Power Relays Based Novel Circuit with Multiple Device Characterization Capability for Cryogenic Applications

Yuqi Wei, M. Hossain, H. Alan Mantooth
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引用次数: 1

Abstract

Semiconductor characterizations are normally required to understand the device performance under different operating conditions. Furthermore, these characterization results can be used to estimate the power converter loss and help design the power electronics converters’ thermal management system. In some applications, multiple device characterizations should be made for comparison purposes. In order to enable multiple device characterization capability, in this article, a power relays based novel characterization circuit is proposed for the cryogenic applications. By turning on or off the power relays, different device under test (DPT) can be selected, which can save great amount of energy and time to cool down the cryogenic chamber. The characterization results demonstrate that power relays can work properly at liquid nitrogen temperature. The operational principles, key design considerations, and experimental results are demonstrated.
基于功率继电器的新型低温多器件表征电路
通常需要半导体特性来了解器件在不同工作条件下的性能。此外,这些表征结果可用于估计功率转换器的损耗,并有助于设计电力电子转换器的热管理系统。在某些应用中,为了进行比较,需要对多个器件进行特性描述。为了实现多器件的表征能力,本文提出了一种基于功率继电器的新型低温表征电路。通过打开或关闭功率继电器,可以选择不同的被测装置(DPT),从而大大节省了冷却低温室的能量和时间。表征结果表明,功率继电器能够在液氮温度下正常工作。演示了其工作原理、设计要点和实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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