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340GHz倒圆角交错双栅行波管的仿真与冷测

邵伟 田瀚文 王战亮 唐涛 巩华荣 段兆云 魏彦玉 冯进军 宫玉彬

红外与毫米波学报2019,Vol.38Issue(3):303-309,7.
红外与毫米波学报2019,Vol.38Issue(3):303-309,7.DOI:10.11972/j.issn.1001-9014.2019.03.008

340GHz倒圆角交错双栅行波管的仿真与冷测

Simulation and cold test of a 340 GHz filleted staggered double vane traveling wave tube

邵伟 1田瀚文 1王战亮 1唐涛 1巩华荣 1段兆云 1魏彦玉 1冯进军 2宫玉彬1

作者信息

  • 1. 电子科技大学微波电真空器件国家级重点实验室,四川成都610054
  • 2. 真空电子技术研究所,北京100015
  • 折叠

摘要

Abstract

Staggered double vane traveling wave tubes have been given a lot of attentions in recent years due to its high power capacity and easy fabrication.However,the loss seriously limits the performance of traveling wave tube with the increasing of frequency,especially in THz wave band.In this paper,a more practical design about staggered double vane suucture is proposed with the consideration of the loss and fillets caused by fabrication.The simulation results indicate that the tube with uniform period slow wave structures can obtain over 5 W output power in the frequency range from 320 GHz to 342 GHz.The method of phase-velocity taper is used to enhance the output power and the simulation results show an obvious improvement of the power with more than 28% in the operating wave band.Based on these,the experiment of the fabricated high frequency system with filleted staggered double vane slow wave structure is carried out.The tested S21 of pillbox window is above-2.1 dB in the frequency range from 330 GHz to 360 GHz and VSWR (voltage standing wave ratio) is below 1.35 in the frequency range from 334 GHz to 355 GHz.And the tested VSWR of the high frequency system including the pillbox window is below 2 in the frequency range from 335 GHz to 344 GHz,which matches with the simulation results.

关键词

倒圆角的交错双栅/行波管/损耗/加工/盒型窗/相速跳变

Key words

filleted staggered double vane/traveling wave tube/loss/fabrication/pillbox window/phase-velocity taper

分类

信息技术与安全科学

引用本文复制引用

邵伟,田瀚文,王战亮,唐涛,巩华荣,段兆云,魏彦玉,冯进军,宫玉彬..340GHz倒圆角交错双栅行波管的仿真与冷测[J].红外与毫米波学报,2019,38(3):303-309,7.

基金项目

Supported by the National Natural Science Foundation of China (61531010) (61531010)

红外与毫米波学报

OA北大核心CSCDCSTPCDSCI

1001-9014

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