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A novel in-line type frequency detector based on MEMS membrane for X-band application

机译:一种基于MEMS膜的新型在线式频率检测器,用于X波段应用

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In this paper, a novel in-line type frequency detector is proposed based on MEMS Membrane for X-band application. In the design, a MEMS membrane stands above the signal line of the CPW transmission line and acts as a coupling capacitance. A certain percentage of the input power, as a function of frequency, is coupled to the microwave power sensor. Finally, the frequency of the incident RF signal is deduced by measuring the output thermovoltage of the power sensor based on Seebeck effect. The incident power is not dissipated completely and the proposed design can achieve inline frequency detection. The inline type power sensor is designed, modeled and fabricated by GaAs MMIC process. The measured return loss is less than −13dB and the insertion loss is close to 1.3dB over 8–12GHz. The RF frequency measurement shows the output thermovoltage increases with the frequency. However, the poor frequency performance of the power sensor leads to the deviation of the measurement and theory.
机译:本文提出了一种新颖的基于MEMS膜的在线式频率检测器,用于X波段应用。在设计中,MEMS膜位于CPW传输线的信号线上方,并充当耦合电容。输入功率的一定百分比作为频率的函数耦合到微波功率传感器。最后,通过基于塞贝克效应测量功率传感器的输出热电压来推导入射RF信号的频率。入射功率没有被完全耗散,所提出的设计可以实现在线频率检测。串联式功率传感器是通过GaAs MMIC工艺设计,建模和制造的。在8–12GHz范围内,测得的回波损耗小于-13dB,插入损耗接近1.3dB。射频频率测量显示输出热电压随频率增加。然而,功率传感器的不良频率性能导致测量和理论的偏差。

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