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Electrically Triggered Water Switches

机译:电触发的水开关

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We have developed an electrically triggered water switch as a low-cost, compact alternative to laser switching. The trigger electrode of the trigatron-type switch consists of a tungsten wire with a diameter of 50 mum, enclosed in glass tubing. The high electric fields at the triple-point (metal, glass, water) allow the generation of plasma streamers for a trigger voltage of approximately +16 kV at a pulse duration of 100 ns. The luminous streamers propagate with a speed on the order of 20 km/s to the two main electrodes. The applied main gap voltage and the trigger voltage, and the distances between electrodes, can be adjusted such that the filaments reach the opposite electrodes at approximately the same time. The streamers then serve as preionized channels for the breakdown between the main electrodes. Preliminary experiments with this trigger system have demonstrated the feasibility of this concept. We were able to consistently trigger breakdown of the main gap for voltages in the range of 18 to 30 kV. The delay time of the main breakdown to the trigger pulse was approximately 150 ns, and the minimum jitter was less than plusmn10 ns. Better positioning of the trigger electrode promises to reduce the jitter to values on the order of nanoseconds
机译:我们开发了一种电触发的水开关作为激光切换的低成本,紧凑的替代方案。 Trigatron型开关的触发电极由直径为50毫米的钨丝,封装在玻璃管中。三穴(金属,玻璃,水)处的高电场允许在100ns的脉冲持续时间内产生大约+16kV的触发电压的等离子体飘带。发光飘闻器以20km / s的速度传播到两个主电极。可以调节施加的主间隙电压和触发电压以及电极之间的距离,使得细丝大致同时到达相对电极。然后,飘带用作主电极之间的击穿的后频道。具有此触发系统的初步实验表明了这一概念的可行性。我们能够始终如一地触发主隙的击穿,用于18至30 kV的电压。主击穿到触发脉冲的延迟时间为约150ns,最小抖动小于PLUSMN10 NS。更好地定位触发电极的定位承诺将抖动减少到纳秒顺序的值

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