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Helium Breakdown Characteristics under 100 kHz Range Pulsed Voltages in Partial Vacuum for Point-to-point Electrode Geometry

机译:氦击穿特性在100 kHz范围内的脉冲电压下的部分真空,用于点对点电极几何形状

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In this paper we present our work on breakdown studies conducted in helium at partial vacuum conditions for a point-to-point electrode setup. A high frequency pulsed voltage signal is applied across the electrodes and the voltage-current characteristics are observed. The applied signal consists of a train of square pulses in the frequency range of 50 to 200 kHz with 50% duty cycle and rise/fall times in the range of 20-30 ns. These studies were conducted to understand and compare the role of the pulse repetition rate in electrical breakdown initiation in low pressure conditions. Preliminary data of voltage and current waveforms, along with the light emission data are presented. The optical data collected by a PMT (photo multiplier tube) as a function of the time is presented in comparison to the varying voltage
机译:在本文中,我们展示了我们在氦中进行的击穿研究的作品,以用于点对点电极设置的部分真空条件。在电极上施加高频脉冲电压信号,观察到电压电流特性。所施加的信号由50至200kHz的频率范围的平方脉冲列车组成,具有50%的占空比和20-30ns范围内的升高/下降时间。进行这些研究以了解并比较脉冲重复率在低压条件下的电击穿发起中的作用。提出了电压和电流波形的初步数据以及发光数据。由PMT(照片乘法器管)收集的光学数据与变化电压相比呈现了时间的函数

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