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Research on Thermocouple Distribution for Microwave Power Sensors Based on GaAs MMIC Process

机译:基于GaAs MMIC工艺的微波功率传感器热电偶分布研究

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This letter proposes the research on the thermocouple distribution for indirect-heating thermoelectric microwave power sensors, in order to achieve good sensitivity and signal-to-noise ratio (SNR). These power sensors are designed to operate at 0.01–30 GHz, and the heat distribution of the sensors is simulated to optimize thermocouple distribution numbers. Three microwave power sensors with 2, 6, and 14 pairs of thermocouple distribution are fabricated based on GaAs monolithic microwave integrated circuits process. Measured reflection losses of the three power sensors are lower than −21.5 dB up to 30 GHz. These sensors result in good linearity between measured thermovoltages and the microwave power. At 30 GHz, the obtained average sensitivity is 36.4, 107.1, and 240.4 /mW and the corresponding SNR is , and /W for the 2, 6, and 14 pairs of thermocouple distribution, respectively. Furthermore, experiments show that the sensitivity of the sensors decreases as the microwave frequency increases, with relative measurement errors of less than %.
机译:为了实现良好的灵敏度和信噪比(SNR),本文建议对间接加热的热电微波功率传感器的热电偶分布进行研究。这些功率传感器的设计工作频率为0.01–30 GHz,并模拟了传感器的热量分布,以优化热电偶分布数。基于GaAs单片微波集成电路工艺,制造了具有2对,6对和14对热电偶分布的三个微波功率传感器。三个功率传感器在30 GHz时测得的反射损耗均低于-21.5 dB。这些传感器可在测得的热电压和微波功率之间产生良好的线性关系。在30 GHz下,对于2对,6对和14对热电偶分布,获得的平均灵敏度分别为36.4、107.1和240.4 / mW,对应的SNR为和/ W。此外,实验表明,传感器的灵敏度随着微波频率的增加而降低,相对测量误差小于%。

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