Design and characteristics of a fiber laser powered repetitive micro-plasma jet triggered gas switch.

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION
Sitong Tian, Li Chen, Haojie Cao, Xiaoqian Zhang
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引用次数: 0

Abstract

To satisfy the need for low jitter in gas switches at repetition rate and enhance insulation reliability during high voltage operation of the trigger, we propose a micro-jet triggering system. This system requires less energy and can use a laser power supply as an energy source. It effectively improves the insulation stability of the trigger when working at high potentials and achieves a good triggering effect with low jitter at low working coefficients. The breakdown characteristics were tested by double-pulse experiments. Ensuring the same operating conditions for both pulses, the pulse interval was varied to obtain the breakdown voltage dispersion at different repetition rates. The results indicate that the dispersion of the breakdown voltages can reach 0.16% at a frequency of 50 Hz with a pulse front of 30 μs, representing an order of magnitude reduction compared to the 1.45% at switching self-breakdown, and decreases further as the air pressure rises. In addition, the size of the microcapillary has an impact on the dispersion of breakdown voltage. It was found that for a range of lengths from 2 to 6 mm and aperture sizes from 80 to 400 μm, the trigger jitter was lower when the length was larger and the aperture was smaller. Furthermore, a trigger life test was performed on the ceramic capillary, and after one million triggers, the system remained stable with no degradation in trigger performance.

光纤激光器驱动的重复微等离子体射流触发气体开关的设计与特性。
为了满足气体开关在重复频率下的低抖动需求,并提高触发器高压工作时的绝缘可靠性,我们提出了一种微型喷射触发系统。该系统能耗较低,可使用激光电源作为能源。它能有效提高触发器在高电位工作时的绝缘稳定性,并在低工作系数时实现低抖动的良好触发效果。击穿特性通过双脉冲实验进行了测试。在确保两个脉冲的工作条件相同的情况下,改变脉冲间隔以获得不同重复率下的击穿电压色散。结果表明,在频率为 50 Hz、脉冲前沿为 30 μs 时,击穿电压的分散度可达 0.16%,与开关自击穿时的 1.45% 相比降低了一个数量级,并且随着气压的升高而进一步降低。此外,微毛细管的尺寸对击穿电压的分散也有影响。研究发现,在长度为 2 至 6 毫米、孔径为 80 至 400 微米的范围内,长度越大、孔径越小,触发抖动越小。此外,还对陶瓷毛细管进行了触发寿命测试,经过一百万次触发后,系统保持稳定,触发性能没有下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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