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A comparative study of the gate driver circuits for series stacking of semiconductor switches

机译:半导体开关串联堆叠的栅极驱动器电路的比较研究

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For the high voltage semiconductor switch based pulsed power application, series operation of semiconductor switches is generally required because of limitation of device ratings. However, there are many considerations to design gate driver circuit for stacking the IGBTs because of the complexity and difficulty of synchronization and protection. Gate driver circuit of series connected IGBTs usually requires high number of high voltage insulated gate power source and complex gate signal schemes depending on the total number of switches. Furthermore, since it is difficult to synchronize switching operations, complex protection circuit should be employed to protect semiconductors switches from arc or short circuit condition which is frequently generated during normal operation of pulsed power application. The purpose of this study is the introducing of the simple and reliable gate driver circuits for series connected semiconductor switches based on the expected problems and considerations. The advantages of each driver circuit are analyzed based on comparative study of proposed gate driver circuits with PSpice simulation. By combining driver circuit with 12 series connected IGBT stack for 10kV pulsed modulator, the various kinds of testing were performed including normal operation and arc or short condition. The experimental results is confirmed that proposed gate driver circuit can be effectively used at semiconductor based pulsed power modulator.
机译:对于基于高压半导体开关的脉冲功率应用,由于设备额定值的限制,通常需要半导体开关的串联操作。然而,由于同步和保护的复杂性和困难,设计用于堆叠IGBT的栅极驱动器电路有许多考虑因素。串联连接的IGBT的栅极驱动器电路通常需要大量的高压绝缘栅极电源和复杂的栅极信号方案,具体取决于开关的总数。此外,由于难以同步开关操作,因此应采用复杂的保护电路来保护半导体开关免受电弧或短路状态的影响,而电弧或短路状态通常是在脉冲功率施加的正常操作期间产生的。这项研究的目的是基于预期的问题和考虑,为串联的半导体开关引入简单可靠的栅极驱动器电路。在对提出的带有PSpice仿真的栅极驱动器电路进行比较研究的基础上,分析了每个驱动器电路的优势。通过将驱动器电路与用于10kV脉冲调制器的12个串联的IGBT堆栈组合,进行了各种测试,包括正常运行以及电弧或短路条件。实验结果证实,所提出的栅极驱动器电路可以有效地用于基于半导体的脉冲功率调制器。

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