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F波段低损耗宽带波导气密结构

龚自垚 李若雪 张筱健 蒋均 何月 刘戈 聂荣怀 邓贤进

太赫兹科学与电子信息学报2026,Vol.24Issue(5):554-560,7.
太赫兹科学与电子信息学报2026,Vol.24Issue(5):554-560,7.DOI:10.11805/TKYDA2025383

F波段低损耗宽带波导气密结构

F-band low-loss broadband waveguide hermetic structure

龚自垚 1李若雪 1张筱健 1蒋均 1何月 1刘戈 1聂荣怀 2邓贤进1

作者信息

  • 1. 中国物理工程研究院 电子工程研究所,四川 绵阳 621999||中国物理工程研究院微系统与太赫兹研究中心,四川 成都 610200
  • 2. 南京信息工程大学 电子与信息工程学院,江苏 南京 210044
  • 折叠

摘要

Abstract

With the advancement of millimeter-wave communication and radar technologies,high-frequency electronic systems impose stringent requirements on hermetic packaging for components.However,traditional hermetic transition structures often struggle to simultaneously achieve low insertion loss and wide bandwidth performance.To address this challenge,this paper presents the design and verification of a high-performance hermetic circuit structure based on an H-plane microstrip-to-waveguide probe.The structure employs a quartz substrate that fully covers the waveguide aperture for solder sealing,and utilizes a centrally symmetric microstrip topology circuit to achieve efficient waveguide-to-microstrip transition.Simulation results demonstrate that within the 101~122 GHz frequency band,the structure achieves an Insertion Loss(IL)of less than 0.183 dB and a Return Loss(RL)greater than 20 dB.Measured results show that within the 105~121 GHz bandwidth,the IL remains below 1.02 dB with a RL better than 20 dB,the helium leak rate is below 6.6×10-10 Pa ∙ m3/s.These results confirm that the proposed design not only delivers excellent airtightness and low-loss characteristics,but also offers advantages including compact structure,flexible port length configuration,and simple fabrication process,making it highly suitable for practical engineering applications.

关键词

F波段/转换损耗/气密性/介质密封

Key words

F-band/transformation loss/airtightness/dielectric sealing

分类

信息技术与安全科学

引用本文复制引用

龚自垚,李若雪,张筱健,蒋均,何月,刘戈,聂荣怀,邓贤进..F波段低损耗宽带波导气密结构[J].太赫兹科学与电子信息学报,2026,24(5):554-560,7.

基金项目

国家自然科学基金资助项目(12327808) (12327808)

国家重点研发计划资助项目(2023YFB3207801) (2023YFB3207801)

国家重大科研仪器研制项目 ()

中国工程物理研究院院长基金资助项目(YZJJZC2022001) (YZJJZC2022001)

太赫兹科学与电子信息学报

2095-4980

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