摘要
给出了一种基于TTL数字电路作为高压脉冲源触发控制单元的设计原理和方法。介绍了高压脉冲源的工作原理,设计了一台脉冲输出幅度5kV、脉冲宽度大于200μs及脉冲前沿小于30ns的高压脉冲源。将触发控制单元和前级开关金属氧化物半导体场效应管(MOSFET)组合成一体,控制后级气体高压开关管放电输出高压脉冲信号。实验结果验证了所采用的设计原理及方法的可行性,给出了单次触发情况下的实验结果。
The paper introduces a TTL digital circuit,which is designed as the trigger control system of high power pulse source,and presents the development of a high-voltage pulse source.In the source,the TTL circuit operated after the optical isolation circuit and power driver,and outputs pulse signals to drive MOSFET,which controls the pulse signal output from high-voltage switch.The source can outputs pulses with voltage of 5 kV,pulse-width larger than 200 μs and fall-time less than 30 ns.Besides long-distance control and local control mode,it also includes inner trigger and external trigger(one electric signal and one optical signal as the trigger).A series of experiments have been conducted to validate the design,and the one-shot trigger results are presented.
出处
《强激光与粒子束》
EI
CAS
CSCD
北大核心
2012年第3期678-680,共3页
High Power Laser and Particle Beams
关键词
TTL数字电路
脉冲功率
半导体开关
气体高压开关
高压脉冲
TTL digital circuit
pulsed power
semiconductor switch
high-voltage gas switch
high-voltage pulse