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中国物理学会期刊

应用于精密振荡器的石英晶体温度特性研究

CSTR: 32037.14.aps.62.014205

Study of quartz temperature characteristics for precise oscillator applications

CSTR: 32037.14.aps.62.014205
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  • 采用一种新型压电材料精确表征方法研究了不同环境温度条件下应用于振荡器的石英材料特性变化.测量了从室温至100 ℃ 不同稳定环境温度下AT切向石英晶体材料的电子阻抗共振特性,并采用基于模拟退火优化算法的压电材料精确表征方法对电子阻抗共振特性进行了准确的拟合, 计算出了AT切向石英晶体材料在不同温度下包含损耗特性的复数形式材料参数. 通过研究和分析温度变化对石英晶体材料参数及其损耗特性的影响, 为具有稳定温度特性的精密振荡器设计提供了理论和技术支持.

     

    In this paper, we report on the study of quartz material characteristic variation with temperature for precision oscillator applications with a novel piezoelectric material precise characterization method. Electrical impedance resonant characteristics of AT cut quartz sample are measured at temperatures ranging from ambient temperature up to 100 ℃. These measured results are fitted with a simulated annealing optimization algorithm to accurately calculate complex material parameters comprising loss characteristics. Effects of temperature change on quartz material characteristics and their loss are analyzed. This paper offers theoretical and technical supports to the design of precision oscillators with stable temperature characteristics.

     

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