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首页> 外文期刊>Journal of Electronic Packaging >Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling
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Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling

机译:液氮冷却下低温功率模块的数值热模拟

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摘要

Understanding the thermal performance of power modules under liquid nitrogen cooling is important for the design of cryogenic power electronic systems. When the power device is conducting electrical current, heat is generated due to Joule heating. The heat needs to be efficiently dissipated to the ambient in order to keep the temperature of the device within the allowable range; on the other hand, it would be advantageous to boost the current levels in the power devices to the highest possible level. Projecting the junction temperature of the power module during cryogenic operation is a crucial step in designing the system. In this paper, we present the thermal simulations of two different types of power metal-oxide semiconductor field effect transistor modules used to build a cryogenic inverter under liquid nitrogen pool cooling and discussed their implications on the design of the system.
机译:了解液氮冷却下电源模块的热性能对于设计低温电力电子系统很重要。当功率设备传导电流时,由于焦耳热而产生热量。需要将热量有效地散发到环境中,以将设备的温度保持在允许的范围内;另一方面,将功率器件中的电流水平提高到可能的最高水平将是有利的。在低温运行期间预测功率模块的结温是设计系统的关键步骤。在本文中,我们介绍了用于在液氮池冷却下构建低温逆变器的两种不同类型的功率金属氧化物半导体场效应晶体管模块的热仿真,并讨论了它们对系统设计的影响。

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