期刊文献+

Design of Ka-band antipodal finline mixer and detector 被引量:2

Design of Ka-band antipodal finline mixer and detector
原文传递
导出
摘要 This paper mainly discusses the analysis and design of a finline single-ended mixer and detector. In the circuit, for the purpose of eliminating high-order resonant modes and improving transition loss, metallic via holes are implemented along the mounting edge of the substrate embedded in the split-block of the WG-finline-microstrip transition. Meanwhile, a Ka band slow-wave and bandstop filter, which represents a reactive termination, is designed for the utilization of idle frequencies and operation frequencies energy. Full-wave analysis is carded out to optimize the input matching network of the mixer and the detector circuit using lumped elements to model the nonlinear diode. The exported S-matrix of the optimized circuit is used for conversion loss and voltage sensitivity analysis. The lowest measured conversion loss is 3.52 dB at 32.2 GHz; the conversion loss is flat and less than 5.68 dB in the frequency band of 29-34 GHz. The highest measured zero-bias voltage sensitivity is 1450 mV/mW at 38.6 GHz, and the sensitivity is better than 1000 mV/mW in the frequency band of 38-40 GHz. This paper mainly discusses the analysis and design of a finline single-ended mixer and detector. In the circuit, for the purpose of eliminating high-order resonant modes and improving transition loss, metallic via holes are implemented along the mounting edge of the substrate embedded in the split-block of the WG-finline-microstrip transition. Meanwhile, a Ka band slow-wave and bandstop filter, which represents a reactive termination, is designed for the utilization of idle frequencies and operation frequencies energy. Full-wave analysis is carded out to optimize the input matching network of the mixer and the detector circuit using lumped elements to model the nonlinear diode. The exported S-matrix of the optimized circuit is used for conversion loss and voltage sensitivity analysis. The lowest measured conversion loss is 3.52 dB at 32.2 GHz; the conversion loss is flat and less than 5.68 dB in the frequency band of 29-34 GHz. The highest measured zero-bias voltage sensitivity is 1450 mV/mW at 38.6 GHz, and the sensitivity is better than 1000 mV/mW in the frequency band of 38-40 GHz.
出处 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2009年第5期99-102,共4页 半导体学报(英文版)
基金 supported by the National Natural Science Foundation of China(No.60621002)
关键词 conversion loss voltage sensitivity antipodal finline harmonic balance analysis conversion loss voltage sensitivity antipodal finline harmonic balance analysis
  • 相关文献

参考文献12

  • 1Leong Y C, Weinreb S. Full band waveguide-to-microstrip- probe transitions. IEEE MTT-S Int Microw Symp Dig, 1999: 1435.
  • 2Hoefer W J R. Oscillators and amplifiers in integrated E-plane technique. IEEE Trans Microw Theory Tech, 1989, 37(2): 351.
  • 3Yassin G, Withington S, Buffey M, et al. 350-GHz SIS antipodal finline mixer. IEEE Trans Microw Theory Tech, 2000, 48 (4): 662.
  • 4Kittara P, Grimes P, Yassin G, et al. A 700-GHz SIS antipodal finline mixer fed by a Pickett-potter horn-reflector antenna. IEEE Trans Microw Theory Tech, 2004, 52(10): 2352.
  • 5Madjar A. A novel general approach for the optimum design of microwave and millimeter wave subharmonic mixers. IEEE Trans Microw Theory Tech, 1996, 44(11): 1997.
  • 6Mittal A. Experimental modeling of groove effect on finline transition at Ka-band. Int J Infrared Millim Waves, 1996, 17(5): 905.
  • 7Yao C F, Xu J E An improved architecture of sixth subharmonic mixers in E-band. Int J Infrared Millim Waves, 2008, 29(4): 353.
  • 8Zeid A, Baudrand H. Electromagnetic scattering by metallic holes and its applications in microwave circuit design. IEEE Trans Microw Theory Tech, 2002, 50(4): 1198.
  • 9Yan L, Hong W, Wu K, et al. Investigations on the propagation characteristics of the substrate integrated waveguide based on the method of lines. IEE Proc Microwave Antennas Propagation, 2005, 152(1): 35.
  • 10http://www.skyworksinc.com.

同被引文献5

引证文献2

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部