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Study of Switching Characteristics of Static Induction Thyristor for Pulsed Power Applications

机译:脉冲功率应用中静态感应晶闸管的开关特性研究

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摘要

It is difficult to design a standard gate driver for optimal switching control of a static induction thyristor (SI-Thy) because of its unique internal structure and the direct commutation switching characteristic between the gate and cathode terminals during the transient turn-on and turn-off switching phases. Therefore, it is important to develop a simple and effective gate driver for achieving optimal fast turn-on and stable switching operations in an SI-Thy under hard-switching conditions. To achieve faster turn-on switching time with shorter gate delay time, impedance matching between the SI-Thy and the turn-on driving circuit component in the gate driver can be realized with additional circuit modification through this paper. To ensure higher stabilities in the turn-off switching phase, forced commutation techniques and additional auxiliary circuits in the gate driver have been devised to suppress the latchup and to eliminate potential ringing possibility. We have demonstrated that our designed and tested gate driver for realizing optimal switching characteristics of an SI-Thy is effective, particularly in the gate driving circuits for various pulsed-power switching applications.
机译:由于其独特的内部结构以及在瞬态导通和导通期间栅极和阴极端子之间的直接换向开关特性,很难设计出标准的栅极驱动器来实现静态感应晶闸管(SI-Thy)的最佳开关控制。关闭切换阶段。因此,重要的是开发一种简单有效的栅极驱动器,以在硬开关条件下在SI-Thy中实现最佳的快速导通和稳定的开关操作。为了在较短的栅极延迟时间内实现更快的导通切换时间,通过本文的其他电路修改,可以实现SI-Thy与栅极驱动器中导通驱动电路组件之间的阻抗匹配。为了确保关断切换阶段具有更高的稳定性,已设计出强制换向技术和栅极驱动器中的其他辅助电路来抑制闩锁并消除潜在的振铃可能性。我们已经证明,为实现SI-Thy的最佳开关特性而设计和测试的栅极驱动器是有效的,特别是在用于各种脉冲功率开关应用的栅极驱动电路中。

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