LeapZipBlog: Steve Blade's blog: SiC & GaN Power Semiconductor Market Segmentation and Industrial Overview Forecasts to 2017 to 2026

SiC & GaN Power Semiconductor Market Segmentation and Industrial Overview Forecasts to 2017 to 2026

August 7, 2019 by Steve Blade  

As per the latest study by Fact.MR, the global SiC & GaN power semiconductor market is likely to experience strong growth during 2017-2026. The global market for SiC & GaN power semiconductor is also estimated to bring in US$ 2,986.3 million revenue. Introduction of technically advanced devices with better power capacity is driving the market for SiC & GaN power semiconductor.

Increasing production of hybrid electric vehicles and electric vehicles globally is fueling the demand for power semiconductor devices such as SiC and GaN. Also, the growing use of mobile devices is contributing to the demand for SiC & GaN power semiconductor. With the increasing use of SiC, SiC metal-oxide semiconductor field-effect transistors (MOSFET) have gained immense popularity among manufacturers. Meanwhile, GaN-on-silicon (GaN-on-Si) devices are also anticipated to witness growth in the coming years. GaN semiconductor devices are also witnessing increasing application in automotive, information and communication technology, consumer electronics and medical. Also, the advancement in semiconductor and power electronics is helping companies to improve power management and battery capacity.

Introduction of 5G mobile communication globally is one of the key factors driving the SiC & GaN power semiconductor Market. Moreover, power semiconductors especially Radio Frequency type is required in mobile communication. Also, companies are focusing to introduce GaN-based power amplifier with high speed. Meanwhile, automotive electronics also accounts for heavy consumption of power semiconductors. With the rise in electric vehicles, the deployment of SiC & GaN power semiconductor in cars has also increased.

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Table of Content

1. Global Economic Outlook

2. Global SiC & GaN Power Semiconductor Market - Executive Summary

3. Global SiC & GaN Power Semiconductor Market Overview
3.1. Introduction
       3.1.1. Global SiC & GaN Power Semiconductor Market Taxonomy
       3.1.2. Global SiC & GaN Power Semiconductor Market Definition
3.2. Global SiC & GaN Power Semiconductor Market Size (US$ Mn) and Forecast, 2012-2026
       3.2.1. Global SiC & GaN Power Semiconductor Market Y-o-Y Growth
3.3. Global SiC & GaN Power Semiconductor Market Dynamics
3.4. Supply Chain
3.5. Cost Structure
3.6. PESTLE Analysis
3.7. Product Lifecycle
3.8. List of Distributors
3.9. Key Participants Market Presence (Intensity Map) By Region

4. Global SiC & GaN Power Semiconductor Market Analysis and Forecast 2012-2026 
4.1. Global SiC & GaN Power Semiconductor Market Size and Forecast By Material Type, 2012-2026
       4.1.1. SiC Market Size and Forecast, 2012-2026
                4.1.1.1. Revenue (US$ Mn) Comparison, By Region
                4.1.1.2. Market Share Comparison, By Region
                4.1.1.3. Y-o-Y growth Comparison, By Region
       4.1.2. GaN Market Size and Forecast, 2012-2026
                4.1.2.1. Revenue (US$ Mn) Comparison, By Region
                4.1.2.2. Market Share Comparison, By Region
                4.1.2.3. Y-o-Y growth Comparison, By Region
4.2. Global SiC & GaN Power Semiconductor Market Size and Forecast By Component, 2012-2026
       4.2.1. SiC Power Modules Market Size and Forecast, 2012-2026
                4.2.1.1. Revenue (US$ Mn) Comparison, By Region
                4.2.1.2. Market Share Comparison, By Region
                4.2.1.3. Y-o-Y growth Comparison, By Region
       4.2.2. GaN Power Modules Market Size and Forecast, 2012-2026
                4.2.2.1. Revenue (US$ Mn) Comparison, By Region
                4.2.2.2. Market Share Comparison, By Region
                4.2.2.3. Y-o-Y growth Comparison, By Region
       4.2.3. Discrete SiC Power Devices Market Size and Forecast, 2012-2026
                4.2.3.1. Revenue (US$ Mn) Comparison, By Region
                4.2.3.2. Market Share Comparison, By Region
                4.2.3.3. Y-o-Y growth Comparison, By Region
       4.2.4. Discrete GaN Power Devices Market Size and Forecast, 2012-2026
                4.2.4.1. Revenue (US$ Mn) Comparison, By Region
                4.2.4.2. Market Share Comparison, By Region
                4.2.4.3. Y-o-Y growth Comparison, By Region
4.3. Global SiC & GaN Power Semiconductor Market Size and Forecast By Application, 2012-2026
       4.3.1. Power Supplies Market Size and Forecast, 2012-2026
                4.3.1.1. Revenue (US$ Mn) Comparison, By Region
                4.3.1.2. Market Share Comparison, By Region
                4.3.1.3. Y-o-Y growth Comparison, By Region
       4.3.2. Wireless Charging Market Size and Forecast, 2012-2026
                4.3.2.1. Revenue (US$ Mn) Comparison, By Region
                4.3.2.2. Market Share Comparison, By Region
                4.3.2.3. Y-o-Y growth Comparison, By Region

To be Continue............

SiC & GaN power semiconductor to Find Largest Application in Power Supplies

SiC & GaN power semiconductor is likely to find the largest application in Power supplies between 2017 and 2026. Power supplies are estimated to create an incremental opportunity above US$ 700 million between the forecast period from 2017 to 2026. Increasing demand renewable energy is resulting in the development of power semiconductor devices. Moreover, Silicon Carbide and Gallium Nitride are considered suitable for power semiconductor devices as it helps in reducing on-state resistance and miniaturizing the size of power devices.

Competition Tracking

The report also profiles companies that are expected to remain active in the expansion of global SiC & GaN power semiconductor market through 2026, which include VisIC Technologies Ltd, Panasonic Corporation, NXP Semiconductors N.V., GaN Systems Inc., Exagan S.A.S, Cambridge Electronics, Avogy, Inc., Vincotech GmbH, United Silicon Carbide Inc., STMicroelectronics N.V., Raytheon Company, Monolith Semiconductor Inc., Genesic semiconductor Inc., Transform, Inc., Alpha & Omega Semiconductor, Renesas Electronics, SEMIKRON International GmbH, Danfoss A/S, Microsemi Corporation, Wolfspeed, Inc., ROHM Semiconductor, Global Power Technologies Group, Fuji Electric Systems Co., Ltd, Fairchild Semiconductor, and Infineon Technologies.

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