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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Resonator surface contamination-a cause of frequency fluctuations?
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Resonator surface contamination-a cause of frequency fluctuations?

机译:谐振器表面污染-频率波动的原因吗?

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摘要

The mass loading effects of adsorbing and desorbing contaminant molecules on the magnitude and characteristics of frequency fluctuations in a thickness-shear resonator are studied. The study is motivated by the observation that the frequency of a thickness-shear resonator is determined predominantly by such mechanical parameters as the thickness of the resonator, elastic stiffnesses, mass loading of the electrodes, and energy trapping. An equation was derived relating the spectral density of frequency fluctuations to: (1) rates of adsorption and desorption of one species of contaminant molecules; (2) mass per unit area of a monolayer of molecules: (3) frequency constant; (4) thickness of resonator; and (5) number of molecular sites on one resonator surface. The induced phase noises were found to be significant in very-high-frequency resonators and are not simple functions of the percentage of area contaminated. The spectral density of frequency fluctuations was inversely proportional to the fourth power of the thickness if other parameters were held constant.
机译:研究了厚度剪切共振器中污染物分子的吸附和解吸对频率波动幅度和特性的质量影响。这项研究的动机是观察到厚度剪切谐振器的频率主要由诸如谐振器的厚度,弹性刚度,电极的质量负载和能量俘获等机械参数确定。得出了一个将频率波动的频谱密度与以下公式相关的方程:(1)一种污染物分子的吸附和解吸速率; (2)单层分子的单位面积质量:(3)频率常数; (4)谐振器的厚度; (5)在一个谐振器表面上的多个分子位点。已发现,在非常高频的谐振器中,诱发的相位噪声非常明显,并且不是受污染面积百分比的简单函数。如果其他参数保持不变,则频率波动的频谱密度与厚度的四次方成反比。

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