The 2018 GaN power electronics roadmap

氮化镓 数码产品 晶体管 工程物理 新兴技术 纳米技术 计算机科学 电气工程 电信 材料科学 工程类 电压 图层(电子)
作者
Hiroshi Amano,Yannick Baines,Edward Beam,Matteo Borga,Thierry Bouchet,Paul R. Chalker,Matthew Charles,Kevin J. Chen,Nadim Chowdhury,Rongming Chu,Carlo De Santi,M.M. De Souza,Stefaan Decoutere,L. Di Cioccio,Bernd Eckardt,Takashi Egawa,Patrick Fay,Joseph J. Freedsman,L. J. Guido,Oliver D. Häberlen
出处
期刊:Journal of Physics D [Institute of Physics]
卷期号:51 (16): 163001-163001 被引量:1160
标识
DOI:10.1088/1361-6463/aaaf9d
摘要

Gallium nitride (GaN) is a compound semiconductor that has tremendous potential to facilitate economic growth in a semiconductor industry that is silicon-based and currently faced with diminishing returns of performance versus cost of investment. At a material level, its high electric field strength and electron mobility have already shown tremendous potential for high frequency communications and photonic applications. Advances in growth on commercially viable large area substrates are now at the point where power conversion applications of GaN are at the cusp of commercialisation. The future for building on the work described here in ways driven by specific challenges emerging from entirely new markets and applications is very exciting. This collection of GaN technology developments is therefore not itself a road map but a valuable collection of global state-of-the-art GaN research that will inform the next phase of the technology as market driven requirements evolve. First generation production devices are igniting large new markets and applications that can only be achieved using the advantages of higher speed, low specific resistivity and low saturation switching transistors. Major investments are being made by industrial companies in a wide variety of markets exploring the use of the technology in new circuit topologies, packaging solutions and system architectures that are required to achieve and optimise the system advantages offered by GaN transistors. It is this momentum that will drive priorities for the next stages of device research gathered here.
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