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Experimental investigations on trigger characteristics of pseudospark switch based on surface flashover technology

机译:基于表面闪络技术的伪火花开关触发特性的实验研究

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摘要

A trigger device and a triggered pseudospark switch (TPSS) were designed based on surface flashover technology, in order to meet the requirements from present pulse power technology and pulse current test technology such as a long lifetime, reliability in a wide voltage range, a short delay time, as well as small delay jitters. The trigger devices were made from different dielectric materials, with their permittivities from tens to thousands. The trigger characteristics of TPSS were investigated. The results indicate that the high-dielectric trigger device shows better performance and higher emitted charge of the electron emission within all adjusted parameters including the gas pressure and applied voltage. For the dielectric material with relative permittivity epsilon(r) of 3460, when the gas pressure is 7 Pa, the hold-off voltage of TPSS is 28 kV, the minimum trigger switch voltage drops to 128 V, the minimum discharging delay time and delay jitter are less than 35ns and 6ns, respectively, and the reliable operation can be reached within a very large range of charging voltage, between 0.46% and 99% of its self-breakdown voltage.
机译:基于表面闪络技术设计了一种触发装置和一个触发伪火花开关(TPSS),以满足目前脉冲功率技术和脉冲电流测试技术的要求,例如使用寿命长,电压范围广,可靠性高。延迟时间,以及小的延迟抖动。触发装置由不同的介电材料制成,其介电常数从数十到数千。研究了TPSS的触发特性。结果表明,在包括气压和外加电压在内的所有调节参数内,高介电触发装置显示出更好的性能和更高的电子发射电荷。对于相对介电常数为3460的介电材料,当气压为7 Pa时,TPSS的保持电压为28 kV,最小触发开关电压降至128 V,最小放电延迟时间和延迟抖动分别小于35ns和6ns,并且可以在很大的充电电压范围(自击穿电压的0.46%至99%)之间实现可靠的工作。

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