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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >18-40 GHz low conversion loss double-balanced star mixer using bilateral finline and antipodal finline
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18-40 GHz low conversion loss double-balanced star mixer using bilateral finline and antipodal finline

机译:使用双边鳍线和对立鳍线的18-40 GHz低转换损耗双平衡星型混频器

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摘要

A unique broadband millimetre-wave low conversion loss double-balanced mixer based on a star configuration has been designed and demonstrated. The ridged waveguide to bilateral finline transition and the ridged waveguide to antipodal finline transition are used as the local oscillator (LO) and radio frequency (RF) port of the mixer, respectively. The intermediate frequency (IF) signal is orthogonally extracted from the common star-configuration point. The height of the ridge of the double-ridged waveguide is reduced gradually to improve the impedance match and ensure enough space to mount the diodes. The leakage RF signal launched by the antipodal finline is terminated by six plated-through holes through the slot line conductors. A short-circuit formed by the bifurcation of the balanced microstrip line is used to terminate the leakage LO signal launched by the bilateral finline. The measured results show the mixer has low conversion loss (from 3.8 to 7.0 dB), high isolation between all ports (>26 dB), as well as low return loss of the RF port over the frequency range of 18 to 40 GHz. Compared with previously published mixers, this work demonstrates the best performances of the most important parameters of 18-40 GHz mixers.
机译:设计并演示了一种独特的基于星型配置的宽带毫米波低转换损耗双平衡混频器。脊形波导到双边鳍线过渡和脊形波导到对偶鳍线过渡分别用作混频器的本地振荡器(LO)和射频(RF)端口。从公共星形配置点正交提取中频(IF)信号。逐渐减小双脊形波导的脊的高度,以改善阻抗匹配并确保有足够的空间安装二极管。对偶鳍线发出的泄漏RF信号通过穿过缝线导线的六个镀通孔终止。由平衡微带线的分叉形成的短路用于终止由双边鳍线发出的泄漏LO信号。测量结果表明,混频器具有较低的转换损耗(从3.8 dB至7.0 dB),所有端口之间的隔离度高(> 26 dB)以及在18至40 GHz频率范围内RF端口的回波损耗低。与以前发布的混频器相比,这项工作展示了18-40 GHz混频器最重要参数的最佳性能。

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  • 来源
    《Microwaves, Antennas & Propagation, IET》 |2011年第13期|p.1630-1635|共6页
  • 作者

    Zhang Y.; Peng W.;

  • 作者单位

    EHF Key Laboratory of Fundamental Science, School of Electronic Engineering, University of Electronics Science and Technology of China, Chengdu 611731, People's Republic of China;

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  • 正文语种 eng
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