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Investigations about triggering of coaxial multichannel pseudospark switches

机译:同轴多通道伪火花开关的触发研究

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A fundamental problem of pseudospark switches is erosion in the borehole area. One way to reduce erosion is to distribute the current to several discharge channels. Essential for multichannel operation is a reliable ignition of all these channels. The aim of this work was to find out the requirements for a trigger for multichannel pseudospark switches and to develop a suitable trigger device. The investigations were made with a three channel pseudospark switch. The developed trigger is a pulsed hollow cathode discharge with a 3 mA dc-preionization. A trigger voltage of 4 kV results in a current of about 6 A in the hollow cathode of the trigger-section. This hollow cathode discharge causes a trigger current into the hollow cathodes of the pseudospark chambers. The trigger current which is necessary to ignite an equally distributed discharge has to be at least 3 mA into each main switch hollow cathode. A jitter of 2 ns was achieved for the coaxial multichannel pseudospark switch.
机译:伪火花开关的基本问题是井眼区域的侵蚀。减少腐蚀的一种方法是将电流分配到多个放电通道。多通道运行必不可少的是所有这些通道的可靠点火。这项工作的目的是找出多通道伪火花开关的触发条件,并开发出合适的触发设备。使用三通道伪火花开关进行了调查。开发的触发器是具有3 mA直流预电离的脉冲空心阴极放电。 4 kV的触发电压会在触发部分的空心阴极中产生约6 A的电流。该空心阴极放电导致触发电流进入伪火花腔的空心阴极。点燃相等分布的放电所需的触发电流必须至少进入每个主开关空心阴极3 mA。同轴多通道伪火花开关的抖动为2 ns。

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