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Design and characterization of an active bridge oscillator as a QCM sensor for the measurement of liquid properties and mass films in damping media

机译:活性桥振荡器作为测量阻尼介质中液体性能和质量膜的QCM传感器的设计与表征

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This work presents the design and characterization of a 9MHz active bridge oscillator circuit for use as a high resolution quartz crystal microbalance sensor for liquid applications. During the design process, several simulations were run with a general-purpose circuit simulation program (PSpice) in order to predict the behavior of the sensor in different operating conditions such as mass film deposition on the quartz electrode or immersion of the sensor in a Newtonian liquid. Sensitivity coefficients of the oscillation frequency to mass changes on the surface of the resonator and changes in the density and viscosity of the liquid are obtained from the Pspice simulations and compared with the experimental ones obtained from calibration trials. To complete its characterization, the frequency stability in the time domain is determined and the resolution of the sensor is obtained. Finally, the performance of the oscillator is compared with that of a 9MHz Miller oscillator sensor, a topology previously studied by this group. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项工作介绍了9MHz主动桥振荡器电路的设计和表征,用作用于液体应用的高分辨率石英晶体微稳态传感器。在设计过程中,使用通用电路仿真程序(PSPICE)运行多个模拟,以便在诸如石英电极上的质量膜沉积之类的不同操作条件下预测传感器的行为,或者在牛顿中的传感器浸没传感器液体。振荡频率对谐振器表面的质量变化的敏感性系数和液体密度的变化和液体粘度的变化是从PSPICE模拟中获得的,并与校准试验所获得的实验结果进行比较。为了完成其表征,确定时域中的频率稳定性并获得传感器的分辨率。最后,将振荡器的性能与9MHz米勒振荡器传感器的性能进行比较,该群体先前研究过的拓扑。 (c)2018年elestvier b.v.保留所有权利。

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