Global supercapacitor market

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IndustryARC

Global Supercapacitor Market (2014-2020)

By Material (Electrodes and Separators), By End Products (Industrial Automation Products, Healthcare Products, Transportation Products and Others), By Technology (Organic Electrolyte, Aqueous Electrolyte and Others), By Application (Energy and Power, Electronics and Transportation) and Geography


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TABLE OF CONTENTS 1. Global Supercapacitor Industry – Market Overview 2. Executive Summary 3. Global Supercapacitor Industry – Market Landscape 3.1. Market Share Analysis 3.2. Comparative Analysis 3.2.1.

Product Benchmarking

3.2.2.

End user profiling

3.2.3.

Patent Analysis

3.2.4.

Top 5 Financials Analysis

4. Global Supercapacitor Industry – Market Forces 4.1. Market Drivers 4.2. Market Constraints 4.3. Market Challenges 4.4. Attractiveness of the Supercapacitor Industry 4.4.1.

Power of Suppliers

4.4.2.

Power of Customers

4.4.3.

Threat of New entrants

4.4.4.

Threat of Substitution

4.4.5.

Degree of Competition


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5. Global Supercapacitor Market – Strategic Analysis 5.1. Value Chain Analysis 5.2. Pricing Analysis 5.3. Opportunities Analysis 5.4. Product/Market Life Cycle Analysis 5.5. Suppliers and Distributors 6. Global Supercapacitor Market – By Material 6.1. Introduction 6.2.

Electrodes 6.2.1.

Electrolyte Double Layer Capacitor (EDLC)

6.2.1.1 Activated Carbon (AC) 6.2.1.2 Activated Carbon Fibers (ACFs) 6.2.1.3 Carbide-Derived Carbon (CDC) 6.2.1.4 Carbon Aerogel 6.2.1.5 Others 6.2.2. Pseudocapacitor 6.2.2.1 Conductive Polymers 6.2.2.1.1 Polyaniline 6.2.2.1.2 Polypyrrole 6.2.2.1.3 Polyacetylene 6.2.2.1.4 Others 6.2.2.2 Metal Oxides 6.2.2.2.1 Ruthenium Oxide (RuO2) 6.2.2.2.2 Iron Oxide (Fe3O4) 6.2.2.2.3 Manganese Oxide (MnO2) 6.2.2.2.4 Others 6.2.3. Hybrid Capacitor 6.2.2.3 6.2.2.4

Composite Electrodes Others


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6.3. Separators 6.3.1.

Polymeric Films

6.3.2.

Polyacrylonitrile (PAN)

6.3.3.

Others

7. Global Supercapacitor Market- By End-Product 7.1. Introduction 7.2. Industrial Automation Products 7.2.1.

Memory Storage

7.2.2.

Uninterrupted Power Supply (UPS)

7.2.3.

Others

7.3. Consumer Electronics Products 7.3.1.

Laptops

7.3.2.

Digital Cameras

7.3.3.

Portable Speakers

7.3.4.

Others

7.4. Power & Energy Products 7.4.1.

Actuators

7.4.2.

Wind Turbines

7.4.3.

Others

7.5. Healthcare Products 7.5.1.

Defibrillators

7.5.2.

Others

7.6. Transportation Products 7.6.1.

Buses


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7.6.2.

Trains and Locomotives

7.6.3.

Aircrafts

7.6.4.

Others

8. Global Supercapacitor Market- By Technology 8.1. Introduction 8.2. Organic Electrolyte Supercapacitor 8.3. Aqueous Electrolyte Supercapacitor 9. Liquid Electrolyte Supercapacitor Global Supercapacitor Market- By Application 9.1. Introduction 9.2. Electronics 9.3. Transportation 9.4. Energy and Power 9.5. Others 10. Supercapacitor Market- By Geography 10.1.

Introduction

10.2.

North America 10.2.1. U.S. 10.2.2. Canada 10.2.3. Mexico

10.3.

South America 10.3.1. Brazil 10.3.2. Argentina 10.3.3. Others


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10.4.

Europe 10.4.1. Germany 10.4.2. U.K. 10.4.3. France 10.4.4. Italy 10.4.5. Others

10.5.

Asia Pacific 10.5.1. China 10.5.2. Japan 10.5.3. India 10.5.4. Australia 10.5.5. Others

10.6.

ROW 10.6.1. Middle East 10.6.2. Africa

11. Market Entropy 11.1.

New Product Launches

11.2.

M&As, Collaborations, JVs and Partnerships

12. Company Profiles 12.1.

AVX Corporation

12.2.

Bombardier, Inc.

12.3.

Cap-XX Ltd.

12.4.

Cellergy Ltd.

12.5.

ELNA Co. Ltd.


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12.6.

FDK Corporation

12.7.

KEMET Corporation

12.8.

Ioxus, Inc.

12.9.

Maxwell Technologies Inc.

12.10. Nesscap Co. Ltd. 12.11. Nichicon Corporation 12.12. Optixtal, Inc. 12.13. Panasonic Corporation 12.14. Skeleton Technologies 12.15. Tecate Group 12.16. VINATech Co. Ltd. 12.17. APowerCap Technologies, LLC 12.18. Illinois Capacitor, Inc. 12.19. IONova Technologies, Inc. 12.20. Nippon Chemi-Con Corporation 13. Appendix 13.1.

Abbreviations

13.2.

Sources

13.3.

Research Methodology

13.4.

Bibliography

13.5.

Compilation of Expert Insights

13.6.

Disclaimer


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LIST OF TABLES Table 1 Global Supercapacitor, List of Companies Covered Table 2 Global Supercapacitor Market Competitive Share Analysis, 2013 (%) Table 3 Top 5 Market Players Financials Analysis Table 4 Global Supercapacitor Market Revenue, 2014 – 2020 ($M) Table 5 Global Supercapacitor Market Revenue, By Material, 2014 – 2020 ($M) Table 6 Global Supercapacitor Market Revenue, By Product, 2014 – 2020 ($M) Table 7 Global Supercapacitor Market Revenue, By Application, 2014 – 2020 ($M) Table 8 Average Selling Price Analysis, Supercapacitor, 2014 – 2020 ($M) Table 9 Global Supercapacitor Market in Electrodes, By Product, 2014 – 2020 ($M) Table 10 Global Supercapacitor Market in Separators, By Product, 2014 – 2020 ($M) Table 11 Global Supercapacitor Market in Electrolytes, By Product 2014, – 2020 ($M) Table 12 Global Supercapacitor Market in Consumer Applications, By Product, 2014 – 2020 ($M) Table 13 Global Supercapacitor Market in Industrial Applications, By Product, 2014 – 2020 ($M) Table 14 Global Supercapacitor Market in Public Sector, By Product, 2014 – 2020 ($M) Table 15 Global Supercapacitor Market in Medical Industry, By Product, 2014 – 2020 ($M) Table 16 Global Supercapacitor Market in Transport Industry, By Product, 2014 – 2020 ($M) Table 17 Global Supercapacitor Market in Aerospace and Defence Industry, By Product, 2014– 2020 ($M) Table 18 Global Supercapacitor Market in Electrodes, By Application, 2014 – 2020 ($M) Table 19 Global Supercapacitor Market in Separators, By Application, 2014 – 2020 ($M) Table 20 Global Supercapacitor Market in Electrolytes, By Application, 2014 – 2020 ($M) Table 21 Global Supercapacitor Market in Consumer Applications, By Material, 2014 – 2020 ($M) Table 22 Global Supercapacitor Market in Industrial Applications, By Material, 2014 – 2020 ($M) Table 23 Global Supercapacitor Market in Public Sector, By Material, 2014 – 2020 ($M) Table 24 Global Supercapacitor Market in Medical Industry, By Material, 2014 – 2020 ($M) Table 25 Global Supercapacitor Market in Transport Industry, By Material, 2014 – 2020 ($M) Table 26 Global Supercapacitor Market in Aerospace and Defence Industry, By Material, 2014 – 2020 ($M) Table 23 Global Supercapacitor Market in Energy Applications, By Material, 2014 – 2020 ($M) Table 24 Global Supercapacitor Market in Wireless Applications, By Material, 2014 – 2020 ($M) Table 25 North America Supercapacitor Market Revenue, By Material, 2014 – 2020 ($M) Table 26 North America Supercapacitor Market Revenue, By Product, 2014 – 2020 ($M)


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Table 27 North America Supercapacitor Market Revenue, By Application, 2014 – 2020 ($M) Table 28 South America Supercapacitor Market Revenue, By Material, 2014 – 2020 ($M) Table 29 South America Supercapacitor Market Revenue, By Product, 2014 – 2020 ($M) Table 30 South America Supercapacitor Market Revenue, By Application, 2014 – 2020 ($M) Table 31 Europe Supercapacitor Market Revenue, By Material, 2014 – 2020 ($M) Table 32 Europe Supercapacitor Market Revenue, By Product, 2014 – 2020 ($M) Table 33 Europe Supercapacitor Market Revenue, By Application, 2014 – 2020 ($M) Table 34 APAC Supercapacitor Market Revenue, By Material 2014 – 2020 ($M) Table 35 APAC Supercapacitor Market Revenue, By Product 2014 – 2020 ($M) Table 36 APAC Supercapacitor Market Revenue, By Application 2014 – 2020 ($M) Table 37 Rest of World Supercapacitor Market Revenue, By Material2014 – 2020 ($M) Table 38 Rest of World Supercapacitor Market Revenue, By Product 2014 – 2020 ($M) Table 39 Rest of World Supercapacitor Market Revenue, By Application 2014 – 2020 ($M) Table 40 M&A, JV, Agreements, Supercapacitor Industry Table 41 Electrolyte Double Layer Supercapacitor Market Revenue, By Product, 2014-2020 ($M) Table 42 Pseudocapacitor Market Revenue, By Product, 2014-2020 ($M) Table 43 Hybrid Supercapacitor Market Revenue, By Product, 2014-2020 ($M) Table 44 Separator Market Revenue, By Product, 2014-2020 ($M) Table 45 Electrolyte Double Layer Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 46 Pseudocapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 47 Hybrid Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 48 Separator Market Revenue, By Geography, 2014-2020 ($M) Table 49 Industrial Automation Supercapacitor Market Revenue, By Technology, 2014-2020 ($M) Table 50 Consumer Electronics Supercapacitor Market Revenue, By Technology, 2014-2020 ($M) Table 51 Power and Energy Supercapacitor Market Revenue, By Technology, 2014-2020 ($M) Table 52 Healthcare Supercapacitor Market Revenue, By Technology, 2014-2020 ($M) Table 53 Transportation Supercapacitor Market Revenue, By Technology, 2014-2020 ($M) Table 54 Industrial Automation Supercapacitor Market Revenue, By Application, 2014-2020 ($M) Table 55 Consumer Electronics Supercapacitor Market Revenue, By Application, 2014-2020 ($M) Table 56 Power and Energy Supercapacitor Market Revenue, By Application, 2014-2020 ($M) Table 57 Healthcare Supercapacitor Market Revenue, By Application, 2014-2020 ($M) Table 58 Transportation Supercapacitor Market Revenue, By Application, 2014-2020 ($M) Table 59 Industrial Automation Supercapacitor Market Revenue, By Geography, 2014-2020 ($M)


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Table 60 Consumer Electronics Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 61 Power and Energy Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 62 Healthcare Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 63 Transportation Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 64 Electronics Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 65 Transportation Supercapacitor Market Revenue, By Geography, 2014-2020 ($M) Table 66 Energy and Power Supercapacitor Market Revenue, By Geography, 2014-2020 ($M)


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LIST OF FIGURES Figure 1 Global Supercapacitor Network Market, by Year (%) Figure 2 Global Supercapacitor Network Market, by Type of Sensor (%) Figure 3 Global Supercapacitor Network Market, by Technology (%) Figure 4 Global Supercapacitor Network Market, by Industry (%) Figure 5 Global Supercapacitor Network Market, by Application (%) Figure 6 Global Supercapacitor Network Market, by Geography (%) Figure 7 Global Ultrasonic Sensor Market, Value Chain Analysis Figure 8 Global Supercapacitor Market, Porter’s Five Forces Analysis Figure 9 Global Supercapacitor Market, Market Share Analysis, By Key Player, 2014 (%) Figure 10 Global Supercapacitor Network Market, Patent Analysis, by Year, 2014 – 2020 ($M) Figure 11 Global Supercapacitor Network Market, Patent Analysis, by Company, 2014 – 2020 ($M) Figure 12 Global Supercapacitor Network Market, Financial Analysis, by Key Players, 2014(%) Figure 13 Global Supercapacitor Network Market, Market Life-Cycle Analysis, 2014-2020 Figure 14 Global Supercapacitor Network Market, New Product Launches, by Year (%) Figure 15 Global Supercapacitor Network Market, Recent Developments, by Year (%)


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1. GLOBAL SUPERCAPACITOR INDUSTRY – MARKET OVERVIEW 1.1. SCOPE The Supercapacitor market has been segmented by type of material, products, technology, applications and geography. These markets are further segmented to give a comprehensive analysis of the Supercapacitors. The overall market is also presented from the perspective of different geographic regions and the key countries for this industry. Competitive landscape for each of the product types is highlighted and market players are profiled with attributes of company overview, financial overview, business strategies, product portfolio and recent developments. Market shares of the key players for 2014 are provided. The prominent players profiled in this report are Maxwell Technologies Inc. (U.S.), Nesscap Co. Ltd. (South Korea), Cap-XX (Australia) Panasonic Electronic Devices Co. Ltd. (Japan) and others. The report contains the most detailed and in-depth segmentation of the global Supercapacitor market.

1.2. STAKEHOLDERS

Following are the key stakeholders in the Supercapacitor market. •

Sensor Manufacturers

Product OEMs

Contract manufacturer

Service providers

Distributors

System integrators

Research Institutes

Engineering and Designing companies

Regulatory Bodies


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2. EXECUTIVE SUMMARY Supercapacitor or Ultracapacitor refers are electrochemical capacitors with high capacitance values when compared to the traditional dielectric capacitors. Supercapacitors find their application in consumer electronics, power sources, medical, transport, aviation and many other sectors. The main advantages of supercapacitors are – power supply stabilization, Energy storage, voltage stabilizations, energy regeneration, etc. This report categorizes the market into five different segments, namely: market by type of material, end-product, technology, applications and geography. Based on the material used, the market has been classified into Electrode and Separators. The end-products can be categorized under Healthcare, Consumer Electronics, Industrial Automation and others. The technology segment includes Aqueous electrolyte, Liquid electrolyte and Organic electrolyte. The applications deploying supercapacitors are Energy and Power, Transportation, Electronics and others. Based on the geography, the report has been segmented into North America, Europe, APAC, and RoW. The Global Market for Supercapacitors has been growing at a very high pace due to new innovations and developments such as more efficient usage in transport sector, improvement of energy density, high workable temperature range, better lifetime and cost reduction. As energy storage and efficiency are expected to be the major sectors in the future, it will be a high boost for the Supercapacitor Industry. Global Supercapacitor market is estimated to cross the $2 billion mark by 2020.

SAMPLE TABLE: GLOBAL SUPERCAPACITOR MARKET REVENUE, BY REGION, 2014-2020 ($BN) Region

2014

2015

2016

North America xx xx xx South America xx xx xx APAC xx xx xx Europe xx xx xx Others xx xx xx Total xx xx xx Source: IndustryARC Analysis, Expert Interviews

2017

2018

2019

2020

xx xx xx xx xx xx

xx xx xx xx xx xx

xx xx xx xx xx xx

xx xx xx xx xx xx

CAGR% (20152020) Xx% Xx% Xx% Xx% Xx% Xx%

Developed countries in North America and Europe remain the largest market for the Supercapacitor sales accounting for more than 70% of the total market, followed by the APAC region. China will remain the largest manufacturer of the Supercapacitor products and will also stay as the most important market in the APAC region.


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SAMPLE FIGURE: GLOBAL DEMAND FOR SUPERCAPACITOR SYSTEMS IN 2020 ($M) Demand in $M By 2020

xx xx xx xx xx xx xx xx xx North America

APAC

Europe

others

Regions

Source: IndustryARC Analysis, Expert Interviews

The current market report has been segmented by geography as North America, Europe, APAC, and Rest of the World (RoW). Market size and forecast is provided for each of these regions. A detailed qualitative analysis of the factors responsible for driving and restraining growth of the global Supercapacitor market and future opportunities are provided in the report. This report on the Global Supercapacitor Market identifies many such insights and M&A opportunities, besides providing a detailed analysis of the Supercapacitor market.


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KEY MARKET INSIGHTS Technology and especially the need for high security and quality standards are helping the growth of the Supercapacitor market.  Consumer Electronics, Energy Recovery, Storage and Transport are the key areas in Supercapacitor market. The Industry is projected to grow at 23% CAGR with major players like Maxwell Technologies Inc. (U.S.), Nesscap Co. Ltd. (South Korea), Cap-XX (Australia) and Panasonic Electronic Devices Co. Ltd. (Japan) operating in this space  The key drivers of the Supercapacitor industry are – rapid innovation in technology, evolving energy recovery devices demand and application, hybrid electric vehicles and high performance ratio  There is an increasing minority of stop-start and energy harvesting alternator systems on conventional cars adopting supercapacitors so they operate at low temperature and with the toughest duty cycles  BioSuperCap, a next generation supercapacitor based on inexpensive conducting polymers designed to reduce the cost of storing the energy of the sun, has demonstrated stability for over 50,000 charge-discharge cycles, which is more than 10 times better than ever reported for Polymer-Hybrid Supercapacitors


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12.3. RESEARCH METHODOLOGY The quantitative and qualitative data collected for the Supercapacitor report is from a combination of secondary and primary sources. Research interviews were conducted with senior executives and/or mangers in the Supercapacitor Industry. These Key Opinion Leaders (KOLs) were then provided a questionnaire to gather quantitative and qualitative inputs on their operations, performance, strategies and views on the overall market, including key developments and technology trends. Data from interviews is consolidated, checked for consistency and accuracy, and the final market numbers are again validated by experts. The global market was split by product types and geography based on different factors like primary and secondary sources, understanding of the number of companies operating in each segment and also KOL insights. We have used various secondary sources such as directories, articles, white papers, newsletters, annual reports and paid databases such as OneSource, Hoovers and Factiva to identify and collect information for extensive technical and commercial study of the Supercapacitor market. The approach towards finding information regarding the market and forecasting has been quite extensive. Since the amount of materials consumed for additive manufacturing depend almost entirely on the number of battery shipments across the world, we have taken this to be our hypothesis.. This, when combined with the Average Selling Price (ASP) of the various materials under consideration, has led us to the revenues of different segments. The market has then been forecast according to the market trend shown by the sales of major players like Maxwell Technologies Inc. (U.S.), Nesscap Co. Ltd. (South Korea), Cap-XX (Australia) Panasonic Electronic Devices Co. Ltd. (Japan) and also considering new developments. The key players in the market and its value chain were identified through secondary research and their market opinions were also gathered in a similar way through telephonic interviews and questionnaires. We have also studied the annual reports of these top market players. Interviews with key opinion leaders such as directors, managers, and marketing personnel were used extensively in understanding the need and emergence of Supercapacitor market. We also have extensive database of contacts which were used to conduct primary interviews and also to get their inputs using questionnaires.


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THE ARC ADVANTAGE An analytical model lies at the core of our process, ensuring logical consistency throughout our research. We complement the model with secondary data and interviews with industry experts to reflect the latest trends. With our final expert validation, we provide you with only the most accurate and actionable intelligence.

THE ARC PROCESS Analytical Method 1. Granular breakdown of drivers into factors 2. Validate all factors in terms of their present impact on the market 3. Assign weights to these factors in terms of their relevance and impact on the market 4. Build the Analytical Model ANALYTICAL MODEL

Base Method

1. Get a topdown estimate of the market 2. Follow it up with a bottom-up estimate of the market 3. Check forconsistency and new growth factors that are relevant over the next 10 Years

4. Build the Base model BASE MODEL

Consolidation Method 1. Granular breakdown of drivers into factors 2. Validate all factors in terms of their present impact on the market. 3. Assign weights to these factors in terms of their relevance and impact on the market. 4. Build the Consolidated Model

Delphi Verification 1. Verify the findings of the model with experts from across the value chain 2. Verify the findings with players across small and large enterprises 3. Tweak the model and add new factors 4. Finalize the ARC Model

CONSOLIDATED MODEL

ARC MODEL


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