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Force-Frequency Sensitive Character of Quartz Resonator with Same Base and Different Electrode

机译:具有相同基座和不同电极的石英谐振器的力频敏性特性

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Stress distribution of the thin circular quartz crystal has been analyzed by ANSYS finite element simulation when subjected to radial force. A quartz crystal resonator with same base and different electrode is designed according to the vibrancy theory of quartz crystal. When putting on the radial force, we research the force sensitive nature of this resonator and its relationship with the force azimuth. The results show that, It is closely to the resonator structure and the force position, that the force sensitive character of quartz resonator with same crystal and different position. Selecting the appropriate force position, we can receive greater diversity of force sensitivity. The output using difference frequency between the different resonators can suppress interference factors. Making the difference frequency signal as a superposition of complex processing can enhance this resonator overall force sensitive. With the difference frequency and signaling complex, the force - frequency conversion factor of this resonator is up to 500Hz/N.
机译:当受到径向力时,ANSYS有限元模拟已经分析了薄圆形石英晶晶的应力分布。根据石英晶体的活性理论,设计了具有相同底座和不同电极的石英晶体谐振器。当放置径向力时,我们研究该谐振器的力敏感性及其与力方位角的关系。结果表明,它与谐振器结构和力位置密切相关,即石英谐振器具有相同晶体和不同位置的力敏感特性。选择适当的力位置,我们可以获得更大的力量灵敏度的多样性。使用不同谐振器之间的差异频率的输出可以抑制干扰因素。使差分频率信号作为复杂处理的叠加可以增强该谐振器总体力敏感。利用差频和信令复合物,该谐振器的力 - 频率转换因子高达500Hz / n。

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