Omar Sarwar Chaudhary, Mouloud Denaï
Silicon (Si)-based semiconductor devices have long dominated the power electronics industry and are used in almost every application involving power conversion. Examples of these include metal-oxide-semiconductor field-effect transistors (MOSFETs), insulated-gate bipolar transistors (IGBTs), gate turn-off (GTO), thyristors, and bipolar junction transistors (BJTs). However, for many applications, power device requirements such as higher blocking voltage capability, higher switching frequencies, lower switching losses, higher temperature withstand, higher power density in power converters, and enhanced efficiency and reliability have reached a stage where the present Si-based power devices cannot cope with the growing demand and would usually require large, costly cooling systems and output filters to meet the requirements of the application. Wide bandgap (WBG) power semiconductor materials such as silicon carbide (SiC), gallium nitride (GaN), and diamond (Dia) have recently emerged in the commercial market, with superior material properties that promise substantial performance improvements and are expected to gradually replace the traditional Si-based devices in various power electronics applications. WBG power devices can significantly improve the efficiency and reliability of power electronics systems in diverse applications.
@article{9934c6c6-2850-40f4-9e06-84abb4e64bcf,
title={Technology and Applications of Wide Bandgap Semiconductor Materials: Current State and Future Trends},
author={Omar Sarwar Chaudhary and Mouloud Denaï},
year={2023},
language={English}
}TY - JOUR TI - Technology and Applications of Wide Bandgap Semiconductor Materials: Current State and Future Trends AU - Omar Sarwar Chaudhary AU - Mouloud Denaï PY - 2023 LA - English ER -
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