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W波段行波管低电压小型化技术研究

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有源相控阵雷达、无人机载侦察雷达的高频率发展,对小型化W波段行波管提出了明确应用需求.文中主要开展W波段行波管小型化研究,设计上采用低电压、大电流方案提高增益参量,使用高耦合阻抗慢波结构搭配相速跳变技术提升电子效率;同时开展零部件结构设计,实现整管小型化.基于上述方法开展了低电压百瓦级W波段行波管设计并进行了制管验证.实测结果显示工作电压12.8 kV,89 GHz~100 GHz频带内输出功率大于100 W;使用四极降压收集极提升总效率,90 GHz~99 GHz内总效率大于30%,整管带外包装件尺寸为252×50×42 mm3.
Study on the Low Voltage and Miniaturization Technologies for W-band Traveling Wave Tube
With the development of active phased array radars and unmanned aerial vehicle-borne reconnaissance radars to higher frequencies,there is a clear application demand for miniaturized W-band traveling wave tubes.In this paper,the miniaturi-zation of W-band TWT is mainly studied.Low voltage and high current are adopted to increase the gain parameter in the design.The folded slow wave structure with higher coupled impedance and the phase velocity step-tapering technology are used to improve the electronic efficiency.At the same time,the component structure design is carried out to realize the miniaturization of the TWT.Based on the above methods,the W-band TWT with lower voltage 12.8 kV and 252×50×42 mm3 volume was designed.The meas-ured results show that the output power is above 100 W at 89 GHz~100 GHz.A four-stage collector is used to improve the total ef-ficiency,30%is achieved at 90 GHz~99 GHz.

W-bandtraveling wave tubeslow voltageminiaturizedwide band

杜英华、蔡军、张小青、冯进军

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中国电子科技集团公司第十二研究所微波电真空器件国家级重点实验室,北京 100015

W波段 行波管 低电压 小型化 宽频带

2024

微波学报
中国电子学会

微波学报

CSTPCD北大核心
影响因子:0.483
ISSN:1005-6122
年,卷(期):2024.40(6)