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Tesla变压器型重复频率纳秒脉冲源的研制
引用本文:姜立秋,王之江,俞斌,腾云,曾臻.Tesla变压器型重复频率纳秒脉冲源的研制[J].强激光与粒子束,2015,27(1):015001.
作者姓名:姜立秋  王之江  俞斌  腾云  曾臻
作者单位:1.华中科技大学 强磁场工程与新技术国家重点实验室, 武汉 430074
基金项目:国家科技计划专项(E20127178)
摘    要:脉冲变压器与陡化开关结合的方式是产生纳秒脉冲较为成熟的方式,采用这种方式,研制了一种基于空芯Tesla变压器和陡化开关的紧凑高压重复频率纳秒脉冲源。该脉冲源主要由重复频率充电模块、Tesla变压器和陡化开关三部分组成,重复频率充电模块主要通过晶闸管的时序配合实现,Tesla变压器为脉冲源装置系统的核心及主升压模块,陡化开关是一个三电极自击穿型气体开关,用于将变压器次级输出的电压陡化成纳秒快脉冲波形,对该重复频率脉冲源以上各部分进行了详细的设计和测试。实验结果表明,该脉冲源可以在6kΩ的负载电阻上输出幅值100kV、上升沿约为30ns、最高频率可达500Hz的高压纳秒脉冲。

关 键 词:Tesla变压器    重频纳秒脉冲    脉冲源    陡化开关
收稿时间:2014/5/30

Repetitive nanosecond pulse generator based on Tesla transformer
Jiang Liqiu , Wang Zhijiang , Yu Bin , Teng Yun , Zeng Zhen.Repetitive nanosecond pulse generator based on Tesla transformer[J].High Power Laser and Particle Beams,2015,27(1):015001.
Authors:Jiang Liqiu  Wang Zhijiang  Yu Bin  Teng Yun  Zeng Zhen
Institution:1.State Key Laboratory of Advanced Electromagnetic Engineering and Technology,Huazhong University of Science and Technology,Wuhan 430074,China
Abstract:The combination of pulse transformer and sharpening switch is a relatively mature way to generate nanosecond pulse. In this way, a compact high voltage repetitive nanosecond pulse generator (HRNPG) based on Tesla transformer and spark switch is developed in this paper. The pulse generator mainly consists of a repetitive charging module, a Tesla transformer and a sharpening switch. Repetitive charging module is mainly implemented by temporal coordination of two thyristors, Tesla transformer is the core of the pulse generator and main booster module, sharpening switch is a three electrode self-breakdown type gas switch, which is used to sharpen the transformer secondary voltage into nanosecond pulse waveform. Each part of the HRNPG is presented and tested in detail. Applied to a 6 k resistor, the HRNPG prototype is capable of generating a pulse with 100 kV peak voltage and 30 ns rise time at the maximum repetition rate of 500 Hz.
Keywords:Tesla transformer  repetitive nanosecond pulse  pulse generator  peaking switch
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