Analysis of oscillation-starting characteristics in millimeter wave extended interaction oscillators
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School of Electronic Science and Engineering, University of Electronic Science and Technology of China Chengdu 610054, China

Clc Number:

TN129

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Supported by the National Natural Science foundation of China (61671116, 61771096, 11905026), National Key Research and Development Program of China (2019YFA0210202) and Fundamental Research Funds for the Central Universities (ZYGX2019Z006, ZYGX2019J012)

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    Abstract:

    The investigations of the oscillation-starting characteristics of a ladder-type RF circuit are proposed to overcome the limitation of high ohmic loss for development of millimeter-wave extended interaction oscillators (EIOs). Based on PIC-simulations, quantitative calculations and theoretical analyses, the designed and fabricated W-band EIO is proved to have the possibility of greatly reducing the oscillation-starting current. By optimizing five aspects including the gap number, cavity dimension, field distribution, operation voltage, and surface loss, the oscillation-starting current of the EIO can be reduced to 0.43 A with a beam voltage of 17.5 kV. According to cold test experiment, the output power attenuation is analyzed and predicted.

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XU Che, MENG Lin, YIN Yong, BI Liang-Jie, CHANG Zhi-Wei, LI Hai-Long, WANG Bin. Analysis of oscillation-starting characteristics in millimeter wave extended interaction oscillators[J]. Journal of Infrared and Millimeter Waves,2021,40(5):627~633

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History
  • Received:September 03,2020
  • Revised:September 07,2021
  • Adopted:November 18,2020
  • Online: September 07,2021
  • Published:
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