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A 100kV, IGBT switched, spark gap trigger generator

机译:一个100kV,IGBT开关,火花隙触发发生器

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The lack of availability of small, fast, switches such as krytrons (e.g. EG&G KN 6) and thyratrons (e.g. E2V FX2530) makes the design of high voltage spark gap trigger units problematic. This paper will describe a 100kV trigger generator which is switched using a high voltage, high current IGBT switch module. A capacitor, charged up to 6kV, is discharged with the IGBT into the primary of a high gain autotransformer, the secondary of which is connected to the output of the generator. The transformer is wound with copper and mylar foils on to an amorphous metal glass core which is carefully gapped to avoid core saturation. One of the advantages of this all-solid-state generator is that it can easily be triggered by a TTL input pulse and the throughput delay and jitter of the generator is well characterised. Hence it is then very easy to synchronise a pulsed power system, triggered by this generator, to any diagnostic measurements that may need to be made. Output pulse rise-times from the trigger generator are ≥ 150 ns and a simple pulse sharpening circuit can be added to the output circuit of the pulse transformer which can reduce the rise-time to durations which are short enough to promote multi-channelling in rail-gaps. Basic circuit and transformer calculations are described which explain the trade-off between voltage gain from the primary to the secondary circuits of the transformer and the rise-time of the output pulse.
机译:缺少诸如krytrons(例如EG&G KN 6)和thyratrons(例如E2V FX2530)之类的小型快速开关的可用性,使得高压火花隙触发单元的设计存在问题。本文将介绍一个使用高压,大电流IGBT开关模块进行开关的100kV触发发生器。充电至6kV的电容器与IGBT一起放电到高增益自耦变压器的一次侧,该二次侧的二次侧连接到发电机的输出。变压器将铜箔和聚酯薄膜箔缠绕在非晶态金属玻璃芯上,小心地将其隔开以避免芯饱和。这种全固态发生器的优点之一是,它可以很容易地由TTL输入脉冲触发,并且发生器的吞吐延迟和抖动具有良好的特性。因此,很容易将由该发生器触发的脉冲电源系统与可能需要进行的任何诊断测量进行同步。触发发生器的输出脉冲上升时间≥150 ns,并且可以在脉冲变压器的输出电路上增加一个简单的脉冲锐化电路,这可以将上升时间缩短到足够短的时间,以促进导轨中的多通道化-缺口。描述了基本电路和变压器计算,这些计算解释了从变压器的初级到次级电路的电压增益与输出脉冲的上升时间之间的权衡。

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