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A DC Voltage-Multiplier Circuit Working as a High-Voltage Pulse Generator

机译:用作高压脉冲发生器的直流倍压电路

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摘要

The intensive use of semiconductor devices enabled the development of a repetitive high-voltage pulse-generator topology from the dc voltage-multiplier (VM) concept. The proposed circuit is based on an odd VM-type circuit, where a number of dc capacitors share a common connection with different voltage ratings in each one, and the output voltage comes from a single capacitor. Standard VM rectifier and coupling diodes are used for charging the energy-storing capacitors, from an ac power supply, and two additional on/off semiconductors in each stage, to switch from the typical charging VM mode to a pulse mode with the dc energy-storing capacitors connected in series with the load. Results from a 2-kV experimental prototype with three stages, delivering a 10-mu s pulse with a 5-kHz repetition rate into a resistive load, are discussed. Additionally, the proposed circuit is compared against the solid-state Marx generator topology for the same peak input and output voltages.
机译:半导体器件的大量使用使直流电压倍增器(VM)概念的重复高压脉冲发生器拓扑结构得以发展。所提出的电路是基于奇数VM型电路的,其中多个dc电容器在每个电容器中共享具有不同额定电压的公共连接,并且输出电压来自单个电容器。标准VM整流器和耦合二极管用于从交流电源为储能电容器充电,并在每级中使用两个附加的开/关半导体,以从典型的充电VM模式切换到具有直流能量的脉冲模式,存储与负载串联的电容器。讨论了具有三个阶段的2 kV实验原型的结果,该实验以10 kHz的重复频率以5 kHz的重复频率向电阻负载传递脉冲。此外,针对相同的峰值输入和输出电压,将提出的电路与固态马克思发生器拓扑进行了比较。

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