在低温条件下评估常见电子元件和GaN hemt

A. Wadsworth, Brandon Pais, Shaun Kyle, D. Thrimawithana, R. Badcock, A. Lapthorn, B. Heffernan, R. Oliver, D. Wallis, Martin Neuberger
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引用次数: 2

摘要

超导电机是大型运输(航空、铁路、航运)电气化的解决方案,因为它们比传统电动机具有更高的功率密度。使用相同的低温系统冷却超导电机及其功率转换器为增加转换器的功率密度提供了独特的机会。本文评估了传统的功率转换器组件和新兴的氮化镓(GaN)技术在低温下的表现。结果表明,氮化镓器件在低温下的传导损失显著降低。集成电路的性能取决于器件技术(CMOS, BJT, JFET),而电容器的温度变化取决于其介电材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating Common Electronic Components and GaN HEMTs Under Cryogenic Conditions
Superconducting motors are a solution to electrifying large scale transport (aviation, rail, shipping) due to their superior power density over conventional electric motors. Cooling a superconducting motor and its power converter using the same cryogenic system provides a unique opportunity to increase the converter’s power density. This paper evaluates how conventional power converter components and emerging Gallium Nitride (GaN) technologies would fare at cryogenic temperatures. It is shown that GaN devices have a significant reduction in conduction losses at cryogenic temperatures. The behaviour of integrated circuits varies depending on device technology (CMOS, BJT, JFET), while temperature variation in capacitors depends on their dielectric material.
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