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Development of a high voltage steep-sided nanosecond pulse generator

机译:高压陡边纳秒脉冲发生器的开发

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The surface flashover voltage of the insulator in vacuum is much lower than that of both insulator and the vacuum gap in the same dimension. The critical factor that impacts surface flashover voltage is the accumulation of surface charge which can severely restrict the performance of the vacuum devices. In order to research the distribution of charge on the surface of the insulator under nanosecond pulse in vacuum, a nanosecond pulse generator whose output amplitude and pulse width can be adjusted flexibly and a capacitive divider which is designed for the pulse measurement have been developed in this paper. Considering the required voltage waveform and the insulation strength of test chamber, the rising edge of the nanosecond pulse designed in this paper is about 10ns, the pulse width is about 100ns. The capacitive divider whose divider ratio is 476.45:1 and bandwidth is 56.69MHz can accurately measure the output pulse voltage.
机译:真空中绝缘子的表面闪络电压远低于相同尺寸的绝缘子和真空间隙的表面闪络电压。影响表面闪络电压的关键因素是表面电荷的积累,这会严重限制真空设备的性能。为了研究真空中纳秒脉冲下绝缘子表面的电荷分布,已开发出可灵活调节输出幅度和脉冲宽度的纳秒脉冲发生器,并开发了用于脉冲测量的电容分压器。纸。考虑到所需的电压波形和测试室的绝缘强度,本文设计的纳秒脉冲的上升沿约为10ns,脉冲宽度约为100ns。分压比为476.45:1,带宽为56.69MHz的电容分压器可以精确测量输出脉冲电压。

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