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Ignitron-Based Switching Scheme for Multiple Ignitron Triggering in Pulsed Power Applications

机译:基于Ignitron的脉冲功率应用中多个Ignitron触发的切换方案

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This paper describes a low-cost ignitron-based switching scheme for transferring energy from capacitor bank to various loads, used in plasma physics and other pulsed power applications. Battery-operated driver modules have been designed to simultaneously trigger two ignitrons in parallel by using either transistor-transistor logic pulses or optical pulses using a fiber-optic interface with optical fibers of length up to 50 m, for applications prone to generate electromagnetic interferences. These driver modules are designed using insulated gate bipolar transistors as switches to deliver a pulse of amplitude of ~500 A and rise time of ~1.2 μs to the ignitor-cathode junction of their respective ignitrons. The modules are designed to facilitate triggering of multiple ignitrons required for large current applications. The feasibility of this scheme and the performance of designed circuit are characterized using a test setup. Statistical variation of triggering delay for single ignitrons is studied extensively, and the effect of trigger energy on statistical parameters is reported. Jitters of 63.5 and 85 ns, respectively, have been observed for triggering of each ignitron used in this scheme. Difference in triggering of two ignitrons connected in parallel is also studied, and a jitter of 150 ns is observed in the onset of current discharges through individual ignitrons.
机译:本文介绍了一种用于将能量从电容器组转移到各种负载的基于易燃剂的低成本开关方案,该方案用于等离子体物理和其他脉冲功率应用中。电池驱动的驱动器模块经过设计,可以通过使用晶体管晶体管逻辑脉冲或使用光脉冲(使用光纤接口,光纤长度最长为50 m)来同时触发两个ignitrons,从而易于产生电磁干扰。这些驱动器模块使用绝缘栅双极型晶体管作为开关来设计,以将振幅约为500 A的脉冲和上升时间约为1.2μs的脉冲传递至其各自的乙腈的点火器-阴极结。这些模块旨在方便触发大电流应用所需的多个乙腈。该方案的可行性和设计电路的性能通过测试设置来表征。广泛研究了单个乙腈的触发延迟的统计变化,并报道了触发能量对统计参数的影响。对于该方案中使用的每个点火器的触发,已经观察到分别为63.5和85 ns的抖动。还研究了两个并联连接的伊格隆触发的差异,在通过单个伊格隆放电的电流开始时观察到150 ns的抖动。

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