Mechanical and acoustic effects in low phase noise piezoelectric oscillators

P. Renoult, E. Girardet, L. Bidart
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引用次数: 3

Abstract

Improvements in the design and realization of hardened oscillators are proposed to make the piezoelectric equipment insensitive to mechanical or acoustic disturbances. Following extensive experimentation, the following conclusions were reached: the improvement of g sensitivity is a long and expensive process; for a given industrial state of the art, it is preferable to preserve the phase noise characteristics during vibrations by using mechanical absorber structures such as a filter; in order to obtain the same results without absorbers, g sensitivity of some 1.10/sup -12//g would be necessary. However, very close to the carrier frequency, the phase noise during vibrations depends directly on the g sensitivity of the resonator, for either quartz or lithium tantalate.<>
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低相位噪声压电振荡器的力学和声学效应
提出了改进硬化振荡器的设计和实现,使压电设备对机械或声干扰不敏感。经过大量的实验,得出以下结论:g灵敏度的提高是一个漫长而昂贵的过程;对于给定的工业技术状况,最好是通过使用诸如滤波器的机械吸收结构来保持振动期间的相位噪声特性;为了在没有吸收剂的情况下获得相同的结果,g的灵敏度需要约为1.10/sup -12//g。然而,在非常接近载流子频率时,振动期间的相位噪声直接取决于谐振器的g灵敏度,无论是石英还是钽酸锂。
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Design and performance of voltage-controlled oscillators using TFR stacked-crystal filters Air-gap determination of the cut-off frequency of unelectroded plates and effects of local thickness modifications in plane resonators Mechanical and acoustic effects in low phase noise piezoelectric oscillators The vibration-induced phase noise of a visco-elastically supported crystal resonator Low-noise SAW resonator oscillators
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