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The Influence of Electrode Surface Mercury Film Deformation on the Breakdown Voltage of a Sub-Nanosecond Pulse Discharge Tube

机译:电极表面汞膜变形对亚纳秒脉冲放电管击穿电压的影响

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摘要

A sub-nanosecond pulse discharge tube is a gas discharge tube which can generate a rapid high-voltage pulse of kilo-volts in amplitude and sub-nanoseconds in width. In this paper, the sub-nanosecond pulse discharge tube and its working principles are described. Because of the phenomenon that the deformation process of the mercury film on the electrode surface lags behind the charging process, the mercury film deformation process affects the dynamic breakdown voltage of the tube directly. The deformation of the mercury film is observed microscopically, and the dynamic breakdown voltage of the tube is messured using an oscillograph. The results show that all the parameters in the charging process, such as charging resistance, charging capacitance and DC power supply, affect the dynamic breakdown voltage of the tube. Based on these studies, the output pulse amplitude can be controlled continuously and individually by adjusting the power supply voltage. When the DC power supply is adjusted from 7 kV to 10 kV, the dynamic breakdown voltage ranges from 6.5 kV to 10 kV. According to our research, a kind of sub-nanosecond pulse generator is made, with a pulse width ranging from 0.5 ns to 2.5 ns, a rise time from 0.32 ns to 0.58 ns, and a pulse amplitude that is adjustable from 1.5 kV to 5 kV.
机译:亚纳秒脉冲放电管是气体放电管,其可以在宽度的幅度和亚纳秒内产生快速高压脉冲。在本文中,描述了亚纳秒脉冲放电管及其工作原理。由于汞膜对电极表面上的变形过程滞后的现象,汞膜变形过程直接影响管的动态击穿电压。显微镜地观察汞膜的变形,并且使用示波器汇流管的动态击穿电压。结果表明,充电过程中的所有参数,如充电电阻,充电电容和直流电源,影响管的动态击穿电压。基于这些研究,通过调节电源电压,可以连续且单独地控制输出脉冲幅度。当直流电源从7 kV到10 kV调节时,动态击穿电压范围为6.5 kV至10kV。根据我们的研究,进行了一种亚纳秒脉冲发生器,脉冲宽度范围为0.5 ns至2.5 ns,从0.32 ns到0.58 ns的上升时间,以及可调节1.5 kV至5的脉冲幅度kv。

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