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A Way for High-Voltage $muhbox{s}$ -Range Square Pulse Generation

机译:高压$ muhbox {s} $-范围方波生成的一种方法

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In this paper, a new way for high-voltage $muhbox{s}$ -range quasi-square pulse generation based on a ns source pulser and a chopping spark gap is introduced. The source pulser delivered high-voltage source pulse with front edge at ns range to the chopping gap, and the chopping gap chopped the long flat back edge of the source pulse, so that a quasi-square pulse was formed on a high-impedance load. The breakdown-delay characteristics of the chopping gap, which was the most important, were studied in detail. Results of the experiments showed that when the pulse voltage peaked by the first peaking gap was a little lower than or approximate to the breakdown voltage of the chopping gap, the chopping gap broke down at the back edge of the peaked pulse so that the breakdown-delay time can increase from 30 ns to several $muhbox{s}$. The breakdown-delay time of chopping gap is confined to the flat top of the peaked pulse. By using this mechanism of breakdown delay, a quasi-square pulse with pulse width of 1.95 $muhbox{s}$, amplitude of 55 kV, and front edge of 22 ns was produced on a 1.15-$hbox{k}Omega$ load. Repetitive chopping pulses at 0.2 Hz were provided to demonstrate the feasibility of the chopping gap. By contrast to the conventional chopping, four essential conditions were concluded. Based on these results, a controllable trigatron-type chopping gap system is introduced to ensure chopping stability. It provides an important new way for $muhbox{s}$-range high-voltage square pulse generation.
机译:本文介绍了一种基于ns源脉冲发生器和斩波火花隙的高压$ muhbox {s} $范围准平方脉冲生成的新方法。源脉冲发生器将前沿在ns范围内的高压源脉冲传送到斩波间隙,并且斩波间隙将源脉冲的长而平坦的后沿斩波,从而在高阻抗负载上形成了准平方脉冲。详细研究了斩波间隙的击穿延迟特性。实验结果表明,当第一个峰值间隙达到峰值的脉冲电压略低于或接近斩波击穿电压时,斩波间隙在峰值脉冲的后沿击穿,因此击穿电压-延迟时间可能从30 ns增加到几个$ muhbox {s} $。斩波间隔的击穿延迟时间限制在峰值脉冲的平坦顶部。通过使用这种击穿延迟机制,在1.15 $ hbox {k} Omega $负载下产生了脉冲宽度为1.95 $ muhbox {s} $,幅值为55 kV,前沿为22 ns的准平方脉冲。 。提供了0.2 Hz的重复斩波脉冲以证明斩波间隙的可行性。与常规切碎相比,得出了四个基本条件。基于这些结果,引入了可控的Trigatron型斩波间隙系统,以确保斩波稳定性。它为$ muhbox {s} $范围的高压方波脉冲生成提供了一种重要的新方法。

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