TTI & Panasonic Circuit Protection, EMC & Resistor Product Guide
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TTI, Inc. & Panasonic
Introduction You are the visionaries. The engineers. The designers. The architects of the next dimension. We are the makers of your building blocks. Panasonic manufactures a wide range of passive components. With Panasonic electronic components offered at TTI, enter the next dimension.
ELL Series – SMD Power Choke Coils Panasonic offers a selection of SMT Chip Choke Coils in different form factors and footprints for a variety of applications. There are both magnetically shielded and non-shielded series. Panasonic SMT Chip Choke Coils are available with a wide variety of specifications, including, magnetically shielded, low profile, thin, low DC resistance, large current capability, and vibration resistant.
Features & Benefits
• Wide range of inductance values up to 1mH • Low DCR and large current capability • Minimised case sizes available by adhesive shield technology starting from 2.5mmx2mm • Improved saturation characteristics by metal composite shield • RoHS compliant
Applications
• DC-DC converter circuitry • Metering • Lighting market • Medical handheld market • All kinds of battery driven portable devices • Power conversion applications • E-bike • Power supply
How to read Part Numbers 1
2
3
4
5
6
E
L
L
A
T
V
Height
Structure
Product Code
Outer Size
T
4.5 max
V
7
8
9
Inductance eg. 4R7
Series
10
11
Tolerance Design No.
4.7μH
eg. M ±20%
101 100μH
N ±30%
ETQP Series – Power Choke Coils (Metal Composite Technology) Panasonic Power Choke Coils ETQP series offer high heat resistance, excellent DC bias characteristic, Hi-BS With Ferrous alloy magnetic material and great reliability at high temperatures with a high tolerance for vibration. These Power Choke Coils also have very low audible noise and are extremely efficient with low DCR and eddy current loss reduction. Metal composite core material, with distributed air-gap, and stamped frame coils on some series provide near linear Inductance vs Current and do not saturate, while also offering a cost effective design solution.
Features & Benefits
• Non-hard saturation characteristic • High Bias Current Condition • Non Temperature impact on DC Bias Characteristic • 150˚C/2000h • Outstanding power efficiency with minimised power losses at high frequency (>100kHz) • Almost half AC resistance above 300kHz compared to ferrite core technology
Applications
• Automotive (engine ECI, start-stop, DC-DC converter; LED, airbag, ABS, instrument panel etc.) • LED Lighting • Embedded computer • DC-DC converter circuitry
How to read Part Numbers 1
2
3
4
E
T
Q
P
Product Code
01 www.ttieurope.com
5
Classification Height
6
7
8
9
M Winding
Inductance
10
11
Y
F
Core
Suffix
12
Size
eg. 4R7
4.7μH
M
220
22μH
K
8mm
101 100μH
C
10mm
7mm
TTI, Inc. & Panasonic
ERZ Series – MOV – “ZNR” Transient/Surge Absorbers “ZNR” Transient/Surge Absorber, Series V, Type D features large surge current and energy handling capability for absorbing transient overvoltage in a compact size. Our newest Type E achieve smaller diameter with high performance.
Features & Benefits
Applications
• Ø5mm – Ø20mm • Wide varistor voltage ranges (V1mA=18V~1800V) • Large withstanding surge current capability in compact sizes • Large “Energy Handling Capability” absorbing transient overvoltages in compact sizes • Varistor voltage: 82V – 150V: UL, VDE • Varistor voltage: 200V over: UL, CSA, VDE
• Transistor, diode, IC, thyristor or triac semiconductor • Transient/surge protection in consumer electronic equipment • Transient/surge protection in communication, measuring and controller equipment • Transient/surge protection in home appliances, gas, petroleum appliances • Relay or electromagnetic valve surge absorption
How to read Part Numbers 1
2
3
4
E
R
Z
V
Product Code
5
6
7
Taping/ Packaging
A to D
Element Size
Radial Taping (12.7mm)
E to H Radial Taping (15mm)
2
3
4
E
R
Z
E
9
10
11
12
D
Series
1
8
5
Lead Configuration D
Straight Lead
V
Crimped Lead
6
7
Nominal Varistor Voltage eg. 180
18V
101
100V
Design No.
182 1800V
8
9
10
11
12
D
Product Code
Series
Lead Configuration
E08
Series E8
E11
Series E11
A
Straight Lead
E14
Series E14
B
Crimped Lead Bulk
E
Straight Lead
F
Crimped Lead Taped
Nominal Varistor Voltage eg. 180
18V
101
100V
Bulk
Design No.
182 1800V
Taped
Current Sensing Shunt Resistors – ERJ Soft Termination Series Current Sensing Resistors are designed for low resistance so as to minimise power consumption. In order to meet the requirements of the market Panasonic offers a wide range of Current Sensing Resistors in many case sizes (0402 to 2512), many resistance values in different technologies. Double sided technology and special constructions make them suitable for the harsh environment while maintaining their high reliability. Furthermore, Panasonic Current Sensing Resistors correspond to AEC-Q200 and therefore are ideal solution for even automotive applications.
Features & Benefits
• High Power in small case size (e.g. 0805/0.5W; 2010/2W) by using wide terminal technology • Double-sided technology for high power ratings (1206/1W; 0402/0.25W) • Metal plate technology for low T.C.R. • All correspond to automotive requirements • Wide range of resistance values staring from 0.001Ohm • Large power dissipation capability
How to read Part Numbers 1
2
3
4
5
6
E
R
J
2
B
W
Product Code
Size/ Power Rating 2BW 3BW
0402 0.125W
7
Resistance Tolerance F
±1%
0603
0.25W
G ±2%
6BW
0805
0.33W
J
8BW
1206
0.5W
±5%
8
Applications
• Power management • Automotive • Switch mode power supply • AC/DC and DC/DC converters • HDD • Battery packs and chargers • Voltage regulation modules • Over-current protection in audio applications • Motor current control 9
10
11
Resistance Value eg. R047 0.047Ω R101
100Ω
12
Packaging X
Taping 2mm Pitch, 10K Pcs
ERA2BW
V
Taping 4mm Pitch, 5K Pcs
ERA3BW, 6BW, 8BW
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TTI, Inc. & Panasonic
MELF Replacement Solution – ERJP Series Anti-Surge Resistors Electronic surge can occur anywhere in a vehicleís electronic circuitry, industrial, measurement and telecom applications. Panasonic ERJP series have great anti-surge characteristics and excellent heat dissipation characteristics due to Serpentine Resistor Pattern Structure which helps to decrease electric field strength per unit length. Combined with a variety of small case size Panasonic Anti-Surge Resistors are suitable to replace MELF in plenty of cases. Furthermore, squared sized chip structure help to lead to better solder joint reliability which is perfect for a car’s hostile environments.
Features & Benefits
•S erpentine resistor pattern: decreases electric field strength per unit length •D ispersion of loading heat •H igher power rating than conventional type – 0603 size ERJP03: 0.20W – 0805 size ERJP06: 0.25W – 0805 size ERJP6W: 0.50W New; Double sided – 1206 size ERJP08: 0.33W – 1210 size ERJP14: 0.50W •H igh pulse resistance •H igh ESD resistance
Applications
• Power management • Automotive • Switch mode power supply • AC/DC and DC/DC converters • Renewable energies • Lighting, LED •V oltage regulation modules • Audio applications •M otor control
How to read Part Numbers 1
2
3
4
E
R
J
P
5
Product Code
6
8
Resistance Tolerance
Size/ Power Rating P03
7
0603
0.2W
D
±0.5%
P06
0805
0,25W
F
±1%
P6W
0805
0,5W
J
±5%
P08
1206
0,33W
P14
1210
0,5W
9
10
11
12
Resistance Value
Packaging
eg. R047 0.047Ω R101
100Ω
V
Taping 4mm pitch, 5k pcs
U
Taping 4mm pitch, 5k pcs
ERJP03, ERJP06, ERJP08, ERJP6W ERJP14
ERA Series – Thin Film Resistors (High Reliability) Panasonic’s Thin Film Chip Resistors use a high reliable Thin Film technology in conjunction with a moisture resistant overcoat to ensure stability over lifetime. High reliability, high heat resistance, correspondence to AEC-Q200 makes ERA-series perfectly suited to harsh environment applications, such as automotive, medical, transportation, any measurement industry.
Features & Benefits
• Guaranteed for a loading life of 1000h at 85˚C, 85% relative humidity • Operating temperature range: -55˚C – +155˚C • High precision and low TCR (Temperature coefficient of resistance) • Resistance tolerance: 0.1%; 0.05% • TCR: ±10 x 10-6/˚C • TCR: ±15 x 10-6/˚C •T CR: ±25 x 10-6/˚C • Wide Resistance Range • 10Ω – 1MΩ (E-96) • Low current noise, excellent non-linearity • Reference Standards: IEC 60115-8; JIS C 5201-8; EIAJ RC-2133A • Corresponding to AEC-Q200 • Large power dissipation capability
Applications
• Accurate measurement • Precise amplifiers • Battery charging and discharging control • Automotive control (ECU) • Audio signal processing • Precise measurement circuits • Audio signal processing • Precise measurement circuits
How to read Part Numbers 1
2
3
E
R
A
Product Code
4
5
Size/ Power Rating 2A
03 www.ttieurope.com
0,063W
6
7
TCR R
±10ppm
Resistance Tolerance
P
±15ppm
W ±0.05%
3A
0,1W
E
±25ppm
B
±0.1%
6A
0,125W
H
±50ppm
D
±0.5%
8A
0,25W
K ±100ppm
8
9
10
Resistance Value eg. 102
1kΩ
1051 1.05kΩ
11
12
Packaging W
Taping 2mm Pitch, 10K Pcs
ERA2A
V
Taping 4mm Pitch, 5K Pcs
ERA3A, 6A, 8A
TTI, Inc. & Panasonic
Pyrolytic Highly-Oriented Graphite Sheet (PGS) PGS is thermal interface material which is very thin, synthetically made, has high thermal conductivity, and is made from a highly oriented graphite polymer film. It is ideal for providing thermal management/heat-sinking in limited spaces or to provide supplemental heat-sinking in addition to conventional means. This material is flexible and can be cut into customisable shapes.
Features & Benefits
Applications
• Thermally conductive up to 1750W/mK • Thin and light weight up to 17µm and 1g/cm3 • Flexible customised shapes, curved and movable layout possible • Energy saving, no usage of electricity for heat transfer • High reliability compared with silicon solutions • Environmentally-friendly pure carbon (99.9%), no toxic substances, no gas emission • Long life stable at normal atmospheric conditions and maintenance free • Heat resistant stable up to 400˚C • Improves reliability reduces & spreads-out hotspot temperature from semiconductors • Miniaturised devices allows for a more compact circuit design • Magnetic shielding up to 90dB • Various PGS versions adhesive and insulated versions available
• LED/lighting equipment • Automotive lighting equipment • Medical equipment • Telecom and communication devices • Battery cooling • Temperature reduction of housing of devices • Miniaturised and downsized devices • Handheld and portable devices • Optical equipment • Semiconductor manufacturing equipment •E mbedded/PC applications
PGS
A B
The two main thermal functions provided by PGS are:
Carrying the heat
B Heat Source
B
A
B
1) Thermal transfer – The PGS is acting as a heat pipe transferring the heat energy from the heat source to the heat sink, which allows a design positioning the heat sink not directly at the heat source.
B
Heat Source (MPUs, PAs, graphic chips etc.)
Heat Sink
Diffusing the heat
2) Thermal interface – The PGS is improving the efficiency of the heat sink and achieves a hot-spot reduction. The PGS allows to spreads out the heat energy and improves the reliability of the semiconductor that produces the heat.
B
Heat Sink
PGS
PGS
Package (Heat Source)
A
Decreasing the thermal resistance and diffusing the heat
temSur p fa the era ce pa ture ck of ag e
W it the h P G tempea S pdk ro ps W ith ou tP G
S
How to read Part Numbers 1
2
3
E
Y
G
4
Product Code
Style S
PGS only
5
6
Dimension X (Short)
7
8
Dimension Y (Long)
9
10
Thickness (mm) 10
11
12
Suffix
0.1
A
Taping
07
0.07
C
Coating
03
0.025
M
Other materials laminated
02
0.017
Custom product is suffix
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