Frequency-temperature (f-T) behavior for different rotated quartz cuts at high temperatures and their Q-factor estimation

Mihir S. Patel, B. Sinha
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引用次数: 2

Abstract

A theoretical study has been carried out for a 20 MHz circular resonator to evaluate the effect of high temperature on the frequency and the Q-factor of the slow (C-) and fast (B-) thickness-shear mode for the SC-cut, SBTC-cut, rotated X-cut and AT-cut using 3-D finite-element method (FEM). We have carried out a frequency spectrum analysis to select the best aspect ratio for each cut angle, based on the separation between the thickness-shear and flexural modes. The best aspect ratio for each cut angle was then investigated for the f-T behavior using the Lagrangian temperature coefficients of elastic constants. FEM results suggest a promising design for a 20 MHz SC-cut resonator which can operate over the temperature range of −50 to 300 deg C.
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不同旋转石英切割在高温下的频率-温度(f-T)行为及其q因子估计
采用三维有限元法(FEM)对20 MHz圆形谐振器进行了理论研究,评估了高温对SC-cut、SBTC-cut、旋转X-cut和AT-cut慢(C-)和快(B-)厚度-剪切模式频率和q因子的影响。我们进行了频谱分析,根据厚度-剪切和弯曲模式之间的分离,选择每个切割角的最佳纵横比。然后利用弹性常数的拉格朗日温度系数研究了各切割角的最佳宽高比对f-T行为的影响。有限元结果表明,20 MHz SC-cut谐振器的设计很有前途,该谐振器可以在- 50至300℃的温度范围内工作。
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