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A thickness-shear quartz resonator force sensor with dual-mode temperature compensation

机译:具有双模温度补偿的厚度剪切石英谐振器力传感器

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摘要

An AT-cut thickness-shear quartz crystal resonator (QXR) has been used as a force sensing and self-temperature-sensing (STS) element to develop a digital output force sensor. The QXR is fixed in a two-line mounting configuration in a cylindrical metal shell by double diaphragms, through which a diametric force proportional to the unknown force is applied to the QXR. The double diaphragms improve the reliability and the mechanical stability of the sensor significantly. In order to increase the measurement range and the sensitivity, the energy trapping-based QXR is cut to a symmetrical, incomplete circular shape to decrease stress concentration. Because operating the QXR in dual-mode excitation allows the separation of force change effects from temperature change effects, force measurement and STS are accomplished simultaneously with the same QXR. The structure and the configuration are optimized with theoretical analysis and FEM. The dual-mode STS and temperature compensation are described in detail, as well as a trimming method to reduce activity dips of AT-cut QXRs.
机译:AT切变厚度剪切石英晶体谐振器(QXR)已用作力感测和自温度感测(STS)元件,以开发数字输出力传感器。 QXR通过双隔膜以两线安装结构固定在圆柱形金属外壳中,通过该隔膜将与未知力成比例的径向力施加到QXR。双膜片大大提高了传感器的可靠性和机械稳定性。为了增加测量范围和灵敏度,将基于能量陷阱的QXR切割成对称的不完整圆形以减少应力集中。由于在双模式激励下运行QXR可以将力变化影响与温度变化影响分开,因此使用同一QXR可以同时完成力测量和STS。通过理论分析和有限元分析对结构和配置进行了优化。详细介绍了双模式STS和温度补偿,以及减少AT切割QXR的活动骤降的调整方法。

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