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Experimental Research of ZnO Surface Flashover Trigger Device of Pseudo-Spark Switch

机译:伪火花开关ZnO表面闪络触发装置的实验研究

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摘要

Pseudo-spark switch (PSS) is one of the most widely used discharge switches for pulse power technology. It has many special characteristics such as reliability in a wide voltage range, small delay time, as well as small delay jitter. In this paper, the measuring method for the initial plasma of ZnO surface flashover triggering device of PSS is studied and the results of the measurement show that the electron emission charge is mainly influenced by trigger voltage, gas pressure and DC bias voltage. When the bias voltage increases from 2 kV to 6 kV with the gap distance fixed at 3 mm, the electron emission charge changes from 2 μC to about 6 μC. When the gap distance changes from 3 mm to 5 mm with the bias voltage fixed at 2 kV, the electron emission charge increases from 1.5 μC to 2.5 μC. When the gap distance is 4 mm, the hold-off voltage of PSS is 45 kV at gas pressure of 2 Pa, the minimum operating voltage is less than 1 kV. So, the operating scope is from 2.22% to 99% of its self-breakdown voltage. The discharging delay time decreases from 450 ns to 150 ns when the trigger pulse voltage is 1 kV and the discharging voltage is changed from 1 kV to 12 kV. When the trigger pulse voltage is 6 kV, the discharging delay time is less than 100 ns and changes from 100 ns to 50 ns, and the delay jitters are less than 30 ns.
机译:伪火花开关(PSS)是脉冲功率技术中使用最广泛的放电开关之一。它具有许多特殊特性,例如在宽电压范围内的可靠性,小的延迟时间以及小的延迟抖动。本文研究了PSS ZnO表面闪络触发装置的初始等离子体的测量方法,测量结果表明,电子发射电荷主要受触发电压,气压和直流偏置电压的影响。当间隙距离固定为3 mm时,偏压从2 kV增加到6 kV时,电子发射电荷从2μC变为约6μC。当偏压固定为2 kV时,间隙距离从3 mm变为5 mm时,电子发射电荷将从1.5μC增加到2.5μC。当间隙距离为4 mm时,在2 Pa的气压下PSS的保持电压为45 kV,最小工作电压小于1 kV。因此,工作范围是其自击穿电压的2.22%至99%。当触发脉冲电压为1 kV,放电电压从1 kV变为12 kV时,放电延迟时间从450 ns降低至150 ns。当触发脉冲电压为6 kV时,放电延迟时间小于100 ns,并且从100 ns变为50 ns,并且延迟抖动小于30 ns。

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