用于高压脉冲功率开关的光纤控制PCSS触发器

S. Glover, F. Zutavern, K. Reed, M. Swalby, A. Mar, M. L. Horry, F. White, F. Gruner
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引用次数: 3

摘要

本文报道了光纤触发光导半导体开关(PCSS)的研制进展,该开关可提高触发高压脉冲功率开关的精度。该技术可以消除对大直径触发电缆和视距光学器件的需求。它还具有显著降低触发发电系统成本的潜力。由于低抖动的亚纳秒级上升时间,它有可能提高主功率开关、分流器和诊断的性能。测试结果将展示由PCSS触发的亚纳秒级抖动,由PCSS触发的商用三管开关的抖动小于1.2纳秒,以及由基于PCSS的触发系统触发的200kv级开关的性能分析。这项工作是朝着创建可靠的独立的基于pcss的触发发生器迈出的一步,该触发发生器可以物理地位于高压开关上,允许触发硬件浮动。与触发系统的唯一连接将是低能量光纤,从而消除了穿越高势场或视距光学的高压电缆的需要
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Fiber-Optic Controlled PCSS Triggers For High Voltage Pulsed Power Switches
This paper reports on progress in the development of fiber optically triggered photoconductive semiconductor switches (PCSS) for triggering high voltage pulsed power switches with improved precision. This technology can eliminate the need for large-diameter trigger cables and line-of-sight optics. It also has the potential of significantly reducing the cost of trigger generation systems. It has the potential to improve the performance of prime power switches, diverters, and diagnostics because of the low-jitter sub-nanosecond rise times. Test results will be presented that demonstrate sub-nanosecond jitter from a PCSS, less than 1.2 nanoseconds of jitter from a commercial trigatron switch triggered by PCSS, and the performance analysis of a 200 kV class switch triggered by a PCSS based triggering system. This work is a step toward the creation of a reliable self-contained PCSS-based trigger generator that can be physically located on a high voltage switch, allowing the triggering hardware to float. The only connection to the trigger system will be a low energy optical fiber, thereby eliminating the need for HV cables traversing high potential fields or for line-of-sight-optics
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