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Design Steps Toward a 40-kVA SiC JFET Inverter With Natural-Convection Cooling and an Efficiency Exceeding 99.5%

机译:采用自然对流冷却且效率超过99.5%的40 kVA SiC JFET逆变器的设计步骤

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摘要

This paper describes the concept, design, construction, and experimental investigation of a 40-kVA inverter with silicon carbide junction field-effect transistors (JFETs). The inverter was designed to reach an efficiency exceeding 99.5%. The size of the heat sink is significantly reduced in comparison to silicon insulated-gate bipolar transistor designs, and the high efficiency makes it possible to use free-convection cooling. This could potentially increase reliability compared with solutions with fans. A very low conduction loss has been achieved by parallel connecting ten 85-m Omega normally-ON JFETs in each switch position. A special gate-drive solution was applied, forcing the transistors to switch very fast (approximately 10 kV/mu s), resulting in very low switching losses. As output power is almost equal to input power, special effort was done to precisely determine the amount of semiconductor power losses via comparative thermal measurements. A detailed analysis of the measurements shows that the efficiency of the inverter is close to 99.7% at 40 kVA.
机译:本文介绍了具有碳化硅结场效应晶体管(JFET)的40 kVA逆变器的概念,设计,构造和实验研究。逆变器的效率达到了99.5%以上。与硅绝缘栅双极晶体管设计相比,散热器的尺寸显着减小,并且高效率使得可以使用自由对流冷却。与采用风扇的解决方案相比,这可能会提高可靠性。通过在每个开关位置并联连接十个85-m Omega常开JFET,可以实现非常低的传导损耗。应用了一种特殊的栅极驱动解决方案,迫使晶体管切换非常快(大约10 kV /μs),从而导致非常低的切换损耗。由于输出功率几乎等于输入功率,因此需要进行特殊的工作以通过比较热测量来精确确定半导体功率损耗的数量。对测量结果的详细分析表明,逆变器的效率在40 kVA时接近99.7%。

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