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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Estimation of Quartz Resonator Q and other Figures of Merit by an Energy Sink Method
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Estimation of Quartz Resonator Q and other Figures of Merit by an Energy Sink Method

机译:用能量吸收法估算石英谐振器Q和其他品质因数

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An important determinant of the quality factor Q of a quartz resonator is the loss of energy from the electrode area to the base via the mountings. The acoustical characteristics of the plate resonator are changed when the plate is mounted onto a base substrate. The base substrate affects the frequency spectra of the plate resonator. A resonator with a high Q may not have a similarly high Q when mounted on a base. Hence, the base is an energy sink and the Q will be affected by the shape and size of this base. A lower bound Q will be obtained if the base is a semi-infinite base since it will absorb all acoustical energies radiated from the resonator. A scaled boundary finite element method is employed to model a semi-infinite base. The frequency spectra of the quartz resonator with and without the base are presented. In addition to the loss of energy via the base, there are other factors which affect the resonator Q, such as, for example, material dissipation, and damping at the interfaces of quartz and electrodes. The energy dissipation due to material damping increases with the resonant frequency and the reduction of resonator size; hence material damping becomes important in the current and future miniaturized resonators operating at very high frequencies. An energy sink model along with material dissipation would provide realistic Q, motional capacitance, motional resistance, and other figures of merit useful for designing resonators. The model could be used for evaluating resonator and mountings designs of microelectromechanical systems and miniaturized devices. The effect of the mountings, and plate and electrode geometries on the resonator Q and other electrical parameters are presented for AT-cut quartz resonators. Model results from the energy sink method were compared with experimental results and were found to be good.
机译:石英谐振器品质因数Q的重要决定因素是能量从电极区域通过安装座流向基座的损失。当将板安装到基础基板上时,板谐振器的声学特性会改变。基础基板影响平板谐振器的频谱。 Q高的谐振器安装在基座上时可能不会具有类似的Q高。因此,该基座是一个能量吸收器,并且Q将受此基座的形状和大小影响。如果该基是半无限基,则将获得下限Q,因为它将吸收从谐振器辐射的所有声能。采用比例边界有限元方法对半无限基进行建模。给出了带有和不带有底座的石英谐振器的频谱。除了通过基座损失能量之外,还有其他影响谐振器Q的因素,例如,材料耗散以及石英与电极界面处的阻尼。材料阻尼引起的能量耗散随着谐振频率的增加和谐振器尺寸的减小而增加。因此,材料阻尼对于在当前和未来以非常高的频率工作的小型谐振器至关重要。能量吸收模型以及材料耗散将提供逼真的Q,运动电容,运动电阻以及其他对设计谐振器有用的品质因数。该模型可用于评估微机电系统和小型设备的谐振器和安装设计。对于AT切割石英谐振器,介绍了安装件,板和电极的几何形状对谐振器Q以及其他电参数的影响。将能量吸收法的模型结果与实验结果进行比较,发现是好的。

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