A History Of Thyratron Lifetimes At The Stanford Linear Accelerator Center

D. Ficklin
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引用次数: 7

Abstract

The Stanford Linear Accelerator Center (SLAC) has been in almost continuous operation since the middle 1960s, providing a remarkable opportunity to amass thyratron data. This paper reviews the history of this thyratron usage, focusing primarily on data collected during the last ten years of accelerator operation. There have been two distinct operating conditions during the history of operation at SLAC. Prior to 1985, the fundamental thyratron operating points were 46 kV anode voltage (Epy), 4.2 kA peak current, 3.8 {mu}s equivalent square pulse (esp), with a maximum repetition rate of 360 pulses per second (pps). The accelerator was upgraded during 1985, and the thyratron operating points are now 46 kV Epy, 6.3 kA, 5.4 {mu}s esp, with a maximum repetition rate of 120 pps. The SLAC high-energy physics research program requires that each of the available modulator klystron units provide a stable microwave energy source. Within these constraints, this paper explores historical thyratron lifetimes at SLAC, reviewing the available data to determine how long these thyratrons can be expected to operate before failure currently or recently used in the 243 accelerator modulators.
斯坦福直线加速器中心闸流管寿命的历史
斯坦福直线加速器中心(SLAC)自20世纪60年代中期以来几乎一直在连续运行,为积累闸流管数据提供了一个绝佳的机会。本文回顾了这种闸流管的使用历史,主要集中在过去十年加速器运行中收集的数据。在SLAC的运行历史中有两种不同的运行条件。1985年以前,闸流管的基本工作点为46 kV阳极电压(Epy), 4.2 kA峰值电流,3.8 μ s等效平方脉冲(esp),最大重复频率为360脉冲/秒(pps)。加速器在1985年进行了升级,闸流管工作点现在是46千伏,6.3千伏,5.4毫伏,最大重复频率为120秒。SLAC高能物理研究计划要求每个可用的调制器速调管单元提供稳定的微波能量源。在这些限制下,本文探讨了SLAC历史上闸流管的寿命,回顾了可用的数据,以确定这些闸流管在当前或最近用于243加速器调制器的故障之前可以预期运行多长时间。
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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