一种用于闸流管测试和评估的低功耗电路

C. Pirrie, P. Culling, H. Menown, R. Sheldrake
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引用次数: 1

摘要

详细研究了闸流管评估的作弊电路技术。介绍了基于该技术的导频电路的设计、构造和运行情况。电路中使用CX1825闸流管,电流脉冲峰值为1000 A,半正弦基宽为11 μ s,阳极电压为35 kV,脉冲重复率为500 ~ 600 p.p.s。在平均电流为4 A的情况下,导频电路的有效闸流管平均功率为70 kW,但电路功耗仅为1350 W,功耗降低系数超过50。CX1536闸流管在更高功率的欺骗电路中工作,有效平均功率为250 kW,阳极电压为50 kV, 1100 p.p.s.时峰值电流为2.1 kA。结论是,该技术代表了评估高平均功率闸流管的有效和通用手段,特别是在只需要中等峰值功率的情况下
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A low power-loss circuit for thyratron test and evaluation
A cheater circuit technique for thyratron evaluation is examined in detail. The design, construction and operation of a pilot circuit based on the technique is described. A CX1825 thyratron is operated in the circuit, where the current pulse is 1000 A peak with a half-sinusoidal base width of 11 mu s, the anode voltage is 35 kV, and the pulse repetition rate is 500-600 p.p.s. With an average current of 4 A, the pilot circuit thus operates at an effective thyratron average power of 70 kW, but only consumes 1350 W of circuit power, representing a power bill reduction factor in excess of 50. A CX1536 thyratron is operated in a higher-power version of the cheater circuit at an effective average power of 250 kW, with an anode voltage of 50 kV and a peak current of 2.1 kA at 1100 p.p.s. It is concluded that the technique represents an effective and versatile means of evaluating thyratrons at high average powers, particularly where only moderate peak powers are required.<>
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