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作 者:纪焕丽 杨金生[1] 孙然 高畅 JI Huanli;YANG Jinsheng;SUN Ran;GAO Chang(National Key Laboratory of Science and Technology on Vacuum Electronics,Beijing Vacuum Electronics Research Institute,Beijing 100015,China)
机构地区:[1]北京真空电子技术研究所微波电真空器件国家级重点实验室,北京100015
出 处:《真空电子技术》2024年第1期1-5,共5页Vacuum Electronics
摘 要:针对W波段平面一维阵列集成行波管设计,采用非半圆弯曲变形折叠波导慢波结构和聚焦极调制皮尔斯电子枪,基于CST、MTSS和Opera软件优化设计了集成行波管高频系统和电子光学系统,实现了W波段低电压小电流工作的低功率行波管设计,通过周期永磁(PPM)聚焦系统制管验证了高频系统和电子枪设计的合理性。测试结果表明,行波管在工作电压12.62 kV,工作电流31.6 mA条件下,输出功率大于10 W的带宽达到5 GHz,增益优于28 dB,总效率优于10%,测试结果与设计结果具有较好一致性,为W波段行波管实现阵列集成提供技术支撑。A travelling wave tube(TWT)consists of a folded waveguide slow wave structure with modified circulator bends and a Pierce electron gun modulated by focusing electrode is developed for planar-integrated research.The high-frequency system and electronic optical system of the integrated TWT are optimized by CST,MTSS,and Opera software,and the low-power design of TWT with low voltage and low current is achieved.The rationality of the high-frequency system and electron gun design is verified through a prototype tube with periodic permanent magnet(PPM)focusing system.The test results of the TWT show that at a voltage of 12.62kV and a current of 31.6 mA,the bandwidth with an output power over 10 W reaches 5GHz,the gain is over 28dB and the efficiency is over 10%,which is in good agreement with the design.The research provides a technological support for the array integration application of W-band TWTs.
分 类 号:TN124[电子电信—物理电子学]
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