC7 SC8 POWER-OK

16 1415 6MHz

SC6

SC6

CONTROL SC6

SC8

1

2

RL_ICN

4

LD_ICN 2 1

5

GL_ICN

6

7555 74HC4053D 15

SC7

GREEN_LED

SC13

LD_ICN 7

IR_TX

GL_ICN 12 13

14

SC10 PW_FLASH_RESET

109

SC8 ICONN_NOT

120

RL_ICN 5 3

4

SC8

STANDBY

SC10

PW-START

SC8

POWER-OK

SC12

11

7103 GREEN 4

3

N.C.

1

7105

RC RECEIVER 7120 2

15

3404-D

ERR 91

88

3404-A

ERR 92

87

3404-B

ERR 93

89

3402-D

ERR 94

90

3402-C

91

3402-B

SDA-NVM-1

5

92

3402-A

SCL-NVM-1

6

RC-CNTL

SC10

PW-RESET

SC10

PW-START

RC

FAN-SP1

SC6

UART-ACT

SC6

ERR 96

SDA-1 F428

SEE IIC DIAGRAM

SCL-1 F425 SDA-2 F426

1

GREEN-LED

2

2

RED-LED

3

3

RC-IN

4

4

LIGHT-SENSOR-IN

5

5

6

6

A7

7

7

8

8

7

6127 +5V-STBY-SW 1101 4

1

+9V-STBY-SW

ON/OFF 5 SWITCH 6

2

+9V-STBY

3

SUPPLY & DC PROTECTION 0303 5 OUT_LH

IR_RX 12 13

ERR 97

SC7

RESET

7

7430 MC24C32

OUT_LL

9

9

10

10

+8V6

L-LOW

NVM

0304

ERR 7

OUT_RH

3464-D ROM-CS

1

RAM-CS

2

40

3464-C 3464-A ROM-OE

+5V-STBY-SW

1

SEE BLOCK DIAGRAM VIDEO

0382 SDM

9

41

RAM-OE

10

CS

GND-LED

114

RED-LED

113

CONTROL

RC

100

LIGHT-SEN-IN

105

R-LOW VCC_10_POS

A3 26

CS

DUAL BANK FLASH ROM

28

OE

A4

3

SAM

4 3422

5

CMP

6 3421

9 8

FLASH RESET

POWER SUPPLY

DRAM

CONTROL

+9V-STBY

7

+5V

9

8

6 5 4

10

1 SCL-1

SC7 SDA-1

SC6 RS_232_ACT

7435

3770

3771

3780

DC-PROTECT 5753

2760

VSDN-POS

3751

6750 6760

2759

VCC-10-POS F735

1740

7751

F730

2.5A 7735,7736 STAB

7753 BC857BW 3752

+9V-STBY A

VCC_10_NEG

1730

3781

+9V-STBY

DC-PROT +9V-STBY

3

3380-C

3755

3765

A6

7 TO 0302 P6

2

+9V-STBY-SW

OUT_PROT 3749

A5 0302

7515,7516 12

7500 MSM51V18165F

ADDRESS SERVICE-IN 106

1

11 OE

7506 AM29DL164DT

98

R-HIGH

2 OUT_RL

3464-B

99

ADDRESS

2 3419

4 3

6

108

SERVICE PINS

SC6

2

7510 - 74 LVCOOAD

42

DATA

RC

L-HIGH

3

TXD-OTC

14

ICON_NOT SC7

4

SC6

DATA +8V6

A7

RXD-OTC

43

SYNC-ACT

VSDN-NEG OUT_PROT

SC10

93

103

5660

SCL-2

110

95

S

7640

115

104

7665-1 IRF7345

3655

2665

G

1

116

FAN-SP2

SC8

ERR 95

D

VCC-10-NEG

0320

RED 7107

7550 74HC4053D

1 0320

96

PDP-GO

SC6

SC8

6103 2

95

IRQ-PDP

RED_LED

ICON_NOT SC7

IR_TX 2

119

CPU-GO

IR_RX

9 10

3618

85

RESET

RESET

8

LED PANEL 1

74

TXD

3

5 10 4 9 3 8 2 7 1 6

84

RESET

RXD

2 RS-232 IN/OUT

7517 ADM 810

SEE BLOCK DIAGRAM VIDEO

0376

OTC-V

VGA1-V

7433

CONTROL FUNCTIONS 2

2655 3662

7655

F427

3404-C

OUT_RL

5665

F665

F630

82 86

OTC

7432

G

1,4

7602

F383

83

SC14

RS232 INPUT

FRAME

17

OTC-H

VGA1-H

7383 SAA5801H

VSDN-POS D S

3628

F628

CONTROL FUNCTIONS 1

AUDIO-ENABLE

D-CTR-ONE

LD

2630 3637

3

7801 7802

7665-2 IRF7345

7630

7 +9V-STBY

5335

VCC-10-POS

7615 LM311D 8 2

40 ms TV

3630

3615

7761 7755

F740 VSDN-NEG

2.5A 7745,7746 STAB

DC-PROT

F745 VCC-10 -NEG

CL 26532038_002.eps 150402


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 25

Block Diagram Power Supply P5

PRECONDITIONER

PRECONDITIONER

P6

LLC-SUPPLY

F601

-

+

5600

4

16

7610 ST434NB50 I607 G

2605

2

1

2

4

3610

6

400V-HOT

I608

3611

+5V_STBY_SW

7093 LM317T

3613

5001 7001 MC34067P

15

10

VCC

6661

7005 STU16NB501 D G S I038

F003

7017 7018

2664

7007 7020 HIGH SIDE DRIVE

11

CONTROL 6660

15

OA 6 8

FI

4

12

2

+12V I709

2707

1

- +3V3 SUPPLY -

VS-UNSWITCHED

12 6044 STTH2003L

14 1

6

7006 7008, 7021, 7022 STU16NB501 D LOW G 14 SIDE S DRIVE I057

F004

7

6260 FUNCTIE

CONTROL

VS

V.S._UNSW 70-90V

6021 BYU28

1005

9

I200

+18V

6045 BYU28

2022

CONTROL VCC

VB

GATE

5

6142 BYD33D VA

2021

VS

VCC

VA

VA

SWITCH ON LOGIC VS

VFB

NC

VCC

2

F015 77-100V 9043

7641

VSA-CONTROL

0352 1 2 3 TO 4 CN52 5 PDP 6 7

0392 VS 1

3241

MULT

I618

NC

VRS

3641

11

VCC VS F120

0342 1 2 3 TO 4 CN42 5 PDP 6 7

VS ADJ. 3026

CONTROL CIRCUIT 3

I625

F610

VRS

1

7002 TCET1102

12

NC NC

0333 1 2 3 4 TO 5 CN33 6 PDP 7 8 9

S

7050 PSMN035

POK 7010,7011 4

VA

NC NC

B

ZC

3650

D

G

6665

3670

CONTROL FUNCTIONS

T5A

I622 2662

1

VCC

VS- SWITCHED -

3050

F609

6267

3260

7042

T5A

BIAS

+3V3 3261

P3

15

11

0305 12 TO 11 0305 10 9 SC8

+3V3

10

+3V3_OVP FROM

VS_UNSW 70-90V 2020

5268

2,3

CONTROL

IA5

F016

2

3

F261

7,8

NC

VS

7260 L4973V

I261

1260

+18V

3

0323 1 2 3 4 TO 5 CN23 6 PDP 7 8 9 10

FAN2 (OPTIONAL)

2 7707

VB

13

1045

7

6709

G

NC

VS

0390 3

7706

VCC

10

3668

S

I704

LATCH

13

16 LINE

1

I705 D

F294

I083

3011

7650 MC33368

6703 7701

2

F005

14

10

NC

FAN1 (OPTIONAL)

2

G

2701

FAN_SP1

A7

16 OB

3653

7660 L7815

TO 0302

SUPPLY DC. PROT. (AUDIO PANEL)

VA VCC

7700

5002

3 SOFT START + CURRENT PROTECTION

2294

1

1

3

3608 3663

VSND_NEG

0389 3

5703

S

7003 PCET1102

6095

SW25V-HOT

2

I700 D

+12V

3096

B SW25V-HOT

GND_SND

2292

0302 9 8 7 6 5 4 3 2 1

FAN_SP2

2002

PROT

4 3

4

3095

F604

F293 +9V_STBY VSND_POS

T2A

F001 BIAS

7090 : 7092

DC_PROT

6291 D458L20U

5290

3092

25V-HOT 2616

6605

2663

VS-SUPPLY

1084

- BIAS-SUPPLY -

A 400V-HOT

D S

I609

- AUDIO SUPPLY -

1004

5003

400V-HOT

2A

7608 6606

FAN CONTROL

DC_PROT

F600

6611

14

P4

HOT COLD

- LLC-CONVERTER -

6600 GBU8 3 1

HOT

VA 2

3

VS-VA ADJ.

3240

3651 3 VFB

I629

D

2640

G S

7640 BSN304

HOT COLD

I201 SWITCH LOGIC SEQUENCE DISCHARGE

3640

3666

P7

D

G

S

7052 IRFR18N15D

I202

3671

P2

AUX-SUPPLY

2666

STBY

- VCC SUPPLY -

- VA-SUPPLY AC3 100-230VAC2

0306 1

+3V3_STBY_SW

1200

4

3146

1

VA I213 VCC_GD

I214 7212 TEA1507

7200 BSN304 D

1

S 7110 7111 3451

+t0

MAINS FILTER UNIT 0308 MAINS FILTER

1400

+t0

3202

IA CURRENT MEASUREMENT

6120

IAKS G

2

1

MAINS FILTER

7112 TEA1507 8

-t0 1

I105

3

HOT COLD

VCC CTRL

DRIVER SENCE

1

13

3

11

1 6230

FAN SUPPLY

F116

+12V FAW 6232

3360 P3 +8V6

1

+8V 3

3363

3224

2 7227 TL431CZ

VRA

VA ADJ. 3127

FILTERS-STBY

6378

POK

3506

4

7

6504 RS1G

F502 +9V_STBY

I510

7540 L7805

8

ENABLE

DRAIN SOURCE

5

IN

9

7-8

I517 OUT

D

S

D

4

1 3505

7501 TCET1102 3 2

7502 TL431

2

2 6520 +9V_STBY_SW P3

3

COLD

+25V-HOT

3311

+25V-HOT

14 15

3370 3371

6333

6340

3338

3358

1

I914

2.5Vref

13

2.5Vref

6322

2.5Vref

ERR 6

+8V6

- LATCH -

6334

2.5Vref

2

VA

7348

7352

3360

6347

7375,7376

3389 3388

3344 +5V_STBY_SW

3364 6362

3341

7341

7366-B

6348

3346

3302

3397

3303

3316

3305

7391

3386 3394

3343

3387

VSK

1

VAK

2 3

IAK

5

VRS

7

VRA

9

NC VCEGO

11

VSAGO

15

NC

20

13

3342

+3V3_OVP P7

7

6

7393

7389

+5V_STBY_SW

VSACONTROL LOGIC

3347

7362

3345

- IAK BUFFER +5V_STBY_SW 5

3362 I919

14 6342

VS

3396

0307

+5V_STBY_SW

F243 6341 I917

- STANDBY -

6390

13

8 6335

3317

2.5Vref CIRCUIT -

9

13

3390

10

4 6324

6364

7330 C+D 11

1

5

14 8 6314

I916

6

9

4

3332

7330 A+B 7

3313 10

6313

5

3320 I915

FAN_SP2

SCL_1 SDA_1 POWER_OK TEMP-3 STANDBY

3350

3353

3330

FAN_SP1

0319 1 F300 2 F301 3 F302 4 F304 5 F305 6 TO CONTROL 7 SC8 0319 FUNCTIONS 2 8 9 F309 10 11 F310 12

3349

- DC_PROT -

+3V3

3338

7308 C+D 11

3503

I504 3508

3324 3

G

6321

2

7304 TL43IC2 1

- +3V3 PROTECTION -

VCC

3309

7308 A+B 6

2.5Vref

I516

1

VA

3300

3304

+3V3_STBY_SW

- VCC PROTECTION -

+9V_STBY_SW 6312

6365

7530 STD16NEO6L

- VA PROTECTION -

VS_UNSW 70-90V

7

S

TEMP_PROT 12

3354

+5V_STBY_SW

F503

3501

DC_PROT1 11

I913

7351 3365

3369

G

6505 SB340

1

+5V_STBY_SW 7531 STD16NEO6L

1

- VS PROTECTION -

I920

7366 A 3 2

4

6503 RS1G

3368 +t

VCEGO

I508

6

3

VSA CONTROL

7500 TNY256

2

T/O EXP.

+5V_STBY_SW

VSAGO

F500

CONTROL

3507

I912

- VCEGO -

+5V_STBY_SW 5500

9

7326, 7327

DC_PROT1

- TEMP PROTECTION -

POK

- STANDBY SUPPLY -

+3V3_PROT

2503

6511 BYG10

VCC_PROT

+t 6510 BYG10

7

PROTECTIONS VA_PROT

P3

VS_PROT

400V-HOT A

SUPPLY_ON

6512 BYG10

TEMP_PROT

6513 BYG10

6

+3V3_PROT

I911 OVERVOLTAGE

VCC_GO

F412

VCC_PROT

I910

+9V_STBY +9V_STBY_SW +8V6 +5V_STBY_SW +3V3_STBY_SW

POWER_OK

DC_PROT

ACTIVATING

5

8

DETECTION CIRCUIT

P3

ACTIVATING DELAY

VA_PROT

I909

+8V6 UNDER VOLTAGE PROT.

POK 7465 7470

I371

9

+2.5Vref

3225

+9V_STBY_SW

7460

4

7366-C 10

CONTROL CIRCUIT

VS_PROT

SWITCH 10

VSA_CONTROL 7120 TCET1102

I370

F144

7220 TCET1102

2

2114

- ERROR LOGGING -

7370 PCF8574AT

FAN CONTROL 7230 L4940 3228

6111

PROTECTIONS

+9V_STBY_SW

2230

9

4

4

P3

P4 16

7

+5V_STBY_SW 6113

TO CN6 PDP

6

5225

2

18

6211

5

1401 T2A

2224

6

3113

VCC

6225

2210

1460 F411 3

4

12

3214

3116

DRAIN

DEMAG 1450 I407 3

I208

8 DRAIN

I220

CONTROL

4

7200 BSN20 D S

3452

2

F407

P2

2121

I406 1

T6.3A

1

1

5401 5402

F404

2

2

7140 A+B 7142

G 7117 PSMN035

VCC & DRAIN CONTROL

VCC

VCC

SUPPLY_ON

3450

I236

7217 I216 PSMN070 D 6 G DRIVE 3 S CTRL 5 SENCE 4 DEMAG 3218 GND

G

5V

5224

2

IAKS

2

S

3 4 F140

3

14

3 2 4

FAN_SP2

5

1

T2A

t

I152

FAN_SP1

D

5120

3372

3118

TA5 F015

I107

STANDBY

I101

1100

OVERVOLTAGE

AC5 100-230VAC1

6224 STPS20L40CF

5220

LATCH

VS_UNSW 70-90V

2x

HOT

2505

CL 26532038_003.eps 150402

I900 I901 I902 I903 TO I904 CN7 PDP I905 I906


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 26

Power Lines Overview P5

PRECONDITIONER

LLC-SUPPLY

P6

HOT

HOT COLD

A7 0302

P3

AUDIO SUPPLY

+9V_STBY 6291 D4S8L20U

5290 1084

4

2

3

1

5293

VSND_POS

1

2

2292

3

GND_SND

5291

T2A 6600 GBU8 3 1

-

VS-UNSWITCHED 4

4,16

6611

6,14

400V-HOT

6661

SW25V-HOT

25V-HOT

LCC SUPPLY

+VB 1005

6606

1045 9

+18V 6045

MAINS FILTER UNIT 5401 5402

0308

0308 2

2

1

1

1400

+t0 1

P3

2

1

1450 4 3

VS

VSA_CONTROL

7052 SWITCH LOGIC SEQUENCE DISCHARGE

1110

3452

T5A

-t0

FILTERS-STBY

1

VS

VA SUPPLY

2121

VA

6224 STPS20L40CF

HOT COLD

14

400V-HOT

6510 BYG10

3

VA VA

5224

2

NC NC

VCC

2224

VCC

7

+t 2503

STANDBY SUPPLY

+9V_STBY_SW

VCC

2228

VCC

2

+8V6 7540 L7805

8 IN

9

D

OUT

+8V6

3

+5V_STBY_SW

4

+3V3_STBY_SW

5

+5V_STBY_SW

S

7531 STD16NEO6L

4

POK

+5V_STBY_SW

P7

G

6505 SB340

D

+3V3_STBY_SW

+25V-HOT

+25V-HOT

STANDBY CIRCUIT

HOT

6232

16

8V6

2

1

1

5725 1740

2A5

VSDN-NEG 7745,7746 VCC-10-NEG STAB

0333 1 2 3 4 TO 5 CN33 6 PDP 7 8 9

A2

FILTERS +9V-STBY VCC-10-POS VCC-10-NEG

A3

AUDIO AMPLI LEFT HIGH

VCC-10-POS

3315

VCC-10NEG

3318

8-7315

1-7315 VSDN-POS

5335

3330

0342 1 2 3 TO 4 CN42 5 PDP 6 7

VSDN-NEG

5360

???? C-7335

A4

AUDIO AMPLI LEFT LOW

VCC-10-POS

3415

VCC-10-NEG

3418

TO

8

SC8

5460

3455

C-7430

1401

AUDIO AMPLI RIGHT HIGH

TO CN6 PDP

VCC-10-POS

3515

VCC-10-NEG

3518

8-7515

1-7515

6 VSDN-POS

5535

3530

VSDN-NEG

5560

3555

C-7530

+18V

1260

+3V3_OVP

+8V6

7,8

5268

2,3

+3V3

A6

SC8

+3V3 6267

10

0305 TO 12 11 10 9

+3V3

CONTROL

IA5

C-7555

+12V

- +3V3 SUPPLY -

+18V 7260

SUPPLY_ON

VSDN-NEG

FAN CONTROL

P4

10

FAN_SP2

3430

T2A

11

13

5435

A5

0306 +3V3_STBY_SW 1 3 4

9

12

1-7415 VSDN-POS

C-7455 STBY

P2

VCC

7

FAN_SP1

NC

0352 1 2 3 TO 4 CN52 5 PDP 6 7

2230

7230 L4940 +8V6

+3V3_OVP

COLD

+12V VCC

6520 +9V_STBY_SW

6230

2231

6

POK

18

NC NC

+5V_STBY

SCL_1

G

3508

NC

VA

2225

+5V_STBY_SW

SDA_1

10 POWER_OK + 9 - 8 6378 7386-C STANDBY

+3V3_STBY_SW

S

7530 STD16NEO6L

6503 RS1G

3

2

8-7415 5225

2

11

VS

8V6

3 1

VCC SUPPLY

+3V3

VS

0319 1

+9V_STBY

+9V_STBY

T2A

13

VCC

+3V3

+9V_STBY 6504 RS1G

VA

VA

SUPPLY-ON

3506

VS_UNSW 1200 70-90V

VS_UNSW 70-90V

P3

6

4

3

VSDN-POS 7735,7736 VCC-10-POS STAB

6225

7465 7470

ACTIVATING

6511 BYG10

4

2A5

C-7330

+9V_STBY_SW

6513 6512 BYG10 BYG10

NC

6142

1

5500

5

0323 1 2 3 4 TO 5 CN23 6 PDP 7 NC 8 9 10

VCC

3146

12

A

5

+9V-STBY 5335 1730

2043

1460 4 3

7460

6

6

NC

PROTECTION

P3

2

POK

SWITCH ON LOGIC VS

77-100V

+t0

MAINS FILTER

T6.3A

P3

2022

+5V_STBY_SW

HOT COLD

VA VCC

G

T5A

AC5 100-200VAC1

VS 2021

9043

10 AC3 100-200VAC2

S

7050

+VB

6021

T5A

3451

VS D

2020

11

3450

7

VS SUPPLY

VS_UNSW 70-90V

16

2664

6605

7

DC-PROT

AUX-SUPPLY

P7

VS_UNSW 70-90V

BIAS

BIAS SUPPLY

2002 6660

6044

14

SW25-HOT

A 2663

8

12

2616

3663

8

5292

1004

5003

400V-HOT

T2A

PRECONDITIONER

2605

2

P2

VSND_NEG 2294

+

MAINS FILTER

4

0302 9

9

DC_PROT

SUPPLY & DC PROTECTION

2269

P2

VCC

AUDIO AMPLI LEFT LOW

VCC-10-POS

3615

VCC-10-NEG

3618

8-7615

1-7615

1

+5V_STBY_SW VSDN-POS

5635

3630

VSDN-NEG

5660

3655

C-7630

C-7655

SC8

CONTROL FUNCTIONS 2

LD

LED / SWITCH PANEL

0319

0320

+9V-STBY

1

+9V-STBY

2

+9V-STBY-SW

3

+8V6

4

+5V-STBY-SW

5

+3V3-STBY-SW

+9V-STBY-SW 1105 500mA

+8V6

1101

0320

10

10

2

5

9

9

+9V-STBY-SW 3

6

8

8

7

7

SC7 SC13

10 STAND-BY

11 12

SC7

+5V-STBY-SW

6

1 8

11 12

VIDEO SELECTION &MATRIX 5170 +5M +5V +5V 5167 +8SW +8V6 +8V6 5140 +8AA 5164 +8A

SC6

OTC

0318 1

VGA 0318 32

+5V-STB-SW +5V

+5V

5350 +5V

VIDEO

5220 5222 5224

+5V REF +5V_STBY_SW

5541 +5V_EXP

VREF2 6166

7641

+5V

5572 +5V-STBY-SW

CONTROL FUNCTIONS 1 OTC

SCALER-PW164 + MEMORY

+8V6 +8V6 5796 +8V6A

TL431

3796 +4V3A

5643 +2V5PLDB +2V5PLDC

+5V

+3V3-STBY-SW

+8V6

5522 5523

3V3DE

5524

AUDIO-PROCESSOR

+5V +5V +8V6

+3V3-PW +3V3-STBY-SW

+3V3-CNTL-A +3V3-CNTL-B

+3V3

+3V3-CNTL-E

+8V6B

+3V3PLDB

3810 +4V3B

5647 +3V3PLDC

+3V3

SC15

AUDIO-DELAY-LINE

5648

+3V3-CNTL-C +3V3-CNTL-D

5810

5646

5630 +3V3W

3V3DC

+9V-STBY

SC14

+3V3PLDA

5520

3V3DA

+9V-STBY

+8V6

5645

+5V

AUDIO SOURCE SELECT

G

5644 +5V +8V6

+3V3VID

5228

SC10

SC13

7640 +8V6 3640

+5V-OE

+2V5

S

+2V5PLDA

1270

5223

D

+3V3-STBY-SW

5642

+8V6

5221

7165

3530

+3V3-STBY-SW

+5V-STBY-SW

SC7

+3V3-STBY-SW

+3V3-PLD

500mA

+3V3-PW

3V3DB 3V3DD

+8V6

+3V3

3V3AA

1670

500mA

+5V

BACK-END-LVDS

+3V3-PW

+3V3MAIN2

SC5

SC12

+3V3

+3V3OUTPUT

5521 5530

5352

+3V3MAIN1

500mA +5V

+5R

BACK-END-EPLD

1575

+5V-STBY-SW +5S

6353

SC11

+3V3

6302 5302

+3V3-AD

VREF1

+3V3

+5V

+3V3

+8B

+5V-STBY-SW

+3V3

5196

SCALER, CLOCK-GENERATOR

SC9 5300

1170

SC3

9 10

+5B

3164

T1A

LD1117

+8V6

5901 6916

+3V3

+3V3

500mA

VGA CONNECTOR

0305 1100

5009

+5A

VGA INPUT

+5V

+3V3PLL

+5V

6-7009 5008

+5V-POW

VCC

5007

SC6 +5V_STBY_SW

+8V6

5199

+5V-STBY-SW

13

7175 +5V-POW 5197

5198

+8V6

POWER O.K.

9

+5V-STBY-SW

+3V3-STBY-SW

8

VIDEO SELECTION - ADC

+3V3-STBY-SW +5V

5060

+5V-STBY-SW

7

SC4

+5V-STBY-SW

4

+9V-STBY

6

6

1

SYNC SELECTION

SC2

ON/OFF SWITCH

+3V3PLDD +2V5

5870 +5D

5649 +3V3PLDE

+5

CL 26532038_004.eps 040402


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 27

I2C-IC Overview IIC SC7 CONTROL FUNCTIONS 1

86 MASTER HW IIC 85

IIC BUS 1 (slow 100KHz)

+5V_STBY_SW 3404-C

3414

SC8 CONTROL FUNCTIONS 2

SC9 CLOCK GENERATOR

SC14 AUDIO PROC.

SC13 SOURCE SELECT

SC8 CONTROL FUNCTIONS2

P3

SC12 BACK-END LVDS OUTPUT

PROTECTION

+3V3_STBY_SW

3415

3681

3404-D

SDA-1

SDA-1

3685 SDA-1_3V3

SCL-1

SCL-1

SCL-1_3V3

1

7571

3540

3541

3

SC11 BACK-END EPLD

SC12 BACK-END LVDS OUTPUT

PDP

PLASMA DISPLAY PANEL

0301 4680

16

6

SDA-1_3V3

18

7

SCL-1_3V3

4684

SCL_SW SDA_SW

3664

3662

+5V

7383 SAA5801H

0382

4811 15

10

OTC

0319

4810

4

9

MAINPROCESSOR (MASTER)

6

SCL_AUDIO

7676 BSN20

6 D

7

SDA_AUDIO

SERVICE COMPAIR CONNECTION

0319

C4 C5 SLAVE IIC

S

7 G

3532

3571

3531

3813

3570

3812

3795

3794

3371

7656 EP1K30FC256

7675 BSN20

3370

D

S

EPLD

ERR 91

14 15 SLAVE HW IIC

ERR 92

10 9 SLAVE HW IIC

16 1 SLAVE HW IIC

13 12 SLAVE HW IIC

28 27 SLAVE HW IIC

74 73 SLAVE HW IIC

ERR 93

7540 PCF8574AT

7530 PCF8591

7570 FS6377

7812 MSP3415G

7798 TEA6422Q

7370 PCF8574A

ERR 94

I/O EXP.

ADC

CLOCK GENERATOR

AUDIO PROC.

MATRIX SWITCH

I/O EXP.

ERR 95

ERR 3

ERR 4

ERR 5

ERR 2

ERR 1

ERR 6

3682

ERR 30

ERR 12

G 3686

SLAVE IIC C6 C8

+3V3_STBY_SW

3663

3661

ERR 96 ERR 97

+3V3_CNTR_D

88 SLAVE HW IIC 87

3404-A

3410

3413

PW_START

IIC BUS 3 (slow 100KHz)

+3V3_PW

3606

SCL-2

3398-C

SC10 PW164

3608

SDA-2

3404-B

IIC BUS 2 (slow 100KHz)

A4 MASTER SW D6 IIC E2

MASTER B1 SW C2 IIC

3601

3604

SC4 VIDEO-SEL. ADC

SC5 VIDEO-SEL. DECODER

3600 PW_SDA

3605

PW_SDA

PW_SCL

PW_SCL 3209

EXT INT

3210

3251

3250

3284

3285

SC9 NVM +3V3_PW

7605 PW164 IIC BUS 5

COPROCESSOR FOR SCALER AND OSD

+3V3_CNTL_D

IIC BUS 4

91 MASTER HW IIC 92

3402-B 3402-A

A1 C4

3581

5

SCL_NVM_1

4431 7

7430 M24C32 (NVM) EEPROM

3384

PW_RESET

3007

PW_FLASH_RESET

PW_RESET

4581 7

3431

5

109

92 91 SLAVE HW IIC

PW_SCL_NVM 3582

E3

108

3603

3430

3432

3580

PW_SDA_NVM

SDA_NVM_1

3433

74 RESET

3583

3602

7580 M24C32 (NVM) EEPROM

6 ERR 8

N9 P10 SLAVE HW IIC

7170 AD9887KS

7225 SAA7118E

7280 SDA9400

ADC + TMDS REC.

VIDEO DECODER

DEINTERLACER

ERR 10

ERR 9

ERR 11

6 ERR 7

VGA1 IN 15P"D"SHELL CONNECTOR

DVI-D INPUT SOCKET 12 13

7500 MSM51V18165F

DATA

RAM

ADDRESS

0375

7628 CY62126

SCL

7215 ST24FC21

SDA

DDC EPROM

6 ADDRESS

RAM

6630

7

14 15

DATA

7506

13 14 15

ADDRESS

FLASH

ADDRESS

FLASH

3633

7

1 2

8

3 9 4 10 5

VGA2 IN/OUT 15P"D"SHELL CONNECTOR

12

7630 M29W160DT

6

0371

6 7 8

1 2

3 9 4 10 5

7904 ST24FC21

DCC-SDA-1 12 13 14 15

11

DATA

VGA CONNECTOR

VCA

11

DATA

20 21 SLAVE HW IIC

Description Audio switch Sound processor I/O expander SCAVIO AD-DA expander Clock generator I/O expander PSU NVM OTC NVM PW Video decoder ADC/TMDS receiver De-interlacer EPLD processor

20 21

Download comm. CSP comm.

Errors during downloading CSP time-out error

30

PDP

Display error

70

Vs overvoltage

71 72 73 74 75 76 77

Vs undervoltage Va undervoltage +5V undervoltage +3V3 undervoltage DC-PROT TEMP-PSU Protection with reason unknown

78 79

Protection after several retries Temperature alarm

Overvoltage on Vs, Va, +3V3, +5V or a combination Undervoltage on Vs Undervoltage on Va Undervoltage on +5V Undervoltage on +3V3 Audio amplifier protection Over-temperature in PSU Not possible to read out a valid protection, but protection is active (from PSU) PW Scaler will not start comm. with OTC after several retries. Detection of over-temperature

DDC 7 NVM

91 92 93 94 95 96 97

OTC OTC OTC OTC OTC OTC OTC

StubAbort MemoryCorrupt OutOfMemory StackOverflow WatchDogDied HwWatchDogDied Unknown

DCC-SCL-1

7907 ST24FC21

DCC-SDA-2 12

15

Device TEA6422D MSP3451G PCF8574-SCAVIO PCF8591 FS6377 PCF8574-PSU 24C16 OTC 24C16 PW SAA7118 AD9887 SDA9400 EP1K30QC

5

0372

13 14

Error 1 2 3 4 5 6 7 8 9 10 11 12

5

DDC 7 NVM

DCC-SCL-2

Item 7798 7812 7540 7530 7570 7370 7430 7580 7225 7170 7280 7656

Diagr. SC13 SC14 SC8 SC8 SC9 P3 SC7 SC9 SC5 SC4 SC5 SC11

PDP 7341

P3

7308A/B 7308C/D 7330A/B 7330C/D 7362 7366A

P3 P3 P3 P3 P3 P3

n.a.

n.a.

7383 7383 7383 7383 7383 7383 7383

SC7 SC7 SC7 SC7 SC7 SC7 SC7

HW = HARDWARE SW = SOFTWARE

CL 26532038_005.eps 160402


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 28

Testpoint Overview Audio Amplifier Panel

Mapping Testpoints Power Supply

CL 26532038_024.eps 150402

F201 F201 F202 F202 F203 F203 F204 F204 F205 F205 F206 F206 F207 F207 F211 F211 F231 F231 F235 F235 F241 F241 F245 F245 F258 F258 F273 F273 F301 F301 F307 F307 F328 F328 F330 F330 F365 F365 F401 F401 F407 F407 F428 F428 F430 F430 F465 F465 F501 F501 F507 F507 F528 F528 F530 F530 F565 F565 F601 F601 F607 F607 F628 F628 F630 F630 F665 F665 F710 F710 F711 F711 F712 F712 F713 F713 F714 F714 F717 F717

C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 B2 B2 A2 A2 A1 A1 A2 A2 A1 A1 A2 A2 B2 B2 A2 A2 B2 B2 B1 B1 A1 A1 B1 B1 A2 A2 A2 A2 A1 A1 A1 A1 A1 A1 C2 C2 C2 C2 C1 C1 C1 C1 B1 B1 B2 B2 B2 B2 B1 B1 B1 B1 B1 B1 C2 C2 C2 C2 B2 B2 B2 B2 B2 B2 C2 C2

F718 F718 F719 F719 F720 F720 F723 F723 F724 F724 F725 F725 F730 F730 F732 F732 F733 F733 F735 F735 F736 F736 F740 F740 F742 F742 F743 F743 F745 F745 F746 F746 F759 F759 F770 F770 F771 F771 F772 F772 F774 F774 F776 F776 F777 F777 F780 F780 F781 F781 F782 F782 F784 F784 F786 F786 F787 F787 F796 F796 F797 F797 F798 F798 F799 F799

C2 C2 C2 C2 C2 C2 B2 B2 B2 B2 B2 B2 B2 B2 A2 A2 A2 A2 B2 B2 A2 A2 A2 A2 A2 A2 A2 A2 B2 B2 A2 A2 C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 C2 C2 C2 C2 C1 C1 C1 C1 C2 C2 C1 C1 C1 C1 C1 C1 A1 A1 A1 A1 A1 A1 A1 A1

F001 F002 F003 F004 F005 F006 F007 F008 F009 F014 F015 F016 F017 F102 F106 F107 F110 F111 F113 F114 F115 F116 F118 F119 F120 F121 F122 F123 F124 F125 F126 F127 F128 F129 F130 F131 F132 F133 F134 F135 F136 F137 F138 F139 F140 F260 F261 F262 F263 F264 F290 F291 F292 F293 F294 F295 F296 F297 F298 F300 F301 F302 F303 F304 F305 F306 F307 F308 F309 F310 F311 F312 F313 F314 F315 F316 F317 F318

A6 C6 B6 B6 C6 B6 A7 A6 A6 D5 B4 C2 C1 F1 F1 F1 B4 D4 C2 G5 G2 E3 E1 E1 F1 E1 E1 E1 E1 E1 E1 F1 E1 F1 E2 E2 E1 F2 E1 E2 E1 E2 E1 E2 F1 B1 G1 G2 G2 G1 A1 G5 A1 A1 A1 A1 A1 A1 A1 F6 G5 D3 G6 G6 G6 G5 G5 G5 G5 G5 A1 G6 G8 G8 G8 G8 G8 G8

F319 F320 F321 F322 F323 F343 F368 F400 F401 F402 F403 F404 F405 F406 F407 F408 F409 F410 F411 F412 F500 F501 F502 F503 F504 F505 F509 F510 F600 F601 F604 F605 F606 F608 F609 F610 F700 F701 F996 F997 F998 F999 I001 I001 I002 I002 I003 I003 I004 I004 I005 I005 I006 I006 I007 I007 I008 I008 I009 I009 I010 I010 I011 I011 I012 I012 I013 I013 I014 I014 I015 I015 I016 I016 I017 I017 I018 I018

G8 G8 G8 G4 F3 G4 F1 G8 F9 G9 G9 G9 G9 G9 G9 G8 G8 F8 E6 E5 F7 F6 F5 E5 G5 G5 G5 G6 D6 E7 D6 D6 C9 B9 A9 B9 A1 A1 A3 A3 A3 A3 A7 A7 B6 B6 A6 A6 A6 A6 A7 A7 A7 A7 A6 A6 A6 A6 A6 A6 A7 A7 A6 A6 A6 A6 A7 A7 A6 A6 A6 A6 A5 A5 A6 A6 A7 A7

I019 I019 I020 I020 I021 I021 I022 I022 I023 I023 I024 I024 I025 I025 I026 I026 I027 I027 I028 I028 I029 I029 I030 I030 I031 I031 I032 I032 I033 I033 I034 I034 I035 I035 I036 I036 I037 I037 I038 I038 I039 I039 I040 I040 I041 I041 I042 I042 I043 I043 I044 I044 I045 I045 I046 I046 I047 I047 I048 I048 I049 I049 I050 I050 I051 I051 I052 I052 I053 I053 I054 I054 I055 I055 I056 I056 I057 I057

A5 A5 A7 A7 A7 A7 A7 A7 A7 A7 A7 A7 A6 A6 A7 A7 A6 A6 A6 B6 A6 A6 D6 D6 A6 A6 A6 A6 A7 A7 A5 A5 A7 A7 A7 A7 C6 C6 C6 C6 B6 B6 C5 D5 C6 C6 B6 C6 C6 C6 C6 C6 C6 C6 C6 C6 B6 B6 B7 B7 A5 A5 B6 B6 B6 B6 B7 B7 B6 B6 B6 B6 B6 B6 A7 A7 B6 B6

I059 I059 I060 I060 I061 I061 I062 I062 I063 I063 I064 I064 I065 I065 I066 I066 I067 I067 I069 I069 I070 I070 I071 I071 I072 I072 I073 I073 I074 I074 I075 I075 I076 I076 I077 I077 I078 I078 I079 I079 I080 I080 I081 I081 I082 I082 I083 I083 I084 I084 I085 I085 I088 I088 I089 I089 I090 I090 I091 I091 I092 I092 I093 I093 I094 I094 I095 I095 I096 I096 I098 I098 I101 I101 I102 I102 I103 I103

B6 B6 D5 D5 D5 D5 D5 D5 D5 D5 D6 D6 B3 B3 C6 C6 A4 A4 B3 B3 B3 B3 A4 A4 C3 C3 B4 B4 B2 B2 C2 C2 B4 B4 B2 B2 C2 C2 C2 C2 B2 B2 A5 A5 B5 B5 B5 B5 B5 B5 D5 D5 D5 D5 D5 D5 D5 E5 D5 D5 D5 D5 D5 D5 D5 D5 B1 B1 D1 D1 G7 G7 B4 B4 B4 B4 B5 C5

I104 I104 I105 I105 I106 I106 I107 I107 I108 I108 I109 I109 I110 I110 I111 I111 I112 I112 I113 I113 I114 I114 I115 I115 I116 I116 I117 I117 I118 I118 I120 I120 I121 I121 I122 I122 I123 I123 I124 I124 I125 I125 I126 I126 I127 I127 I128 I128 I129 I129 I131 I131 I132 I132 I135 I135 I152 I152 I153 I153 I154 I154 I155 I155 I156 I156 I157 I157 I158 I158 I159 I159 I160 I160 I161 I161 I200 I200

B4 B4 C5 C5 B4 B4 C3 C3 C5 C5 C5 C5 C4 C4 C4 C4 B4 B4 C5 C5 B5 B5 C4 C4 C4 C4 C4 C4 C4 C4 D5 D5 C5 C5 C2 C2 C5 C5 C5 C5 C4 C4 D4 D4 C5 C5 D5 D5 C5 C5 D5 D5 C4 D4 C5 C5 E4 E4 D4 D4 D4 D4 D4 D4 D4 D4 D5 D5 B1 B1 B1 B1 B1 B1 B2 B2 C2 C2

I201 I201 I202 I202 I203 I203 I204 I204 I207 I207 I208 I208 I209 I209 I210 I210 I211 I211 I212 I212 I213 I213 I214 I214 I215 I215 I216 I216 I217 I217 I218 I218 I219 I219 I220 I220 I221 I221 I222 I222 I224 I224 I225 I225 I230 I230 I231 I231 I232 I232 I233 I233 I234 I234 I235 I235 I236 I236 I237 I237 I238 I238 I240 I240 I241 I241 I243 I243 I260 I260 I261 I261 I262 I262 I263 I263 I264 I264

C1 C1 C2 C2 C2 C2 B2 B2 C2 C2 F5 F5 F5 F5 E4 E4 E5 E5 E5 E5 F5 F5 F4 F4 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 C2 C2 F2 F2 F2 F2 E3 E3 E3 E3 E2 E2 F3 F3 F4 F4 F2 F2 F3 F3 F5 F5 E4 E4 E3 E3 F2 F2 G2 G2 G1 G1 G2 G2 G2 G2

I265 I265 I266 I266 I267 I267 I268 I268 I269 I269 I270 I270 I290 I290 I291 I291 I292 I292 I293 I293 I300 I300 I301 I301 I302 I302 I303 I303 I304 I304 I305 I305 I306 I306 I307 I307 I308 I308 I309 I309 I310 I310 I311 I311 I312 I312 I313 I313 I314 I314 I315 I315 I316 I316 I318 I318 I322 I322 I324 I324 I325 I325 I326 I326 I327 I327 I330 I330 I331 I331 I332 I332 I334 I334 I335 I335 I338 I338

G1 G1 F2 F2 G2 G2 F1 F1 G2 G2 G2 G2 A3 A3 B2 B2 A3 A3 A3 A3 E2 E2 E4 E4 F4 F4 G4 G4 G2 G2 G4 G4 G3 G3 G3 G3 G4 G4 G3 G3 G4 G4 G4 G4 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G2 G2 G3 G3 G5 G5 G5 G5 G5 G5 G2 G2 G2 G2 G2 G2 G3 G3 G2 G2 G2 G2

I339 I339 I341 I341 I342 I342 I344 I344 I345 I345 I347 I347 I348 I348 I349 I349 I350 I350 I351 I351 I352 I352 I362 I362 I363 I363 I364 I364 I365 I365 I366 I366 I367 I367 I370 I370 I371 I371 I372 I372 I373 I373 I374 I374 I375 I375 I376 I376 I377 I377 I378 I378 I380 I380 I383 I383 I384 I384 I385 I385 I386 I386 I387 I387 I388 I388 I389 I389 I390 I390 I391 I391 I392 I392 I396 I396 I400 I400

G4 G4 G4 G4 G3 G3 G4 G4 G4 G4 G4 G4 G3 G3 F3 G3 G3 G3 F3 G3 G3 G3 G4 G4 G5 G5 G4 G4 G4 G4 G3 G3 G4 G4 G5 G5 G3 G3 G3 G3 G3 G3 F4 G4 G5 G5 G4 G4 G5 G5 G5 G5 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G2 G2 G4 G4 G4 G4 G4 G4 G4 G4 F9 F9

I401 I401 I402 I402 I403 I403 I404 I404 I405 I405 I406 I406 I407 I407 I408 I408 I409 I409 I410 I410 I411 I411 I412 I412 I413 I413 I414 I414 I415 I415 I416 I416 I417 I417 I418 I418 I501 I501 I502 I502 I503 I503 I504 I504 I505 I505 I506 I506 I507 I507 I508 I508 I509 I509 I510 I510 I511 I511 I512 I512 I513 I513 I514 I514 I515 I515 I516 I516 I517 I517 I518 I518 I603 I603 I604 I604 I605 I605

F9 F9 F9 F9 E9 E9 D9 E9 D8 D8 E6 E6 E5 E5 E7 E7 D9 D9 D9 D9 E6 E6 E5 E5 E5 E5 E5 E5 D5 E5 D5 D5 E6 E6 F8 F8 E7 E7 E7 E7 F7 F7 C6 C6 F6 F6 F6 F6 F6 F6 F6 F6 F7 F7 F6 F6 F7 F7 F6 F6 F6 F6 F6 F6 G6 G6 G7 G7 F6 F6 C6 C6 A8 A8 C8 C8 B9 B9

I606 I606 I607 I607 I608 I608 I609 I609 I610 I610 I611 I611 I612 I612 I613 I613 I614 I614 I615 I615 I616 I616 I617 I617 I618 I618 I619 I619 I620 I620 I621 I621 I622 I622 I623 I623 I624 I624 I625 I625 I626 I626 I627 I627 I628 I628 I629 I629 I630 I630 I631 I631 I632 I632 I633 I633 I634 I634 I635 I635 I636 I636 I700 I700 I701 I701 I703 I703 I704 I704 I705 I705 I706 I706 I708 I708 I709 I709

B8 B8 B8 B8 B8 B8 B9 B9 A8 A8 A8 A8 A8 A8 A8 A8 A9 A9 C9 C9 C9 C9 C9 C9 C9 C9 C9 C9 B9 B9 C9 C9 C9 C9 C9 C9 B9 B9 B9 B9 B9 B9 C9 C9 C9 C9 D9 D9 B9 B9 A8 A8 A8 A8 C9 C9 B8 B8 B8 B8 C9 C9 A2 A2 A2 A2 A1 A1 A1 A1 A2 A2 A3 A3 A3 A3 A3 A3

I710 I710 I711 I711 I712 I712 I713 I713 I900 I901 I902 I903 I904 I905 I906

CL 26532038_34m.eps 150402

A2 A2 A1 A1 A2 A2 A3 A3 G7 G7 G7 G7 G7 G7 G8


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 29

Testpoint Overview Power Supply

CL 26532038_034.eps 160402

F001 F002 F003 F004 F005 F006 F007 F008 F009 F014 F015 F016 F017 F102 F106 F107 F110 F111 F113 F114 F115 F116 F118 F119 F120 F121 F122 F123 F124 F125 F126 F127 F128 F129 F130 F131 F132 F133 F134 F135 F136 F137 F138 F139 F140 F260 F261 F262 F263 F264 F290 F291 F292 F293 F294 F295 F296 F297 F298 F300 F301 F302 F303 F304 F305 F306 F307 F308 F309 F310 F311 F312 F313 F314 F315 F316 F317 F318 F319 F320 F321 F322 F323 F343 F368 F400 F401 F402 F403 F404 F405 F406 F407 F408 F409 F410 F411 F412 F500 F501 F502 F503 F504 F505 F509 F510 F600 F601 F604 F605 F606 F608 F609 F610 F700 F701 F996 F997 F998 F999 I001 I001 I002 I002 I003 I003 I004 I004 I005 I005 I006 I006

A6 C6 B6 B6 C6 B6 A7 A6 A6 D5 B4 C2 C1 F1 F1 F1 B4 D4 C2 G5 G2 E3 E1 E1 F1 E1 E1 E1 E1 E1 E1 F1 E1 F1 E2 E2 E1 F2 E1 E2 E1 E2 E1 E2 F1 B1 G1 G2 G2 G1 A1 G5 A1 A1 A1 A1 A1 A1 A1 F6 G5 D3 G6 G6 G6 G5 G5 G5 G5 G5 A1 G6 G8 G8 G8 G8 G8 G8 G8 G8 G8 G4 F3 G4 F1 G8 F9 G9 G9 G9 G9 G9 G9 G8 G8 F8 E6 E5 F7 F6 F5 E5 G5 G5 G5 G6 D6 E7 D6 D6 C9 B9 A9 B9 A1 A1 A3 A3 A3 A3 A7 A7 B6 B6 A6 A6 A6 A6 A7 A7 A7 A7

I007 I007 I008 I008 I009 I009 I010 I010 I011 I011 I012 I012 I013 I013 I014 I014 I015 I015 I016 I016 I017 I017 I018 I018 I019 I019 I020 I020 I021 I021 I022 I022 I023 I023 I024 I024 I025 I025 I026 I026 I027 I027 I028 I028 I029 I029 I030 I030 I031 I031 I032 I032 I033 I033 I034 I034 I035 I035 I036 I036 I037 I037 I038 I038 I039 I039 I040 I040 I041 I041 I042 I042 I043 I043 I044 I044 I045 I045 I046 I046 I047 I047 I048 I048 I049 I049 I050 I050 I051 I051 I052 I052 I053 I053 I054 I054 I055 I055 I056 I056 I057 I057 I059 I059 I060 I060 I061 I061 I062 I062 I063 I063 I064 I064 I065 I065 I066 I066 I067 I067 I069 I069 I070 I070 I071 I071 I072 I072 I073 I073 I074 I074

A6 A6 A6 A6 A6 A6 A7 A7 A6 A6 A6 A6 A7 A7 A6 A6 A6 A6 A5 A5 A6 A6 A7 A7 A5 A5 A7 A7 A7 A7 A7 A7 A7 A7 A7 A7 A6 A6 A7 A7 A6 A6 A6 B6 A6 A6 D6 D6 A6 A6 A6 A6 A7 A7 A5 A5 A7 A7 A7 A7 C6 C6 C6 C6 B6 B6 C5 D5 C6 C6 B6 C6 C6 C6 C6 C6 C6 C6 C6 C6 B6 B6 B7 B7 A5 A5 B6 B6 B6 B6 B7 B7 B6 B6 B6 B6 B6 B6 A7 A7 B6 B6 B6 B6 D5 D5 D5 D5 D5 D5 D5 D5 D6 D6 B3 B3 C6 C6 A4 A4 B3 B3 B3 B3 A4 A4 C3 C3 B4 B4 B2 B2

I075 I075 I076 I076 I077 I077 I078 I078 I079 I079 I080 I080 I081 I081 I082 I082 I083 I083 I084 I084 I085 I085 I088 I088 I089 I089 I090 I090 I091 I091 I092 I092 I093 I093 I094 I094 I095 I095 I096 I096 I098 I098 I101 I101 I102 I102 I103 I103 I104 I104 I105 I105 I106 I106 I107 I107 I108 I108 I109 I109 I110 I110 I111 I111 I112 I112 I113 I113 I114 I114 I115 I115 I116 I116 I117 I117 I118 I118 I120 I120 I121 I121 I122 I122 I123 I123 I124 I124 I125 I125 I126 I126 I127 I127 I128 I128 I129 I129 I131 I131 I132 I132 I135 I135 I152 I152 I153 I153 I154 I154 I155 I155 I156 I156 I157 I157 I158 I158 I159 I159 I160 I160 I161 I161 I200 I200 I201 I201 I202 I202 I203 I203

C2 C2 B4 B4 B2 B2 C2 C2 C2 C2 B2 B2 A5 A5 B5 B5 B5 B5 B5 B5 D5 D5 D5 D5 D5 D5 D5 E5 D5 D5 D5 D5 D5 D5 D5 D5 B1 B1 D1 D1 G7 G7 B4 B4 B4 B4 B5 C5 B4 B4 C5 C5 B4 B4 C3 C3 C5 C5 C5 C5 C4 C4 C4 C4 B4 B4 C5 C5 B5 B5 C4 C4 C4 C4 C4 C4 C4 C4 D5 D5 C5 C5 C2 C2 C5 C5 C5 C5 C4 C4 D4 D4 C5 C5 D5 D5 C5 C5 D5 D5 C4 D4 C5 C5 E4 E4 D4 D4 D4 D4 D4 D4 D4 D4 D5 D5 B1 B1 B1 B1 B1 B1 B2 B2 C2 C2 C1 C1 C2 C2 C2 C2

I204 I204 I207 I207 I208 I208 I209 I209 I210 I210 I211 I211 I212 I212 I213 I213 I214 I214 I215 I215 I216 I216 I217 I217 I218 I218 I219 I219 I220 I220 I221 I221 I222 I222 I224 I224 I225 I225 I230 I230 I231 I231 I232 I232 I233 I233 I234 I234 I235 I235 I236 I236 I237 I237 I238 I238 I240 I240 I241 I241 I243 I243 I260 I260 I261 I261 I262 I262 I263 I263 I264 I264 I265 I265 I266 I266 I267 I267 I268 I268 I269 I269 I270 I270 I290 I290 I291 I291 I292 I292 I293 I293 I300 I300 I301 I301 I302 I302 I303 I303 I304 I304 I305 I305 I306 I306 I307 I307 I308 I308 I309 I309 I310 I310 I311 I311 I312 I312 I313 I313 I314 I314 I315 I315 I316 I316 I318 I318 I322 I322 I324 I324

B2 B2 C2 C2 F5 F5 F5 F5 E4 E4 E5 E5 E5 E5 F5 F5 F4 F4 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 F5 C2 C2 F2 F2 F2 F2 E3 E3 E3 E3 E2 E2 F3 F3 F4 F4 F2 F2 F3 F3 F5 F5 E4 E4 E3 E3 F2 F2 G2 G2 G1 G1 G2 G2 G2 G2 G1 G1 F2 F2 G2 G2 F1 F1 G2 G2 G2 G2 A3 A3 B2 B2 A3 A3 A3 A3 E2 E2 E4 E4 F4 F4 G4 G4 G2 G2 G4 G4 G3 G3 G3 G3 G4 G4 G3 G3 G4 G4 G4 G4 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G2 G2 G3 G3

I325 I325 I326 I326 I327 I327 I330 I330 I331 I331 I332 I332 I334 I334 I335 I335 I338 I338 I339 I339 I341 I341 I342 I342 I344 I344 I345 I345 I347 I347 I348 I348 I349 I349 I350 I350 I351 I351 I352 I352 I362 I362 I363 I363 I364 I364 I365 I365 I366 I366 I367 I367 I370 I370 I371 I371 I372 I372 I373 I373 I374 I374 I375 I375 I376 I376 I377 I377 I378 I378 I380 I380 I383 I383 I384 I384 I385 I385 I386 I386 I387 I387 I388 I388 I389 I389 I390 I390 I391 I391 I392 I392 I396 I396 I400 I400 I401 I401 I402 I402 I403 I403 I404 I404 I405 I405 I406 I406 I407 I407 I408 I408 I409 I409 I410 I410 I411 I411 I412 I412 I413 I413 I414 I414 I415 I415 I416 I416 I417 I417 I418 I418

G5 G5 G5 G5 G5 G5 G2 G2 G2 G2 G2 G2 G3 G3 G2 G2 G2 G2 G4 G4 G4 G4 G3 G3 G4 G4 G4 G4 G4 G4 G3 G3 F3 G3 G3 G3 F3 G3 G3 G3 G4 G4 G5 G5 G4 G4 G4 G4 G3 G3 G4 G4 G5 G5 G3 G3 G3 G3 G3 G3 F4 G4 G5 G5 G4 G4 G5 G5 G5 G5 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G3 G2 G2 G4 G4 G4 G4 G4 G4 G4 G4 F9 F9 F9 F9 F9 F9 E9 E9 D9 E9 D8 D8 E6 E6 E5 E5 E7 E7 D9 D9 D9 D9 E6 E6 E5 E5 E5 E5 E5 E5 D5 E5 D5 D5 E6 E6 F8 F8

I501 I501 I502 I502 I503 I503 I504 I504 I505 I505 I506 I506 I507 I507 I508 I508 I509 I509 I510 I510 I511 I511 I512 I512 I513 I513 I514 I514 I515 I515 I516 I516 I517 I517 I518 I518 I603 I603 I604 I604 I605 I605 I606 I606 I607 I607 I608 I608 I609 I609 I610 I610 I611 I611 I612 I612 I613 I613 I614 I614 I615 I615 I616 I616 I617 I617 I618 I618 I619 I619 I620 I620 I621 I621 I622 I622 I623 I623 I624 I624 I625 I625 I626 I626 I627 I627 I628 I628 I629 I629 I630 I630 I631 I631 I632 I632 I633 I633 I634 I634 I635 I635 I636 I636 I700 I700 I701 I701 I703 I703 I704 I704 I705 I705 I706 I706 I708 I708 I709 I709 I710 I710 I711 I711 I712 I712 I713 I713 I900 I901 I902 I903

E7 I904 E7 I905 E7 I906 E7 F7 F7 C6 C6 F6 F6 F6 F6 F6 F6 F6 F6 F7 F7 F6 F6 F7 F7 F6 F6 F6 F6 F6 F6 G6 G6 G7 G7 F6 F6 C6 C6 A8 A8 C8 C8 B9 B9 B8 B8 B8 B8 B8 B8 B9 B9 A8 A8 A8 A8 A8 A8 A8 A8 A9 A9 C9 C9 C9 C9 C9 C9 C9 C9 C9 C9 B9 B9 C9 C9 C9 C9 C9 C9 B9 B9 B9 B9 B9 B9 C9 C9 C9 C9 D9 D9 B9 B9 A8 A8 A8 A8 C9 C9 B8 B8 B8 B8 C9 C9 A2 A2 A2 A2 A1 A1 A1 A1 A2 A2 A3 A3 A3 A3 A3 A3 A2 A2 A1 A1 A2 A2 A3 A3 G7 G7 G7 G7

G7 G7 G8


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 30

Testpoint Overview SCAVIO F070 F070 F071 F071 F072 F072 F073 F073 F074 F074 F075 F075 F076 F076 F089 F089 F146 F146 F152 F152 F158 F158 F170 F170 F171 F171 F172 F172 F173 F173 F174 F174 F175 F175 F176 F176

C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 B1 B1 B4 B4 B4 B4 B4 B4 C5 C5 C4 C4 C3 C3 C3 C3 C4 C4 C4 C4 C4 C4

F177 F177 F178 F178 F180 F180 F181 F181 F196 F196 F197 F197 F198 F198 F199 F199 F201 F201 F202 F202 F203 F203 F210 F211 F216 F216 F220 F220 F221 F221 F222 F222 F223 F223 F224 F224

C4 C4 C3 C3 C3 C3 C3 C3 B4 B4 B4 B4 C5 C5 C4 C4 C5 C5 B4 B4 C5 C5 C3 C3 C3 C3 C3 C3 B2 B2 B3 B3 B3 B3 C3 C3

F225 F225 F226 F226 F227 F227 F228 F228 F229 F229 F230 F230 F231 F231 F232 F232 F233 F233 F234 F234 F235 F235 F236 F236 F237 F237 F240 F241 F242 F245 F246 F247 F249 F249 F250 F250

A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 C2 C2 C2 C2 C3 C3 B3 B3 B3 B3 B3 B5 B5 B5 B3 B3 B2 B2

F251 F251 F260 F260 F261 F261 F262 F262 F263 F263 F264 F264 F265 F265 F300 F300 F301 F301 F303 F303 F304 F304 F305 F305 F306 F306 F307 F307 F308 F308 F309 F309 F310 F310 F311 F311

B2 B2 C2 C2 B3 C3 B3 C3 B3 B3 B3 C3 B3 C3 A4 A4 B4 B4 A3 A3 A3 A3 A3 A3 A3 A3 A2 A3 A3 A3 A3 A3 A3 A3 A3 A3

F312 F312 F313 F313 F314 F314 F315 F315 F316 F316 F317 F317 F318 F318 F319 F319 F320 F320 F321 F321 F322 F322 F323 F323 F324 F324 F325 F325 F326 F326 F380 F380 F381 F381 F382 F382

B2 B3 B3 B3 B3 B3 B2 B2 B3 B3 B3 B3 B3 B3 A2 A2 C8 C8 C8 C8 C8 C8 B3 B3 A5 A5 A2 A2 B2 B2 A7 A7 A7 A7 A8 A8

F383 F383 F384 F384 F385 F385 F386 F386 F387 F387 F388 F388 F389 F389 F390 F390 F391 F391 F392 F392 F393 F393 F394 F394 F395 F395 F396 F396 F397 F397 F398 F398 F399 F399 F400 F400

B7 C7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7

F401 F401 F402 F402 F403 F403 F404 F404 F405 F405 F406 F406 F407 F407 F408 F408 F409 F409 F410 F410 F411 F411 F412 F412 F413 F413 F414 F414 F415 F415 F416 F416 F417 F417 F418 F418

B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7 B7

F419 F419 F420 F420 F421 F421 F422 F422 F423 F423 F424 F424 F425 F425 F426 F426 F427 F427 F428 F428 F429 F429 F430 F430 F431 F431 F432 F432 F450 F450 F451 F451 F452 F452 F453 F453

B7 B7 B8 B8 B7 B7 B8 B8 B7 C7 B7 B7 B6 B6 B6 C6 A7 A7 A7 A7 C8 C8 B6 B6 B7 B7 B8 B8 A8 A8 A8 A8 A8 A8 A8 A8

F459 F459 F460 F460 F461 F461 F462 F462 F463 F463 F464 F464 F465 F465 F466 F466 F467 F467 F468 F468 F469 F469 F470 F470 F471 F471 F472 F472 F473 F473 F474 F474 F475 F475 F476 F476

C8 C8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8

F477 F477 F478 F478 F479 F479 F480 F480 F481 F481 F482 F482 F483 F483 F484 F484 F485 F485 F486 F486 F487 F487 F488 F488 F489 F489 F490 F490 F492 F492 F493 F493 F494 F494 F495 F495

C8 C8 B8 B8 C8 C8 A8 A8 A8 A8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B8 B7 B7 B8 B8 B8 B8 B8 B8 B8 B8

F496 F496 F497 F497 F506 F507 F507 F520 F520 F521 F521 F522 F522 F523 F523 F524 F524 F525 F526 F529 F529 F530 F530 F531 F531 F532 F532 F533 F533 F534 F534 F535 F535 F536 F536 F537

B8 B8 A8 A8 B8 B8 B8 B6 B6 B7 B7 B7 B7 B7 B7 B8 B8 B6 B6 A7 A7 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8

F537 F538 F538 F539 F539 F540 F540 F541 F541 F542 F542 F543 F543 F544 F544 F545 F545 F546 F546 F547 F547 F548 F548 F549 F549 F550 F550 F551 F551 F552 F552 F553 F553 F554 F554 F555

A8 A8 A8 A8 A8 A7 A7 A7 A7 A7 A7 A7 A7 A7 A7 A7 A7 A2 A2 A2 A2 A2 A2 A2 A2 A3 A3 A3 A3 A3 A3 A3 A3 A3 A3 A3

F555 F556 F556 F557 F557 F558 F558 F559 F559 F560 F560 F561 F561 F562 F562 F563 F563 F564 F564 F565 F565 F566 F566 F567 F567 F568 F568 F569 F569 F570 F570 F571 F571 F572 F572 F573

A3 A3 A3 A3 A3 A3 A3 A3 A3 A4 A4 A4 A4 A3 A3 A4 A4 A4 A4 A4 A4 A4 A4 A5 B5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5

F573 F574 F574 F575 F575 F576 F576 F577 F577 F578 F578 F579 F579 F580 F580 F581 F581 F582 F582 F583 F583 F584 F584 F585 F585 F586 F586 F587 F587 F588 F588 F589 F589 F590 F590 F591

A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A4 A5

F591 F592 F592 F593 F593 F594 F594 F595 F595 F596 F596 F597 F597 F598 F598 F599 F599 F600 F600 F601 F601 F602 F602 F603 F603 F604 F604 F605 F605 F606 F606 F607 F607 F608 F608 F609

A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A5 A4 A4 A4 A4 A4 A4 A4

F609 F610 F610 F611 F611 F612 F612 F613 F613 F614 F614 F615 F615 F616 F616 F617 F618 F619 F620 F621 F622 F622 F623 F623 F624 F624 F625 F625 F626 F626 F627 F627 F628 F628 F629 F629

A4 A4 A4 A4 A4 A4 A4 A4 A4 A6 A6 A7 A7 A7 A7 A5 B4 B5 B5 B4 A5 A5 A6 B6 B5 B5 B5 B5 B5 B5 A5 A5 A4 A4 A5 A5

F630 F630 F631 F631 F632 F632 F633 F634 F634 F635 F635 F636 F636 F637 F637 F638 F638 F639 F639 F640 F640 F641 F641 F642 F642 F643 F643 F644 F644 F645 F645 F646 F646 F647 F647 F648

A5 A5 A5 A5 A5 A5 B5 A6 A6 B5 B5 B6 B6 B6 B6 A7 A7 B6 B6 A8 A8 A6 A6 A8 A8 A7 A7 A8 A8 A7 A7 A7 A7 A6 A6 A6

F648 F649 F649 F650 F650 F651 F651 F652 F652 F653 F653 F654 F654 F655 F655 F656 F656 F657 F657 F658 F658 F659 F659 F660 F660 F661 F661 F662 F662 F670 F670 F671 F671 F672 F672 F673

A6 B7 B7 A7 A7 A7 A7 A6 A6 A7 A7 A8 B8 A8 A8 A7 A7 A8 A8 A8 A8 A8 A8 B6 B6 B5 B5 B5 B5 A7 A7 A7 A7 A6 A6 A6

F673 F674 F674 F675 F675 F676 F676 F677 F677 F678 F678 F679 F679 F680 F680 F681 F681 F682 F682 F683 F683 F684 F684 F685 F685 F686 F686 F690 F690 F691 F691 F692 F692 F710 F710 F711

A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A7 A7 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 A6 C6 C6 C7

F711 F712 F712 F713 F713 F714 F714 F715 F715 F716 F716 F717 F717 F718 F718 F719 F719 F720 F720 F721 F721 F722 F722 F723 F723 F724 F724 F725 F725 F810 F810 F811 F811 F812 F812 F813

C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C1 C1 C2 C2 C2 C2 C2 C2 C1 C1 C1 C1 B7 B7 C6 C6 C6 C6 A1 A1 B1 B1 A1 A1 A1

F813 F814 F814 F815 F815 F816 F816 F817 F817 F820 F820 F870 F870 F871 F871 F872 F872 F873 F873 F874 F874 F875 F875 I000 I000 I001 I001 I002 I002 I003 I003 I004 I004 I005 I005 I006

A1 A1 A1 A1 A1 A1 A1 A1 A1 B1 B1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 C1 C1 A2 A2 C1 C1 C1 C1 B1 B1 C1 C1 B1

I006 I007 I007 I008 I008 I009 I009 I010 I010 I011 I011 I012 I012 I013 I013 I014 I014 I015 I015 I016 I016 I017 I017 I018 I018 I019 I019 I020 I020 I021 I021 I022 I022 I023 I023 I024

B1 C1 C1 C1 C1 B1 B1 C1 C1 B1 B1 C1 C1 C1 C1 B1 B1 B3 B3 A5 B5 A1 A1 B1 B1 B1 B1 B1 B1 A1 A1 A1 A1 B1 B1 B1

I024 I025 I025 I026 I026 I027 I027 I028 I028 I029 I029 I030 I030 I031 I031 I032 I032 I033 I033 I034 I034 I035 I035 I036 I036 I037 I037 I050 I050 I051 I051 I052 I052 I053 I053 I054

B1 A1 A1 A2 A2 A1 A1 B8 B8 A1 A1 B1 B1 B1 B1 B1 B1 A1 A1 C1 C1 C1 C1 A5 A5 A5 A5 C2 C2 C2 C2 C2 C2 B2 B2 B1

I054 I055 I055 I056 I056 I057 I057 I058 I058 I059 I059 I060 I060 I061 I061 I062 I062 I063 I063 I064 I064 I065 I065 I066 I066 I067 I067 I068 I068 I069 I069 I070 I070 I071 I071 I072

B1 B1 B1 C1 C1 C1 C1 B1 B1 C1 C1 C1 C1 B2 B2 C2 C2 C1 C1 B1 B1 B1 B1 C1 C1 C1 C1 C1 C1 B2 B2 C1 C1 C2 C2 B2

I072 I073 I073 I074 I074 I075 I075 I076 I076 I077 I077 I078 I078 I079 I079 I080 I080 I081 I081 I082 I082 I083 I083 I084 I084 I085 I085 I086 I086 I087 I087 I088 I088 I100 I100 I101

B2 B2 B2 B2 B2 B2 B2 C2 C2 C1 C1 B1 B1 C1 C1 C2 C2 C1 C1 C1 C1 B1 B1 C3 C3 B1 C1 C1 C1 C1 C1 C1 C1 C2 C2 B2

I101 I102 I102 I103 I103 I104 I104 I105 I105 I106 I106 I107 I107 I108 I108 I109 I109 I110 I110 I111 I111 I112 I112 I113 I113 I114 I114 I115 I115 I116 I116 I117 I117 I118 I118 I119

B2 B1 B1 B1 B1 B1 B1 C2 C2 B2 C2 C2 C2 B2 B2 B1 B1 B1 B1 B1 B1 B2 B2 B2 B2 A2 A2 A2 A2 B1 B1 A2 B2 A2 B2 B2

I119 I120 I120 I121 I121 I122 I122 I123 I123 I124 I124 I125 I125 I126 I126 I127 I127 I128 I128 I129 I129 I130 I130 I131 I131 I151 I151 I152 I152 I153 I153 I154 I154 I155 I155 I156

B2 A2 A2 A2 A2 B1 B1 B2 B2 B2 B2 B2 B2 A2 A2 A2 A2 B2 B2 B3 B3 B2 B2 B1 B1 B4 B4 C4 C4 C4 C4 C4 C4 B4 B4 B4

I156 I157 I157 I158 I158 I159 I159 I160 I160 I161 I161 I162 I162 I165 I165 I166 I166 I200 I200 I201 I201 I202 I202 I203 I203 I204 I204 I205 I205 I206 I206 I220 I220 I221 I221 I222

B4 B4 B4 C4 C4 C4 C4 C3 C3 C3 C3 C4 C4 C3 C3 C3 C3 C3 C3 C2 C2 C2 C2 C3 C3 A3 A3 B2 B2 B2 B2 A2 B2 C8 C8 C8

I222 I223 I223 I224 I224 I225 I225 I226 I226 I227 I227 I228 I228 I229 I229 I230 I230 I231 I231 I232 I232 I233 I233 I234 I234 I235 I235 I236 I236 I237 I237 I238 I238 I239 I239 I240

C8 C8 C8 B2 B2 B8 B8 B8 C8 C8 C8 B8 B8 C8 C8 A8 A8 A8 B8 A8 A8 B8 C8 C8 C8 C8 C8 C8 C8 C8 C8 B8 B8 A8 A8 B8

I240 I241 I241 I242 I242 I243 I243 I244 I244 I245 I245 I246 I246 I247 I247 I248 I248 I249 I249 I250 I250 I251 I251 I252 I252 I253 I253 I254 I254 I255 I255 I256 I256 I257 I257 I258

B8 A8 A8 A3 A3 A3 A3 A3 A3 C8 C8 C8 C8 A3 A3 A3 A3 C8 C8 A3 A3 A3 A3 C8 C8 A3 A3 A3 A3 A3 A3 C8 C8 C8 C8 A3

I258 I259 I259 I260 I260 I261 I261 I262 I262 I263 I263 I264 I264 I265 I265 I266 I266 I267 I267 I268 I268 I269 I269 I270 I270 I271 I271 I272 I272 I273 I273 I274 I274 I275 I275 I276

B3 A3 A3 A3 A3 A3 A3 A3 A3 A4 A4 A4 A4 A3 A3 B3 B3 A4 A4 A4 A4 A4 A4 B4 B4 A3 B3 B4 B4 B7 B7 A4 A4 B4 B4 B3

I276 I277 I277 I278 I278 I279 I279 I280 I280 I281 I281 I282 I282 I283 I283 I284 I284 I285 I285 I286 I286 I287 I287 I288 I288 I289 I289 I290 I290 I291 I291 I292 I292 I293 I293 I294

B3 B6 B6 A3 A3 B6 C6 A3 A3 B4 B4 A3 A3 A3 A3 B6 B6 B3 B3 B3 B3 B3 B3 A3 A3 B6 B6 B6 B6 B3 B3 B6 B6 B4 B4 B3

I294 I295 I295 I296 I296 I344 I344 I345 I345 I346 I346 I347 I347 I348 I348 I349 I349 I350 I350 I351 I351 I352 I352 I353 I353 I354 I354 I355 I355 I356 I356 I357 I357 I358 I358 I359

B3 B8 B8 B5 B5 B6 B6 B6 B6 B7 B7 B7 B7 B7 B7 B7 B7 B6 B6 B6 B6 A8 A8 B7 B7 C7 C7 C7 C7 C8 C8 C7 C7 A8 A8 C8

I359 I360 I360 I361 I361 I362 I362 I363 I363 I364 I364 I365 I365 I366 I366 I400 I400 I401 I401 I402 I402 I405 I405 I406 I406 I407 I407 I408 I408 I409 I409 I430 I430 I431 I431 I432

C8 C7 C7 C8 C8 C8 C8 B7 B7 B7 B7 C8 C8 B7 B7 A7 A7 A3 A3 A3 A3 A3 A3 A4 A4 A4 A4 A2 A2 A2 A2 A5 A5 A5 A5 A5

I432 I433 I433 I435 I435 I436 I436 I480 I480 I481 I481 I482 I482 I483 I483 I485 I485 I486 I486 I501 I501 I502 I502 I503 I503 I504 I504 I505 I505 I506 I506 I507 I507 I530 I530 I531

A5 A5 A5 A3 A3 A3 A3 A5 A5 A6 A6 A5 A5 A5 A5 A6 A6 A5 A5 A7 A7 A8 A8 A8 A8 A7 A7 A7 A7 A7 A7 A7 A7 C6 C6 C6

I531 I532 I532 I533 I533 I534 I534 I535 I535 I536 I536 I537 I537 I538 I538 I539 I539 I540 I540 I541 I541 I542 I542 I543 I543 I544 I544 I545 I545 I546 I546 I547 I547 I548 I548 I549

C6 C6 C6 C1 C1 C1 C1 B6 C6 B6 C6 C6 C6 C1 C1 C1 C1 C1 C1 C7 C7 C7 C7 C7 C7 C1 C1 B7 C7 C7 C7 C6 C6 C7 C7 C6

I549 I550 I550 I551 I551 I552 I552 I553 I553 I554 I554 I555 I555 I556 I556 I557 I557 I558 I558 I559 I559 I560 I560 I561 I561 I562 I562 I563 I563 I564 I564 I565 I565 I566 I566 I567

C6 C7 C7 B7 C7 B7 C7 C5 C5 C7 C7 C5 C5 C5 C5 C2 C2 C2 C2 C7 C7 C2 C2 C6 C6 C7 C7 C7 C7 C7 C7 C2 C2 C2 C2 C7

I567 I568 I568 I569 I569 I570 I570 I571 I571 I572 I572 I573 I573 I574 I574 I575 I575 I576 I576 I577 I577 I578 I578 I579 I579 I580 I580 I581 I581 I582 I582 I583 I583 I584 I584 I585

C7 C2 C2 C6 C6 B6 C6 C7 C7 C7 C7 C7 C7 C6 C6 C6 C6 C1 C1 C1 C1 C7 C7 B7 C7 C7 C7 C1 C1 C6 C6 C8 C8 C6 C6 C6

I585 I586 I586 I587 I587 I588 I588 I589 I589 I590 I590 I591 I591 I592 I592 I593 I593 I594 I594 I595 I595 I596 I596 I597 I597 I598 I598 I599 I599 I650 I650 I651 I651 I652 I652 I653

C6 C1 C1 C1 C1 B6 C6 C6 C6 C7 C7 C8 C8 C6 C6 C8 C8 C8 C8 C6 C6 B6 C6 C1 C1 C7 C7 C6 C6 B1 B1 B1 B1 B1 B1 B1

I653 I654 I654 I655 I655 I656 I656 I657 I657 I658 I658 I659 I659 I660 I660 I661 I661 I662 I662 I663 I663 I664 I664 I665 I665 I666 I666 I667 I667 I668 I668 I669 I669 I670 I670 I671

B1 A1 B1 B1 B1 B1 B1 A1 A1 A1 A1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 A1 A1 A1 A1 B1 B1 B1 B1 B1 B1 B1 B1 B1

I671 I672 I672 I673 I673 I674 I674 I675 I675 I676 I676

B1 B1 B1 B1 B1 B1 B1 A1 A1 A1 A1

CL 26532038_51t.eps 150402


Block Diagrams, Testpoint Overviews and Wiring Diagram

FM23

6.

EN 31

Wiring Diagram

FAN

LSP

+

OPTIONAL

POWER SUPPLY PANEL POS 1005

HIGH

+

XSUS

1

0389

1

0302

LSP

FAN_SUPPLY GND PROT

FAN_SUPPLY GND PROT

YSUS

1

VSND_NEG VSND_NEG GND GND VSND_POS VSND_POS GND +9V_STBY DC_PROT

0390

PDP

LEFT

PDP POS 1104

1

1

1

RIGHT HIGH

FAN

FAN 1

FAN

LSP

RIGHT LOW

+

0323 Va NC Vcc GND GND GND NC Vs Vs Vs

1

CN23 1

LOW Vs Vs Vs NC GND GND GND GND Vcc

0352 1 5V GND GND GND GND GND GND 3V3 3V3 3V3 3V3 3V3 0305

1 Va NC NC GND GND NC Vcc 1 CN6

1

M91

MAINS_LIVE

BLUE

BROWN

0308 MAINS_NEUTRAL

1

0303

N.C. HIGH_LEFT_POS HIGH_LEFT_NEG LOW_LEFT_NEG LOW_LEFT_POS

HIGH_RIGHT_POS HIGH_RIGHT_NEG LOW_RIGHT_NEG LOW_RIGHT_POS 1

1

MAINS-inlet + Filter POS 1061

1x CINCH 9 pole D-shell

15 pole D-shell

4x CINCH

CP91

15 pole D-shell

1 +5V_STBY_SW VGA2_OUTN RC_OUT GND VGA2_RXD VGA2_TXD GND VGA2_V GND VGA2_H GND VGA2_B GND VGA2_G GND VGA2_R GND RC_VGA1 GND VGA1_RXD VGA1_TXD GND VGA1_V GND VGA1_H GND VGA1_B GND VGA1_G GND VGA1_R GND

VGA CONNECTOR PANEL POS 1032

0388 AUDIO_RIGHT_NEG AUDIO_RIGHT_POS RIGHT_GND AUDIO_ENABLE LEFT_GND AUDIO_LEFT_NEG AUDIO_LEFT_POS GND

1 0388

0318 1

foil

AUDIO_RIGHT_NEG AUDIO_RIGHT_POS RIGHT_GND AUDIO_ENABLE LEFT_GND AUDIO_LEFT_NEG AUDIO_LEFT_POS GND

+9V_STBY +9V_STBY_SW 8V6 +5V_STBY_SW +3V3_STBY_SW SCL-1 SDA-1 GND POWER_OK RES STANDBY FAN_SP_1 FAN_SP_2

N.C.

0315

0319

1

1

1

0301 RXIN0GND_LVDS RXIN0+ SCL0 RXIN1GND RXIN1+ SDA0 RXIN2GND_LVDS RXIN2+ CPU-GO RXCLKINPDP-GO RXCLKIN+ IRQ RXIN3PDWN RXIN3+ GND_LVDS

SCAVIO PANEL POS 1063

1

5V GND GND GND GND GND GND 3V3 3V3 3V3 3V3 3V3

0302

+5V_STBY GREEN_LED RED_LED RC_IN LIGHT_SENSOR_IN +8V6 GND +5V_STBY_SW +9V_STBY_SW +9V_STBY

0320

0305

1

AUDIO AMPLIFIER PANEL POS 1050

Vpr2 NC GND GND NC Vcc

Vsk GND Vak GND Iak GND Vrs GND Vra GND PFCgo GND Vcego GND Vsago GND NC GND NC GND

CN7

PDP

VSND_NEG VSND_NEG GND GND VSND_POS VSND_POS GND +9V_STBY DC_PROT

PDP

CN52

1

1

1

1

0319

0306

Vpr2 NC GND GND NC Vcc

Vsk GND Vak GND Iak GND Vrs GND Vra GND PFCgo GND Vcego GND Vsago GND NC GND NC GND

0308 1

1 CN42 Va NC NC GND GND NC Vcc

PDP

0307

MAINS_NEUTRAL

02320 1

+9V_STBY +9V_STBY_SW 8V6 +5V_STBY_SW +3V3_STBY_SW SCL-1 SDA-1 GND POWER_OK RES STANDBY FAN_SP_1 FAN_SP_2

1

0342

1

+5V_STBY GREEN_LED RED_LED RC_IN LIGHT_SENSOR_IN +8V6 GND +5V_STBY_SW +9V_STBY_SW +9V_STBY

0304

+

CN33

1

MAINS_LIVE

RC_IN_ICONN RED_LED RC_OUT_ICONN GND

1

1

Va NC NC GND GND NC Vcc

LED / SWITCH PANEL POS 10720317

1

LEFT

Va NC NC GND GND NC Vcc

Va NC Vcc GND GND GND NC Vs Vs Vs

LSP

0333 Vs Vs Vs NC GND GND GND GND Vcc

0318

+5V_STBY_SW VGA2_OUTN RC_OUT GND VGA2_RXD VGA2_TXD GND VGA2_V GND VGA2_H GND VGA2_B GND VGA2_G GND VGA2_R GND RC_VGA1 GND VGA1_RXD VGA1_TXD GND VGA1_V GND VGA1_H GND VGA1_B GND VGA1_G GND VGA1_R GND

CN1 1

liof

RXIN0GND_LVDS RXIN0+ SCL0 RXIN1GND RXIN1+ SDA0 RXIN2GND_LVDS RXIN2+ CPU-GO RXCLKINPDP-GO RXCLKIN+ IRQ RXIN3PDWN RXIN3+ GND_LVDS

CL 16532099_039.eps 280901


Electrical Diagrams and PWB Layouts

FM23

7.

EN 32

7. Electrical Diagrams and PWB Layouts Audio Panel & Supply: DC Protection

AU_EN_NOT

AU_EN_NOT

VSND_POS

VSND_NEG

VSND_POS

OUT_LH

OUT_PROT

OUT_LL GND_O

VSND_POS

VSND_NEG

GND_F

DIAGRAM

VSND_POS

VSND_NEG

VCC_10_POS

1 OUT_RH

OUT_RH

VSND_POS

VSND_NEG

0304 OUT_RH

OUT_RH

4

GND_O

VSND_NEG

GND_O

PH-S

OUT_RL

1

F

OUT_RL

PH-S

AMPLIFIER RIGHT_HIGH

DIAGRAM VSND_POS

VSND_NEG

VSND_POS

VSND_NEG

VCC_10_POS

VCC_10_NEG

VSND_POS

GND

OUT_PROT

OUT_PROT

OUT_PROT

SUPPLY & DC PROTECTION

DIAGRAM GND

GND_I

VSND_NEG

E

VSND_POS

GND_O

R_LOW

FILTERS GND

R_HIGH GND_I

R_LOW

R_HIGH

R_HIGH

VCC_10_NEG

AU_EN_NOT R_HIGH

GND_F

PH-S

VSND_NEG AU_EN_NOT

1

VSND_POS

GND_O

R_NEG

F

G

GND_O

GND

PH-S

D

OUT_LL DC_PROT

R_POS

1

+9V_STBYA

0302 9

GND

VCC_10_POS

AUDIO_ENABLE

0303 5

OUT_LH

+9V_STBY

GND_I

C

GND_O

OUT_LL

OUT_LL

DIAGRAM VCC_10_NEG

E

+9V_STBYA

VCC_10_POS

GND_O

VCC_10_NEG

GND_O

GND

B

L_NEG GND_F

13

OUT_LH

AU_EN_NOT GND_I

L_POS

12

OUT_PROT

DIAGRAM

AMPLIFIER LEFT_LOW GND_F

8

11

VCC_10_POS

L_LOW AU_EN_NOT

0388

VCC_10_POS

L_LOW

VCC_10_NEG

L_LOW

VCC_10_POS

L_HIGH

L_LOW

VCC_10_NEG

L_HIGH

10

A

AMPLIFIER LEFT_HIGH

GND_I

+9V_STBYA

VCC_10_POS VCC_10_POS

+9V_STBYA

VCC_10_NEG VCC_10_NEG

D

GND_I

9

OUT_LH

AU_EN_NOT

C

VSND_NEG

L_HIGH

AU_EN_NOT

VSND_POS

L_HIGH

B

VSND_NEG

A

VSND_POS

AUDIO PANEL & SUPPLY , DC PROTECTION

8

7

VCC_10_NEG

6

VSND_NEG

5

VCC_10_POS

4

VCC_10_NEG

3

VCC_10_POS

2

VCC_10_NEG

1

GND_O

G

GND_O GND_O

GND_I

R_LOW

I

H

OUT_PROT

OUT_RL

OUT_RL

AMPLIFIER RIGHT_LOW

GND_O

AU_EN_NOT

R_LOW

VCC_10_POS

AU_EN_NOT

H

VCC_10_NEG

GND_F

DIAGRAM

I

GND_O

GND_I

J

J CL 26532038_015.eps 290302

1

2

3

4

5

6

7

8

9

10

11

12

13


Electrical Diagrams and PWB Layouts

FM23

7.

EN 33

Audio Panel & Supply: Filters

6

2234

2K2

100n VCC_10_POS

4n7

100n

RES

2232 2K2

RES

100n

2256

2257 RES

3K3 3258

3256

C

1 0V 4

0V

3259

3241 2K2

100n

3221

7225-B 8 LM833DT 7

GND_F

F245

GND_F GND_F

1K5

3242 3240 100R

6 0V

1K

4 GND_F

2222 82p

AU_EN_NOT

0V 6 0V

TO DIAGRAM

2269 GND_F

3272

22n

1K2

470R

C203

22n

3270 2271

2270

VCC_10_POS

6

0V

RES

2272 3273

3K3

3271

GND_F

5

R_HIGH

6 0V

7260-B 8 LM833DT 7 0V

AMPLIFIER RIGHT_HIGH

4

3274 VCC_10_NEG

GND_F

4

TO DIAGRAM

F273

5

GND_F

AMPLIFIER RIGHT_LOW

E

AU_EN_NOT

C202

D

4

560R

RES

2K7

7238-B 8 LM833DT 7 0V

VCC_10_NEG 3244

VCC_10_NEG

3222

3

R_LOW

VCC_10_POS

5 RES

5

2242

1K

RES

2220

10u

GND_F

2

GND_F

100n

100n

2225 100n

82p

2K7

2204

3203

VCC_10_POS

0V 2221

3220

1

8

2

2K2

10u

F241

68n

220R

220R

F

3 0V

AMPLIFIER LEFT_HIGH

3216

3243

2216

3215

GND_F

E

L_HIGH

AU_EN_NOT

7260-A LM833DT

2244

2243

R_NEG

470R VCC_10_POS

F258

1R

82p

F207

1K2

GND_F

33K

2215

1

R_POS

22n

GND_F

2218

2

F206

GND_F

100R

8V7

3210

2K7

F205

AUDIO_ENABLE

3257

VCC_10_NEG

3217

3

GND_F

RES

4

F204

3255

F211

B TO DIAGRAM

2255

GND_F

2217

F203

3234 GND_F 560R

1n

5

VCC_10_NEG

0V

L_NEG

2212

F202

3211

6

4

0V

2K7

7211 BC857BW

L_POS

GND_F

3230

4

VCC_10_NEG

3207

100K

F201

0V 1

A

1 0V

2

82p

4n7

D

SCAVIO PANEL (AUDIO-PROCESSOR)

RES

4n7

GND_F

8

2207 +9V_STBYA

GND_F

0388 PH-S

7

2 0V

1K

10u 2205

50mV / div DC 200µs / div

GND_F

GND_F GND_F

3206

0V

GND_F

2254

AMPLIFIER LEFT_LOW

8

RES

8

2224

220R

FROM 0388

2203

4n7 2206

7225-A LM833DT 3 0V

GND_F

3205

C

1K

10u 2201

50mV / div DC 200µs / div F258 = 0V F278 = 0V

GND_F

3202

L_LOW

100n

7238-A LM833DT

22n

2202

220R 50mV / div DC 200µs / div F235

3233

VCC_10_POS 3201

B

68n

2233

50mV / div DC 200µs / div F245

TO DIAGRAM

F235

3

1V / div DC 5ms / div F231

9

AU_EN_NOT

1K5

3232

A

3231

F231

F241

F211

8

2238

FILTERS

7

2239

5

2260

4

3

2

2261

1

CL 26532038_016.eps 030502

1R

7

8

9

F

0388 C1 2201 B3 2202 B3 2203 B4 2204 B4 2205 C3 2206 B3 2207 C4 2212 D3 2215 D3 2216 D3 2217 D4 2218 D4 2220 E3 2221 E3 2222 E4 2224 C5 2225 B5 2232 A7 2233 A6 2234 A7 2238 A7 2239 B7 2242 E7 2243 E6 2244 D7 2254 B6 2255 B6 2256 C6 2257 C7 2260 C7 2261 C7 2269 E6 2270 E6 2271 F6 2272 F7 3201 B3 3202 B3 3203 B4 3205 B3 3206 B3 3207 C4 3210 D3 3211 D3 3215 D3 3216 D3 3217 D4 3220 E3 3221 E3 3222 E4 3230 B6 3231 A6 3232 A7 3233 B6 3234 B7 3240 E6 3241 D6 3242 D7 3243 E6 3244 E7 3255 B6 3256 C6 3257 B7 3258 C6 3259 D7 3270 E6 3271 F6 3272 E7 3273 F6 3274 F7 7211 C4 7225-A B5 7225-B D5 7238-A A7 7238-B D7 7260-A C7 7260-B F7

C202 F2 C203 F2 F201 C2 F202 C2 F203 D2 F204 D2 F205 D2 F206 D2 F207 D2 F211 C4 F231 A6 F235 A8 F241 D6 F245 D8 F258 B8 F273 E8


Electrical Diagrams and PWB Layouts

FM23

7.

EN 34

Audio Panel & Supply: Left High 2309 D4 2310 B3 2315 C4

2316 C5 2318 D5 2319 D5

2330 C7 2334 B8 2335 B8

1

2340 E7 2355 D7 2359 E8

3301 C3 3302 D3 3303 C2

2360 E8 2365 C9 2366 C9

2

3304 D2 3306 C3 3307 C4

3308 C4 3309 D4 3310 B3

3

3311 C4 3315 B5 3318 D5

3325 B5 3327 C5 3328 B6

4

3330 B6 3336 B8 3337 C8

3340 D6 3355 E6 3361 E8

3362 D8 5335 B8 5360 E8

5

5365 C9 6328 C6 6334 B7

6

6335 C7 6355 D6 6356 E6

6359 E7 6360 D7 7302 D3

7303 C3 7315 C4 7330 C6

7

7340 D7 7355 D6 7365-1 D8

7365-2 C8 C301 E3 C302 E3

8

F301 C3 F307 C4 F328 B6

9

F330 C7 F337 C8 F362 D8

F365 C8

10

AUDIO AMPLIFIER LEFT HIGH F328

A

A

5335

2V / div DC 1µs / div F330

100MHZ

VSND_POS

100n

100n

2330

BZX384-C4V7

1 -14V4

4M7

5360

100n

220u

2359

2360

C301

GND_O

D

GND_I

E

GND_O

SUPPLY & DC PROTECTION

F362

-14V4

3361

10n

6359

10K -14V2

7 8

2

10R

TO DIAGRAM C

E

100MHZ

C302

GND_I

0V

3340

2340

GND_I

VCC_10_NEG

7340 BC847BW

10R

4 6355

-9V8 1

7365-1 IRF7343 3362

-14V2

BZX384-C4V7

V-

3355

GND

7355 BC807-25

100n

0V 2355

7 -2V

OUT_LH

33u

F365 -0V04

BZX384-C4V7 BZX384-C4V7

GND_I

5365

F330

STR|BAL

6356

180R

1n5

GND_I GND_I

10R

7365-2 IRF7343 14V3 3 4 5 6

OUT_PROT

V+

1u

4K7

3309

7302 BC847BW

2309

D

AU_EN_NOT

7330 BC817-25

-0V04

2 3 0V

GND_I

FILTERS

BAL

0V

8K2

3302

BAS316

6360

F307

3306

4K7

3304

FROM DIAGRAM

5 6

7303 BC847BW

2K2

100n 2319

1K

9V7 7315 LM311D 8

2318

1K

F301

6328

10R

3301

3327

3318

3303

1R

L_HIGH

3311

C

GND_I

GND_O

220n

3337

14V2 GND_I

2335

220u

4M7 2334

3336

GND_O

F337

2366

1K

220n

2K2

F328

B

2365

3328

6335

3325

BZX384-C4V7 BZX384-C4V7

6334

10R

3330 10R

3315 100n

1u

2316

100K 2315

3308

5V / div DC 1µs / div

100K

82K 3307

82p

2V / div DC 1µs / div F365

2310

B

3310

VCC_10_POS

GND_I GND_O

GND_O

VSND_NEG CL 26532038_017.eps 030502

1

2

3

4

5

6

7

8

9

10


Electrical Diagrams and PWB Layouts

FM23

7.

EN 35

Audio Panel & Supply: Left Low 2409 D3 2410 B3 2415 C4

2416 C4 2418 D5 2419 D5

2430 C7 2434 B8 2435 B8

2440 E6 2455 D7 2459 E8

1

3404 D2 3406 C3 3407 C3

3401 C3 3402 D2 3403 C2

2460 E8 2465 D9 2466 D9

2

3408 C4 3409 D4 3410 B3

3

3411 C3 3415 B4 3418 D4

3425 B5 3427 C5 3428 B5

4

3430 B6 3436 B7 3437 C8

3440 D6 3455 E6 3461 E7

5

3462 D8 5435 B8 5460 E8

5465 C9 6428 C5 6434 B7

6

6435 C7 6455 D6 6456 E6

7403 C2 7415 C4 7430 C6

6459 E7 6460 D7 7402 D3

7

7440 D7 7455 D6 7465-1 D8

7465-2 C8 F401 C3 F407 D4

8

F428 B6 F430 C6 F437 C8

F462 D8 F465 C8

10

9

AUDIO AMPLIFIER LEFT LOW F428

A

A

5435

100MHZ

VSND_POS 2V / div DC 1µs / div F430

2435

220u

4M7 2434

3436

100n

C

BZX384-C4V7

1 -14V4

GND_O

GND_O

SUPPLY & DC PROTECTION D

F462

4M7

6460

2

OUT_PROT

100n

7 8

10R -14V4

3461

BZX384-C4V7

10n

2440

7465-1 IRF7343

GND_O

5460

100n

2459

220u

2460

GND_I

E

100MHZ

E

10K -14V2 10R

GND_I

0V

3440

3455

1u

100n 2419

GND_I

6456

VCC_10_NEG

7440 BC847BW

OUT_LL

33u 0V

3462

-14V2

BZX384-C4V7

4

BZX384-C4V7

V-

TO DIAGRAM

5465 220n

2430

7455 BC807-25

6455

180R

GND_I

2455

7 -2V

GND -9V8 1

GND_I

7465-2 IRF7343 14V3 3 4 5 6

F430 -0V04

10R

GND_I

10R

-0V04

2

3418

4K7

1n5

FILTERS

7402 BC847BW

BAS316

7430 BC817-25

3437

F465

3 0V

3409

D

3402

2K2

STR|BAL

0V

8K2

GND_I

AU_EN_NOT

F407

3406

6428

6459

6

4K7

FROM DIAGRAM

3404

7403 BC847BW

9V7 7415 LM311D 8 5 BAL V+

3427

2418

3411

1K

GND_I

15K

1K

GND_I

2409

C

3401 F401

3403

GND_O

2466

14V2 L_LOW

GND_O

F437

220n

F428

2465

1K

B

100n

3428

2K2

6435

3425

BZX384-C4V7 BZX384-C4V7

6434

10R

3430 10R

3415 100n

1u

2416

100K 2415

3408

100K

3407

5V / div DC 1µs / div

82K

82p

2410

B

3410

VCC_10_POS 2V / div DC 1µs / div F465

GND_O

VSND_NEG CL 26532038_018.eps 030502

1

2

3

4

5

6

7

8

9

10


Electrical Diagrams and PWB Layouts

FM23

7.

EN 36

Audio Panel & Supply: Right High 2509 D3 2510 B3 2515 C4

2516 C4 2518 D5 2519 D5

2530 C7 2534 B8 2535 B8

2540 E6 2555 D7 2559 E8

1

2560 E8 2565 D9 2566 D9

3504 D2 3506 D3 3507 C3

3501 C2 3502 D2 3503 C2

2

3508 C4 3509 D4 3510 B3

3

3511 C3 3515 B4 3518 D4

3525 B5 3527 C5 3528 B5

4

3530 B6 3536 B7 3537 C8

3540 D6 3555 E6 3561 E7

3562 D8 5535 B8 5560 E8

5565 C9 6528 C5 6534 B7

6

5

6535 C7 6555 D6 6556 E6

6559 E7 6560 D7 7502 D3

7503 C2 7515 C4 7530 C6

7

7540 D7 7555 D6 7565-1 D8

8

7565-2 C8 F501 C3 F507 D4

F528 B6 F530 C6 F537 C8

F562 D8 F565 C8

10

9

AUDIO AMPLIFIER RIGHT HIGH F528

A

A

5535

2V / div DC 1µs / div F530

100MHZ

VSND_POS

2530

220u

2535

4M7 2534

3536

100n

C

BZX384-C4V7

2 1 -14V4

GND_O

GND_O

SUPPLY & DC PROTECTION D

F562

GND_O

E

100MHZ

100n

5560

2559

4M7

3561

220n

7 8

10R -14V4

2560

GND_I

BZX384-C4V7

10n

6559

10K -14V2

2566

100n

2555 6560

0V

3540

2540

6555

7565-1 IRF7343

220u

E

7540 BC847BW

OUT_RH

33u 0V

3562

-14V2

3555

GND_I

VCC_10_NEG

6556

GND_I

1u

4

BZX384-C4V7 BZX384-C4V7

V-

TO DIAGRAM

5565

7555 BC807-25

100n 2519

180R

GND -9V8 1

GND_I

10R

F530

7 -2V

10R

GND_I

-0V04

-0V04

3

3518

GND_I

1n5

4K7

7502 BC847BW

3509

FILTERS

2509

D

3502

BAS316

STR|BAL

0V AU_EN_NOT

2K2

7530 BC817-25

2 0V

8K2

GND_I

6528

10R

F507

3506

3527

7565-2 IRF7343 14V3 3 4 5 6

3537

F565

6

4K7

FROM DIAGRAM

3504

7503 BC847BW

7515 9V7 LM311D 8 5 BAL V+

2518

1K

GND_I

6K8

1K

GND_I

3511

C

3501 F501

3503

GND_O

OUT_PROT

14V2 R_HIGH

GND_O

F537

220n

1K

B

2565

2K2

F528

BZX384-C4V7 BZX384-C4V7

3528

6535

3525

100n

6534

10R

3530 10R

3515 100n

1u

2516

3508

100K 2515

100K

3507

5V / div DC 1µs / div

82K

82p

2V / div DC 1µs / div F565

2510

B

3510

VCC_10_POS

GND_O

VSND_NEG CL 26532038_019.eps 030502

1

2

3

4

5

6

7

8

9

10


Electrical Diagrams and PWB Layouts

FM23

7.

EN 37

Audio Panel & Supply: Right Low 2609 D4 2610 B3 2615 C4

2616 C4 2618 D5 2619 D5

2630 C7 2634 B8 2635 B8

2640 E7 2655 C7 2659 E8

1

2660 E8 2665 C9 2666 C9

3601 C3 3602 D2 3603 C2

2

3604 C2 3606 C3 3607 C4

3608 C4 3609 D4 3610 B3

3

3611 C4 3615 B5 3618 D4

3625 B5 3627 C5 3628 B6

4

3630 B6 3636 B8 3637 C8

3640 D6 3655 E6 3661 E8

3662 D8 5635 B8 5660 E8

5

5665 C9 6628 C6 6634 B7

6

6635 C7 6655 D6 6656 E6

6659 E7 6660 D7 7602 D3

7

7603 C2 7615 C4 7630 C6

7640 D7 7655 D6 7665-1 D8

8

F628 B6 F630 C7 F637 C8

7665-2 C8 F601 C3 F607 C4

9

F662 D8 F665 C8

10

AUDIO AMPLIFIER RIGHT LOW A

F628

A

100n

2635

4M7 2634

220u

4

10R

5 6

BZX384-C4V7

2 1

220n

GND_O

SUPPLY & DC PROTECTION

-14V4

D

F662

GND_O

100MHZ

5660

100n

2659

4M7

3661

-14V4

GND_O

OUT_PROT

7 8

10R

2660

GND_I

BZX384-C4V7

6660

10K -14V2

2666

100n

7665-1 IRF7343

220u

E

GND_I

0V

3640

6659

GND_I

7640 BC847BW

E

GND_O

VSND_NEG CL 26532038_020.eps 030502

1

2

3

4

5

6

7

C

OUT_RL

33u 0V

3662

10n

VCC_10_NEG

6656

GND_I

-14V2

3655

6655

-9V8

4

TO DIAGRAM

5665 220n

2630

7665-2 3637 IRF7343 14V3 3

V-

1

BZX384-C4V7 BZX384-C4V7

GND_I

7655 BC807-25

-2V GND

2655

-0V04

1u

3609

180R

1n5

GND_I

-0V04

F637

F630

100n 2619

4K7

7630 BC817-25

7

3618

D

7602 BC847BW

2609

FILTERS

3602

BAS316

2

0V AU_EN_NOT

2K2

GND_O

F665

0V 3

8K2

6628

STR|BAL

2618

F607

3606 GND_I

3627

2640

6

4K7

FROM DIAGRAM

3604

7603 BC847BW

7615 9V7 LM311D 8 5 V+ BAL

10R

1K

1K

GND_I

10R

GND_I

22K

C

3601 F601

3603

3611

R_LOW

3636

6634

14V2

GND_O

B

2665

1K

BZX384-C4V7 BZX384-C4V7

2K2

F628

100n

3628

6635

3625

10R

3630

10R

100n

1u

2616

3608

100K 2615

5V / div DC 1µs / div

100K

3615

82K 3607

82p

2V / div DC 1µs / div F665

3610

VCC_10_POS

2610

B

5635

2V / div DC 1µs / div F630

100MHZ

VSND_POS

8

9

10


Electrical Diagrams and PWB Layouts

FM23

7.

EN 38

Audio Panel & Supply: Supply and DC Protection

5

6

7

SUPPLY & DC PROTECTION

8

9

DC PROTECTION

0303 PH-S 5

OUT_LH

F717

3

F733

1K

F740

T2.5AL 250V

7745 BC868

VSND_NEG

F745

-8V8

VCC_10_NEG

3

-9V2

F743

3765

3743

2K7

5753

E OUT_RH

C702

4

F782

3

F784

2

F786 F787

1

GND_O

OUT_RL

1

2

3

4

5

6

RIGHT HIGH 8 Ohm RIGHT LOW

1n

2781

1n

2780

2799

10n

GND_O

GND_O

0304 PH-S

F780 F781

GND_O

F

1K

3

1K

C703 0391 0390 0305 SHIELDING 3.3 SHIELDING 3.3 SHIELDING 3.3

D

470R

100K

RES

1

7761 BC857BW 7755 BC847BW

6760 BAV99W

3781

C704

2

100K

F796 F797 3799 F798 F799

3752

470R

-13V7

7746 BC857BW

1u

6742

RES=RESERVED

-9V7

10u

3751 2

F746

2744

F742

BZX384-C10

220u

3742

220u 2742

2740

-14V4

8V6

100K

100MHZ

1n

2753 1 6750 BAV99W

3760 1740

C

3750

3780

1

2770

1n

100K

2771

22u

7751 BC847BW

100MHZ F723 F724 F725 5725

B

-0V2

7753 BC857BW 3754

3733

F718 F719 5719 F720

2

E

10K

VCC_10_POS

13V7

7736 BC847BW

1n

4

8V7

F759

F736

9V2

+9V_STBYA

VCC_10_POS

3755

100MHZ

5

D

VSND_POS

GND_O

F735

9V

2734

6

9V8

6732

F712 F713 F714 5714

2K7

3732

F732

7

POWER SUPPLY

220u

220u 2732

+9V_STBY

BZX384-C10

FROM 0302

DC_PROT

F711

8

2730

F710

GND_O

OUT_PROT

+14V4

9

LEFT LOW

+9V_STBY

2759

0302 PH-S

7735 BC869

1

OUT_PROT

F730

T2.5AL 250V

3771

AUDIO AMPLIFIER RIGHT LOW

100K

FROM DIAGRAM

OUT_PROT

2760

AUDIO AMPLIFIER RIGHT HIGH

GND_O

3770

FROM DIAGRAM

8 Ohm

2

F774

F776 F777

OUT_LL

AUDIO AMPLIFIER LEFT LOW

SUPPLY C

OUT_PROT

FROM DIAGRAM

1730

A

LEFT HIGH

100MHZ

AUDIO AMPLIFIER LEFT HIGH

3749

B

NC.

F772 4 3

100K

FROM DIAGRAM

GND_O

VCC_10_NEG

F730 = 14V4 F735 = 9V F740 = -14V4 F745 = -8V8

1u

A

F771 F770

DC_PROT

4

10u

3

47K 2752

2

47K

1

CL 26532038_021.eps 030502

GND_O

7

8

9

F

0302 C1 0303 A8 0304 E8 0305 E1 0390 E2 0391 E3 1730 B3 1740 D3 2730 C3 2732 C4 2734 D5 2740 E3 2742 E4 2744 E5 2752 C9 2753 C8 2759 D8 2760 B7 2770 B8 2771 B7 2780 F7 2781 F7 2799 F1 3732 C4 3733 C5 3742 E4 3743 E5 3749 C6 3750 C8 3751 C9 3752 C9 3754 C9 3755 D6 3760 D8 3765 E6 3770 B7 3771 B7 3780 E7 3781 E7 3799 E2 5714 C3 5719 D3 5725 D3 5753 B9 6732 C4 6742 E4 6750 D7 6760 D7 7735 C5 7736 C4 7745 D5 7746 E4 7751 C8 7753 C9 7755 D8 7761 D9 C702 F3 C703 E3 C704 E3 F710 C2 F711 C2 F712 C2 F713 C2 F714 C2 F717 D2 F718 D2 F719 D2 F720 D3 F723 D2 F724 D2 F725 D2 F730 B5 F732 C4 F733 C5 F735 C5 F736 C4 F740 D5 F742 E4 F743 E5 F745 D5 F746 E4 F759 C7

F770 A8 F771 A8 F772 A8 F774 A8 F776 A8 F777 A8 F780 E8 F781 E8 F782 F8 F784 F8 F786 F8 F787 F8 F796 E2 F797 E2 F798 E2 F799 E2


Electrical Diagrams and PWB Layouts

FM23

7.

EN 39

Layout Audio Panel (Top View) 0302 0303 0304 0388 1730 1740 2202 2203 2206 2212

B1 C1 C2 C1 B1 B1 C1 B1 C1 C1

2216 2217 2221 2224 2225 2234 2239 2244 2260 2261

C1 B1 B1 B1 B1 A2 A2 A2 A1 A1

2315 2319 2334 2340 2360 2365 2366 2415 2419 2434

A1 A1 A2 A2 B2 B2 B2 A1 A1 A2

2440 2460 2465 2466 2515 2519 2534 2540 2560 2565

A2 A2 A2 A2 C1 C1 B2 C2 C2 C2

2566 2615 2619 2634 2640 2660 2665 2666 2730 2732

C2 B1 B1 B2 B2 B2 B2 B2 B1 B1

2734 2740 2742 2744 2752 2753 2759 2760 2799 3210

A1 A1 A1 A1 C1 C1 C1 C1 A1 C1

3211 3230 3231 3232 3234 3240 3241 3242 3257 3259

C1 B1 A2 A2 A2 B1 A2 A2 A1 A1

3272 3274 3301 3302 3303 3304 3306 3340 3401 3402

A1 A1 A1 A1 A1 A1 B1 A2 A1 A1

3403 3404 3406 3440 3501 3502 3503 3504 3506 3540

A1 A1 A1 A2 B1 C1 B1 B1 C1 B2

3601 3602 3603 3604 3606 3640 3732 3733 3742 3743

B1 B1 B1 B1 B1 B2 A1 A1 A1 A1

3749 3750 3751 3752 3754 3755 3760 3765 3770 3771

C2 C1 C1 C1 C1 B1 C1 B1 C1 C1

3780 3781 5335 5360 5365 5435 5460 5465 5535 5560

C2 C2 A2 B2 A2 A2 A2 A2 B2 C2

5565 5635 5660 5665 5753 6732 6742 6750 6760 7211

C2 B2 B2 B2 C1 A1 A1 C1 C1 C1

7225 7238 7260 7302 7303 7340 7402 7403 7440 7502

B1 A2 A1 A1 B1 A2 A1 A1 A2 C1

7503 7540 7602 7603 7640 7735 7736 7745 7746 7751

B1 7753 C1 C2 7755 C1 B1 7761 C1 B1 B2 A1 A1 A1 A1 C1

CL 26532038_022.eps 150402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 40

3411 3415 3418 3425 3427 3428 3430 3436 3437 3455 3461 3462 3507 3508

A2 A2 A2 A2 A2 A1 A1 A1 A1 A1 A1 A1 C2 C2

Layout Audio Panel (Bottom View) 2201 2204 2205 2207 2215 2218 2220 2222 2232 2233 2238 2242 2243 2254

C2 B2 C2 B2 C2 B2 C2 B2 A1 A1 A1 A1 A1 A2

2255 2256 2257 2269 2270 2271 2272 2309 2310 2316 2318 2330 2335 2355

A2 A2 A2 A2 A2 A2 A2 B2 B1 A2 A2 A1 B1 A1

2359 2409 2410 2416 2418 2430 2435 2455 2459 2509 2510 2516 2518 2530

B1 A2 A1 A2 A2 A1 A1 A1 A1 C2 C2 C2 C2 C1

2535 2555 2559 2609 2610 2616 2618 2630 2635 2655 2659 2770 2771 2780

C1 C1 C1 B2 B2 B2 B2 B1 B1 B1 B1 C2 C1 C1

2781 3201 3202 3203 3205 3206 3207 3215 3216 3217 3220 3221 3222 3233

C1 C2 C2 B2 C2 B2 B2 C2 C2 B2 C2 B2 B2 A1

3243 3244 3255 3256 3258 3270 3271 3273 3307 3308 3309 3310 3311 3315

A1 A1 A2 A2 A2 A2 A2 A2 B2 B2 B2 B2 B2 A2

3318 3325 3327 3328 3330 3336 3337 3355 3361 3362 3407 3408 3409 3410

B2 A2 A2 B1 B1 A1 A1 A1 A1 A1 A2 A2 A2 A2

3509 3510 3511 3515 3518 3525 3527 3528 3530 3536 3537 3555 3561 3562

C2 C1 C2 B2 C2 B2 B2 C1 C1 C1 C1 B1 C1 C1

3607 3608 3609 3610 3611 3615 3618 3625 3627 3628 3630 3636 3637 3655

B2 B2 B2 B1 B2 B2 B2 B2 B2 B1 B1 B1 B1 B1

3661 3662 3799 5714 5719 5725 6328 6334 6335 6355 6356 6359 6360 6428

B1 B1 A1 B2 C2 B2 A1 B1 B1 A1 A1 A1 A1 A1

6434 6435 6455 6456 6459 6460 6528 6534 6535 6555 6556 6559 6560 6628

A1 A1 A1 A1 A1 A1 C1 C1 C1 C1 B1 B1 C1 B1

6634 6635 6655 6656 6659 6660 7315 7330 7355 7365 7415 7430 7455 7465

B1 B1 B1 B1 B1 B1 A2 A1 A1 A1 A2 A1 A1 A1

7515 7530 7555 7565 7615 7630 7655 7665

C2 C1 C1 C1 B2 B1 B1 B1

CL 26532038_023.eps 150402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 41

LED/Switch Panel

1

2

3

4

5

6

7

8

9

LED/SWITCH PANEL A

LED_DISPLAY IR_TX

F115 F116

3

RED_LED

4

4107

470R

B

ICONN for ITV only

5 6

+5V_STBY_SW

95009

+5V_STBY_SW

9

+9V_STBY_SW

I105

10

+5V_STBY_SW F109 F112 1101 1

4

2

5

3

6

6103-B

F108

1 2 TLMV3100

I104

+9V_STBY

3109

100R

10K

3104

100u

100MHZ

CONTROLE 8 FUNCTIONS

OUT 2107

+8V6

CTRL CIRCUIT

I111 1 DEM

3

BAND PASS

INP

C

AGC PIN

GND

I107 150R

F107

7

5100 F101

7107 TSOP2236

VS

I106

F111

3106

F106

6

F110

3 4 TLMV3100

5

3108

LIGHT_SENSOR_IN

F105

BZX384-C3V9 BZX384-C3V9

F104

6105

RC_IN

B

RC RECIEVER

I109 2

330R

RED_LED

4

7105 BC857BW

6103-A

FROM 0320

150R

I103

3105

3

F103

3101 I102 6101

4101

3103

F102

7103 BC857BW

220R

GREEN_LED

2

100K

3102

1

100K

+5V_STBY_SW 0320

C

IR_RX

F120

A

2

GREEN_LED

F119 3107

0317 1

PH-S

D

GREEN

ON / OFF SWITCH

RED

D

E

7120-B 8 LM358D 7

3120 4K7

10u

2120

+8V6

7120-A 8 LM358D 1

5

3

I127

E 2

4

6 4 I125 I120

3123 I123

3126 I126 470K 2126

3121

470K

3127

6127

3K3

3125

1K

3124

220n

1K

3122

F

TEMD5000

10K 4K7

F

LIGHT SENSOR

1

2

3

4

5

6

CL 16532099_038.EPS 280901

7

8

9

0317 A9 0320 B1 1101 D3 2107 C7 2120 E5 2126 F6 3100 C2 3101 C4 3102 B4 3103 C5 3104 B6 3105 C5 3106 D6 3107 B6 3108 B7 3109 B7 3120 E4 3121 F4 3122 F3 3123 F4 3124 F5 3125 F5 3126 F6 3127 F6 4101 C3 4107 B6 6101 C4 6103-A C5 6103-B D5 6105 C6 6127 F6 7103 B5 7105 B5 7107 C9 7120-A E6 7120-B E4 F101 C2 F102 C2 F103 C2 F104 C2 F105 C2 F106 C1 F107 C1 F108 C2 F109 D2 F110 C5 F111 C6 F112 D2 F115 A9 F116 A9 F119 B9 F120 B9 I102 B4 I103 B4 I104 C5 I105 C5 I106 C6 I107 C6 I109 C7 I111 C7 I120 F4 I123 F5 I125 E5 I126 E6 I127 E6


Electrical Diagrams and PWB Layouts

FM23

7.

EN 42

Layout LED/Switch Panel (Top View)

Layout LED/Switch Panel (Bottom View)

0317 0320 1101 2107 2120 6103 6127 7107

CL 16532099_025.eps 240901

0317 1101 2126 3101 3102 3103 3104 3105 3106 3107 3108 3109 3120 3121 3122 3123 3124 3125 3126 3127 4101 4107 5100 6101 6105 7103 7105 7107 7120

A1 B3 B1 D3 C1 C3 C2 C3

CL 16532099_024.eps 240901

A4 B3 C3 B2 C2 C2 C2 C2 B2 B3 C1 C1 B3 C3 C3 B3 B3 C3 C3 C3 B3 A4 B2 C2 C2 C2 C2 C1 C3


Electrical Diagrams and PWB Layouts

FM23

7.

EN 43

Power Supply Panel: Function Blocks and Connection Diagram

SUPPLY (FUNCTION BLOCKS AND DIAGRAM CONNECTIONS) 400V_HOT

+3V3_STBY_SW

100-230VAC1 100-230VAC2

400V_HOT

100-230VAC2

100-230VAC1

400V_HOT

0306

1

1

VPR2 NC GND GND NC VCC

95-264Vac 2

MAINS_LIVE

25V_HOT

+3V3_STBY_SW

+9V_STBY_SW

+9V_STBY

+5V_STBY_SW

0308 MAINS_NEUTRAL

SW25V_HOT

400V_HOT

25V_HOT

+9V_STBY_SW

+5V_STBY_SW

100-230VAC2

100-230VAC1

100-230VAC2

SW25V_HOT

+9V_STBY

100-230VAC1

6

SUPPLY_ON VCC

DIAGRAM

DIAGRAM

PRECONDITIONER GND

GNDHOT

GNDHOT

+3V3_STBY_SW

+9V_STBY_SW

77-100V

+9V_STBY +8V6

+3V3_OVP

+5V_STBY_SW 70-90V

+3V3

400V_HOT

+5V_STBY_SW

VS

+9V_STBY

SW25V_HOT

VRS DC_PROT

5 LATCH VRA

10

VSA_CONTROL IAKS

13

VRS

LATCH

VB

SW25V_HOT

0302 1

VSND_NEG VSND_NEG GND_SND GND_SND VSND_POS VSND_POS GND_SND +9V_STBY DC_PROT

DC_PROT

LATCH

400V_HOT

25V_HOT

+5V_STBY_SW

70-90V

77-100V

+18V

VRS

DC_PROT

VRA

+9V_STBY

VS

VS

+9V_STBY_SW

+9V_STBY

+3V3

10

VB

VSA_CONTROL IAKS

5

9

VA VA

15 VCC VCC_GO

VCC VCC_GO POK

20

DIAGRAM

POK

GND

FAN_SP2

FAN_SP2

LLC_SUPPLY

GNDHOT

VRA

IAKS

0389 1

VA

3

VCC

VA NC NC GND GND NC VCC

VCC_GO POK

0390 FAN_SUPPLY_2 GND FAN_SUPPLY_1

1 3

DIAGRAM

DIAGRAM

AUX_SUPPLY

FANCONTROL GND

70-90V

+8V6

0342 1

0352 1

0305

7

+5 GND GND GND GND GND GND +3V3 +3V3 +3V3 +3V3 +3V3

7

0323 VA NC VCC GND GND GND NC VS VS VS

+12V

+12V

+18V

VB

77-100V

+5V_STBY_SW

+18V

+8V6

+3V3_OVP

70-90V

+3V3

77-100V

VS

VSA_CONTROL

FAN_SUPPLY_2 GND FAN_SUPPLY_1

GND

+5V_STBY_SW +12V

FAN_SP2

FAN_SP1

FAN_SP1

FAN_SP1

5

1

+3V3_OVP

PROTECTION

+9V_STBY +9V_STBY_SW +8V6 +5V_STBY_SW +3V3_STBY_SW SCL_1 SDA_1 GND POWER_OK NC STANDBY FAN_SP_1 FAN_SP_2

25V_HOT

70-90V

+3V3

DIAGRAM

1

+12V

SUPPLY_ON

0319

0307

+18V

VS

VSK SENCE_GND VAK GND IAK GND VRS GND VRA GND PFCGO GND VCEGO GND VSAGO GND NC NC NC NC

70-90V

+5V_STBY_SW

+8V6

+3V3_STBY_SW

VS

+3V3_OVP

SUPPLY_ON

FILTER_STBY

1

0333 1

5

10

5

GND NC

9

VS

1

6

12 0392

Vs Va alignment

1 4

GND

CL 26532038_025.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 44

Power Supply Panel: Mains Filter and Standby Supply 1

2

3

4

5

6

7

8

9

10

11

12

13

14

FILTER_STBY A

3404

DSP

220R

F408 F409 F410

F407

470n

2401

250

3452

I409

4

3

100-230VAC1

TO

6W7

PRECONDITIONER

1460

1450

AC3

I407

HOT GROUND

FROM

6510

I501

I502

6511

I503 6513

6512

BYG10

BYG10

BYG10

I417 6471

BAS316 F411

I415

6470

4K7

3469

BAS316

10K

3467

10K

25

I413

100u

D

10K

STANDBY SUPPLY

PRECONDITIONER

7470 BC817-25W(COL)

0V7

0V1

F412

FROM

SUPPLY_ON

PROTECTION

E

2507 100p I518 6503 I505

I506

6504

RS1G

8V7

50

3V3

F

I519

5505

FROM

39u

7540 L7805 IN

AUX_SUPPLY

GND

OUT

SWITCH 7531 STD16NE06L D 8V1 G S 6531

H TO

5V 5V

+5V_STBY_SW

PROTECTION 25

2533 1404

25

100K

I517 25

VCC

1%

STANDBY (. . .)

PROTECTION

LLC_SUPPLY

100u

PH-B

FROM

1K5 RES

2

+3V3_STBY_SW BZX384-C18

BZX384-C18

3503

MECHPART

G TO

VCC

I514

16

0201 HEATSINK

100n

0203

2512

NORMAL . .

I

3V3

1%

3

4K7

MEASURED DC-VOLTAGES

3505

2511 100n 16 7502 TL431CZ

3504

2 I513 2V2 1

NC

6

5V

7501 TCET1102 3

F510

T2AL 250V 19372

3502

200 V / div DC 10µs / div

3V2 1

1401

470R

3501

100 V / div DC 10ms / div

1V3 4

I512 100R

5

3V3

S 6530 3530

GND

4

TO CN6 PDP (DISPLAY)

7530 STD16NE06L D

8V1 G

100

NC

3

I516

100u

VPR2

2

SWITCH

2532

0306

PROTECTION

10R

I515 6520 F509 1

+3V3_STBY_SW

3520

I510

BAS316

+9V_STBY_SW

F505

F504

F503

10u

9

4u7

3

2508

SB340

100u

8

8

2530

7

2

50

2541

SOURCE5

6

6505

BZT03-C

SOURCE4

100p

7

BZT03-C

SOURCE3

5

6

1

450

410V (314V)

6502 I511 6501

DRAIN

4

PROTECTION LLC_SUPPLY

1m 16

35

VR25

2M2

3507

100V / div DC 10ms / div F510

2503 47u

7500 1V3 TNY256 I508 (1V3) ENABLE 4 SOURCE2 3 SOURCE1 2513 I509 2 BYPASS 1 6V1 100n (6V2) 25

50

F407

100V / div DC 10ms / div I406

F501

1n

F404

2504

I407 = 0V F411 = 0V F412 = 4V2 F500 = 380V F502 = 8V7 F503 = 3V3 I504 = 19V I508 = 1V3 I513 = 2V2 I514 = 2V5 I516 = 8V1 I517 = 5V

I507 2509

5500 CE165T

F500

CONTROL

+9V_STBY

RS1G

1m

2505

600V

+t 232266293

3506

F

PR02

2510

10R

LLC_SUPPLY

I

1405 SHIELDING 3.3

AUX_SUPPLY

SHIELDING 3.3

CL 26532038_026.eps 030502

HOT COLD GROUND GROUND

1

2

3

4

5

6

7

E

TO

F502

25

3508

25V_HOT

100u

I504

50

2540

TO

C

0V1 I416

10K 7460 BC817-25W(COL)

RELAY CONTROL

400V_HOT BYG10

BC857BW 7465 8V6

3470

10K

4K7

3461

3460

D

I414

3463

0V 0V7

8V6

8V

3465

I411 6461

GROUND

2465

GROUND

COLD GROUND

BAS316

GROUND

6460

GROUND

BAS316

GROUND

B

100-230VAC2

1000

I412

H

AC5

B57464

COLD GROUND

C

G

I410

t

I405

AC3

47p

2

AC5

3

470p

470p

2405

47p 1000

2407

250

2404

VR37

4M7 4M7

3403

1 AC4

3 4 CU28D3 2406

I403

600V

SDT

I406

2

A

+t 232266293

VR37

I418 3402

250

RES

250

2402

1

AC2

4

AC3

F400

SDT

I404 1 5402 2

3 4 CU28D3

AC3

RES

I402

1 5401 2

B2P3-VH

3451

I408

AC5 +t 232266293 600V

AC2

2322595

2400

1M

T6.3AH 250V 19181

495 V

F406

VR37

3401

2

2403

3450

ERC12

0308

1

1402

I401 AC2

1400

F402 F403 F404 F405

F401

470n 3400

MAINS INPUT 95-264Vac

B

MAINS FILTER

I400

8

9

10

11

12

13

14

0201 I5 0203 I4 0306 G10 0308 B1 1400 B3 1401 H9 1402 A4 1404 I9 1405 I10 1450 B8 1460 B10 2400 B3 2401 B5 2402 B2 2403 B1 2404 B4 2405 B4 2406 B5 2407 B5 2465 C11 2503 F5 2504 G4 2505 F5 2507 E7 2508 F7 2509 F7 2510 F7 2511 H7 2512 I7 2513 G4 2530 G11 2532 G12 2533 I12 2540 H11 2541 H11 3400 B3 3401 B2 3402 B2 3403 C2 3404 A4 3450 A10 3451 A10 3452 A11 3460 D10 3461 D10 3463 D11 3465 D12 3467 C12 3469 D12 3470 D12 3501 H7 3502 H7 3503 I8 3504 I8 3505 H8 3506 F4 3507 F4 3508 E5 3520 G11 3530 G12 5401 B4 5402 B5 5500 F6 5505 F9 6460 D11 6461 C11 6470 D13 6471 C13 6501 G6 6502 G6 6503 E6 6504 E7 6505 F7 6510 E3 6511 E4 6512 E5 6513 E6 6520 F11 6530 G12 6531 I12 7460 D11 7465 C12 7470 D13 7500 G5 7501 H6 7502 I7 7530 G12 7531 H12 7540 H11 F400 C1 F401 B1 F402 B2 F403 B2 F404 B2 F405 B2 F406 B1 F407 B2 F408 B3 F409 B3 F410 B3 F411 D13 F412 E12 F500 F5 F501 F5 F502 E8 F503 F8 F504 F7 F505 F7 F509 G9 F510 H9 I400 A4 I401 A3 I402 A5 I403 B4 I404 A7 I405 B7 I406 A9

I407 B9 I408 A10 I409 A10 I410 A12 I411 C11 I412 D10 I413 C12 I414 D12 I415 D12 I416 D12 I417 C13 I418 B2 I501 E4 I502 E5 I503 E5 I504 E5 I505 E6 I506 E7 I507 F7 I508 G4 I509 G4 I510 G6 I511 G6 I512 H7 I513 H7 I514 I7 I515 G11 I516 G12 I517 H12 I518 E6 I519 F9


Electrical Diagrams and PWB Layouts

FM23

7.

EN 45

Power Supply Panel: Protections 3309 B3 3310 B3 3311 B3 3312 C3 3313 D3 3316 F2 3317 E3 3318 B4 3319 B4 3320 B4

2396 F3 3300 B1 3301 C1 3302 F3 3303 F3 3304 D1 3305 F3 3306 D1 3307 E1 3308 C2

1

3332 B6 3333 C6 3334 D6 3335 E6 3338 B7 3339 B7 3340 C7 3341 C7 3342 D7 3343 E7

3321 C4 3322 D4 3323 E4 3324 D1 3325 G12 3326 G12 3327 G13 3328 G13 3330 B5 3331 B5

2

3354 D9 3358 C11 3359 C11 3360 D10 3361 C10 3362 D10 3363 D10 3364 D11 3365 D12 3366 D12

3344 D8 3345 C8 3346 C8 3347 D8 3348 D8 3349 C9 3350 D9 3351 D9 3352 D9 3353 D10

3

3378 E13 3380 H2 3381 H2 3382 F4 3385 H4 3386 G6 3387 G6 3388 F8 3389 F9 3390 G10

3367 D12 3368 D13 3369 D13 3370 B13 3371 B13 3372 B13 3373 F1 3374 F2 3376 G2 3377 G1

4

3391 G10 3392 F11 3393 H10 3394 F11 3395 F10 3396 F2 3397 F2 3800 E3 3801 F3 3802 F3

5

6325 G12 6333 C5 6334 D5 6335 E5 6340 C7 6341 D7 6342 E7 6344 D8 6347 C8 6348 D8

3803 E4 3804 F4 3805 F4 4300 F7 6312 C2 6313 D2 6314 E2 6321 C4 6322 D4 6324 E4

6

7308-C D4 7308-D C4 7326 G13 7327 G14 7330-A D5 7330-B C5 7330-C D6 7330-D C6 7341 D8 7348 D8

6362 D10 6364 D11 6365 E12 6375 F1 6376 G1 6378 F14 6390 G10 7304 E1 7308-A D2 7308-B C2

7

7389 F9 7391 G11 7393 G11 F300 A14 F301 A14 F302 A14 F303 B14 F304 B14 F305 B14 F306 B14

7351 D10 7352 D9 7362 D11 7366-A D12 7366-B G5 7366-C E14 7366-D G4 7370 A13 7375 F2 7376 H1

8

F317 G7 F318 G7 F319 H7 F320 H7 F321 G7 F322 E9 F323 D13 F324 F7 F343 D7 F368 C3

F307 B14 F308 B14 F309 B14 F310 C14 F311 C14 F312 C14 F313 F7 F314 F7 F315 F7 F316 F7

9

I301 B1 I302 C1 I303 F1 I304 D1 I305 F1 I306 E1 I307 E1 I308 F2 I309 F2 I310 G1

I311 G2 I312 D2 I314 D3 I316 D3 I318 C4 I322 D4 I324 D4 I325 G12 I326 G13 I327 G13

10

I345 D7 I347 D8 I348 D8 I349 C9 I350 D9 I351 D9 I352 D10 I362 D11 I363 C11 I364 D11

I330 D4 I331 C5 I332 C6 I334 D5 I335 D6 I338 C7 I339 E11 I341 D7 I342 D7 I344 D8

11

I377 B13 I378 B13 I379 E14 I384 G4 I385 G4 I386 G5 I387 G5 I388 F3 I389 F9 I390 G10

I365 D12 I366 D13 I367 D11 I370 B10 I371 B10 I372 B10 I373 B10 I374 B10 I375 B10 I376 B10

12

I907 B10 I908 B10 I909 B10 I910 B10 I911 B10 I912 B10 I913 C11 I914 C3 I915 C4 I916 C5

I391 G10 I392 F10 I396 G10 I900 E6 I901 F6 I902 F6 I903 F6 I904 G6 I905 G6 I906 G6

13

14

15 AUX_SUPPLY

FROM TO

I924

+3V3_STBY_SW F305

5

I925

SCL

F306

6

SDA

F307

7

GND

F308

8

I907

I371

5V 5

P1

SCL 14

VCC_PROT

I908

I372

5V 6

P2

+3V3_PROT

I909

I373

5V 7

P3

3371 100R

OVRERVOLTAGE

I910

I374

5V 9

I/O BIT 8 SHIFT P4 PORTS REGISTER

100R

5V 11 P6

POWER-ON RESET

I378

SDA 15

VDD 16

+T

I931

STANDBY

F310

11

I927

F311

12

F312

13

2370 F323

D 2K7

3369

2V9

I379

4

10

8

F319

NC NC NC NC

1PS76SB10

6378 10K

3328

6325

BZX384-C6V8

1K

3394

1K

3392

10K

3391

20FMN-BMT

10

0V1

7326 BC847BW

7327 BC847BW

10K

VSAGO

I326

4K7

7393 4V2 BC847BW 6390 I390

I327

I325 3326

3327

I906

3386

BC857BW 7391

470R

F318

5V

5V

3325

VCEGO

I396

BAS316 16

I905

TO CN7 PDP (DISPLAY)

1u

2385

3385

100K

F317

F321

100K

47K

VRA

I392

8V6 UNDER VOLTAGE PROTECTION

100n

I386

I385

I904

TO PROTECTION

+5V_STBY_SW

+8V6

10K 2393

11

I384

F316

SUPPLY_ON

F320

TO

VSA_CONTROL

7366-C LM324D

STANDBY

3393

6 0V1

VRS

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20

5V BC857BW 7389 0V1 +3V3_OVP

10K

0307

F315

I903

1K 5V

10K

IAK

3389

1K

16

1%

2380

220K

RES 0,1% 3382

100n

7366-B 4 LM324D 3387 0V1 7 I387 470R

0V1 5

7366-D LM324D

47K

2381

100n 16 3381

0V7

3388 I389

4300 RES I902

3380

VSK F313 S_GND F324 VAK F314

3395

I901

220n

2303

50

I934

3390

RES 0,1% RES 0,1%

I900

47K

11 I311

C

TO

+t PTH9M

10K

3368

3366 3367

11

I366

2

10K

1K

3365 I365 I920

3

11

14

13

7376 BC847BW

I305 = 0V I312 = 4V9 I318 = 5V I331 = 5V I338 = 5V I362 = 5V I363 =4V9 I365 = 4V8 I370 = 4V9 I371 = 5V I372 = 5V I373 = 5V I374 = 5V I375 = 4V I376 = 5V F300 = 9V F301 = 9V F302 = 8V6 F304 = 5V F305 = 3V3 F309 = 3V3 F310 = 0V4 F313 = 2V3 F314 = 2V F315 = 0V1 F316 = 0V8 F317 = 1V3 F318 = 3V2 F319 = 3V3 F343 = 0V

VRA

VRS

FILTER_STBY IAKS

H

100n 3376

2376

BAS316

6376 4K7

12

0V1

I933

FANCONTROL

F322

IAK BUFFER 4

I310

3377

G

I932

4V8

4

BAS316

1K

16

3364

100n

2364

6365

6364

BAS316

1K

I367

I364

0V

7362 BC847BW

7366-A LM324D 4V8 1

FAN_SP2

FAN_SP1

2K2

4K7

3358

3359

TEMP

DCPROT

5V

1K

3363

10K

100n 3353

16

I352

10K 2352

4K7

3354

50

4K7

3361 3362

1K2

7351 BC847BW

I362

BAS316

I351 0V

I919

6362

3351

10K I350 BC847BW 0V7 7352

BT169

3360 +9V_STBY_SW

25

1K

I349 3349

0V

I391

100K 0,1% 3803 100K 0,1% 3804

3303 I388 3302 3305

16

100n

6K2 0,1% 3805

50

220n 2316

RES RES 0,1% 2396

0,1%

100K 0,1% 3800

FROMVS

16

0V7 I308

RES 0,1%

BAS316

100K 0,1% 3801

3397 I309 3396

0V 7375 BC847BW

3316

6375

7K5 0,1% 3802

I305

47K

3373 3374

F

I303

B CONTROL

I926

9 10

9

4K7

I930

F309

10K

VSA CONTROL

TO 0319

I929

F303

KTY81

3378

VA

I928

TEMP_3

I363

I913

2u2

2343

4K7

3350 0V

100u

330R

7348 BC847BW

I348

5V

2350

BAT254

0V1 330R 3348

3346

I347 1K 6347 3347

I344

6348 I918

3344 6344

BZX384-C3V3 1K

3340

3341 1K

10K 10K

I345 1K

1PS76SB10

3342

F343 3343

12

I342

BAS316

6341 6342

1%

2K7

8 2V3

15K

1%

7330-C LM339D 5V 14

9

BC857BW 7341 0V

5V

12

3

4K7

I341

10

100n 16 3335 I335 3334

BAS316 2324

7330-D LM339D 5V 13

3

1PS76SB10

2V8 11

6340

1K

3333

1PS76SB101PS76SB10

6333 6335

16

1%

12

10K

4 1V9

7330-A LM339D 5V2 2

6334

12

5

100n I322

7330-B LM339D 5V 1

I334

6

3K9

3322

1%

1K

3321

1PS76SB10 1PS76SB10 2322

3

3

3323

12

7K5

8 1V7

7308-C LM339D 5V3 14

BAS316

+5V_STBY_SW

3V5 I330 7

I339

+9V_STBY

I923

POWER_OK 3372

VSS 8

12 P7

3370

16

4V 10 P5

I376

TEMP_PROT 4V9

I375

DC_PROT

VCEGO

I338

I332

4

VA_PROT

4K7

1K

3339

3338 I917

3K9

3332

1%

4K7

3331 3330 I331

I916

1K

1%

11K

4K7

3320

1K

3318 I915

6321 6322

7K5

1%

12

3

1%

I316

7308-D LM339D 5V 13

I324

3

6324

1K

3312

6V2 11

9

3317

3

+5V_STBY_SW F304

5V I377

PH-B

10 100n 16 3313

1PS76SB10

6312 6313 6314

1%

12

F302

A2 3

I912

LATCH

2

+8V6

P0

TO AUX_SUPPLY

1

2

3

4

5

6

TO CL 26532038_027.eps 290302

LLC_SUPPLY

7

8

9

10

11

12

A

I922

+9V_STBY_SW F301

4V9 4

INPUT FILTER

1

0319 I921

A1 2

I370

2 BUS C I CONTROL

F300

A0 1

I935

I911

12K

3307

I306

1K

3324

2

7308-A LM339D 0V 2

I314 1PS76SB10 2306

+5V_STBY_SW

4 1V9 I307

I312

12

5

TL431CZ 7304

E

6

BAS316

I302 100n

11K 1%

2305

3306

1K

I304

3304

16

1K

INTERRUPT LOGIC

VS_PROT

3345

7308-B LM339D 4V9 1

3

25V

1n0

2304

3V7 7

+3V3 PROTECTION

3308

3

3

VCC PROTECTION

I318

I914

F368

1

3319

4K7 1%

220K

3311

1K

3300

C

D

VA PROTECTION

1%

3301 I301

3309

1%

VS PROTECTION

220K

2.5 Vref

3310

70-90V

+9V_STBY

INT_ 13 LP FILTER

3352

+5V_STBY_SW

+9V_STBY_SW

7370 PCF8574AT

LLC_SUPPLY

LLC_SUPPLY Vs_unsw

220K

B

+3V3

ERROR LOGGING

SWITCH

VA

FROM

LATCH

FROM

DC_PROT

A

FROM

TO FILTER_STBY

100n

FROM

POK

VCC_GO

VCC

VA

POK

TO

PROTECTION

I927 C15 I928 B15 I929 B15 I930 B15 I931 B15 I932 C15 I933 C15 I934 F6 I935 B10

I917 C7 I918 D8 I919 D11 I920 D12 I921 A15 I922 A15 I923 A15 I924 B15 I925 B15 I926 B15

100n 16V

2350 D9 2352 D9 2364 D11 2366 E15 2370 C13 2376 G2 2380 F4 2381 H1 2385 H4 2393 H11

2366

0307 F8 0319 A15 2303 F4 2304 D1 2305 C1 2306 D3 2316 F3 2322 D4 2324 D6 2343 E8

13

14

15

E

F

G

H


Electrical Diagrams and PWB Layouts

FM23

7.

EN 46

Power Supply Panel: Fan Control 1

2

3

4

5

6

7

8

9

10

11

12

13

FANCONTROL A

A

FAN_SUPPLY_1

FROM

I701

D 7700 SI9433DY

F700 1

2703

6703

470u 16

EH-B

C

FAN_SUPPLY_2

I700 = 0V F700 = 0V F701 = 0V I704 = 0V I705 = 0V I709 = 0V

I705

I712

5709

3706

1m 330R

6706

BZX384-C18

D

I706

5710 100MHZ

D 7706 SI9433DY

S

2

M

1K0

PROTECTION

470u 16

2709

6709

7707 BC847BW

E

2K2

E

3708

2K2

PRLL5819

3709 I709

3707

FAN OPTIONAL

EH-B

I713 I708

FAN_SP2

D

0390 1

G

3

FROM

B

FAN OPTIONAL

2K2

3702

C

M

F701 3

7701 BC847BW

2K2

0389

2

PRLL5819

3703

G

I704

3701

5704 100MHZ

1K0

3700

S

I711 I703

FAN_SP1

I710

5703 1m

330R

B

6700

2700

AUX_SUPPLY

BZX384-C18

+12V

470u 16

I700

F

F

G

G

H

H

I

I

CL 26532038_028.eps 290302

1

2

3

4

5

6

7

8

9

10

11

12

13

0389 B8 0390 D8 2700 B4 2703 C7 2709 E7 3700 B5 3701 C5 3702 C5 3703 B6 3706 D5 3707 E5 3708 E5 3709 D6 5703 B7 5704 B7 5709 D7 5710 D7 6700 B5 6703 C6 6706 D5 6709 E6 7700 B6 7701 C6 7706 D6 7707 E6 F700 B8 F701 B8 I700 B6 I701 B5 I703 C5 I704 C5 I705 D6 I706 D5 I708 E5 I709 E5 I710 B7 I711 C6 I712 D7 I713 E6


Electrical Diagrams and PWB Layouts

FM23

7.

EN 47

Power Supply Panel: Pre-Conditioner 1

2

3

4

5

6

7

8

9

10

11

12

13

PRECONDITIONER F996

5600 CE423D

B

2616

330u

450 2W

LLC_SUPPLY 6616

0R12

3615

2W

FLM 1/6W

FILTER_STBY AND

F604

C

F605

D

F608

F613

F610

400V_HOT

2000

2610

I635

BZT03-C18 3614

6609

0V (0V)

I609

I630

0V01 (0V)

1V5 (0V)

1K

3R3 SFR16

3611

12R

SFR16

3608

F601

BC369 7608

50

1V4 (0V)

C

2613

1V5 (0V)I606

50

1n

400

1n

1u

2605

7610 STY34NB50 3610 I607

2612

400V

TO I608

0R12

I605 6608 I634

2

F600

BYV29X-500

1n5

5612

6611

RES

6

4

2

GBU8

I604

BAS316

100V / div DC 5ms / div F608

STANDBY ( . . . ) RES2000

1

1n

I603

F601

100-230VAC1

D

A

2611

100MHZ

6600

MEASURED DC-VOLTAGES

PRECONDITIONER

14

6605 4

F999

NORMAL . . 16

1000

1n

FILTER_STBY

2601

1

2600

3

FROM

B

F998

3999 1K

1000

100-230VAC2

F997

1N5406

6606

1N5406

A

SW25V_HOT 6663

OUT

GND

LLC_SUPPLY BIAS

PRLL5819

E

1m

2662

100u 25

2664

6660

IN

NFR25H

1K

NFR25H

3673 F606

1M

750K

MRS25 1%

3670

4n7

2673

400

22n

400

10K

3671

1%

1%

100n 16

H 220K

S

VR25

3674 I628 2674

25

1n

I629

16

BAS316

6641

2642

10K

10K

1V5 D (0V)

100n

3667

0V2 (0V) G

I624

G

3664

1K

9

6642

2670 I636 2671

LEB

BZX384-C18

AGND

RES 25

8

7640 BSN304

6643

PGND 10

I626

50

ZC

470p

7

1V2 (0V)

PRLL5819

2641

GATE 11

7641 BC337-25

(0V) 2V7 2640

6 CS

(0V)

(4V6) 14V7

330R

12

1K

13

3640

FC VCC

50

50

6653

330p

2653

PRLL5819

50

4n7

6652

FLM 1/6W

3666

3V7

CONTROL

470R

470p

5 MULT

(0V) 1V7

14V7 (4V8)

I625

3641 I623

25

4 COMP

1V (0V01)

0V1 (0V04)

100R 2666

PRLL5819

50

10n

6651

2651

10K

3651

50

1u

2655

(0V)

PRLL5819

3639

14

I619 I620

3665

15

NC2

25

NC1

3 VFB

1n

2 RD

2665

16

2608

LINE

I627

6640

F610

100n

1 VREF

I618

BZM55-C8V2

1M RES

25

2656

25

47u

2654

100n

I615

BC857BW 7654

16

2V3 (0V)

I616

3652

2V3

2652

10K

3654

6654

14V9 (4V8) I614 6665

7660 L7815

100R

(0V)

5V (0V1) BAS316

I637

F609

2672

5V

I617

1K

PR01

3675

220R PR01

I622

7650 MC33368

I621

6V9 (0V4)

H

RS1G

25

470R

3642

G

3655 I633

31V (5V7) I613

6661

F 3668

5 V / div DC 5µs / div

820R

200 V / div DC 5µs / div

100u

NFR25

I612

TO

BAS316

PRECONDITIONER CONTROL 3650

F

1R

I611 2663

I632

FLM 1/6W

5 V / div DC 5µs / div F625

RES NFR25 3663

I631

RS1G

F600 = 380V F604 = 0V F609 = 14V7 I609 = 0V I619 = 0V I621 = 5V I622 = 399V I629 = 5V

3653

5 V / div DC 5µs / div F608

I610

1M3

E

10 V / div DC 5ms / div

5V / div DC 5µs / div I620

MRS25

5V / div DC 5µs / div I607

3676

25

3662

I

I

HOT GROUND

1

HOT BORDER

2

3

CL 26532038_029.eps 290302

4

5

6

7

8

9

10

11

12

13

2600 B3 2601 B2 2605 C3 2608 H8 2610 C7 2611 B8 2612 C6 2613 C6 2616 C9 2640 H9 2641 H9 2642 G11 2651 H4 2652 H3 2653 H5 2654 H1 2655 H3 2656 H2 2662 E9 2663 E7 2664 E8 2665 H8 2666 H4 2670 I12 2671 H12 2672 H7 2673 G12 2674 G12 3608 C5 3610 C6 3611 C7 3614 C7 3615 C8 3639 H8 3640 H9 3641 G9 3642 G9 3650 G3 3651 H3 3652 H3 3653 G5 3654 H1 3655 H1 3662 E6 3663 E6 3664 H12 3665 G8 3666 H4 3667 H6 3668 F7 3670 G12 3671 H12 3673 G12 3674 H12 3675 E8 3676 E8 3999 A10 5600 B5 5612 B7 6600 B2 6605 A3 6606 A2 6608 B6 6609 C7 6611 B8 6616 C8 6640 G9 6641 H10 6642 H11 6643 H9 6651 H4 6652 H5 6653 H5 6654 H1 6660 E7 6661 E8 6663 E9 6665 E9 7608 C6 7610 C7 7640 H9 7641 G10 7650 G6 7654 H2 7660 E9 F600 B10 F601 B3 F604 D10 F605 D10 F606 I10 F608 D11 F609 F9 F610 G9 F996 A10 F997 A10 F998 A11 F999 A11 I603 B4 I604 B6 I605 B5 I606 C6 I607 C6 I608 B7 I609 C8 I610 E5 I611 E7 I612 E7 I613 E8 I614 E9 I615 H1 I616 H3 I617 G2 I618 H4 I619 H4 I620 H5 I621 G4 I622 G7

I623 G7 I624 H9 I625 G10 I626 H10 I627 G12 I628 G12 I629 H11 I630 C8 I631 E6 I632 E7 I633 H1 I634 B6 I635 C6 I636 H12 I637 E9


Electrical Diagrams and PWB Layouts

FM23

7.

EN 48

Power Supply Panel: LLC Supply

4

5

BAS316 50

3050

6041

RES

RES

47u 160

6043

470p 250

F014

16

2030

Vs Voltage Adj.

18K

3030

PR02

I094

1

3

I057

SHIELDING 3.3 10n 50 3292

5V / div DC 2µs / div

1

200V / div DC 2µs / div

2

5V / div DC 2µs / div

3

6291 1 D4SBL20U

5293

I291

2

25

100n

11K 1%

F

TO

+18V

AUX_SUPPLY

5291

4 2293 220p 50

I293

6 5

GND_SND

3

VSND_NEG

39u

H

SUPPLY & DC PROTECTION

4

F290 5292

TO 0302

7

F297 F293 F292

39u

SHIELDING 3.3

DC_PROT 8

2

F298 F294 F295

1 PH-B

HOT

HOT GROUND

4

5

COLD

6

CL 26532038_030.eps 020502

COLD GROUND

7

8

9

10

G

F296 9

VSND_POS

3

560R

1002

F291 +9V_STBY

39u

1m

2290

VRS

3032

2

2 CU15 4 5290

3 1 1003 SHIELDING 3.3

SHIELDING 3.3

I292

H

1001

1000

220p 50

1m

100V / div DC 5µs / div

I290

2291 0204 HEATSINK

E

0302

2292

2V / div DC 2µs / div

I091

11K 1% 7011 TL431CZ

VB

2294

200V / div DC 5µs / div F038

F014 = 2V4 F293 = 14V F294 = -14V5 F801 = 17V F815 = 78V F816 = 78V I027 = 2V6 I085 = 13V4 I090 = 4V2 I091 = 2V4

I098

5V / div DC 20µs / div F004

I083

I096

I007

F005

25

1K

250

4V2 3031

17V3

I095

F003

1n

2038 100K

10K

3038

3037 I075

I090

3028 7K5 1%

I080

TO PROTECTION

BAS316

GND4

G

D

VRS FEEDBACK

3029

75K

6023

7010 TL431CZ

I084

I083

1M

2023

1

3

3R9

6R8

15K

3021

10n 50

2010

BAS316

6010

10K

2n2

3024 3n3 50

13V4

NFR25

56K

BAS316

10n 50 3013

50

7018 BC847BW

1n5 2000

3067

10K

BAS316

10n 50 6009 I035 3020

MRS25 1%

I089 2024

47K

180n

220p 50

2045

3023

I088 2025

BY28

3040

2000

U13

T5AL 250V 19372

100K

35

2022

330R

I092

I082

I085 3022

1045 I077 6045

I076

VS I078

100R

33K

I055

2029

FROM AUX_SUPPLY

3039 73V5

BZX384-C47

3057

17V3

BY28

220p 50

I054

TO

70-90V

I079

1K 3041

I081

2014

1005 I074 6021 T5AL 250V 19372

6042

1K8

9

F017

220p 200

3025

10

8

74V1

BF423 7042

470R 3034

I034

I073

2044

I093

I036

I072

11

7

2

1

100n

2015

3

3026

12

F016

78V4

220p 200 100

5

2028

2m2

13

Vs_unsw 2020

4

C

RES 200

6044

14

2042

(T5AL250V) RES I070

STTH2003C

15

3

2043

1600

2001

2

BZX79-C15

2012

16

6

2000

FLM 1/6W

6012

5002 CE423D

77-100V

1

1042

1

TO AUX_SUPPLY

F015

2

I069

2000

2013

330p

1M

BZX79-C15

47u 450 2017

FLM 1/6W

6013 3076

100K 100K

10R

3018

I059 BC327-25 7008

BAS316

U14

(T5AL250V) RES

2011

6019

7021 BC517

1041 3

F005

BZT03-C 7006 STU16NB501

1M

3077 I057

3078

1N4148

I053

50

2u2

10K 2016

3070

3011

560R

3075

10R 3033

2K2

I045

3015

7022 BC847BW

2K2

3081

3017

RES 200 I067

6077

I049 2040

B

2

3

F006

100n 16

PROTECTION I065 2041

GND3

6011 I033

STANDBY ( . . . )

TO

I063

1

7002 TCET1102

I066

LOW SIDE DRIVE

I050

33R I052 I051 6028

6075

I037

BAS316

100R

BAS316

3080 I048

6005

I047

3019

50

2u2

2009

3056 3012

I023 47K 2026

3027 I029

I024

I061

2

3071 F007 47K

I028

7020 BC517

CURRENT PROTECTION

2008

I026

4K7

50

15n

I022 2027

3064

F

2

I020

10K

I025

I039

1K

I031

3

4

BZT03-C 7005 399V STU16NB501

F002

BC327-25 7007

6022

I030

7009 BC847BW

3065

15K

SOFTSTART CONTROL

BC857BW 7017

3066

4K7

16

100n

1K 2007

3009

3007

6018 I044

1N4148

13

I032

1n

2035

14 2

0V6 (5V)

BAS316 6004

25

I010 22n

10K

I018

1K

1K

1N4148 3010

A

NORMAL . .

I062

BAS316

3049 12K

3047

3008

6027

3016

6008

150K

I021

33R I046

1N4148

I012 I013

330R

I017

FI 10

FAULT DET/ LATCH

1

1004 T2AE 250V 19196

I041

I043

10

F008 F009

I016

BZM55-C47

4

F004

GND

BAS316

VR25

F003

7V3 OB 12 (0V3) 0V01 PGND 13 (0V)

2.5V CLAMP SOFT-START

15

MEASURED DC-VOLTAGES

1m

5003 I040 150u

3014 I038

11

STEERING FLIP-FLOP

ONE-SHOT

BZM55-C5V6

6033

5M6

2036

22n 25 3006

630

16

100n 1K

7V3 OA 14 (0V3)

4

50

I019

27p

2034

3046

2V (0V7) 6 EAO 4V9 ERROR (1V2)8 I+ 4V9 (0V7)7 I4V9 (0V) 11 SOST

BZM55-C5V6 3045 I015 6032

I014

E

2032

100p

1K

3 OSCCC 16 OS

5001 CE136H

VREF UVLO

BAS316 6035

3044 I011 6031

2000

3042

470R

4K7

4K7 2033

3043

33K

6034

I042 6007

5V1 VREF (0V5) 5

5.0 V

4

1084

2002

3097

400V_HOT

HIGH SIDE DRIVE

REFERENCE

1K

630

200p

2004

100K

3003 15K

3048

D

2005

3004

I009 1n 25

I095 H6 I096 H7 I098 H8 I290 G11 I291 H11 I292 H10 I293 H11

14

+5V_STBY_SW

LATCH

17V (7V6) 15

VARIABLE FREQUENCY OSCILLATOR

2 OSCR

I027 3005

2006 I008

VCC UVLO/ ENABLE

1 OSCC

13

I084 F8 I085 E12 I088 E13 I089 E12 I090 F13 I091 F14 I092 F13 I093 F12 I094 F12

FROM

I064

VCC

9 EN|UA

12

I075 D13 I076 E10 I077 E11 I078 D13 I079 D13 I080 F10 I081 F7 I082 F7 I083 F8

I065 B11 I066 B9 I067 B10 I069 C11 I070 C11 I071 C10 I072 D10 I073 D10 I074 D11

7003 TCET1102

FILTER_STBY

VS-CONTROLLER I007

11

I055 E8 I056 B4 I057 D8 I059 E7 I060 A10 I061 A10 I062 B10 I063 B10 I064 B9

FILTER_STBY

35

2003

1K

I004

CONTROL

I046 C7 I047 D7 I048 D6 I049 D8 I050 D7 I051 E7 I052 E7 I053 E7 I054 E7

I037 C7 I038 C7 I039 C7 I040 B8 I041 B8 I042 C7 I043 C7 I044 C8 I045 C6

FROM

I006

C

10

I028 G2 I029 G2 I030 E5 I031 E4 I032 E5 I033 F4 I034 F5 I035 F5 I036 F5

I019 E1 I020 E3 I021 F1 I022 F2 I023 F3 I024 F4 I025 F2 I026 F2 I027 C3

I060

I005

7001 MC34067P

I010 D2 I011 D2 I012 D4 I013 D3 I014 E1 I015 E2 I016 E3 I017 E2 I018 E3

PRECONDITIONER

F001

I003 18V6 (0V) 7091 BC857BW

1K

9

I001 A4 I002 A4 I003 A5 I004 B5 I005 B4 I006 B3 I007 C2 I008 C2 I009 C2

O

1m

I056

100

4u7

3093

2090

B

F290 H13 F291 G13 F292 H13 F293 H12 F294 H12 F295 H13 F296 G13 F297 H12 F298 H12

A

15V9

19V3 (24V)

3091

8

F005 D9 F006 D8 F007 F3 F008 D6 F009 D6 F014 F12 F015 C13 F016 C13 F017 D12

I071

470R 7092 BC327-25

BC857BW 7090

7042 D13 7090 A3 7091 B4 7092 A4 7093 A5 F001 A5 F002 C8 F003 C6 F004 D6

FROM

I

FILTER_STBY

7008 E7 7009 E5 7010 E12 7011 F13 7017 F3 7018 F3 7020 C8 7021 E8 7022 D7

F1AL 250V 19370

3092

100R

6077 D8 6095 A5 6291 H11 7001 C3 7002 B9 7003 A9 7005 C8 7006 D8 7007 C7

6033 E2 6034 D2 6035 D2 6041 C11 6042 D13 6043 C12 6044 D11 6045 E11 6075 B8

7

47u

3090 I001 25V_HOT

6018 C8 6019 E7 6021 D11 6022 D7 6023 E13 6027 C7 6028 E7 6031 D2 6032 E2

SW25V_HOT

7093 18V6 LM317T 17V (22V1) (7V6)

I002

6004 D6 6005 D6 6007 C7 6008 D7 6009 F5 6010 F4 6011 F4 6012 E8 6013 C8

3097 B5 3292 H10 5001 C6 5002 C9 5003 B8 5290 G10 5291 H12 5292 H12 5293 G12

6

BIAS SUPPLY

FROM

A

3078 E8 3080 D6 3081 D7 3090 A3 3091 B3 3092 A4 3093 B3 3095 A5 3096 B5

10n

LLC_SUPPLY

3064 F3 3065 E4 3066 F3 3067 F5 3070 E6 3071 F3 3075 C8 3076 C8 3077 D8

3044 D1 3045 E2 3046 E1 3047 E2 3048 D1 3049 D3 3050 F7 3056 E4 3057 D12

10n

3

3033 D7 3034 F13 3037 D13 3038 D13 3039 D14 3040 E13 3041 F13 3042 D1 3043 D1

330p

2

3024 E12 3025 F12 3026 F12 3027 G3 3028 F13 3029 E13 3030 F12 3031 F14 3032 F14

3015 C7 3016 C7 3017 D7 3018 E7 3019 E7 3020 F5 3021 F5 3022 E12 3023 E12

1600

3006 D2 3007 F2 3008 F2 3009 F1 3010 E4 3011 E5 3012 F3 3013 G4 3014 C7

2090 B3 2290 H10 2291 G11 2292 H11 2293 H11 2294 H11 3003 C1 3004 D1 3005 C2

3095

1

2035 E1 2036 D2 2038 D13 2040 D8 2041 B11 2042 C11 2043 C11 2044 D11 2045 E11

470R 6095

2025 E13 2026 G3 2027 F3 2028 C11 2029 E11 2030 F12 2032 D2 2033 D2 2034 E1

2013 C9 2014 F6 2015 F5 2016 E6 2017 C9 2020 D11 2022 E11 2023 E14 2024 E12

5K6

2004 C2 2005 D1 2006 C2 2007 F2 2008 G4 2009 E5 2010 F5 2011 E9 2012 D9

3096

1005 D10 1041 B10 1042 C10 1045 E10 1084 F10 2000 E10 2001 C9 2002 B5 2003 B4

820R

U13 E9 U14 E6 0204 G9 0302 G13 1000 H6 1001 H7 1002 H9 1003 H8 1004 B8

11

12

13

14

15


Electrical Diagrams and PWB Layouts

FM23

7.

EN 49

Power Supply Panel: Aux Supply

I268

F261

3

4268

220u 25

2269

3268 I125 3134

330R

BC847BW

VA

F130 F131

2121

2m2 100

3147

11K 1%

I129

22u 25

F118

F120 F119 3

2

10V9

5

6

VCC VH

16

NC

F

F134 F135 F136 F140 1

1

2

2

3

3

4

F107 4

5

5

6

6

7

F137 7

VA NC NC

NC

TO CN52 PDP (DISPLAY)

8

9

PH-B

H

35

1m

VCC

GND

F114

TO FANCONTROL

12V4

+12V

8V4

+8V6

OUT

TO PROTECTION

6

CL 26532038_031.eps 150402

10

G

VCC

PH-B F138 F139 2228

2m2 25

11K 1%

0352 1

TO CN42 PDP (DISPLAY)

9

7

E

VCC

3

VCC

47u 16

I243

IN

2231

I224

TO CN23 PDP (DISPLAY)

2

7230 L4940 47u 16

100p 50

150R

3228 3224

12K 1%

10K 100n 16 7227 I237 TL431CZ 3

BYV28 2232

7

1

NC

3226

F116

2230

18

NC

100p 50 2226

3225

11

I240

5

NC

VCC

I234 2227

I241 6230

10K 2217

6

3

0342 VA

6u8

2m2 25

2224

5225

2

100p 50

BZX384-C18 3217

STPS20L40CFP 6225

3

I238 1 2222

I209

5V

6u8

100p 50

47u 160

2219

7217 PSMN070 D G S 6216

I216

330n I219 16

3

12

4

4

NC

VH

5V2 2 I232 5224

2 13

7

2 F132 4

I231

I233 1 2223 3

5

VA

I235

14

VS

1

2225

5220 CT296F 1

9

I230 6224 STPS20L40CFP

1V3

10

7

F129 F133 F106 2

BZX384-C15

BAS316

6213

12V

8

6 F123 8

F126 F127 F128

D

F121 0323

I122

NC

1

TO

0333

47K

4

TO

TO CN33 PDP (DISPLAY) 9

7220 TCET1102

3n3

1V7 DRIVER I217 5 0V SENSE 3216

270K 1M

3213

47u 25

2205

6205

100n 16

2u2 25

2210

6211

PH-B VA

TO

3135

3136

C

2 1

F122

VA

1600

6

14V2

2218

7

4 3

VCC-SUPPLY

I236

8 78V5

2211 220p 50

FILTER_STBY VCC F102

F124

CONTROLFUNCTIONS

5

VS

6232

DEMAG

TO

VCC

7134

2

0R1 1W

HVS

CTRL

4

B

TO 0305

F264 8

VCC

VRA

VSA_CONTROL

IAKS

1u 63

I132 33K

100n 16

2126

3

11K 1% 7130 TL431CZ

RS1G

4

5 V / div DC 2µs / div

9

PROTECTION

3131 1

5

2

0305

10

VA

18K 3130

I126

I128

0R1 1W 3219

100n 16

GND

CONTROL

1V3 3

3214

100K

DRAIN

I218

1K 2212

3212

47R I208 3205

I215

BZX384-C18

100R

VCC

I221

3204

BAS316 2203

6202

1 2

I220

I222

2021

3202

Vs Va alignment

4

3203

78V3

7202 BSN20

+3V3 F263 12

A

I267

11

I270

F111

F116 = 12V4 F261 = 3V3 I101 = 76V I124 = 10V6 I127 = 2V8 I128 = 3V9 I132 = 2V6 I200 = 97V I201 = 78V3 I202 = 0V I208 = 0V I213 = 0V I214 = 14V2 I220 = 9V I261 = 17V3 I266 = 0V

7212 TEA1507

I214

3

F262

100u

1K

330p 50

2265

2268

5268 SB540

13 14 15

I123

3218

0V 14V2

100K

600V

F240

BZX79-C18

6061

100n 16

100n 16

47K 2059

3088

7059 BF422

2061

I203

F241

2

PH-B

0V

47K

I204 0V

6

F125

MFLM PR01

10K

3201

3200

7200 BSN304 I213

1

2m2 100

I202

+t 232266293

I201 3053

1K

3062

3083

10K

3084

7052 IRFR18N15D

3086

I207

3085

47K 47K

3087

1K

FILTER_STBY

1

1K

1K

7058 BC847BW

5

47K

I211

3241 0392

I225

I264 2266

470n 16

I120 2122 3123

75K 1%

3122 Adj.

1K

VA

I212

6142

25

100n

BYV28

3240

78V3 2050

6050

1u 100

2058

39R

VS

97V

BZX79-C18

3058

1M

3051 I200

FROM

MCL4148

GND

I152

7K5 1%

100u

T2AL 250V 19372

7050 PSMN035

I161

I210 5200

1200

F113

78V3

SEQUENCE DISCHARGE

I

OUT2

OSC

500 mV / div DC 2µs / div

TO PROTECTION

+3V3

3

4n7 50

20K 1%

2263 2K2

3126

2

3124

6206

220K

20V / div DC 20µs / div

6086

3V4

VERKEERDE WAARDE

VA +18V

+5V_STBY_SW

SYNC

4

7K5 1% 3125

1K 3132

3142

BAS316

7121 TL431CZ I127

BAS316

H

2

VFB

20V / div DC 5µs / div

2V / div DC 2µs / div

I267

680p 100V

I107

G

CONTROL OUT1

14V

2n7 50

I265

2264

1m 35 2262

1K

3261

I266 I124

3

1K

VCC_GO

POK

F

COMP

9

1K

1u 3260 1K8

3120

I154

1

0V1

6123

3n3

2055

PROTECTION

BOOT

+18V

50

1K 1%

75K 1%

3140 70-90V

47K

55V4 7142 BF423

55V

FROM LLC_SUPPLY

3121 I121 2123

I131

6

I114

TO

VCC

SS

3127

5

2

I155

4 7140-B BC857BS 3

I156

220n 50

Vs_unsw

INH V5.1

PROTECTION

17V3 7260 8 L4973V

7

16

BAS316

6133 1

4

2

5

1

BC857BS 7140-A

I160

BYD33D

2138 1u 50

16

BAS316

I153 220R 1%

0R1 1W

2W 1%

3139

I110 330n I111

0R22

I265

6

75K 1%

1K I112 I117

6113

220R 1%

0R1 1W 3119

3116

3138

10K 2117

6 5

10

13 3118 I107

18 1

LLC_SUPPLY

3141 I157

3114

560K

470K

6055

12

16

TO

3146

I108

SENSE

I116

3113

3117

6120

DRIVER

7

BYW29EX

HVS

11

1V4

FROM

I118

BZX384-C18

3115

220p 50

GND

DEMAG

I115

1K 2112

1n 25

3112

2111

DRAIN

CTRL

4

17

I263

5120 CU20v

2114

BAS316

6111

BAS316

220u 25V

6112

2113

I159

I113

VCC

8

FROM

I135

2 14V9

I236

7

6117

CONTROL

57V9 3

10

1K0

55V7

7112 TEA1507 1

I109

56V9

58V 3

220K

10K

PR01

I106

D

6054

7117 PSMN035

78V5

1n 1000

7111 I104BF423

70V 2

BYD33D

78V4

78V4

I105

E

1K

1

3265

2133

1K

78V4 7110 BF423

15V9

70V 4 7120 TCET1102

I103

3111

2118

10K

SFR16

3110 I102

3129

2054

C

I101

100p 100V

I158

3054

2260

VA-SUPPLY

BT151X-500R

20V / div DC 20µs / div

6260

B

20V / div DC 20µs / div

+5V_STBY_SW

F110 1110

FILTER_STBY

STANDBY . .

3262

FROM

NORMAL . . T5AL 250V 19372

VB

I262

I106

220n 50

MEASURED DC-VOLTAGES

77-100V

FROM LLC_SUPPLY

I105

13

I216

220n 50

47u 25

2261

LLC_SUPPLY

I259

2270 0V02

A

12

+3V3_OVP

100u

750mA 60V 361

LLC_SUPPLY

11

+3V3-SUPPLY F115

I261

5260

10

6267

1260 I260

F260

9

100R

FROM

+18V

8

2267 I269

FROM

7

1K

AUX_SUPPLY

6

6K8

5

22n 25

4

3133

3

3264

2

3128

1

11

12

13

I

0305 A13 0323 E13 0333 D12 0342 G12 0352 G13 0392 H4 1110 B1 1200 G5 1260 A6 2021 I3 2050 G3 2054 C1 2055 F2 2058 H2 2059 I1 2061 I2 2111 D1 2112 D1 2113 E1 2114 E2 2117 D3 2118 C4 2121 D11 2122 D8 2123 D8 2126 E8 2133 E9 2138 D6 2203 I4 2205 I6 2210 I6 2211 I7 2212 H7 2217 I8 2218 H9 2219 H9 2222 H10 2223 G10 2224 G10 2225 H10 2226 H11 2227 G11 2228 H12 2230 I11 2231 I11 2232 I10 2260 B7 2261 A7 2262 A7 2263 B8 2264 B8 2265 A8 2266 B8 2267 B10 2268 A10 2269 B11 2270 A9 3051 G2 3053 H3 3054 B1 3058 G2 3062 H2 3083 H2 3084 I1 3085 I1 3086 I2 3087 I1 3088 I1 3110 C2 3111 C2 3112 D1 3113 D2 3114 D2 3115 D3 3116 D3 3117 D3 3118 D4 3119 D4 3120 D7 3121 D7 3122 D8 3123 D8 3124 D8 3125 E8 3126 E7 3127 E7 3128 E8 3129 C1 3130 D8 3131 D9 3132 E8 3133 C8 3134 D10 3135 E10 3136 E10 3138 D5 3139 D6 3140 E6 3141 E6 3142 E6 3146 C6 3147 D9 3200 G5 3201 G6 3202 H5 3203 I4 3204 I5 3205 I5 3212 H6 3213 I7 3214 I7 3216 H8 3217 I8 3218 I9 3219 I9 3224 G11 3225 H11

3226 H11 3228 F12 3240 G4 3241 H4 3260 B7 3261 B7 3262 A8 3264 A8 3265 A8 3268 B11 4268 B11 5120 C5 5200 G5 5220 G9 5224 G11 5225 G11 5260 A6 5268 B11 6050 G3 6054 E1 6055 E1 6061 I3 6086 I1 6111 D1 6112 E1 6113 D2 6117 C3 6120 D4 6123 D8 6133 B6 6142 G4 6202 I4 6205 I5 6206 F5 6211 I7 6213 I7 6216 H8 6224 G10 6225 H10 6230 I10 6232 I10 6260 B7 6267 B10 7050 G3 7052 I3 7058 I1 7059 I2 7110 C2 7111 C2 7112 C2 7117 C3 7120 C4 7121 D7 7130 E9 7134 E10 7140-A E5 7140-B D6 7142 D6 7200 G6 7202 H5 7212 H7 7217 H8 7220 F9 7227 H11 7230 I11 7260 A10 F102 C13 F106 F13 F107 G13 F110 A1 F111 C9 F113 G4 F114 I11 F115 A9 F116 I11 F118 E12 F119 E12 F120 F12 F121 E13 F122 C12 F123 E13 F124 C12 F125 E11 F126 E11 F127 E11 F128 E11 F129 F12 F130 D12 F131 D12 F132 F13 F133 F12 F134 F12 F135 G12 F136 G12 F137 H13 F138 H12 F139 H13 F140 G12 F240 H4 F241 H4 F260 A6 F261 B12 F262 B12 F263 B13 F264 B13 I101 B2 I102 C2 I103 C3 I104 C2 I105 C1 I106 C3 I107 D4 I108 D5 I109 D2 I110 D3 I111 D4 I112 D3

I113 E1 I114 E2 I115 D2 I116 D2 I117 D3 I118 C4 I120 D8 I121 D7 I122 E11 I123 D9 I124 D7 I125 D9 I126 D8 I127 D8 I128 D8 I129 E10 I131 E7 I132 E9 I135 C6 I152 C9 I153 D6 I154 D7 I155 D6 I156 D6 I157 E6 I158 C1 I159 E1 I160 E2 I161 G2 I200 G3 I201 H3 I202 I3 I203 I2 I204 I1 I207 I1 I208 H5 I209 H9 I210 G5 I211 G6 I212 G6 I213 H5 I214 H7 I215 H6 I216 H8 I217 H8 I218 H7 I219 I8 I220 H4 I221 I7 I222 I4 I224 I8 I225 I1 I230 F11 I231 F11 I232 G10 I233 G10 I234 G11 I235 G10 I236 H9 I237 H11 I238 H10 I240 I9 I241 I10 I243 I10 I259 A9 I260 A6 I261 A7 I262 A8 I263 A8 I264 B8 I265 B7 I266 B7 I267 A10 I268 B11 I269 B10 I270 B11


Electrical Diagrams and PWB Layouts

FM23

7.

EN 50

Layout Power Supply Panel (Top View)

This part CL 26532038_32a.eps see next page.

CL 26532038_032.eps 150402

0201 0203 0204 0302 0305 0306 0307 0308 0319 0323 0333 0342 0352 0389 0390 0392 1004 1005 1041 1042 1045 1084 1110 1200 1260 1400 1401 1402 1450 1460 2000 2001 2002 2003 2004 2005 2009 2011 2012 2013 2014 2016 2017 2020 2021 2022 2025 2034 2043 2050 2058 2090 2113 2118 2121 2122 2133 2138 2210 2218 2219 2224 2225 2228 2230 2231 2261 2269 2270 2292 2294 2303 2304 2305 2306 2316 2322 2324 2343 2350 2352 2364 2366 2370 2376 2380 2381 2385 2393 2396 2400 2401

B5 D4 D7 A9 F9 F5 F3 F2 F5 E9 E9 F9 F9 A9 A9 C8 C5 B8 A7 A7 B8 B8 B6 E7 F9 F1 E8 F1 E5 E5 A6 B5 A4 A4 A4 A4 A4 B5 A5 C5 A5 A4 B5 C9 D9 B9 E8 A6 B7 D8 B9 A4 C6 C6 D6 D6 D6 E6 F6 F6 E6 E8 F8 E9 E7 E7 F9 F9 F9 A8 A9 F8 F8 F8 F8 F7 F8 F8 F7 F7 F7 F6 F7 F6 F7 F7 F7 F7 F6 F8 F2 F3

2402 2403 2404 2405 2406 2407 2465 2503 2505 2508 2510 2530 2532 2533 2540 2541 2600 2601 2605 2610 2611 2616 2652 2654 2655 2662 2663 2664 2673 2674 2700 2703 2709 3014 3015 3017 3018 3021 3024 3026 3046 3050 3053 3054 3075 3077 3118 3119 3127 3129 3138 3139 3146 3201 3218 3219 3302 3303 3304 3305 3306 3307 3308 3309 3310 3312 3313 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3330 3331 3332 3333 3334 3335 3338 3339 3340 3341 3342 3344

F1 F2 F3 E1 E3 E1 E5 E4 C4 F5 E5 F4 F5 F4 F5 F5 E3 D3 D2 C2 C2 D4 C2 C2 C2 A2 A3 A2 D1 C1 A9 A9 A8 C4 C4 B4 B4 A5 E8 D6 A6 B5 C9 B9 C4 A5 C7 C7 D6 B6 D7 D7 E7 E6 F5 F6 F9 F8 F8 F8 F8 F8 F7 F7 F8 F8 F8 F8 F8 F7 F7 F8 F7 F8 F8 F8 F5 F5 F5 F5 F8 F8 F8 F8 F8 F8 F8 F8 F8 F7 F7 F7

3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3376 3377 3378 3380 3381 3382 3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3395 3396 3397 3400 3401 3402 3403 3404 3450 3451 3452 3506 3507 3508 3608 3610 3611 3614 3615 3650 3653 3662 3663 3666 3668 3670 3673 3674 3675 3676 3800 3801 3802 3803 3804 3805 4300 5001 5002 5003 5120 5200 5220 5224 5225 5260 5268 5290 5291

F7 F7 F7 F7 F7 F7 F7 F7 F7 F7 F6 F7 F6 F6 F6 F6 F6 F7 F7 F7 F8 F7 F6 F6 F5 F7 F7 F7 F7 F6 F7 F7 F7 F7 F7 F7 F8 F8 F6 F6 F6 F6 F6 F6 F9 F8 F2 F2 F3 F3 F1 E4 E4 D2 E4 F4 D4 B2 B2 B3 C2 C2 C2 B2 A3 A3 C2 C1 D1 C1 C1 A3 A3 F9 F8 F8 F9 F8 F8 F2 B4 B6 D5 D7 E6 F7 E9 E9 F8 F9 B9 A9

5292 5293 5401 5402 5500 5505 5600 5612 5703 5709 6007 6008 6012 6013 6021 6027 6028 6041 6043 6044 6045 6050 6054 6055 6061 6075 6077 6120 6142 6206 6224 6225 6230 6260 6267 6291 6312 6313 6314 6321 6322 6324 6325 6333 6334 6335 6340 6341 6342 6344 6347 6348 6362 6364 6365 6375 6376 6378 6390 6501 6502 6505 6600 6605 6606 6609 6611 6616 7001 7002 7003 7005 7006 7007 7008 7010 7011 7020 7021 7042 7050 7052 7059 7092 7093 7110 7111 7112 7117 7120 7121 7130

A9 A9 F2 E2 F5 F5 B2 C3 A9 A8 C4 B4 A5 C5 B9 C4 B4 B8 C7 C8 B9 D8 B9 B9 C8 C5 A5 C8 D9 F7 E8 F8 E7 F8 F9 A8 F7 F7 F7 F7 F8 F7 F5 F8 F8 F8 F8 F8 F8 F7 F7 F7 F6 F6 F7 F7 F7 F7 F6 F4 F4 F5 E3 D4 E4 B3 C3 C3 A4 D5 D5 C5 A5 C4 B4 D5 D5 C4 B4 C9 C8 C8 B8 B4 B4 B6 B6 C6 C6 C6 C6 D6

7140 7142 7200 7212 7217 7220 7227 7230 7260 7304 7308 7326 7327 7330 7341 7348 7351 7352 7362 7366 7370 7375 7376 7389 7391 7393 7500 7501 7502 7530 7531 7540 7608 7610 7640 7641 7650 7660 7700

D7 D6 E6 F6 F6 F8 F8 E8 F9 F8 F8 F5 F5 F8 F7 F7 F7 F7 F6 F7 F6 F7 F7 F8 F6 F6 F4 F4 F5 F4 F4 F5 B2 B3 B1 B1 C2 A3 A8


Electrical Diagrams and PWB Layouts

FM23

7.

EN 51

Layout Power Supply Panel ( Part 1 Top View)

CL 26532038_32a.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 52

Layout Power Supply Panel (Overview Bottom View)

PART 1 CL 26532038_33a.eps

PART 3 CL 26532038_33c.eps

PART 2 CL 26532038_33b.eps

PART 4 CL 26532038_33d.eps

2006 2007 2008 2010 2015 2023 2024 2026 2027 2028 2029 2030 2032 2033 2035 2036 2038 2040 2041 2042 2044 2045 2054 2055 2059 2061 2111 2112 2114 2117 2123 2126 2203 2205 2211 2212 2217 2222 2223 2226 2227 2232 2260 2262 2263 2264 2265 2266 2267 2268 2290 2291 2293 2504 2507 2509 2511 2512 2513 2608 2612 2613 2640 2641 2642 2651 2653 2656 2665 2666 2670 2671 2672 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3016 3019 3020 3022 3023 3025 3027 3028 CL 26532038_033.eps 150402

A6 A6 A7 A7 A6 D5 D4 A7 A6 C2 B1 D5 A6 A6 A4 A6 C1 B6 B2 B2 C2 B1 B1 B1 C2 C2 C4 C4 C4 C4 C4 C4 F4 E4 F3 F4 F4 F2 E2 F2 F2 E3 F2 G1 G1 G1 G1 G1 G1 G1 B1 A2 A2 F6 F5 F5 F5 F5 F6 C8 B8 B8 C8 C8 B8 C8 C8 C8 C8 C8 C8 C8 C8 A6 A6 A6 A6 A6 A6 A6 A6 A6 A7 A7 C5 B5 A7 D5 D5 D4 A7 D4

3029 3030 3031 3032 3033 3034 3037 3038 3039 3040 3041 3042 3043 3044 3045 3047 3048 3049 3051 3056 3057 3058 3062 3064 3065 3066 3067 3070 3071 3076 3078 3080 3081 3083 3084 3085 3086 3087 3088 3090 3091 3092 3093 3095 3096 3097 3110 3111 3112 3113 3114 3115 3116 3117 3120 3121 3122 3123 3124 3125 3126 3128 3130 3131 3132 3133 3134 3135 3136 3140 3141 3142 3147 3200 3202 3203 3204 3205 3212 3213 3214 3216 3217 3224 3225 3226 3228 3240 3241 3260 3261 3262

D5 D5 E5 E4 B6 D4 C1 C1 C1 D4 D4 A6 A6 A6 A6 A6 A6 A6 C1 A6 D5 C1 C1 A7 A6 A6 A7 A6 A7 C6 B6 B6 B6 C1 C2 C2 C2 C2 C2 A7 A6 A6 A6 A6 A6 A6 B4 B4 C4 C4 C4 C4 C4 C4 C4 C4 D4 D4 D4 D4 D4 C4 D4 D4 D4 D4 C4 C4 C4 D4 D4 D4 D4 E4 F4 G4 F4 F4 F4 F4 F4 F4 F4 F2 F2 F2 F2 C2 C1 F2 F2 G1

3264 3265 3268 3292 3300 3301 3311 3343 3460 3461 3463 3465 3467 3469 3470 3501 3502 3503 3504 3505 3520 3530 3639 3640 3641 3642 3651 3652 3654 3655 3664 3665 3667 3671 3700 3701 3702 3703 3706 3707 3708 3709 3999 4268 5704 5710 6004 6005 6009 6010 6011 6018 6019 6022 6023 6031 6032 6033 6034 6035 6042 6086 6095 6111 6112 6113 6117 6123 6133 6202 6205 6211 6213 6216 6232 6460 6461 6470 6471 6503 6504 6510 6511 6512 6513 6520 6530 6531 6608 6640 6641 6642

G1 G2 G1 B1 F3 F3 F1 G3 E5 E5 E5 E5 E5 E5 E5 F5 F5 F5 F5 F5 G6 G6 C8 C8 B8 C8 C8 C8 C8 C8 C8 C8 C8 C8 A1 A1 A1 A1 A2 A2 A2 A2 A2 G1 A1 A1 B6 B6 A6 A6 A6 C6 B6 B6 D4 A6 A6 A6 A6 A6 C2 C2 B6 C4 C4 C4 C3 C4 C4 G4 F4 F3 F4 F4 E3 E5 E5 E5 E5 E6 F5 E6 F6 F6 F7 G6 G6 G6 B8 C8 B8 B8

6643 6651 6652 6653 6654 6660 6661 6663 6665 6700 6703 6706 6709 7009 7017 7018 7022 7058 7090 7091 7134 7202 7460 7465 7470 7654 7701 7706 7707

B8 C8 C8 C8 C8 A8 A8 A7 A8 A2 A1 A2 A2 A6 A7 A7 B6 C2 A7 A6 C4 F4 E5 E5 E5 C8 A1 A2 A2


Electrical Diagrams and PWB Layouts

FM23

7.

EN 53

Layout Power Supply Panel (Part 1 Bottom View)

CL 26532038_33a.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 54

Layout Power Supply Panel (Part 2 Bottom View)

CL 26532038_33b.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 55

Layout Power Supply Panel (Part 3 Bottom View)

CL 26532038_33c.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 56

Layout Power Supply Panel (Part 4 Bottom View)

CL 26532038_33d.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 57

SCAVIO Panel: Function Blocks and Connection Diagram

SCAVIO PANEL (FUNCTION BLOCKS AND DIAGRAM CONNECTIONS)

+5V

+3V3

+2V5

+3V3_STBY_SW

VIDEO SELECTION MATRIX

MATRIX_SEL VIDEO_SEL_1 VIDEO_SEL_2 HD_BLANKN HD_CLAMPN

VIDEO SELECTION ADC

PW_SDA PW_SCL

Y_OUT(0:7) UV_OUT(0:7) PW_SCL PW_SDA CLKOUT_DEINT VPEN VOUT_DEINT HOUT_DEINT VFIELD_DEC

VIDEO DECODER

SYNC_SEL

MATRIX_SEL VIDEO_SEL_1 VIDEO_SEL_2 HD_BLANKN HD_CLAMPN

ADHS GCLK ADVS ADSOG ADDE GCOAST GBLKSP GRE(0:7) GGE(0:7) GBE(0:7) GRO(0:7) GGO(0:7) GBO(0:7)

CVBS YS CB CR

GR_CLK GR_ADDE ALT_GR_ADDE

GR_CLK GR_ADDE ALT_GR_ADDE

ADHS GCLK ADVS ADSOG ADDE GCOAST GBLKSPL GRE(0:7) GGE(0:7) GBE(0:7) GRO(0:7) GGO(0:7) GBO(0:7)

SYNC_SEL

Y_OUT(0:7) UV_OUT(0:7)

+8V6

+9V_STBY

SDA_1 SCL_1 VXCA_18M432

SDA_1 SCL_1 VXCA_18M432

SDA_SW

SDA_SW

SCL_SW

SCL_SW

SOURCE_SELECT

SYNC_SEL

POWER_OK

VIDEO_SEL_1 VIDEO_SEL_2

ADSOG GCLK ADVS ADDE ADHS GCOAST GBLKSP GRE(0:7) GGE(0:7) GBE(0:7) GRO(0:7) GGO(0:7) GBO(0:7) Y_OUT(0:7) UV_OUT(0:7) PW_SCL PW_SDA CLKOUT_DEINT VPEN VOUT_DEINT HOUT_DEINT VFIELD_DEC

ADSOG GCLK ADVS ADDE ADHS GCOAST GBLKSPL GRE(0:7) GGE(0:7) GBE(0:7) GRO(0:7) GGO(0:7) GBO(0:7)

SCALER-PW164 SDA_SW SCL_SW VXCA_18M432

Y_OUT(0:7) UV_OUT(0:7) PW_SCL PW_SDA CLKOUT_DEINT VPEN VOUT_DEINT HOUT_DEINT VFIELD_DEC

VIDCLK

VIDCLK

AUDIO PROCESSOR

+MEMORY

PW_SCL PW_SDA CLKOUT_DEINT VPEN VOUT_DEINT HOUT_DEINT VFIELD_DEC

VIDCLK

+5V

SCALER_AND_CONTROL

VIDEO_SELECTION_AND_AQUISITION

GND

GND

DRE(0:7)

DRE(0:7)

DGE(0:7)

DGE(0:7)

DBE(0:7) PARITY DEN DHS DVS DCLK

DBE(0:7) PARITY DEN DHS DVS DCLK

PW_SDA PW_SCL

PW_SDA PW_SCL

MSP_RESET

MSP_RESET I2S_CLOCK I2S_DATA_OUT I2S_DATA_IN1 I2S_DATA_IN2

SYNC_SEL

VGA1_R VGA1_G VGA1_B VGA2_R VGA2_G VGA2_B

R_ADC G_ADC B_ADC

VGA1_R VGA1_G VGA1_B VGA2_R VGA2_G VGA2_B

+8V6

SCALER-CLOCK-GENERATOR

H_ADC V_ADC

H_HD_EXT V_HD_EXT

V_SYNC_POL_N V_SYNC_TTL H_SYNC_POL_N H_SYNC_TTL 75OHM_ON V_SYNC_CMP H_SYNC_CMP V_SYNC_LM C_SYNC_LM C_SYNC_OUT H_PRESENT H_HD V_HD

+5V

PRE_OUT2_L PRE_OUT1_L SCL_AUDIO SDA_AUDIO PRE_OUT2_R PRE_OUT1_R D_CTR_NIL SC1_R SC1_L AUDIO_ENABLE D_CTR_ONE

SYNC-PROCESSING

V_SYNC_POL_N V_SYNC_TTL H_SYNC_POL_N H_SYNC_TTL 75OHM_ON V_SYNC_CMP H_SYNC_CMP V_SYNC_LM C_SYNC_LM C_SYNC_OUT H_PRESENT H_HD V_HD

FBX_MODE

+5V_POW

+2V5 +3V3_STBY_SW

DCKEXT MCLK BOOTWE ROMOE ROMWE PW_SCL_NVM PW_SDA_NVM PW_RESET

+8V6 +5V_STBY_SW +3V3_STBY_SW

+3V3

A(0:19)

VREF1

+5V

D(0:15)

+3V3

VGA2_OUTN VGA1_H VGA1_V VGA2_H VGA2_V VGA2_EN VGA2_OUT

Y_HD VIDEO_SEL_1

+5V

VGA2_OUTN VGA1_H VGA1_V VGA2_H VGA2_V VGA2_EN VGA2_OUT

+9V_STBY

+5V_STBY_SW +5V_POW +8V6 +3V3_STBY_SW

VGA2_EN VGA2_OUT PW_START TXD_PW RXD_PW SDA_2 SCL_2 PW_RESET SYNC 1_2FH PW_FLASH_RESET

VREF1 +5V +3V3

AUDIO_DELAY_LINE

AUDIO_PROCESSOR_FUNCTION GND

+8V6

+9V_STBY

+5V_STBY_SW +3V3_STBY_SW

TV_MODE VGA1_R VGA1_G VGA1_B VGA2_R VGA2_G VGA2_B VGA2_OUTN VGA1_H VGA1_V VGA2_H VGA2_V

PW_FLASH_RESET

MAIN_CONTROL GND

ICONN_ON LIGHT_SEN_IN POWER_OK STANDBY GRN_LED RED_LED PSU_PROT FAN_SP_1 FAN_SP_2 PSU_IRQ RC SDA_SW

SCL_SW

SDA_SW

CONTROL_FUNCTIONS

SCL_SW

+8V6

PW_START SDA_2 SCL_2 SDA_1 SCL_1 PW_RESET IRQ_PDP CPU_GO PDP_GO

POWER_DOWN VIDEO_SEL_1 VIDEO_SEL_2 MSP_RESET POWER_OK

BACK-END EPLD

SYNC_SEL VIDEO_SEL_1 VIDEO_SEL_2 VGA2_V VGA2_H

VGA1_V VGA1_H GR_CLK GR_ADDE ALT_GR_ADDE TV_MODE

SDA_1 SCL_1

+2V5

1_2FH

TXD_PW RXD_PW

TXD_OTC RXD_OTC RC RS_232_ACT SYNC_ACT UART_ACT

VGA-INPUT

CONTROL-FUNCTIONS

+3V3

R_OUT(0:7) G_OUT(0:7) B_OUT(0:7) PARITY_OUT H_SYNC_OUT V_SYNC_OUT BLANK_OUT DCLK SCL_1 SDA_1 SCL_1_3V3 SDA_1_3V3 PWRDWN_LVDS POWER_DOWN_EPLD

+5V_POW

SELECT_1 SELECT_2 SELECT_3 SELECT_4 IR_TX RL_ICN GL_ICN LD_ICN IR_RX

TV_MODE VGA1_R VGA1_G VGA1_B VGA2_R VGA2_G VGA2_B VGA2_OUTN VGA1_H VGA1_V VGA2_H VGA2_V

+3V3

VIDCLK

HD_CLAMPN HD_CLAMPN HD_BLANKN HD_BLANKN V_SYNC_POL_N V_SYNC_POL_N V_SYNC_TTL V_SYNC_TTL H_SYNC_POL_N H_SYNC_POL_N H_SYNC_TTL H_SYNC_TTL 75OHM_ON 75OHM_ON V_SYNC_CMP V_SYNC_CMP H_SYNC_CMP H_SYNC_CMP V_SYNC_LM V_SYNC_LM C_SYNC_LM C_SYNC_LM C_SYNC_OUT C_SYNC_OUT H_PRESENT H_PRESENT H_HD H_HD V_HD V_HD MATRIX_SEL MATRIX_SEL

PW_FLASH_RESET

+5V

+5V_STBY_SW

+8V6

+3V3

TXD_PW RXD_PW

+5V

+8V6

SYNC

+2V5

+3V3 +3V3_STBY_SW

+9V_STBY

+5V_POW

FBX_MODE FBX_MODE

VGA2_EN VGA2_OUT VGA1_V VGA1_H GR_CLK GR_ADDE ALT_GR_ADDE TV_MODE VGA2_V VGA2_H

DRE(0:7) DGE(0:7) DBE(0:7)

DRE(0:7) DGE(0:7) DBE(0:7)

PARITY DEN DHS DVS DCLK

PARITY DEN DHS DVS DCLK

PW_SDA PW_SCL

PW_SDA PW_SCL

PW_SDA PW_SCL

PW_SDA PW_SCL

VGA1_V VGA1_H GR_CLK GR_ADDE ALT_GR_ADDE TV_MODE

PW_START SDA_2 SCL_2 SDA_1 SCL_1 PW_RESET IRQ_PDP CPU_GO PDP_GO

POWER_DOWN VIDEO_SEL_1 VIDEO_SEL_2

BACK-END LVDS-OUTPUT IRQ_PDP CPU_GO PDP_GO POWER_DOWN

BACK_END

MSP_RESET POWER_OK GND

CL 26532038_035.eps 290302


Electrical Diagrams and PWB Layouts

FM23

7.

EN 58

SCAVIO Panel: Sync Selection Source Selection 1

2

3

4

5

6

7

8

9

10

11

12

13

14

SYNC SELECTION & SWITCHING (ENHANCED ONLY, UNLESS INDICATED OTHERWISE)

14 Z

470K

I002

5009

Y1 13

+5V

11 S Vdd 16

RES

7002 BC847BW

V_SYNC_TTL

16 7

Y0 12

8 1

+5A

V_HD

B

I038

VGA1_V

GND

G4

10

VIDEO_SEL_2

9

SYNC_SEL

6

3

V_ADC

B

2

4 3019

1

1

2

BZX384-C2V4

I004

0

VEE

0 MDX

5 6019

VCC

3

10K

7001 BC847BW

4006

7000 BC847BW

BASIC

I003

A

7009-A 74HC4052D

100MHZ 2009

I041

100n

100n

VGA2_V

2001

2000

100MHZ

SWITCH 6 7 8 E Vee Vss

100n

7007-A 74HCT4053D

I000

5000 +5V

3000

A

BASIC 4010

100R

220K 2003

100n

47p 3004

470K

4K7

VGA2_EN_NOT

2u2

9 S Vdd 16

BASIC

+5A

1

GND

G4

D 13

BASIC 4009

VGA1_H

BZX384-C2V4 3007

+3V3_STBY_SW

100n

2020

2u2

100MHZ

3066

I014

5020 +5V

I001

+5B

+5B

SYNC. SLICER 7040 LM1881M

2040

8

100n

7

2041

6

100n 3042

5

BAT254

6022

100n

2022

22K

3023

100K

G

7041 BC847BW I022

VS O|E-FI RSET BG|BP

CSYNC VIN VSYNC GND

1 2

2042

3

100n

I025

4

16 Vdd 10 S

10K

F VGA2_OUT

Y0 2

Y_HD

+5B 3050 15 Z 1K

Y1 1 E Vee Vss

6 1K

I024

7065 BC847BW

7007-B 74HCT4053D

2K2

3024 I023

3065 I016

I017

3051

8

I021 3K3

6

4K7

3041

C_SYNC_LM

3040

I020 GND

VGA2_OUTN

+5V

100n V_SYNC_CMP

10

I015

5007 100MHZ 2007

1K

3026

7025-B LM319D 7

2K2

I018

11

3025

100K

3020 470n

2K2

I019 3021

2021 3022

V_HD_EXT

9

E

+5A

H_PRESENT

F

H_ADC

3

6007

10K

SYNC_SEL

2

11

I012

VIDEO_SEL_2

9 6

1

15

RES

VEE

10

0 MDX

14 4007

10n

470K

47p

4K7

12

0

H_HD

75R

3010

I011 3008

220K 470K

100n

H_SYNC_POL_N

2014

100R

3013

3014 2015

2012

3012

3011 I010

8

Y0 5

I013

2005

7

Y1 3

VCC

7

8

G

1K

2004 BZM55-C33

6010

16

I040

H_HD_EXT

3015

7009-B 74HC4052D

8

100n

4 Z

D

75OHM_ON

7

VGA2_H

10K

E

6

E Vee Vss

1K0

I009

2066

7007-C 74HCT4053D

H_SYNC_TTL

I007

I008

7010 BC847BW

C

SWITCH

3052

3006

VGA2_OUTN

I006

75R

3001 7006 BC847BW

2008

2u2

V_SYNC_POL_N

10K

75OHM_ON

BZM55-C33

6001

C

3005

3003

V_HD_EXT

3002 I005 2002

3054

I026

C_SYNC_OUT

3053

+3V3_STBY_SW I028

100n

H

100n

I036

I037

7060 BC847BW

VGA2_EN

VGA2_EN_NOT

10K

I VGA2_EN_NOT

3060

SHIELDING 3.3 SHIELDING 3.3 SHIELDING 3.3 1001 1002 1003

I

4K7

+5B

100MHZ 2060

6034

10n

BAT254

I035

I033

3061

3K3

3044

5060

2061

3035

1K 2K2

3

I027

2K2

I029

+5V 2034

22K

GND

3043

V_SYNC_LM H_SYNC_CMP

I032

4K7

100K 3032

7025-A LM319D 12

5 6

3034

I034

I030

11

3036

100K

3030 470n

2K2

H

I031 3033

2030 3031

H_HD_EXT

4

1K

2K2 220K

CL 26532038_036.eps 030502

1

2

3

4

5

6

7

8

9

10

11

12

13

14

1001 I7 1002 I8 1003 I8 2000 A3 2001 B4 2002 C5 2003 C6 2004 D2 2005 E2 2007 F11 2008 C5 2009 B12 2012 D5 2014 E6 2015 E5 2020 F5 2021 F4 2022 G4 2030 H4 2034 I4 2040 G8 2041 G8 2042 G9 2060 I10 2061 H13 2066 E14 3000 A4 3001 C2 3002 C5 3003 C5 3004 C5 3005 C6 3006 D2 3007 E10 3008 E6 3010 E2 3011 D4 3012 E4 3013 E5 3014 D6 3015 E2 3019 B10 3020 F4 3021 F4 3022 G4 3023 G4 3024 G4 3025 G6 3026 F6 3030 H4 3031 H4 3032 I4 3033 H4 3034 H4 3035 H6 3036 H6 3040 G7 3041 F8 3042 G8 3043 H8 3044 H7 3050 G11 3051 G10 3052 G12 3053 H12 3054 G12 3060 I12 3061 H13 3065 F13 3066 E13 4006 B8 4007 D8 4009 E13 4010 C13 5000 A3 5007 F11 5009 A12 5020 E5 5060 H10 6001 C1 6007 E9 6010 E1 6019 B9 6022 G5 6034 I5 7000 B4 7001 B5 7002 B6 7006 C2 7007-A A9 7007-B F11 7007-C C9 7009-A A13 7009-B C13 7010 E2 7025-A H5 7025-B F5 7040 G9 7041 G10 7060 I13 7065 F13 I000 A3 I001 F11 I002 A4 I003 B6 I004 B7 I005 C5 I006 C7 I007 C3 I008 D2 I009 D7 I010 D4 I011 D7 I012 E3 I013 E2 I014 E5 I015 F13

I016 F13 I017 F8 I018 F5 I019 F4 I020 F7 I021 F7 I022 G10 I023 G4 I024 G5 I025 G10 I026 G12 I027 H8 I028 H13 I029 H7 I030 H5 I031 H4 I032 H7 I033 H10 I034 H4 I035 H5 I036 H13 I037 I12 I038 A12 I040 D10 I041 A10


Electrical Diagrams and PWB Layouts

FM23

7.

EN 59

SCAVIO Panel: Video Selection & Matrix 9

10

11

12

13

VIDEO-SELECTION & MATRIX (ENHANCED ONLY, UNLESS INDICATED OTHERWISE)

+8A

1% 3K9

1

100MHZ

+5M

2

1K

47n

VREF2

3110

7090-B 8

8

7

I085

I090

2128 1p0

100u

2167

BZX384-C2V4

1K0

3146

3129

3145

22K

100n

2145 560R

10K

3173 100R

3170

I150

3152

560R

3133

+8SW 7130 BC847BW

2152 G_ADC

13

11

3

F152

22K

100R

3162

3163

100n

0

VEE

1

GND

G4

VIDEO_SEL_2

10

6

7131 BC847BW

+8SW

0 MDX 1

2

2V4

2158 B_ADC

3

2

4

3

47n

B+E

F158

7 8 12 14

MATRIX_SEL

15

10K

2K2

11

VCC

0

VEE

1

GND

G4

10

VIDEO_SEL_2

9

VIDEO_SEL_1

6

I

0 MDX 1

5

6

7

8

9

10

11

12

H

100R

BASIC

3166

4158 RES

7158-B 74HC4052D 16

+8AA

100MHZ

220R

22K

3160 22u

+8SW

I131

G

VIDEO_SEL_1

9

1K0

2157

3189

560R

22K

8

5 I128

+8AA

7

VCC

3131

3157

7158-A 74HC4052D 16

B+E

1n

BASIC

13

2 3

CL 26532038_037.eps 030502

4

F

47n

1K0

3190

560R

3149 3154

3182

100R

3132

22K

22K

VIDEO_SEL_1

6

3130

3148 100R

3171

270R

+8V6

7105 BC847BW

3111

1K2

10u

2162

1K

3174

100n

2105

2u2

2106

BZX384-C2V4

6105

2107

100n 10K

3186

6

TSH93 11

G4

2

1

7160 BC847BW I130

5140 I113

Vss Vee E

I083

2159 3159 I129

HD_BLANKN

I137

Z 14

1K

4

9

1K2

CB

CLOSE TO 7118 IN LAYOUT CVBS

3

10

2K2 3109

2123 3193

I135

1K

5170 +5V

I088

22u 3123

270R

I080

VGA2_B I149

13 Y1

1% 4K7

3180

2120 3120 I086

PB

22K

3121

I

3108

VREF1C

7107 PMBT2369

7104 BC847BW

3128 +8A

7121 BC847BW I087

100MHZ

5180

1K

7089-A 74HCT4053D 16 Vdd S 11 12 Y0

1p0

3107

1%

1

GND

9

+8AA

3V0

3161

1K8

22u

560R

+5M

11

I079

E

VIDEO_SEL_2

10

I148

2127

9

1%

BASIC

4152 RES

100u

1K8 3106

270R

I138

I078

0

VEE

+8SW

7157 BC847BW I127

2156 3156 I126

VGA1_B

4

7088-B 8 TSH93

15

2V4

VCC

1

I125

Z 14

Vss Vee E 8 7 6

100n 2143

10

1% 3K9

VREF2

+8AA

22u

2142

I077

I122

3158

+8A

B+E F146

0 MDX

14

7154 BC847BW I124

2153 3153 I123

100R

3104

13 Y1

I140

2110 220n

3105

VREF1B

I139

3172

CR

8

B+E

10K

47n

16

12

3V0

VREF1C

7100-A 16 74HCT4053DVddS 12 Y0 11

10K 3184

1K

3194

1K

3119

H

1% 4K7

6

270R

7103 BC847BW

3127 2119

7

VGA2_G

1%

1p

47n

2151 SOGIN

Vss Vee E 8 7 6

I072

330R 2103

I075

1% 1K8

I084

22u

22u VREF1C

Z 4

8

Z 15

3179

22K

100n

2117

3117 270R

680R 3102

270R

Vss Vee E

11 3103

7117 BC847BW I082

2116 3116 I081

PR

7090-C 14

D 2146 R_ADC

3

7146-B 74HC4052D

7151 BC847BW I121

2150 3150 I120

VGA1_G

13

3101

VREF1B

3 Y1

220n 3183

1K

3195

Y_HD

7089-B 74HCT4053D 16 Vdd S 10

TSH93

+8SW 7129 BC847BW

3

7

3155

I071

VIDEO_SEL_1

6

+8SW

VREF1C

2 Y0 1 Y1

4

G4

9

2

4

I119

22u

Z 15

7100-C 16 74HCT4053DVddS 5 Y0 9

1% 3K9

+8A 12

1

GND

VIDEO_SEL_2

10

1

2

+8AA

1p 3126

1% 1K5 +5M

270R

Vss Vee E 8 7 6

1K

G

1K 3100

1 Y1

1% 3097

1% 3099 VREF2

2147 3147 I117

VGA2_R

10K

100n

22K

1K

YS

7100-B 16 74HCT4053DVddS 2 Y0 10

11

1K

VEE

C

4146 RES

I065

390R 2097

0

0 MDX

5

2V4

VCC

7148 BC847BW I118

13

2115 47n

8 1

I116

+8AA

7

B+E

7088-C 14 TSH93

3098 I070

I076

22u

B+E

3V0

VREF1C

100n

4

1% 470R 1%

3115

270R

2113

3113 2112 3112 I073

22u

3151

12

4K7 3095 I064 1K2

Y

3177

+8A

3096

7113 BC847BW I074

7145 BC847BW I115

2144 3144 I114 270R

+8AA

220n

1% 1K 1% 3125 VREF2

7146-A 74HC4052D 16

7115 PMBT2369 VREF1C

VGA1_R

B

2108

2109

3094

VREF1A

F

I141

1p0

2168

3142

I066

3085

+5M

6

7102 BC847BW

680R 2124

I069

22u

I063

3092

7

2K2 3093

1% 330R

7085 BC857BW

560R

270R

220R

3084 75R

3081

BZM55-C33

6091

PB

22K

3083 2082 3082 I067

7084 BC847BW I068

11

8

2111

VREF2 VREF1B

E

6

1% 330R

+8A

4

I061

+8V6

Z 4

Vss Vee E

100n 7090-A I058 7 TSH93 3124

5

680R 3091

3 Y1

2090

3181

560R

+8A

10K

I142

2K2 3090

I062

22u

+8A

+8SW RES

4 X SWITCH

I146 I147 3176

1p0

3122

3080

270R

220R

3079 75R

3076

BZM55-C33

6076

PR

2114

I057

7079 BC847BW I060

22K

3078 2077 3077 I059

7112 BC847BW

100n 7089-C 1% 74HCT4053D 16 Vdd S 9 5 Y0

1K5

820R

2089

1%

4K7 3089

I112

+8V6 VREF1C

VIDEO-SELECTION +8SW

VREF1B

D

+8V6

7111 BC847BW

HD_CLAMPN

3118 11

I056

3088

5175 100MHZ

1K

100MHZ 5167

I134

5162 100MHZ

I054

10K

22K

3075

7088-A 7 TSH93

6

820R

7080 BC857BW

7110 BC847BW

RES

4

I055

3087

VREF2

I145

5090 5

1% 1K5

+8A

100MHZ

+5V

100n

3086

+8A

+8V6

F089

I144

3175

2088

1% 4K7

I053

22u

560R

270R

+8A

3114

5089

3178

220R

3074 3073 75R

6071

BZM55-C33

3071

Y

C

MATRIX

I050

7074 BC847BW I052

2072 3072 I051

I143

+8A 7075 BC857BW

5166 +5V

I111

22u

+8A VREF1A

100n 6166

2160 270R

B

VREF1B 2161

PR

VREF2

I133

5161 100MHZ

560R

PB

+8A

7141 BC847BW I110

2140 3140 I109

2166

22K

VREF1B

Y

NOT FOR SPEAKERLESS

Y

3138

H_HD_EXT

220R

F075

A

2V6

VREF1A

100MHZ

I107

22u

220R

4

270R

220R

H

V_HD_EXT

7165 BC847BW

I108

5160

500mV / div DC 5µs / div

560R

F072

500mV / div DC 5µs / div

3188

7 F074

6

500mV / div DC 5µs / div

22K

NOT FOR SPEAKERLESS

B/PB/Cb

V

3V3

I099

7138 BC847BW I106

2137 3137 I105

3141

1 F073

9

I104

22u

3139

CVBS

F071

R/PR/Cr

270R

560R

3

2134 3134 I102

PB

3136

F070

G/Y/Y

0380-B COMBI 5

VREF1

470R

BASIC + ENHANCED

560R

ONE BLOCK WITH AUDIO_RGB 0380-C ON SC 13 COMBI 8 F076

0379-A COMBI 2

+8A

22K

CVBS + Y INPUT ONE BLOCK WITH AUDIO_YC + AUDIO_CVBS ON SC 13

PR

A

3135

VREF1A

VREF1

0377 SPEAKERLESS VERSION

I101

3164

100MHZ

F158

100n

F152

2164

F146

7135 BC847BW I103

I100

5164 +8V6

+8A

VREF1B

14

2165

8

100u

7

220R

6

220R

5

3165

4

100n

3

100n

2

100n

1

13

14

0377 A2 0379-A A2 0380-B A4 0380-C A3 2072 C3 2077 D3 2082 E3 2088 C6 2089 C7 2090 D6 2097 F6 2103 G6 2105 C10 2106 C9 2107 C9 2108 E8 2109 E7 2110 H7 2111 H8 2112 F2 2113 F3 2114 D6 2115 G3 2116 H2 2117 H3 2119 H3 2120 I2 2123 I3 2124 E6 2127 H6 2128 I6 2134 A6 2137 A9 2140 B10 2142 I10 2143 I10 2144 D10 2145 D12 2146 D14 2147 E10 2150 F10 2151 F14 2152 F14 2153 G10 2156 H10 2157 G12 2158 H14 2159 H10 2160 A12 2161 B12 2162 B12 2164 A13 2165 A13 2166 A13 2167 A14 2168 B14 3071 C2 3072 C2 3073 C3 3074 B3 3075 C4 3076 D2 3077 D2 3078 D3 3079 D3 3080 D4 3081 E2 3082 E2 3083 E3 3084 E3 3085 F4 3086 C5 3087 C5 3088 D5 3089 D6 3090 D5 3091 D5 3092 E5 3093 E6 3094 E5 3095 F5 3096 F5 3097 F6 3098 F5 3099 G5 3100 G5 3101 G5 3102 G5 3103 G6 3104 H5 3105 H5 3106 I5 3107 I6 3108 I5 3109 I5 3110 I5 3111 I6 3112 F1 3113 F2 3114 C5 3115 G2 3116 H1 3117 H2 3118 C6 3119 H2 3120 I1 3121 I2 3122 D5 3123 I3 3124 D6 3125 E5 3126 F6 3127 H5 3128 I6 3129 D13 3130 F13 3131 H13 3132 E13 3133 E14

3134 A6 7158-B I13 3135 A7 7160 H11 3136 A7 7165 A14 3137 A8 F070 A2 3138 A9 F071 A3 3139 A9 F072 A5 3140 B10 F073 A2 3141 B11 F074 A3 3142 B11 F075 A5 3144 D10 F076 A3 3145 D10 F089 C7 3146 D11 F146 E14 3147 E10 F152 F14 3148 E10 F158 H14 3149 E11 I050 C4 3150 F10 I051 C2 3151 F10 I052 C3 3152 F11 I053 C4 3153 G10 I054 C6 3154 G10 I055 C5 3155 G11 I056 C5 3156 H10 I057 D3 3157 G10 I058 D6 3158 H11 I059 D2 3159 I10 I060 D3 3160 H10 I061 D5 3161 I11 I062 D3 3162 G13 I063 E5 3163 G13 I064 F5 3164 A13 I065 F6 3165 H13 I066 E3 3166 H13 I067 E2 3170 D9 I068 E3 3171 F9 I069 E3 3172 H9 I070 F5 3173 D9 I071 G5 3174 C10 I072 G6 3175 B9 I073 F2 3176 C9 I074 F2 3177 E7 I075 G5 3178 D7 I076 F3 3179 H7 I077 H5 3180 I7 I078 H6 3181 I8 I079 H5 3182 I9 I080 I5 3183 H8 I081 H2 3184 H8 I082 H2 3186 E9 I083 I6 3188 I11 I084 H3 3189 G11 I085 I5 3190 E11 I086 I2 3193 I3 I087 I2 3194 H3 I088 I3 3195 G3 I090 I7 4146 E13 I099 A13 4152 F13 I100 A13 4158 H13 I101 A14 5089 C7 I102 A6 5090 C7 I103 A7 5140 I10 I104 A7 5160 A12 I105 A8 5161 B12 I106 A9 5162 B12 I107 A10 5164 A13 I108 A12 5166 B14 I109 B10 5167 B14 I110 B11 5170 I1 I111 B11 5175 B10 I112 B14 5180 D8 I113 I10 6071 C2 I114 D10 6076 D2 I115 D11 6091 F2 I116 D11 6105 C9 I117 E10 6166 A14 I118 E10 7074 C3 I119 E11 7075 B4 I120 F10 7079 D3 I121 F11 7080 D4 I122 F11 7084 E3 I123 G10 7085 E4 I124 G10 7088-A C5 I125 G11 7088-B H5 I126 H10 7088-C F5 I127 H11 7089-A H7 I128 H11 7089-B F7 I129 H10 7089-C D7 I130 H11 7090-A D5 I131 I10 7090-B I5 I133 A13 7090-C G5 I134 B13 7100-A G8 I135 I2 7100-B E8 I137 I8 7100-C F8 I138 H8 7102 E7 I139 H6 7103 G7 I140 H7 7104 I8 I141 E6 7105 I8 I142 E7 7107 H9 I143 B7 7110 C7 I144 B10 7111 C8 I145 C8 7112 C8 I146 C10 7113 F2 I147 C9 7115 C10 I148 H8 7117 H2 I149 I8 7121 I2 I150 I8 7129 D13 7130 F13 7131 G13 7135 A7 7138 A9 7141 B11 7145 D11 7146-A C13 7146-B E13 7148 E10 7151 F11 7154 G10 7157 G11 7158-A G13


Electrical Diagrams and PWB Layouts

FM23

7.

EN 60

SCAVIO Panel: Video Selection ADC 4

5

9

10

11

4200

125 REFIN

1 64 69 74 76 80 85 86 95 97 102 103 106 112 113 116 121 122 128 130 131 133 142 152

4203

4202 ALT_GR_ADDE

+3V3

+3V3

2

BAV99W 6206 3

2

BAV99W 6207

2

1

1

3

3

2

BAV99W 6203

1

1

3

BAV99W 6202

1

1

2

2

BAV99W 3 6205

1

1

3

2

2

BAV99W 6204

BAV99W 6200 3 BAV99W 6201 3

12 22 32 41 42 6 44 52 58

4 5 F172

I151

100n

2212

1K

1K 3212

3211

F

2

REF 49 CTL3

48 CTL2

47 CTL1

46 CTL0

53 RTERM

66 RXC-

65 RXC+

57 RX2-

56 RX2+

60 RX1-

59 RX1+

63 RX0-

62 RX0+

GR_ADDE

GR_CLK

100R

137 DE F201 45 SCAN_OUT REFOUT 126 1V3

134

135 DATACK_

136 SCDT

DATACK

SOGOUT

VSOUT

140

138

HSOUT 139

BLUEB7

33

34 BLUEB6

35 BLUEB5

BLUEB4

36

38

37 BLUEB3

BLUEB2

39 89 A1 +3V3MAIN1

2

SCL

6

SDA

7 8

F174

RX1-

9

F175

RX1+

10

G

F162 +3V3PLL

100R

I161

6214 I160 5214

F176

100MHZ 2217

F216 7 3

10K

3216

3218

4K7 RES

VCC SCL

SDA

VCLK

NC1

DU

H

16 RX0-

17

RX0+

18 19

+3V3

20 F178

21

1

3213

3214

4K7 100R

MCL4148

6208 BAV99W

7215 ST24FC21 8 6

6210

F177

DDC-EPROM

3215

100MHZ

2

+5V_STBY_SW

NC2

5

3217

1

100R 4215

22 F180 F181

2

RXC+

23

RXC-

24

6209 BAV99W

4216

VSS

1V / div DC 5ms / div

4

25

I 26

+3V3

1

3

1V / div DC 10µs / div

14 15

I165

5210

3

3n9

4K7

2211

100n

2210

13 I166

10u

10u

RX2+

12

GND 1

1

3

2

2

F171

RX2-

I159

PW_SCL

OUT

E

0375 F170

100R

RES

3209

3K3 I158

PW_SDA

H_ADC

10u

2199 IN

F196 = 3V3 F197 = 5V2

GCOAST

3

D

F173

MCL4148

GBLKSPL

F197

F211

F210

2197

5197

2195

1171

F 315mA L 32V

+3V3MAIN2

7175 LD1117

100MHZ

90 A0

91 SCL

92 SDA

I152 78 FILT 1V7 1K

39n 2209

3210

F211 SOGIN

3208

V_ADC

5199 F199

I

TMDS RECEIVER

GENERATION

SYNC PROCESSING AND CLOCK 2208

F210

0V3 B_ADC

G_ADC

R_ADC

10u

2198

0V3

0V3

10u

2196

+3V3OUTPUT

100MHZ

GND1

C

DVI INPUT SOCKET

I154

RES

+3V3_AD

BLUEB1

40

AND POWER MANAGMENT

A/D

A/D I157

GND2

B

11

+3V3MAIN1

5198 F198

+5V_POW

BLUEB0

BLUEA7

23

24 BLUEA6

25 BLUEA5

BLUEA4

26

27 BLUEA3

BLUEA2

28

29

8

8 2205

F203

F202

I156

GND3

5196 F196

H

GND11

GND5

94 CKINV

71

I155

+3V3_AD

100MHZ

GND12

GND6

3206

VDD1

F 500mA L 32V 441

+3V3_AD

GND13

GND4

VDD2

+3V3

100MHZ

GND14

VDD3

1170

+3V3_AD

BLUEA1

BLUEA0

GREENB7

30

13

14 GREENB6

GREENB5

15

16 GREENB4

17 GREENB3

GREENB2

18

19 GREENB1

20 GREENB0

GREENA7 3

4 GREENA6

GREENA5

5

6 GREENA4

7 GREENA3

GREENA2

8

9 GREENA1

GREENA0

10

153 REDB7

154 REDB6

REDB5

155

156 REDB4

157 REDB3

REDB2

158

159 REDB1

160 REDB0

143 REDA7

144 REDA6

REDA5

145

146 REDA4

147 REDA3

REDA2

148

149 REDA1

VDD4

100n

G

GND15

GND10

10K

2193

GND16

GND7

I153 83 CKEXT

100n

100n

VDD5

3207

2192

GND17

GND8

84 COAST

2191

VDD6

93 CLAMP

100n

100n

GND18

GND9

VDD7

+3V3PLL

2190

GND19

VDD8

NC1

F

2189

1

100n

VD1

108 SOGIN

100n

VD2

82 HSYNC

2187

2188

VD3

81 VSYNC

100n

11 21 31 43 132 141 151

100n +3V3OUTPUT 2186

VD4

99 BCLAMPV

2185

E

+TMDS RECEIVER

VD5

100n

100n

VD6

101 BMIDSCV

100n 2184

AD-CONVERTER

2207

2183

VD7

GND20

CLAMP

100n

VD8

100 BAIN

100n

VD9

100n

2181

2182

GND21

VD10

109 GCLAMPV

100n

GND22

VD11

2206

D

GND23

VD12

111 GMIDSCV

2180

VD13

CLAMP

2179 100n +3V3MAIN2

GND24

110 GAIN

100n

GND25

VD14

100n

100n 2178

GND26

VD15

118 RCLAMPV

2177

GND27

VD16

120 RMIDSCV

100n

GND28

A/D

2176

GND31

VD17

CLAMP

C

GND32

GND29

119 RAIN

100n

GND33

PVD1

8

2175

A

{GR_CLK,GR_ADDE,ALT_GR_ADDE,TV_MODE}

GND30

50 SCAN_CLK

100n

51 54 55 67 68 70 96 98 104 105 107 114 115 117 123 124 127

100n +3V3MAIN1 2174

150

4201

3200

100R

RES

PVD2

129 SCAN_IN

100n

NC3

2172

14

3219

PVD3

NC2

100n 2173

PVD4

73

100n

72

2171

PVD5

REDA0

75 77 79 87 88

+3V3PLL 2170

B

13

ADDE

GCLK

ADVS

ADSOG

ADHS

3204

100R

3203

3205

GBO(7)

GBO(6)

GBO(5)

GBO(4)

A

7170 AD9887KS

12

{ADSOG,ADVS,ADDE,ADHS,GCLK} GBO(3)

GBO(2)

GBO(1)

GBO(0)

GBE(7)

GBE(6)

GBE(5)

GBE(4)

GBE(3)

GBE(1)

GBE(0)

GGO(7)

GGO(6)

GGO(5)

GGO(3)

GGO(2)

GGO(1)

GGO(0)

GGE(7)

GGE(6)

GGE(5)

GGE(4)

GBO(0:7)

100R

GBE(0:7)

GGO(0:7)

GGE(3)

GGE(0)

GRO(7)

GRO(6)

GRO(5)

GRO(4)

GRO(3)

GRO(2)

GRO(1)

8

GBE(2)

GGE(0:7)

GRO(0:7)

GRO(0)

GRE(7)

GRE(6)

GRE(5)

GRE(3)

GRE(4)

GRE(2)

GRE(1)

GRE(0)

7

(BASIC & ENHANCED VERSION)

VIDEO-SELECTION -ADC GRE(0:7)

6

GGO(4)

3

GGE(2)

2

GGE(1)

1

CL 26532038_038.eps 030502

1

2

3

4

5

6

7

8

9

10

11

12

13

14

0375 F14 1170 G2 1171 I1 2170 B1 2171 B1 2172 B1 2173 B1 2174 C1 2175 C1 2176 C1 2177 C1 2178 D1 2179 D1 2180 D1 2181 D1 2182 D1 2183 D1 2184 E1 2185 E1 2186 E1 2187 E1 2188 F1 2189 F1 2190 F1 2191 F1 2192 F1 2193 F1 2195 I2 2196 G2 2197 I2 2198 H2 2199 H2 2205 G4 2206 G5 2207 G6 2208 H7 2209 H7 2210 H7 2211 H7 2212 G11 2217 H11 3200 A10 3203 A9 3204 A9 3205 A10 3206 G7 3207 G7 3208 H7 3209 H8 3210 H8 3211 G10 3212 G10 3213 I9 3214 I9 3215 I9 3216 I9 3217 I11 3218 I11 3219 A11 4200 A12 4201 A10 4202 A12 4203 A11 4215 I11 4216 I11 5196 G2 5197 I1 5198 H2 5199 H2 5210 H13 5214 H10 6200 C12 6201 D12 6202 D12 6203 E12 6204 C13 6205 D13 6206 D13 6207 E13 6208 H13 6209 I13 6210 H13 6214 H10 7170 B2 7175 I2 7215 I10 F162 I2 F170 F12 F171 F12 F172 G12 F173 G12 F174 G12 F175 G12 F176 H12 F177 H12 F178 I14 F180 I12 F181 I12 F196 G2 F197 I1 F198 H2 F199 H2 F201 B10 F202 G3 F203 G3 F210 H6 F211 H7 F216 I10 I151 G11 I152 G8 I153 G7 I154 G10 I155 G5 I156 G6 I157 G6 I158 H7 I159 H8

I160 H10 I161 H11 I165 H13 I166 H14


Electrical Diagrams and PWB Layouts

FM23

7.

EN 61

SCAVIO Panel: Video Selection Decoder 1

2

3

4

5

6

7

8

9

10

11

12

13

14

VIDEO-SELECTION-DECODER (ENHANCED VERSION ONLY) A 2250 100n

100n 3V3DB

100n 2286

100n 2288

100n

3V3DE

3V3DE

100n 2285

100n 2287

100n 2284 3V3DC

3V3DC

3V3DE

100n 2283 3V3DC

3V3DE

100n 2282 3V3DC

2280

100n 2281

3V3DB

3V3DB

3V3DB

2249

2248 100n

2247 100n

2240 100n

2232

50 YIN7

UV_DEC(0)

31 UVIN0

UV_DEC(1)

32 UVIN1

UV_DEC(2)

33 UVIN2

UV_DEC(3)

34 UVIN3

UV_DEC(4)

37 UVIN4

UV_DEC(5)

38 UVIN5

UV_DEC(6)

39 UVIN6

UV_DEC(7)

40 UVIN7

2267

2268

47n

47n

2269

2270

47n

47n

3284

21 SDA

100R 3285

I 2 C -BUS 20 SCL INTERFACE

PW_SCL

100R

PLL1 CLOCK DOUBLING

54 CLK1 VSS2

VSS1 2

8

24 42 55

36 52 58

LM LINE MEM

F247

VPEN

3289-B

100R

YOUT2 5

100R

3289-C

YOUT3 4

3289-D

100R

YOUT4 3

100R

3290-A

YOUT5 1

3290-B

100R

YOUT6 64

100R

3290-C

YOUT7 63

3290-D

100R

Y_OUT(0) Y_OUT(1) Y_OUT(2) Y_OUT(3) Y_OUT(4) Y_OUT(5) Y_OUT(6) Y_OUT(7)

E

100R 3291-A

UVOUT0 17 UVOUT1 16

3291-B

100R

UVOUT2 15

100R

3291-C

UVOUT3 14

3291-D

100R

UVOUT4 13

100R

3292-A

UVOUT5 12

3292-B

100R

UVOUT6 11

100R

3292-C

UVOUT7 10

3292-D

100R

100R 3293

CLKOUT 26 PLL2 CLOCK DOUBLING

D

UV_OUT(0) UV_OUT(1) UV_OUT(2) UV_OUT(3) UV_OUT(4) UV_OUT(5) UV_OUT(6)

F

UV_OUT(7)

F249 CLKOUT_DEINT

100R

X2

47n

47n

LM LINE MEM

X1|CLK2

2266

RES

2265

4250

47n

47n

2254

I203

2264

3289-A

YOUT1 6

30 RESET 19 TEST

3286-A

VOUT_DEINT HOUT_DEINT

Y_OUT(0:7)

Y_DEC(7)

100R F246

UV_OUT(0:7)

49 YIN6

F245

100R

YOUT0 7

OFC OUTPUT FORMAT CONVERSION

Y_DEC(6)

100R

HREF 62

INTERPOLATION

48 YIN5

3286-C

INTERLACED 18

HDR SCAN RATE CONVERSION

47 YIN4

Y_DEC(5)

3286-B

HOUT|HEXT 60

OSC OUTP SYNC CONTR.

VERTICAL

Y_DEC(4)

ED

46 YIN3

56 41 25 9 VDD1 VOUT|VEXT 61

eDRAM

Y_DEC(3)

DATA BUFFER INTERFACES

45 YIN2

CONTROL

44 YIN1

Y_DEC(2)

DETECTION

Y_DEC(1)

LDR NOISE REDUCTION VERTICEL MOTION DETECTOR AND MEASUREMENT HORIZONTAL DECIMATION

D5 D9 D11 G11 L4 L8 L11 D7 D10 F11 J11 L5 L9

VSSI

MC MEM CTRL

43 YIN0

Y_DEC(0)

MOVIE MODE AND PHASE

RES

22 VIN

IFC INPUT FORMAT CONVERSION

Y_DEC(0:7)

3263

UV_DEC(0:7)

I206

Y_DEC(0:7)

N11 P12 P11 M12

RES

AUDIO CLK

ASCLK ALRCLK AMCLK AMXCLK

F242

Y_DEC(0) Y_DEC(1) Y_DEC(2) Y_DEC(3) Y_DEC(4) Y_DEC(5) Y_DEC(6) Y_DEC(7)

23 HIN

ISC INP SYNC VPEN_DEC 29 SYNCEN CONTROLLER VDEC

470R

F262 F263 F264

K13 L14 K14 K12 G14 G12 H11 H14 H13 J14 J13 K11 M14 L13 N12 L12

3262

TDO TDI TRSTN TCK TMS A5 B5 C6 B6 D6

F261

D14 E11 E13 E12 E14 F13 F14 G13

IGP1 IGP0 IGPV IGPH IDP0 IDP1 IDP2 IDP3 IDP4 IDP5 IDP6 IDP7 ICLK IDQ ITRDY ITRI

OUTPUT FORMATTER I-PORT

VIDEO FIFO

VERTICAL SCALING HORIZONTAL FINE(PHASE-) SCALING

LINE FIFO BUFFER

HPD0 HPD1 HPD2 HPD3 HPD4 HPD5 HPD6 HPD7

VSSE

HDEC

F241

59 57 53 51 35 VDD2

VOLTAGE

F240

TEST CTRL

B3 E2 G2 J1 L1 M3 K4 H4 F4 D4 C5 C9 D12 H12 M4 M8 M11 C8 C10 F12 J12 M5 SDA M9 P10 SCL INT_A N9 P9

VXDD VDDA4A VDDA3A VDDA2A VDDA1A

FIR-PREFILTER PRESCALER BCS-SCALER RES

UV_DEC(0) UV_DEC(1) UV_DEC(2) UV_DEC(3) UV_DEC(4) UV_DEC(5) UV_DEC(6) UV_DEC(7)

RES

5226

2253

RES

2263

RES

2252

47n

I207

3261 F265

1250

VIDEO/TEXT ARBITER

BOUNDARY SCAN

H-PORT

XRDY XPD0 XPD1 XPD2 XPD3 XPD4 XPD5 XPD6 XPD7 XCLK XDQ XRH XRV XTRI

VSSA

X-PORT

XTAL

GPO

A6 A8 B8 A9 B9 A10 B10 A11 C11 A7 B7 C7 D8 B11

VIDEO CLK

CBCR

4K7

47n

VBI DATA SLICER

SYNC

I205

2262

RAW CBCR

TEXT FIFO

C

7280 SDA9400

VDDI

1ST TASK IIC REG MAP SCALER 2ST TASK IIC REG MAP SCALER

S

3260

2261

B2 B13 B14 C3 C4 C12 C13 N1 N2 N3 N13 N14 P2 YCBCR

YCBCR

Y

S

YCBCRS

LUM PROC S

AOUT

47n

RES1 RES2 RES3 RES4 RES5 RES6 RES7 RES8 RES9 RES10 RES11 RES12 RES13

EXMCLR

COMB FIL Y S

VDDE

SCALER EVENT CONTROLLER

DECODER OUTPUT CONTROL

ANALOG INPUT CONTROL

CB CR

CHROM PROC

C

C2 L2 A4 M2 J4 H3 E4 C1

47n

47n

47n

CR RAW

2260

F

Y CB

COMP PROC

A3 B4 A2

M1

AGND AGNDA VXSS

F260

R G B

VDDA

IIC REGISTER MAP

FAST SWITCH DELAY

P4 N5 M10 N10 L10

E

CONTROL

LLC LLC2 RST0 RST1 RTCO

D

FSW A|11 A|12 A|13 A|14 A|1D A|21 A|22 A|23 A|24 A|2D A|31 A|32 A|33 A|34 A|3D A|41 A|42 A|43 A|44 A|4D

ANALOG1 ANALOG1 ANALOG1 ANALOG1 + ADC1 + ADC1 + ADC1 + ADC1

M13 J2 K1 K2 L3 K3 G4 G3 H2 J3 H1 E3 F2 F3 G1 F1 B1 D2 D1 E1 D3

P3

N4 P5 P13 D13 C14 A13 B12 A12 CE RESON TEST0 TEST1 TEST2 TEST3 TEST4 TEST5

N6 N8 P8 M7 L7 P7 N7 L6 M6 P6 CLKEXT

RES

2226

2225

RES

7225 SAA7118E

AD-PORT

2276

100n

4K7

ADP0 ADP1 ADP2 ADP3 ADP4 ADP5 ADP6 ADP7 ADP8

+5V

9 F233 PW_SCL

2274

3V3AA

3225 3V3DD

8 F232 PW_SDA

2275

100R

3251 100R

B

Y_OUT

7 F231 +5V

G

3V3DA

F251

5 F229

C

3250

+8V6

4 F228 CVBS1

6 F230

100n

F250

3V3DC

2 F226 8V6 RES 3 F227 C_OUT

DE-INTERLACER

VIDEO-DECODER

1 F225 FSC 3220

XTAL XTALI XTOUT

0387

B

3V3AA

3D COMB FILTER

100n

3V3DD

TO

2231

2230

A

28

27

G

1270 +3V3VID

+3V3 F 500mA L 32V 441

3271 100R

F221 F223

100MHZ 5228

F237

+3V3_AD +3V3_AD +3V3_AD

F220 F222

100MHZ 5224

F224

10u

10u 2221

2223

10u

5220 100MHZ 5222

3V3AA

I

3V3DB 3V3DD 10u

2224

10u 2220

100MHZ

VIDCLK

I204

PW_SCL PW_SDA

SVHS

H

3V3DE 2228

RES

RES

2278

2279

3V3DC

100MHZ

7

2

3V3DA

VFIELD_DEC

+3V3VID

5221 100MHZ 5223

10u 2222

I202 56R

3278

I201

+3V3VID

BZM55-C33

F236 6276 6277 CVBS YS CB CR

BZM55-C33 BZM55-C33 6278 F235

I200

56R

4

3279

C

56R

3

RES

18R

3274 6274

5

Y

6

BZM55-C33

I

F234

1

2277

H

3277

0381 YC Input

18R

18R

3276

3275

+3V3VID

CL 26532038_039.eps 030502

1

2

3

4

5

6

7

8

9

10

11

12

13

14

0381 H3 0387 B1 1250 F4 1270 G5 2220 I6 2221 H6 2222 I6 2223 H6 2224 I6 2225 C2 2226 C2 2228 H5 2230 A5 2231 A5 2232 A6 2240 A6 2247 A6 2248 A7 2249 A7 2250 A7 2252 F4 2253 F4 2254 F5 2260 F2 2261 F3 2262 F2 2263 F3 2264 F2 2265 F3 2266 G2 2267 G3 2268 G2 2269 G3 2270 G2 2274 G1 2275 G1 2276 G1 2277 H3 2278 H4 2279 H4 2280 B11 2281 B11 2282 B11 2283 B11 2284 B12 2285 B12 2286 B12 2287 B12 2288 B12 3220 B1 3225 C3 3250 B8 3251 B8 3260 F3 3261 F6 3262 E8 3263 E8 3271 G3 3274 H1 3275 H2 3276 H2 3277 H3 3278 H4 3279 H4 3284 F9 3285 F10 3286-A D13 3286-B C13 3286-C C13 3289-A D13 3289-B D13 3289-C D13 3289-D D13 3290-A D13 3290-B E13 3290-C E13 3290-D E13 3291-A E13 3291-B E13 3291-C E13 3291-D F13 3292-A F13 3292-B F13 3292-C F13 3292-D F13 3293 F13 4250 G4 5220 I5 5221 H5 5222 I5 5223 H5 5224 I5 5226 F5 5228 H5 6274 I1 6276 I2 6277 I2 6278 I2 7225 C3 7280 C10 F220 I6 F221 H6 F222 I6 F223 H6 F224 I6 F225 B1 F226 B1 F227 B1 F228 B1 F229 C1 F230 C1 F231 C1 F232 C1 F233 C1 F234 H3 F235 I2 F236 I2

F237 H6 F240 C9 F241 C9 F242 D9 F245 C14 F246 C14 F247 D14 F249 F13 F250 B7 F251 B7 F260 E2 F261 E6 F262 E6 F263 E6 F264 E6 F265 F6 I200 I2 I201 H4 I202 H4 I203 F5 I204 H7 I205 F3 I206 E8 I207 F5


Electrical Diagrams and PWB Layouts

FM23

7.

EN 62

SCAVIO Panel: VGA Input 4

5 7310 BC847BW

2V0

4K7

10

0V

VGA1_H

F307

23

33K 6381

G4

4

1K 0V7 14 1 I238 15 2 3346 11 3 10K

13

I236

5V1

C2-

GND

3300

1K8

15K

3297

10K

1V9

9 11

1V6

1K8

3370

F319

1

3302

3323

+8B

RES

4K7

3363

2336

+5V_STBY_SW

VGA PANEL CONNECTOR

I266 7305 BC847BW 7306 BC847BW I271

68R

RXD_O

3316 I272

7319 BC847BW

14

I269 VGA1_RXD

12 I270

3371 100R

1K8

15K

15

100n

RES

3324

10K

2370

9V9

3920

10K

+8B

+8B

RC_OUT

I264 3304 VGA2_G

10

RCX

4V3 11 13

0V

>1

9

0V

VGA2_OUTN

I273

1 SHOT

UART_ACT

3374

I274

I275

I288

3332

I290

11

100p

10K

3333

2K2

3373

1 2

7366 BC847BW I291

68R

VGA1_V

3V3 5 3

4K7

3376

6379

RES

3351 VGA2_B

3377 100R

16

CX

6

RCX

4V5

>1

7 4V5

I

R

8

RES I292

SYNC_ACT

3378 I293

3334 10K

10K

3306 I294

7333 BC847BW

RC_VGA1

I286

MCL4148 2376

7365 BC847BW

3368

RC_CNTL

0V6 3339

J

470R I285 I287

2V0

13

1V6

1K8

100n

I281

6378

VGA1_H

7367 BC847BW

15K

RES

1K8

3379

7321 BC847BW

1K

3335

3299

2K2

2337

0V

470R

7311-C 4 TSH93 14

1V6 12

0V1

1K

4K7

1V6

I283

3369

0V6

RC

3338

3331

3919

2375

4

10K

7322 BC847BW

33K

1K

I284

7328 BC847BW I282

2V3

22u

3367

I278

2328 3328 I280 270R

27K

3329 VGA1_B

3330

10K

3337

I279

10K

+8B

I276

3904 +8B

+8B

RES

2338

3336 0V

3907

I277

10K

4K7

3305

4K7

3900

0V

4335

H

+5S

7370-A 74HCT4538

10K RES

4V8 7323 BC847BW

+5S

R

8

3298

3918

VGA2_OUTN

J

1K

10K

CL 26532038_040.eps 030502

1

3

2

F303

F304

F305

200mV / div DC 5µs / div

200mV / div DC 5µs / div

200mV / div DC 5µs / div

F306

1V / div DC 5µs / div

4 F307

2V / div DC 5ms / div

F

CX

+5S

VGA2_OUTN

470R I265 I267

E

G 7370-B 74HCT4538 16

+5S

I268

3322

7311-B TSH93 8

RES

4

2335

10

4K7

2

1V6

1K

+5S

1 SHOT

7307 BC847BW

3303

RC_OUT

3321

3325

10K

1V6

I263

7364 BC847BW

0V7

+5S +8B

I259

470R

3301

3906

F323

3

7318 BC847BW I262

2V2

22u

TV_MODE

27K

3319 270R

VGA2_RXD

F324

2318 3318 I261

1K

F317

5

VGA1_G

3320

VGA2_TXD

+8B

10K

F316

3364 I257

+5V

VGA2_OUTN

10K

BZM55-C33 I299 BZM55-C33 6321 6322

I258

6365

0V

BZM55-C33 I298 BZM55-C33 6320 6319

I256 RS_232_ACT

3314

7309 BC847BW

1K

3366 RES

I255

6315

10K

6316

3360 I252

BZM55-C33 I297 BZM55-C33 6318 6317

68R

6366

3359 VGA2_R

BZM55-C6V8 MCL4148

I251 7356 BC847BW 7357 BC847BW

100K

11

1V6

1K0

I246

7362 BC847BW

10K 7360 BC847BW

3365

2V0

6

3362 I245

I249 SELECT_4

IR_RX

{RL_ICN,GL_ICN,LD_ICN,IR_TX,IR_RX}

470K

+8B

+5R

RES

7358 BC847BW

470R I250 I253

3928

+8B

3315

7311-A TSH93 7

3903

I260

IR_TX

3347

RXD_2

4325

6

0V

6354

3927

3375

I254

3312

10K

+8B

F318

LD_ICN

1K0

4008 RES

10K

+8B

VGA2_V

D

GL_ICN

1K0

100n

4

3313

VGA2_B

F315

11

RL_ICN

3926

2365

1V6 5

9 8

9

100n

I248

3357

VGA2_H

8

F331

3924

+5R

2372

100n 3311 1K

11 10

7

F330

C

1K0

I219

4315 I242

3902

VGA2_G

F314

6

F329

10

4:1 SWITCH

BAT254 3915 RES

F328

3925

470R

1K8

F313

12

I289

RES

6

100R

470K

3310

10K

3905

1V6

13

7320 BC847BW

100n

2

4 F321 5

4K7

7308 BC847BW I247

2V3

22u

VGA2_R

F312

14

4V8

2354

10u

2353 V-

F327

I237

3350

3361

2308 3308 I244 270R

15

I

RES

6353 5350

100MHZ

5352

V+

C2+

15

10K

RC_VGA1

F311

16

H

5

C1-

0 MDX

3909

F310

+8B 2311

I243

17

4

3

6

3 BZM55-C33 I235 BZM55-C33

GND

9

I233 10K C1+

6356

1

100n

0

VEE

2351

VCC

1 10

REC2I 8

4K7

VGA1_R

7

100MHZ

9 REC2O

2

F320

100R 3355

100n 2356

3922 4V6 12

3358

VGA1_RXD

VGA OUTPUT BUFFERS

10K

VGA1_TXD

3356

F309

1K

F308

20

18

G

100R 3354

2355

8

RXD_P

TR1O 14 9V9 REC1I 13 0V

F322

1K0

27K

21

19

F

BAT254

+5V

3913

5V1 12 REC1O

100n

16

+5R

0376 1 3353

100R 3309

TO 0318

10 TR2I

10K I227 0V 11 TR1I

22

E

4K7

3352

33K

BZM55-C33 I234 BZM55-C33 6355 6357

33K

100n

3341

I229

RS232 INPUT OUTPUT

16 VCC TR2O 7

3

6380

470K

3296

3 0V4

2

B

7352 ST3232E

2343

3348

470K

10K

1

+8B

+8B

VGA1_V

0V6

7341 I226 BC847BW

I222 +5R

I223

100R

3901

1K 2345 RES

+5V_STBY_SW

24

I240 7326 BC847BW 0V

G4

7343 BC847BW I225 3343

RES

2340 3V3

6 4V8

A

BZM55-C33 I301 BZM55-C33

7 RES

2306

F306

3327

3307 RXD_PW RXD_2

3923

1

7340-B 74HC4052D

RXD_O

7325 I239 BC847BW I241 3294

9 4V8

4:1 SWITCH

33K BAT254

+5V I296

+5R 3344

BAT254

4K7 6311

+5S 7303-C 74HCT125D 14 9

VGA1_B

26 25

4V5 8

14

BZM55-C33 I300 BZM55-C33 6324 6323

VGA2_RXD

F305

27

2 4

I218 SELECT_4

GND

RES 10 4V8

10K

TXD_2

10K

VGA1_G

28

D

RES

VEE

0

0 MDX

7

VGA1_R

F304

1K 2341

3340 3349

7

2V0 13

30 29

I231 7316 BC847BW 0V 0V7

3295

F303

3917

11

0V

I228

VCC

RS232 DOWNCONVERTER

2352

4V5 12

32 31

7303-D 74HCT125D

I230

I232 3326

RES

14 VGA2_TXD

7315 BC847BW

3914

+5S

0318

RXD_OTC

3V2 I295

10u

100MHZ

BAT254

2302

+5V_STBY_SW

8

3V3 5

4V6

7

0V1 1

7

2V7 1

10K

7303-A 14 74HCT125D 3

4V3 2

+5S

+3V3_STBY_SW

RES

5302 F301

SELECT_1

4K7

VGA1_RXD

3908

4K7

+5S

100n

2301

100u

2300

C

0V1 I224

+8B

16

+5R

TXD_OTC

4

100MHZ

13

I221 +5R

7340-A 74HC4052D

TXD_PW

5 3V7

7

RES

TXD_OTC

4898

F300

100n

12

3345

SELECT_3 SELECT_2

F326

3372

5300

2305

B

RES

VGA1_TXD

6302

RES 4011

100n

2310 2304

11

+5V_STBY_SW

TXD_2

+5S 7303-B 74HCT125D 14 4V6 6

10

+5S

+5V_STBY_SW

(BASIC & ENHANCED VERSION)

9

47K 0V6

VGA INPUT

+8V6

3912

8

4K7

3911

1K

BAT254

0V

7

1K

3910 F325

3317

A

6310 I220

100n

VGA1_RXD

6

3342

3

RES

2

10K 4316

1

5 F308

2V / div DC 2µs / div

6 F309

2V / div DC 200µs / div

7 F311

1V / div DC 5µs / div

8

F312

2V / div DC 10µs / div

F313

1V / div DC 5µs / div

9 F314

1V / div DC 5µs / div

10 F315

1V / div DC 5ms / div

11

12

13

14

0318 C1 0376 B14 2300 B1 2301 B2 2302 B2 2304 B4 2305 B3 2306 D3 2308 E3 2310 A4 2311 E6 2318 G3 2328 I3 2335 H10 2336 H2 2337 I2 2338 J1 2340 B8 2341 C6 2343 C10 2345 D6 2351 C11 2352 D11 2353 B12 2354 B12 2355 D12 2356 D12 2365 F12 2370 G10 2372 G12 2375 H12 2376 I11 3294 D6 3295 D6 3296 D7 3297 F6 3298 H6 3299 J6 3300 F5 3301 H6 3302 H7 3303 H8 3304 G8 3305 I2 3306 J5 3307 C6 3308 E3 3309 E4 3310 F4 3311 E5 3312 F5 3313 F5 3314 F6 3315 E6 3316 H5 3317 D6 3318 G3 3319 G4 3320 H4 3321 G5 3322 H5 3323 H5 3324 H6 3325 G6 3326 C6 3327 C6 3328 I3 3329 I4 3330 I4 3331 I5 3332 I5 3333 J5 3334 J6 3335 I6 3336 I2 3337 I1 3338 I2 3339 J2 3340 C7 3341 B9 3342 B9 3343 B10 3344 B10 3345 A10 3346 D7 3347 E10 3348 C7 3349 C7 3350 D10 3351 I8 3352 B11 3353 C12 3354 C12 3355 C12 3356 F6 3357 F7 3358 F8 3359 F8 3360 F9 3361 E10 3362 E10 3363 H2 3364 F11 3365 F12 3366 E12 3367 I6 3368 J7 3369 I8 3370 G10 3371 H10 3372 D5 3373 I10 3374 H11 3375 H12 3376 I12 3377 I12 3378 J10 3379 J10 3900 I1

F318 G2 3901 D7 F319 H2 3902 E6 F320 C12 3903 G6 F321 C14 3904 I6 F322 C13 3905 F4 F323 H2 3906 G4 F324 G2 3907 I4 F325 A4 3908 B4 3909 H10 F326 B5 F327 C14 3910 A4 F328 C14 3911 A4 F329 C14 3912 A5 F330 C14 3913 C9 F331 D14 3914 C7 I218 C7 3915 D7 I219 E8 3917 B4 I220 A3 3918 J10 I221 A12 3919 I11 3920 G10 I222 B12 I223 B10 3922 D8 I224 B4 3923 D5 3924 D14 I225 B10 3925 D14 I226 B9 3926 D14 I227 B11 3927 E14 I228 B8 3928 E14 I229 C8 I230 C6 4008 E8 I231 C7 4011 A8 I232 C6 4315 E7 I233 C12 4316 D5 I234 C12 4325 G7 I235 C13 4335 I7 I236 D9 4898 C5 I237 D10 5300 B1 I238 D8 5302 B2 5350 B12 I239 D6 5352 B11 I240 D7 I241 D6 6302 B1 I242 E7 6310 A3 I243 E4 6311 B4 6315 F13 I244 E3 6316 G13 I245 E10 6317 F13 I246 E12 6318 G13 I247 E4 6319 F13 I248 E5 6320 G13 I249 E10 6321 F13 I250 F6 6322 G13 I251 F7 6323 F14 I252 F9 6324 G14 I253 F6 6353 A12 I254 F5 6354 C12 I255 F7 6355 C13 I256 F11 6356 D12 I257 F11 6357 D13 I258 F5 6365 F12 I259 G7 6366 F12 I260 G4 I261 G3 6378 I10 I262 G4 6379 I10 I263 G5 6380 C7 I264 G10 6381 D7 7303-A B4 I265 G6 7303-B B3 I266 G7 7303-C D4 I267 G6 7303-D C4 I268 H5 I269 H9 7305 G7 I270 H10 7306 H7 I271 H7 7307 G8 I272 H5 7308 E4 I273 H9 7309 F5 I274 H11 7310 A4 7311-A E6 I275 H12 7311-B G6 I276 I7 7311-C I6 I277 I1 I278 I4 7315 C6 I279 I2 7316 C7 I280 I3 7318 G4 I281 I10 7319 H5 I282 I4 7320 I1 I283 I5 7321 J1 I284 I2 7322 I2 I285 I6 7323 I2 I286 I7 7325 D6 I287 I6 7326 D7 I288 I5 7328 I4 I289 I1 7333 J5 7340-A B8 I290 J2 7340-B C8 I291 J7 I292 J9 7341 B9 7343 B10 I293 J10 7352 B11 I294 J5 I295 C6 7356 F7 I296 D5 7357 F7 I297 F13 7358 E8 7360 F10 I298 F13 7362 E10 I299 F13 7364 F11 I300 F14 I301 F14 7365 I7 7366 I7 7367 I8 7370-A H13 7370-B G11 F300 B2 F301 B2 F303 D2 F304 D2 F305 D2 F306 D2 F307 E2 F308 E2 F309 E2 F310 E2 F311 F2 F312 F2 F313 F2 F314 G2 F315 G2 F316 G2 F317 G2


Electrical Diagrams and PWB Layouts

FM23

7.

EN 63

SCAVIO Panel: Control Functions 1 (BASIC & ENHANCED VERSION)

P2_1

0V 104 P2-1|PWM1

A15 48

3448-D

100R

AC(14)

82p

P2_0

P2_0

0V 103 P2-0|PWM0

A16 46

100R

3448-B

AC(15)

2502

A17 44

3450

100R

AC(16)

82p

A18 63

100R

3453-A

AC(17)

2503

A19 65

3453-C

100R

AC(18)

82p

P1_7 3V2 100 P1-7|RC

F525

100R

3383-B

P1_6

P1_6

F526

3383-A

100R

P1_5

3392

P1_4

100R 3398-C

0V 99 P1-6|INT3

P1_5 3V1 98 P1-5|INT2 P1_4

97 P1-4|INT1

A20 64

100R

3453-B

AC(19)

2505

P1_3

2V 96 P1-3|INT0

A21 66

3453-D

100R

AC(20)

82p

A22 67

100R

95 P1-2|T2

P1_2

P1_2

3402-A

100R

P0_7

P0_7

P0_6

P0_6

91 P0-6|CORN

2V 92 P0-7

100R

3402-B

TXD_OTC

3402-C

100R

P0_5

P0_5

90 P0-5|TxDo

RXD_OTC

100R

3402-D

P0_4

P0_4

89 P0-4|RxDo

F425 F426 F427 F428

3404-A

100R

P0_3

P0_3

88 P0-3|SDA1

P0_2

P0_2

87 P0-2|SCL1

100R

3404-B

3404-C

100R

P0_1

P0_1

86 P0-1|SDA0

100R

3404-D

P0_0

P0_0

85 P0-0|SCL0

P1_0

P1_0 3V1 93 P1-0|T0

3397

IRQ_PDP

100R

P1_1 3V1 94 P1-1|T1

2K2 3417 I353

I358

4K7

3415

CX-5F 6M

33p

1415

F423

RESET +3V3_CNTL_C VGA1_H

I354

3424 3K3

RES I357

RES

3428

I360

3425

VGA1_V SCL_1 SDA_1

3K3

74 RESET

OTC_H

+3V3_CNTL_C 100R 7432 BC847BW 3426 I355 3429

3427

OTC_H

83 HSYNC

OTC_V

84 VSYNC

F383

RES

RESET

DC(3)

D4 23

100R

DC(4)

D5 27

100R

3461-B

DC(5)

D6 31

3462-B

100R

DC(6)

D7 35

100R

3463-B

DC(7)

100R

DC(8)

D9 30

100R

3462-A

DC(9)

D10 26

3461-A

100R

DC(10)

D11 22

100R

3460-A

DC(11)

D12 25

3460-D

100R

DC(12)

100R

3461-D

220n 8 STN|BLACK

+3V3_CNTL_D

3462-D

100R

DC(14)

D15 37

100R

3463-D

DC(15)

F421

3464-A 3464-B 100R

F422

100R

6 3464-C3

F424

3406-A 100R

RAM_CS RAS

3406-D 100R 3406-B

3483

100R

470R

3484

3485

RES

150R

3486

B 79

3487

150R

FADING 80

150R

3488

DATA 81

3489

2K2

F461

AC(2)

F462

AC(3)

F463

AC(4)

F464

AC(5)

F465

AC(6)

F466

AC(7)

F467

AC(8)

F468

AC(9)

F469

AC(10)

F470

AC(11)

F471

AC(12)

F472

AC(13)

F473

AC(14)

F474

AC(15)

F475

CASL 3406-C

AC(16)

F476

AC(17)

F477

AC(18)

F478

AC(19)

F479

CASH

100R

WE +3V3_CNTL_C

CS OE

+3V3_CNTL_E

WE

F506

RESET_FLASH

6507

BAT254

2K2 3490

I346

1K

3494-D

3494-C

470R

I348

470R

3494-B

I349

3494-A

470R

I347

P3_1

10

DC(7)

P3_2

F396

14

33

DC(8)

P3_3

F397

15

34

DC(9)

P3_4

F398

16

5523

35

DC(10)

P3_5

F399

17

100MHZ

36

DC(11)

P3_6

F400

18

38

DC(12)

P3_7

F401

19

39

DC(13)

40

DC(14)

41

DC(15)

F402

P1_5

F403

2

P1_4

F404

3

P1_3

F405

4

P1_2

F406

P1_1

F407

P1_0

F408

P0_7

F409

P0_6

F410

9

P0_5

F411

10

P0_4

F412

11 12

F414

13

F496

DC(1)

P0_1

F415

14

F495

DC(2)

P0_0

F416

15

F494

DC(3)

OTC_V F417

16

F493

DC(4)

OTC_H F418

17

DC(5)

F419

18

3400

*

F452

F453

1K

*

For Diversity

Basic = 1K Enhanced = 4K7

E RES

6504

BZX384-C2V4 I350 5V_TEST

3510

+5V

1K

RES

F

6505

BZX384-C2V4 I351

3512

+8V6

8V_TEST

5K6

19

G

DC(8)

F486

F429

DC(9) DC(10)

F484

DC(11) F483 DC(12)

I359

F482 DC(13)

3515 I361

F481 DC(14) F480

F451

+3V3_CNTL_C

F487

F485

F450

8

F413

DC(7)

D

7

P0_2

DC(6)

+3V3_CNTL_E

6

P0_3

F488

47K

DC(15)

0V6

F432

3516 I356 0V 47K 2V6 7515 BC847BW

7516 BC857BW 3V2

RESET_FLASH

H

3 7517 ADM810

VCC 2

RESET

I362

0V

3517

RESET

1K GND 1

+3V3_CNTL_B

7510-A 74LVC00AD 14 1 2

7510-B 74LVC00AD 14 4 3 5

7

7510-C 74LVC00AD 14 9 6 10

7

7510-D 74LVC00AD 14 12 8 13

7

4505

I

11

7

4506

J CL 26532038_041.eps 030502

1

2

3

4

5

6

7

8

9

C

F524

100MHZ

5

DC(0)

F489

+3V3_CNTL_D

1

F497

F492

F523

S84 0384

16

7506 AM29DL164DT 37 25 VCC A0 24 A1 29 DQ0 23 A2 31 DQ1 22 A3 33 DQ2 21 A4 35 DQ3 20 A5 38 DQ4 19 A6 40 DQ5 18 A7 42 DQ6 8 A8 44 DQ7 7 A9 30 DQ8 6 A10 32 DQ9 5 A11 34 DQ10 4 A12 36 DQ11 3 A13 39 DQ12 2 A14 41 DQ13 1 A15 43 DQ14 48 A16 45 DQ15|A-1 17 A17 15 RY|BY_ 16 A18 9 A19 26 CE_ 28 OE_ 10 11 WE_ 13 12 RESET_ 47 BYTE_ 14 WP_|ACC VSS 27 46

+3V3_CNTL_C

5524

DEBUG CONNECTORS P1_6

10u

2520

F522

DC(6)

NC 32

B

100MHZ

9

RAM_CS ROM_CS CS ROM_OE RAM_OE OE

470R

7406 BC847BW

F460

AC(1)

F507 F490

P1_1

ROM_CS

100R

G 78

10 21 39 50 76 102 112 11 12 13 14 15

ROM_OE

AC(0)

5522

10u

13

2521

VCC3

VCC2

12

F395

F459

AC(20)

F420 RAM_OE

100R 3464-D

P3_2 7405 BC847BW

AC(0:20)

F405 = 2V3 F406 = 0V F409 = 3V3 F410 = 3V3 F423 = 0V F425 = 3V2 F426 = 3V2 F427 = 5V1 F428 = 3V3 F520 = 3V3

RAM_OEn 41

TEST3

TEST2

TEST1

TEST0

VSSP3

VSSD3

VSSD2

VSSP2

VSSP1

P1_3

+3V3_CNTL_D

DQ16

11

F394

+3V3_CNTL_E

DC(13)

D14 33

R 77 DISPLAY INTERFACE

220K

27K 3436

3435

220n 3 REF+

3389 100R

SCL_NVM_1 CPU_GO

2438 2439

DQ15

F393

P3_0

DC(1)

3463-A

VIDEOn

I344

BAT254 6509

10K

I365

RES

J

4430

I366

4431

3496

I364

100R

VSSD1

PDP_GO

4

2 IREF

VSSA

VSS

3460-C

3K3

WC_

100R 3460-B

EAn 73

100n 1 IREF_DEC

3398-A

3405

1K

SCL

D3 24

WEn 70

TXT EPG CLOSE CAPTION USA TXT

4K7

3432

100n 100R

SDA_NVM_1

2K2

5

1K

SDA

3394

E2

I345

3393

POWER_OK

3387

100R 7

3433

6508

3 3431 6

2437

I363

VCC

DC(2)

CASLn 72

8

E1

100R

RASn 69

100n 6 CVBS1_R

NC

15

DQ14

P2_7

DC(5)

DC(0) 3462-C

CASHn 71

4381 RES BAT254

I

E0

3461-C

PSENn 42

OTC_V

2436

12

CASL

DQ13

DC(4)

8

DC(0:15)

ROM_CSn 43

2433 100n 5 CVBS0

2432

4K7

3430

1 2

D2 28

ROM_OEn 40

2434 100n 4 CVBS0_R

7430 MC24C32

100R

82 FRAME

2435 100n 7 CVBS1

RAM_OE

100R

100R 7433 BC847BW

+3V3_CNTL_D

NVM

D1 32

D13 29

18 OSCGND

RAM_OE

DC(0:15)

3463-C

16 OSCOUT 17 OSCIN

WE

DQ12

7

22 37 42

D0 36

D8 34

+5V_STBY_SW

3420

CASH

DQ11

10

A23 68

4K7

3414 2K2

3413 2K2

+3V3_CNTL_D

CASL CASH

DQ10

F392

3514

P1_7

RAS

P2_6

100n

P2_1

RAS

DC(3)

10u

2501

5

+3V3_CNTL_B

2522

AC(13)

9

10u

3449-B

F391

2523

100R

P2_5

10u

A14 52

DC(2)

F521

2524

P2_4 3V1 107 P2-4|ADC2

4

5521 100MHZ

100n

P2_4

AC(9)

8

7

2K2

82p

F390

2511

AC(12)

P2_4

3511

100R

DC(1)

3K3

3449-D

DQ9

3

2513

A13 54

DQ8

6

F389

3513

108 P2-5|ADC3

AC(8)

DQ7

5

4K7

P2_5

AC(7) WE

DQ6

+3V3_CNTL_A

100n

P2_5

100R

1n

2419

1n

2504

3383-C

100R 2418

AC(11)

DQ5

A

F520

4

2515

3383-D

3451-B

F388

5520 100MHZ

3518

RES

100R

AC(10)

100R

P2_2

+3V3_STBY_SW

100K

3380-A

100R

A12 56

F387

RES

3401

3451-D

0V 109 P2-6|ADC4

P2_1

P2_3

4500

F431 100R

A11 58

P2_6

P2_0

F386

NC

0V

P2_7 1V2 110 P2-7|ADC5

3

DC(0)

FLASH

3384

P2_7 P2_6

DQ4

VSS3

100R

F385

2

100n

3382-C

AC(6)

DQ2 DQ3

2506

100R

AC(9)

3K3

33K

A10 60

3507

3391

1K

P3_0 3V2 113 P3-0|LED0

AC(0:20)

3390

P3_0

3452-B

DQ1

WP

RED_LED

100R

3503

3382-A

100R

VCC1

AC(5)

P1_7

21

RAM

AC(4)

AC(8)

6

VSS2

AC(7)

100R

7500 MSM51V18165F 1 17 A0 18 A1 19 A2 20 A3 23 A4 24 A5 25 A6 26 A7 27 A8 28 A9 14 RAS_ 31 LCAS_ 30 UCAS_ 13 WE_ 29 OE_ 11 VSS1

3452-C

3452-D

3419

I352

100n

100R

A9 62

RES

F381

100n 2448

A8 61

114 P3-1|LED1

P3_1

0V

SERVICE_IN

1K5 1K

100n 2447

VDDP3

VDDD3

115 P3-2

P3_1

100R 3382-B

100R

RES

1K

VDDP2

P3_2

3018 100R

GRN_LED

3421

H

VDDD2

AC(3)

SCL_1

RES 7435 BC847BW RS_232_ACT 0V 3423

+5V

VDD1

AC(6)

SDA_1

3422

3V2

100n

3452-A

CLOCK GENERATOR AND DISPLAY TIMING

G

100n 2383

A7 59

100R

27p

10

100n 2382

2381

P3_3 3V2 116 P3-3

SCL_2

F380

AC(0)

P3_3

2415

9

100R

3382-D

2416

8

A4 53

CPU_GO

3K9

7

AC(3)

0V 119 P3-6|TTC

AC(2)

3410

6

3449-C

P3_6

AC(0:20)

AC(5)

3K3

4

5

AC(2)

3451-C

3411

3

100R

100R

SDA_2

3418 2

3449-A

3502

2K2

2K2 3520

3519 1

A3 51

14

S83 0383 1 2

100n

A6 57

SCL_NVM_1

F382

0382 147279

P3_7 0V 120 P3-7|CBB

F383 = 0V F391 = 0V F396 = 0V F397 = 3V3

P3_4 3V4 117 P3-4

SDA_NVM_1

F

AC(1)

13

F384 2500

AC(0)

P3_4

PW_START

1-2 3-4 5-6

3448-C

3381-A

RC

SDM SAM COMPAIR

100R

100R

FAN_SP_1

100n

A2 47

8V_TEST

FAN_SP_2

2420

A1 45

AC(1)

IRQ_PDP

SHORT CIRCUIT

105 P2-2|ADC0

P2_3 3V2 106 P2-3|ADC1

AC(4)

SYNC_ACT

MODE

P2_2

P2_3

12

100n 2499

100R

FAN_SP_1

SERVICE SOCKET

P2_2

P3_6

11

+3V3_CNTL_E

3451-A

UART_ACT

E

111

A5 55

FAN_SP_2

+3V3_CNTL_D

101

P3_5 3V4 118 P3-5|TTD

WP

6399 PLVA2650A

75

P3_5

PW_RESET

D

49

100R

RC_CNTL

6393 PLVA2650A

38

3381-B

RC

6388 PLVA2650A

20

TEST4

RED_LED

100R

19

3448-A

3381-D P3_7

3381-C

9

10

5V_TEST

PW_FLASH_RESET GRN_LED

+3V3

C

RES

1K 3386

RES

3009

RES

STANDBY

B

F430 100R

4385

ICONN_NOT

6821 PLVA2650A

3380-C

7383 SAA5801H

2446

+3V3_CNTL_C

100R

SERVICE_IN

9 +3V3_CNTL_D

3380-B

LIGHT_SEN_IN

8

+3V3_CNTL_B

EXTERNAL CODE AND DATA INTERFACE

SERVICE_IN

1K 3385

3388 LIGHT_SEN_IN

7

+3V3_CNTL_A

+3V3_CNTL_D

A

6

VDDP1

CONTROL FUNCTIONS 1

5

3506

4

4K7

3

VDDA

2

VDDN1

1

10

11

12

13

14

0382 F1 0383 A12 0384 D12 1415 G4 2381 A4 2382 A5 2383 A5 2415 G3 2416 G3 2418 D3 2419 D3 2420 E2 2432 H2 2433 H5 2434 H5 2435 H5 2436 I5 2437 I5 2438 I5 2439 I5 2446 A7 2447 A7 2448 A8 2499 A10 2500 A10 2501 C8 2502 C8 2503 D8 2504 C8 2505 D8 2506 E10 2511 F14 2513 G14 2515 H13 2520 A14 2521 B14 2522 C14 2523 C14 2524 D14 3009 A3 3018 B3 3380-A C4 3380-B A4 3380-C A4 3381-A B4 3381-B B4 3381-C B4 3381-D B4 3382-A C4 3382-B B3 3382-C C4 3382-D B4 3383-A D4 3383-B D4 3383-C D4 3383-D C4 3384 C4 3385 A3 3386 A3 3387 J3 3388 A2 3389 I4 3390 C3 3391 C3 3392 D4 3393 I3 3394 I3 3397 F4 3398-A I4 3398-C D4 3400 D14 3401 C4 3402-A D4 3402-B E4 3402-C E4 3402-D E4 3404-A E4 3404-B E4 3404-C E4 3404-D E4 3405 J4 3406-A H8 3406-B H8 3406-C H8 3406-D H8 3410 F3 3411 F2 3413 F3 3414 F3 3415 F3 3417 G1 3418 E1 3419 F2 3420 G2 3421 G1 3422 F2 3423 G1 3424 G3 3425 H3 3426 H4 3427 G3 3428 G4 3429 H4 3430 H1 3431 I1 3432 H2 3433 I2 3435 I4 3436 I4 3448-A A7 3448-B C8 3448-C A8 3448-D C7 3449-A B7 3449-B C8 3449-C B8 3449-D C7 3450 D7 3451-A B7 3451-B C8 3451-C B8 3451-D C7 3452-A B7 3452-B C8 3452-C B8

3452-D B7 3453-A D8 3453-B D8 3453-C D7 3453-D D7 3460-A F8 3460-B E7 3460-C E8 3460-D F7 3461-A F7 3461-B E8 3461-C E7 3461-D G8 3462-A F8 3462-B F7 3462-C E8 3462-D G7 3463-A F7 3463-B F8 3463-C E7 3463-D G8 3464-A G8 3464-B G8 3464-C H8 3464-D G8 3483 H8 3484 H8 3485 I8 3486 I8 3487 I8 3488 I8 3489 I8 3490 I8 3494-A J8 3494-B J8 3494-C J8 3494-D I8 3496 J2 3502 I9 3503 I9 3506 E10 3507 I10 3510 F13 3511 F14 3512 F13 3513 G14 3514 G13 3515 H12 3516 H13 3517 H13 3518 I13 3519 C1 3520 C1 4381 I2 4385 B3 4430 J1 4431 J1 4500 I11 4505 J12 4506 J14 5520 A13 5521 B13 5522 B13 5523 C13 5524 D13 6388 C1 6393 D1 6399 D1 6504 E13 6505 F13 6507 I10 6508 I3 6509 J3 6821 B1 7383 A5 7405 J3 7406 J2 7430 I1 7432 G3 7433 H4 7435 G1 7500 B10 7506 F10 7510-A I12 7510-B I12 7510-C I13 7510-D I14 7515 H13 7516 H14 7517 H12 F380 F1 F381 G1 F382 F1 F383 G5 F384 A12 F385 A12 F386 A12 F387 A12 F388 B12 F389 B12 F390 B12 F391 B12 F392 B12 F393 B12 F394 B12 F395 C12 F396 C12 F397 C12 F398 C12 F399 C12 F400 C12 F401 C12 F402 D12 F403 D12 F404 D12 F405 E12 F406 E12 F407 E12 F408 E12 F409 E12 F410 E12 F411 E12 F412 F12 F413 F12 F414 F12

F415 F12 F416 F12 F417 F12 F418 F12 F419 G12 F420 G9 F421 G9 F422 G9 F423 G4 F424 H9 F425 E3 F426 E3 F427 E3 F428 E3 F429 G14 F430 B4 F431 C3 F432 H11 F450 D13 F451 D13 F452 D14 F453 D14 F459 E10 F460 F10 F461 F10 F462 F10 F463 F10 F464 F10 F465 F10 F466 F10 F467 G10 F468 G10 F469 G10 F470 G10 F471 G10 F472 G10 F473 G10 F474 H10 F475 H10 F476 H10 F477 H10 F478 H10 F479 H10 F480 H11 F481 H11 F482 H11 F483 H11 F484 G11 F485 G11 F486 G11 F487 G11 F488 G11 F489 G11 F490 I7 F492 G11 F493 F11 F494 F11 F495 F11 F496 F11 F497 F11 F506 I9 F507 I10 F520 A14 F521 B14 F522 B14 F523 C14 F524 D14 F525 D3 F526 D3 I344 I3 I345 I3 I346 I7 I347 J7 I348 J7 I349 J7 I350 F14 I351 F14 I352 G1 I353 G2 I354 G3 I355 H4 I356 H13 I357 H3 I358 H1 I359 H13 I360 H3 I361 H13 I362 H13 I363 I2 I364 J1 I365 J1 I366 J1


Electrical Diagrams and PWB Layouts

FM23

7.

EN 64

SCAVIO Panel: Control Functions 2 1

2

3

4

5

6

7

8

9

10

11

12

13

14

CONTROL FUNCTIONS 2

6 4V8

SELECT_3

P3 SHIFT 8 BIT I/O P4 REGISTER PORTS

7 2V

POWER_DOWN

3565

VIDEO_SEL_2

P7 12 0V

RES

F556

12

0V

F557

3559

13

0V

F553

100R

220R

100R

22u

RES 3567

RES

RES

3566

1K

3548

3562

3

1 2

2K2

3556 I411

GRN_LED

3558

STANDBY

100R 3560

14 Z

1

3 I419

GL_ICN

Y1 13

I418

GREEN_LED

E Vee Vss

RES

6

FAN_SP_1 FAN_SP_2

7

6553 BAV99W

8

16

TEMP_2

TEMP_1

RED_LED

10K

3539

1n

I413

RC

+5V_STBY_SW 0316

2

F561 3549

F560

7

RL_ICN

8

+5V_STBY_SW I416

Y0 2

IR_TX 6551 BAV99W

Y1 1

6

7

H

3

7550-B 74HC4053D

E Vee Vss

10K

TO S-2

1n

1

I417

E Vee Vss

15 Z

10K

3538

1n +3V3_STBY_SW

Y1 3

G

6552 BAV99W 16 Vdd 10 S

ICONN_NOT

+5VREF

2565

2566

4 Z

+5V_STBY_SW

1

2

F559

TO S-1

+8V6

Y0 5

+5V_STBY_SW

1n 2564

7555-C 74HC4053D

Vdd 9 S

6

1

F558 2554

2563 +9V_STBY_SW

10K

3537

0315

1n

I412

100n

2558

1n

1n 1n

2557

2560 1n

2559

ICONN_NOT

+5VREF

+9V_STBY

I

10K

3573

3568

RES

+5V_STBY_SW

Y0 12

POWER_OK

100R

2562

F

3

11 0V2

7555-A 74HC4053D

8

16

7550-A 74HC4053D

ICONN_NOT

Vdd 11 S

Y0 12

RC_IN

14 Z

Y1 13

3

10

3545

6554 BAV99W

8

1

F555

7

2

3V1

6 16 Vdd 11 S

ICONN_NOT

3557

LD_ICN

2

F554

Y1 1

I420

1

9

15 Z

+5V_STBY_SW

E Vee Vss

SCL_1 SDA_1

Y0 2

+5V_STBY_SW

2

F562

7555-B 74HC4053D

Vdd 10 S

+5V_STBY_SW

100n

8

I410

ICONN_NOT

2555

7

F552

+3V3_STBY_SW

16

3K3

F551

SDA_SW

F550

6

+5V_STBY_SW

6555 BAV99W

100n

5

3536

+8V6

7563 BC847BW

E +5V_STBY_SW

1105 F 500mA L 32V

10K 2534

4

F549

10K 3555

F548

10K 3534

3

2530 3532

+9V_STBY_SW

3531

+9V_STBY

10K 3554

F547

I409

RES

F546

2

100n 3533

1

7

+3V3

2533

F544

+3V3

100n 3535

12

6

+3V3

+5VREF

F543

2K2

F542

11

2535

10

5

+3V3

D

I408 MSP_RESET

3570

F541

I415

SDA_1

4

+3V3

I403

SCL_1

3

F529

C

+5V_EXP

3572

I407

1n

2537

2

RES

I406

16 VDD 15 AIN0 AOUT 14 AIN1 VREF 13 AIN2 AGND 12 AIN3 EXT 11 A0 OSC 10 A1 SCL 9 A2 SDA VSS 8

3569

1

+5V_POW

9

100R

100R

I405

5

0319

H

RES

P6 11 0V F527 MSP_RESET_NOT

8 VSS

P5 10 3V2

1K

POWER-ON RESET

VIDEO_SEL_1

3546

16 VDD

I414

IR_RX

E Vee Vss

6

7

8

CL 26532038_042.eps 030502

1

2

B

SELECT_4 3564

F528

9 0V

3547

2 I C BUS CONTROL

INPUT FILTER

+5VREF

100R

7530 PCF8591

4

8

100n

2548

1n

100MHZ

+5V

I402

3530

SCL_SW

T 1A L 63V 446

+5V

2531

F540

I401

5530

RES

1n

1n 2553

3543 P2

100MHZ

1n

F545

1n

1n

1100

2547

2546 I400

7

G

15 SDA

+5V_STBY_SW 5541

EXTERNAL ADC

+9V_STBY_SW

6

POWER SUPPLY

100R +5V_EXP

+5V_STBY_SW

3

E

SELECT_2

+9V_STBY

2

POWER SUPPLY

SELECT_1

5 4V8

F539

10

TO 0319

100R

F538

9

1

F

3541

F537

0305

D

RC_IN LIGHT_SEN_IN

100R

+8V6

4 0V

P1

2

3553

3544

100R

P0

14 SCL

2541

7

TO 0305

2551

1n

F534

3 A2 3540

RED_LED

F536

8

C

100R

F535

6

LED-PANEL DISPLAY

3551

3552

1K0

5

100R

F533

LP FILTER

1K0

4

F532

INTERRUPT LOGIC

2 A1

+5V_EXP

GREEN_LED

3561

3V3

3550

3563

3

F531

A

RES

3V2

1 A0

3542

2

F530

7540 PCF8574AT 13 INT_ N.C.

100n

0V3

2538

TO 0320

1

1n 2552

2550 0320

F540 = 5V F541 = 3V3 F546 = 9V F547 = 9V F549 = 5V F550 = 3V3

RES

I/O EXPANDER

A

B

+5V_EXP

(BASIC & ENHANCED VERSION)

3

4

5

6

7

8

9

10

11

12

13

14

I

0305 C2 0315 H5 0316 I5 0319 E2 0320 B2 1100 C3 1105 F3 2530 C8 2531 C6 2533 G5 2534 G6 2535 F5 2537 D2 2538 D3 2541 C9 2546 C3 2547 C3 2548 C3 2550 A3 2551 A3 2552 A3 2553 A4 2554 H10 2555 F10 2557 H4 2558 G4 2559 H3 2560 G3 2562 H2 2563 H2 2564 H2 2565 I2 2566 I2 3530 C7 3531 E7 3532 E7 3533 G5 3534 G6 3535 F5 3536 F4 3537 H5 3538 I5 3539 H5 3540 B9 3541 B9 3542 B12 3543 A12 3544 B13 3545 G3 3546 C13 3547 C13 3548 D14 3549 I5 3550 B3 3551 B3 3552 B3 3553 B3 3554 G5 3555 G6 3556 E9 3557 G3 3558 G3 3559 G3 3560 G3 3561 C13 3562 D13 3563 C13 3564 B14 3565 C14 3566 C13 3567 C13 3568 D7 3569 E7 3570 F9 3572 E7 3573 D7 5530 C5 5541 C9 6551 H13 6552 H13 6553 G13 6554 F13 6555 E13 7530 D6 7540 A10 7550-A I12 7550-B H10 7555-A F10 7555-B E12 7555-C G12 7563 D14 F527 C12 F528 B12 F529 D2 F530 B2 F531 B2 F532 B2 F533 B2 F534 B2 F535 B2 F536 C2 F537 C2 F538 C2 F539 C2 F540 C3 F541 E2 F542 E2 F543 E2 F544 E2 F545 D2 F546 E2 F547 F2 F548 F2 F549 F2 F550 F2 F551 F2 F552 F2

F553 G2 F554 G2 F555 G2 F556 G2 F557 G2 F558 H5 F559 H5 F560 I5 F561 I5 F562 F2 I400 C2 I401 C7 I402 C7 I403 D7 I405 D6 I406 D6 I407 D5 I408 D14 I409 D13 I410 F10 I411 G9 I412 G9 I413 H9 I414 I12 I415 D8 I416 H12 I417 G12 I418 G12 I419 F12 I420 F12


Electrical Diagrams and PWB Layouts

FM23

7.

EN 65

SCAVIO Panel: Scaler Clock Generator 1

2

3

4

5

6

7

8

9

10

11

SCALER-CLOCK-GENERATOR (BASIC & ENHANCED VERSION)

F563

F566

F565

F564

F567 = 3V2 F569 = 3V2

A

A 2V / div DC 50µs / div

1V / div DC 20ns / div

2V / div DC 100µs / div

1V / div DC 20ns / div

VIDCLK

{VIDCLK}

+5V_0E

I432

CX-11F 24M576

10u

1570

5570

3016

15

7574-B 74LVC125A

13

MUX B

PLL B

12

MUX C

PLL C

SDA_1 SCL_1

E

10

+5V_STBY_SW

BOOTWE

11

14

RES

BZX384-C2V4

14 Z 100n

I436

4K7 2581

RES 6503

D(14)

13

3

4581 F568

100n

4K7

2583

8 VCC

D(2) D(9)

E1 E2

SDA

5

3582

D(8)

100R

6

SCL 7 WC_ 0V4

VSS

4

1575 +3V3_PW

+3V3

4582 RES

8

100R

E0

3583

1

D(3)

F 500mAL 32V 441

5

6

F593

F573

7

8

F594

F574

9

10

F595

F575

11

12

F596

13

14 F597 3590

+3V3

15

16 F598 3K3

3591 +3V3

F577

A(1)

A(5) A(7) A(8) A(10)

17

18

F599

19

20

F600

F579

21

22

F601

F580

23

24

F602

25

26

F603

3592

+3V3

27

28

F604

3K3

3593 +3V3

F605

F581

29

30

F582

31

32

F583

33

34

F606

F584

35

36

F607

37

38

F608

F585

39

40

F609

F586

41

42

43

44

F610

45

46

F611

F588

47

48

F589

49

50

F612

F590

51

52

F613

53

54

55

56 58

59

60

3K3

D

A(13) A(15) A(16) A(18)

3K3

ROMWE

A(0:19)

{ROMWE}

E D(0:15)

D(7) D(6) D(13) D(12)

+3V3

F587

57

C

A(3)

D(11)

F

D(10)

+3V3 D(1) D(0)

G

DEBUG CONNECTOR PW

PW_SDA_NVM

6502

3594

H

RES

7

7571-A 16 74HCT4053D Vdd Y0 12 11 S

+5V

I435

D(15) DCKEXT

36MHz

F569

4K7

7580 M24C32 2

Y1 1 E Vee Vss

6

F572

8

PW_RESET

6501

F564

D(4)

F567

4592 RES 6500

11

D(5)

PW_SCL_NVM

15 Z

SDA_SW

F592

7

3581

G

ROMOE

12

PW-NVM

7571-B 16 74HCT4053D Vdd Y0 2 10 S

100n

F591

4

120MHz

E Vee Vss

7

2

3

MCLK

7574-D 74LVC125A

3580

2584

8

A(19)

F563

10

Y1 3

6

1

F578

A(14)

A(17)

14

+3V3_PW

F

F565

7 4

4 Z

+3V3

VXCA_18M432

+3V3

VSS

4593 RES 7571-C 16 74HCT4053D Vdd Y0 5 9 S

SCL_SW

4574

7574-C 74LVC125A 9

7 OE 5V

F570

4

2 SEL_CD

1K

6

5

S86 0386 FTR

F571

F576 A(12)

MUX D 3575

A(11)

7

9 ADDR

+5V_0E

4572

A(9)

14

I2C BUS INTERF

1 SDA

100R

A(6)

MUX A

PWR DWN CTRL

16 SCL

100R

3571

SDA_SW

3

1

REF OSC

6 XOUT

A(4)

7

VDD

3 PD

SCL_SW

14

14 8

5 XIN

PLL A 1n

2570

D

7570 FS6377

I431

A(2)

7574-A 74LVC125A 2

C

I433

100n

100MHZ

100n

10u

2572

2573

100MHZ

I430

F566

5574 +3V3_STBY_SW

2574

5572 +5V

B

4591 RES

B

24.576MHz

CLOCK GENERATOR

Y1 13 E Vee Vss

6

7

H

8

CL 26532038_043.eps 030502

1

2

3

4

5

6

7

8

9

10

11

0386 C9 1570 C2 1575 G6 2570 D2 2572 C4 2573 C4 2574 C6 2581 H2 2583 F5 2584 F1 3016 D3 3571 D2 3575 E3 3580 F3 3581 G3 3582 F5 3583 F5 3590 D10 3591 D10 3592 E10 3593 E10 3594 H2 4572 C6 4574 D7 4581 G3 4582 G4 4591 C10 4592 G1 4593 E2 5570 C2 5572 B3 5574 B5 6500 G1 6501 G1 6502 G1 6503 H1 7570 C3 7571-A G2 7571-B F2 7571-C E3 7574-A C6 7574-B D6 7574-C D6 7574-D E6 7580 F4 F563 E7 F564 E7 F565 D7 F566 B7 F567 G3 F568 G3 F569 G5 F570 C8 F571 C8 F572 C8 F573 C8 F574 C8 F575 D8 F576 D8 F577 D8 F578 D8 F579 D8 F580 D8 F581 E8 F582 E8 F583 E8 F584 E8 F585 F8 F586 F8 F587 F8 F588 F8 F589 F8 F590 F8 F591 C10 F592 C10 F593 C10 F594 C10 F595 C10 F596 D10 F597 D9 F598 D9 F599 D10 F600 D10 F601 D10 F602 D10 F603 E10 F604 E10 F605 E10 F606 E10 F607 E10 F608 E10 F609 F10 F610 F10 F611 F10 F612 F10 F613 F10 I430 C3 I431 D3 I432 B4 I433 D2 I435 H1 I436 H1


Electrical Diagrams and PWB Layouts

FM23

7.

EN 66

SCAVIO Panel: PW Scaler and Memory

GGO(0:7)

F GBO(0:7)

F619 F620 F621 F633

GBLKSPL GCOAST

H19 J17 G19 G20 H17 H18 F19 F20

100MHZ 100n

+3V3_PW

E4 D2

RES

7

10K

3623

3621

9 10

CONTROLLER

16

TIMERS

W3 A13 A6 B6

30 F626

PTSTEN SCANMODE DTCLK DTMB

29 F625

TEST CONTROL

MICROPROCESSOR BUS

RGB

31

PROCESSOR

GENERATOR

RESET

E3

PIXEL PROCESSING OSD

GRAPHICS

INTERNAL

PW164

INTERFACE

VIDEO PORT

REGISTER INTERFACE

SDRAM FRAME BUFFER

PORT PIXEL

REGISTER BUS

PROCESSING

MEMORY CONTROLLER

VERTICAL

HORIZ.

IMAGE

IMAGE

DISPLAY

SCALAR

FIFO

SCALAR

OSD

COLOR

AND

LOOKUP

SPACE

GAIN

TABLES

EXPANDER

OSD

ON SCREEN DISPLAY

F615

F618

F616

F634

F633

F619

1V / div DC 10µs / div

1V / div DC 5µs / div

1V / div DC 5ms / div DECODER AND TIMER

COLOR

F638

F637

DRE0 DRE1 DRE2 DRE3 DRE4 DRE5 DRE6 DRE7

R19 T20 R18 R17 T18 U19 T17 V20

DGE0 DGE1 DGE2 DGE3 DGE4 DGE5 DGE6 DGE7

U18 V19 W20 W19 Y20 V17 U16 W18

DBE0 DBE1 DBE2 DBE3 DBE4 DBE5 DBE6 DBE7

Y19 Y18 V16 U15 Y16 V15 W16 W15

DRO0 DRO1 DRO2 DRO3 DRO4 DRO5 DRO6 DRO7

Y12 W11 Y11 U10 V10 W10 Y10 W9

DGO0 DGO1 DGO2 DGO3 DGO4 DGO5 DGO6 DGO7

Y9 W8 V8 U8 Y8 Y7 W7 Y5

DBO0 DBO1 DBO2 DBO3 DBO4 DBO5 DBO6 DBO7

V6 U6 W5 Y4 V5 Y3 V4 Y2

1V / div DC 200µs / div

IMAGE

1V / div DC 50µs / div

1V / div DC 10ns / div

DEN DHS DVS DCLK DCKEXT

DISPLAY

OPTIMIZER

TIMING GENERATOR

A7

I|O9

A8

3

A(3)

2

A(4)

1

A(5)

44

A(6)

43

A(7)

42

A(8)

27

A(9)

26

A(10)

25

A(11)

24

A(12)

21

A(13)

20

A(14)

19

A(15)

18

A(16)

3

4

5

6

7

8

9

10

C

D

NC3 VSS 34

I475

12

3637

+3V3_PW

RES PW_RESET

+3V3W RES 6630

+3V3W

I482 PW_FLASH_RESET

BAT254

3630

I480

E

BOOTWE

1K

31 33 35 38 40 42 44 30 32 PARITY

34 36 39 41 43

47R

13 10

7630 37 M29W160DT 25 VCC DQ0 A0 24 DQ1 A1 23 DQ2 A2 22 A3 DQ3 21 DQ4 A4 20 DQ5 A5 19 A6 DQ6 18 A7 DQ7 8 DQ8 A8 7 A9 DQ9 6 DQ10 A10 5 DQ11 A11 4 A12 DQ12 3 DQ13 A13 2 A14 DQ14 1 A15 DQ15|A-1 48 A16 17 A17 16 A18 9 A19 15 RB_ 26 E_ 28 G_ 11 W_ 12 RP_ 47 BYTE_ VSS2

F

G

H

I485 3636

+3V3W

F614 3K3 F632

3632 3K3

ROMOE ROMWE

I

3633 I486

4K7

3634 +3V3W 3K3

46 27

4632 RES

CL 26532038_044.eps 030502

{MCLK,DCKEXT}

2

B

NC2

I481

100n

2625

100n

A6

A(2)

+3V3_PW

2624

100n +3V3_PW

2623

100n

I|O7 I|O8

100n

29

F638

+3V3_PW

2622

100n +3V3_PW

2621

100n

2620

2619

100n +3V3_PW

+3V3_PW

+3V3_PW

100n

2618

100n +3V3_PW

2617

2616

100n +3V3_PW

+3V3_PW

100n

2615

2614

+2V5 100n

2613

+2V5 100n

2612

+2V5 100n

2611

+2V5 100n

2610

+2V5 100n

2609

+2V5 100n

2608

+2V5 100n

+2V5 100n

2607

+2V5 100n

A5

A(1)

4

FLASH

C7 C18 U20 V18 Y17 V12 V9 Y6 V3 K3

C3 C10 C11 B12 C14 G18 K18 P18 V14 Y14 V11 V7 U5 P3 L3 G3

2606

+2V5 100n

2605

2604

+2V5 100n

2603

+2V5 100n

2602

+2V5 100n

2601

+2V5 100n

2600

+2V5 100n

I|O6

5

100MHZ 2630

I

+2V5

A4

+3V3_PW 5630

DCLK

1

RAMOE

3631

Y15 DEN U13 F639 DHS V13 DVS W12 F637 DCKEXT Y13

VDD3.3

3628

NC1

23

F617

3610

VSS

D4 D7 D10 B11 A12 D14 D17 G17 K17 P17 T19 U17 W17 U14 W14 U12 U11 U9 U7 W6 W4 U4 P4 L4 K4 G4

VSS

F629

F622

14

VDD2.5

I|O5

I|O16 A15

22

45

1V / div DC 100µs / div

1V / div DC 20ms / div

A3

I|O15 A14

28

F634

AUTOMATIC

H

DRE(0:7)

MEMORY

A2

I|O4

I|O14 A13

38

MCLK

I|O3

I|O13 A12

37

+3V3

GRE0 GRE1 GRE2 GRE3 GRE4 GRE5 GRE6 GRE7 GGE0 GGE1 GGE2 GGE3 GGE4 GGE5 GGE6 GGE7 GBE0 GBE1 GBE2 GBE3 GBE4 GBE5 GBE6 GBE7 GRO0 GRO1 GRO2 GRO3 GRO4 GRO5 GRO6 GRO7 GGO0 GGO1 GGO2 GGO3 GGO4 GGO5 GGO6 GGO7 GBO0 GBO1 GBO2 GBO3 GBO4 GBO5 GBO6 GBO7

A1

I|O12 A11

MCLK

W13

A0

I|O11 A10

32

36 MCKEXT

CLOCK

DCLK

I|O1 I|O2

I|O10 A9

35

UCLK

GCLK GVS GHS GPENSOG GFBK GREF GBLKSPL GCOAST

15

DECODERS

YUV TO

47R

IR

UART

10K

INTERFACE

3622

WATCHDOG AND

INTERRUPT

ROM/RAM

14

F624

PROCESSOR

3620

MICROPROCESSOR

A

RAMWE

6

100R

8

F623

I/O PORTS

SRAM

17

40 BHE_ 41 OE_

13 16-BIT

WE_

39 BLE_ CE_

IRRCVR0 IRRCVR1

C1 D3 RXD TXD

D1

2628

3616 RES 3617

NMI

33 VCC

1K

3615

100R

+3V3_PW

1K E2

PW_START

3639

RES 1K I471 3638

EXTINT

M3 M4 N2 M1 L2 L1 K2 M2 N1 RD WR BHEN ROMOE ROMWE RAMOE RAMWE CS0 CS1

D0 D1 D2 D3 D4 D5 D6 D7 D8 D9 D10 D11 D12 D13 D14 D15

PORTB0 PORTB1 PORTB2 PORTB3 PORTB4 PORTB5 PORTB6 PORTB7

A0 A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19

F4 F3 E1 F2 F1 G2 G1 H1 H4 H3 H2 J1 J2 J4 J3 K1

P1 P2 N3 N4 R1 R2 T1 T2 R3 U1 U2 R4 T3 V1 W1 V2 T4 U3 Y1 W2

{PW_START}

+3V3_PW

A(0:19)

A(0)

TXD_PW

RXD_PW

RAMOE RAMWE

BHEN

I470

SYNC F618

7628 CY62126 11

G GCLK ADVS ADSOG ADDE ADHS

ROMOE ROMWE

FBX_MODE 1_2FH

3K3 RES

3612 RES

3613 3K3

D(0:15)

100R

100R 3608 F636

SDA_2

SCL_2

VIDEO_SEL_2

100R 3606 F635

VIDEO_SEL_1

3607 F627

SYNC

5628

A3 C5 D6 B4 A4 C6 B5 A5

100R F628 3609

SYNC_SEL

{1_2FH,SYNC,FBX_MODE} A(0:19)

VCLK VCLKEN VPEN VVS VHS VFIELD

VG0 VG1 VG2 VG3 VG4 VG5 VG6 VG7 VB0 VB1 VB2 VB3 VB4 VB5 VB6 VB7

14

A(0:19)

GRO(0:7)

13

VSS1

E

12

10p

GBE(0:7)

11

NC

3K3

10

2629

3627

9

D(0:15)

GGE(0:7)

8

DGE(0:7)

3K3 3626

+3V3_PW

7

DBE(0:7)

M20 N19 N18 N17 N20 P20 P19 R20 F18 E19 E20 J18 H20 J19 J20 K19 D16 A18 C17 B18 A19 B19 A20 D18 K20 L17 L18 L19 L20 M18 M17 M19 E17 C19 B20 C20 E18 F17 D19 D20 B15 A16 C15 D15 B16 A17 C16 B17

6

MEMORY OUT BUS

Y_OUT(0:7) UV_OUT(0:7)

D8 C8 B7 A7 B8 D9 C9 A8 B9 A9 B10 A10 D11 A11 C12 B13

3625

3K3

D12 D13 C13 A14 B14 A15

5

MEMORY IN BUS

4605 VPEN VOUT_DEINT HOUT_DEINT VFIELD_DEC

GRE(0:7)

SYNC_SEL

VGA2_OUT VGA2_EN

PORTA0 PORTA1 PORTA2 PORTA3 PORTA4 PORTA5 PORTA6 PORTA7

CLKOUT_DEINT

+3V3_PW

VIDEO_SEL_1

7605 PW164

C

D

100R

100R

F616

F630 F631

3605

PW_SCL

(BASIC & ENHANCED VERSION)

VIDEO_SEL_2

3611

3604

C2 B1 B2 A1 C4 D5 B3 A2

PW_SDA

SCALER PW164 + MEMORY B

F615

4

100R

3K3

A

100R

3K3 3601

+3V3_PW

3603

+3V3_PW

3602

3600

PW_SCL_NVM

3

PW_SDA_NVM

2

100R

1

11

12

13

14

2600 I1 2601 I2 2602 I2 2603 I2 2604 I2 2605 I3 2606 I3 2607 I3 2608 I4 2609 I4 2610 I4 2611 I4 2612 I5 2613 I5 2614 I5 2615 I6 2616 I8 2617 I9 2618 I9 2619 I9 2620 I9 2621 I10 2622 I10 2623 I10 2624 I11 2625 I11 2628 A12 2629 E12 2630 E12 3600 A2 3601 A2 3602 A3 3603 A3 3604 A3 3605 A2 3606 A4 3607 A4 3608 A4 3609 A4 3610 H11 3611 A3 3612 A4 3613 A5 3615 A10 3616 A11 3617 A11 3620 B11 3621 B11 3622 B11 3623 B11 3625 D1 3626 D1 3627 D1 3628 A14 3630 E13 3631 E13 3632 I14 3633 I14 3634 I14 3636 H14 3637 D13 3638 A9 3639 A9 4605 B2 4632 I14 5628 A12 5630 E12 6630 E13 7605 A3 7628 A13 7630 E13 F614 H13 F615 A2 F616 A2 F617 D12 F618 G2 F619 G2 F620 H2 F621 H2 F622 D12 F623 C11 F624 C11 F625 C11 F626 C12 F627 A4 F628 A4 F629 A13 F630 A3 F631 A3 F632 I13 F633 H2 F634 H11 F635 A4 F636 A4 F637 H11 F638 I11 F639 H11 I470 A9 I471 A9 I475 D13 I480 E13 I481 E13 I482 E14 I485 H13 I486 I13


Electrical Diagrams and PWB Layouts

FM23

7.

EN 67

SCAVIO Panel: Back-End EPLD 6

7

8

9

10

11

A9

DCLK

RDY-BSY_

DATA6

CLKUSR

DATA7

A4 D4 B5

PW_SDA

I 1_2FH

SYNC_SEL

IO105

B_OUT(2)

B_OUT(3)

B_OUT(4)

B_OUT(5) R_OUT(5)

R_OUT(7)

R_OUT(4)

R_OUT(3)

G_OUT(5)

IO79

G_OUT(4)

IO20

G_OUT(1)

IO19

G_OUT(3)

IO80

G_OUT(0)

IO18

G_OUT(7)

IO17

IO81

IO78 IO77

IO21

IO76

IO22

IO75

IO23

IO74

B

N6 N5 N3 N2 N1 M15 M13

C

VIDCLK

M10 M8 M7 M4 M3 M2 M1 L16

D

L15 L14 L13 L3 K15

E

K13 K12 K4 K2 K1 J16 J15

F

J14 J13 J12

IO71

IO70

IO69

IO68

IO67

IO66

IO65

IO64

IO63

IO62

IO61

IO59

IO58

IO57

IO56

IO55

IO54

IO53

IO52

IO51

IO50

IO49

IO48

IO47

IO46

IO45

IO44

IO43

IO42

IO41

IO40

IO72 IO39

IO73

IO25 IO38

IO24

DRE(0:7)

PARITY_OUT

H_SYNC_OUT

IO16

IO82

N7

DGE(0:7)

IO106

IO107

IO108

IO109

IO110

IO111

IO112

IO113

IO114

IO117

IO118

IO119

IO120

IO121

IO122

IO123

IO124

IO125

IO126

IO127

IO128

IO129

IO130

IO131

IO132

IO133

IO134

IO135

IO136

IO137

IO138

IO139

R_OUT(2)

R_OUT(1)

R_OUT(0)

IO15

N8

D3 D5 D6 D7 D9 D10 D11 D13 D14 D16 E1 E2 E4 E7 E9 E10 E13 E14 E15 F1 F2 F3 F4 F13 F14 F15 F16 G1 G2 G4 G5 G12G13 G15 H2 H3 H4 H5 H12 H13 H14 H15 J2 J3 J4 J5

G

3666 RES 2666

H

RES

+2V5PLDC

F660

+2V5PLDA

+2V5PLDB

+2V5PLDC

+3V3PLDA

+3V3PLDB

+3V3PLDC

+3V3PLDD

2663

3661

2656

2657

2658

2659

2660

2661

2662

100R 3663

100n

100n

100n

100n

100n

100n

100n

100R

VIDEO_SEL_2

VIDEO_SEL_1

DVS

DHS

PARITY

3660

100R

I510

V_HD

H_HD

H_PRESENT

C_SYNC_OUT

V_SYNC_LM

C_SYNC_LM

H_SYNC_CMP

75OHM_ON

H_SYNC_TTL

V_SYNC_TTL

V_SYNC_CMP IO140

IO141

IO142

IO143

IO144

IO145

IO146

V_SYNC_OUT

R_OUT(6)

IO85

IO83

DCP2

PW_SCL

B_OUT(0)

IO84

DCP1

FBX_MODE

IO86

IO14

VGA2_V

H

IO87

B_OUT(6)

N9

100R

DATA5

A

I511

DATA4

CS

B4

B_OUT(7)

IO13

3665

CS_

C3

IO12

IO37

DATA3

IO11

IO36

RS_

A2

IO10

IO35

DATA2

D2

IO88

IO34

WS_

B3

IO147

IO148

VPP

DATA1

GR_CLK

L8

CEO_

A1

IO9

TV_MODE

D15

DATA0

IO89

HD_CLAMPN

G14

10u

100MHZ

CE_

IO90

IO8

HD_BLANKN

+3V3PLDE 2649

+3V3_PLD

A15

F653

5649

INIT-DONE

IO7

ALT_GR_ADDE

G

C13

IO91

VGA1_H

A16

C12

CONF-DONE

IO92

IO6

VGA1_V

C14

C11

I/O PORT PROCESSING

IO5

IO33

B14 10u

2648

100MHZ

F645

IO93

IO32

B16

+3V3PLDD

C2

C10

IO94

IO4

IO31

F652

5648 +3V3_PLD

TDI

F644

C8

IO3

IO30

B1

DCLK

C16

C6

IO95

IO29

G16

TDO

F643

C5

IO96

IO2

3668

C15

CONFIG_

B15

IO99

B_OUT(1)

IO1

100R

10u

I507

TCK

P15

F642

3662

B2

TMS

STATUS_

F641

100R

2645

+3V3PLDC

MSEL1

10K R16

C4

3664

N4

F651

TRST_

F640

SDA_1_3V3

R1

MSEL0

C1

SCL_1_3V3

10u

2646

P1

100MHZ

B11

B13

10K 3657

7656-B EP1K30FC256

+3V3PLDB

2647

F

+3V3_PLD

B10

3658

T16 5647

B8

11

B12

F650

100MHZ

B7

19

10

CONTROL +3V3_PLD

B6

3

TCK

TDI GND

+3V3PLDA

E 5646

1

TMS

F649

100MHZ

A13

TDO

EEPROM NC

A11 A12

2

DATA

IO100

IO98

IO28

OE

IO101

DEV-OE

IO27

6 7 15 16 17

CS_

DEV_CLR_

100R

10u

2644

8

4654

LOCK

IO26

+2V5PLDC

100MHZ

5645 +3V3_PLD

I506

F648

A10

18 20

4655 4656 4657 4658 4659

5644 +2V5

5

10u

D

A5

A8

VCC

9

DCLK

VPPSEL

4

13 12 14 CASC_

10u

2643

7655 EPC2

DI4

IO102

IO97

A7

100n

DI3

3667

I505

+2V5PLDB

VCCSEL

F647

INIT_|CONF

5643 100MHZ

C9

A6 2655

+2V5

D8

IO103

100R

POWER_DOWN_EPLD

POWER_DOWN

+3V3PLDE

3653

2642

+3V3PLDE

+2V5PLDA

P12

IO104

DI2

VGA2_H

100n

F646

C

+3V3_PLD T 630mA L 63V 446

R8

DI1

BLANK_OUT

M9 1670 I501 +3V3

100MHZ

E8

1K

1K

5642 +2V5

B9

F657

+3V3PLDE

2

F658

+2V5

1K 3655

3

I504 3641

1n

6

2641

2V5 A

7

I503

8

1K 3654

REF

10u

B

4 NC

14

T15 T14 T13 T12 T11 T10 T9 T7 T6 T5 T4 T3 T2 T1 R15 R14 R13 R12 R11 R10 R9 R7 R6 R5 R4 R3 P16 P14 P13 P11 P10 P9 P8 P7 P6 P5 P4 P3 P2 N16 N14 N13 N11 N10

F654

+3V3PLDE

5

2640

7640 1 TL431 C

PWRDWN_LVDS

7656-A EP1K30FC256

F655 4V7

H_SYNC_POL_N

BYTE BLASTER CONNECTOR

1

3

5

I502

7

9

S85 0385 147279

V_SYNC_POL_N

2

4

6

8

+3V3_PLD

7641 STD16NE06L

2K2

3640

+8V6

10

F656 +3V3PLDA

DEN

F659

A

13

MATRIX_SEL

BACK-END-EPLD (BASIC & ENHANCED VERSION)

12

IO115

5

G_OUT(6)

4

IO116

3

G_OUT(2)

2

IO60

1

100n

F661

E11 F5 F7 F9 F12 H6 H7 H10 J7 J10 J11 K9 L5 L7 L12 M11R2

I504 = 2V5

D12 E6 F8 F10 G6 G8 G11H11 J6 K6 K8 K11 L10 M6 N12

F662 VCCINT

SYNC

VCCIO

7656-C EP1K30FC256

GND

GROUND AND SUPPLY NC

A3 A14 C7 E5 E12 F6 F11 G7 G9 G10 H8 H9 J8 J9 K5 K7 K10 L1 L6 L11 M5 M12

L9 VCC_CKLK GND_CKLK

D1 E3 E16 G3 H1 H16 J1 K3 K14 K16 L2 L4 M14M16N15

T8

CL 26532038_045.eps 030502

1

2

3

4

5

6

7

8

9

10

11

12

13

14

I

0385 A3 1670 B3 2640 B1 2641 B1 2642 C1 2643 D1 2644 D1 2645 E1 2646 F1 2647 F1 2648 G1 2649 G1 2655 C4 2656 I9 2657 I10 2658 I10 2659 I11 2660 I12 2661 I12 2662 I13 2663 I14 2666 H11 3640 A1 3641 B2 3653 C2 3654 C2 3655 C3 3657 E4 3658 E4 3660 A11 3661 I4 3662 F5 3663 I4 3664 G5 3665 G11 3666 H11 3667 G6 3668 H6 4654 D5 4655 E4 4656 E4 4657 E4 4658 E4 4659 E4 5642 C1 5643 C1 5644 D1 5645 E1 5646 E1 5647 F1 5648 G1 5649 G1 7640 B1 7641 A2 7655 D3 7656-A A6 7656-B E3 7656-C I9 F640 E4 F641 E4 F642 F4 F643 F4 F644 F4 F645 F4 F646 C1 F647 C1 F648 D1 F649 E1 F650 E1 F651 F1 F652 G1 F653 G1 F654 B4 F655 B4 F656 A4 F657 B4 F658 B4 F659 A4 F660 H4 F661 I4 F662 I4 I501 B3 I502 A1 I503 B1 I504 B2 I505 C3 I506 D3 I507 F2 I510 A11 I511 G11


Electrical Diagrams and PWB Layouts

FM23

7.

EN 68

SCAVIO Panel: Back-End LVDS Output 1

2

3

4

5

6

7

8

9

10

11

12

13

BACK-END-LVDS-OUTPUT (BASIC & ENHANCED VERSION)

56 TXIN4

R_OUT(7)

2 TXIN5

R_OUT(5)

3 TXIN6

G_OUT(0)

4 TXIN7

G_OUT(1)

6 TXIN8

G_OUT(2)

7 TXIN9

G_OUT(6)

8 TXIN10

470R

3K3

3681

3689 +5V_STBY_SW

R-FB 17

RES

I685

I683

SDA_1_3V3

SDA_1

C

4680

55 TXIN3

R_OUT(4)

I681

B

10K

R_OUT(3)

3673

54 TXIN2

TXOUT0- 48 TXOUT0+ 47

18

F680

RES

F673

TxOut1_p

15

16

F674

TxOut2_m

13

14

F675

TxOut2_p

11

12

F682

3674

F676 TxCLKOut_m

9

10

F683

100R

3676

F677

TxCLKOut_p

7

8

F684

3677

100R

16 TXIN16

F678

TxOut3_m

5

6

F685

100R

B_OUT(7)

18 TXIN17

F679

TxOut3_p

3

4

B_OUT(1)

19 TXIN18

B_OUT(2)

20 TXIN19

B_OUT(3)

22 TXIN20

B_OUT(4)

23 TXIN21

B_OUT(5)

24 TXIN22

PARITY_OUT

25 TXIN23

TXOUT1+ 45

F690

H_SYNC_OUT

27 TXIN24 F691

V_SYNC_OUT

F692

BLANK_OUT

28 TXIN25

D

3671

F681

3672 RES CPU_GO PDP_GO IRQ_PDP

POWER_DOWN_EPLD

2

1

PW_SCL

DF13 0301

1p

1p 2699

1p

2694

TXOUT2+ 41

3687

PW_SDA RES

TXOUT2- 42

E

F686

2698

15 TXIN15

20

17

1p

14 TXIN14

B_OUT(0)

19

1p

G_OUT(5)

TxOut1_m

2697

12 TXIN13

TxOut0_p

F672

2696

G_OUT(4)

TXOUT1- 46

TxOut0_m

F671

1p

11 TXIN12

F670

2695

10 TXIN11

G_OUT(3)

S01 PDP INTERFACE CONNECTOR

RES

G_OUT(7)

B_OUT(6)

F

PLLVCC

R_OUT(2)

LVDSVCC

R_OUT(1)

52 TXIN1

3682

+3V3_STBY_SW

3670

E

51 TXIN0

470R

3K3

3686

3685 4684

100n

SCL_1

7676 BSH103

26 34 44

VCC

R_OUT(0)

RES

I682

SCL_1_3V3

TTL PARALLEL-TO-LVDS

D

9

TTL PARALLEL-TO-LVDS

C

1

A

3688

7675 BSH103

LVDS ENCODER 7670 DS90C385MTD

I680

+5V_STBY_SW

2673 100MHZ

100n

100n

2674

5673

+3V3_PW

+3V3_PW 2672 100MHZ

5672 100n

B

100n

2670

5670

A

2671 100MHZ

+3V3_PW

+3V3_STBY_SW

F

TXOUT3- 38 TXOUT3+ 37

30 TXIN26 50 TXIN27

R_OUT(6)

TXCLKOUT- 40 31 TXCLKIN

DCLK

G

PWRDWN_LVDS

3675

PLL TXCLKOUT+ 39

3V3 32 PWRDWN_

10K GND 3679

5

PLL GND

G

F690

F691

F692

500mV /div DC 10µs / div

500mV /div DC 5ms / div

500mV /div DC 10µs / div

LSVD GND

13 21 29 53 35 33 36 43 49

100R

H

H

CL 26532038_046.eps 030502

1

2

3

4

5

6

7

8

9

10

11

12

13

0301 E9 2670 B5 2671 B5 2672 B5 2673 B6 2674 B6 2694 F11 2695 F11 2696 F11 2697 F11 2698 F12 2699 F12 3670 F10 3671 D11 3672 D11 3673 C6 3674 E10 3675 G4 3676 E11 3677 E10 3679 G4 3681 B10 3682 B11 3685 A10 3686 A10 3687 F11 3688 A11 3689 B11 4680 C10 4684 B10 5670 B5 5672 B5 5673 B6 7670 B4 7675 A11 7676 B11 F670 D9 F671 D9 F672 D9 F673 D9 F674 D9 F675 E9 F676 E9 F677 E9 F678 E9 F679 E9 F680 D10 F681 D10 F682 E10 F683 E10 F684 E10 F685 E10 F686 E10 F690 F4 F691 F4 F692 G4 I680 A11 I681 B11 I682 B9 I683 C9 I685 C6


Electrical Diagrams and PWB Layouts

FM23

7.

EN 69

SCAVIO Panel: Audio Source Selection 1

2

3

4

5

6

7

8

9

10

11

AUDIO SOURCE SELECT

12

13

4794

+8V6 5796

AV1 CVBS

I545

I544 1u

4 3726 I546

2775

LOUT2 14

4K7

3796

100u

4K7 2800

33K

A

1 GND SUPPLY

2 CAP

BUS DECODER

PRE_OUT1_L

1u

ADDR 26

3794

SCL 27

100R

SDA 28

B

SCL_AUDIO

3795

SDA_AUDIO

100R

ROUT3 17

2796 ROUT2 15

F714

F713

2795

LOUT1 12

3 VS

F711

PRE_OUT2_L

1u

7

1u

F723 = 8V6 F724 = 4V3 F710

3797

3798

10K

100p

2771

3K3

1K

15K 2726 47p

+4V3A

2794

8

+8V6

5798

2727

3776 I540 2776

22u

3V9

22K

3V9

6

F724

LOUT3 16

21 NC 3775 I539

100MHZ

3724

+8V6A

7798 TEA6422D4 5 6 9 10 11 L1 L2 L3 L4 L5 L6 22

5

S79 7714-B LM833DT 7

R

MATRIX SWITCH

1u

100n 2799

100R

8

6770

F718

3K3

2798

6

3772 I534 2772

10K

15K 2716

I538

L

1K

3777

4

6771

F717

3716 I536

BZM55-C33 BZM55-C33

RES

3723 I5413V95

100p

1u 2721

33K

3720

6720 6721

BZM55-C33 BZM55-C33

C

1K

0379-B COMBI

1u

4

+8V6A

3721 I542 2722 I543

I547

2714

33K

2

AUDIO_CVBS

47p

+4V3A

F712 S77

R

2717

6774

3

I535

3V9

3771 I533

COMBINED WITH CVBS + Y INPUT ON SC 2

6775

B

2 3V9

100n 7714-A LM833DT 1

BZM55-C33 BZM55-C33

F711

22K

8

RES

6711

1

3714

2724

I537

L

100R

100p

F710

1u

2711

0378-A COMBI

1K 3710

6710

AUDIO_VGA_IN

BZM55-C33 BZM55-C33

3711 I531 2712 I532

3713 I5303V93

3773

2715

(BASIC & ENHANCED VERSION) +4V3A

A

F723

100MHZ

100p

+8V6A

PRE_OUT2_R

1u

2797

ROUT1 13

R1 R2 R3 R4 R5 R6

C

PRE_OUT1_R

1u

25 24 23 20 19 18 +8V6A 4797

2735

33K

3719

10K

3718

10K

100n

15 Z

Y1 1

SC1_L

E Vee Vss

8

6

+4V3A

7

8

F

3837

0V

I588 7806 BSH103

100K

3807

3805

7807 BSH103

H I585

0V

I589 7808 BSH103

0V

100K

3808

3806

33K

0V

I

7802 BC847BW

8V5

I525

AUDIO_ENABLE

7801 BC847BW

I584

6807 0V BAW56W 1 3 2

100K

0V

7805 BSH103

I592 3804

I596

100K

3801

330R 3809

33K

0V9 6805 0V BAW56W 1 3 2 33K

3800 3803

G

I575

100K I595

0V6 I599

{POWER_OK}

3822

33K

3802 6802 BAW56W 2 3 1

8V5 1n

4801

10u

2803

10u

2802

I570

330R

3836

100K

3785

10K 10K 1u

33K

47p

3K3

3820

15K 2766

7

I582

2804

10K

I597

6

+4V3A

7803 BC857BW

3821

6790

3766 I594

1K

3792 I587 2792

F725

I593

100p

3791 I586

4

22K

R

1u

6

Y0 2

Y1 13

I574

POWER_OK

2767

Y0 12

E Vee Vss

8

1u

2

S80

7

+9V_STBY

3 7754-B LM833DT 7

6

10K

RES

3764

8

6791

2761

1u 100p

33K

1K

100R

5

L I581

F722

E Vee Vss

D_CTR_ONE

+8V6A 3763 I583

F721 1

47p

14 Z

3788 I577 2788 3K3

1K

3789

AUDIO_YPbPr 0380-A COMBI

Y1 3

Vdd 10 S

1u

3793

3756 I579

3787 I576 100p

I578

COMBINED WITH PR + PB + H_HD_EXT + V_HD_EXT ON SC 2

2787

4

Y0 5

CL 26532038_047.eps 030502

1

2

3

4

5

E

7800-B 16 74HC4053D

7800-A 16 74HC4053D Vdd 11 S

I569

100p

1u

2

22K

4 Z 3784 I566 2784 3K3

1K 2783

6782

AV3 2757

7800-C 16 74HC4053D Vdd 9 S

+8V6A

100K

3783 I565

6783

100n 8 7754-A LM833DT 1

SC1_R

4800 +8V6A

+8V6A

2801

RES 3 RES

2754

3754

100p

33K

2751

1u

3753 I571 100R

1u

8

I568

15K 2756

3760

6760 6761

BZM55-C33 BZM55-C33

S79

3746 I564

D_CTR_NIL

R

2791

1K

3761 I590 2762 I591

I

9

1u

2755

8

I598

L

F720

47p

+4V3A

S77

R

F719 7

2747

I560

3K3

3717 I556 33K

3780 I558 2780

4

22K

2764

9

2744

+4V3A 6751

F716

7734-B LM833DT 7

+8V6A

3750

6750

L

7

I580

BZM55-C33 BZM55-C33

F715

8

6

I563

3751 I572 2752 I573

AUDIO_DVI

3744

5

15K 2746

G 0378-C COMBI

3743 I559

100p

33K

2741

1u

+4V3A

6741

I567

330R 3740

6740

F

BZM55-C33 BZM55-C33

3741 I561 2742 I562

H

0379-C COMBI

1K 2779

AUDIO_YC

5 100R

6778

COMBINED WITH CVBS + Y INPUT ON SC 2

47p

3779 I557

3781

AV2 AUDIO YC

100p

15K 2736

+8V6A S77

I555

7718 BC847BW

3736 I552

6779

I551

BZM55-C33 BZM55-C33

22K

D

I553

4

100p

2731

33K

2737

BZM55-C33 BZM55-C33

R

6

+8V6A

500mV / div DC 500µs / div

500mV / div DC 500µs / div

1u

2

6786

E

500mV / div DC 500µs / div

500mV / div DC 500µs / div

6787

F714

3734

7734-A LM833DT 1

BZM55-C33 BZM55-C33

L

4

1u

100R

8

BZM55-C33 BZM55-C33

F713

I554 6731

0378-B COMBI

330R 3730

6730

AUDIO_FLEX_VGA

BZM55-C33 BZM55-C33

3731 I549 2732 I550

3 RES

D

2734

+4V3A

100n 3733 I548

6

7

8

9

10

11

12

13

0378-A A1 0378-B E1 0378-C G1 0379-B A5 0379-C E5 0380-A G5 2711 B2 2712 A2 2714 A3 2715 A3 2716 B3 2717 A4 2721 C2 2722 B2 2724 B3 2726 C3 2727 B4 2731 D2 2732 D2 2734 D3 2735 D3 2736 E3 2737 D4 2741 F2 2742 F2 2744 F3 2746 F3 2747 F4 2751 G2 2752 G2 2754 G3 2755 G3 2756 H3 2757 G4 2761 I2 2762 H2 2764 H3 2766 I3 2767 H4 2771 A6 2772 A7 2775 B6 2776 B7 2779 E6 2780 E7 2783 F6 2784 F7 2787 G6 2788 G7 2791 H6 2792 H7 2794 B11 2795 B12 2796 C11 2797 C12 2798 C9 2799 C9 2800 A13 2801 E9 2802 G10 2803 G12 2804 H10 3710 A1 3711 A2 3713 A3 3714 A3 3716 A3 3717 D13 3718 E12 3719 D12 3720 C1 3721 B2 3723 B3 3724 B3 3726 C3 3730 D1 3731 D2 3733 D3 3734 D3 3736 D3 3740 F1 3741 F2 3743 E3 3744 F3 3746 F3 3750 G1 3751 G2 3753 G3 3754 G3 3756 G3 3760 I1 3761 H2 3763 H3 3764 H3 3766 I3 3771 A6 3772 A7 3773 A7 3775 B6 3776 B7 3777 B7 3779 E6 3780 E7 3781 E7 3783 F6 3784 F7 3785 F7 3787 G6 3788 G7 3789 G7 3791 H6 3792 H7 3793 H7 3794 B12 3795 B12 3796 A12 3797 A12 3798 A12

3800 G10 3801 G12 3802 H9 3803 H10 3804 I10 3805 H11 3806 I11 3807 H12 3808 I12 3809 H11 3820 I9 3821 I9 3822 H9 3836 F10 3837 F11 4794 A11 4797 D11 4800 E11 4801 G12 5796 A13 5798 B9 6710 A1 6711 B1 6720 C1 6721 C1 6730 D1 6731 E1 6740 F1 6741 F1 6750 G1 6751 H1 6760 I1 6761 I1 6770 A6 6771 A6 6774 B6 6775 C6 6778 E6 6779 E6 6782 F6 6783 G6 6786 G6 6787 H6 6790 H6 6791 I6 6802 I9 6805 H11 6807 H12 7714-A A3 7714-B B3 7718 D12 7734-A D3 7734-B E3 7754-A G3 7754-B H3 7798 A9 7800-A E11 7800-B E12 7800-C E10 7801 I9 7802 I10 7803 H10 7805 H11 7806 H12 7807 H13 7808 H13 F710 B1 F711 B1 F712 B1 F713 E1 F714 E1 F715 H1 F716 H1 F717 A5 F718 B5 F719 E5 F720 F5 F721 H5 F722 H5 F723 A13 F724 A13 F725 I9 I525 I11 I530 A3 I531 A2 I532 A2 I533 A7 I534 A7 I535 A3 I536 A4 I537 B1 I538 A6 I539 B7 I540 B7 I541 B3 I542 B2 I543 B2 I544 B6 I545 C3 I546 C4 I547 C1 I548 D3 I549 D2 I550 D2 I551 D3 I552 D4 I553 D12 I554 E1 I555 D12 I556 D13 I557 E7 I558 E7 I559 E3 I560 E6 I561 F2 I562 F2 I563 F3 I564 F4

I565 F7 I566 F7 I567 F1 I568 F6 I569 F11 I570 F12 I571 G3 I572 G2 I573 G2 I574 G11 I575 G12 I576 G7 I577 G7 I578 G3 I579 G4 I580 H1 I581 H6 I582 H11 I583 H3 I584 H11 I585 H13 I586 H7 I587 H7 I588 H11 I589 H13 I590 H2 I591 H2 I592 H10 I593 I3 I594 I4 I595 I9 I596 I10 I597 I6 I598 I1 I599 I9


Electrical Diagrams and PWB Layouts

FM23

7.

EN 70

SCAVIO Panel: Audio Processor 7

I652 470p

1n5

+4V3B

2839 2820

4V2 3

8

CAPL_M

26

0V2

27

LOUDSPEAKER L

0V2

1u 2827

D/A

1u

29

35

39

44

F816

3

F817

2

+4V3B

100R

D

0388 PH-S

R_POS

4

100n

10u

4V2

2 4V2

22K

3854

SC1_OUT_L

31

3V8

27p +8V6B

23 24 28 32

1

5

7

3855

4V2 5

100R 3856

I666

8

7851-B LM833DT I665 7 4V2

6

3859

R_NEG

100R

4

4V2

22K

E

220n

3V8

2867

30

D/A

NC

20

5

3857

6

F

39K 2858

470p

27p +8V6B 2861

100R

3866

2837

RES

3835

+4V3B

4V2 3

1n5

3861

I670

L

G

4

4V2

22K

100n 7861-A TS462CD 1 4V2

2

I671

3862

I673

3860 8K2

27K

RES

2836

2835

RES

RES

2869

I669

2868 1u

I672

100MHZ

5834

10u

I668 1835

8

RES

I667

1n5 2834

2859

2833

G

C

1

7851-A LM833DT I662 1

100R

DVSS

AVSS

ASG

AHVSS

VREF1

VREF2

1n

1n

2819

1n

2818

1n

2815

25

I664

8

3870

SC1_OUT_R

SCART Switching Facilities

F

3851

4V2 3

D/A

SCART-L

100R

F815

TO 0388

39K

3V8 37 SC2_IN_L

2811

I661

100n

1n

100R 3818

6

2853

SCART-R

3V8 38 SC2_IN_R

7

F814

3853

+4V3B

3V8 40 SC1_IN_L

100R 3817

8

2852

I663

2829

HEADPHONE L

F812 F813

4

+8V6B

XTAL_OUT

PRE_OUT2_L

A/D

SCART-R

XTAL_IN

PRE_OUT2_R

HEADPHONE R

TP

PRE_OUT1_L

100R 3816

SCART-L

AVSUP

E

3V8 41 SC1_IN_R

A/D

S88

27p

I660

22K AGNDC 36

PRE_OUT1_R

2848

DFP

100n

3815

100R

39K

2830

IDENT

4V2

AUDIO OUTPUT

L_NEG

3847

I659

+4V3B 2828

IDENT

43 MONO_IN

3849

4

4V2

3850

2814

7841-B LM833DT I657 7

6

39K

DACM_L

I658

RES

22K

2846

100n

LOUDSPEAKER

1n

D

3846

8

RES

2 ANA_IN+

DACM_R

D/A

LOUDSPEAKER R

2831

2826

4V2 5

RES

DEMODULATOR

I678

22

3845 100R

3858

FM1 FM2 NICAM A NICAM B

3 ANA_IN-

I2SL/R

I2SL/R

19

2851

RESETQ

S1...4

1n 2813

AHVSUP

DVSUP

2856

21 I2S_DA_IN2

STBYQ

27p

17 I2S_DA_IN1

I2S_DATA_IN2

+8V6B 11

2850

I2S_DATA_IN1

27p

+4V3B

16 I2S_DA_OUT

B

2843

220p

34

1n

I2S_DATA_OUT

2812

39K

33

1n

15 I2S_WS

42

2825

14 I2S_CL

I2S_CLOCK

4

VREFTOP

13 I2C_DA

9

TESTEN

12 I2C_CL

3813 100R

SDA_AUDIO

C

100R

8

D_CTR_IO0

4811

18 10

D_CTR_IO1

SDA_SW

3812

ADR_CL

4810

ADR_SEL

SCL_SW

10u

2857

7812 MSP3415G

SCL_AUDIO

L_POS

3843

2845

B

100R

4

4V2

22K

3844

4V2

2

470p

I692

7841-A LM833DT I655 1

1n

F820

I656

3841

100n

2849

6820

D_CTR_ONE

I654

3840 22K

I691

100n

10u

2817

2816

D_CTR_NIL

2823 2824

BAT254

I653

AUDIO PROCESSOR

A

2842 10u

2838

+8V6B

+4V3B

1n

1n5

2844

5822

(BASIC & ENHANCED VERSION)

13

+5V

2822

A

12

1n

10u

11

2854

2821

100MHZ

10

39K

I650 5820 I651

9

RES

AUDIO PROCESSOR

8

27p

6

3848

5

2841

4

2840

3

100MHZ

2

+8V6

1

2862

+4V3B 47p

+5V F810

+8V6B

4K7

3810

100MHZ

+4V3B

100u

4K7 2810

3811

RES

3814

F811

4V2 5

F810 = 8V6 F811 = 4V3 F812 = 4V3 F813 = 4V3 F814 = 0V F816 = 4V3 F817 = 4V3

I659 = 4V4 I660 = 4V4

I674

2863

3864 22K

1u

I675

RES

5810

2864

H

100R

+8V6

3867

+8V6B

8

H

7861-B TS462CD 7

R

4V2

6 4

4V2 3865

I676

3863 8K2

27K 2865

I

AUDIO_ENABLE

SC1_R

MSP_RESET

VXCA_18M432

SC1_L

47p

I

CL 26532038_048.eps 030502

1

2

3

4

5

6

7

8

9

10

11

12

13

0388 D13 1835 G7 2810 I2 2811 F2 2812 C3 2813 D3 2814 D3 2815 F2 2816 B6 2817 B6 2818 F3 2819 F3 2820 B7 2821 A7 2822 A7 2823 A8 2824 A8 2825 D8 2826 C9 2827 C9 2828 D8 2829 E8 2830 E9 2831 C8 2833 G6 2834 G6 2835 G7 2836 G7 2837 F6 2838 A7 2839 B8 2840 A10 2841 A10 2842 A11 2843 B11 2844 B11 2845 B8 2846 C10 2848 C11 2849 C11 2850 D10 2851 D10 2852 D11 2853 E11 2854 D11 2856 F10 2857 F11 2858 F11 2859 G10 2861 F11 2862 G11 2863 H9 2864 H10 2865 I11 2867 F12 2868 G9 2869 G7 3810 H2 3811 I2 3812 B3 3813 B3 3814 I2 3815 E2 3816 E2 3817 E2 3818 E2 3835 F7 3840 A10 3841 B10 3843 B11 3844 A11 3845 C10 3846 C10 3847 C10 3848 A10 3849 C11 3850 D10 3851 D10 3853 E11 3854 D11 3855 E10 3856 F10 3857 F10 3858 D10 3859 E11 3860 G11 3861 G10 3862 G10 3863 I11 3864 H10 3865 I10 3866 F10 3867 H10 3870 F12 4810 B2 4811 B2 5810 H2 5820 A6 5822 A8 5834 G6 6820 A7 7812 B3 7841-A A11 7841-B C11 7851-A D11 7851-B E11 7861-A G11 7861-B H11 F810 H3 F811 H3 F812 C12 F813 C12 F814 C12 F815 C12 F816 D12 F817 D12

F820 B4 I650 A6 I651 A7 I652 A8 I653 A6 I654 A10 I655 A11 I656 A10 I657 C11 I658 C10 I659 C9 I660 D9 I661 D10 I662 D11 I663 D9 I664 D10 I665 E11 I666 F10 I667 G7 I668 G7 I669 G9 I670 G10 I671 G11 I672 G7 I673 G7 I674 H9 I675 H10 I676 I11 I678 C8 I691 B7 I692 B7


Electrical Diagrams and PWB Layouts

FM23

7.

EN 71

SCAVIO Panel: Audio Delay Line 1

2

3

4

5

6

7

8

9

10

11

12

AUDIO DELAY LINE (BASIC & ENHANCED VERSION) A

A 5870 +5V

F870

+5D

100MHZ

GND 12

C

11 +5D

10

G1

4

100n

2880

28

VCC

WE_ CE_

20 22

27

OE_

I|O7

19

I|O5

I|O4

I|O6

18

17

16

I|O2

I|O1

I|O3

15

13

12

I|O0

A14

10

11

A13

9

A11

A12

8

7

6

A9

A10

A8

4

5

A7

3

A5

A6

2

1

A4

26

A2

A3

25

16 8

CTR8

1+ (CT=255)Z4

24

21 VCC C2

RAM

B

+5D

100n

EN3

2870

14 13

+5D

A1

7870 TC74HC590AF

23

14

COUNTER

A0 GND

7880 CY7C199B

B

C

9

CT=0

2D 3

15 1 2 3

D

D

4 5 6

DFF

7

DFF

+5D

7881 74HCT573

7874 TC74HC590AF

13

EN3

VCC C2

GND 12 11 +5D

10

G1

4

C1

Vcc GND

20

2881

1

10

100n

11

EN C1

Vcc GND

20

2882

10

100n

E

2

19

2

19

4882

8ms

8

3

18

3

18

4883

16ms

4

17

4

17

4884

24ms

5

16

5

16

4885

32ms

6

15

6

15

4886

7

14

7

14

4887

8

13

8

13

4888

9

12

9

12

4889

1V / div DC 500ns / div

9

CT=0

2D 3

EN

16

CTR8

1+ (CT=255)Z4

11

+5D

2874

14

F872

100n

E

F

1

COUNTER

+5D

7882 74HCT573

1D

1D

40ms

56ms

1 +5D 4871 470R

3880

4891 4892

F872

DELAY 2 FOR TV CONFIGURATION 40ms

4893

I2S_DATA_IN2

F873

4897 I2S_DATA_OUT

27p

2879

4896

I2S_CLOCK

3879

4895

H

H

CL 26532038_049.eps 030502

1

2

3

4

5

G

4894

F871

7879 BC847BW

47K

4876

4875

4874

7

F874

I2S_DATA_IN1

4873

6

G

4890 4872

5

64ms F875

3 4

F

48ms

15

2

DELAY 1 FOR MONITOR CONFIGURATION 24ms

6

7

8

9

10

11

12

2870 C2 2874 F2 2879 H7 2880 B7 2881 E8 2882 E10 3879 H6 3880 G6 4871 G2 4872 G3 4873 G2 4874 G3 4875 G3 4876 G3 4882 E10 4883 E10 4884 F10 4885 F10 4886 F10 4887 F10 4888 F10 4889 F10 4890 G10 4891 G10 4892 G10 4893 G10 4894 G10 4895 G10 4896 G10 4897 H10 5870 A3 7870 B1 7874 E1 7879 G6 7880 B3 7881 E7 7882 E9 F870 A3 F871 G6 F872 G6 F873 H7 F874 G11 F875 F11


Electrical Diagrams and PWB Layouts

FM23

7.

EN 72

Layout SCAVIO Panel (Overview Top View) 0301 0305 0315 0316 0318 0319 0320 0375 0376 0378 0379 0380 0381 0382 0383 0384 0385 0387 0388 1100 1105 1170 1171 1250 1270 1415 1570 1575 1670 1835 2002 2003 2004

A3 A2 A6 A5 A6 A6 A1 C6 C1 C2 C7 C8 C7 A1 B2 B2 A1 A8 A8 A2 A7 C4 B5 C6 B7 B2 A4 A3 A1 B8 C8 C8 C8

2005 2008 2012 2014 2015 2021 2030 2040 2041 2042 2060 2072 2077 2082 2088 2089 2090 2097 2103 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2119

C8 C8 C8 C8 C8 C8 C8 A8 A8 A8 A7 C7 C8 C8 C8 B7 C7 C8 C7 B7 B7 B7 B7 B7 B7 B8 B7 B7 C8 C7 C8 C8 C6

2120 2123 2124 2127 2128 2134 2137 2140 2142 2143 2144 2145 2146 2147 2150 2151 2152 2153 2156 2157 2158 2159 2161 2164 2165 2166 2167 2168 2195 2196 2197 2198 2199

C8 C7 C7 B8 B7 B8 C7 B8 A7 A7 A7 B8 B5 A7 A7 B5 B5 B7 A7 B8 B5 B7 C8 C8 C8 B8 B8 B8 B5 B5 C5 C4 C5

2217 2220 2221 2222 2223 2224 2225 2226 2228 2252 2253 2254 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2274 2275 2276 2277 2278 2279 2300 2301 2302 2308

C6 C6 B7 C7 C6 C6 A8 A8 C6 C6 C6 C6 C6 C6 C6 C6 C6 C7 C6 C6 C7 C7 C7 C7 C7 C7 C7 C7 C7 A6 A6 B7 A6

2311 2318 2328 2335 2336 2337 2338 2340 2343 2351 2352 2353 2354 2355 2365 2370 2372 2375 2376 2383 2433 2435 2437 2438 2446 2447 2499 2520 2521 2522 2523 2524 2530

A6 A6 A6 B5 C3 B3 C3 B1 C1 C1 C1 C1 C1 C1 C1 A5 B5 B5 B5 B2 B2 B2 B2 B2 B2 C2 B1 B2 B2 B1 B3 B1 A6

2541 2557 2558 2559 2560 2562 2563 2564 2565 2566 2570 2572 2573 2574 2583 2628 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2657 2662 2663 2799 2800 2802 2803

A7 A6 A6 A6 A6 A7 A7 A7 A7 A6 A4 A4 A5 A5 A4 A3 A1 A1 A2 A3 A3 B2 A2 A2 A3 A2 A3 A3 A3 B8 C3 C3 C3

2810 2816 2820 2821 2823 2829 2831 2834 2870 2874 2879 2881 3001 3002 3003 3004 3005 3006 3008 3009 3010 3011 3012 3013 3014 3015 3016 3040 3041 3042 3043 3044 3050

A8 B8 B8 B8 B8 B8 B8 B8 A8 A7 A8 A8 C8 C8 C8 C8 C8 C8 C8 B3 C8 C8 C8 C8 C8 C8 A5 A8 A8 A8 A8 A8 A8

3051 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102

A8 C8 C7 C7 C7 C7 C8 C8 C8 C8 C8 C8 C8 C8 C8 C8 B8 C8 C8 C8 B7 C7 C8 C7 B8 C8 C8 B8 B8 B7 C8 C7 B7

3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130 3131 3133 3134 3135 3136

B7 B8 B8 C8 C8 B7 B7 C8 C7 C7 B7 B8 B7 C8 B8 C8 C8 C8 B8 B7 C8 C7 C8 B8 B8 B8 B8 B8 B7 B5 B8 B8 B8

3137 3138 3139 3140 3141 3142 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3170 3171 3172 3173

C7 C7 C7 B8 B8 B8 A6 A7 A7 A6 B7 A7 A6 A7 A7 B6 B7 B7 A6 A7 A7 B6 B7 B7 B5 B8 C8 B7 B5 A6 A6 A6 B7

3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3186 3188 3189 3193 3194 3195 3200 3203 3204 3205 3209 3210 3213 3214 3215 3216 3217 3218 3219 3220 3250 3251

B7 B7 B7 B7 B8 B7 B8 B8 B8 B7 B7 B7 B7 B8 C7 C6 C7 B5 B5 B5 B5 C5 C5 C6 C6 C6 C6 C6 C6 B5 A8 B7 B7

3260 3261 3262 3263 3271 3274 3275 3276 3277 3278 3279 3284 3285 3286 3289 3290 3291 3292 3293 3297 3298 3299 3304 3305 3306 3308 3309 3310 3311 3316 3318 3319 3320

B7 C6 B7 B7 B7 C8 C6 C7 C8 C7 C7 B6 B6 B6 B6 B6 B6 B6 B6 B6 B5 B6 B6 B3 A5 A6 A6 A6 A6 A5 A6 A6 A6

3321 3323 3324 3328 3329 3330 3331 3333 3334 3336 3337 3338 3339 3340 3346 3351 3352 3353 3354 3355 3359 3363 3364 3365 3366 3370 3371 3373 3374 3375 3376 3377 3378

A6 A5 A5 A6 A6 A6 A6 A5 A5 B3 B3 B3 B3 B1 B1 B6 C1 C1 C1 C1 A6 C3 C1 C1 C1 A5 A5 A5 A5 B5 B5 B5 B5

3379 3380 3381 3382 3383 3385 3386 3387 3389 3390 3391 3392 3393 3394 3397 3398 3401 3402 3404 3406 3410 3413 3414 3415 3424 3425 3426 3427 3428 3429 3448 3449 3451

B5 B2 B2 B2 B2 B3 B3 B3 B3 B3 B3 B3 B3 B3 B3 B2 B2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 C2 B1 B1 B1

3452 3453 3460 3461 3462 3463 3464 3483 3484 3485 3486 3487 3488 3489 3496 3502 3503 3506 3510 3512 3519 3520 3536 3540 3541 3542 3543 3544 3545 3546 3547 3556 3557

C1 C1 B1 B1 B1 B1 B1 C2 C2 C2 C2 C2 C2 C2 B3 B1 B1 B1 B3 B3 B3 B3 A5 A7 A7 A7 A7 A7 A6 A7 A7 A1 A6

3558 3559 3560 3570 3571 3572 3573 3575 3580 3581 3582 3583 3610 3611 3625 3626 3627 3640 3641 3655 3657 3658 3660 3667 3668 3679 3687 3710 3720 3730 3740 3750 3760

A6 A6 A6 A1 A4 A6 A6 A4 A4 A4 A4 A4 B3 A4 A3 A3 A3 A1 A1 A2 A3 A3 B8 B6 B6 A3 B3 C3 C2 C2 C2 C2 C2

3809 3810 3811 3814 3836 3837 3879 3880 3900 3905 3906 3907 3909 3913 3914 3915 3918 3919 3920 3922 3924 3925 3926 3927 3928 4008 4011 4146 4152 4158 4200 4201 4202

C3 A8 A8 A8 C4 C4 A8 A8 C3 A6 A6 A6 A5 C1 A1 B1 B5 A5 A5 B1 C1 C1 C1 C1 C1 A1 A1 B8 B8 B7 B5 B5 B5

4203 4215 4216 4381 4500 4572 4574 4654 4659 4871 4872 4873 4874 4875 4876 4890 4891 4892 4893 4894 4895 4896 4897 4898 5089 5090 5140 5161 5164 5166 5167 5170 5175

B5 C6 C6 B3 C1 A5 A5 A2 A2 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A8 A1 B8 B8 A7 C8 C8 B8 B8 C8 B7

5180 5196 5197 5198 5199 5210 5214 5221 5222 5223 5224 5226 5228 5300 5302 5350 5352 5520 5524 5541 5570 5572 5574 5628 5642 5643 5644 5646 5647 5648 5649 5810 5820

B7 B5 B5 C4 C5 C6 C6 B7 C7 C6 C6 C6 B5 A6 B7 C1 C1 A2 B1 A7 A4 A5 A5 A3 A2 A3 A3 A2 A2 A3 A2 A8 B8

5834 5870 6001 6010 6071 6076 6091 6105 6166 6200 6201 6202 6203 6204 6205 6206 6207 6208 6209 6210 6214 6274 6276 6277 6278 6302 6315 6316 6317 6318 6319 6320 6321

B8 A7 C8 C8 C8 C8 C8 B7 B8 C5 C5 C6 C6 C5 C5 C5 C5 C5 C5 C6 C6 C8 C6 C6 C7 B7 C1 C1 C1 C1 C1 C1 C1

6322 6323 6324 6353 6354 6355 6356 6357 6365 6366 6378 6379 6388 6393 6399 6508 6509 6551 6552 6553 6554 6555 6710 6711 6720 6721 6730 6731 6740 6741 6750 6751 6760

C1 C1 C1 C1 C1 C1 C1 C1 C1 C1 B5 B5 B3 B3 B3 B3 B3 C1 C1 C1 C1 C1 C3 C3 C2 C2 C2 C2 C2 C2 C2 C2 C2

6761 6770 6771 6774 6775 6778 6779 6782 6783 6786 6787 6790 6791 6820 6821 7006 7010 7040 7041 7074 7075 7079 7080 7084 7085 7088 7089 7090 7100 7102 7103 7104 7105

C2 C8 C8 C7 C7 C7 C7 C7 C7 C8 C8 C8 C8 B8 B3 C8 C8 A8 A8 C7 C7 C8 C8 C8 C8 C8 B8 C7 B7 B7 B7 B8 B8

7107 7110 7111 7112 7113 7115 7117 7121 7129 7130 7131 7135 7138 7141 7145 7146 7148 7151 7154 7157 7158 7160 7165 7170 7175 7215 7225 7280 7308 7309 7311 7318 7319

B7 B7 B7 B7 B7 B7 C8 C8 B8 B8 B7 B8 C7 B8 A7 B8 A7 A7 B7 A7 B8 B7 B8 B5 C5 C6 B6 B6 A6 B6 A6 A6 B5

7320 7321 7322 7323 7328 7333 7340 7352 7364 7370 7383 7432 7433 7506 7540 7570 7574 7580 7605 7628 7640 7641 7655 7656 7670 7870 7874 7879 7880 7881

B3 B3 B3 C3 A6 B6 B1 C1 C1 B5 B2 C2 C2 B1 A7 A4 A5 A4 B4 A3 A1 A1 A2 A2 A3 A7 A7 A8 A8 A8

Part 1 CL26532038_50a.eps

Part 2 CL26532038_50b.eps

Part 3 CL26532038_50c.eps

Part 4 CL26532038_50d.eps CL 26532038_050.eps 030502


Electrical Diagrams and PWB Layouts

FM23

7.

EN 73

Layout SCAVIO Panel (Part 1 Top View)

CL 26532038_50a.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 74

Layout SCAVIO Panel (Part 2 Top View)

CL 26532038_50b.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 75

Layout SCAVIO Panel (Part 3 Top View)

CL 26532038_50c.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 76

Layout SCAVIO Panel (Part 4 Top View)

CL 26532038_50d.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 77

Layout SCAVIO Panel (Overview Bottom View) 0386 2000 2001 2007 2009 2020 2022 2034 2061 2066 2160 2162 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192

A5 C1 C1 A2 B2 B1 B1 C1 B5 A5 B2 B2 C4 C4 C4 C4 B4 B4 B4 B4 B4 C4 C4 B4 C4 C4 C4 C5 B5 B4 B4 C5 C5 B5 B5

2193 2205 2206 2207 2208 2209 2210 2211 2212 2230 2231 2232 2240 2247 2248 2249 2250 2280 2281 2282 2283 2284 2285 2286 2287 2288 2304 2305 2306 2310 2341 2345 2356 2381 2382

B5 B4 B4 B4 C4 C4 C4 C4 B4 C3 C3 C2 B2 B3 B3 B2 B2 B3 B3 B3 B3 B3 B3 B3 B3 B3 B2 B2 B2 B2 A8 A8 C8 B7 B7

2415 2416 2418 2419 2420 2432 2434 2436 2439 2448 2500 2501 2502 2503 2504 2505 2506 2511 2513 2515 2531 2533 2534 2535 2537 2538 2546 2547 2548 2550 2551 2552 2553 2554 2555

B7 B7 B6 B6 B6 B7 B7 B7 B7 B7 B8 B8 B8 B8 B8 B8 B8 B7 B7 C8 A3 A4 A4 A4 A7 A7 A8 A8 A8 A8 A8 A8 A8 A8 A8

2581 2584 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2629 2630 2655 2656 2658 2659 2660

A3 A3 B6 B6 B6 B6 B6 B6 B5 B5 B5 B5 B5 B5 B6 B6 B6 A5 B6 B5 B6 B5 B6 B5 B6 A6 B6 B6 A5 A5 A7 A7 A7 A7 A7

2661 2666 2670 2671 2672 2673 2674 2694 2695 2696 2697 2698 2699 2711 2712 2714 2715 2716 2717 2721 2722 2724 2726 2727 2731 2732 2734 2735 2736 2737 2741 2742 2744 2746 2747

A7 A7 A7 A6 A6 A7 A6 A6 A6 A6 A6 A6 A7 C6 C6 C6 C7 C6 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7

2751 2752 2754 2755 2756 2757 2761 2762 2764 2766 2767 2771 2772 2775 2776 2779 2780 2783 2784 2787 2788 2791 2792 2794 2795 2796 2797 2798 2801 2804 2811 2812 2813 2814 2815

C7 C7 C7 C7 C7 C7 C7 C7 C8 C8 C7 C1 C1 C1 C1 C2 C2 C2 C2 C1 C1 C1 C1 B1 B1 C1 B1 B1 C6 C6 B1 B1 B1 B1 B1

2817 2818 2819 2822 2824 2825 2826 2827 2828 2830 2833 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2848 2849 2850 2851 2852 2853 2854 2856 2857 2858 2859 2861

B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 B1 A1 B1 A1 B1 A1 B1 A1 A1 A1 A1 B1 A1 B1 A1 A1 A1 A1 B1 A1

2862 2863 2864 2865 2867 2868 2869 2880 2882 3000 3007 3018 3019 3020 3021 3022 3023 3024 3025 3026 3030 3031 3032 3033 3034 3035 3036 3052 3053 3054 3060 3061 3065 3066 3132

Part 1 CL26532038_51a.eps

Part 2 CL26532038_51b.eps

B1 B1 A1 A1 A1 B1 B1 A1 A1 C1 B2 B7 A2 B1 B1 B1 B1 B1 C1 C1 B1 C1 C1 C1 C1 B1 B1 A2 A2 A2 A5 A5 A5 A5 B1

3190 3206 3207 3208 3211 3212 3225 3294 3295 3296 3300 3301 3302 3303 3307 3312 3313 3314 3315 3317 3322 3325 3326 3327 3332 3335 3341 3342 3343 3344 3345 3347 3348 3349 3350

B1 C4 C4 C4 C5 C5 C2 A8 A8 B8 A3 A3 B3 B3 A8 A3 A3 A3 A3 A8 A3 A3 A8 A8 A3 B3 C8 C8 C8 C8 C8 C8 A8 B8 C8

3356 3357 3358 3360 3361 3362 3367 3368 3369 3372 3384 3388 3400 3405 3411 3417 3418 3419 3420 3421 3422 3423 3430 3431 3432 3433 3435 3436 3450 3490 3494 3507 3511 3513 3514

A3 A3 A3 C8 C8 C8 B3 B3 B3 A8 B7 B6 A8 B6 B7 A8 B7 A8 A7 A7 A7 A8 B7 B7 B7 B7 B7 B7 B7 B7 B7 B8 B7 B7 C8

3515 3516 3517 3518 3530 3531 3532 3533 3534 3535 3537 3538 3539 3548 3549 3550 3551 3552 3553 3554 3555 3561 3562 3563 3564 3565 3566 3567 3568 3569 3590 3591 3592 3593 3594

C8 C8 C8 C8 A3 A3 A3 A3 A4 A4 A3 A4 A3 A2 A4 A8 A8 A8 A8 A3 A4 A2 A2 A2 A2 A2 A2 A2 A4 A3 A5 A5 A5 A5 A3

3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3612 3613 3615 3616 3617 3620 3621 3622 3623 3628 3630 3631 3632 3633 3634 3636 3637 3638 3639 3653 3654 3661 3662 3663 3664

A5 A5 A5 A5 A5 A5 B5 A5 B5 A5 B6 B6 B5 A5 A5 A6 B5 B5 B5 A6 A6 A5 A5 A6 A5 A5 A5 A5 A5 A7 A7 A7 A7 A7 A7

3665 3666 3670 3671 3672 3673 3674 3675 3676 3677 3681 3682 3685 3686 3688 3689 3711 3713 3714 3716 3717 3718 3719 3721 3723 3724 3726 3731 3733 3734 3736 3741 3743 3744 3746

A7 A7 A6 A7 A6 A6 A6 A6 A6 A6 A7 A7 A7 A7 A7 A7 C6 C7 C6 C6 C5 C5 C5 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7 C7

3751 3753 3754 3756 3761 3763 3764 3766 3771 3772 3773 3775 3776 3777 3779 3780 3781 3783 3784 3785 3787 3788 3789 3791 3792 3793 3794 3795 3796 3797 3798 3800 3801 3802 3803

C7 C7 C7 C7 C7 C7 C8 C8 C1 C1 C1 C1 C1 C1 C2 C2 C2 C2 C2 C2 C1 C1 C1 C1 C1 C1 B1 B1 C6 C6 C6 C6 C6 C6 C6

3804 3805 3806 3807 3808 3812 3813 3815 3816 3817 3818 3820 3821 3822 3835 3840 3841 3843 3844 3845 3846 3847 3848 3849 3850 3851 3853 3854 3855 3856 3857 3858 3859 3860 3861

C6 C6 C6 C6 C6 B1 B1 B1 B1 C1 B1 C6 C6 C6 B1 A1 B1 B1 A1 A1 A1 A1 B1 A1 A1 B1 B1 A1 A1 A1 A1 B1 A1 B1 B1

3862 3863 3864 3865 3866 3867 3870 3901 3902 3903 3904 3908 3910 3911 3912 3917 3923 4006 4007 4009 4010 4250 4315 4316 4325 4335 4385 4430 4431 4505 4506 4581 4582 4591 4592

B1 A1 A1 A1 B1 B1 A1 A8 A3 A3 B3 B2 A2 B2 B2 B2 B2 A2 A2 B1 A1 C3 A3 A8 B3 B3 B6 B7 B7 B8 B7 A5 A5 A5 A3

4593 4605 4632 4655 4656 4657 4658 4680 4684 4794 4797 4800 4801 4810 4811 4882 4883 4884 4885 4886 4887 4888 4889 5000 5007 5009 5020 5060 5160 5162 5220 5521 5522 5523 5530

A3 B5 A5 A8 A8 A8 A8 A7 A7 B1 C1 C5 C6 B1 B1 A1 A1 A1 A1 A1 A1 A1 A1 C1 A2 A2 B1 A2 B2 B2 C3 B7 C8 B7 A3

5630 5645 5670 5672 5673 5796 5798 5822 6007 6019 6022 6034 6310 6311 6380 6381 6500 6501 6502 6503 6504 6505 6507 6630 6802 6805 6807 7000 7001 7002 7007 7009 7025 7060 7065

A5 B7 A7 A7 A7 C6 B1 B1 B2 A2 B1 C1 B2 B2 A8 B8 A3 A3 A3 A3 B6 B6 B8 A5 C6 C6 C6 C1 C1 C1 A2 A1 B1 A5 A5

7303 7305 7306 7307 7310 7315 7316 7325 7326 7341 7343 7356 7357 7358 7360 7362 7365 7366 7367 7405 7406 7430 7435 7500 7510 7515 7516 7517 7530 7550 7555 7563 7571 7630 7675

B2 A3 B3 B3 B2 A8 A8 A8 A8 C8 C8 A3 A3 A3 C8 B8 B3 B3 B3 B6 B7 B7 A8 B8 B7 C8 C8 C8 A3 A8 A8 A2 A3 A6 A7

7676 7714 7718 7734 7754 7798 7800 7801 7802 7803 7805 7806 7807 7808 7812 7841 7851 7861 7882

A7 C7 C5 C7 C7 B1 C5 C6 C6 C6 C6 C6 C6 C6 B1 A1 A1 A1 A1

Part 3 CL26532038_51c.eps

Part 4 CL26532038_51d.eps CL 26532038_051.eps 030502


Electrical Diagrams and PWB Layouts

FM23

7.

EN 78

Layout SCAVIO Panel (Part 1 Bottom View)

CL 26532038_51a.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 79

Layout SCAVIO Panel (Part 2 Bottom View)

CL 26532038_51b.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 80

Layout SCAVIO Panel (Part 3 Bottom View)

CL 26532038_51c.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 81

Layout SCAVIO Panel (Part 4 Bottom View)

CL 26532038_51d.eps 020402


Electrical Diagrams and PWB Layouts

FM23

7.

EN 82

VGA Connector Panel 1

2

3

4

5

6

7

8

9

10

11

12

13

VGA CONNECTOR A

A F905

VGA1_G

I907

14 I926

7

I925

10

2905

11 7

I924

4K7 RES

14

14 1

3

2 7

I928

4

I927

7

1K

EBOX_PRESENT

20 21 22 23

BZM55-C33

100n RES

27

VGA2_RXD

28 29 RC_OUT

30

NVM

2

1 I947 7910-C +5V 74HCT125D 14 9

VSS 4

1K

7

33K

VGA2_V

7

I951

2

H

6925

3935

I949

5

RC-OUT

4

8

10

I948

10K

14 6

100R

BZM55-C33

1

7910-B +5V 74HCT125D

3926

100n RES

NC2

2925

NC1

7

I956

I952

100n RES

VCLK DU

5

14 100n 3

2911

SDA

0374 1 YKB11-0482

11

100R

+5V 7910-D 74HCT125D 14 I950 12

1K

7

I VGA2_H

100n RES

VCC SCL

2910

4910

7 3

F944

2

+5V_STBY_SW I958

I957

2912

10K

3921

F943

6

8

G

31 F900 32

VGA_OUTN

7915 BC847BW

+5V 7910-A 74HCT125D

F945

I945

+5V_STBY_SW

100MHZ

+5V

7907 ST24FC21 F942 3920

I955

I946 5901

4911

BZM55-C33

6920

VGA2_TXD

VGA_OUTN

3934

4K7

3930

4K7

100n

2909

10K

3918

10K

3929

100n RES

2908

3916

100R

3917

6916

I944

100R 3923

BZM55-C33

25

+5V

100R

3925

BZM55-C33

6923

F

24

4 x BUFFER

F941 100R

13

CL 26532038_052.eps 150402

3

E

19

VGA2_G

VGA2_RXD

3924

2

SCAVIO

17

EBOX_PRESENT

I954

3922 6922

6921

16

18

I943

DDC_SCL_2

BZM55-C33

RC_VGA1

VGA2_TXD

16

I

0318

26

BAT254

15

TO

15

VGA2_V

3919 BZM55-C33

I942

D

14

I962

I939 2907

BZM55-C33

100R

6914

BZM55-C33

6913

BZM55-C33

6912 6915

14

13

VGA2_B

6918

I941

12

VGA1_RXD

VGA2_H

DDC_SDA_2

13

VGA1_TXD

VGA1_H

4K7 RES

I940

12

10

VGA2_R

3939

7940 BC847BW RES

VGA1_V

11

100R

I960

8 9

7900-B 74HCT14D

7900-A 74HCT14D

3938

2906

I933

VGA1_H VGA1_V

100n RES

12

75R RES

3937

NVM

1K

BZM55-C33

3912 3914

BZM55-C33

6911

14 13

100R

75R RES

9

1

I923

100n RES

3911

3940

8

11

6 7

7900-E 74HCT14D

3913

10

17

100n RES

2903

7900-F 74HCT14D

VGA2_G

7

H

100n

100n

7904 8 ST24FC21 I919 VCC 5 6 SCL SDA F913 7 1 VCLK NC1 3 2 F914 DU NC2 VSS

I936

5

IN / OUT

4 5

7937 BC847BW RES

3915

C

3 VGA1_G

VGA1_RXD

VGA2_R

I938

6

2

VGA1_R

7

VGA2_B

1

4

1

RC_VGA1

I935

3

G

7

0318

I929

9

I932

I937

2

VGA2

8

VGA1_B

4

6910

6909 0372 748390

5

F915

E

F

2902

I920 100R

16

BZM55-C33

4K7

3927 2901

100n RES

2904

F9123909

3910

17

7900-D 74HCT14D 14

14 6

I918

F911 100R

DDC_SCL_1

D

7900-C 74HCT14D

4K7

3928 BZM55-C33

6908

BZM55-C33

15

6907

I916

BZM55-C33

14

6906

I915

I921

10K

10K

3905

100n RES

2900

3908

DDC_SDA_1

13

6905 BAT254

I930

10K

12

6904 BAT254

4 x BUFFER

3907 100R

I914

11

+5V_STBY_SW

I922

100R

10

B

5900 I931 100MHZ

3906

I913

9

75R

3902

BZM55-C33

75R

6902

3901

BZM55-C33

75R

6901 100R

8

IN

RES

VGA1_TXD

I917

3904

7

BZM55-C33

6903

6

C

3900

3903

I908

5

VGA1

BZM55-C33

3 4

F906

VGA1_B

1 2

B

VGA1_R

I906

6900

0371 748390

I905

3999

4

5

6

7

8

9

10

11

12

13

0318 C13 0371 B1 0372 F1 0374 H13 2900 B3 2901 C6 2902 C7 2903 C7 2904 D3 2905 D9 2906 E9 2907 G3 2908 G3 2909 G6 2910 H8 2911 I9 2912 I9 2925 H11 3900 B2 3901 B3 3902 B4 3903 B3 3904 C4 3905 C4 3906 C2 3907 C3 3908 C5 3909 D5 3910 D5 3911 D7 3912 E2 3913 E7 3914 E2 3915 G2 3916 G3 3917 G4 3918 G4 3919 H5 3920 H5 3921 I5 3922 I3 3923 I2 3924 I3 3925 I2 3926 H12 3927 B5 3928 C5 3929 G6 3930 G6 3934 G9 3935 H9 3937 D6 3938 E7 3939 E7 3940 E6 3999 A12 4910 H8 4911 I8 5900 B6 5901 G7 6900 B2 6901 B3 6902 B3 6903 B2 6904 B6 6905 B6 6906 D2 6907 D2 6908 D3 6909 D1 6910 E2 6911 E2 6912 F2 6913 F3 6914 F3 6915 G2 6916 G7 6918 H2 6920 H3 6921 I1 6922 I2 6923 I2 6925 H12 7900-A D8 7900-B D9 7900-C C8 7900-D C9 7900-E D9 7900-F D8 7904 D5 7907 H5 7910-A H7 7910-B H9 7910-C I7 7910-D I9 7915 H9 7937 E6 7940 E6 F900 G12 F905 A11 F906 A12 F911 C4 F912 D4 F913 D5 F914 D5 F915 D5 F941 H4 F942 H4 F943 H5 F944 I5 F945 H5 I905 A2 I906 A2 I907 B2

I908 B2 I913 C2 I914 C2 I915 C1 I916 D1 I917 B3 I918 C5 I919 D5 I920 B6 I921 B7 I922 C8 I923 D8 I924 E8 I925 D9 I926 D9 I927 E9 I928 E9 I929 C9 I930 C9 I931 B7 I932 C9 I933 D6 I935 F2 I936 F2 I937 F2 I938 G2 I939 G3 I940 H2 I941 H1 I942 H1 I943 G4 I944 H5 I945 H5 I946 G7 I947 H6 I948 I6 I949 H9 I950 I9 I951 H12 I952 H12 I954 G6 I955 G8 I956 H7 I957 G9 I958 G9 I960 E6 I962 E8


Electrical Diagrams and PWB Layouts

FM23

7.

EN 83

Layout VGA Connector Panel (Top View)

0318 0371 0372 0374

CL 26532038_053.eps 150402

A2 A1 A2 A2


Electrical Diagrams and PWB Layouts

FM23

7.

EN 84

Layout VGA Connector Panel (Bottom View)

CL 26532038_053.eps 150402

0318 0371 0372 0374 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2925 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929

A1 A2 A1 A1 A2 A2 A1 A2 A2 A2 A2 A1 A1 A1 A1 A1 A1 A1 A2 A2 A2 A2 A2 A2 A2 A2 A2 A2 A2 A2 A2 A1 A2 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A2 A2 A1

3930 3934 3935 3937 3938 3939 3940 3999 4910 4911 5900 5901 6900 6901 6902 6903 6904 6905 6906 6907 6908 6909 6910 6911 6912 6913 6914 6915 6916 6918 6920 6921 6922 6923 6925 7900 7904 7907 7910 7915 7937 7940

A1 A1 A1 A2 A2 A1 A1 A1 A1 A1 A2 A1 A2 A2 A2 A2 A2 A1 A2 A2 A2 A2 A2 A2 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A1 A2 A2 A1 A1 A1 A2 A1


Alignments

FM23

8.

EN 85

8. Alignments Index of this chapter: 1. General Alignment Conditions 2. Hardware Alignments 3. Software Alignments and Settings Note: The Service Default Mode (SDM) and Service Alignment Mode (SAM) are described in chapter 5. Menu navigation is done with the 'CURSOR UP, DOWN, LEFT or RIGHT' keys of the remote control transmitter.

8.1

8.2.1

Measure VS on pin 10 of connector 0323 (diagram P7). Use potmeter R3026 (see diagram P6) to align this voltage to the value mentioned on the sticker (mind you: alignment accuracy = ± 0.5 %). 8.2.2

Use a VGA-generator or a Personal Computer (contact your National Service Organisation for the necessary test pattern files) as test pattern generator and connect it to the VGA1 input of the FM23 plasma monitor. When you use a PC, start Microsoft PowerPoint (or Paintbrush), and load the mentioned file. Then display the picture as full screen.

VA Alignment Measure VA on pin 1 of connector 0323 (diagram P7). Use potmeter R3127 (see diagram P7) to align this voltage to the value mentioned on the sticker (mind you: alignment accuracy = ± 0.5 %).

General Alignment Conditions Perform all electrical adjustments under the following conditions: • Mains voltage and frequency: 220 VAC / 50 Hz unless otherwise stated. • Connect the set to the Mains via an isolation transformer. • Allow the set to warm up for approximately 20 minutes. • Measure the voltages and waveforms in relation to chassis ground (with the exception of the voltages on the primary side of the power supply). Never use the cooling fins/plates as ground. • Test probe: Ri > 10 MΩ, Ci < 2.5 pF. • Use an isolated trimmer/screwdriver to perform the alignments.

VS Alignment

8.3

Software Alignments Enter the Service Alignment Mode (see chapter 5). The SAM menu will now appear on the screen. Select one of the following alignment menus via the upper horizontal bar: 1. General (Gen.) 2. Display (Disp.) 3. Scaler (Scal.) 4. Video 1 (Vid.1) 5. Video 2 (Vid.2) 6. Options (Opt.) Note: the last three items are not available in the Basic configuration.

8.3.1

General Table 8-1 SAM Menu 'Gen.’

8.2

Hardware Alignments After a Power Supply (only valid for version 3, see also table in paragraph 8.3.6) replacement, you must align both VS and VA voltages. The exact values differ from panel to panel, therefore a sticker with the correct values is placed on the PDP. 1. Replace the Power Supply panel (see chapter 4). 2. Set the monitor in Service Default Mode (see SM chapter 5.3.1). 3. Allow the set to warm up for 20 minutes.

Service Alignment Menu General Type nr. - AG Code 32FD9944/01S (example) SW version OTC AAAABC-X.Y xxxxx SW version PW AAAABC-X.Y xxxxx SW version EPLD AAAABC-X.Y xxxxx Errors 1 xx xx xx xx xx Errors 2 xx xx xx xx xx Operational hours xx Reset error buffer Press OK to reset

Use a calibrated volt meter (accuracy = ± 1%) for the following alignments. For the correct alignment values, check the sticker in the upper left corner of the PDP (located just behind the suspension bracket, see photo below).

Store Press OK to store Store Select this item, and press OK, to store the made alignments. Note: There are several methods to exit the SAM, each with its own characteristics: • Switch the set 'off' (with the Mains switch or by pulling the Mains cord); new alignment settings are always stored, even when item 'store' was not activated! • Switch the set to 'standby' by pressing the power button on the remote control transmitter; new alignment settings are always stored, even when item 'store' was not activated! • Use a standard RC-transmitter and key in the code 0 0; new alignment settings are not stored (except when item 'store' was activated)!

Figure 8-1 VS/VA alignment values (example)


EN 86 8.3.2

8.

Alignments

FM23

Display

White Point

Table 8-2 SAM Menu 'Disp.'

Table 8-4 SAM Menu 'Scaler - White Point'

Service Alignment Menu Display

Service Alignment Menu

Scaler - White point

Test pattern On / Off Contrast Adjust ...

White point red <-------------|------------> 125

Gamma Adjust ...

White point green <---------|----------------> 100

White point Adjust ...

White point blue <-----------|--------------> 110 Press OK when done

Compensation fact. 0 <-------|-------> 255 128 Test pattern Possible to generate an 'even white' test pattern, which is generated by the PDP. You can use this picture, to check the plasma display for pixel defects. Contrast Not necessary to align, fixed value is 255. Gamma Not necessary to align, fixed value is 2. White point Not necessary to align, unless stated by the NSO. Fixed value is 255. Compensation factor Not necessary to change. Fixed value is 128. In some cases however, a new software table must be loaded in the PW Scaler (via ComPair). The following service scenarios are possible: • When a defective glass filter plate is replaced: This requires a new 'White Point' adjustment (see next paragraph). • When a defective PDP is replaced by the same type: This requires a new 'White Point' adjustment (see next paragraph). • When a defective PDP is replaced by another (newer) type: This requires both a new compensation table upload (by ComPair), and a new 'White Point' adjustment (see next paragraph). Note: The loaded software, performs the settings automatically. 8.3.3

Scaler Table 8-3 SAM Menu 'Scal.' Service Alignment Menu Scaler Test pattern On / Off Color temperature 6500K / 7600K / 10000K White point Adjust ... Align ADC Press OK to execute Test pattern This function makes it possible to generate a 'colour bar' test pattern (generated by the PW Scaler IC). You can use this picture, to check the video path, starting at the PW Scaler IC to the plasma display. Colour temperature Select the appropriate colour temperature for the alignments (see also 'White point' adjustment below).

Method 1 (with colour analyser) 1. Supply, via an external VGA source (e.g. a PC with 1024x768 mode, or a VGA generator), a 'White Drive' test pattern (ask your NSO). This picture consists of black picture with in the middle a 100% white square. 2. Set BRIGHTNESS to '53' and CONTRAST to '65' (via the standard customer menu). 3. Go to the SAM menu. 4. Set COLOR TEMPERATURE to '7600 K'. 5. Measure with a CTV colour analyser (calibrated with the spectra) on the centre of the white square on the screen. 6. Select 'White point' in the SAM Scaler menu, and press CURSOR RIGHT. 7. Adjust with the CURSOR UP/DOWN or LEFT/RIGHT command, the three white points Red, Green and Blue to '128' (do not go above this value!), and align with one or two of the drivers to the correct coordinates (see table). 8. Repeat the same measurement for respectively colour temperature '6500 K' and '10000 K'. 9. Repeat again if necessary. Table 8-5 White Point XY-coordinates Colour Temperature

x

y

5600 K (Cool)

313

329

7600 K (Normal)

299

309

10000 K (Warm)

280

289

Method 2 (without colour analyser) Without a CTV colour analyser, it is possible to set some parameters, which are based on average values from production. Table 8-6 White point RGB-values Colour Temperature

R

G

B

5600 K (Cool)

120

119

128

7600 K (Normal)

128

121

121

10000 K (Warm)

128

120

110

Align ADC 1. Supply, via an external VGA source (e.g. a PC, mode 1024x768), the 'ADC alignment' test pattern (ask your NSO). This picture consists of a half black and half white picture: black is 16, and white is 235 on a full scale of 255 (=770 mV). 2. Go to the SAM menu. 3. Select 'Align ADC' in the SAM Scaler menu, and press CURSOR RIGHT. 4. The alignment is performed automatically.


Alignments 8.3.4

Video 1 (Enhanced version only)

8.3.6

Table 8-7 SAM Menu 'Vid. 1'

FM23

8.

Options (Enhanced version only) Table 8-9 SAM Menu 'Opt.'

Video 1

Service Alignment Menu Options

Test pattern On / Off

Vs/Va control On / Off

Service Alignment Menu

EN 87

Display size 32" / 42" Brightness

0 <-----------|---------- > 255

Virgin On / Off

Contrast

0 <-----------|---------- > 255

ICONN control On / Off

Sharpness

0 <-----------|---------- > 255

Test pattern This function makes it possible to generate a 'full white' test pattern (generated by the de-interlacer SDA9400, item 7280). You can use this picture, to check the video path of the external inputs AV1, 2 and 3, starting at item 7280 (the proper functioning of the Digital Video Decoder SAA7118 is not tested!). Note: To generate the test pattern, it is necessary to feed a signal to one of the AV-inputs. Brightness This is the setting of IC7225 (SAA7118). Not necessary to align, fixed value is: • PAL/SECAM: 132 • NTSC: 139 Contrast This is the setting of IC7225 (SAA7118). Not necessary to align, fixed value is: • PAL/SECAM: 139 • NTSC: 128 Sharpness Not necessary to align, fixed value is 6. 8.3.5

Vs/Va control When this option is set to 'on', it will enable the 'PDP feedback loop' for the automatic Vs/Va alignment. See table below for the correct setting. Table 8-10 Vs/Va Control options PSU version 3 PSU v.3 with PSU version 4 precision R's PDP with Vs feedback(-52 PDP)

Feedback loop 'OFF', alignment is necessary.

Feedback loop 'ON', but alignment (check) is necessary (see par. 8.2 for values) .

Feedback loop 'ON', no alignment necessary.

PDP with Vs/Va feedback(with 'B' in serial number)

Feedback loop 'OFF', alignment is necessary.

Feedback loop 'ON', no alignment (check) necessary.

Feedback loop 'ON', no alignment necessary.

Display size Fixed value is 32". This option is only meant for the factory, to indicate the display size for the software. Virgin Normally 'off'. When this option is set to 'on', the display starts with the language selection menu.

Video 2 (Enhanced version only) Table 8-8 SAM Menu 'Vid. 2' Service Alignment Menu

Video 2

Lum. delay PAL

0 <-----------|---------- > 7

Lum. delay SECAM

0 <-----------|---------- > 7

Lum. delay NTSC

0 <-----------|---------- > 7

With the 'Luminance delays' alignment, you can place the luminance information on the chrominance information (push brightness onto the colour). Use a colour bar/grey scale pattern as test signal. These values are normally fixed. Lum. delay PAL Apply a PAL colour bar/grey scale pattern as a test signal. Adjust value until the transients of the colour part and black and white part of the test pattern are at the same position. Fixed value is 4. Lum. delay SECAM Apply a SECAM colour bar/grey scale pattern as a test signal. Adjust value until the transients of the colour part and black and white part of the test pattern are at the same position. Fixed value is 4. Lum. delay NTSC Apply a NTSC colour bar/grey scale pattern as a test signal. Adjust value until the transients of the colour and black & white part of the test area are at the same position. Fixed value is 4.

ICONN control Normally 'off'. Set this option to 'on' in case a so-called 'ICONN'-box (for Hotel TV) is connected to the display. Caution: When this option is set to 'on', without an ICONNBox connected to the monitor, one cannot control the monitor anymore (because the RC connection is interrupted). There are two ways to restore the remote control again: • connect pin 8 (IR_TX) to pin 9 (IR_RX) on the RS232 connector of the monitor (the easiest way to do this, is to make a 'dummy' connector with these pins connected, and plug this into the monitor). or • Set the set in the Service Alignment Mode (SAM) via shorting jumpers 1 and 2 of connector 0382 on the SCAVIO panel. After this you can enter the appropriate menu to set ‘ICONN control’ to ‘off’ again.


EN 88

9.

Circuit Descriptions and List of Abbreviations

FM23

9. Circuit Descriptions and List of Abbreviations Index of this chapter: 1. General 2. Power Supply unit 3. VGA connector panel 4. SCAVIO panel 5. Audio Amplifier panel 6. LED/Switch panel 7. Plasma Display Panel 8. Abbreviations 9. IC Block diagrams

A new SCAVIO panel, which takes over the tasks of the former AVC and LIMESCO panels. • A new class-D audio amplifier, • A new, improved 32'' PDP (with new ALiS technology). It is possible to use this product as stand-alone monitor or, in combination with the so-called F21RE Receiver box, for TV applications. There are two configurations: • Basic: which has one video input (VGA1) and one video output (VGA2). The VGA2 video output is directly connected to the VGA1 video input, without any processing. The audio output of VGA2 is also directly connected to the VGA1 audio input. • Enhanced: which has six video inputs (VGA1, VGA2, DVID, CVBS, YC and HD) and six corresponding audio inputs. These inputs are internally converted to the appropriate signals. The VGA2 connection is here bi-directional (FlexVGA).

Notes: • Figures can deviate slightly from the actual situation, due to different set executions. • For a good understanding of the following circuit descriptions, please use the diagrams in chapter 6 and 7. Where necessary, you will find a separate drawing for clarification.

General

Note: In all descriptions below, the Enhanced version of the FM23 is discussed. When there are important differences between the Basic and Enhanced versions, this is mentioned.

The FM23 is the 3rd generation Philips plasma monitors. In comparison to the FTV1.9DE, it has: • A power supply that is based on the FTV1.9,

Video NVM DDC

D V I Y/H/V

Y/G Pb/B Pr/R H,V

AV3

TMDS

Sync decoder NVM 32Kbit I2C_Bu s5 (sw bus to NVM)

H,V

YPbPr RGB

RGB RGB+HV

1fH YUV

Video + Sync switching

RGB+HV

ADC + TMDS Decoder AD9887

RGB+HV

RGB+HV Digital

PW

Digital Video Decoder SAA7118

AV1 CVBS

De-interlacer SDA9400

YUV Digital select

2

I C_Bu s-3 V G A 2

ST RS 232 Driver

Sub-D 9P

RS 232 C

RS232C ICONN RS232 Interrupt gener.

RC out

VGA1

Display Control

PW Reset

I2C_Bu s-1

Flash ROM 2Mbyte

OTC

ADC Exp PCF8591

V G A 1

CPUgo => PDP go => <= IRQ_PDP POWER_DOWN =>

Power ON Reset

IO ExpSC1 PCF8574

RS232C activity int.

In

PW/OTC Switch 4052

RGB+HV

PDP

Clock generator

UART OTC

+5V_Stby_Sw

NVM DDC

RS232-C

RS232C/ TTL

RGB+HV

Main Processor SAA5801H/xx switchVGA1

OUT

MSP Reset

IN

VGA2

Serial Digital RGB with clock and Sync information

PROM for EPLD

I2C_Bu s-2

Interrupt

UART PW Loop thru of RGB and H,V signals from VGA1 only

LVDS Encoder DS90C385

EPLD EP1K30QC

3D Comb*

H,V

I2C_Bus4 (sw bus to NVM)

Sync. Interrupt Gener.

H and/or V from VGA1

3v3Stby/ 5vStdby

DRAM 2Mbyte

MPU

Vs,Va,Vcc

Vsago

IO expander PSU PCF8574AT

NVM 32Kbit

2x FAN

PSU AC/DC, DC/DC converters Audio supply, 5V,8V6, 3v3, Vs,Va Protection 3v3,5v Standby PSU Fan driver

Fan Control PWM Power OK, 5V test, 8V6 test

SAM, SDM, RS232c

AV2

video control

PixelWorks PW164_10R or 10RK Video Scaling Co-processor

RGB+HV YC

SRAM 128kbyte

Flash ROM 2Mbyte

*

RC5 to E-box

Contro l NVM DDC

2x FAN

service int. pins

VGA1 Switch 4052

UART Interrupt gener.

UART (Ebox)

Audio Processing

PSU

AC i/p

DVI-D

YPbPr

9.1

+9V_STBY Per channel Tweeter

L/R VGA in

HP Filter + Amp

Mute

LP Filter + Amp

Mute

MSP Audio Processor MSP3415G

L/R CVBS Audio Switch TEA6422D

L/R YC

Low/Mid

L/R HD L/R DVI L/R Flex VGA (only output in Basic config.)

I2S

audio enable

Output Switch

I2S

I2S

ON/OFF switch (see description)

+9V_STBY

Audio Delay 32KSRAM CY7C1399

RC / LED / Switch Panel

+9V_STBY

! All Functional blocks shaded grey are required for the"Basic Configuration". The remainder is required for the "Enhanced Configuration".

*

Audio Amplifier

are optional or prepared

Figure 9-1 Control and Data Path

IR RXr (RC in)

Light Sensor

Red LED

Green LED

CL 26532038_006.eps 010502


Circuit Descriptions and List of Abbreviations Input/Output

9.1.3

The main inputs are: • Basic: VGA only, • Enhanced: VGA, Flex-VGA, DVI-D, HD-RGB+HV, HD2fH-YPbPr (sync on Y), 1fH-YCbCr (sync on Y), YC, CVBS on cinch. Flex-VGA gives the user a choice to configure the 'loop-through VGA output' as an output or as input.

A digital delay line is created using the I2S channel and SRAM. The delay created can be selected between two values, one for the Receiver box, and one for the Monitor.

Video

The processed audio signals are then differentially transmitted to the audio amplifier panel. This amplifier drives a tweeter and a twin-drive woofer (low/mid range). Active filtering is done prior to the amplifiers.

This mainly consists of an analogue processing part and a digital processing part. The video inputs like VGA (Basic configuration), CVBS, YC, HD-RGB/YUV (1fH and 2fH) and DVI-D are received and processed. The VGA signals are first converted to digital signals and then processed by the PW Scaler.

9.1.4

Control

The YPbPr (2fH) signal is discretely converted to RGB, whereas the YCbCr (1fH) signal is processed in the SAA7118 Digital Video decoder.

The main controller is the OTC, referred to as the 'main processor'. This operates in co-ordination with the processor in the Pixel Works Scaler (PW), referred to as the 'co-processor'.

The base-band video inputs (CVBS and YC) are output from this decoder as digital YUV, which are then further processed by the Pixel Works Scaler (PW).

When the FM23 monitor is connected to an F21RE Receiver box, the UART commands from the Receiver box will control the monitor.

The signals on the digital DVI input are first decoded by the TMDS decoder inside the AD9887 and then processed by the PW Scaler.

In stand-alone mode, the monitor can be controlled via the Remote Control or via the RS232C port. DDC1/2B (Digital Data Channel, an I2C-based protocol) is implemented with separate identification NVMs for the two VGA inputs and the DVI-D input as well. In addition, the RS232C port can be used for software download to the PW and the OTC. The target for downloading is controlled via a switch in the RS232C path; the switch itself is controlled by the OTC.

The PW Scaler output is going through an EPLD and then via an LVDS Encoder to the Fujitsu/Hitachi PDP (Plasma Display Panel) as differential serial data. This PDP is based on ALiS (Alternate Lighting of Surface) technology and is an interlaced display, with separate odd and even fields to be displayed. Power Supply

Video Connectors +5V

Sync decode

+3V3

+3V3

+3V3

+5V

YPbPr +8V6

RGB

+2V5

ADC + TMDS Decoder AD9887

+8V6

AV1 CVBS

DVI-D

D V I

Digital Video Decoder SAA7118

Flex

V G A 2

Sub-D 9P

RS 232 C

+3V3

In

+5V_STB Y_SW

PW/OTC Switch 4052 ST RS 232 Driver

+5V_STBY_SW

IO ExpSC1 PCF8574

+5V_STBY_SW

ADC Exp PCF8591

+5V

Temp.Sensor

Discrete electronics

RC5 to VGA1 buffer

Power ON Reset

Vpr2

Flash ROM 2Mbyte DRAM 2Mbyte

OTC

NVM 32Kbit

Main Processor SAA5801H/xx

MPU Vcc

Vs,Va

+3V3_STBY_SW

Sync. Interrupt Gener.

PSU AC/DC, DC/DC converters Audio supply, 5V,8V6, 3v3, Vs,Va Protection 3v3,5v Standby PSU Fan driver

+5V_STBY_SW

service int. pins

+8V6

VGA1 Switch 4052

+5V_STBY_SW

UART Interrupt gener.

Audio processing

PDP

+8V6 +5V

RS232 Interrupt gener.

NVM DDC

+5V_STBY_SW

PSU

VSND_NEG

VSND_POS

*

IO expander

Audio amplifier

+8V6

+9V_STBY

Per channel

RC/LED/switch panel

Tweeter

L/R VGA in +5V

L/R CVBS

HP Filter + Amp

Mute

LP Filter + Amp

Mute

+8V6

+8V6

Audio Switch TEA6422D

L/R YC

MSP Audio Processor MSP3415G

L/R HD L/R DVI L/R Flex VGA (only output in Basic config.)

PROM for EPLD

+5V_STBY_SW

+5V_STBY_SW

V G A 1

Clock generator

+3V3

Contro l

+5V

+5V

+3V3

+8V6

RC5 to RCout buffer

RC out

LVDS Encoder DS90C385

EPLD EP1K30FC

3D Comb*

NVM DDC

+5V_STBY_SW

PW PixelWorks PW164_10R or 10RK Video Scaling Co-processor

+3V3

NVM DDC +5V

Loop thru of RGB and H,V signals from VGA1 only

De-interlacer SDA9400

+2V5

AC i/p

YC

Local converter

+3V3

AV2

+8V6

SRAM 128kbyte

Flash ROM 2Mbyte

+9V_STB Y

AV3

NVM 32Kbit

Video + Sync switching

+9V_STBY_SW

Y/G Pb/B Pr/R H,V

+5V_STBY_SW

9.1.5

EN 89

This mainly hosts the audio inputs for the various video inputs. They go through an I2C controlled source selector. The main audio processing is done by the Micronas MSP3415G version with built-in UltraBass-II algorithm.

+5V

9.1.2

9.

Audio

+3V3_STBY_SW

9.1.1

FM23

Low/Mid +5V

audio enable

Audio Delay 32KSRAM CY7C1399

Output Switch

ON/OFF switch (see description)

+9V_STBY VSND_NEG

VSND_POS

+8V6

+9V_STBY

IR RXr (RC in)

Light Sensor

Red LED

Green LED

! All Functional blocks shaded grey are required for the"Basic Configuration". The remainder is required for the "Enhanced Configuration".

*

CL 26532038_007.eps 010502

are optional or prepared

Figure 9-2 Power Supply Path


EN 90

9.

Circuit Descriptions and List of Abbreviations

FM23

The PSU consists of a pre-conditioner part and a DC/DC converter part. This converter supplies power to the PDP high voltages, the auxiliary voltages, and the audio amplifier. There is a separate standby power supply, which supplies the Main Processor, PDP microcontroller, interrupt generator and some other circuits.

9.2

Power Supply Unit (Diagrams P)

9.2.1

Introduction

The mains inlet module will host the inlet and filtering. There is a functional 'Mains on/off' switch on the LED panel. This switch is on the secondary side, controlling the relays on the primary side.

PSU

Vs Va Vcc MAINS FILTERS

Vrs ON/OFF SWITCH

Vra Vsk

SUPPLY_ON

MAINS IN

Vak Iak

PDP

Vsago Vcego Vpr2

PRECONDITIONER (PFC)

+8V6 +5V

MAIN SUPPLY

VSND_POS GND_SND 380V

VSND_NEG +9V_STBY

AUDIO AMPLIFIER

+9V_STBY_SW +5V_STBY_SW +3V3_STBY_SW POWER OK STANDBY

SCAVIO

SCL_1 SDA_1 +3V3

SEQUENCE and DISCHARGE

MAINS POWER CONTROL

+5V +8V6

DC_PROT PROTECTION Temp.

FAN CONTROL

FANS (OPTIONAL)

ON/OFF CONTROL

STANDBY SUPPLY

MAINS ISOLATION

Figure 9-3 Power Supply

CL 26532038_008.eps 040402


Circuit Descriptions and List of Abbreviations

FM23

9.

EN 91

Table 9-1 I/O Overview Power Supply Name +3V3 +3V3_STBY_SW +5V +5V_STBY_SW +8V6 +9V_STBY +9V_STBY_SW DC_PROT FAN_SP_1 FAN_SP_2 FAN_SUPPLY_1 FAN_SUPPLY_2 Iak Mains POWER_OK

I/O Out Out Out Out Out Out Out In In In Out Out Out In Out

SCL_1 SDA_1

In In/ Out In Out Out Out In In In Out In Out Out Out

STANDBY Va Vak Vcc Vcego Vra Vrs Vs Vsago Vsk VSND_POS VSND_NEG

Value +3.3 Vdc +3.3 Vdc +5 Vdc +5 Vdc +8.6 Vdc +9 Vdc +9 Vdc H/L H/L (TTL level) H/L (TTL level) 5 to 13 Vdc 5 to 13 Vdc

Description To supply small signal digital circuitry. To supply small signal digital circuitry, needing power in standby To supply small signal digital circuitry. To supply small signal digital circuitry, needing power in standby To supply the small signal analogue circuitry. Signal to functional ON/OFF switch. Signal from functional ON/OFF switch. Signal from audio amplifier to switch OFF the power supply in case of a safety problem. PWM signal from uP to control optional fans (group 1). PWM signal from uP to control optional fans (group 2). Supply voltage for optional fans (group 1). Supply voltage for optional fans (group 2). Signal to measure 'Ia' in PDP (Iak= 1 x Ia). 110/240 Vac, 50/60 Hz Mains voltage. H/L (TTL level) Signal to an interrupt pin of the uP, which indicates that the power supply is in regulation. If an error occurs, signal goes from H to L. H/L I2C clock line from uP. H/L Bi-directional I2C data line from/to uP. H/L (TTL level) +30 to +70 Vdc +5 Vdc H/L (H= +2 Vdc)

+70 to +90 Vdc H/L (H= +2 Vdc) +14.5 Vdc -14.5 Vdc

Signal to switch the PSU to standby mode. To supply the addressing circuitry in the PDP. Signal to measure Va in PDP (Vsk= 0.036 x Va). To supply small signal digital circuitry in the PDP. Signal to switch the low voltage supplies ON/OFF. Signal to control Va (Va= 30 + (20 x Vra)). Signal to control Vs (Vs= 70 + (10 x Vrs)). To supply the sustain circuitry in the PDP. Signal to switch the high voltage supplies (Vs and Va) ON/OFF. Signal to measure Vs in PDP (Vsk= 0.029 x Vs). To supply the audio amplifier panel. To supply the audio amplifier panel. 9.2.2

The Power Supply Unit (PSU) is designed to provide regulated output voltages for the plasma display panel (PDP) and the built-in electronic panels (such as e.g. the SCAVIO and Audio Amplifier panels). It will house the Pre-conditioner, DC/DC converters and the Standby circuitry. In addition, this panel will house the protection and the (optional) fan drive circuitry. The Mains inlet is mounted alongside the SCAVIO panel. It consists of the necessary high and low frequency mains filters. The mains AC voltage is applied to the input filter and then fed to the standby supply. This supply is always operational and delivers the +9VSTBY voltage. The task of the main supply is to deliver the supply voltages for the several electrical circuits in the monitor. It is switched via two single-pole relays, which are powered from the +9VSTBY voltage and controlled via the SUPPLY_ON signal. The reason to choose for a separate standby supply instead of a single flyback supply is the requirement to have a low standby power consumption. The PSU consists of the following parts (which are described separately): • Mains inlet and filter, • Standby supply, • Fan control (optional), • Pre-conditioner, • LLC supply, • Aux. supply, • Protections. To understand the descriptions below, see also mentioned diagrams in Chapter 7.

Mains Inlet and Filter (Diagram P2) Introduction The mains filter provides common-mode and differential-mode filtering, to fulfil legal and self-imposed limits. Additional provisions are mains spikes and lightning protection. Operation The mains voltage is provided via mains inlet 0308, after which it is fused by a T6.3A fuse (item 1400). The next part, the mains filter, is optional. It consists of an LC common mode filter section. This filter consists of two capacitors (items 2402 and 2403) from both phase and neutral to ground (to reduce the leakage current) and an inductor (5401). Interferences on one of the phases are shorted to ground via these capacitors. Inductor 5401 also provides a differential-mode filtering with capacitor 2400. Resistor 3401 discharges this capacitor after the mains is disconnected. A second common mode filter is made around coil 5402 and capacitor 2401. Resistor 3400 is a high energy VDR. The advantage of this VDR is that it can handle 400 VAC without risk of fire. At high voltage peaks (e.g. lightning surge) on one of the phases, the resistance of VDR 3400 will be very low, causing fuse 1400 to interrupt. At a lightning surge on both phases with respect to chassis ground, mains filter 5401 will form a high resistance, through which the voltage will rise very sharply. To prevent flashovers, a spark-gap/ resistor combination (items 1402 and 3404) is implemented. The high-ohmic resistors 3402 and 3403 are connected between neutral and chassis ground. They are required by safety regulations.


EN 92 9.2.3

9.

FM23

Circuit Descriptions and List of Abbreviations

Standby Supply (Diagram P2) Introduction The standby supply is a separate power supply, meant to reduce power consumption of the Flat TV monitor in standby mode. The standby supply operates on the AC voltage from the input filter part, and has to deliver a stable 9 V voltage. It has three mains isolated outputs, and one 'hot' output: • +9VSTBY (called +9VSTBY_SW after the 'on/off' switch 1101), to power the 'on'/'off' relays in the pre-conditioner. • +5VSTBY_SW (derived from the +9VSTBY via voltage regulator 7540) • +3V3STBY_SW, to supply the µP of the PDP. • 25V_HOT, to supply the LLC controller. The standby supply is also connected to the pre-conditioner output (400V_HOT), in order to deliver a voltage as long as possible, after switch 'off' and at mains dips. Operation The standby supply is always operational when the AC input voltage is present, so even when the POWER switch is in the 'off' position. After a small rectifier (D6512/6513) and buffer capacitor (C2503), the DC voltage is applied to an SMPS (switched mode power supply). The SMPS itself is build around IC7500, a 'TINYSwitch TNY256'. This IC contains a control circuitry and a power MOSFET. It uses a simple 'on/off' control loop to regulate the output voltage. The generated +9VSTBY voltage, at the secondary side, is rectified by D6504 and smoothed by C2508. The supply for the TNY256 on pin 6 comes via resistor R3506 and L5500. By using secondary sensing, a very accurate standby voltage and high efficiency is achieved. The sensing circuit uses a TL431 as reference voltage/error amplifier. Optocoupler 7501 is used for the mains isolation. When the output voltage rises, the reference voltage on the TL431 will exceed 2.5 V and the current through this device and the optocoupler LED will increase. By this, the optocoupler transistor will conduct more. When this current (at pin 4 of IC7500) exceeds 50 µA, the MOSFET is switched 'off', and the output voltage will drop. When this current drops below 40 µA, the MOSFET is switched 'on' again. During the time that the MOSFET is 'on', the IC has no supply voltage. To overcome this period, the energy stored in the bypass capacitor C2513 is used. This capacitor is charged during the time the MOSFET is 'on'. As the TNY256 is sensitive for transients (mains spikes), a 'peak clamp' circuit (300 V zenerdiodes 6501 and 6502) is used to limit the voltage to a safe level.

9.2.4

Fan Control (Optional, Diagram P4) For ceiling mount or portrait-mode use, there is foreseen in four optional fans, grouped per two. The temperature within the monitor is measured via a sensor (R3372, KTY81) on the PSU. This sensor is, via A/D converter (item 7530 on the SCAVIO), connected to the OTC. According the temperature within the cabinet, the OTC-software will drive the two PWM outputs of the OTC. These outputs (FAN_SP_1 and 2) are connected to the PSU, where for each signal, a corresponding voltage is generated to supply the fans. These voltages (FAN_SUPPLY_1 and _2) are proportional to the duty cycle of the corresponding PWM signals. The OTC senses the temperature every 5 s. If it has reached T-alarm, and this value has been measured three times consequently, the monitor will go into protection, and a errorcode is generated.

9.2.5

Pre-conditioner (Diagram P5) Warning: the pre-conditioner does not provide mains isolation. Introduction The European Law describes a reduction of mains harmonics for apparatus with a power consumption above 75 W. Therefore the pre-conditioner is designed. This module serves as the interface between the mains input and the VS/VA supply. The advantage of a pre-conditioner is (compared to a mains input filter): • Reduction of mains harmonics to legal limits. • Lower mains current for the same output power. • Power factor close to 1. • Stable regulated output. • Small and low weight. The input voltage of the pre-conditioner is universal, between 95 and 264 VAC. The output is 400 VDC (400V_HOT) with a maximum output power of 300 W. This output voltage is delivered to the VS supply. Operation Start-up The two relays (1450 and 1460, diagram P2) are controlled via the SUPPLY_ON signal. This signal will become 'high' when the +9V_STBY_SW, the STANDBY (from the OTC), and the LATCH signal are 'ok'. It then switches indirect relay 1450 via transistor 7460 and so enables the use of a small low voltage switch. To protect rectifier 6600 and relay 1450, the inrush current is limited to a maximum of 20 A by charging the capacitor 2605 through two serial PTCs (3450 and 3451) and an NTC (3452). After approximately 0.5 sec, relay 1460 is activated. This relay will short the PTCs. The advantage of using an NTC, is the fact that the resistance varies with the current and hence the mains voltage. At a high mains voltage, the current is lower for the same power. Two clamp diodes 6605 and 6606 charge output capacitors C2616 to the peak voltage of the mains input. During normal operation, both diodes are blocked because of the output voltage of 400 VDC, and will only conduct if there is a mains spike or an output dip. Capacitor 2616 delivers via R3668 the start-up voltage at pin 16 of IC7650. After the start-up cycle, IC7650 is supplied via auxiliary winding 1-2. Capacitor C2663 is charged during the cycle that MOSFET 7610 conducts. While MOSFET 7610 is switched 'off', this capacitor transfers its energy via D6661 to the input of stabiliser IC7660. The 15 V output voltage of this IC is fed via D6665 to VCC pin 12 of IC7650. The slow start function is realised by the circuit consisting of transistor 7654, D6654, R3654, and C2654. Normal Operation An up-converter circuit is used for the pre-conditioner. The switching frequency of the converter is chosen much higher than the mains frequency. It is therefore possible to consider the supply as constant, during every high frequency period, and the envelope of all voltage steps during the low frequency period approximates a half sine wave. The output voltage of the pre-conditioner equals the input voltage, when the MOSFET is continuous switched 'off', and increases while the MOSFET is switched 'on'. The rectified mains input voltage is connected to pin 5 of IC7650 via voltage divider R3650 and R3651. This voltage is proportional with the mains input, and is used to change the duty cycle of the pulses, which are generated at pin 11. Because the width of these pulses is not small enough, the circuit around transistors 7640 and 7641 is added. It decreases


Circuit Descriptions and List of Abbreviations the duration of the square wave by 500 ns (this value is set by R3640 and C2640). A demagnetisation winding (pin 1-2 of L5600) detects when there is no energy in the transformer. This information is fed to IC7650 pin 7 and this is used to switch 'on' the MOSFET (7610). In this way, the dissipation is very low, combined with a low EMI. The MOSFET 7610 is switched 'off' at high currents, up to 15 A. To reduce dissipation, this is done at high speed for which 'turn off driver' T7608 is used. The output voltage (400 V) is divided by R3670 and R3671 and connected to pin 3 of IC7650. A change in the load will adjust the duty cycle of the gate pulse at pin 11, in order to keep the output voltage constant. Therefore, there is no need to adjust the output voltage by means of a potentiometer. Protections Current Protection The current through FET 7610 flows also through the sense resistors 3614 and 3615. The voltage across these resistors is fed to pin 6 of IC7650. If the current exceeds its reference level, the pre-conditioner will switch 'off'. A filter, formed by C2666 and R3666, avoids unnecessary protection triggering due to spikes. C2665 and R3665 on pin 13 determine the maximum oscillating frequency. 9.2.6

The main supply hosts the following supplies: • VS supply, via an LLC converter. • VA supply, derived from VS via a down converter. • VCC, via a flyback converter. • 3V3, via a down converter. • Audio amplifier supplies (VSND_POS and VSND_NEG), via a transformer.

+400V-HOT POWER BLOCK S1 7005

5002

6044

5001

Vs +

S2

7006

3017

FEEDBACK 7002 VCC

VAUX

7001 FASE

12

10

the resonance circuit and the MOSFETS, energy is stored into transformer L5002 and capacitor C2001. The secondary voltages are rectified and smoothed, these voltages are, via a voltage divider, fed to the optocoupler that influences the oscillator frequency of the control IC and stabilises the secondary voltages. If the current becomes too high, the supply is switched 'off' via the fault input of the control IC. Advantages: • High efficiency (more then 90%, other supplies 75%). • Less radiation. • More cost-effective (two MOSFETS of 400 V are cheaper than one MOSFET of 600 V). Disadvantages: • Very low power stand-by impossible. • Realisation and stabilisation is more complex. Operation VS Supply Z

Capacitive

Inductive

Lr

Cr

Ri

f

Figure 9-5 Impedance Characteristic General The LLC supply is a serial resonance power supply. The coil, resistor, and capacitor form a trap at the resonance frequency fR. The impedance is frequency dependent. The smallest impedance is at the resonance frequency (fR), at the right side of fR is the inductive part, and at the left side the capacitive part. The supply works in the inductive part, since higher frequencies causes minor losses. Stabilisation is realised, by regulating the frequency as function of the output voltage (VS_UNSW) and power. The load is stabilised by influencing the series-loop. The higher the frequency, the lower the output power. The supply voltage of the control IC comes from the 25V_HOT voltage of the standby supply (via stabiliser 7093), and is lead to pin 15 of the IC. The IC starts to oscillate. This supply line has a short-circuit protection via opto-coupler 7003; when the supply is regulating, the current through the opto-coupler is amplified and will deliver power to the IC.

3014

DRIVER

14

EN 93

CL 16532099_110.eps 260901

Introduction The VS supply (70 - 90 V) is based upon the so-called LLC converter technology (also used in the MG3.1 and FTV1.9). It is used to supply the power of the sustain pulses, which generate the light in the PDP. The voltage is set by a reference DC voltage (VRS), coming from the PDP. The VA voltage (derived from VS, 30 - 70 V) is used to supply the power for driving the addressing electrodes of the PDP. The value of VA is also depending on a reference voltage (VRA) coming from the PDP.

6008

9.

fr

LLC Supply (Diagram P6)

6007

FM23

FAULT INPUT

CONTROL-IC MC34067

SENSING 7010

CL 16532099_109.eps 260901

Figure 9-4 VS Supply

The start-up voltage for the IC is derived from one phase, the IC starts to oscillate, and alternately S1 and S2 are driven into conduction with a dead time in between. This effects that, via

Control is done in the usual way by a TL431 at the secondary side. VRS is mixed into the feedback voltage, using an additional TL431 (7011 at schematic P6). VRS, a control signal coming from the display, influences the output of the VS supply. The output voltage of the VS supply varies according the following formula: VS = 70 + (10 * VRS). Via this stabilisation circuitry for VS, the output voltage is stabilised (if necessary, it is possible to adjust the voltage, via potmeter R3026). The VS is fed via a voltage divider to IC7010 (TL431). If the voltage at pin 3 of IC7010 is higher than 2.5 V, a current will flow from cathode to anode. This current flows also through the secondary side of the optocoupler 7002. The voltage at pin 7 of the MC34067, determines the output frequency. The higher this voltage, the higher the output frequency. Thus, if the voltage on pin 7 increases, the frequency increases and VS decreases. When the output voltage rises, the voltage at the reference IC7010 also rises, this causes the current through the diode of the opto-coupler to rise. The transistor of the opto-coupler


EN 94

9.

Circuit Descriptions and List of Abbreviations

FM23

conducts more, as a result of which the voltage at pin 7 of the MC34067 increases. The output voltage of the error amplifier gets lower, and the current through R3005 increases. Accurate Over Voltage Protection is added, using a TL431 (7304) as reference/comparator and an additional optocoupler (7003) that acts on the fault input pin 10 of the MC34067P (see also 'Protections Main Supply'). The Controller VCC

7.0k

7.0k 9 50k

5.1V Reference

VCC UVLO

8.0V

Vref 5

Q1

4.2/4.0V

D1 Q2

1

C2004 2 IOSC C2005

One-Shot RC R3004 16 Oscillator Control Current IOSO

4.9V/3.6V

3.1V

13

Output B

Q

R

S Fault Latch

9.0µA Error Amp

Power Ground

12

4.9V/3.6V

Error Amp Clamp

Error Amp Output 6 8 7

14

One±Shot

3 R3005

Noninverting Input Inverting Input

Output A

Steering Flip-Flop Q T RQ

Oscillator

OSC-RC

Vref

Vref UVLO

Vref OSC-CHARGE

R3003

Fault Detector Input At pin 10, there is a fault detector input. If this voltage reaches 1 V, the output of the OpAmp goes high, and both drive outputs are switched 'off'. In addition, the output of OR3 will be high via the 'fault latch'. The output of OR3 drives Q1, so both the oscillator and the one-shot-capacitor remain charged. Via OR3, the soft-start capacitor is discharged.

MC34067 15

50k Enable / UVLO Adjust

If Q1 is re-conducted through the oscillator comparator, the one-shot capacitor is re-charged.

Fault Input 10 1.0V

OR3

Soft-Start 11 CL 16532099_111.eps 260901

Figure 9-6 MC34067

The MC34067P controller, is used for the following reasons: • Zero voltage switching. • Variable frequency oscillator (above 1 MHz). • Precision one shot timer for the dead time. • 5 V reference output. • Double, high current totem-pole output. • Soft start. • Wideband error amplifier. • Fault input (protection).

Soft-start Due to the soft-start circuit, the oscillator starts with maximum frequency. The low voltage on the soft-start capacitor (C2027) is buffered and keeps the error amplifier output low (IOSC = max -> fOSC = max). The capacitor is charged with a current of 9 µA, the output of the buffer gets high, and the error amplifier input takes charge of the oscillator control current. Driver stage The two secondary windings of the driver transformer are wound in opposite directions and control the two switching MOSFETs. The primary winding of the driver transformer is alternately controlled by the two totem-pole outputs of the controller. Cross-conduction of both MOSFETs is prevented by the dead time. The gate of each MOSFET is controlled via the resistors 3014/ 3017 and via the diodes 6007/6008. The transistors 7007/7008 discharge the gate faster by switching 'off'. The diodes 6017/ 6028 at the base-emitter of 7007/7008 prevent the zener effect of these transistors. The zener diodes at the gate-source of 7005/7006 are for ESD protection. C2011 and C2014, form the capacity for the series resonant circuit. MOSFET switching The total switching time can be distributed over 12 phases with different current paths. Only four phases are discussed to simplify the explanation: Phase 1 (S1 closed, S2 open)

The oscillator circuit is build around an internal comparator with two threshold-voltages: 4.9 and 3.6 V. C2004 is first charged via transistor Q1. If the voltage across C2004 is more then 4.9 V, the output of the upper comparator becomes low, the NOR-port output will be high, and Q1 will be blocked because the base will be shortened by Q2. C2004 will be discharged via the resistors R3003 and the oscillator control current (IOSC). If the voltage across C2004 is below the lower threshold (3.6 V), transistor Q1 is conducting and the capacitor is charged again. The oscillation frequency is modulated by the oscillator control current. The discharge current increases, when pin 3 is loaded even more; thus the lower the voltage on pin 3, the higher the oscillator control current and the higher the frequency. The maximum frequency is reached when the output of the error amp is minimal (0.1 V). Thus, R3005 determines the maximum frequency. The minimum frequency is reached, when IOSC current is zero: C2004 then discharges only via the resistor R3003. One Shot Timer The one-shot timer is present, to de-activate both outputs simultaneously, and to provide a dead time, so that only one output will be activated. The one-shot capacitor (C2005) is first charged by Q1. The one-shot period begins when the oscillator comparator is switched 'off' by Q1. The one-shot capacitor is discharged via the parallel resistance (R3004): if this voltage gets lower than the lower threshold of 3.6 V, the comparator will be high and controls the flip-flop, which makes one of both outputs high.

Vi S1 D1 Lr Br1 Lp

S2 D2

Cs

+

Cr CL 16532099_112.eps 260901

Figure 9-7 Phase 1 Resonance Supply

The gate of MOSFET 1 is positive, which causes S1 to close. The input voltage Vi of 400 VDC, provides a current flow through S1 and the series circuit. At the same time, a current flows through the rectifier diodes in the secondary winding, which will charge capacitor Cs. The current through Lr starts negative, but it is increasing to change polarity. Capacitor Cr is charged sinusoidal, while the voltage at Lr drops. This makes the current drop.


Circuit Descriptions and List of Abbreviations Phase 2 (S1 open, S2 open = dead time)

FM23

9.

EN 95

Phase 4 (S1 open, S2 open = dead time) Vi

Vi

S1

S1

Cp

1

D1

D1 2

Lr

Lr

Br1

Br1 2

Cp

S2

D2

Lp

Lp

S2

1

+ Cs

D2

Cs

+

Cr

Cr

CL 96532069_170.eps 300999

CL 96532069_168.eps 300999

Figure 9-8 Phase 2 Resonance Supply

Figure 9-10 Phase 4 Resonance Supply

Before the current reaches zero, S1 is opened. Now, both MOSFETs are not conducting. However, the current through the coils wants to continue. The capacity Cp releases its load to the series circuit, and the voltage at Cr continues to rise (Cp is the sum of several parasitic capacities). 1) The voltage at the drain of MOSFET 2 drops, because Cp is discharged at this moment [1]. This causes a voltage inversion across Lr and Lp. The secondary winding begins to feed back, charging capacitor Cs. 2) The voltage becomes negative, and diode D2 starts to conduct [2]. The secondary bridge remains conducting.

Before the current reaches zero, S2 is opened. Now, both MOSFETs are not conducting, but the current through the coils wants to continue. The capacity Cp releases its load to the series circuit, and the voltage at Cr continues to fall (Cp is the sum of several parasitic capacities). 1) The voltage at the drain of MOSFET 2 increases, because Cp is discharged at this moment [1] (Cp was charged to 400 V). This causes a voltage inversion across Lr and Lp. The secondary winding begins to feed back, charging capacitor Cs. 2) The voltage becomes higher than 400 V, and diode D1 starts to conduct [2]. The secondary bridge remains conducting.

Phase 3 (S1 open, S2 closed)

Protections MC34067

Vi S1 D1 Lr Br1 Lp

S2

+ Cs

D2

Over Current Protection (OCP) The voltage at R3021 is a criterion for the current, which flows through the primary winding. Via C2015 and D6010, the negative information is clamped at -0.6 V. The total amplitude is rectified via D6009 and C2010, and via R3020 and TS7009 supplied to the fault input (pin 10) of the controller. When the fault input is higher than 1 V, the protection is activated.

Cr

CL 96532069_169.eps 300999

Figure 9-9 Phase 3 Resonance Supply

The gate of MOSFET 2 is becoming high. The current through D2 is taken over by MOSFET 2. The switching losses are negligible, because the voltage across the switch is now approximately 1 V. The current through Lr starts negative, but is increasing to change polarity. A current flows through MOSFET 2 and the series circuit. The bridge remains conducting, but its current gets zero because of the decreasing voltage across Lp. This is caused by the discharge of capacitor Cr. The voltage at capacitor Cr is decreasing sinusoidal and so is the voltage across Lp and Lr.

Over Voltage Protection (OVP) The voltage at R3010 is the take-over-winding voltage. This voltage is also supplied to pin 10 of the controller via a voltage divider R3010/R3011 When the fault input is higher than 1 V, the protection is activated. Soft-start Over Current Protection If short-term over current peaks occur, the frequency is adapted. The voltage at R3021 is clamped at -0.6 V via C2015 and D6010. The total amplitude is rectified via D6011 and C2008, and supplied to the 'capacitive' thyristor TS7017/18 via R3012. When the voltage at the emitter of TS7017 gets higher than 5 V, the soft-start capacitor C2027 is discharged and the frequency increases. Because of this, the VS will drop. If this voltage remains 5 V, the supply is interrupted (hick-up). This circuit is adjusted in such a way, that the voltage does not drop too much if a flash occurs.


EN 96 9.2.7

9.

FM23

Circuit Descriptions and List of Abbreviations

Aux. Supply (Diagram P7) The Aux. supply part, hosts the supplies, which are derived from the VS supply: • VA supply, • VCC supply, • 3V3 supply, • Audio supply (VSND_POS and VSND_NEG). VA Supply The VA voltage is derived from the VS voltage via the down converter principle. Control IC TEA1507 (item IC7112) and MOSFET TS7117 are used.

VCC Supply This part delivers, besides the VCC voltage (+5 V), also a +12 V (for optional Fan control) and derived from that, an +8V6 (for small signal analogue circuitry). The VCC voltage is derived from the VS voltage via the flyback converter principle. Control IC TEA1507 (item 7212) and MOSFET 7212 are used.

+

D VOUT

+

VIN

RL

C S

+ Id

D

-

S

VOUT

+ Isec

VIN

L

S

Vin

VOUT

D IT

+ C

+

RL

C

+ CL 26532039_010.eps 280302

RL

Figure 9-12 Principle of Flyback Converter S ID L Vin

VOUT

D + C

Sclosed

Sopen

IT

ID

RL

. VOUT = VIN δT T

δT T

CL 26532038_009.eps 280302

Figure 9-11 Principle of Down Converter

After closing switch 'S', the linear in time increasing current IT, will charge capacitor C. Opening switch 'S' will generate a counter-e.m.f. (= reverse voltage) in coil L, trying to maintain current IT. This is possible via diode D (this diode is also called 'freewheel diode'). Therefore, after opening 'S', the magnetic energy stored in coil L will be transferred to electrostatic energy in capacitor C. The VIN will only supply current during the time that 'S' is closed while a constant current is flowing through RL. VOUT is directly proportional with VIN and the time that 'S' is closed and reverse proportional with period time 'T'. Therefore, by changing the duty cycle, it will be possible to control VOUT. To apply this on the FM23 (diagram P7): replace switch 'S' by FET TS7117, coil L by L5220, diode D by D6120, C by C2121, VIN= 77-100V, and VOUT= VA. Stabilising is done in the same way as for the VS supply. VRA is mixed into the feedback voltage, using an additional TL431 (7011 at schematic P6). Control signal VRA, coming from the display, influences the output of the VA supply. The output voltage of the VA supply varies according the following formula: VA = 30 + (20 * VRA).

After closing switch 'S', the current ID will increase linear in time. The magnetic energy in the primary coil is directly proportional with the self-inductance of the coil and current ID (thus with the time the switch is closed). The voltage polarity at the secondary winding is negative (due to different winding direction), meaning that diode D will block. Capacitor C will discharge via RL, VOUT will decrease. Opening switch 'S' will generate a counter-e.m.f. in the primary winding, trying to maintain current ID. Through this the polarity of the secondary voltage will inverse. The magnetic energy, stored in the coil, will now be transformed to the secondary side. Diode D will now conduct, capacitor C will be charged and UOUT will increase. To apply this on the FM23 (diagram P7): replace switch 'S' by FET TS7217, coil L by L5220, diode D by D6224, C by C2224, VIN= VS_UNSW, and VOUT= VCC. 3V3 Supply The 3V3 voltage, is directly derived from the LLC supply (+18V line). Via a fuse (1005/1045), this voltage is rectified by diodes 6021/6045 and smoothed by C2022. Via control IC L4973V (item 7260), the 3V3 voltage is generated. This IC contains a complete down converter, with integrated MOSFET. Audio Supply This is a 'floating' symmetrical supply (±14.5 V) derived from VS via transformer 5290. Because this voltage is tightly coupled to the VS voltage, this voltage varies considerable, between 11 V (max. load, VS = 70 V) and 20 V (min. load, VS = 90 V). The Audio ground is connected to the normal secondary ground, with a capacitor (C2290) and a resistor (R3292) in parallel, to have the possibilities to suppress spurious oscillations.


Circuit Descriptions and List of Abbreviations 9.2.8

Introduction 1450 1460

Aux. outputs Vac_SW

MAIN SUPPLY

SUPPLY_ON

Vs

VCC Protection Detection of over- or under voltage on VCC (+5 V) by comparators IC7330-A and -B. If this voltage exceeds certain levels (set via voltage dividers), the protection will activate the Power OK (POK, active 'low'), which will shut down the set.

OFF

&

DC_PROT

>1

TEMP. ERROR

LATCH

LATCH

EN 97

+5V / Vcc Vs_UNSW

+9V_STBY_SW STANDBY

9.

VA Protection Detection of over- or under voltage on VA by comparators IC7308-C and -D. If this voltage exceeds certain levels (set via voltage dividers), the protection will activate the Power OK (POK, active 'low'), which will shut down the set.

Power Supply Protections (Diagram P3)

MAINS IN

FM23

OVP (Vs_unsw, Va,+5V,+3V3)

>1

UVP (Vs_unsw, Va,+5V,+3V3)

&

+3V3 Protection Detection of over- or under voltage on the +3V3 voltage by comparators IC7330-C and -D. If this voltage exceeds certain levels (set via voltage dividers), the protection will activate the Power OK (POK, active 'low'), which will shut down the set.

POWER_OK

Vsago Discharge

&

Vs_UNSW OK

Vs_UNSW or Vac_SW

Va SUPPLY

OFF

OVP protection This line detects, if one of the above mentioned voltage protections is an over voltage protection. Therefore, this works in combination with the above mentioned under-/over voltage protections.

Va CL16532099_012.eps 180901

Figure 9-13 Protections

Latch Protection When an OVP-, DC-, or Temperature protection occurs, thyristor 6348 is fired and the LATCH signal is made 'low'. This signal will switch 'off' the main supply and prevents that the supply is switched 'on' again, as long as the protection is active. In addition, the VCEGO signal can activate the LATCH signal (via TS7352 and 7348), but this is temporarily. This is done for correct start-up behaviour.

In general, all efforts need to be taken, to make a safe power supply. Therefore, all major outputs are monitored with respect to over- and/or under voltage. All protections are handled by hardware. The software only monitors the hardware to generate error codes for service. Via I2C, errors of the power supply are transmitted to the µP on the SCAVIO panel. If an error occurs, POWER_OK will change from 'high' to 'low'. The errors are transmitted to the µP, on the following ports and pin numbers of the I/O expander PCF8574AT (item 7370):

DC Protection Detection of a DC voltage on the audio amplifier outputs. If a DC voltage is detected, TS7362 will activate the Power OK (POK, active 'low'), which will shut down the set.

Table 9-2 IC7370 Inputs Pin Name

Description

4

Vs

Detection of under- or overvoltage on Vs

5

Va

Detection of under- or overvoltage on Va

6

+5V

Detection of under- or overvoltage on +5V

7

+3V3

Detection of under- or overvoltage on +3V3

9

OVP

Detection of overvoltage on Vs, Va, +5V or +3V3

10

Switch

Detection of functional switch

11

DC_PROT

Detection of DC_PROT going high

12

TEMP

Detection of over temp. inside power supply

This POWER_OK signal is connected to an interrupt pin of the OTC, in order to be read as fast as possible. This is very important in case of a time limited error like over voltage. After detection of the error, the control system will log the error in NVM, and transmit the first occurrence back to the power supply through the I2C bus. Note: The POK signal is fed to buffer 7366, together with the '8V6 UNDER VOLTAGE' and 'SWITCH' sensing. The output of this buffer, the POWER_OK line, will follow the inputs. Operation VS Protection Detection of over- or under voltage on VS_UNSW by comparators IC7308-A and -B. If this voltage exceeds certain levels (set via voltage dividers), the protection will activate the Power OK (POK, active 'low'), which will shut down the set.

Temp Protection Detection of the temperature (via PTC 3368) in the power supply by comparator IC7366-A. If this voltage exceeds a certain level (set via voltage dividers), the protection will activate the Power OK (POK), which will shut down the set.

9.3

VGA Connector Panel (Diagram VGA) The Video Graphics Array (VGA) panel serves as an interface between the peripheral VGA equipment (Receiver box, PC, etc.) and the SCAVIO panel. Some specifications of this panel: • Two NVMs are present, which hold identification data for the DDC line. • Further, there are buffers present for the incoming and outgoing sync signals. • RC_OUT cinch for linking with other equipment. • Provision to terminate the incoming sync lines with 75 Ω via the EBOX_PRESENT line. For a description, see the next SCAVIO chapter.

9.4

SCAVIO Panel (Diagrams SC) The Scaler Control Audio Video Input Output (SCAVIO) panel contains: • All the input connectors, • Analogue and digital video processing, • Scaler (co-processor) • Interface to the PDP, • Audio processing (excluding the audio amplifier), • OTC (main processor), and • RS232C in/out.


EN 98

9.

Circuit Descriptions and List of Abbreviations

FM23

Note: There are two versions of this panel, a Basic and an Enhanced version. Therefore, a lot of components are therefore not mounted for the Basic version.

Note: This part also includes the VGA connector panel that is mounted on top of the SCAVIO panel.

For the circuit description, we divide the board into the following parts: 1. Supply 2. Video processing 3. Audio processing 4. Control 9.4.1

Supply See figure 'Power Supply Part' in paragraph 9.1.5.

9.4.2

Video Processing (Diagrams SC3, 4, 5, 6, 10, 11 and 12) Introduction

analogue processing path AV1

digital processing path

Video Path The 1fH signals (including YPbPr) are buffered (item 7113/21/ 17) and go directly to a digital video processor, the SAA7118E (item 7225 on diagram SC5), where they are converted into a digital signal.

CVBS 7225 7280 SAA7118

AV2

De-int.

Dig. Video dec.

YC

2fH progressive

YUV dig.

I2C BUS 3 1fH

7025 sync. decoder switch

0375

15,6 KHz = 1fH 31,2 KHz = 2fH

MEMORY

DVI-d

7170

7605

7146, 7158 7656

7088, 7090 YPbPr RGB AV3

H+V sync

NVM DDC TMDS

HD

2fH Video+ sync. switch

RGB

AD9887 RGB

RGB

ADC + TMDS DECODER

7670

PW164 RGB dig.

Pixelworks

RGB dig.

EPLD

RGB dig.

LVDS

to PDP

RGB

Flex

VGA 2 NVM DDC

I2C BUS 1

VGA 1 NVM DDC RS 232

TXD/RXD-PW SWITCH (SWdownload)

Inputs There are five video inputs, which are divided in three types: • VGA (2fH): named VGA1 and VGA2. Both are 15-pole SUB-D connectors for RGB and HV, and are situated on the VGA connector panel. For automatic identification by a PC, each VGA input is foreseen with a DDC NVM IC. VGA2 is set default as loop through of VGA1. In the Enhanced version, VGA2 can be switched as output, via the control signals VGA2_OUT and VGA2_EN. • YPbPr/RGB (combined 2fH and 1fH): named AV3 and suitable for YCbCr/HD-YPbPr/HD-RGB + HV. These are cinch inputs. YPbPr and RGB are seen as separate inputs by the HW and must be properly selected by SW. • CVBS like (1fH): named AV1 for CVBS and AV2 for Y/C. These are also cinch inputs.

I2C BUS 2 to OTC (7383)

The 2fH signals are also buffered; both YPbPr (item 7074/84/ 79) and RGB (item 7141/38/35) buffers get the same input signals. When YPbPr signals are connected, the correct input must be selected, to get a picture with proper colours. Thus, the signals must pass a video matrix (item 7088/90, see diagram SC3), where they are converted into RGB. There are two matrices, an NTSC and an ATSC. With the MATRIX_SEL signal, the correct matrix is chosen (item 7089). The detection is done automatic, by an algorithm in the EPLD. After the matrix, the signals enter a clamp/blanking circuit (7102/03/04 and 7100), for the removal of the residual sync signals. The control is done via the lines HD_BLANKN and HD_CLAMPN coming from the EPLD.

TXD/RXD-OTC ! All Functional blocks shaded grey are required for the"Basic Configuration". The remainder is required for the "Enhanced Configuration".

CL 26532038_011.eps 240402

Figure 9-14 Video path This mainly consists of a small analogue processing part and a bigger digital signal processing part. The video inputs like CVBS, YC, High Definition RGB, or YUV (1fH and 2fH), VGA, and DVI-D are received and processed. The YPbPr (2fH) is discretely converted to RGB, whereas the YCbCr (1fH) is processed in the SAA7118 Digital Video decoder. The base-band video inputs (CVBS and YC) are output from the digital video decoder as digital YUV, which are then further processed by the PixelWorks Scaler. The VGA signals are first AD converted and then processed by the PW Scaler. The digital input on the DVI is first decoded by the TMDS decoder inside the AD9887 and then processed by the PW Scaler. The PW Scaler output is going through an EPLD and then via the LVDS transmitter to the PDP (Plasma Display Panel) as differential serial data. The PDP is based on ALiS (Alternate Lighting of Surface) technology and is an interlaced display, with separate ODD and EVEN fields to be displayed. Analogue Video This part describes the analogue video and synchronisation path of all inputs, until it reaches the 'analogue digital converters' of either the AD9887 (ADC+TMDS Decoder) or the SAA7118E (Digital Video Decoder). Also the switching part is described and the necessary control signals. In principle, all video control functions are done by the PixelWorks processor.

All RGB signals come together at 4-pole switches (item 7146/ 58), one for each colour, where they are switched to the AD converter item 7170 (R_ADC, G_ADC and B_ADC). Sync Path All incoming H and V sync signals go to a 4-pole switch (item 7009) where SYNC_SEL and VIDEO_SEL_2 determine, which signal is available on the ADC. Before this switch, the VGA sync path is rather straight, only 1 switch (item 7007) is added for the VGA2 sync signals, which determines if VGA2 sync is input or output (VGA2_OUT). In the Basic configuration, these switches are omitted, and replaced by jumpers (4009/4010). The external sync (AV1 - 3) signals are treated differently. Both H_HD_EXT and V_HD_EXT go to three circuits: • A comparator circuitry with an LM319 (item 7025), to ensure both sync pulses are always positive going (H and V_SYNC_CMP), • A level detection circuitry (items 7000 to 7002), to detect if the sync is of TTL level (H and V_SYNC_TTL), • A positive/negative going detection circuitry (items 7006 to 7010), to indicate the polarity of the sync in case of TTL level (H and V_SYNC_POL_N). All above-mentioned signals go to the EPLD (see diagram SC11) for further processing. Processed sync signals H_HD and V_HD coming from the EPLD, are also switched to the ADC (H_ADC and V_ADC) along with the proper RGB signals (R_ADC, G_ADC and B_ADC).


Circuit Descriptions and List of Abbreviations Digital Video This part describes the digital video path on the SCAVIO panel, starting at the AD converters in either the AD9887 (item 7170) or in the SAA7118E (item 7225) and ending at the output for the PDP. For both the Basic as the Enhanced version, everything 'after' the PixelWorks chip, is equal. For the Basic version, the input for the PixelWorks only consists of the 'Graphics path'. For the Enhanced version, it is both the 'Graphics path' as the 'Video path'. The SCAVIO panel contains the following functions in the video path: 1. The 'YPbPr to RGB matrix' and '2fH Video+Sync Switch' are explained above in the 'Analogue Video' part. 2. The 'Digital Video' path containing the Digital Video Decoder and the De-interlacer. 3. The 'Digital Graphics' path containing the ADC+TMDS decoder. 4. The 'Scaler' which is the PixelWorks (PW164-10R) plus Memory. 5. The 'EPLD' for sync decoding and video manipulation. 6. The 'LVDS' encoder. The Digital 'Graphics Path' This is a straightforward application of the Analogue Devices AD9887 (item 7170). Inputs for this device are: • FTV Receiver box, • VGA formats (up to SXGA@75 Hz), • 2fH RGB+HV (only in Enhanced version), • 2fH YPbPr, which is converted to RGB by the 'YUV to RGB' matrix (only in Enhanced version), • DVI-d (only in Enhanced version). Analogue input: The AD9887 is meant to sample 'pixel synchronous'. To achieve this, a (software) driver is running on the PixelWorks processor (PW). After hooking up a source to the AD9887, the PW starts counting the number of lines per field and calculates the H-period time. With these two values, it determines the exact match or the closest match out of a lookup-table (LUT) with VGA standards. When the correct standard is determined, the PW will set the AD9887 I2C registers to the correct value. The AD9887 should now sample with exact the same frequency as the incoming standard requires. This is done to get an optimal picture performance. It also is a 'must' when a computer graphics card is connected, because there is no, or very little, post anti-aliasing filtering done on such cards. Therefore, the outputted RGB samples need to be exactly aligned with the sampling of the AD converter. Analogue input signals can go up to SXGA@75 Hz, which gives a pixel clock of 135 MHz. In fact, it can handle any standard with a pixel rate up to 140 MHz. Special modes are made for the F21R E-box, for both PAL and NTSC. These are invoked when an E-box is connected to the SCAVIO panel. Digital input: Via the DVI connector (Enhanced version only) it is possible to insert TMDS (Transition Minimised Differential Signalling) data into the SCAVIO panel. DVI is a fairly new computer graphics standard, which can be seen as the digital follow-up of the analogue VGA interface. The TMDS signal is directly fed into the AD9887, where any DVI standard up to SXGA@60 Hz can be decoded to RGBHV. The preferred VGA standard for the FM23 is programmed in the DDC EEPROM (item 7215), which can be read by the PC. Via an internal switch, it is possible to choose between the analogue input and the digital input. The output format is for both inputs the same (8 bit RGB plus HV). The driver determines whether the AD9887 outputs single or dual pixels. For lower standards like VGA@60Hz, the interface will be single pixel, which means that every clock cycle one byte of R, G, and B data is outputted. Dual pixel means that on every clock cycle two bytes of R, G, and B data outputted. These two

FM23

9.

EN 99

bytes are de-multiplexed, which is done to make the interface more robust for jitter, set-up, and hold times, and to reduce the digital data rate over the PCB (reduced EMC). Digital 'Video Path' This path is only available in the Enhanced version of the SCAVIO panel and is used for the following input signals: • CVBS input, • Y/C input, and • 1fH YPbPr. It is a straightforward application of the Philips SAA7118 (item 7225) and the Micronas SDA9400 (item 7280). The SAA7118 is a PAL/NTSC/SECAM Digital Video Decoder with adaptive digital comb filter and component video input. It decodes all input standards to 4:2:2 YCbCr, which then is processed by the SDA9400. The SDA9400 is a motion adaptive de-interlacer, which makes a progressive video signal from the interlaced input. Depending on the motion in the picture, it will just interleave the odd and even field (no motion: ABAB) or repeats the same field twice; this is also known as line doubling (motion: AABB). The motion detection is pixel based, with a soft-switch between 'motion' and 'no motion'. After the de-interlacer, the signal is fed as a 4:2:2 YCbCr progressive scan signal to the video port of the PixelWorks processor. The PixelWorks PW164 Scaler The PixelWorks PW164 Image Processor is a highly integrated (Ball Grid Array, BGA) chip, which interfaces video inputs and computer graphics in virtually any format to the PDP. Computer images from VGA to UXGA resolution input to the chip can be resized to fit on the PDP. Horizontal and vertical image scalers, coupled with intelligent frame locking circuitry create sharp images, centred on the screen and without user intervention. An embedded DRAM frame buffer and memory controller perform the frame rate conversion. Video data from 4:3 aspect ratio NTSC or PAL and 16:9 aspect ratio sources such as HDTV and DVD are supported. Nonlinear scaling (only with Receiver Box) and separate horizontal and vertical scalers allow these inputs to be resized optimally for the native resolution of the PDP. For more information, see http://www.pixelworksinc.com/ index.phtml


EN 100

9.

Circuit Descriptions and List of Abbreviations

FM23

Table 9-3 PixelWorks Scaler: Ports Pin

Name

I/O

Remark

C2

PW_SCL

+3V3 output

to I2C devices, Video related

B1

PW_SDA

+3V3 output

to I2C devices, Video related

A1

PW_SDA_NVM

+3V3 output

to I2C device NVM

C4

PW_SCL_NVM

+3V3 output

to I2C device NVM

B3

SCL_2

+3V3 output

to I2C device OTC

A2

SDA_2

+3V3 output

to I2C device OTC

A3

VIDEO_SEL_1

+3V3 output

to video selection switches (see truth table)

C5

VIDEO_SEL_2

+3V3 output

to video selection switches (see truth table)

B4

VGA2_OUTN

+3V3 output

Selects VGA 2 as output. (Low => Output)

A4

VGA2_EN

+3V3 output

Enables VGA 2 (High = Enable)

C6

SYNC

Input

Is 'high' if EPLD detects separate sync signals on YPbPr

B5

1_2FH

Input

Is 'high' if sync on YPbPr is 1fH (from EPLD)

Table 9-4 PixelWorks Scaler: Video Select VIDEO_SEL_1 VIDEO_SEL_2 Selected input for AD9887 0

0

RGB 2fh

0

1

YPbPr 2fh

1

0

VGA 1

1

1

VGA 2

Service remark: Desoldering/soldering of this IC requires very specialised (BGA) equipment. This can only be done by the Authorised Service Centres (ASC). The EPLD The main reason to add the EPLD is the contrast reserve function. Other reasons: • Black and white ADC adjustment. The EPLD provides a high-resolution measurement of the black and white level, to adjust the gain and offset of the ADC (AD9887). It is read via I2C. • LVDS reset. This function resets the LVDS transmitter on the SCAVIO board, in case the LVDS transmitter starts up without a clock. This could cause an abnormal picture. Therefore, as soon as the clock is not fast enough (as during start-up) the EPLD will keep the LVDS transmitter in reset. • Receiver-box mode detection. For loop through mode (a second FTV monitor connected to the output of the first monitor), a secondary detection is needed to check the presence of an Receiver or E-box. • ATSC sync detection/ decoding. Core for proper sync decoding for ATSC sources. • Contrast reserve. This function can increase the gain of the video signal to a factor of two. It will reduce the gain again if it sees too many overflows (code 255) in any of the R, G, or B channels. Adjustable via two parameters: user contrast and overflow limit. Parameters are I2C controlled. The LVDS transmitter This DS90C385MTD56 IC from National Semiconductors converts 28 bits of CMOS/TTL data into four LVDS (Low

Voltage Differential Signalling) data streams. A PLL transmit clock is transmitted in parallel with the data streams over a fifth LVDS link. Every cycle of the clock, 28 bits of input data are sampled and transmitted. At a transmit clock frequency of 36 MHz, 24 bits of RGB data and 3 bits of display control data are transmitted per LVDS data channel. This IC operates at 3.3 V For more information, see http://www.national.com/ Picture Mute In some cases, it is necessary to mute the video output: • In Monitor mode: – During switch 'on/off' of the monitor, – During source change, – During video or sync loss, or – By a user action (A/V-mute or mute) – In audio only mode (when the ICONN-box is connected). • In TV mode: – During switch 'on/off' of the Monitor/Receiver box, – During source change in the Receiver box, – During video or sync loss, or – In audio only mode (Receiver box mutes the picture). Most of the picture mute controls are done via the PixelWorks co-processor. Anti Ageing In order to prevent visible luminance differences, due to ageing of the monitor, a special algorithm is implemented. This algorithm is based on horizontal shifting of the picture in the monitor. For good understanding some terms will now first be explained: • Ageing: The effect that the efficiency of a plasma cell (pixel) decreases as a function of the total time that it is illuminated. This effect occurs mostly because of phosphor ageing. As a result, the cell brightness decreases over time. An alternative name for ageing is 'burn-in'. • Picture shifting: Fixed structures, like logo's, OSDs, and subtitles, will cause burn-in effects. The only way to mask this to a certain extends, is picture shifting so that the 'burnin' effect is smeared out over a larger area, and makes it less visible. Most of the anti-ageing controls are implemented in the PixelWorks co-processor. Horizontal Horizontal anti-ageing steps: • Step width/height, the step width/height shall be 1 horizontal pixel width (approx. 1 mm). • Number of steps, the maximum number of steps in horizontal direction shall be 9. • Time between steps, the time between the steps shall be 5 minutes. The effect of H anti-ageing is a horizontal movement (start at 0): 0→1→2→3→4 12 ← 11← 10 ← 9 ← 8 ← 7 ← 6 ← 5 ← → 13→ 14 → 15 With the following sequence: 0 → 1 → 2 → ...... → 14 → 15 → 0 → 1 → etc. After every step, the updated value is stored in NVM and gives an indication about the direction (0...4 and 13...15 to the right and 5...12 to the left). The horizontal anti-ageing is a process, which is basically independent of any other processes that are running in SW. This means that this process should never be reset in order to get the best anti-ageing effect. Therefore, the horizontal shift positions and directions need to be stored in NVM, so that he anti-ageing process returns to its latest position after the set has been switched off or to standby. There is only one H and


Circuit Descriptions and List of Abbreviations one V shift value for the anti-ageing process that is applicable for the AV1, AV2, and AV3 inputs. Note: Horizontal shift cannot be done for sources that are screen filling and do not have sufficient overscan. Vertical V-shift is done in the F21RE Receiver box when the TV mode is active, or in the enhanced configuration when the monitor mode is active. Vertical anti-ageing steps: • Height/height, the height/height shall be 1 display line (approximately 1 mm). • Number of steps, the maximum number of steps in vertical direction shall be 9. • Time between steps, the time between the steps shall be 80 minutes, which equals one complete horizontal ageing shift (16 steps x 5 minutes). The effect of V anti-ageing is a vertical movement (start at 0): 4 ↑ ↓ 3 5 ↑ ↓ 2 6 ↑ ↓ 1 7 ↑ ↓ 0 8 ↓ 9 15 ↓ ↑ 10 14 ↓ ↑ 11 13 ↓ ↑ 12 With the following sequence: 0 → 1 → 2 → ...... → 14 → 15 → 0 → 1 → etc. After every step, the vertical shift position and its direction are stored in NVM. So the anti-ageing process returns to its last position after the set has been switched off (or to standby). Also, if by any cause (i.e. VGA-source selection or when service/factory mode is active), the anti-ageing process is stopped; the vertical shift position should be restored after resuming the anti-ageing process.

FM23

9.

EN 101


Circuit Descriptions and List of Abbreviations

FM23

Audio processing (Diagrams SC13, 14 and 15)

processing and audio delay. It also matches the output signals for the Audio Amplifier panel. The sound-related electronics for FM23 are very straight forward, and consists of a Micronas MSP3415G sound processor, an active highpass and lowpass filter, and separate Class-D amplifiers for woofers and tweeters.

This chapter describes the audio processing on the SCAVIO board. The circuit enables to connect several audio sources, selects the source on the desired input, and performs audio

(Basic only)

7880 Digital Audio Delay Line

Matrix Switch TEA6422

T1

(Enhanced only) -4dB

(Enhanced only)

AV2 Audio-YC

(Enhanced only)

AV3 Audio-YPbPr

(Enhanced only)

(Enhanced only)

-4dB -4dB

-4dB

(Enhanced only)

(Enhanced only)

7801 : 7808

7841 DACM-L

+4.9dB

DACM-R

+4.9dB

0388 L-NEG L-POS

In 6 Out 2

AV1 Audio-CVBS

I2S-DA-In2

In 5

2* Differential Amplifier

I2S

PRE-out2 (R)

7851

SCART2-in

AUDIO DSP MSP3415

In 2

R-NEG L-NEG

In 3

In 1

Out 3

(Basic only)

MSP-Reset

(Enhanced only)

SCART1-in

I2S

D-CTRL-1

(Enhanced only)

-4dB

Out 1

D-CTRL-0

VGA2 Audio-Flex-VGA DVI-D Audio-DVI

In 4

-4dB

I2C

II2S-DA-In1

7812 PRE-out1 (L)

I2S-DA-Out

Audio inputs VGA1 Audio-VGA-in

T2

SC1-OUT

+3.0dB

Audio out (to Audio Amplifier)

7798 (Enhanced only)

I2C-SCL I2C-SDA

9.4.3

9.

I2C-SCL I2C-SDA

EN 102

Audio Enable

(Enhanced only) Switch

Mute 7800

Logic &

Power-ok

MSP-Reset I2C-SDA I2C-SCL

= Only for Basic configuration. CL 26532038_012.eps 280302

Figure 9-15 Audio Path

The processing part consists mainly of the following components: • MSP3415G: a DSP sound processor from Micronas. This component is able to do all kinds of digital signal processing like volume, bass/treble, UltraBass and balance. It has analogue inputs and outputs, as well as an I2S in/output used for digital audio delay. • RAM with its logic to be able to store the I2S information for audio delay. • Anti-plop/ mute circuit: which is necessary to prevent disturbances on the audio lines during start-up or switching. • TEA6422: a matrix switch of ST. This component is able to switch six inputs to three different outputs (only used in the Enhanced version). MSP3415G Ultra Bass Because of the closed box implementation in FM23, a common DBE solution will not give an optimal bass performance. A closed box needs a substantial boost over a wide frequency range, while DBE operates in a limited frequency region. Adaptive Ultra Bass 2 (UB2) is a suitable alternative. This feature is based on the psycho-acoustic effect of the missing fundamental, and gives the impression of a deep bass while the loudspeakers do not reproduce these low frequencies. This feature is implemented in the MSP3415G.

Audio delay To compensate for 'lip sync error' (the difference in time between the aural and visual perceptions), two different audio delays are selectable via the customer's menu (one for the Receiver box and one for the Monitor). This is done at the audio processor IC7812 via an I2S bus and an additional delay circuit (IC7880 - 7882). One can select delays of 24 ms (I2S_DATA_IN1) and 40 ms (I2S_DATA_IN2), or no delay. In case of a delay, the AUDIO_L/R_IN is re-routed as I2S_DATA_OUT to the audio delay circuit and, depending on the selected delay, returned as I2S_DATA_IN1 or I2S_DATA_IN2, resulting in AUDIO_L/R_OUT. Anti-plop/Mute In several cases, it is necessary to mute the sound output. This muting is handled by the MSP sound processor, or by the Receiver box in case of TV-mode. • In Monitor mode: – During switch 'on/off' of the monitor. – During source change. – During video or sync loss, or – By a user action (A/V-mute or mute). • In TV mode: – During switch 'on/off' of the Monitor/Receiver box. – During source change in the Receiver box. – During video or sync loss, or – By a user action (mute).


Circuit Descriptions and List of Abbreviations

9.

EN 103

Control (Diagrams SC7, 8 and 9) In stand-alone mode, the monitor can be controlled via the Remote Control or via the RS232C port.

Introduction As a main controller, the so-called ARTISTIC is used, better known as OTC (On screen display, Teletext and Control). It is a 8051 (XA) based controller from Philips Semiconductors, the SAA5801H. Although the OTC is the main controller, it acts as a 'slave' when communicating with the PixelWorks IC via the I2C-bus 2.

DDC1/2B (Display Data Channel, an I2C based protocol) is implemented with separate NVMs for the two VGA inputs and the DVI-D input as well. It is also possible to use the RS232C port for software upload to the PW Scaler and the OTC. The target for downloading is controlled via a switch in the RS232C path; the switch itself is controlled by the OTC.

When the monitor is connected to an F21RE Receiver box, the UART commands from the Receiver box will control the monitor. OTC Processor 7540 SELECT-1

RS232 RXD

SELECT-2

7530 TEMP-1 IO EXPANDER PCF8574

SELECT-3

ADC

PDP

CLOCK GENERATOR

SELECT-4

PDP-GO

AUDIO (MSP)

POWER DOWN

MSPRESET

CPU-GO

7812 UART RS232 SWITCH

IRQ-PDP

VGA2-TXD VGA2 VGA2-RXD (FLEX)

TEMP-2

7656

7430 NVM-WE

EPLD

I2C-1

VGA1-TXD

NVM OTC

I2C-NVM

7383 RS-232-ACT

CLOCK GENERATOR

7340 TXD

RED-LED

SAA5801

LEDS

GREEN-LED

UART-ACT VGA1-RXD TXD-OTC

7605 PW-RESET

VGA1

RXD-OTC

OTC PW-START

VGA1-H SYNC SYNC-ACT DETECT

RESET

CASH

STANDBY

AC(0:9)

POWER-OK

DC(0:15)

DRAM

5V-TEST 8V-TEST

8V TEST

RC RECEIVER

RC-OUT

&

RC5-IN

&

WE

8V

CASL

AC(0:20)

5V TEST

3V3-STBY

DC(0:15)

5V

RAS

RAM-OE

PSU

I2C-1

ROM-OE

RESET

7500

RAM-CS

VGA1-V

PW

I2C-2

ROM-CS

9.4.4

FM23

7510

RC-CNTL

SERVICE INPUT

WP

FLASH ROM CL16532099_004.eps 170801

SERVICE_IN 7506

Figure 9-16 Control Part

This part describes the Main Control part of the SCAVIO panel and the interfaces with the software. The control function consists of the following tasks: • Control of external IOs, like fan speed, temperature, service and RC5, • UART communication with Receiver box, • RS232 control / communication, • Supports the uploading of new SW into the Flash-ROMs, • Start-up of monitor and initialisation via I2C, • Error detection and storing.

Start-up and Shut-down The POR signal is not generated on the PSU, but on the SCAVIO board. This is done with a fully integrated ADM810T POR chip (item 7517), which senses the 3.3 V coming from the PSU. The sense level is 3.08 V. During power-up as well as power-down, this chip will make the RESET signal high. During power-up, this signal will be held 'high' until 240 ms after VCC has become stable. During power-down, the system will be reset as soon as the VCC drops below 3.08 V.


EN 104

9.

Circuit Descriptions and List of Abbreviations

FM23

Table 9-6 Service Mode levels

Start-up from Standby When the monitor is in standby mode, it can wake-up in several ways: • When an RC command is received (RC_IN). • Detection of H- and/or V-sync on VGA1. • Detection of UART communication on VGA1. • Detection of RS232 communication. • Detection of Service modes.

Service mode Limits Vx [V]

RC Command Reception When a RC command is received at the RC receiver on the LED panel, it will go directly to the RC input of the OTC (RC_IN on pin 100). If the monitor is in standby, and a proper RC command is send, it will wake up. The RC commands are routed to the Receiver box via the VGA1 connector pin 9 (RC_VGA1), but this loop through connection is controlled by RC_CNTL. Below is the truth table.

RC_CNTL

In Standby

In Standby

Send to E-box Low

In Standby

On

Blocked

On

In Standby

Send to E-box Low

On

On

Send to E-box Low

High

Note: All RC commands are direct available on a separate RCout cinch connector (RC_OUT) on the VGA connector panel. H- and/or V-sync Detection When both H and or V sync are present on VGA1, there is a pulse (low) on SYNC_ACT. When only H is present, SYNC_ACT is continuously low. The SW disables the interrupt, once an interrupt is received.

0382-2 to GND

SAM

2.4 > Vx > 1.8 ± 2.0

0382-4 to GND

COMPAIR

1.8 > Vx > 1.2 ± 1.4

0382-6 to GND

RS232 active

Vx < 0.8

Plug in RS232, start program

RS232/UART VGA2

(FLEX VGA) 4 11 12 15

VGA2_TXD VGA2_RXD

RXD-PW

PW 74HCT 125-C/D

15 pin Sub-D

Service Mode Detection It is possible to enter four different Service Modes (provided the OTC is still supplied by the +3V3_STBY). Via the SERVICE_IN signal, which is an ADC input of the OTC, a voltage drop is detected from +3.3 V to VX. VX is a DC voltage, which represents the mode to be entered:

>0.8

Notes: • The PDP and EPLD are in fact 3.3 V bus devices, but they need to be connected to bus 1, since the OTC is the first controller to be fully operating at start-up. For this reason, an I2C level shifter (items 7675/76 on diagram SC12) is included, which converts the 5 V signals into 3V3 and visa versa. • One of the first commands is to set the clock generator (item7570), else the PW can not start-up.

UART Communication Detection When there is UART communication on VGA1, the UART detection circuitry generates on every falling edge a pulse on UART_ACT. This is a negative going pulse with a width of ± 470 s. The first pulse will trigger the main software to check for the FTV System Protocol (FSP). The SW disables the interrupt, once an interrupt is received. RS232 Communication Detection When an RS232 connection is made, and communication is started (pulses on RS232_RXD), RS232_ACT becomes 'high'. Via a transistor, RS232_ACT will make SERVICE_IN low. When the Monitor is operating (+5 V available), this signal is made low (in fact it is disabled).

3.0 > Vx > 2.4 ± 2.6

I2C There are four I2C busses used in the monitor (see also I2C overview in chapter 6): • I2C bus 1 is a (5 V) device bus, controlled by the OTC, and connected to the following devices: – PDP. – EPLD. – IO expander SCAVIO - PCF8574A. – IO expander PSU - PCF8574A. – ADC - PCF8591. – Clock generator for PW - FS6377. – Sound processor MSP3415G. – Audio switch TEA6422 (Enhanced version only). • I2C bus 2 is used for communication with the PixelWorks co-processor (PW). Although the OTC is the main controller, it will act in this case as a 'slave', since the PW can only act as a 'master'. Before any I2C commands are exchanged, the PW gets an interrupt (PW_START) to indicate that the OTC wants to talk to the PW. • I2C bus 3 is a (5 V) device bus, controlled by the PW, and connected to the following devices: – Video Decoder SAA7118 (Enhanced version only). – De-interlacer SDA9400 (Enhanced version only). – ADC/TMDS receiver AD9887. – 3D Comb filter MN8783LSI (optional). • I2C bus 4 is a (5 V) device bus, only connected to the NVM (to avoid data corruption).

Table 9-5 RC Commands overview FTV2.1E-box FTV2.3Monitor RC commands

Vx [V] Remarks

SDM

TXD-PW S4

74HC4052 n.c. n.c.

ST232 RS232 3

RXD

2

TXD

RXD-OTC

n.c. n.c.

9 pin Sub-D

OTC

TXD-OTC 74HCT 125-A/B VGA1 4 11 12 15

S3

VGA1_TXD

S2 S1..S4 S1 S2 S3 S4

VGA1_RXD

= control signals = SELECT_1 = SELECT_2 = SELECT_3 = SELECT_4

15 pin Sub-D

CL 26532038_013.eps 280302

S1

Figure 9-17 RS232/UART


Circuit Descriptions and List of Abbreviations Introduction The FM23 monitor is equipped with an RS232 interface. Via a 9 pin Sub-D connector, it is possible to connect a PC for special modes like: • SW download. • Factory purposes. • Service. • Professional use. A second option is the connection of a so-called ICONN-box for Institutional TV (Hotel TV). For communication with the Receiver Box, UART is used, because this protocol can handle longer cable distances than I2C. The (Receiver box) UART is interfaced via a 15 pin Sub-D connector (VGA connector). Via this UART connection, the F21RE Receiver box and the FM23 Monitor can communicate (via FSP). By doing so, the monitor will know that there is an Receiver box connected and thus it is operating as a TV configuration. RS232/UART Control The OTC (SELECT_1 to 4) controls the RS232/UART switches. When the monitor is in Receiver box mode, there is no RS232 communication possible. The monitor is default set in Receiver box mode (switch to n.c. position) and the UART from/to VGA1 is enabled, to allow communication with Receiver box. If no Receiver box is detected, the UART is disabled to ensure that there will be no communication towards the OTC, and the switch is set to OTC. Below the truth table of the switches is shown, which determine the TXD/RXD path.

S1= SELECT_1 (P0)

S2 = SELECT_1 (P1)

S3 = SELECT_1 (P3) (3)

S4 = SELECT_4 (P4) (4)

UART VGA1 (E-box)

UART VGA2 (flex)

RS232 set to OTC (1)

RS232 set to PW (2)

Table 9-7 RS232/UART Control

0

0

0

0

0

0

0

0

0

0

0

1

0

0

0

0

0

0

1

0

0

0

0

0

0

0

1

1

1

0

0

0

0

1

0

0

0

0

0

0

0

1

0

1

0

0

0

0

0

1

1

0

0

0

0

0

0

1

1

1

1

0

0

0

1

0

0

0

0

0

0

0

1

0

0

1

0

0

1

0

1

0

1

0

0

1

0

0

1

0

1

1

0

0

0

0

1

1

0

0

0

0

0

0

1

1

0

1

0

0

0

1

1

1

1

0

0

1

0

0

1

1

1

1

0

0

0

0

(1) Software download or ComPair mode. (2) Software download or Debug mode. (3) When S3 = 1 the 74HCT4052 is in a tri-state ('off' state). (4) When S4 = 0 the TXD out of RS232 is disabled (S4 may not become low in any other case). UART Detection When the VGA1_RXD line is continuously 'low', the OTC might run slow due the fact that so-called 'break' signals are

FM23

9.

EN 105

generated. To prevent this, a small circuitry is added to detect whether VGA1_RXD is continuously 'low' (item 7310). When the VGA1_RXD line is 'low' for about 20 ms, the bufferswitch (item 7303-A) is opened. After this buffer, a second discrete buffer is placed (items 7315/16), which keeps the RXD_OTC line 'high' and changes the 5 V into a 3.3 V level. ICONN-box For application of a Flat TV in a hotel environment, the monitor is designed to operate with a so-called ICONN-Box. The ICONN-box will take over the user control of the monitor, by intercepting the RC5-commands coming from a dedicated RCtransmitter, which sends specific hotel-mode commands and sending its own RC-commands to the microprocessor in the monitor. So in the ICONN-Box, the hotel-mode commands will be converted to RC5-commands, which than can be interpreted by the monitor. When connected to the RS232 input, this box takes over the control of the IR-receiver in the monitor. It is also able to control the front LED. The switches (7550 for the IR and 7555 for the LED signals) are controlled by the ICONN_NOT signal. The ICONN-Box shall interface the Monitor with the following signals: • IR-RX. These are the RC5-commands coming from the specific hotel RC5 - transmitter, which are received via the RC5-receiver of the monitor. • IR-TX. These are the RC5-commands generated by the ICONN-Box and send to the monitor. • RL-ICN. Control signal from the microprocessor (of the monitor), indicating the power state of the monitor. The ICONN-Box and monitor LED are driven in parallel. • GL-ICN. Control signal from the microprocessor (of the monitor), indicating the functionality of the monitor, to drive the LED on the ICONN-Box. • LD-ICN. Control signal from the ICONN-Box to drive the green LED on the monitor.


EN 106

9.

Circuit Descriptions and List of Abbreviations

FM23

9.5

Audio Amplifier Panel (Diagram A)

9.5.1

Introduction

The output signal of this filter is then fed to the audio amplifier (identical for right channel). High Pass Filter (HPF) For L and R separately, a High Pass Filter (IC7260A and B) is processing L_HIGH and R_HIGH. The output signal of this filter is then fed to the audio amplifier (identical for right channel).

PSU

SCAVIO

TWEETER LEFT

TWEETER RIGHT AUDIO AMPLIFIER

TWIN-CONE SPEAKER LEFT

TWIN-CONE SPEAKER RIGHT

7260-A

AUDIO AMPLIFIER

L L-HIGH

HPF

HIGH LEFT

9.5.4

Amplifier (Diagrams A3 to A6) Each speaker has its' own 15 W class-D amplifier. These amplifiers combine a good performance with a high efficiency, resulting in a big reduction in heat generation.

MUTE 7225-A 7238-A L-POS

L-LOW LPF

MID/LOW LEFT

L-NEG MUTE 7225-B

7260-B

R-POS

R R-HIGH

HPF

HIGH RIGHT

R-NEG MUTE 7238-B R-LOW LPF MUTE

AUDIO ENABLE

63Hz

MID/LOW RIGHT MUTE

1kHz

Principle Audio-power-amplifier systems have traditionally used linear amplifiers, which are well known for being inefficient. In fact, a linear Class AB amplifier is designed to act as a variable resistor network between the power supply and the load. The transistors operate in their linear region, and the voltage that is dropped across the transistors (in their role as variable resistors) is lost as heat, particularly in the output transistors. Class D amplifiers were developed as a way to increase the efficiency of audio-power-amplifier systems.

+V

3kHz

6dB/OCT

LOW (LPF)

HIGH (HPF) CL16532099_003.eps 040402

Figure 9-18 Blockdiagram Audio Amplifier -V

This panel houses the audio filters and amplifiers necessary for driving the speakers. The differential audio inputs (for common mode immunity) come from the SCAVIO panel (via connector 0388). The PSU delivers the positive and negative supply voltage of 14.5 VDC, as well as the +9V_STBY voltage. After being filtered and amplified, the signals go to the speaker section, where the (twin cone) low/mid range speakers and the tweeters are driven (load impedance is 8 Ω). 9.5.2

Supply (Diagram A7) The supply voltage is a symmetrical voltage of +/- 14.5 VDC, generated by the main supply via L5002. • VSND_POS (+14.5 VDC) on connector 0302 pin 5/6, and • VSND_NEG (-14.5 VDC) on connector 0302 pin 1/2.

9.5.3

Filter (Diagram A2) Electrical filtering is needed for following reasons: • Limiting the cone excursion, thereby reducing the distortion. • Increasing the power handling capacity (PHC). In the FM23, active second order Sallen-Key filters are used, with crossover frequencies of 1 kHz for the lowpass filter, and 3 kHz for the highpass filter. The audio signals are filtered before the amplifier. There are some reasons for doing this: • It is now easy to do active filtering, and • At less costs (no expensive coils and capacitors). Low Pass Filter (LPF) For L and R separately, a Low Pass Filter (IC7238A and B) is processing L_LOW and R_LOW.

CL16532099_002.eps 200801

Figure 9-19 Principle Class-D Amplifier

The Class D amplifier works by varying the duty cycle of a Pulse Width Modulated (PWM) signal. By comparing the input voltage to a triangle wave, the amplifier increases duty cycle to increase output voltage, and decreases duty cycle to decrease output voltage. The output transistors (item 7365 on diagram A3) of a Class D amplifier switch from 'full off' to 'full on' (saturated) and then back again, spending very little time in the linear region in between. Therefore, very little power is lost to heat. If the transistors have a low 'on' resistance (RDS(ON)), little voltage is dropped across them, further reducing losses. A Low Pass Filter at the output passes only the average of the output wave, which is an amplified version of the input signal. In order to keep the distortion low, negative feedback is applied (via R3308). A second feedback loop (via R3310) is tapped after the output filter, in order to decrease the distortion at high frequencies. The advantage of Class D is increased efficiency (= less heat dissipation). Class D amplifiers can drive the same output power as a Class AB amplifier using less supply current. The disadvantage is the large output filter that drives up cost and size. The main reason for this filter is that the switching waveform results in maximum current flow. This causes more loss in the load, which causes lower efficiency. An LC filter with a cut-off frequency less than the Class D switching frequency (350 kHz), allows the switching current to flow through the filter instead of the load. The filter is less lossy than the speaker, which causes less power dissipated at high output power and increases efficiency in most cases.


Circuit Descriptions and List of Abbreviations 9.5.5

9.5.6

Mute (Diagram A2 to A6)

9.7

Plasma Display Panel (PDP)

A mute switch (item 7302) is provided at the PWM inputs (item 7315, LM311). This switch is controlled by the AUDIO_ENABLE line, which checks the availability of the +9V_STBY voltage.

9.7.1

General

DC-protection (Diagram A7) +9V_STBY 5753

OUT_LH

OUT_LL

VCC_10_POS 2753

3752 7735

3770

3771

3751

3775 3750

7751

7761

3754 DC_PROT

A

7755 3780

3781

2760

3765 3760

OUT_RH

OUT_RL

VCC_10_NEG CL16532099_001.eps 200801

Figure 9-20 DC Protection

Because of the symmetrical supply, a DC-blocking capacitor, between the amplifier and the speaker, is not necessary. However, it is still necessary to protect the speaker for DC voltages. The following protections are therefore implemented: • Via R3765 and R3775, each stabilised supply voltage line (via items 7735 and 7745) is checked on deviations. • Via R3770/3771/3780/3781, each amplifier output is checked for DC-voltage. Via R3765/3775, a virtual earth is imposed on point A. When one of the supply voltages deviates, a DC voltage will occur on this point. If point A is positive, T7751 will conduct. If it is negative, T7761 will conduct. Both cases will make T7735 conduct, so that the DC-PROT signal will be made high. This ensures that the power supply is rapidly trimmed back. Capacitor C2760 will ensure that only DC-signals at point A will activate the protection.

LED/Switch Panel (Diagram LD) This panel contains: • The red and green status LEDs, • The RC input receiver, • The light sensor, and • The 'on/off' switch. All signals on this panel come directly from the SCAVIO panel: • The LED and sensor signals (RED_LED, GREEN_LED and LIGHT_SEN_IN) are routed to the OTC. When a F21RE Receiver box is connected, the sensor signal is routed to the OTC of this box (via UART), where it will control the HOP via I2C. • The RC signal (RC_IN) is routed to the OTC, the VGA1 connector, and the RC-out cinch connector. • The signals to (+9V_STBY) and from (+9V_STBY_SW) the 'on'/'off' switch are routed to the PSU board.

9.

EN 107

The PDP, which is used in the FM23, is a product of Fujitsu Hitachi Plasma Display Ltd (FHP). When defect, a new panel must be ordered, and after receipt, the defective panel must be send for repair in the packing (flight case) of the new ordered panel.

Protections Short-circuit Protection (Diagram A3) A protection is made against a too high temperature of transistor 7355 in case of a short-circuit of output FET 7365-1. Transistor 7340 is sensing the current through transistor 7355 via R3355, and activates the DC-protection line (see below) in case the current becomes too high. This is the same for all four amplifier parts.

9.6

FM23

9.7.2

Operation Principle Plasma displays work by applying a voltage between two transparent display electrodes on the front glass plate of the display. The electrodes are separated by an MgO dielectric layer and surrounded by a mixture of neon and xenon gases. When the voltage reaches the 'firing level', a plasma discharge occurs on the surface of the dielectric, resulting in the emission of ultra violet light. This UV light then excites the phosphor material at the back of the cell and emits visible light. Each cell or sub-pixel has red, blue or green phosphor material and three sub-pixels combine to make up a pixel. The intensity of each colour is controlled by varying the number and width of voltage pulses applied to the sub-pixel during a picture frame. This is implemented by dividing each picture frame into sub-frames. During a subframe, all cells are first addressed - those to be lit are precharged to a specific address voltage - then during the display time the display voltage is applied to the entire screen lighting those that were addressed. Each sub-frame has a weighting ranging from 1 time unit to 128 time units for a typical eight sub-frame arrangement (Time Unit depends on size and number of pixels on the screen). This is a purely digital PWM control mechanism, which is a key advantage as it eliminates any unnecessary digital to analogue conversions, making the PDP technology ideal for the all-digital age. Achieving High Resolution While conventional technology, as found in standard VGA resolution screens, uses 2 display electrodes for each horizontal line, applying the same method to achieve higher resolution (>1000 horizontal lines) brings inherent problems. Firstly, the number of electrodes would need to be doubled which would require very high precision production processes. Secondly, the cell aperture ratio would reduce resulting in lower brightness. In addition, either the driving scheme would have to operate with double the speed, again introducing significantly higher cost, or a dual-scan technique would have to be introduced. With dual-scan, twice as many driving ICs would be required. In summary, implementing high resolution with conventional technology would result in lower brightness and increased costs. ALiS Technology To achieve high brightness as well as cost-effectiveness, FHP developed ALiS (Alternate Lighting of Surfaces) Technology. ALiS is based on 3 principles: • Odd and Even lines are displayed separately • The non-lighting area between the cells is utilised • The number of electrodes = the number of horizontal display lines + 1 Despite the smaller cell size, the aperture ratio can be increased from 40% to 65% meaning that the screen is inherently brighter. Another spin-off benefit is that the lighting duty is reduced to 50% (odd fields and even fields lit for half of each frame) meaning that a significantly improved phosphor lifetime can be expected. For more information, see http://www.fme.fujitsu.com/ products/plasma/01.html


EN 108 9.8

9.

FM23

Circuit Descriptions and List of Abbreviations

Abbreviation list ADC ALiS AM AP AV B/G BGA BTSC

ComPair CVBS DAC DDC D/K DFU DNR DRAM DSP DTS DVD DVI-d EEPROM EMI EPLD EU EXT FLASH FM FSP FTV HP I I2C I2S ICONN IF Interlaced

IR IRQ LATAM LED L/L'

LS LVDS M/N MOSFET MPEG NC NICAM

NTC Analogue to Digital Converter Alternate Lighting of Surfaces, new plasma display technology Amplitude Modulation Asia Pacific External Audio Video Monochrome TV system. Sound carrier distance is 5.5 MHz Ball Grid Array Broadcast Television Standard Committee. Multiplex FM stereo sound system, originating from the USA and used e.g. in LATAM and AP-NTSC countries Computer aided rePair Composite Video Blanking and Synchronisation Digital to Analogue Converter Display Data Channel (a protocol based on I2C) Monochrome TV system. Sound carrier distance is 6.5 MHz Direction For Use: description for the end user Dynamic Noise Reduction Dynamic RAM Digital Signal Processing Digital Theatre Sound Digital Versatile Disc Digital Visual Interface, d = digital only Electrically Erasable and Programmable Read Only Memory Electro Magnetic Interference Erasable Programmable Logic Device Europe External (source), entering the set via SCART or Cinch Flash memory Frequency Modulation FTV System Protocol Flat TeleVision Headphone Monochrome TV system. Sound carrier distance is 6.0 MHz Integrated IC bus Integrated IC Sound bus Institutional CONNector Intermediate Frequency Scan mode where two fields are used to form one frame. Each field contains half the number of the total amount of lines. The fields are written in 'pairs', causing line flicker. Infra Red Interrupt Request Latin America Light Emitting Diode Monochrome TV system. Sound carrier distance is 6.5 MHz. L' is Band I, L is all bands except for Band I Loudspeaker Low Voltage Differential Signalling Monochrome TV system. Sound carrier distance is 4.5 MHz Metal Oxide Silicon Field Effect Transistor, switching device Motion Pictures Experts Group Not Connected Near Instantaneous Compounded Audio Multiplexing. This is a digital sound system, mainly used in Europe.

NTSC

NVM OC OSD OTC P50 PAL

PCB PCM PDP PFC PIP PLL

POR Progressive Scan

PTC PW PWM RAM RC RC5 RGB ROM SCART

SCAVIO SCL SDA SDRAM SECAM

SMPS SOG SOPS S/PDIF SRAM STBY SVHS SW SXGA THD TMDS TXT UART

Negative Temperature Coefficient, non-linear resistor National Television Standard Committee. Colour system mainly used in North America and Japan. Colour carrier NTSC M/N = 3.579545 MHz, NTSC 4.43 = 4.433619 MHz (this is a VCR norm, it is not transmitted off-air) Non Volatile Memory: IC containing TV related data e.g. alignments Open Circuit On Screen Display On screen display, Teletext and Control Project 50 or Easy Link Phase Alternating Line. Colour system mainly used in West Europe (colour carrier = 4.433619 MHz) and South America (colour carrier PAL M = 3.575612 MHz and PAL N = 3.582056 MHz) Printed Circuit Board Pulse Code Modulation Plasma Display Panel Power Factor Corrector (or Preconditioner) Picture In Picture Phase Locked Loop. Used for e.g. FST tuning systems. The customer can give directly the desired frequency Power On Reset, signal to reset the P Scan mode, where all scan lines are displayed in one frame at the same time, creating a double vertical resolution. Positive Temperature Coefficient, non linear resistor Pixel Works (manufacturer) video scaling co-processor Pulse Width Modulation Random Access Memory Remote Control handset Remote Control system 5, signal from the remote control receiver Red Green Blue Read Only Memory Syndicat des Constructeurs d'Appareils Radiorecepteurs et Televisieurs Scaler Control Audio Video Input and Output Serial Clock I2C Serial Data I2C Synchronous DRAM SEequence Couleur Avec Memoire. Colour system mainly used in France and East Europe. Colour carriers = 4.406250 MHz and 4.250000 MHz Switched Mode Power Supply Sync On Green Self Oscillating Power Supply Sony Philips Digital InterFace Static RAM Standby Super Video Home System Software 1280x1024 Total Harmonic Distortion Transition Minimised Differential Signalling Teletext Universal Asynchronous Receiver Transmitter, 2-wire bus which can handle longer cables than I2C.


Circuit Descriptions and List of Abbreviations P VCR Va Vra Vrs Vs Y/C YUV 0/6/12

Microprocessor Video Cassette Recorder Addressing voltage for the plasma display Setting voltage for Va Setting voltage for Vs Sustain voltage for the plasma display Luminance (Y) and Chrominance (C) signal Component video SCART switch control signal on A/V board. 0 = loop through (AUX to TV), 6 = play 16:9 format, 12 = play 4:3 format

FM23

9.

EN 109


EN 110 9.9

9.

Circuit Descriptions and List of Abbreviations

FM23

IC Data In this paragraph, the internal block diagrams and pinning are given of ICs that are drawn as a ‘black box’ in the electrical diagrams (with exception of ‘memory’ and ‘logic’ ICs).

9.9.1

Diagram P2, TNY256 (IC7500)

BYPASS (BP)

1

5

REGULATOR 5.8 V

DRAIN (D)

LINE UNDER-VOLTAGE

50 A

AUTORESTART COUNTER

BYPASS PIN UNDER-VOLTAGE

+

CLOCK

5.8 V 5.1 V

RESET

-

+ -

VI

LIMIT

JITTER CLOCK 1.5 V + VTH

ENABLE/ UNDER-VOLTAGE (EN/UV)

4

DCMAX

THERMAL SHUTDOWN

OSCILLATOR 1.5 V S

Q

R

Q

LEADING EDGE BLANKING

SOURCE (S)

BP S S EN/UV

1

8

2

7

3

6

4

5

S S S D

CL 165320

99_113.eps 270901

Figure 9-21 Internal Block Diagram and pinning TNY256 9.9.2

Diagram P5, MC33368 (IC7650)

16 Restart Delay

2

12 Output Overvoltage FB Comp Mult LEB Current Sense ZC Det

3 4 5 9 6 7

Line

Restart Delay

UVLO

Multiplier/ Error Amplifier

S

PWM

Internal Bias Generator

1 8

S R

Current Sense

11

Q

10

WatchdogTimer/ Zero Current Detector

13

Frequency Clamp

PIN CONNECTIONS 5.0 Vref Restart Delay

1

16 Line

2

15 N/C

Voltage FB

3

14 N/C

Comp

4

13 Frequency Clamp

Mult

5

Current Sense

6

12 VCC 11 Gate

Zero Current

7

10 PGnd

AGnd

8

9 LEB (Top View)

CL 16532099_114.eps 270901

Figure 9-22 Internal Block Diagram and pinning MC33368

VCC Vref AGnd Gate PGnd Frequency Clamp


Circuit Descriptions and List of Abbreviations 9.9.3

FM23

9.

Diagram P7, TEA1507 (IC7112 and IC7212)

VCC

1

SUPPLY MANAGEMENT

8

START-UP CURRENT SOURCE clamp

internal UVLO supply GND

2

S1

7

start VALLEY

DRAIN HVS n.c.

M-level 4

VOLTAGE CONTROLLED OSCILLATOR

LOGIC

DEM

100 mV OVERVOLTAGE PROTECTION

FREQUENCY CONTROL

OVERTEMPERATURE PROTECTION

CTRL

LOGIC

6

DRIVER

3

−1

LEB

POWER-ON RESET

S

Q

UVLO

2.5 V

R

0.5 V

soft start S2

blank Q

5 OCP

burst detect

short winding

MAXIMUM ON-TIME PROTECTION

TEA1507

0.75 V OVERPOWER PROTECTION MGU230

VCC 1

8 DRAIN

GND 2

7 HVS

TEA1507 CTRL 3

6 DRIVER

DEM 4

5 Isense

CL 16532099_115.eps 270901

MGU231

Figure 9-23 Internal Block Diagram and pinning TEA1507 9.9.4

DRIVER

Iss

Diagram P7, L4973V (IC7260)

OSC

1

18

SYNC

1

20

SYNC

OUT

2

17

SS

2

19

SS

OUT

3

16

V5.1

3

18

V5.1

4

17

GND

5

16

GND

6

15

GND

7

14

GND

8

13

VFB

GND

4

15

GND

GND

5

14

GND

GND

6

13

GND

VCC

7

12

VFB

VCC

8

11

COMP

9

12

COMP

BOOT

9

10

INH

10

11

INH

D94IN162A

BLOCK DIAGRAM VCC

V5.1

INH 10(11)

16(18)

VCC

7(8)

8(9) CBOOT CHARGE

ZERO CURRENT INHIBIT

VREF GOOD

5.1V

INTERNAL REFERENCE

INTERNAL SUPPLY

5.1V

3.3V

SS

COMP

17(19)

SOFT START

THERMAL SHUTDOWN 5.1V 3.3V VFB

SYNC

HICCUP CURRENT LIMITING

11(12)

12(13)

18(20)

+ E/A -

CURRENT LIMITING

PWM

+

R

Q

S

Q

9(10)

BOOT

OSCILLATOR DRIVER 1(1) OSC

4,5,6,13,14,15 (4,5,6,7,14,15,16,17) GND

2(2) OUT

3(3) OUT

D94IN161B

Pin x = Powerdip Pin (x) = S020 CL 16532099_116.eps 270901

Figure 9-24 Internal Block Diagram and pinning L4973

Isense

EN 111


EN 112 9.9.5

9.

FM23

Circuit Descriptions and List of Abbreviations

Diagram SC2, LM1881M (7040)

CL 16532099_117.eps 270901

Figure 9-25 Internal Block Diagram and pinning LM1881 9.9.6

Diagram SP2, PCF8591 (7530)

Figure 9-26 Internal Block Diagram PCF8591


Spare Parts List

FM23

10.

EN 113

10. Spare Parts List Audio Amplifier [A] Various 0302 0303 0304 0388 0388 1730 1730 1740 1740

2422 025 16846 2422 025 16702 2422 025 16543 2422 025 16703 2422 025 16704 4822 071 52502 4822 253 50137 4822 071 52502 4822 253 50137

9P male hor. 5P male hor. 4P male hor. 7P male hor. 8P male hor. Fuse 2.5A Fuse 2,5A UL Fuse 2.5A Fuse 2,5A UL

4822 126 13193 4822 124 23002 4822 126 14226 4822 126 13193 4822 124 23002 4822 126 14226 5322 126 11578 4822 126 13193 4822 124 23002 4822 126 14226 4822 126 13193 4822 124 23002 4822 126 14226 4822 126 14305 4822 126 14305 3198 017 31530 3198 017 36830 5322 126 11582 2238 586 59812 3198 017 31530 4822 126 14494 4822 126 14305 4822 126 14305 3198 017 31530 3198 017 36830 5322 126 11582 2238 586 59812 3198 017 31530 4822 126 14494 4822 126 13193 4822 126 14494 4822 126 13193 4822 126 14494 4822 126 14305 4822 126 14305 4822 126 13193 4822 126 14494 4822 126 13193 4822 126 14494 4822 126 14247 4822 126 14226 4822 124 12084 4822 124 23002 4822 126 14305 4822 126 14305 4822 124 12084 4822 124 23002 4822 126 14305 2020 012 93764 4822 126 14305 5322 126 11583 4822 126 14305 4822 126 14305 2020 012 93764 2020 552 96326 2020 552 96326 4822 126 14247 4822 126 14226 4822 124 12084 4822 124 23002 4822 126 14305 4822 126 14305 4822 124 12084 4822 124 23002 4822 126 14305 2020 012 93764 4822 126 14305 5322 126 11583 4822 126 14305 4822 126 14305 2020 012 93764 2020 552 96326

4.7nF 10% 63V 10µF 16V 82pF 5% 50V 0603 4.7nF 10% 63V 10µF 16V 82pF 5% 50V 0603 1nF 10% 50V 0603 4.7nF 10% 63V 10µF 16V 82pF 5% 50V 0603 4.7nF 10% 63V 10µF 16V 82pF 5% 50V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 15nF 50V 68nF 16V 6.8nF 10% 63V 100nF 80-20% 50V 15nF 50V 22nF 10% 25V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 15nF 50V 68nF 16V 6.8nF 10% 63V 100nF 80-20% 50V 15nF 50V 22nF 10% 25V 0603 4.7nF 10% 63V 22nF 10% 25V 0603 4.7nF 10% 63V 22nF 10% 25V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 4.7nF 10% 63V 22nF 10% 25V 0603 4.7nF 10% 63V 22nF 10% 25V 0603 1.5nF 50V 82pF 5% 50V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 100nF 10% 16V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 220µF 20% 35V 100nF 10% 16V 0603 10nF 10% 50V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 220µF 20% 35V 220nF 10% 16V 220nF 10% 16V 1.5nF 50V 82pF 5% 50V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 100nF 10% 16V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 220µF 20% 35V 100nF 10% 16V 0603 10nF 10% 50V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 220µF 20% 35V 220nF 10% 16V

2201 2202 2204 2205 2206 2207 2212 2215 2216 2218 2220 2221 2222 2224 2225 2233 2233 2233 2234 2234 2234 2238 2239 2243 2243 2243 2244 2244 2244 2255 2255 2256 2256 2260 2261 2270 2270 2271 2271 2309 2310 2315 2315 2316 2318 2319 2319 2330 2334 2335 2340 2355 2359 2360 2365 2366 2409 2410 2415 2415 2416 2418 2419 2419 2430 2434 2435 2440 2455 2459 2460 2465

2466 2509 2510 2515 2515 2516 2518 2519 2519 2530 2534 2535 2540 2555 2559 2560 2565 2566 2609 2610 2615 2615 2616 2618 2619 2619 2630 2634 2635 2640 2655 2659 2660 2665 2666 2730 2732 2733 2734 2734 2740 2742 2743 2744 2744 2752 2753 2759 2760 2770 2771 2780 2781 2799

2020 552 96326 4822 126 14247 4822 126 14226 4822 124 12084 4822 124 23002 4822 126 14305 4822 126 14305 4822 124 12084 4822 124 23002 4822 126 14305 2020 012 93764 4822 126 14305 5322 126 11583 4822 126 14305 4822 126 14305 2020 012 93764 2020 552 96326 2020 552 96326 4822 126 14247 4822 126 14226 4822 124 12084 4822 124 23002 4822 126 14305 4822 126 14305 4822 124 12084 4822 124 23002 4822 126 14305 2020 012 93764 4822 126 14305 5322 126 11583 4822 126 14305 4822 126 14305 2020 012 93764 2020 552 96326 2020 552 96326 2020 012 93764 2020 012 93764 4822 124 23002 4822 124 12084 4822 124 23002 2020 012 93764 2020 012 93764 4822 124 23002 4822 124 12084 4822 124 23002 4822 124 23002 4822 124 23002 5322 126 11578 5322 124 41945 5322 126 11578 5322 126 11578 5322 126 11578 5322 126 11578 5322 126 11583

220nF 10% 16V 1.5nF 50V 82pF 5% 50V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 100nF 10% 16V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 220µF 20% 35V 100nF 10% 16V 0603 10nF 10% 50V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 220µF 20% 35V 220nF 10% 16V 220nF 10% 16V 1.5nF 50V 82pF 5% 50V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 100nF 10% 16V 0603 1µF 20% 50V 10µF 16V 100nF 10% 16V 0603 220µF 20% 35V 100nF 10% 16V 0603 10nF 10% 50V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 220µF 20% 35V 220nF 10% 16V 220nF 10% 16V 220µF 20% 35V 220µF 20% 35V 10µF 16V 1µF 20% 50V 10µF 16V 220µF 20% 35V 220µF 20% 35V 10µF 16V 1µF 20% 50V 10µF 16V 10µF 16V 10µF 16V 1nF 10% 50V 0603 22µF 20% 35V 1nF 10% 50V 0603 1nF 10% 50V 0603 1nF 10% 50V 0603 1nF 10% 50V 0603 10nF 10% 50V 0603

4822 051 30221 4822 051 30102 4822 051 30272 4822 051 30332 4822 051 30221 4822 051 30102 4822 051 30272 4822 051 30332 4822 051 30333 4822 117 13632 4822 051 30221 4822 051 30102 4822 051 30272 4822 051 30332 4822 051 30221 4822 051 30102 4822 051 30272 4822 051 30332 4822 051 30101 4822 051 30103 4822 051 30222 4822 051 30103 4822 051 30152 4822 051 30682 4822 051 30103 4822 051 30222 4822 051 30272 4822 051 30561 4822 117 12917 4822 051 30101 4822 051 30103 4822 051 30222

220Ω 5% 0.062W 1k 5% 0.062W 2k7 5% 0.062W 3k3 5% 0.062W 220Ω 5% 0.062W 1k 5% 0.062W 2k7 5% 0.062W 3k3 5% 0.062W 33k 5% 0.062W 100k 1% 0.62W 0603 220Ω 5% 0.062W 1k 5% 0.062W 2k7 5% 0.062W 3k3 5% 0.062W 220Ω 5% 0.062W 1k 5% 0.062W 2k7 5% 0.062W 3k3 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 2k2 5% 0.062W 10k 5% 0.062W 1k5 5% 0.062W 6k8 5% 0.062W 10k 5% 0.062W 2k2 5% 0.062W 2k7 5% 0.062W 560Ω 5% 0.062W 1Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 2k2 5% 0.062W

3201 3202 3203 3203 3205 3206 3207 3207 3210 3211 3215 3216 3217 3217 3220 3221 3222 3222 3230 3231 3231 3232 3232 3232 3233 3233 3234 3234 3234 3240 3241 3241

3242 3242 3242 3243 3243 3244 3244 3244 3255 3255 3256 3256 3257 3257 3259 3270 3270 3271 3271 3272 3272 3274 3301 3302 3306 3307 3308 3309 3310 3311 3315 3318 3325 3327 3328 3330 3336 3336 3337 3340 3355 3361 3361 3362 3401 3402 3406 3407 3408 3409 3410 3411 3415 3418 3425 3427 3428 3430 3436 3436 3437 3440 3455 3461 3461 3462 3501 3502 3506 3507 3508 3509 3510 3511 3515 3518 3525 3527 3528 3530 3536 3536 3537 3540 3555 3561 3561 3562 3601

4822 051 30103 4822 051 30152 4822 051 30682 4822 051 30103 4822 051 30222 4822 051 30272 4822 051 30561 4822 117 12917 4822 051 30562 4822 117 11817 4822 051 30153 4822 051 30332 4822 051 30222 4822 051 30471 4822 117 12917 4822 051 30562 4822 117 11817 4822 051 30153 4822 051 30332 4822 051 30222 4822 051 30471 4822 117 12917 4822 117 12902 4822 051 30103 4822 117 12903 4822 117 13632 4822 117 13632 4822 051 30181 4822 117 12864 4822 051 30682 5322 117 11726 5322 117 11726 4822 117 11449 4822 117 11449 4822 051 30102 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 051 30103 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 117 12902 4822 051 30103 4822 117 12903 4822 117 13632 4822 117 13632 4822 051 30181 4822 117 12864 4822 051 30153 5322 117 11726 5322 117 11726 4822 117 11449 4822 117 11449 4822 051 30102 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 051 30103 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 117 12902 4822 051 30103 4822 117 12903 4822 117 13632 4822 117 13632 4822 051 30181 4822 117 12864 4822 051 30682 5322 117 11726 5322 117 11726 4822 117 11449 4822 117 11449 4822 051 30102 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 051 30103 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 117 12902

10k 5% 0.062W 1k5 5% 0.062W 6k8 5% 0.062W 10k 5% 0.062W 2k2 5% 0.062W 2k7 5% 0.062W 560Ω 5% 0.062W 1Ω 5% 0.062W 5k6 5% 0.063W 1k2 1% 0.062W 15k 5% 0.062W 3k3 5% 0.062W 2k2 5% 0.062W 470Ω 5% 0.062W 1Ω 5% 0.062W 5k6 5% 0.063W 1k2 1% 0.062W 15k 5% 0.062W 3k3 5% 0.062W 2k2 5% 0.062W 470Ω 5% 0.062W 1Ω 5% 0.062W 8k2 1% 0.063W 0603 10k 5% 0.062W 1k8 1% 0.063W 100k 1% 0.62W 0603 100k 1% 0.62W 0603 180Ω 5% 0.062W 82k 5% 0.6W 6k8 5% 0.062W 10Ω 5% 10Ω 5% 2k2 5% 0.1W 0805 2k2 5% 0.1W 0805 1k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 10k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 8k2 1% 0.063W 0603 10k 5% 0.062W 1k8 1% 0.063W 0603 100k 1% 0.62W 0603 100k 1% 0.62W 0603 180Ω 5% 0.062W 82k 5% 0.6W 15k 5% 0.062W 10Ω 5% 10Ω 5% 2k2 5% 0.1W 0805 2k2 5% 0.1W 0805 1k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 10k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 8k2 1% 0.063W 10k 5% 0.062W 1k8 1% 0.063W 100k 1% 0.62W 100k 1% 0.62W 180Ω 5% 0.062W 82k 5% 0.6W 6k8 5% 0.062W 10Ω 5% 10Ω 5% 2k2 5% 0.1W 0805 2k2 5% 0.1W 0805 1k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 10k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 8k2 1% 0.063W


EN 114 3602 3606 3607 3608 3609 3610 3611 3615 3618 3625 3627 3628 3630 3636 3636 3637 3640 3655 3661 3661 3662 3732 3732 3733 3733 3742 3742 3743 3743 3749 3750 3751 3752 3754 3755 3760 3765 3770 3771 3780 3781

10.

4822 051 30103 4822 117 12903 4822 117 13632 4822 117 13632 4822 051 30181 4822 117 12864 4822 051 30153 5322 117 11726 5322 117 11726 4822 117 11449 4822 117 11449 4822 051 30102 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 051 30103 5322 117 11726 4822 051 30475 4822 117 12891 5322 117 11726 4822 051 30152 4822 051 30272 4822 051 30102 4822 051 30221 4822 051 30152 4822 051 30272 4822 051 30102 4822 051 30221 4822 051 30103 4822 051 30471 4822 117 12925 4822 117 12925 4822 051 30102 4822 117 13632 4822 051 30471 4822 117 13632 4822 117 13632 4822 117 13632 4822 117 13632 4822 117 13632

10k 5% 0.062W 1k8 1% 0.063W 100k 1% 0.62W 100k 1% 0.62W 180Ω 5% 0.062W 82k 5% 0.6W 15k 5% 0.062W 10Ω 5% 10Ω 5% 2k2 5% 0.1W 0805 2k2 5% 0.1W 0805 1k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 10k 5% 0.062W 10Ω 5% 4M7 5% 0.062W 220k 1% 10Ω 5% 1k5 5% 0.062W 2k7 5% 0.062W 1k 5% 0.062W 220Ω 5% 0.062W 1k5 5% 0.062W 2k7 5% 0.062W 1k 5% 0.062W 220Ω 5% 0.062W 10k 5% 0.062W 470Ω 5% 0.062W 47k 1% 0.063W 47k 1% 0.063W 1k 5% 0.062W 100k 1% 0.62W 470Ω 5% 0.062W 100k 1% 0.62W 100k 1% 0.62W 100k 1% 0.62W 100k 1% 0.62W 100k 1% 0.62W

4822 157 11717 4822 157 11717 2422 536 00338 4822 157 11717 4822 157 11717 2422 536 00338 4822 157 11717 4822 157 11717 2422 536 00338 4822 157 11717 4822 157 11717 2422 536 00338 4822 157 11717 4822 157 11717 4822 157 11717 2422 549 43769

Bead 100MHz 50Ω Bead 100MHz 50Ω 33µH 10% Bead 100MHz 50Ω Bead 100MHz 50Ω 33µH 10% Bead 100MHz 50Ω Bead 100MHz 50Ω 33µH 10% Bead 100MHz 50Ω Bead 100MHz 50Ω 33µH 10% Bead 100MHz 50Ω Bead 100MHz 50Ω Bead 100MHz 50Ω Bead 100MHz 30Ω

5335 5360 5365 5435 5460 5465 5535 5560 5565 5635 5660 5665 5714 5719 5725 5753

6328 6334 6335 6355 6356 6359 6360 6428 6434 6435 6455 6456 6459 6460 6528 6534 6535 6555 6556 6559 6560 6628 6634 6635 6655 6656 6659 6660 6732

Spare Parts List

FM23

6742 6750 6760

4822 130 11551 UDZS10B 4822 130 10328 BAV99W 4822 130 10328 BAV99W

5322 130 42756 4822 209 30095 4822 209 30095 4822 209 30095 3198 010 42310 9338 028 20668 4822 130 42804 3198 010 42310 5322 130 60845 9322 161 86668 3198 010 42310 9338 028 20668 4822 130 42804 3198 010 42310 5322 130 60845 9322 161 86668 3198 010 42310 9338 028 20668 4822 130 42804 3198 010 42310 5322 130 60845 9322 161 86668 3198 010 42310 9338 028 20668 4822 130 42804 3198 010 42310 5322 130 60845 9322 161 86668 4822 130 60142 9322 168 88668 3198 010 42310 5322 130 61569 9322 150 89668 5322 130 42756 3198 010 42310 5322 130 42756 3198 010 42310 5322 130 42756

BC857C LM833D LM833D LM833D BC847BW LM311D BC817-25 BC847BW BC807-25 IRF7343 BC847BW LM311D BC817-25 BC847BW BC807-25 IRF7343 BC847BW LM311D BC817-25 BC847BW BC807-25 IRF7343 BC847BW LM311D BC817-25 BC847BW BC807-25 IRF7343 BC869 LM317D2T BC847BW BC868 LM337D2T BC857C BC847BW BC857C BC847BW BC857C

L/Switch Panel [LD] Various 0317 0320 1101

2422 025 13369 Socket 6P (ICON) 2422 025 16545 10P male hor. 2422 128 02927 Switch push 2P

2107 2120 2126

4822 124 12095 100µF 20% 16V 2020 024 90166 10µF 20% 35V 2020 552 96326 220nF 10% 16V

4822 130 11397 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11397 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11397 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11397 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11148 4822 130 11551

BAS316 UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B BAS316 UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B BAS316 UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B BAS316 UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZ4.7B UDZS10B

3101 3102 3103 3103 3104 3105 3105 3106 3107 3108 3109 3120 3121 3122 3123 3124 3125 3126 3127

4822 051 30151 4822 117 13632 4822 051 30102 4822 051 30221 4822 117 13632 4822 051 30102 4822 051 30331 4822 051 30151 4822 051 30471 4822 051 30103 4822 051 30101 4822 051 30472 4822 051 30472 4822 051 30102 4822 051 30103 4822 051 30102 4822 051 30332 4822 051 30474 4822 051 30474

150Ω 5% 0.062W 100k 1% 0.62W 0603 1k 5% 0.062W 220Ω 5% 0.062W 100k 1% 0.62W 0603 1k 5% 0.062W 330Ω 5% 0.062W 150Ω 5% 0.062W 470Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 470k 5% 0.062W 470k 5% 0.062W

5100

2422 549 43769 Bead 100MHz 30Ω

6101 6103

4822 130 11564 UDZ3.9B 9322 140 63685 Opt. sensor TEMD5000

7211 7225 7238 7260 7302 7315 7330 7340 7355 7365 7402 7415 7430 7440 7455 7465 7502 7515 7530 7540 7555 7565 7602 7615 7630 7640 7655 7665 7735 7735 7736 7745 7745 7746 7751 7753 7755 7761

6105 6127

4822 130 11564 UDZ3.9B 4822 130 83915 TLMV3100

7103 7103 7105 7105 7107 7107 7107 7120

5322 130 42756 9340 218 50115 5322 130 42756 9340 218 50115 9322 155 82667 9322 155 98667 9322 178 03667 5322 209 82941

BC857C BC857BW BC857C BC857BW IR receiver TSOP2236 IR receiver TSOP2236YA1 TSOP2136YA1 LM358D

Power Supply [P] Various 0006 0008 0010 0011 0015 0016 0017 0018 0020 0021 0022 0023 0024 0025 0041 0205 0206 0302 0305 0306 0307 0308 0319 0323 0333 0342 0352 0389 0390 0392 1004 1005 1041 1042 1045 1084 1084 1084 1110 1200 1260 1400 1401 1402 1450 1460

4822 265 11253 4822 265 11253 3122 421 60171 3122 421 60171 4822 695 00005 3122 121 67211 3122 121 67201 3122 121 67201 3122 121 67191 3122 121 67191 3122 121 67191 3122 121 67191 3122 121 67191 3122 121 67191 3122 124 36011 3104 308 78231 3104 308 78231 2422 025 10769 2422 025 10772 2422 025 08149 2422 025 17154 4822 265 20723 2422 025 10668 2422 025 15085 2422 025 12827 4822 267 10618 4822 267 10618 4822 267 10735 4822 267 10735 2422 025 09406 4822 070 32002 4822 071 55002 4822 071 55002 4822 071 55002 4822 071 55002 2422 086 10849 4822 071 31002 9965 000 07788 4822 071 55002 9965 000 07788 2122 662 00107 4822 253 30467 9965 000 07788 4822 252 60151 4822 280 10382 4822 280 10382

Fuse holder 2P Fuse holder 2P Spring Spring Insulating plate Clip MAX247 FT23 Clip large GBU Clip large GBU Clip small Clip small Clip small Clip small Clip small Clip small Thermo foam sheet Cooling clip TO-220 Cooling clip TO-220 9P male vert 2.00 12P male vert 2.00 6P male vert 2.00 20P female vert 2P male 7.92 13P male vert 2.00 10P male vert 3.96 9P male vert 3.96 7P male vert 2.00 7B male vert 2.00 3P male vert 2.50 3P male vert 2.50 4P male vert 2.00 Fuse 2A Fuse 5A Fuse 5A Fuse 5A Fuse 5A Fuse 1A 250V Fuse 1A Fuse 2A 250V UL Fuse 5A Fuse 2A 250V UL Resettable fuse 750mA Fuse 6,3A Fuse 2A 250V UL Surge prot. DSP-501N-A21F Relay 1P SDT-SS-109DM Relay 1P SDT-SS-109DM

2020 554 90148 2222 151 90048 2222 151 90062 4822 124 41751 4822 124 12056 2222 464 90017 4822 121 51288 3198 016 31020 2238 586 59812 4822 126 14305 5322 126 11583 4822 124 22652 5322 126 11583 2222 375 90161 4822 121 70617 4822 126 11254 4822 126 13864 4822 126 11254 4822 126 13864 4822 126 13862 5322 126 11583 4822 124 22652 4822 121 70617 2222 056 59222

470pF 20% 250V 47µF 20% 400V 47µF 20% 450V 47µF 20% 50V 1000µF 20% 35V 200pF 1% 630V 100pF 630V 25V 1nF 0603 100nF 80-20% 50V 100nF 10% 16V 0603 10nF 10% 50V 0603 2.2µF 20% 50V 10nF 10% 50V 0603 18nF 5% 1.6kV 10nF 5% 1.6kV 330pF 10% 2kV 330pF 10% 2kV 330pF 10% 2kV 330pF 10% 2kV 1.5nF 10% 2kV 10nF 10% 50V 0603 2.2µF 20% 50V 10nF 5% 1.6kV 2200µF 100V

2000 2001 2001 2002 2003 2004 2005 2006 2007 2007 2008 2009 2010 2011 2011 2012 2012 2013 2013 2014 2015 2016 2017 2020


Spare Parts List 2021 2022 2023 2023 2024 2024 2025 2026 2027 2028 2029 2030 2030 2032 2033 2033 2034 2035 2036 2038 2040 2040 2041 2042 2043 2043 2044 2045 2050 2050 2054 2054 2055 2058 2059 2059 2061 2061 2090 2090 2111 2112 2113 2113 2113 2114 2117 2117 2118 2118 2121 2122 2123 2123 2126 2126 2133 2137 2138 2203 2203 2205 2205 2210 2211 2212 2212 2217 2217 2218 2218 2219 2219 2222 2222 2223 2223 2224 2225 2226 2226 2227 2227 2228 2230 2231 2232 2232 2260 2261 2262 2263 2264 2264

2222 056 59222 4822 124 12056 2238 586 59812 4822 126 14305 4822 126 14043 5322 126 11579 2020 321 90041 4822 126 14238 3198 017 31530 4822 126 13883 4822 126 13883 2238 586 59812 4822 126 14305 4822 126 14494 2238 586 59812 4822 126 14305 4822 126 11979 2238 586 15623 4822 126 14494 3198 016 31020 2238 586 59812 4822 126 14305 4822 126 13883 4822 126 13883 2020 021 91543 2222 056 59222 4822 126 13883 4822 126 13883 2238 586 59812 4822 126 14305 2020 552 94427 4822 122 31765 3198 016 31020 4822 124 40756 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 40196 4822 124 40769 4822 126 13883 3198 016 31020 2020 012 93505 4822 124 80144 4822 124 80195 4822 126 13473 2222 780 15656 4822 126 12102 4822 126 11382 4822 126 13449 2222 056 59222 4822 121 51319 4822 126 14043 5322 126 11579 2238 586 59812 4822 126 14305 3198 029 32290 4822 126 14305 4822 124 21913 2238 586 59812 4822 126 14305 2020 552 95447 3198 032 64090 4822 124 40433 4822 126 13883 2238 586 59812 4822 126 14305 2222 780 15656 4822 126 12102 2020 558 90609 2222 375 90141 2020 021 91543 2222 151 90048 2020 552 94427 4822 122 31765 2020 552 94427 4822 122 31765 2020 021 91551 2020 021 91551 2238 586 59812 4822 126 14305 2020 552 94427 4822 122 31765 2020 021 91411 5322 121 10472 5322 121 10472 2020 552 94427 4822 122 31765 4822 126 14043 2020 021 91411 4822 126 13473 2222 861 15272 4822 121 51252 4822 126 13482

2200µF 100V 1000µF 20% 35V 100nF 80-20% 50V 100nF 10% 16V 0603 1µF 20% 16V 3.3nF 10% 63V 180nF 5% 250V 2.2nF 50V 0603 15nF 50V 220pF 5% 50V 220pF 5% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 22nF 10% 25V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 27pF 5% 2kV 1nF 10% 50V 0603 22nF 10% 25V 0603 1nF 25V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 220pF 5% 50V 220pF 5% 50V 47µF 20% 160V 2200µF 100V 220pF 5% 50V 220pF 5% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 100pF 5% 50V 100pF 2% 63V 1206 1nF 25V 0603 1µF 20% 100V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 220µF 20% 16V 4.7µF 20% 100V 220pF 5% 50V 1nF 25V 0603 10µF 20% 25V 220µF 20% 25V 470µF 20% 10V 220nF 80-20% 50V 330nF 10% 16V 330nF 10% 16V 1nF 10% 1kV 1nF 10% 2kV 2200µF 100V 1µF 10% 63V 1µF 20% 16V 3.3nF 10% 63V 100nF 80-20% 50V 100nF 10% 16V 0603 22µF 20% 25V 100nF 10% 16V 0603 1µF 20% 63V 100nF 80-20% 50V 100nF 10% 16V 0603 2.2µF 80-20% 16V 2.2µF 20% 25V 47µF 20% 25V 220pF 5% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 330nF 10% 16V 330nF 10% 16V 4.7nF 10% 1kV 3.3nF 5% 1.6kV 47µF 20% 160V 47µF 20% 400V 100pF 5% 50V 100pF 2% 63V 1206 100pF 5% 50V 100pF 2% 63V 1206 2200µF 20% 25V 2200µF 20% 25V 100nF 80-20% 50V 100nF 10% 16V 0603 100pF 5% 50V 100pF 2% 63V 1206 1000µF 20% 35V 47µF 25V 47µF 25V 100pF 5% 50V 100pF 2% 63V 1206 1µF 20% 16V 1000µF 20% 35V 220nF 80-20% 50V 2.7nF 5% 50V 470nF 5% 63V 470nF 80/20% 16V

2265 2266 2267 2268 2269 2270 2290 2291 2292 2293 2294 2304 2305 2305 2306 2306 2322 2322 2324 2324 2343 2352 2352 2364 2364 2370 2370 2376 2376 2380 2381 2381 2382 2385 2393 2393 2400 2401 2401 2402 2403 2404 2405 2405 2406 2407 2465 2503 2503 2504 2505 2505 2507 2507 2508 2509 2509 2510 2511 2511 2512 2512 2513 2513 2530 2530 2532 2533 2540 2541 2600 2601 2605 2608 2610 2612 2613 2616 2640 2641 2642 2651 2653 2654 2655 2655 2656 2662 2663 2664 2665 2666 2670 2670

4822 126 14241 4822 126 14494 5322 126 10223 4822 126 13473 2020 021 91524 4822 124 40433 5322 126 11583 4822 126 13883 2020 021 91354 4822 126 13883 2020 021 91354 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 22652 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 3198 016 31020 2238 586 59812 4822 126 14305 3198 016 31020 3198 017 41050 2238 586 59812 4822 126 14305 4822 126 13589 4822 121 10512 4822 126 13589 2020 554 90148 2020 554 90148 4822 126 14525 2020 554 90148 4822 126 13841 4822 126 14525 2020 554 90148 4822 124 40207 2222 151 90061 2222 151 90062 5322 126 11578 2020 021 91354 3198 028 44790 2020 552 94427 4822 122 31765 4822 124 12032 2020 552 94427 4822 122 31765 4822 124 81145 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 40207 5322 124 40641 4822 124 40207 4822 124 40207 4822 124 40207 4822 124 40207 4822 122 33799 4822 122 33799 2222 479 90086 3198 016 31020 4822 121 70581 5322 126 11578 5322 126 11578 2222 157 57331 4822 126 13881 3198 016 31020 3198 016 31020 5322 126 11583 4822 126 14241 4822 124 40433 2238 780 15654 4822 121 51319 4822 126 14305 4822 124 80061 4822 124 40207 4822 124 40207 4822 126 13881 4822 126 13193 2238 586 59812 4822 126 14305

330pF 50V 0603 22nF 10% 25V 0603 4.7nF 10% 63V 220nF 80-20% 50V 220µF 20% 25V 47µF 20% 25V 10nF 10% 50V 0603 220pF 5% 50V 1000µF 20% 50V 220pF 5% 50V 1000µF 20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 2.2µF 20% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 1nF 25V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 1nF 25V 0603 1µF 10V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 470nF 275V 220nF 20% 275V 470nF 275V 470pF 20% 250V 470pF 20% 250V 47pF 5% 1kV 470pF 20% 250V 1nF 20% 250V 47pF 5% 1kV 470pF 20% 250V 100µF 20% 25V 22µF 20% 450V 47µF 20% 450V 1nF 10% 50V 0603 1000µF 20% 50V 47µF 20% 35V 100pF 5% 50V 100pF 2% 63V 1206 4.7µF 20% 50V 100pF 5% 50V 100pF 2% 63V 1206 1000µF 20% 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100µF 20% 25V 10µF 20% 100V 100µF 20% 25V 100µF 20% 25V 100µF 20% 25V 100µF 20% 25V 1nF 10% 1kV 1nF 10% 1kV 1µF 400V 5% 1nF 25V 0603 1.5nF 5% 2kV 1nF 10% 50V 0603 1nF 10% 50V 0603 330µF 450V 470pF 5% 50V 1nF 25V 0603 1nF 25V 0603 10nF 10% 50V 0603 330pF 50V 0603 47µF 20% 25V 220nF 10% 16V 1µF 10% 63V 100nF 10% 16V 0603 1000µF 20% 25V 100µF 20% 25V 100µF 20% 25V 470pF 5% 50V 4.7nF 10% 63V 100nF 80-20% 50V 100nF 10% 16V 0603

FM23 2671 2671 2671 2672 2673 2674 2700 2701 2703 2707 2709

10.

EN 115

2238 586 59812 3198 017 34730 4822 126 14305 4822 126 14305 4822 121 43343 4822 121 41664 4822 124 80791 5322 126 11583 4822 124 80791 5322 126 11583 4822 124 80791

100nF 80-20% 50V 47nF 16V 0603 100nF 10% 16V 0603 100nF 10% 16V 0603 4.7nF 10% 400V 22nF 10% 400V 470µF 20% 16V 10nF 10% 50V 0603 470µF 20% 16V 10nF 10% 50V 0603 470µF 20% 16V

4822 117 13632 4822 051 30153 4822 051 20393 4822 051 30333 4822 051 30103 4822 051 20472 4822 051 30102 4822 051 30102 4822 051 30153 4822 051 30561 4822 051 20472 4822 051 30103 4822 116 52191 4822 116 52176 4822 051 30102 4822 116 52191 4822 116 52176 4822 051 30102 4822 051 30563 4822 053 11688 4822 051 30331 4822 117 12902 4822 117 12925 4822 050 27503 4822 117 12903 4822 101 11383 4822 117 12925 4822 117 10362 4822 051 30102 4822 051 30183 2322 704 61103 2322 704 61103 4822 051 30222 4822 051 30103 4822 117 13632 4822 051 30105 4822 117 10837 4822 051 30333 4822 051 30471 4822 051 20472 4822 051 30102 4822 051 30102 4822 053 20565 4822 051 30154 4822 051 20472 4822 051 30123 4822 052 10398 4822 051 20399 2322 662 93135 2322 662 93131 2322 662 93135 4822 050 21003 4822 051 30331 4822 051 30101 4822 051 30331 2322 730 61224 4822 051 20105 4822 117 12925 4822 051 30102 4822 051 30103 4822 051 30102 4822 051 30103 4822 051 30153 4822 051 30103 4822 117 12925 4822 116 83866 4822 117 13632 4822 116 83866 4822 117 13632 4822 051 30101 4822 051 30222 4822 051 30103 4822 051 10102 4822 051 30103 4822 117 12925 4822 117 12925 4822 117 12925 4822 117 12925 4822 051 30101

100k 1% 0.62W 15k 5% 0.062W 39k 5% 0.1W 33k 5% 0.062W 10k 5% 0.062W 4k7 5% 0.1W 1k 5% 0.062W 1k 5% 0.062W 15k 5% 0.062W 560Ω 5% 0.062W 4k7 5% 0.1W 10k 5% 0.062W 33Ω 5% 0.5W 10Ω 5% 0.5W 1k 5% 0.062W 33Ω 5% 0.5W 10Ω 5% 0.5W 1k 5% 0.062W 56k 5% 0.062W 6Ω8 5% 2W 330Ω 5% 0.062W 8k2 1% 0.063W 0603 47k 1% 0.063W 0603 75k 1% 0.6W 1k8 1% 0.063W 0603 470Ω 30% LIN 47k 1% 0.063W 0603 7k5 1% 0.1W 1k 5% 0.062W 18k 5% 0.062W 11k 1% 11k 1% 2k2 5% 0.062W 10k 5% 0.062W 100k 1% 0.62W 0603 1M 5% 0.062W 100k 1% 0.1W 33k 5% 0.062W 470Ω 5% 0.062W 4k7 5% 0.1W 1k 5% 0.062W 1k 5% 0.062W 5M6 5% 0.25W 150k 5% 0.062W 4k7 5% 0.1W 12k 5% 0.062W 3Ω9 5% 0.33W 39Ω 5% 0.1W PTC 500V 100Ω 25% PTC 10Ω PTC 500V 100Ω 25% 10k 1% 0.6W 330Ω 5% 0.062W 100Ω 5% 0.062W 330Ω 5% 0.062W 220k 5% 1M 5% 0.1W 47k 1% 0.063W 0603 1k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 15k 5% 0.062W 10k 5% 0.062W 47k 1% 0.063W 0603 1M 5% 0.5W 100k 1% 0.62W 0603 1M 5% 0.5W 100k 1% 0.62W 0603 100Ω 5% 0.062W 2k2 5% 0.062W 10k 5% 0.062W 1k 2% 0.25W 10k 5% 0.062W 47k 1% 0.063W 0603 47k 1% 0.063W 0603 47k 1% 0.063W 0603 47k 1% 0.063W 0603 100Ω 5% 0.062W

3003 3004 3005 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3053 3054 3056 3057 3057 3058 3058 3061 3062 3064 3065 3066 3067 3070 3071 3075 3076 3077 3078 3080 3081 3082 3083 3084 3085 3086 3087 3088 3090


EN 116 3090 3091 3092 3092 3093 3095 3096 3097 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3120 3121 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130 3131 3132 3133 3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3146 3147 3200 3201 3202 3203 3204 3205 3212 3213 3214 3216 3217 3218 3219 3224 3225 3226 3228 3240 3241 3260 3261 3262 3264 3268 3268 3292 3300 3301 3302 3302 3303 3303 3304 3305 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318

10.

4822 051 30471 4822 051 30102 4822 051 30471 4822 051 30472 4822 051 30102 4822 051 30471 4822 051 30562 4822 117 12968 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30474 4822 051 20564 4822 117 12891 4822 051 30102 4822 051 30103 4822 116 83303 4822 116 83303 4822 051 30331 4822 117 12903 4822 117 12902 4822 117 12925 2322 734 67503 4822 117 10965 2120 108 94004 2120 108 94004 4822 051 30222 4822 101 11187 4822 051 30333 4822 053 10103 4822 051 30102 2322 704 61103 4822 051 30103 4822 051 30101 4822 051 30331 4822 051 30331 4822 117 12925 4822 117 12925 4822 117 12925 4822 117 11503 4822 117 11503 2322 734 67503 2322 734 67503 5322 117 12487 2306 327 90035 2322 704 61103 2322 730 61224 4822 053 10103 4822 051 30479 4822 051 30101 4822 117 13632 4822 117 13632 4822 051 30102 4822 051 30105 4822 117 12889 4822 051 30102 4822 051 30103 4822 116 83303 4822 116 83303 5322 117 13028 2322 704 61103 4822 051 30103 4822 051 30151 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30102 4822 117 11188 4822 051 30682 4822 051 30102 4822 117 13632 4822 051 30561 4822 117 13579 4822 117 13579 4822 117 13579 8222 676 14191 4822 117 13579 8222 676 14201 4822 051 30102 2322 704 61103 4822 051 30008 2322 704 61103 2322 704 61103 4822 051 30102 4822 051 30102 4822 051 30472 4822 117 13579 4822 051 30102 2322 704 61103 2120 108 94004 5322 117 12487 4822 117 11596 2120 108 94004 4822 051 30102

FM23 470Ω 5% 0.062W 1k 5% 0.062W 470Ω 5% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 470Ω 5% 0.062W 5k6 5% 0.063W 0603 820Ω 5% 0.62W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 470k 5% 0.062W 560k 5% 0.1W 220k 1%; 1k 5% 0.062W 10k 5% 0.062W 0.1Ω 2W 0.1Ω 2W 330Ω 5% 0.062W 1k8 1% 0.063W 0603 8k2 1% 0.063W 0603 47k 1% 0.063W 0603 75k 1% 0.063W 0805 18k 1% 0.1W 7k5 1% 0.063W 0603 7k5 1% 0.063W 0603 2k2 5% 0.062W 1k 30% LIN 0.1W 33k 5% 0.062W 10k 5% 1W 1k 5% 0.062W 11k 1% 10k 5% 0.062W 100Ω 5% 0.062W 330Ω 5% 0.062W 330Ω 5% 0.062W 47k 1% 0.063W 0603 47k 1% 0.063W 0603 47k 1% 0.063W 0603 220Ω 1% 0.1W 220Ω 1% 0.1W 75k 1% 0.063W 0805 75k 1% 0.063W 0805 1k 1% 0.125W 0Ω22 1% 2W 11k 1% 220k 5% 10k 5% 1W 47Ω 5% 0.062W 100Ω 5% 0.062W 100k 1% 0.62W 0603 100k 1% 0.62W 0603 1k 5% 0.062W 1M 5% 0.062W 270k 1% 0.063W 0603 1k 5% 0.062W 10k 5% 0.062W 0.1Ω 2W 0.1Ω 2W 12k 1% 0.063W 0603 11k 1% 10k 5% 0.062W 150Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 20k 1% 0.1W 6k8 5% 0.062W 1k 5% 0.062W 100k 1% 0.62W 0603 560Ω 5% 0.062W 220k 1% 0.1W 0805 220k 1% 0.1W 0805 220k 1% 0.1W 0805 100k 1% 0.1W 220k 1% 0.1W 0805 57k6 1% 0.1W R 1k 5% 0.062W 11k 1% Jumper 0603 11k 1% 11k 1% 1k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 220k 1% 0.1W 0805 1k 5% 0.062W 11k 1% 7k5 1% 0.063W 0603 1k 1% 0.125W 390Ω 1% 0.1W 7k5 1% 0.063W 0603 1k 5% 0.062W

Spare Parts List 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3330 3331 3332 3333 3334 3335 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3373 3374 3375 3376 3377 3377 3378 3380 3381 3382 3382 3382 3383 3384 3385 3386 3387 3388 3389 3390 3390 3391 3392 3393 3393 3394 3395 3400 3401 3402 3403 3404 3450 3451 3452

4822 051 30472 4822 117 10833 4822 051 30102 4822 117 10833 5322 117 13028 4822 051 30102 4822 051 30471 4822 051 30472 4822 051 30103 4822 051 30103 4822 051 30102 4822 051 30472 4822 117 11144 4822 051 30102 4822 117 12955 4822 116 83933 4822 051 30102 4822 051 30472 4822 051 30102 4822 051 30103 4822 051 30103 4822 051 30102 4822 051 30102 4822 051 30472 4822 051 30102 4822 051 30331 4822 051 30331 4822 051 30102 4822 051 30472 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30472 4822 051 30222 4822 051 30472 4822 117 11817 4822 051 30472 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30103 4822 051 30103 2120 660 90042 4822 051 30272 4822 051 30101 4822 051 30101 9337 224 60116 4822 051 30103 4822 051 30472 4822 117 12925 4822 117 12925 4822 117 12925 4822 051 30103 4822 051 30472 4822 117 12925 4822 117 12925 4822 117 12925 4822 117 11449 4822 117 12955 8222 676 14211 4822 051 30471 4822 051 30471 4822 117 13632 4822 117 13632 4822 051 30471 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30103 4822 051 30103 4822 051 30102 4822 051 30102 4822 051 30103 4822 051 30102 4822 051 30103 2322 595 90021 4822 117 10118 4822 053 21475 4822 053 21475 4822 116 83872 2322 662 93131 2322 662 93131 2122 612 00051

3460 3461 3463 3465 3467 3469 3470 3501 3502

4822 051 30472 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30472 4822 051 30103 4822 051 30101 4822 051 30471

4k7 5% 0.062W 10k 1% 0.1W 1k 5% 0.062W 10k 1% 0.1W 12k 1% 0.063W 0603 1k 5% 0.062W 470Ω 5% 0.062W 4k7 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 3k9 1% 0.1W 1k 5% 0.062W 2k7 1% 0.1W 0805 15k 1% 0.1W 1k 5% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 330Ω 5% 0.062W 330Ω 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 4k7 5% 0.062W 2k2 5% 0.062W 4k7 5% 0.062W 1k2 1% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W PTC 16V 330Ω 2k7 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W Temp sensor KTY81-220 10k 5% 0.062W 4k7 5% 0.062W 47k 1% 0.063W 0603 47k 1% 0.063W 0603 47k 1% 0.063W 0603 10k 5% 0.062W 4k7 5% 0.062W 47k 1% 0.063W 0603 47k 1% 0.063W 0603 47k 1% 0.063W 0603 2k2 5% 0.1W 0805 2k7 1% 0.1W 0805 4k75 1% 0.1W 470Ω 5% 0.062W 470Ω 5% 0.062W 100k 1% 0.62W 0603 100k 1% 0.62W 0603 470Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W VDR 1mA/495V MAX 850V 1M 5% 0.5W 4M7 5% 0.5W 4M7 5% 0.5W 220Ω 5% 0.5W PTC 600V 10Ω 20% PTC 600V 10Ω 20% NTC DC B57464 6.7W 1Ω 20% 4k7 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 4k7 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 470Ω 5% 0.062W

3503 3505 3505 3506 3507 3508 3520 3520 3530 3608 3610 3611 3613 3614 3614 3615 3639 3640 3641 3642 3650 3651 3651 3652 3653 3654 3655 3663 3664 3665 3666 3667 3668 3670 3671 3673 3674 3700 3700 3701 3701 3702 3702 3703 3703 3706 3706 3707 3707 3708 3708 3709 3709 3999

5322 117 13026 4822 117 11139 5322 117 13034 2322 662 93131 4822 053 20225 2322 194 63109 4822 051 30102 4822 051 30109 4822 117 13632 4822 116 52179 5322 116 53564 4822 050 11002 2120 106 90565 2120 106 90565 2120 106 90639 2120 106 90639 4822 051 30102 4822 051 30331 4822 051 30471 4822 051 30101 2322 156 21305 4822 051 30103 4822 051 30472 4822 051 30105 4822 116 52231 4822 051 30103 4822 051 30102 4822 052 10108 4822 117 13579 4822 051 30103 4822 116 52175 4822 051 30103 4822 052 11102 4822 050 27504 4822 117 10833 4822 052 11102 4822 053 20105 4822 051 30102 4822 051 30331 4822 051 30102 4822 051 30222 4822 051 30102 4822 051 30222 4822 051 30101 4822 051 30102 4822 051 30102 4822 051 30331 4822 051 30102 4822 051 30222 4822 051 30102 4822 051 30222 4822 051 30101 4822 051 30102 4822 051 30102

4k7 1% 0.063W 0603 1k5 1% 0.1W 1k5 1% 0.063W 0603 PTC 600V 10Ω 20% 2M2 5% 0.25W 10Ω 5% 2W 1k 5% 0.062W 10Ω 5% 0.062W 100k 1% 0.62W 0603 12Ω 5% 0.5W 3Ω3 5% 0.5W 1k 1% 0.4W 0Ω1 5% 2W 0Ω1 5% 2W 0Ω12 5% 2W 0Ω12 5% 2W 1k 5% 0.062W 330Ω 5% 0.062W 470Ω 5% 0.062W 100Ω 5% 0.062W 1M3 1% 10k 5% 0.062W 4k7 5% 0.062W 1M 5% 0.062W 820Ω 5% 0.5W 10k 5% 0.062W 1k 5% 0.062W 1Ω 5% 0.33W 220k 1% 0.1W 0805 10k 5% 0.062W 100Ω 5% 0.5W 10k 5% 0.062W 1k 5% 0.5W 750k 1% 0.6W 10k 1% 0.1W 1k 5% 0.5W 1M 5% 0.25W 1k 5% 0.062W 330Ω 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 330Ω 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W

5001 5002 5003 5120 5200 5220 5224 5225 5260 5268 5290 5291 5292 5293 5401 5402 5500 5600

8222 289 53691 3128 138 40371 4822 157 71442 3128 138 40381 3198 018 71010 3128 138 70541 2422 535 95273 2422 535 95273 3198 018 71010 2422 536 00288 3128 138 40391 4822 157 71467 4822 157 71467 4822 157 71467 3122 138 38901 3122 138 38901 3128 138 40361 3128 138 40351

5612 5703 5704 5709 5710

4822 157 11411 4822 157 71414 4822 157 11499 4822 157 71414 4822 157 11499

Driver transf. CE136H Resonant transf. CE423D 150µH 10% Coil CU20V 100µH 10% VCC transf. CT296F 6.8µH 20% 6.8µH 20% 100µH 10% 100µH 10% Audio transf. CU15 39µH 10% 39µH 10% 39µH 10% Mains filter CU28D3 Mains filter CU28D3 Standby transf. CE165T Preconditioner transf. CE423D Bead 100MHz 1000µH 10% Bead 100MHz 60Ω 1000µH 10% Bead 100MHz 60Ω

4822 130 11397 4822 130 11397 4822 130 30621 4822 130 30621 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 34281

BAS316 BAS316 1N4148 1N4148 BAS316 BAS316 BAS316 BZX79-B15

6004 6005 6007 6008 6009 6010 6011 6012


Spare Parts List 6013 6018 6019 6021 6021 6022 6023 6027 6028 6031 6032 6033 6034 6035 6041 6042 6044 6045 6045 6050 6053 6054 6055 6061 6075 6077 6082 6086 6095 6111 6112 6113 6117 6120 6123 6132 6133 6142 6202 6205 6206 6211 6213 6216 6224 6224 6225 6225 6230 6230 6232 6260 6267 6290 6291 6293 6312 6312 6313 6314 6321 6321 6322 6324 6325 6333 6333 6334 6335 6340 6340 6341 6342 6344 6347 6348 6362 6364 6365 6375 6376 6390 6460 6461 6470 6471 6501 6502 6503 6504 6505 6510 6511 6512

4822 130 34281 4822 130 11397 4822 130 11397 4822 130 32961 9340 550 66112 4822 130 11397 4822 130 11397 4822 130 30621 4822 130 30621 9322 129 37685 9322 129 37685 4822 130 11594 4822 130 11397 4822 130 11397 9322 167 08687 9322 150 18685 9322 167 08687 4822 130 32961 9340 550 66112 4822 130 31024 4822 130 42488 4822 130 42488 4822 130 42488 4822 130 31024 9336 018 60133 9336 018 60133 4822 130 11397 4822 130 83757 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11152 4822 130 11596 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 42488 4822 130 11397 4822 130 11152 4822 130 11397 9322 128 65685 4822 130 11397 4822 130 11152 9322 164 40682 9322 173 47687 9322 164 40682 9322 173 47687 4822 130 42488 5322 130 31938 4822 130 11522 4822 130 11421 9322 161 77682 4822 130 11596 9322 131 78682 4822 130 11596 4822 130 11397 4822 130 11528 4822 130 11528 4822 130 11397 4822 130 11397 4822 130 11528 4822 130 11528 4822 130 11397 4822 130 11416 4822 130 11397 4822 130 11528 4822 130 11528 4822 130 11397 4822 130 11397 4822 130 11528 4822 130 11528 4822 130 11397 4822 130 10838 4822 130 10654 4822 130 20297 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 4822 130 11397 9336 018 60133 9336 018 60133 9322 128 65685 9322 128 65685 9322 161 76682 9322 099 61685 9322 099 61685 9322 099 61685

BZX79-B15 BAS316 BAS316 BYV28-200 BYV28-200/24 BAS316 BAS316 1N4148 1N4148 BZM55-C5V6 BZM55-C5V6 BZX284-C47 BAS316 BAS316 STTH2003CF BZX384-C47 STTH2003CF BYV28-200 BYV28-200/24 BZX79-B18 BYD33D BYD33D BYD33D BZX79-B18 BZT03-C300 BZT03-C300 BAS316 MCL4148 BAS316 BAS316 BAS316 BAS316 UDZ18B BYW29EX-200 BAS316 BAS316 BAS316 BYD33D BAS316 UDZ18B BAS316 RS1G BAS316 UDZ18B STPS20L40CF STPS20L40CFP STPS20L40CF STPS20L40CFP BYD33D BYV27-200 UDZ15B BT151X-500R SB540L-7024 BYW29EX-200 D4SBL20US-4100 BYW29EX-200 BAS316 1PS76SB10 1PS76SB10 BAS316 BAS316 1PS76SB10 1PS76SB10 BAS316 PDZ6.8B BAS316 1PS76SB10 1PS76SB10 BAS316 BAS316 1PS76SB10 1PS76SB10 BAS316 UDZ3.3B BAT254 BT169B BAS316 BAS316 BAS316 BAS316 BAS316 BAS316 BAS316 BAS316 BAS316 BAS316 BZT03-C300 BZT03-C300 RS1G RS1G SB340L-7024 BYG10J BYG10J BYG10J

6513 6520 6530 6531 6600 6605 6605 6606 6606 6608 6609 6611 6611 6640 6641 6642 6643 6651 6652 6653 6653 6654 6660 6661 6663 6665 6700 6703 6706 6709

9322 099 61685 4822 130 11397 4822 130 11152 4822 130 11152 9322 131 67679 4822 130 80137 9322 161 81682 4822 130 80137 9322 161 81682 4822 130 11397 4822 130 32152 3139 120 52021 4822 130 83796 9339 680 20115 4822 130 11397 9339 680 20115 4822 130 11152 9339 680 20115 9339 680 20115 4822 130 11666 9322 129 39685 4822 130 11397 9322 128 65685 9322 128 65685 4822 130 11397 9339 680 20115 4822 130 11152 9339 680 20115 4822 130 11152 9339 680 20115

BYG10J BAS316 UDZ18B UDZ18B Bridge GBU8JL-7000 1N5406 1N5406L-7024 1N5406 1N5406L-7024 BAS316 BZT03-C18 BYV29X-500 BYV29F-500 PRLL5819 BAS316 PRLL5819 UDZ18B PRLL5819 PRLL5819 BZX284-C8V2 BZM55-C8V2 BAS316 RS1G RS1G BAS316 PRLL5819 UDZ18B PRLL5819 UDZ18B PRLL5819

7001 7002 7003 7005 7006 7007 7008 7009 7009 7010 7011 7017 7017 7018 7018 7020 7021 7022 7022 7042 7050 7052 7058 7058 7059 7059 7090 7090 7091 7091 7092 7093 7110 7111 7112 7117 7120 7121 7130 7134 7134 7135 7140 7142 7200 7202 7202 7212 7217 7220 7227 7230 7260 7304 7308 7326 7326 7327 7327 7330

9322 108 21682 9322 149 04682 9322 149 04682 9322 164 01687 9322 164 01687 4822 130 40854 4822 130 40854 3198 010 42310 9340 217 70115 4822 209 81397 4822 209 81397 5322 130 42756 9340 218 50115 3198 010 42310 9340 217 70115 9335 671 30126 9335 671 30126 3198 010 42310 9340 217 70115 4822 130 41646 9340 557 17118 9322 165 02668 3198 010 42310 9340 217 70115 4822 130 41646 4822 130 41782 5322 130 42756 9340 218 50115 5322 130 42756 9340 218 50115 4822 130 41246 4822 209 80591 4822 130 41646 4822 130 41646 9352 673 56112 9340 557 17118 9322 149 04682 4822 209 81397 4822 209 81397 3198 010 42310 9340 217 70115 3198 010 42310 9340 425 10115 4822 130 41646 4822 130 63316 5322 130 63289 9965 000 04199 9352 673 56112 9340 557 18127 9322 149 04682 4822 209 81397 4822 209 12334 9322 166 31682 4822 209 81397 4822 209 60177 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 4822 209 60177

MC34067P TCET1102 TCET1102 STU16NB50I STU16NB50I BC327 BC327 BC847BW BC847BW TL431CLPST TL431CLPST BC857C BC857BW BC847BW BC847BW BC517 BC517 BC847BW BC847BW BF423 PSMN035-150B IRFR18N15D BC847BW BC847BW BF423 BF422 BC857C BC857BW BC857C BC857BW BC327-25 LM317T BF423 BF423 TEA1507P/N1 PSMN035-150B TCET1102 TL431CLPST TL431CLPST BC847BW BC847BW BC847BW BC857BS BF423 BSN304 BSN20 BSN20 TEA1507P/N1 PSMN070-200P TCET1102 TL431CLPST L4940V85 L4973V3.3 TL431CLPST LM339D BC847BW BC847BW BC847BW BC847BW LM339D

FM23 7341 7341 7348 7348 7351 7351 7352 7352 7362 7362 7366 7370 7371 7375 7375 7376 7376 7389 7389 7391 7391 7393 7393 7460 7465 7465 7470 7500 7501 7502 7530 7531 7540 7608 7610 7640 7641 7650 7654 7654 7660 7700 7701 7701 7706 7707 7707

5322 130 42756 9340 218 50115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 4822 209 63709 5322 209 33172 4822 130 40959 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 5322 130 42756 9340 218 50115 5322 130 42756 9340 218 50115 3198 010 42310 9340 217 70115 4822 130 42804 5322 130 42756 9340 218 50115 4822 130 42804 9322 037 99682 9322 149 04682 4822 209 81397 9322 157 95668 9322 157 95668 4822 209 80817 5322 130 44593 9322 130 47687 4822 130 63316 4822 130 40981 9322 130 69682 5322 130 42756 9340 218 50115 5322 209 71759 9322 115 29668 3198 010 42310 9340 217 70115 9322 115 29668 3198 010 42310 9340 217 70115

10.

EN 117

BC857C BC857BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW LM324D PCF8574AT BC547B BC847BW BC847BW BC847BW BC847BW BC857C BC857BW BC857C BC857BW BC847BW BC847BW BC817-25 BC857C BC857BW BC817-25 TNY256P TCET1102 TL431CLPST STD16NE06L STD16NE06L L7805CV BC369 STY34NB50 BSN304 BC337-25 MC33368P BC857C BC857BW MCT7815CT SI9433DY BC847BW BC847BW SI9433DY BC847BW BC847BW

SCAVIO Panel [SC] Various 0301 0301 0305 0315 0318 0319 0320 0375 0376 0378 0378 0379 0380 0381 0382 0382 0385 0385 0388 0388 1100 1105 1170 1171 1270 1415 1570 1575 1670 1670 8631

2422 025 17136 2422 025 17396 2422 025 16705 2422 025 16542 2422 025 17233 2422 025 17047 2422 025 16545 2422 033 00401 2422 025 16768 2422 026 05071 2422 026 05273 2422 026 05274 2422 026 05275 4822 267 10994 2422 025 17253 2422 025 17274 2422 025 17253 2422 025 17274 2422 025 16703 2422 025 16704 2422 086 11009 2422 086 11031 2422 086 11031 2422 086 11013 2422 086 11031 2422 543 89022 2422 543 01115 2422 086 11031 2422 086 10964 2422 086 11031 3122 358 76492

20P male vert 1.25 20P male vert 1.25 12P male hor 2.00 2P male hor 2.00 32P female vert 1.00 13P male hor 2.00 10P male hor 2.00 24P fenale hor 1.91 9P female SUB-D Socket 4 x cinch WH-RD Socket 6 x cinch WH-RD Socket 6 x cinch Socket 6 x cinch Socket SVHS 10P male vert 2.54 10P male vert 10P male vert 2.54 10P male vert 7P male hor 2.00 8P male hor 2.00 Fuse SMD T1,0A 63V IEC Fuse SMD F500mA 63V UL Fuse SMD F500mA 63V UL Fuse SMD F315mA 32V UL Fuse SMD F500mA 63V UL Crystal 6MHz Crystal 24.576 MHz Fuse SMD F500mA 63V UL Fuse SMD T630mA 63V IEC Fuse SMD F500mA 63V UL SCAVIO wire

2238 586 59812 2238 586 59812 4822 126 14491 2238 586 59812 2238 586 59812

100nF 80-20% 50V 100nF 80-20% 50V 2.2µF 10V 100nF 80-20% 50V 100nF 80-20% 50V

2000 2001 2002 2003 2007


EN 118 2007 2009 2009 2012 2014 2020 2021 2022 2030 2034 2040 2041 2042 2060 2061 2061 2066 2066 2072 2077 2082 2088 2089 2090 2090 2097 2103 2112 2113 2115 2116 2117 2119 2120 2123 2134 2137 2140 2142 2142 2143 2144 2145 2146 2147 2150 2151 2152 2153 2156 2157 2158 2159 2164 2165 2165 2166 2166 2167 2168 2170 2170 2171 2171 2172 2172 2173 2173 2174 2174 2175 2175 2176 2176 2177 2177 2178 2178 2179 2179 2180 2180 2181 2181 2182 2182 2183 2183 2184 2184 2185 2185 2186 2186

10.

4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 5322 126 11583 2238 586 59812 3198 017 44740 2238 586 59812 3198 017 44740 5322 126 11583 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 5322 124 41945 5322 124 41945 5322 124 41945 2238 586 59812 2238 586 59812 2238 586 59812 4822 126 14305 3198 016 31080 3198 016 31080 5322 124 41945 2238 586 59812 3198 017 34730 5322 124 41945 2238 586 59812 3198 017 34730 5322 124 41945 2238 586 59812 5322 124 41945 5322 124 41945 5322 124 41945 2238 586 59812 4822 126 14305 4822 124 12095 5322 124 41945 2238 586 59812 3198 017 34730 5322 124 41945 5322 124 41945 3198 017 34730 3198 017 34730 5322 124 41945 5322 124 41945 2238 586 59812 3198 017 34730 5322 124 41945 4822 124 12095 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 12095 4822 124 23002 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305

FM23 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 10nF 10% 50V 0603 100nF 80-20% 50V 470nF 10V 0603 100nF 80-20% 50V 470nF 10V 0603 10nF 10% 50V 0603 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 22µF 20% 35V 22µF 20% 35V 22µF 20% 35V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 1pF 50V 0603 1pF 50V 0603 22µF 20% 35V 100nF 80-20% 50V 47nF 16V 0603 22µF 20% 35V 100nF 80-20% 50V 47nF 16V 0603 22µF 20% 35V 100nF 80-20% 50V 22µF 20% 35V 22µF 20% 35V 22µF 20% 35V 100nF 80-20% 50V 100nF 10% 16V 0603 100µF 20% 16V 22µF 20% 35V 100nF 80-20% 50V 47nF 16V 0603 22µF 20% 35V 22µF 20% 35V 47nF 16V 0603 47nF 16V 0603 22µF 20% 35V 22µF 20% 35V 100nF 80-20% 50V 47nF 16V 0603 22µF 20% 35V 100µF 20% 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100µF 20% 16V 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603

Spare Parts List 2187 2187 2188 2188 2189 2189 2190 2190 2191 2191 2192 2192 2193 2193 2195 2196 2197 2198 2199 2205 2205 2206 2206 2207 2207 2208 2210 2212 2212 2217 2220 2221 2222 2223 2224 2228 2230 2231 2232 2240 2247 2248 2249 2250 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2274 2275 2276 2280 2281 2282 2283 2284 2285 2286 2287 2288 2300 2301 2301 2302 2304 2304 2308 2310 2310 2311 2311 2318 2328 2335 2337 2337 2340 2340 2351 2351 2352 2352 2353 2354 2354 2355

2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 126 14127 5322 126 11581 2238 586 59812 4822 126 14305 2238 586 59812 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 3198 017 34730 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 2238 586 59812 4822 124 12095 2238 586 59812 4822 126 14305 4822 124 23002 2238 586 59812 4822 126 14305 5322 124 41945 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 5322 124 41945 5322 124 41945 4822 126 14305 2020 552 94427 4822 122 31765 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 23002 2238 586 59812 4822 126 14305 2238 586 59812

100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 39nF 10% 50V 3.9nF 10% 63V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 47nF 16V 0603 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100nF 80-20% 50V 100µF 20% 16V 100nF 80-20% 50V 100nF 10% 16V 0603 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 22µF 20% 35V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 22µF 20% 35V 22µF 20% 35V 100nF 10% 16V 0603 100pF 5% 50V 100pF 2% 63V 1206 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V

2355 2356 2356 2365 2370 2370 2372 2372 2375 2375 2376 2381 2381 2382 2382 2383 2383 2415 2416 2418 2419 2420 2420 2432 2432 2433 2433 2434 2434 2435 2435 2436 2436 2437 2437 2438 2439 2446 2446 2447 2447 2448 2448 2499 2499 2500 2500 2501 2502 2503 2504 2505 2506 2506 2511 2511 2513 2513 2515 2515 2520 2521 2522 2523 2524 2530 2531 2531 2533 2533 2534 2534 2535 2535 2537 2538 2541 2541 2545 2546 2547 2548 2550 2551 2552 2553 2557 2558 2559 2560 2562 2563 2564 2565

4822 126 14305 2238 586 59812 4822 126 14305 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 867 75339 4822 126 11669 3198 016 31020 3198 016 31020 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 126 13879 4822 126 13879 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 126 14226 4822 126 14226 4822 126 14226 4822 126 14226 4822 126 14226 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 5322 124 41945 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 3198 016 31020 3198 016 31020 2238 586 59812 4822 126 14305 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020 3198 016 31020

100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 33pF 5% 50V 0603 27pF 10% 50V 1nF 25V 0603 1nF 25V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 220nF 20% 16V 220nF 20% 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 82pF 5% 50V 0603 82pF 5% 50V 0603 82pF 5% 50V 0603 82pF 5% 50V 0603 82pF 5% 50V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 22µF 20% 35V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 1nF 25V 0603 1nF 25V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603


Spare Parts List 2566 2570 2572 2572 2573 2574 2574 2581 2581 2583 2583 2584 2584 2600 2600 2601 2601 2602 2602 2603 2603 2604 2604 2605 2605 2606 2606 2607 2607 2608 2608 2609 2609 2610 2610 2611 2611 2612 2612 2613 2613 2614 2614 2615 2615 2616 2616 2617 2617 2618 2618 2619 2619 2620 2620 2621 2621 2622 2622 2623 2623 2624 2624 2625 2625 2628 2628 2629 2630 2630 2640 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2655 2655 2656 2656 2657 2657 2658 2658 2659 2659 2660 2660 2661

3198 016 31020 3198 016 31020 2238 586 59812 4822 126 14305 4822 124 23002 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 122 33741 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 3198 016 31020 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 4822 124 23002 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812

1nF 25V 0603 1nF 25V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 10pF 10% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 1nF 25V 0603 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V

2661 2662 2662 2663 2663 2670 2670 2671 2671 2672 2672 2673 2673 2694 2695 2696 2697 2698 2699 2711 2711 2712 2715 2715 2716 2717 2721 2721 2722 2726 2727 2731 2731 2732 2735 2736 2737 2741 2741 2742 2746 2747 2751 2752 2755 2756 2757 2761 2762 2766 2767 2771 2772 2775 2776 2779 2780 2783 2784 2787 2788 2791 2792 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2810 2811 2812 2813 2814 2815 2816 2817 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828

4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 3198 016 31080 3198 016 31080 3198 016 31080 3198 016 31080 3198 016 31080 3198 016 31080 2020 552 94427 4822 122 31765 4822 126 14472 2238 586 59812 4822 126 14305 4822 122 33777 4822 126 14472 2020 552 94427 4822 122 31765 4822 126 14472 4822 122 33777 4822 126 14472 2020 552 94427 4822 122 31765 4822 126 14472 2238 586 59812 4822 122 33777 4822 126 14472 2020 552 94427 4822 122 31765 4822 126 14472 4822 122 33777 4822 126 14472 2020 552 94427 4822 126 14472 2238 586 59812 4822 122 33777 4822 126 14472 2020 552 94427 4822 126 14472 4822 122 33777 4822 126 14472 2020 552 94427 4822 126 14472 2020 552 94427 4822 126 14472 2020 552 94427 4822 126 14472 2020 552 94427 4822 126 14472 2020 552 94427 4822 126 14472 2020 552 94427 4822 126 14472 4822 126 14472 4822 126 14472 4822 126 14472 4822 126 14472 2238 586 59812 5322 124 41945 4822 124 12095 2238 586 59812 4822 124 23002 4822 124 23002 3198 016 31020 4822 124 12095 3198 016 31020 3198 016 31020 3198 016 31020 4822 126 14585 3198 016 31020 4822 124 23002 2238 586 59812 4822 126 14305 3198 016 31020 3198 016 31020 4822 124 23002 4822 124 23002 4822 126 14247 4822 124 23002 4822 126 14247 3198 016 31020 4822 126 14472 4822 126 14472 3198 016 31020

100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 1pF 50V 0603 1pF 50V 0603 1pF 50V 0603 1pF 50V 0603 1pF 50V 0603 1pF 50V 0603 100pF 5% 50V 100pF 2% 63V 1206 1µF 10% 10V 100nF 80-20% 50V 100nF 10% 16V 0603 47pF 5% 63V 1µF 10% 10V 100pF 5% 50V 100pF 2% 63V 1206 1µF 10% 10V 47pF 5% 63V 1µF 10% 10V 100pF 5% 50V 100pF 2% 63V 1206 1µF 10% 10V 100nF 80-20% 50V 47pF 5% 63V 1µF 10% 10V 100pF 5% 50V 100pF 2% 63V 1206 1µF 10% 10V 47pF 5% 63V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 100nF 80-20% 50V 47pF 5% 63V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 47pF 5% 63V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 100pF 5% 50V 1µF 10% 10V 1µF 10% 10V 1µF 10% 10V 1µF 10% 10V 1µF 10% 10V 100nF 80-20% 50V 22µF 20% 35V 100µF 20% 16V 100nF 80-20% 50V 10µF 16V 10µF 16V 1nF 25V 0603 100µF 20% 16V 1nF 25V 0603 1nF 25V 0603 1nF 25V 0603 100nF 10% 50V 1nF 25V 0603 10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 1nF 25V 0603 1nF 25V 0603 10µF 16V 10µF 16V 1.5nF 50V 10µF 16V 1.5nF 50V 1nF 25V 0603 1µF 10% 10V 1µF 10% 10V 1nF 25V 0603

FM23 2829 2830 2830 2831 2833 2834 2837 2838 2839 2840 2842 2842 2843 2844 2845 2848 2849 2850 2852 2852 2853 2854 2857 2858 2861 2861 2862 2863 2865 2867 2867 2868 2869 2870 2870 2874 2874 2879 2880 2880 2881 2881 2882 2882

10.

EN 119

4822 124 23002 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14247 4822 124 23002 4822 126 13881 4822 126 13881 4822 126 13881 4822 126 11669 2238 586 59812 4822 126 14305 4822 126 11669 3198 016 31020 4822 126 13883 4822 126 11669 3198 016 31020 4822 126 11669 2238 586 59812 4822 126 14305 4822 126 11669 3198 016 31020 3198 016 31020 4822 126 11669 2238 586 59812 4822 126 14305 4822 122 33777 4822 126 14472 4822 122 33777 3198 016 31020 4822 126 13879 4822 126 14472 4822 126 14247 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 4822 126 11669 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305

10µF 16V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 1.5nF 50V 10µF 16V 470pF 5% 50V 470pF 5% 50V 470pF 5% 50V 27pF 10% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 27pF 10% 50V 1nF 25V 0603 220pF 5% 50V 27pF 10% 50V 1nF 25V 0603 27pF 10% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 27pF 10% 50V 1nF 25V 0603 1nF 25V 0603 27pF 10% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 47pF 5% 63V 1µF 10% 10V 47pF 5% 63V 1nF 25V 0603 220nF 20% 16V 1µF 10% 10V 1.5nF 50V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 27pF 10% 50V 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603

4822 051 30474 4822 051 30759 4822 051 30222 4822 051 30472 4822 051 30474 4822 117 12891 4822 051 30103 4822 051 30471 4822 051 30759 4822 051 30222 4822 051 30472 4822 051 30474 4822 117 12891 4822 051 30103 4822 117 13632 4822 051 30472 4822 051 30222 4822 051 30223 4822 117 13632 4822 051 30222 4822 051 30102 4822 117 13632 4822 051 30222 4822 051 30223 4822 051 30472 4822 117 13632 4822 051 30102 4822 051 30222 4822 051 30222 4822 051 30102 4822 117 12891 4822 051 30102 4822 051 30222 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30222 4822 051 30103 4822 051 30472 4822 051 30103 4822 051 30472 4822 051 30759 4822 051 30271 4822 051 30223 4822 051 30221

470k 5% 0.062W 75Ω 5% 0.062W 2k2 5% 0.062W 4k7 5% 0.062W 470k 5% 0.062W 220k 1% 10k 5% 0.062W 470Ω 5% 0.062W 75Ω 5% 0.062W 2k2 5% 0.062W 4k7 5% 0.062W 470k 5% 0.062W 220k 1% 10k 5% 0.062W 100k 1% 0.62W 0603 4k7 5% 0.062W 2k2 5% 0.062W 22k 5% 0.062W 100k 1% 0.62W 0603 2k2 5% 0.062W 1k 5% 0.062W 100k 1% 0.62W 0603 2k2 5% 0.062W 22k 5% 0.062W 4k7 5% 0.062W 100k 1% 0.62W 0603 1k 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 220k 1% 1k 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 10k 5% 0.062W 4k7 5% 0.062W 10k 5% 0.062W 4k7 5% 0.062W 75Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 220Ω 5% 0.062W

3000 3001 3002 3003 3004 3005 3006 3008 3010 3011 3012 3013 3014 3015 3020 3021 3022 3023 3024 3025 3026 3030 3031 3032 3033 3034 3035 3036 3040 3041 3042 3043 3044 3050 3051 3052 3053 3054 3060 3061 3065 3066 3071 3072 3073 3074


EN 120 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3115 3116 3117 3119 3120 3121 3123 3134 3135 3136 3137 3138 3139 3140 3141 3142 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3164 3200 3201 3201 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3214 3215 3216 3217 3218 3219 3225

10.

4822 051 30561 4822 051 30759 4822 051 30271 4822 051 30223 4822 051 30221 4822 051 30561 4822 051 30759 4822 051 30271 4822 051 30223 4822 051 30221 4822 051 30561 4822 117 11817 4822 117 12968 4822 117 12968 4822 117 11817 4822 051 30561 4822 051 30331 4822 051 30331 4822 051 30561 4822 051 30102 4822 051 30102 4822 051 30471 4822 051 30391 4822 051 30102 4822 051 30102 4822 051 30152 4822 051 30681 4822 117 12903 4822 051 30391 4822 051 30222 4822 117 11817 4822 117 11817 4822 051 30222 4822 051 30222 4822 117 11817 4822 117 11817 4822 051 30222 4822 051 30271 4822 051 30223 4822 051 30102 4822 051 30271 4822 051 30223 4822 051 30102 4822 051 30271 4822 051 30223 4822 051 30102 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30271 4822 051 30223 4822 051 30561 4822 051 30471 4822 051 30101 4822 051 30008 4822 051 30479 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30102 4822 051 30103 4822 051 30332 4822 051 30101 4822 051 30101 4822 051 30102 4822 051 30102 4822 051 30472 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30472 4822 117 12139 4822 051 30472

FM23 560Ω 5% 0.062W 75Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 220Ω 5% 0.062W 560Ω 5% 0.062W 75Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 220Ω 5% 0.062W 560Ω 5% 0.062W 1k2 1% 0.062W 820Ω 5% 0.62W 820Ω 5% 0.62W 1k2 1% 0.062W 560Ω 5% 0.062W 330Ω 5% 0.062W 330Ω 5% 0.062W 560Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 470Ω 5% 0.062W 390Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k5 5% 0.062W 680Ω 5% 0.062W 1k8 1% 0.063W 0603 390Ω 5% 0.062W 2k2 5% 0.062W 1k2 1% 0.062W 1k2 1% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 1k2 1% 0.062W 1k2 1% 0.062W 2k2 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 1k 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 1k 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 1k 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 270Ω 5% 0.062W 22k 5% 0.062W 560Ω 5% 0.062W 470Ω 5% 0.062W 100Ω 5% 0.062W Jumper 0603 47Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 3k3 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 22Ω 5% 0.062W 4k7 5% 0.062W

Spare Parts List 3250 3251 3260 3261 3263 3274 3275 3276 3277 3278 3279 3284 3285 3286 3289 3290 3291 3292 3293 3294 3294 3295 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3326 3327 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3348 3349 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362

4822 051 30101 4822 051 30101 4822 051 30472 4822 051 30471 4822 051 30472 5322 117 12534 5322 117 12534 5322 117 12534 2322 734 65609 2322 734 65609 2322 734 65609 4822 051 30101 4822 051 30101 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 4822 051 30101 4822 051 30102 4822 051 30333 4822 051 30102 4822 051 30103 4822 051 30474 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30153 4822 051 30103 4822 051 30102 4822 051 30472 4822 051 30689 4822 051 30472 4822 051 30153 4822 051 30472 4822 051 30271 4822 051 30273 4822 051 30102 4822 051 30102 4822 117 12903 4822 051 30103 4822 117 12903 4822 051 30471 4822 051 30153 4822 051 30472 4822 051 30271 4822 051 30273 4822 051 30102 4822 051 30102 4822 117 12903 4822 051 30103 4822 117 12903 4822 051 30471 4822 051 30102 4822 051 30333 4822 051 30102 4822 051 30103 4822 051 30271 4822 051 30273 4822 051 30102 4822 051 30102 4822 117 12903 4822 051 30103 4822 117 12903 4822 051 30471 4822 051 30103 4822 051 30103 4822 051 30333 4822 051 30103 4822 051 30103 4822 051 30333 4822 051 30102 4822 051 30333 4822 051 30472 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30474 4822 117 13632 4822 051 30103 4822 051 30333 4822 051 30101 4822 051 30689 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30103 4822 051 30102 4822 051 30472 4822 051 30689 4822 051 30103 4822 051 30472 4822 051 30103

100Ω 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 470Ω 5% 0.062W 4k7 5% 0.062W 18Ω 2% 0.1W 18Ω 2% 0.1W 18Ω 2% 0.1W 56Ω 1% 0805 56Ω 1% 0805 56Ω 1% 0805 100Ω 5% 0.062W 100Ω 5% 0.062W 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 100Ω 5% 0.062W 1k 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 470k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 15k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 68Ω 5% 0.063W 0603 4k7 5% 0.062W 15k 5% 0.062W 4k7 5% 0.062W 270Ω 5% 0.062W 27k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k8 1% 0.063W 0603 10k 5% 0.062W 1k8 1% 0.063W 0603 470Ω 5% 0.062W 15k 5% 0.062W 4k7 5% 0.062W 270Ω 5% 0.062W 27k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k8 1% 0.063W 0603 10k 5% 0.062W 1k8 1% 0.063W 0603 470Ω 5% 0.062W 1k 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 270Ω 5% 0.062W 27k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k8 1% 0.063W 0603 10k 5% 0.062W 1k8 1% 0.063W 0603 470Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 33k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 33k 5% 0.062W 4k7 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 470k 5% 0.062W 100k 1% 0.62W 0603 10k 5% 0.062W 33k 5% 0.062W 100Ω 5% 0.062W 68Ω 5% 0.063W 0603 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 68Ω 5% 0.063W 0603 10k 5% 0.062W 4k7 5% 0.062W 10k 5% 0.062W

3363 3364 3365 3366 3367 3368 3369 3370 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3394 3395 3398 3399 3400 3401 3402 3404 3406 3410 3411 3413 3414 3414 3415 3415 3417 3418 3419 3420 3421 3422 3423 3424 3426 3428 3429 3430 3431 3432 3433 3435 3436 3448 3449 3450 3451 3452 3453 3460 3461 3462 3463 3464 3483 3485 3486 3487 3488 3489 3490 3494 3496 3502 3503 3506 3507 3510 3511 3512 3513

4822 051 30472 4822 051 30103 4822 051 30474 4822 117 12925 4822 051 30103 4822 051 30102 4822 051 30472 4822 051 30474 4822 051 30682 4822 051 30101 4822 051 30103 4822 051 30222 4822 051 30102 4822 117 13632 4822 051 30472 4822 051 30101 4822 051 30102 4822 051 30222 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 4822 051 30101 4822 051 30102 4822 051 30222 4822 051 30222 4822 051 30102 4822 051 30101 4822 051 30102 4822 051 30333 4822 051 30101 4822 051 30102 3198 031 11010 4822 051 30222 4822 051 30101 3198 031 11010 4822 051 30102 4822 051 30102 4822 051 30101 3198 031 11010 3198 031 11010 3198 031 11010 4822 051 30222 4822 051 30332 4822 051 30222 4822 051 30222 4822 051 30472 4822 051 30222 4822 051 30472 4822 051 30221 4822 051 30102 4822 051 30392 4822 051 30222 4822 051 30102 4822 051 30152 4822 117 12925 4822 051 30332 4822 051 30332 4822 051 30101 4822 051 30101 4822 051 30472 4822 051 30101 4822 051 30472 4822 051 30101 4822 051 30273 4822 117 12891 3198 031 11010 3198 031 11010 4822 051 30101 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 3198 031 11010 4822 051 30471 4822 051 30222 4822 051 30222 4822 051 30222 4822 051 30222 4822 051 30222 4822 051 30102 3198 031 14710 4822 051 30103 4822 051 30008 4822 051 30332 4822 051 30332 4822 051 30472 4822 051 30102 4822 051 30222 4822 051 30562 4822 051 30332

4k7 5% 0.062W 10k 5% 0.062W 470k 5% 0.062W 47k 1% 0.063W 0603 10k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 470k 5% 0.062W 6k8 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 100k 1% 0.62W 0603 4k7 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 100Ω 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 33k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 4 x 100Ω 5% 1206 2k2 5% 0.062W 100Ω 5% 0.062W 4 x 100Ω 5% 1206 1k 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 2k2 5% 0.062W 3k3 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 4k7 5% 0.062W 2k2 5% 0.062W 4k7 5% 0.062W 220Ω 5% 0.062W 1k 5% 0.062W 3k9 5% 0.063W 0603 2k2 5% 0.062W 1k 5% 0.062W 1k5 5% 0.062W 47k 1% 0.063W 0603 3k3 5% 0.062W 3k3 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 100Ω 5% 0.062W 27k 5% 0.062W 220k 1% 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 100Ω 5% 0.062W 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 4 x 100Ω 5% 1206 470Ω 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 4 x 470Ω 5% 1206 10k 5% 0.062W Jumper 0603 3k3 5% 0.062W 3k3 5% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 5k6 5% 0.063W 0603 3k3 5% 0.062W


Spare Parts List 3514 3515 3516 3517 3518 3519 3520 3530 3531 3532 3533 3534 3535 3536 3536 3537 3538 3539 3540 3541 3545 3547 3548 3550 3551 3552 3553 3554 3557 3558 3559 3560 3562 3564 3565 3568 3570 3571 3575 3580 3581 3582 3583 3590 3591 3592 3593 3594 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3615 3620 3621 3622 3623 3628 3630 3631 3632 3633 3634 3635 3636 3638 3640 3641 3653 3654 3655 3657 3658 3660 3661 3662 3663 3664 3665 3670 3673 3674 3675 3676 3677 3678 3679

4822 051 30472 4822 117 12925 4822 117 12925 4822 051 30102 4822 117 13632 4822 051 30222 4822 051 30222 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30222 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30221 4822 051 30102 4822 051 30102 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30008 4822 051 30101 4822 051 30101 4822 051 30102 4822 051 30472 4822 051 30101 4822 051 30101 4822 051 30472 4822 051 30332 4822 051 30332 4822 051 30332 4822 051 30332 4822 051 30472 4822 051 30332 4822 051 30332 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30479 4822 051 30101 4822 051 30103 4822 051 30103 4822 051 30479 4822 051 30102 4822 051 30101 4822 051 30102 4822 051 30102 4822 051 30332 4822 051 30472 4822 051 30332 4822 051 30103 4822 051 30332 4822 051 30102 4822 051 30222 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30103 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30222 4822 051 30103 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30102 4822 051 30101

4k7 5% 0.062W 47k 1% 0.063W 0603 47k 1% 0.063W 0603 1k 5% 0.062W 100k 1% 0.62W 0603 2k2 5% 0.062W 2k2 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 2k2 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 220Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W Jumper 0603 100Ω 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 3k3 5% 0.062W 3k3 5% 0.062W 3k3 5% 0.062W 3k3 5% 0.062W 4k7 5% 0.062W 3k3 5% 0.062W 3k3 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 47Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 47Ω 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 4k7 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 3k3 5% 0.062W 1k 5% 0.062W 2k2 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 2k2 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W

3680 3680 3681 3681 3682 3684 3684 3685 3685 3686 3710 3711 3713 3714 3716 3717 3718 3719 3720 3721 3723 3724 3726 3730 3731 3733 3734 3736 3740 3741 3743 3744 3746 3750 3751 3753 3754 3756 3760 3761 3763 3764 3766 3771 3772 3773 3775 3776 3777 3779 3780 3781 3783 3784 3785 3787 3788 3789 3791 3792 3793 3794 3795 3796 3797 3798 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3820 3821 3822 3840 3841 3843 3844 3845 3846

4822 051 30008 4822 051 30101 4822 051 30222 4822 051 30332 4822 051 30471 4822 051 30008 4822 051 30101 4822 051 30222 4822 051 30332 4822 051 30471 4822 051 30333 4822 051 30102 4822 051 30101 4822 051 30223 4822 051 30153 4822 051 30333 4822 051 30103 4822 051 30333 4822 051 30333 4822 051 30102 4822 051 30101 4822 051 30223 4822 051 30153 4822 051 30333 4822 051 30331 4822 051 30101 4822 051 30223 4822 051 30153 4822 051 30333 4822 051 30331 4822 051 30101 4822 051 30223 4822 051 30153 4822 051 30333 4822 051 30102 4822 051 30101 4822 051 30223 4822 051 30153 4822 051 30333 4822 051 30102 4822 051 30101 4822 051 30223 4822 051 30153 4822 051 30102 4822 051 30332 4822 051 30103 4822 051 30102 4822 051 30332 4822 051 30103 4822 051 30102 4822 051 30332 4822 051 30103 4822 051 30102 4822 051 30332 4822 051 30103 4822 051 30102 4822 051 30332 4822 051 30103 4822 051 30102 4822 051 30332 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30472 4822 051 30472 4822 051 30333 4822 051 30331 4822 051 30331 4822 051 30333 4822 117 13632 4822 051 30333 4822 117 13632 4822 117 13632 4822 117 13632 4822 117 13632 4822 051 30333 4822 051 30472 4822 051 30472 4822 051 30101 4822 051 30101 4822 051 30333 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30333 4822 051 30103 4822 051 30333 4822 051 30223 4822 051 30223 4822 051 30393 4822 051 30101 4822 051 30101 4822 051 30223

Jumper 0603 100Ω 5% 0.062W 2k2 5% 0.062W 3k3 5% 0.062W 470Ω 5% 0.062W Jumper 0603 100Ω 5% 0.062W 2k2 5% 0.062W 3k3 5% 0.062W 470Ω 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 15k 5% 0.062W 33k 5% 0.062W 10k 5% 0.062W 33k 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 15k 5% 0.062W 33k 5% 0.062W 330Ω 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 15k 5% 0.062W 33k 5% 0.062W 330Ω 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 15k 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 15k 5% 0.062W 33k 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 15k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 1k 5% 0.062W 3k3 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 4k7 5% 0.062W 33k 5% 0.062W 330Ω 5% 0.062W 330Ω 5% 0.062W 33k 5% 0.062W 100k 1% 0.62W 0603 33k 5% 0.062W 100k 1% 0.62W 0603 100k 1% 0.62W 0603 100k 1% 0.62W 0603 100k 1% 0.62W 0603 33k 5% 0.062W 4k7 5% 0.062W 4k7 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 33k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 33k 5% 0.062W 10k 5% 0.062W 33k 5% 0.062W 22k 5% 0.062W 22k 5% 0.062W 39k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W

FM23 3847 3848 3849 3850 3851 3853 3854 3855 3856 3857 3858 3859 3860 3860 3861 3862 3863 3863 3864 3865 3866 3867 3870 3879 3880 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3909 3910 3911 3912 3913 3917 3918 3919 3922 3923

10.

EN 121

4822 051 30393 4822 051 30393 4822 051 30101 4822 051 30223 4822 051 30223 4822 051 30393 4822 051 30101 4822 051 30101 4822 051 30223 4822 051 30393 4822 051 30393 4822 051 30101 4822 051 30332 4822 117 12902 4822 051 30223 4822 051 30273 4822 051 30332 4822 117 12902 4822 051 30223 4822 051 30273 4822 051 30101 4822 051 30101 4822 051 30101 4822 117 12925 4822 051 30471 4822 051 30472 4822 051 30333 4822 051 30471 4822 051 30471 4822 051 30471 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30103 4822 051 30103 4822 117 13632 4822 051 30102 4822 117 12925 4822 051 30472 4822 051 30101 4822 051 30472 4822 051 30102 4822 051 30102 4822 051 30102 4822 051 30472

39k 5% 0.062W 39k 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 22k 5% 0.062W 39k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 22k 5% 0.062W 39k 5% 0.062W 39k 5% 0.062W 100Ω 5% 0.062W 3k3 5% 0.062W 8k2 1% 0.063W 0603 22k 5% 0.062W 27k 5% 0.062W 3k3 5% 0.062W 8k2 1% 0.063W 0603 22k 5% 0.062W 27k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 47k 1% 0.063W 0603 470Ω 5% 0.062W 4k7 5% 0.062W 33k 5% 0.062W 470Ω 5% 0.062W 470Ω 5% 0.062W 470Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 100k 1% 0.62W 0603 1k 5% 0.062W 47k 1% 0.063W 0603 4k7 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 1k 5% 0.062W 4k7 5% 0.062W

2422 549 43062 2422 549 43062 4822 157 11074 2422 549 43062 2422 549 43062 2422 549 43769 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43769 2422 549 43062 4822 157 11074 2422 549 43769 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 2422 549 43062 2422 549 43062 2422 549 43062 2422 549 43062 2422 549 43062 2422 549 43062 2422 549 43062 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43769 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43769 4822 157 11074

Bead 100MHz 600Ω Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 30Ω Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 30Ω Bead 100MHz 600Ω 100µH 6% Bead 100MHz 30Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 30Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 30Ω 100µH 6%

5000 5008 5008 5020 5060 5090 5140 5140 5164 5164 5167 5196 5196 5197 5197 5198 5198 5199 5199 5210 5214 5220 5221 5222 5223 5224 5228 5300 5300 5302 5302 5352 5352 5520 5520 5521 5521 5522 5522 5523 5523 5524 5524 5530 5530


EN 122 5541 5541 5570 5572 5572 5574 5574 5628 5628 5630 5630 5642 5642 5643 5643 5644 5644 5645 5645 5646 5646 5647 5647 5648 5648 5649 5649 5670 5670 5672 5672 5673 5673 5796 5796 5798 5810 5810 5820 5820 5822 5822 5834 5834 5870 5870

10.

FM23

2422 549 43062 4822 157 11074 3198 018 51090 2422 549 43769 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43062 2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074 2422 549 43769 4822 157 11074 2422 549 43769 4822 157 11074 2422 549 43769 4822 157 11074

Bead 100MHz 600Ω 100µH 6% 10µH 10% 0603 Bead 100MHz 30Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6% Bead 100MHz 30Ω 100µH 6% Bead 100MHz 30Ω 100µH 6% Bead 100MHz 30Ω 100µH 6%

9322 149 10685 9322 149 10685 4822 130 10654 4822 130 10654 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 96685 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 10328 4822 130 83757 4822 130 83757 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 4822 130 10654 4822 130 10654 4822 130 10654 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 129 38685 4822 130 83757 4822 130 83757 4822 130 83757 4822 130 10654 4822 130 11422 4822 130 10654 4822 130 11422 4822 130 11422 4822 130 11422 9322 149 96685 4822 130 10654 4822 130 83757

BZM55-C33 BZM55-C33 BAT254 BAT254 BZM55-C33 BZM55-C33 BZM55-C33 BZX384-C2V4 BAV99W BAV99W BAV99W BAV99W BAV99W BAV99W BAV99W BAV99W BAV99W BAV99W MCL4148 MCL4148 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BAT254 BAT254 BAT254 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C6V8 MCL4148 MCL4148 MCL4148 BAT254 PLVA2650A BAT254 PLVA2650A PLVA2650A PLVA2650A BZX384-C2V4 BAT254 MCL4148

6001 6010 6022 6034 6071 6076 6091 6166 6200 6201 6202 6203 6204 6205 6206 6207 6208 6209 6210 6214 6274 6276 6277 6278 6302 6310 6311 6354 6355 6356 6357 6365 6366 6378 6379 6380 6380 6381 6388 6393 6399 6503 6507 6507

Spare Parts List 6508 6509 6630 6710 6711 6720 6721 6730 6731 6740 6741 6750 6751 6760 6761 6770 6771 6774 6775 6778 6779 6782 6783 6786 6787 6790 6791 6802 6805 6807 6820 6821

4822 130 10654 4822 130 10654 4822 130 10654 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9340 260 20115 9340 260 20115 9340 260 20115 4822 130 10654 4822 130 11422

BAT254 BAT254 BAT254 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BAW56W BAW56W BAW56W BAT254 PLVA2650A

7000 7001 7002 7006 7007 7009 7010 7025 7040 7041 7060 7060 7065 7065 7074 7075 7079 7080 7084 7085 7088 7089 7090 7113 7117 7121 7135 7138 7141 7145 7145 7146 7148 7148 7151 7151 7154 7154 7157 7157 7158 7160 7160 7165 7165 7170 7175 7215 7215 7225 7280 7303 7305 7306 7307 7308 7308 7309

9340 217 70115 9340 217 70115 9340 217 70115 9340 217 70115 5322 209 11598 4822 209 15765 9340 217 70115 4822 209 30732 4822 209 60767 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 9340 217 70115 9340 218 50115 9340 217 70115 9340 218 50115 9340 217 70115 9340 218 50115 9322 145 66668 5322 209 11598 9322 145 66668 9340 217 70115 9340 217 70115 9340 217 70115 9340 217 70115 9340 217 70115 9340 217 70115 3198 010 42310 9340 217 70115 4822 209 15765 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 4822 209 15765 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 9322 160 96671 4822 209 17239 9322 046 99668 9322 149 41668 9352 673 95518 9322 158 95668 4822 209 30212 9340 217 70115 9340 217 70115 9340 217 70115 3198 010 42310 9340 217 70115 9340 217 70115

BC847BW BC847BW BC847BW BC847BW PC74HCT4538T 74HC4052D BC847BW LM319D LM1881M BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC857BW BC847BW BC857BW BC847BW BC857BW TSH93ID PC74HCT4538T TSH93ID BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW 74HC4052D BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW 74HC4052D BC847BW BC847BW BC847BW BC847BW AD9887KS-140 LD1117DT33C ST24FC21M6 ST24FC21M1 SAA7118E/V1 SDA9400 PC74HCT125T BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW

7310 7310 7311 7315 7315 7316 7316 7318 7318 7319 7320 7320 7321 7321 7322 7322 7323 7323 7325 7325 7326 7326 7328 7328 7333 7340 7340 7341 7343 7352 7356 7357 7358 7360 7364 7365 7366 7367 7370 7383 7430 7435 7500 7506

3198 010 42310 9340 217 70115 9322 145 66668 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 9340 217 70115 4822 209 15765 9337 153 10118 3198 010 42310 3198 010 42310 9322 160 17668 9340 217 70115 9340 217 70115 9340 217 70115 3198 010 42310 3198 010 42310 9340 217 70115 9340 217 70115 9340 217 70115 4822 209 71585 9352 684 81557 9322 156 81668 3198 010 42310 9322 157 20668 3122 357 00274

7510 7515 7515 7516 7516 7517 7530 7540 7563 7563 7570 7571 7574 7580 7605 7628 7630

9352 499 60118 3198 010 42310 9340 217 70115 5322 130 42756 9340 218 50115 9322 158 67685 4822 209 90188 5322 209 33172 3198 010 42310 9340 217 70115 9322 137 99668 5322 209 11598 9352 317 00118 9322 156 81668 9322 158 73671 9322 164 75682 3122 357 00264

7631 7640 7641 7655 7656 7670 7675 7675 7675 7676 7676 7676 7714 7718 7734 7754 7798 7800 7801 7801 7802 7802 7803 7803 7805 7806 7807 7808 7812 7841 7851

3198 010 42310 4822 209 16406 9322 157 95668 3122 357 00284 9322 165 40671 9322 159 45668 9340 547 13215 9340 560 36235 9965 000 04199 9340 547 13215 9340 560 36235 9965 000 04199 4822 209 30095 9340 217 70115 4822 209 30095 4822 209 30095 9322 116 87668 4822 209 60792 3198 010 42310 9340 217 70115 3198 010 42310 9340 217 70115 5322 130 42756 9340 218 50115 9340 547 13215 9340 547 13215 9340 547 13215 9340 547 13215 9322 167 63668 4822 209 30095 4822 209 30095

BC847BW BC847BW TSH93ID BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW 74HC4052D 74HCT4052D BC847BW BC847BW ST202ECD BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW BC847BW 74HCT4538N SAA5801H/015 M24C32-WMN6TNKSA BC847BW MSM51V18165F-60J Software FM23GB-1.300274 74LVC00AD BC847BW BC847BW BC857C BC857BW ADM810TART PCF8591T PCF8574AT BC847BW BC847BW FS6377-01 PC74HCT4538T 74LVC125AD M24C32-WMN6TNKSA PW164-10R CY62126BVLL-70ZI Software FM23GB-1.300264 BC847BW TL431ACD STD16NE06L Software FM23GB2400284 EP1K30FC256-3 DS90C385MTD BSH103 BSH111 BSN20 BSH103 BSH111 BSN20 LM833D BC847BW LM833D LM833D TEA6422D 74HC4053D BC847BW BC847BW BC847BW BC847BW BC857C BC857BW BSH103 BSH103 BSH103 BSH103 MSP3415G-QG-B8 LM833D LM833D


Spare Parts List 7861 7861 7870 7874 7879 7879 7880 7881 7882

4822 209 30095 9322 173 77668 9322 167 76668 9322 167 76668 3198 010 42310 9340 217 70115 9322 153 66668 9351 869 80118 9351 869 80118

LM833D TS462CD TC74HC590AF TC74HC590AF BC847BW BC847BW CY7C199-15ZC 74HCT573DB 74HCT573DB

VGA Panel [VGA] Various 0318 0371 0372 0374

2422 025 17183 4822 267 51477 4822 267 51477 2422 026 05276

32P female hor 1.00 15P female SUB-D 15P female SUB-D Socket 1 x cinch

2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2238 586 59812 4822 126 14305 2020 552 94427

100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100nF 80-20% 50V 100nF 10% 16V 0603 100pF 5% 50V

4822 051 30759 4822 051 30759 4822 051 30759 4822 051 30101 4822 051 30103 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30102 4822 051 30101 4822 051 30102 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30103 4822 051 30101 4822 051 30101 4822 051 30103 4822 051 30101 4822 051 30102 4822 051 30101 4822 051 30102 4822 051 30101 4822 051 30472 4822 051 30472 4822 051 30472 4822 051 30472 4822 051 30103 4822 051 30333

75Ω 5% 0.062W 75Ω 5% 0.062W 75Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 100Ω 5% 0.062W 10k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 1k 5% 0.062W 100Ω 5% 0.062W 4k7 5% 0.062W 4k7 5% 0.062W 4k7 5% 0.062W 4k7 5% 0.062W 10k 5% 0.062W 33k 5% 0.062W

2422 549 43062 4822 157 11074 2422 549 43062 4822 157 11074

Bead 100MHz 600Ω 100µH 6% Bead 100MHz 600Ω 100µH 6%

9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 4822 130 10654 4822 130 10654 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685

BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BAT254 BAT254 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33

2901 2901 2902 2902 2909 2909 2910 2910 2925

3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929 3930 3934 3935

5900 5900 5901 5901

6900 6901 6902 6903 6904 6905 6906 6907 6908 6909 6910 6911 6912 6913

6914 6915 6916 6918 6920 6921 6922 6923 6925

9322 149 10685 9322 149 10685 4822 130 10654 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685 9322 149 10685

BZM55-C33 BZM55-C33 BAT254 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33 BZM55-C33

7900 7904 7907 7910 7915 7915

5322 209 71568 3122 357 00301 3122 357 00311 4822 209 30212 3198 010 42310 9340 217 70115

PC74HCT14T Software DDC_7904_00301 Software DDC_7907_00311 PC74HCT125T BC847BW BC847BW

FM23

10.

EN 123


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