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Electromagnetic contactless interrogation technique for quartz resonator sensors

机译:石英谐振器传感器的电磁非接触询问技术

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A technique for contactless readout of AT-cut quartz resonator sensors is proposed and validated. The technique is based on the separation in time of the excitation and detection phases, exploiting the sensing of the transient response of the resonator. An external primary coil is electromagnetically air-coupled to a secondary coil connected to the electrodes of the resonator. During the excitation phase the fundamental thickness shear mode of the resonator is excited, while in the detection phase the excitation signal is turned off and the transient response of the resonator is contactless sensed by measuring the voltage induced back across the primary coil. A lumped-element equivalent circuit has been studied in order to model the interrogation principle. Experimental results validate the theoretical model and show the successful detection of relative humidity changes by a quartz resonator sensitized with a hygroscopic coating. More generally the proposed technique can be exploited for the measurement of physical or chemical quantities affecting the resonant response of quartz resonator sensors.
机译:提出并验证了一种用于AT切割石英谐振器传感器的非接触式读出技术。该技术基于激发阶段和检测阶段的时间间隔,利用了谐振器瞬态响应的检测。外部初级线圈电磁空气耦合到次级线圈,次级线圈连接到谐振器的电极。在激励阶段,谐振器的基本厚度剪切模式被激励,而在检测阶段,激励信号被关闭,谐振器的瞬态响应通过测量在初级线圈上感应回的电压而被无接触感测。为了模拟询问原理,已经研究了集总元件等效电路。实验结果验证了该理论模型的有效性,并显示了通过吸湿涂层敏化的石英谐振器成功检测到相对湿度变化。更一般地,所提出的技术可以用于测量影响石英谐振器传感器的谐振响应的物理或化学量。

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