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Broadband spike excitation method for in-liquid QCM sensors

机译:液中qcm传感器的宽带尖峰激励方法

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A Quartz Crystal Microbalance (QCM) is a highly sensitive device based on the measurement of the resonance parameters of a thickness-shear piezoelectric resonator, which classical application is the detection of attached mass per unit area. Although the most economical ways of driving these sensors make use of oscillator circuits, other electronic interfaces are also well-established, i.e., electrical impedance analysis and impulse excitation/decay methods. Impulse excitation and decay methods are founded on the same principle, but in practice only the latter has been exploited. The present work explores the suitability of a broadband spike excitation technique (up to 0.25 GHz) as an interface electronic system for QCM sensors. The principles of measurement-including the processing of signals-are described in detail and illustrated for liquids with different mechanical shear impedances. The proposed mode of operation has proved some advantageous characteristics: both resonant frequency and energy dissipation can be simultaneously determined in a wide range of frequencies; it is appropriate for in-liquid sensing applications (including highly viscous liquids); it can be easily automated for continuous monitoring and integrated with other external circuitry (such as multiplexing for sensor arrays).
机译:石英晶体微天平(QCM)是一种高度灵敏的设备,它基于厚度剪切压电谐振器的谐振参数的测量,经典应用是检测单位面积的附着质量。尽管驱动这些传感器的最经济的方法是利用振荡器电路,但也建立了其他电子接口,即电阻抗分析和脉冲激励/衰减方法。脉冲激励和衰减方法是基于相同的原理建立的,但实际上只有后者被利用。本工作探讨了宽带尖峰激励技术(高达0.25 GHz)作为QCM传感器的接口电子系统的适用性。详细介绍了测量原理(包括信号处理),并针对具有不同机械剪切阻抗的液体进行了说明。所提出的工作模式已经证明了一些有利的特性:可以在很宽的频率范围内同时确定谐振频率和能量耗散。适用于液体中传感应用(包括高粘度液体);它可以很容易地自动进行连续监控,并与其他外部电路集成(例如,传感器阵列的多路复用)。

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