基于大型准光学空间功率组合阵列的Ku波段100kw行波管

R. Hwu, J. Ren, D. Kress, Sam V. Judd, Jordan M. Krebs, L. Sadwick, A. Burke, J. Petillo
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引用次数: 1

摘要

本文通过展示一种覆盖12-15 GHz、输出功率为100千瓦的ku波段高功率行波管,进一步发展了用于高功率毫米波行波管的新型准光空间功率组合阵列。具体而言,由15个波束-波相互作用电路慢波结构组成的准光学空间功率组合阵列组成的ku波段高功率行波管,在ku波段实现了超过100 kW的组合输出功率。准光空间功率组合阵列中的15个独立波束相互作用结构排列成线性阵列。代替单个阴极,15个阴极,每个阴极都有自己的焦点电极,换句话说,总共15个焦点电极也被用来为15个通道的单个波束相互作用结构的大型准光学空间功率组合阵列创建所需的大束片。虽然最初设计的是单级集热器,但是为了提高k波段高功率行波管的效率,还将设计和实施多级抑制集热器。ku波段高功率行波管的整体尺寸相对较小,因为5种波束相互作用结构共享相同的真空包络层和电子束聚焦光学。本文将介绍该ku波段高功率行波管的设计和制作,以展示具有合理宽带宽的高功率毫米波行波管的大型准光空间功率组合阵列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ku band, 100 kW traveling wave tube based on large quasi-optical spatial power combining array
We report here further development of the novel quasi-optical spatial power combining array for high power millimeter wave (MMW) traveling wave tubes (TWTs) by demonstrating a Ku-band high power TWT which covers 12-15 GHz and with 100 kilowatt (kW) output power. Specifically, a Ku-band high power TWT which consists of a quasi-optical spatial power combining array of fifteen beam-wave interaction circuit slow wave structures and, as a result, beam width/height aspect ratio of close to 85 was developed to achieve a combined output power of over 100 kW at Ku-band. The 15 individual beam-wave interaction structures in the quasi-optical spatial power combining array are arranged into a linear array. Instead of a single cathode, fifteen cathodes, each with its own focus electrode or, in other words, a total of 15 focus electrodes are also used to create a required large sheet of beam for the large quasi-optical spatial power combining array of 15 channels of individual beam-wave interaction structure. Although a single stage collector was initially designed, however, a multi-stage depressed collector will also be designed and implemented to improve the efficiency of this K-band high power TWT. The overall size of the Ku-band high power TWT is relatively small since the same vacuum envelope and electron beam focus optics are shared among the five beam-wave interaction structures. Design and fabrication of this Ku-band high power TWT will be presented to demonstrate the large quasi optical spatial power combining array for very high power MMW TWTs and with reasonable broad bandwidth.
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