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A quartz-crystal-sensor oscillator appropriate for highly viscous liquid measurements

机译:适于高粘度液体测量的石英传感器振荡器

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This paper describes a sensor oscillator appropriate for quartz crystal microbalance (QCM) based measurements in highly viscous liquids. The oscillator is stabilized by a recently developed impedance transformation QCM filter network which greatly reduces electrical load by the sustaining amplifier. In addition, it provides 0 phase and a well behaved symmetric resonance at the QCM series resonant frequency fs over three orders of magnitude variation range of the motional resistance Rm. The sustaining amplifier has a constant pure resistive input and output impedance to eliminate phase shifts due to QCM impedance changes with liquid load. Also it allows precise gain and phase control for accurate adjustment of the oscillator frequency at fs and extraction of Rm information at the measured liquid load. The oscillator was tested with different water based glycerol solutions in the 40wt% to 100wt% range. The worstcase frequency error was within 5% in this viscosity range.
机译:本文介绍了一种传感器振荡器,适用于在高粘度液体中基于石英晶体微天平(QCM)的测量。振荡器通过最近开发的阻抗变换QCM滤波器网络得以稳定,该网络大大降低了维持放大器的电负载。此外,它在运动阻力R m 的三个数量级变化范围内,在QCM串联谐振频率f s 上提供了0相和性能良好的对称谐振。维持放大器具有恒定的纯电阻输入和输出阻抗,以消除由于QCM阻抗随液体负载变化而引起的相移。它还允许精确的增益和相位控制,以精确调整f s 处的振荡器频率,并在测量的液体负载下提取R m 信息。使用40wt%至100wt%范围内的不同水基甘油溶液对振荡器进行了测试。在此粘度范围内,最坏情况的频率误差在5%以内。

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