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Balancing Circuit for a 5kV/50ns Pulsed Power Switch Based on SiC-JFET Super Cascode

机译:用于5kV / 50ns脉冲电源开关的平衡电路,基于SiC-JFET超级键盘

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In many pulse power applications there is a trend to modulators based on semiconductor technology. For these modulators high voltage and high current semiconductor switches are required in order to achieve a high pulsed power. Therefore, often high power IGBT modules or IGCT devices are used. Since these devices are based on bipolar technology the switching speed is limited and the switching losses are higher. In contrast to bipolar devices unipolar ones (e.g. SiC JFETs) basically offer a better switching performance. Moreover, these devices enable high blocking voltages in case wide band gap materials as for example SiC are used. At the moment SiC JFET devices with a blocking voltage of 1.2kV per JFET are available. Alternatively, the operating voltage could be increased by connecting N JFETs and a low voltage MOSFET in series resulting in a Super Cascode switch with a blocking voltage TV-times higher than the blocking voltage of a single JFET. For the Super Cascode auxiliary elements are required for achieving a statically and dynamically balanced voltage distribution in the Cascode. In this paper a new balancing circuit, which results in faster switching transients and higher possible operating pulse currents is presented and validated by measurement results.
机译:在许多脉冲电力应用中,基于半导体技术的调制器存在趋势。对于这些调制器,需要高电压和高电流半导体开关,以实现高脉冲功率。因此,使用高功率IGBT模块或IGCT器件。由于这些器件基于双极技术,因此开关速度有限,切换损耗更高。与双极设备的单极设备(例如,SiC JFET)相反,基本提供更好的切换性能。此外,在使用例如SiC的情况下,这些器件在宽带隙材料中实现高封路电压。在每个JFET的瞬间SiC JFET器件可提供1.2kV的电压。或者,通过串联连接N JFET和低压MOSFET可以增加工作电压,从而产生超级级联开关,其具有高于单个JFET的阻塞电压的封堵电压TV倍。对于在CASCODE中实现静态和动态平衡电压分布所需的超级级联码辅助元件。在本文中,通过测量结果呈现和验证了新的平衡电路,从而提出并验证了更快的开关瞬变和更高可能的操作脉冲电流。

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