您当前的位置:
首页 >
文章列表页 >
Improvement of shielding effectiveness of airborne digital equipment
Micro\/Nano Technology and Fine Mechanics | 更新时间:2026-09-12
    • Improvement of shielding effectiveness of airborne digital equipment

    • Optics and Precision Engineering   Vol. 31, Issue 11, Pages: 1660-1671(2023)
    • DOI:10.37188/OPE.20233111.1660    

      CLC: TP394.1;TH691.9
    • Received:13 February 2023,

      Revised:2023-03-02,

      Published:10 June 2023

    移动端阅览

  • HAN Songwei,HAN Songhui,XU Liang,et al.Improvement of shielding effectiveness of airborne digital equipment[J].Optics and Precision Engineering,2023,31(11):1660-1671.

  •  
  •  
icon
试读结束,您可以激活您的VIP账号继续阅读。
去激活 >
icon
试读结束,您可以通过登录账户,到个人中心,购买VIP会员阅读全文。
已是VIP会员?
去登录 >

0

Views

1356

下载量

0

CSCD

Alert me when the article has been cited
提交
Tools
Download
Export Citation
Share
Add to favorites
Add to my album

Related Articles

Electromagnetic radiation test of high-power TEA CO2 laser and its shielding cabin design
Design of electromagnetic compatibility for vehicular optic-electronic equipment
Prediction of variation of inductive crosstalk in automotive cable bundles
Electromagnetic compatibility design in optics and image processing equipment
The Overall Electromagnetic Compatibility Design of High Frequency Wideband Amplifier

Related Author

王鹤淇
王思雯
于洪君
葛欣宏
郭立红
孟范江
CAO Li-hua
ZHANG Lei

Related Institution

Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences
Graduate University of Chinese Academy of Sciences
Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences
吉林大学 测试科学实验中心
吉林大学 仪器科学与电气工程学院
0