低压场射极阵列阴极行波管工作

D. Whaley, R. Duggal, C. Armstrong, C. Bellew, C. Holland, C. Spindt
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引用次数: 2

摘要

场发射极阵列作为行波管电子束源的实现近年来取得了一些进展。然而,低压Spindt场发射极阵列的发展使得在比过去所需的电压显著降低的情况下工作成为可能,潜在地提高了发射极的可靠性和使用寿命。因此,L-3 Electron Devices与SRI International合作,正在开发一种采用这些新阴极的场发射极阵列行波管(FEA-TWT),以评估它们在行波管真空环境中的运行情况,研究特定于场发射极阵列的行波管设计,并量化FEA-TWT性能的几个方面,这些方面将与传统的热电子基行波管有很大不同。本文报道了spindt型场发射极阵列,其工作电压比SRI公司生产的上一代发射极大大降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TWT Operation with Low-Voltage Field Emitter Array Cathode
The implementation of field emitter arrays as an electron beam source for TWTs has experienced some advancement in the recent past. The development of low-voltage Spindt field emitter arrays however have made possible operation at significantly reduced voltages than those required in the past, potentially improving emitter reliability and lifetime. As such, L-3 Electron Devices, teamed with SRI International, is developing a field emitter array TWT (FEA-TWT) employing these new cathodes in order to evaluate their operation in the TWT vacuum environment, to investigate TWT design specific to use of field emitter arrays, and to quantify several aspects of FEA-TWT performance that will be substantially different than those of conventional thermionic-based TWTs. This paper reports the Spindt-type field emitter arrays, which exhibit greatly reduced operating voltages from those of the previous generation of emitters produced by SRI.
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