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

机译:基于SiC-JFET超级级联的5kV / 50ns脉冲功率开关的平衡电路

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In many pulsed-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 the case where wide-band-gap materials, for example, SiC, are used. At the moment, SiC JFET devices with a blocking voltage of 1.2 kV 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 $N$ 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:在许多脉冲功率应用中,基于半导体技术的调制器已成为一种趋势。对于这些调制器,需要高压和大电流半导体开关以实现高脉冲功率。因此,通常使用大功率IGBT模块或IGCT器件。由于这些设备基于双极技术,因此开关速度受到限制,并且开关损耗更高。与双极型器件相比,单极型器件(例如SiC JFET)基本上提供了更好的开关性能。此外,在使用诸如SiC的宽带隙材料的情况下,这些器件能够实现高阻断电压。目前,可提供每个JFET具有1.2 kV阻断电压的SiC JFET器件。或者,可以通过串联$ N $个JFET和一个低压MOSFET来提高工作电压,从而得到一个超级共源共栅开关,其阻挡电压比单个JFET的阻挡电压高$ N $倍。对于超级共源共栅,需要辅助元件以实现共源共栅中的静态和动态平衡电压分布。在本文中,提出了一种新的平衡电路,该电路可导致更快的开关瞬变和更高的可能工作脉冲电流,并通过测量结果进行验证。

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