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High density 50 kW SiC inverter systems using a JFET based six-pack power module

机译:高密度50 kW SiC逆变器系统,使用基于JFET的六片装电源模块

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Recent progress on Silicon Carbide (SiC) power devices has shown their better power conversion efficiency compared to Silicon power devices due to the significant reduction in both conduction and switching losses. Combined with their high operating junction temperature capability, six-pack SiC power modules have been developed for high reliable and compact power systems. This paper focuses on the development of a high efficiency and high temperature inverter based on fully integrated SiC power modules. The main topic includes the SiC power module design targeting on high temperature operation (Tj>200 °C), full three phase inverter design and prototype development, and the inverter evaluation. A liquid cooled SiC inverter prototype with a peak power rating of 50 kW has been developed and demonstrated. When tested at moderate load levels compared to the inverter rating, an efficiency of 98.5% is achieved by the initial prototype, which is higher than most Si inverters.
机译:由于碳化硅(SiC)功率器件的传导和开关损耗都大大降低,因此与硅功率器件相比,其功率转换效率更高。结合其较高的工作结温能力,已为高可靠性和紧凑型电源系统开发了六片装SiC功率模块。本文重点研究基于完全集成的SiC电源模块的高效高温逆变器的开发。主要主题包括针对高温工作(Tj> 200°C)的SiC功率模块设计,完整的三相逆变器设计和原型开发以及逆变器评估。已经开发并演示了峰值额定功率为50 kW的液冷SiC逆变器原型。与逆变器额定值相比,在中等负载水平下进行测试时,初始原型可以实现98.5%的效率,该效率比大多数Si逆变器都要高。

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