Decreasing the phase noise in the information transmission radio systems reference oscillator by thermal stresses in the quartz resonator

A. Lepetaev, I. Khomenko, R. R. Fakhrutdinov
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Abstract

Phase noise of reference quartz oscillators limits the ability of radio communication systems. To reduce this noise it is necessary to increase the power dissipated in a quartz resonator. But because of too much power in the crystal plate, thermal stresses appear, being a consequence of the specific components of the additional phase noise caused by the transformation of the amplitude fluctuations in the frequency deviation. Analysis of emerging thermal stress is quite a challenge. This article describes the technique of calculating the thermal field of the quartz resonator, which allows calculating the three-dimensional problem in a two-dimensional region. Dimension reduction is based on the information about the distribution law for the heat generation in thickness. The method offered takes into account the geometric properties of the resonator and the distribution of the amplitude variations in the resonator body.
利用石英谐振腔中的热应力降低信息传输无线电系统参考振荡器中的相位噪声
参考石英振荡器的相位噪声限制了无线电通信系统的能力。为了降低这种噪声,有必要增加石英谐振器的功耗。但由于晶体板中功率过大,出现了热应力,这是由于特定分量的附加相位噪声在频率偏差的振幅波动变换引起的结果。分析新出现的热应力是一个相当大的挑战。本文介绍了石英谐振器热场的计算方法,该方法可以在二维区域内计算三维问题。降维是基于热在厚度上的分布规律信息。该方法考虑了谐振腔的几何特性和谐振腔体中振幅变化的分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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