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Analysis and Validation of Contactless Time-Gated Interrogation Technique for Quartz Resonator Sensors

机译:石英谐振器传感器非接触式时控询问技术的分析与验证

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摘要

A technique for contactless electromagnetic interrogation of AT-cut quartz piezoelectric resonator sensors is proposed based on a primary coil electromagnetically air-coupled to a secondary coil connected to the electrodes of the resonator. The interrogation technique periodically switches between interleaved excitation and detection phases. During the excitation phase, the resonator is set into vibration by a driving voltage applied to the primary coil, whereas in the detection phase, the excitation signal is turned off and the transient decaying response of the resonator is sensed without contact by measuring the voltage induced back across the primary coil. This approach ensures that the readout frequency of the sensor signal is to a first order approximation independent of the interrogation distance between the primary and secondary coils. A detailed theoretical analysis of the interrogation principle based on a lumped-element equivalent circuit is presented. The analysis has been experimentally validated on a 4.432 MHz AT-cut quartz crystal resonator, demonstrating the accurate readout of the series resonant frequency and quality factor over an interrogation distance of up to 2 cm. As an application, the technique has been applied to the measurement of liquid microdroplets deposited on a 4.8 MHz AT-cut quartz crystal. More generally, the proposed technique can be exploited for the measurement of any physical or chemical quantities affecting the resonant response of quartz resonator sensors.
机译:提出了一种基于AT线圈的石英压电谐振器传感器的非接触式电磁询问技术,该技术基于一次线圈,该一次线圈电磁地空气耦合到连接到谐振器电极的次级线圈。该询问技术周期性地在交错的激励和检测阶段之间切换。在激励阶段,通过施加到初级线圈的驱动电压使谐振器进入振动状态,而在检测阶段,通过测量感应电压,关闭激励信号,并在没有接触的情况下感应谐振器的瞬态衰减响应。回到初级线圈。该方法确保了传感器信号的读出频率为一阶近似值,与初级线圈和次级线圈之间的询问距离无关。提出了基于集总等效电路的询问原理的详细理论分析。该分析已经在4.432 MHz AT切割石英晶体谐振器上进行了实验验证,证明了在长达2 cm的询问距离内,串联谐振频率和品质因数的准确读数。作为一种应用,该技术已应用于测量沉积在4.8 MHz AT切割石英晶体上的液体微滴。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任何物理或化学量。

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