Market Analysis 

The silicon carbide (SiC) power semiconductors market is projected to touch USD 1,359.2 million at a healthy 26.3% CAGR between 2018- 2023, states the recent Market Research Future (MRFR) analysis. Silicon carbide, simply put, is a semiconductor that is made by the combination of carbon and silicon. This has a certain level of hardness that is akin to a diamond that allows SiC semiconductors to function in extreme conditions. 

Various factors are propelling the global SiC power semiconductor market share. According to the recent MRFR report, such factors include growing demand for power electronics across different industry verticals like defense, medical, and aerospace, rise in the number of modern applications that need SiC power devices, the growing need for power efficiency in industrial applications and automotive electronics, and increasing number of charging infrastructure, renewable power, and rail traction. 

On the contrary, high wafer cost needed to produce silicon carbide-based semiconductors, challenges related to designing, and the impact of the on-going COVID-19 pandemic are factors that may limit the global SiC power semiconductor market growth over the forecast period. 

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Regional Analysis  

By region, the global silicon carbide power semiconductors market covers the growth opportunities and recent trends across Europe, North America, the Asia Pacific (APAC), & the Rest of the World (RoW). Among these, the APAC region will spearhead the market over the forecast period. Expansion of LTE and 4G network, the proliferation of cellular base station and RF, increase in energy efficiency projects, favorable initiatives by the government to develop solar power, and massive investments from key players are adding to the SiC power semiconductor market growth in the region. 

The global SiC power semiconductor market in Europe is predicted to hold the second-largest share over the forecast period. Substantial demand from the automotive industry, booming automotive industry, and the presence of top players are adding to the global SiC power semiconductor market growth in the region. Germany holds the utmost share in the market.  

The global SiC power semiconductor market in North America is predicted to have healthy growth over the forecast period. High investments on research and development activities, coupled with the presence of top silicon carbide manufacturers, are adding to the global SiC power semiconductor market growth in the region. 

The global SiC power semiconductor market in the Rest of the World is predicted to have sound growth over the forecast period. 

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Market Segmentation

 

The MRFR report highlights an inclusive segmental analysis of the global SiC power semiconductor market based on end user, application, wafer size, and device.

By device, the global SiC power semiconductor market is segmented into SiC bare die devices and SiC discrete devices. The SiC discrete devices are again segmented into module, diode, and MOSFET. Of these, the module segment will lead the market over the forecast period. 

By wafer size, the global SiC power semiconductor market is segmented into 6-inch, 4-inch, and 2-inch. Of these, the 4-inch segment will dominate the market over the forecast period. 

By application, the global SiC power semiconductor market is segmented into railway traction, industrial motor drives, EV motors, power grids, power supply and inverter, RF devices and cellular base stations, and others. Of these, the power supply and inverter segment will have a major share in the market over the forecast period. 

By end user, the global SiC power semiconductor market is segmented into electronics, industrial, automotive, energy and power, telecommunication, and others. Of these, the automotive segment will command the largest share in the market over the forecast period. 

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Key Players 

Eminent contenders profiled in the global SiC power semiconductor market report include Infineon Technologies AG, ON Semiconductor, Cree Inc., STMicroelectronics NV, Mitsubishi Electric Corporation, and others. 

1 Executive Summary

1.1 Prologue 15

2 Market Introduction

2.1 Definition 18

2.2 Scope Of The Study 18

2.3 List Of Assumptions 19

2.4 Market Structure 19

3 Research Methodology

3.1 Research Process 21

3.2 Forecast Model 25

4 Market Dynamics

4.1 Introduction 27

4.2 Drivers 28

4.2.1 Increase In Demand For SiC Power Semiconductor Due To Advantages Such As High Thermal Conductivity 28

4.2.2 Increase In Demand Of Power Electronics Modules Across Various Industry Verticals 28

4.2.3 Rise In Installation Of Solar Photovoltaic Panels For Electricity Generation 28

4.2.4 Drivers Impact Analysis 29

4.3 Restraints 29

4.3.1 Design Complexity And High Cost Of SiC MOSFET 29

4.3.2 Availability Of GaN As A Substitute For SiC 29

4.3.3 Restraints Impact Analysis 30

4.4 Opportunities 30

4.4.1 Introduction Of Fifth-Generation (5G) Mobile Communication 30

4.4.2 Rising Adoption Of Electric Vehicles 31

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