Microelectronics, Volume. 52, Issue 6, 1071(2022)

Optimization Design of Thermoelectric MEMS Microwave Power Sensor

[in Chinese], [in Chinese], and [in Chinese]
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    References(11)

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    [8] [8] WANG D B, LIAO X P. A novel MEMS double-channel microwave power sensor based on GaAs MMIC technology [J]. Sensors & Actuators A Physical, 2012, 188: 95-102.

    [9] [9] MILANOVIC V, HOPCROFT M, ZINCKE C A, et al. Optimization of CMOS MEMS microwave power sensors [C]// IEEE Int Symp Circ Syst (ISCAS). Orlando, FL, USA. 1999, 5: 144-147.

    [10] [10] LIU T, LIAO X P. Simulation of characteristic of a thermoelectric power sensor based on MEMS technology [C]// 13th Annual Conf Chinese Society of Micro-Nano Technol. Zhangzhou, China. 2012: 91-96.

    [11] [11] YI Z, LIAO X P, WU H. Modeling of the terminating-type power sensors fabricated by GaAs MMIC process [J]. J Micromechanics and Microengineering, 2013, 23(8): 085003.

    [12] [12] ZHANG Z, LIAO X P. Suspended thermopile for microwave power sensors based on bulk MEMS and GaAs MMIC technology [J]. IEEE Sensors J, 2015, 15(4): 2019-2020.

    [13] [13] ZHANG Z, LIAO X P. n+ GaAs/AuGeNi-Au thermocouple-type RF MEMS power sensors based on dual thermal flow paths in GaAs MMIC [J]. Sensors, 2017, 17(6): 1426-1429.

    [14] [14] ZHANG Z, YAO M. DC-25 GHz and low-loss MEMS thermoelectric power sensors with floating thermal slug and reliable back cavity based on GaAs MMIC technology [J]. Micromachines, 2018, 9(4):154-158.

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    [in Chinese], [in Chinese], [in Chinese]. Optimization Design of Thermoelectric MEMS Microwave Power Sensor[J]. Microelectronics, 2022, 52(6): 1071

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    Paper Information

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    Received: Apr. 9, 2022

    Accepted: --

    Published Online: Mar. 11, 2023

    The Author Email:

    DOI:10.13911/j.cnki.1004-3365.220129

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