用于加速器应用的固态快速过渡踢脚器

H. Sanders, S. Glidden, D. Warnow, C. Dunham
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引用次数: 0

摘要

随着每一个新的加速器设计,踢球器的要求变得更加复杂。本文将讨论两种设计,一种是静电踢脚器,一种是电磁踢脚器。静电促动器在距离触发器220纳秒的200 pF带线上实现了20 kV的跃迁,最大跃迁频率为40 kHz,在全功率下使用的功率小于8 kW。电磁踢脚器在0.523 μh的磁体中达到1000 A,上升时间为50 ns,工作频率为20 Hz。两个系统都是固态的。静电踢脚器使用快速谐振充电电路结合缓慢维护电路,在±10kv的推挽配置下工作。电压变化的上升时间小于100ns,任意一种状态都能无限期保持。磁铁启动器使用PFN和基于快速晶闸管的开关,然后是小脉冲压缩电路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solid state fast transition kickers for accelerator applications
Kicker requirements have become more complicated with each new accelerator design. This paper will talk about two designs, one for electrostatic kickers and one for electromagnetic kickers. The electrostatic kicker achieves a 20 kV transition on a 200 pF strip-line within 220 ns from trigger at a maximum transition frequency of 40 kHz using less than 8 kW at full power. The electromagnetic kicker achieves 1000 A into a 0.523 μh magnet with a 50 ns rise time operating at a maximum frequency of 20 Hz. Both systems are all solid state. The electrostatic kicker operates using a fast resonant charge circuit combined with a slow maintenance circuit in a push-pull configuration operating at ±10 kV. The rise time of the voltage change is less than 100 ns and either state can be maintained indefinitely. The magnet kicker operates using a PFN and a fast thyristor based switch followed by a small pulse compression circuit.
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