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Design of a High-Frequency DC-DC Converter with a Custom Power Module and Integrated Cooling Structures

机译:具有定制电源模块和集成冷却结构的高频DC-DC转换器的设计

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The packaging of wide band gap devices for high-frequency operation is an ongoing research topic. While current packaging research optimizes either for electrical or thermal characteristics, both are relevant for the successful design of DC-DC converters. This paper presents a synchronous boost DC-DC converter with a switching frequency of 333 kHz on the basis of a custom power module and an optimized inductor. The custom power module with silicon carbide MOSFETs is designed for minimized stray inductances. The power module includes dc-link capacitors to achieve fast switching transients and, thus, lower losses even on a planar module layout. An integrated micro-channel structure cools the power module with a fluid. Despite the high switching frequency and ensuing high losses per chip, no double-sided cooling technique is required. The converter reaches a maximum efficiency of 97.3%. With a maximum power output of 15 kW, it achieves a power density of 25.4 W/kg.
机译:用于高频操作的宽带隙设备的包装是一个持续的研究主题。尽管当前的封装研究针对电气或热特性进行了优化,但两者都与成功设计DC-DC转换器有关。本文介绍了一种基于定制电源模块和优化电感器的开关频率为333 kHz的同步升压DC-DC转换器。具有碳化硅MOSFET的定制电源模块旨在将杂散电感降至最低。电源模块包括直流链路电容器,以实现快速的开关瞬变,因此即使在平面模块布局上也可降低损耗。集成的微通道结构通过液体冷却功率模块。尽管开关频率很高,并且每个芯片的损耗很高,但不需要双面冷却技术。该转换器的最高效率为97.3%。最大输出功率为15 kW,功率密度为25.4 W / kg。

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