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A Fast Modular Semiconductor-Based Marx Generator for Driving Dynamic Loads

机译:基于快速模块化半导体的马克思发生器,用于驱动动态负载

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The challenging demands of pulsed electron beam devices (such as the GESA device) with respect to their pulsed power supply have led to the development of a new semiconductor-based Marx generator. At a maximum output voltage of 120 kV and 600-A pulse current for a duration of up to 100 mu S, stepwise arbitrary output waveforms are desired. A fast rise time of the generator is achieved by using fast switching circuitry, low inductance capacitors, and a low inductance stage arrangement. For low jitter triggering of all stages and efficient signal transmission, the generator uses an optical bus system for communication. Due to the inherent dynamic load characteristics of the GESA device, the generator features a fast overcurrent protection scheme. This paper presents selected design aspects of the generator and their validation in a small-scale assembly able of delivering up to 8 kV at 600-A load current.
机译:脉冲电子束装置(例如GESA装置)对脉冲电源的挑战性要求导致了新型基于半导体的马克思发生器的发展。在120 kV的最大输出电压和600 A的脉冲电流下持续100 ms的持续时间,需要逐步生成任意的输出波形。发电机的快速上升时间是通过使用快速开关电路,低电感电容器和低电感级布置实现的。为了降低所有阶段的抖动并提高信号传输效率,发生器使用光总线系统进行通信。由于GESA设备固有的动态负载特性,该发电机具有快速过流保护方案。本文介绍了发电机的选定设计方面及其在小型组件中的验证,该组件能够在600A负载电流下提供高达8kV的电压。

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