Design and Analysis of a Hybrid-Type RF MEMS Phase Detector in X-Band

被引:6
|
作者
Han, Juzheng [1 ]
Ding, Dazhi [1 ]
机构
[1] Nanjing Univ Sci & Technol, Dept Commun Engn, Nanjing 210094, Peoples R China
基金
中国国家自然科学基金;
关键词
microwave wave detection; micro-electromechanical systems (MEMS); phase shift measurement; thermoelectric sensor;
D O I
10.3390/mi13050786
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this paper, we have designed, analyzed, and characterized a hybrid-type MEMS device for X-band phase shift measurement. The signal related to a phase shift of the inputs is fractionally in-line coupled by a MEMS beam and delivered to a thermoelectric power sensor, where the phase is ultimately converted into DC voltage output. With the hybrid of the MEMS beam and the thermoelectric power sensor, both in-line detection process and phase-DC voltage conversion is reserved, which is a benefit for large power capacity, good linearity property, and high-level integration density. In order to get a deep insight into the physical mechanisms involved in the phase detection process, a comprehensive analysis model is presented. The beam is modeled as a precise RLC circuit component, where the capacitance is related to the input power. The fabrication is compatible with GaAs monolithic microwave integrated circuit (MMIC) technology. Experimental results show that return loss is smaller than -11.3 dB and isolation is better than -9.3 dB over X-band. Phase shift detection from 0 to 180 degrees is verified for a large power range of 200-1600 mW (23-32 dBm). The perfect linearity property of the phase-detection sensitivity is demonstrated in the same power range. Low intermodulation distortion is also confirmed through measurement. It is revealed from the comparison between this work and other published results in the literature that this presented hybrid-type structure shows superiorities in both power handling ability and phase-detection linearity. It can be adopted in medium power signal applications with a high level of integration.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] X-band tunable MEMS resonators
    Muldavin, JB
    Rebeiz, GM
    2000 TOPICAL MEETING ON SILICON MONOLITHIC INTEGRATED CIRCUITS IN RF SYSTEMS, DIGEST OF PAPERS, 2000, : 116 - 118
  • [32] Research of a Compact MEMS-Based Integrated Detector for X-Band Application: Theory, Design, Fabrication, and Measurement
    Yan, Hao
    Liao, Xiaoping
    IEEE SENSORS JOURNAL, 2021, 21 (22) : 25668 - 25674
  • [33] Design and Analysis of Overmoded RF Window for High-Power Applications in X-Band
    Joshi, Mohit Kumar
    Nayek, Narugopal
    Tiwari, Tapeshwar
    Bhattacharjee, Ratnajit
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2020, 48 (01) : 127 - 132
  • [34] A novel design of RF MEMS dual band phase shifter
    Razeghi, Alieh
    Ganji, Bahram Azizollah
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2014, 20 (03): : 445 - 450
  • [35] A novel design of RF MEMS dual band phase shifter
    Alieh Razeghi
    Bahram Azizollah Ganji
    Microsystem Technologies, 2014, 20 : 445 - 450
  • [36] A 2-bit miniature X-band MEMS phase shifter
    Tan, GL
    Mihailovich, RE
    Hacker, JB
    DeNatale, JF
    Rebeiz, GM
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2003, 13 (04) : 146 - 148
  • [37] 2-Bit MEMS distributed X-band phase shifters
    Hayden, JS
    Rebeiz, GM
    IEEE MICROWAVE AND GUIDED WAVE LETTERS, 2000, 10 (12): : 540 - 542
  • [38] HIGH ISOLATION X-BAND RF MEMS SHUNT SWITCHES ON GROOVE ETCHED SUBSTRATES
    Zhang, Li
    Yao, Jun
    Wa, Dajia
    Rao, Qing
    Zhong, Hongsheng
    Schmoll, Jurgen
    MICRONANO2008-2ND INTERNATIONAL CONFERENCE ON INTEGRATION AND COMMERCIALIZATION OF MICRO AND NANOSYSTEMS, PROCEEDINGS, 2008, : 127 - 128
  • [39] A NOVEL BANDWIDTH ENHANCEMENT TECHNIQUE FOR X-BAND RF MEMS ACTUATED RECONFIGURABLE REFLECTARRAY
    Raedi, Y.
    Nikmehr, S.
    Poorziad, A.
    PROGRESS IN ELECTROMAGNETICS RESEARCH-PIER, 2011, 111 : 179 - 196
  • [40] RF-MEMS Tuned GaN HEMT based Cavity Oscillator for X-band
    Horberg, Mikael
    Emanuelsson, Thomas
    Ligander, Per
    Lai, Szhau
    Zirath, Herbert
    Kuylenstierna, Dan
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2017, 27 (01) : 46 - 48