Design of Ka-band antipodal finline mixer and detector
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-...
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Published in | Journal of semiconductors Vol. 30; no. 5; pp. 99 - 102 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
IOP Publishing
01.05.2009
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Subjects | |
Online Access | Get full text |
ISSN | 1674-4926 |
DOI | 10.1088/1674-4926/30/5/055009 |
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Abstract | 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. |
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AbstractList | 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. |
Author | 姚常飞 徐金平 陈墨 |
AuthorAffiliation | State Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, China |
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Cites_doi | 10.1109/TMTT.2003.810153 10.1109/22.841957 10.1109/TMTT.2004.835976 10.1109/22.543954 10.1007/s10762-008-9331-3 10.1109/22.993425 10.1007/BF02101398 10.1049/ip-map:20040726 10.1109/22.20061 |
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DocumentTitleAlternate | Design of Ka-band antipodal finline mixer and detector |
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Notes | antipodal finline harmonic balance analysis conversion loss TN927.2 conversion loss; voltage sensitivity; antipodal finline; harmonic balance analysis voltage sensitivity 11-5781/TN TU998.13 |
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References | 11 2 3 4 5 6 7 8 Mass S A (12) 2003 9 Leong Y C (1) 1999 10 |
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Snippet | 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... |
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StartPage | 99 |
SubjectTerms | Ka波段 带阻滤波器 探测器 混合器 电压灵敏度 设计 运行频率 鳍 |
Title | Design of Ka-band antipodal finline mixer and detector |
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