Investigation of low-voltage broadband overmoded folded rectangular coaxial waveguide TWT at W-band
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1.School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 610054, China;2.Satellite Research Centre, Nanyang Technological University, Singapore 639798;3.Beijing Vacuum Electronics Research Institute, Beijing 100015, China

Clc Number:

TN124

Fund Project:

National Natural Science Foundation of China 61531010 61921002;the International Cooperating Project of Sichuan Province 2018HH0132;the National Key Lab Foundation of China 9140A23010415DZ02001Supported by National Natural Science Foundation of China (61531010, 61921002), the International Cooperating Project of Sichuan Province (2018HH0132), and the National Key Lab Foundation of China (9140A23010415DZ02001)

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    Abstract:

    To develop high frequency, broad bandwidth and low voltage traveling wave tube (TWT), the folded rectangular coaxial waveguide slow wave structure (FRCW-SWS) is proposed in this paper. Operating at overmoded condition, the proposed FRCW-SWS has relatively high operating frequency and acceptable transmission characteristics. A double ridge-loaded waveguide-to-coaxial-waveguide converter is designed and applied as the input/output coupler to incorporate the broadband characteristics of the FRCW-SWS. The hot performance of this overmoded FRCW-TWT at W-band is investigated using particle-in-cell (PIC) simulation. The simulation results indicate that the output power can be over 13.7 W in the frequency range of 76~110 GHz, when the length of the SWS, the beam voltage and beam current are 32 mm, 3230 V and 150mA, respectively. The maximal output power is about 27.4 W at the frequency of 108 GHz, corresponding to the RF efficiency of 5.65%.

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XU Duo, WANG Shao-Meng, SHAO Wei, HE Teng-Long, WANG He-Xin, TANG Tao, GONG Hua-Rong, LU Zhi-Gang, WANG Zhan-Liang, DUAN Zhao-Yun, WEI Yan-Yu, FENG Jin-Jun, GONG Yu-Bin. Investigation of low-voltage broadband overmoded folded rectangular coaxial waveguide TWT at W-band[J]. Journal of Infrared and Millimeter Waves,2020,39(4):422~429

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History
  • Received:July 11,2019
  • Revised:July 25,2020
  • Adopted:January 02,2020
  • Online: July 23,2020
  • Published:
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