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2020 Silicon Carbide Industry - Application (Automotive, Defense, Computers, Consumer Electronics, ICT, Industrial, Medical, Power, Railways, And Solar)

Order report “Silicon Carbide (SiC) In Semiconductor Market by Technology, Product, and Application (Automotive, Defense, Computers, Consumer Electronics, ICT, Industrial, Medical, Power, Railways, And Solar), by Geography - Forecast and Analysis to 2013 - 2020” by calling RnRmarketresearch.com at +1 888 391 5441.

A semiconductor device, is expected to operate in any harsh environment an industry can offer; however, this is not possible with a silicon based semiconductor device. A Silicon based semiconductor device is capable to operates at a temperature of 300°C, whereas the industry requires semiconductor devices, which can operate at much higher temperature, voltage, and frequencies. Such enhancement in the semiconductor device mainly depends on the properties required by devices. At this juncture, silicon based semiconductor has its own limitations, which can be overcome by using compound material for the development of semiconductor devices. Silicon carbide is a compound which can help to drastically improve these properties, which includes high temperature, voltage, and frequency, of the semiconductor devices. The SiC based semiconductor market is expected to grow by 2020, at an estimated CAGR of 42.03% from 2014 to 2020. APAC has been estimated to account for the highest CAGR of 43.53% from 2014 to 2020 amongst all the geographic regions. It accounted for the largest market share of 36.41% for silicon carbide based semiconductor devices in terms of value in 2013. This is mainly due to the fact that there is huge development related to silicon carbide in China. It has been estimated that China accounts majority share of silicon carbide materials in terms of volume.

The silicon carbide based semiconductor device market report classifies the market based on technologies, products, applications, and regions. Within the technology segment, the market report includes 3C, 4H, and 6H semiconductor market, and the product segment includes power semiconductor, opto-semiconductor, and high-temperature semiconductor market. Silicon carbide based semiconductor device finds many applications in the industry such as automotive, consumer electronics, industrial, power, solar and wind sector, computers, ICT, healthcare, and defense. Geographically, the SiC based semiconductor market is mainly covered by North America (U.S. and others), Europe, APAC (China, India, and others), and Rest of the World (Latin America, Middle East and others); the geographic segment accounts the Japan market separately.

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The report describes the value chain and supply chain for the silicon carbide based semiconductor market by considering all the major stakeholders in the market and their role in the analysis. The report also provides a detailed study of the Porter’s five forces analysis of the market. The players involved in the development of SiC based semiconductor market includes CREE Incorporated (U.S.), Fairchild Semiconductor International Inc. (U.S.), Genesic Semiconductor Inc. (U.S.), Infineon Technologies AG (Germany), Microsemi Corporation (U.S.), Norstel AB (U.S.), Renesas Electronics Corporation (Japan), ROHM Co. Ltd. (Japan), STMicroelectronics N.V (Switzerland), and Toshiba Corporation (Japan).

Key Takeaways:

  • The total revenue of the silicon carbide based semiconductor market is expected to grow at an estimated CAGR of 42.03% from 2014 to 2020
  • Analysis of the silicon carbide based semiconductor market with special focus on high growth application segment
  • Statistics by technology, products, application, and geography with detailed classification splits by revenue
  • Porter’s five forces explained in detail along with the value and supply chain analysis for the silicon carbide based semiconductor market
  • Major market trends, drivers, restraints, and opportunities for the silicon carbide based semiconductor market
  • Illustrative segmentation, analysis, and forecast of the major geographical markets to give an overall view of the silicon carbide based semiconductor market
  • Detailed competitive landscape which includes key players, in-depth market share analysis, individual revenue, and market shares.

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Table of Contents

1 Introduction
1.1 Objectives of the Study
1.2 Report Description
1.3 Markets Covered
1.4 Stakeholders
1.5 Research Methodology
1.5.1 Market Size Estimation
1.5.2 Market Crackdown and Data Triangulation
1.5.3 Key Data Taken From Secondary Sources
1.5.4 Key Data Taken From Primary Sources
1.5.5 Assumptions Made for This Report
1.5.6 List of Companies Covered During the Study

2 Executive Summary

3 Market Overview
3.1 Introduction
3.1.1 Overview - SIC Semiconductor Devices
3.1.2 Overview - SIC Semiconductor Material
3.2 Market Definition
3.3 Scope of the Report
3.4 History and Evolution – Silicon Carbide Market
3.5 Market Dynamics
3.5.1 Drivers
3.5.1.1 Ability of SIC in Semiconductor to Perform At High Temperature, Power & Frequency Is Expected to Drive the Market
3.5.1.1.1 High Temperature
3.5.1.1.2 High Power
3.5.1.1.3 High Frequency
3.5.1.2 Growing Solar Power Market Is Expected to Drive the Silicon Carbide Market
3.5.1.3 Surge in Demand for High Resistant Material Is Going to increase Overall Growth of SIC Market
3.5.1.4 Huge Demand Is Expected From High-Voltage Power Semiconductor Applications
3.5.1.5 Demand From Military, Defense and Aerospace Sector Is Expected to Boost the Market
3.5.2 Restraints
3.5.2.1 Gallium Nitride Is Expected to Give Huge Competition to Silicon Carbide Based Device Market
3.5.2.2 Poor Oxidation Resistance At High Temperatures Is Expected to Create A Technical Challenge
3.5.3 Opportunities
3.5.3.1 Huge OpportunitiesIs Expected From Automotive Sector
3.6 Burning Issue
3.6.1 Higher Development Expenditure of SIC in Semiconductor
3.7 Winning Imperative
3.7.1 Development of SIC Using Different Variety of Composition Materials
3.8 Product Life Cycle
3.8.1 introduction
3.8.2 Epitaxial Growth
3.8.3 Wafer Bonding
3.8.4 Device Fabrication
3.8.5 Packaging and System integration
3.9 Value and Supply Chain Analysis
3.9.1 Value Chain Analysis
3.9.1.1 Raw Material Vendors
3.9.1.2 Eda and Design tool Vendors
3.9.1.3 intellectual Property Vendors
3.9.1.4 Foundry Vendors
3.9.1.5 Fabrication Facilities
3.9.1.6 integrated Device Manufacturers
3.9.1.7 Original Device Manufacturers
3.9.1.8 Original Equipment Manufacturers
3.9.1.9 Assembly, Testing and Packaging Players
3.9.2 Supply Chain Analysis
3.9.2.1 Upstream Chain
3.9.2.1.1 Extraction of Silicon Carbide
3.9.2.1.2 Purification and Refining
3.9.2.1.3 Etching and Doping
3.9.2.1.4 Wafer Coating and Manufacturing
3.9.2.2 Downstream Chain
3.9.2.2.1 Device Fabrication
3.9.2.2.2 Cutting and Mounting
3.9.2.2.3 Assembly and Packaging
3.10 Porter’s Five force Analysis
3.10.1 Bargaining Power of Suppliers
3.10.2 Bargaining Power of Customers (Buyers)
3.10.3 Threat of New Entrants
3.10.4 Threat of Substitute Products Or Services
3.10.5 intensity of Competitive Rivalry

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4 Silicon Carbide Semiconductor Market By Technology
4.1 introduction
4.2 Market By SIC Polytypes
4.2.1 2h-SIC Semiconductors Market
4.2.2 3c-SIC Semiconductors Market
4.2.2.1 3c- SIC Growth in Hexagonal SIC Substrates
4.2.2.2 3c-SIC Growth on Si Substrates
4.2.3 4h-SIC Semiconductors Market
4.2.3.1 Developments
4.2.3.1.1 High Voltage Unipolar Power Switching Devices
4.2.3.1.2 Bipolar Junctions Transistors for Power Electronic Applications
4.2.4 6h-SIC Semiconductors Market
4.3 Market By Semiconductor Materials
4.3.1 Iv-Iv Silicon Carbide Semiconductor Market
4.3.1.1 SIC-on-Silicon Semiconductor Market
4.3.1.2 SIC-on-Sapphire Semiconductor Market
4.3.1.3 SIC-on-Graphite Semiconductor Market
4.3.1.4 SIC-on-Graphene Semiconductor Market
4.3.1.4.1 Applications
4.3.2 Iii-V SIC Semiconductors Market
4.3.2.1 SIC-on-Gan Semiconductors Market
4.3.2.1.1 Applications
4.3.2.2 SIC-on-A|N Semiconductors Market
4.3.2.3 Composite Materials-Based SIC Semiconductor Market
4.3.2.4 Alloy Materials-Based SIC Semiconductor Market

5 Silicon Carbide Semiconductor Market By Product
5.1 introduction
5.2 SIC Power Semiconductors Market
5.2.1 SIC Power Semiconductor Devices and invertors
5.2.2 SIC Power Diodes Classification By Technology Node
5.2.2.1 350 NM SIC Power Devices
5.2.2.2 250 NM SIC Power Devices
5.2.2.3 180 NM SIC Power Devices
5.2.2.4 150 NM SIC Power Devices
5.2.2.5 130 NM SIC Power Devices
5.2.2.6 90 NM SIC Power Devices
5.2.2.7 65 NM SIC Power Devices
5.2.2.8 45 NM SIC Power Devices
5.2.2.9 32 NM SIC Power Devices
5.2.2.10 28 NM SIC Power Devices
5.2.2.11 22 NM SIC Power Devices
5.2.2.12 14 NM SIC Power Devices
5.3 SIC Optosemiconductors Market
5.3.1 LED(Light Emitting Diode)
5.4 SIC High-Temperature Semiconductors Market
5.5 SIC Power Discrete Market
5.5.1 SIC Power Mosfets
5.5.2 SIC Power Jfets
5.5.3 SIC Power Igbts
5.5.4 SIC Power Diodes and Rectifiers
5.5.4.1 SIC Power Schottky Diodes
5.5.5 SIC Other Power Discretes

6 Silicon Carbide Semiconductor Market By Application
6.1 introduction
6.2 Automotive Sector
6.2.1 Electric Vehicles & Hybrid Electric Vehicles (HEVS)
6.2.2 Automotive Braking Systems
6.2.3 Automobile Motor Drives
6.3 Aerospace and Defense
6.3.1 Combat Vehicles
6.3.2 Ships & Vessels
6.3.3 Microwave Radiation Applications
6.3.4 Radiation-Hard Electronics
6.4 Computers
6.4.1 Computer Hardware Power Modules
6.4.2 Ups Systems
6.5 Consumer Electronics
6.5.1 inverters
6.5.2 LED (Light Emitting Diode) Lighting
6.5.3 SMPS (Switch Mode Power Supply)
6.6 Ict (information & Communication Technology)
6.6.1 Signal Amplifiers and Switching Systems
6.6.2 Wireless Application Devices
6.6.3 Wired Communication Devices
6.6.4 Satellite Communication Applications
6.6.5 Radar Applications
6.6.6 RF (Radio Frequency) Applications
6.7 industrial Sector
6.7.1 Industrial Motor Drives
6.7.2 Commercial Motor Drives
6.7.3 Electro-Mechanical Computing Systems
6.7.4 High-Temperature Electronics & Sensors
6.8 Medical & Healthcare
6.8.1 Implantable Medical Devices
6.8.2 Bio-Medical Electronics
6.9 Power Sector
6.9.1 Smart Grid Power Systems
6.9.2 Power Factor Correction (PFC) System
6.9.3 Power Distribution Systems
6.9.4 High Voltage Direct Current (HVDC) Systems
6.10 Railways
6.10.1 Railway Traction
6.11 Solar & Wind Power Sector
6.11.1 Wind Turbines and Wind Power Systems
6.11.2 Photovoltaic (PV) inverters
6.11.3 Solar Panels
6.12 Others
6.12.1 Astronomy
6.12.2 Pyrometer

7 Silicon Carbide Semiconductor Market By Geography
7.1 Introduction
7.2 North Americas
7.2.1 U.S.
7.2.2 Others
7.3 Europe
7.4 APAC (Excluding Japan)
7.4.1 China
7.4.2 India
7.4.3 Others
7.5 Japan
7.6 ROW (Rest of World)
7.6.1 Latin America
7.6.2 Middle East
7.6.3 Others

8 Competitive Landscape
8.1 Introduction
8.2 Key Growth Strategies
8.3 Key Players
8.4 Competitive Analysis
8.4.1 top 5 Industry Player Analysis
8.5 Competitive Situation and Trends
8.5.1 New Product Developments
8.5.2 Agreements/Contracts/Collaborations/Partnerships
8.5.3 Expansion
8.5.4 Acquisitions
8.5.5 Others

9 Company Profiles
9.1 Cree Incorporated
9.2 Fairchild Semiconductor International Inc.
9.3 Genesic Semiconductor Inc.
9.4 Infineon Technologies Ag
9.5 Microsemi Corporation
9.6 Norstel AB
9.7 Renesas Electronics Corporation
9.8 ROHM Co Ltd
9.9 Stmicroelectronics N.V
9.10 Toshiba Corporation

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