在两倍频率下与A模式相互作用时,fc切割谐振器的活动下降

E. P. Eernisse
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引用次数: 11

摘要

从历史上看,降息总是伴随着经济活动的下滑。然而,在最近的一个应用中,人们对它的使用重新产生了兴趣,在这个应用中,人们发现与其他切削齿相比,这种切削齿的加速灵敏度特别低。已经进行了一项分析,以探索活动下降的来源。对10mhz、3/sup /泛音、平凸设计的A、B和C模式的结果表明,3/sup /泛音A模式族的波数略复杂,在20mhz附近,是期望10mhz工作频率的2/ sp1倍。实验测量表明,3/sup /泛音A模式的能量捕获确实很差,但在20mhz的几kHz范围内具有许多低Q非谐波模式。A模式频率具有很强的负温度系数,并且在25至100/spl度/C的几个温度范围内,与10 MHz 3/sup /泛音C模式交叉精确的2/spl倍/关系。在冷却或变暖期间,可以在频谱分析仪上观察到10 MHz 3/sup rd/泛音C模式信号中的活动下降,因为不同的3/sup rd/泛音A模式随着温度通过2/sup rd/关系移动。根据从不同屈光度单位获得的实验数据,计算了随屈光度变化的非谐波频率。实验和理论数据表明,可以选择屈光度设计来保证在烘箱温度下晶体振荡器的活度不下降。然而,结果表明,期望FC-cut在大温度范围内无活动下降的情况下工作是不切实际的,例如从室温加热烤箱振荡器。晶体设计人员在设计其他晶体取向时必须考虑到所需模式和干扰模式之间的2/spl倍/关系会导致活动下降,并计算所有三个模式族以寻找2/spl倍/关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Activity dips in FC-cut resonators from interaction with A modes at twice the frequency
The FC-cut historically has been fraught with activity dips. However, interest in its use has been revived in a recent application where acceleration sensitivity has been found to be particularly low for this cut vs. other cuts. An analysis has been done to explore the source of the activity dips. Results for the A, B, and C modes of a 10 MHz, 3/sup rd/ overtone, plano-convex design indicate that the 3/sup rd/ overtone A mode family has slightly complex wavenumber and is in the vicinity of 20 MHz, which is 2/spl times/ the desired 10 MHz operating frequency. Experimental measurements show that the 3/sup rd/ overtone A mode is indeed poorly energy trapped, but has a number of low Q anharmonic modes within a few kHz of 20 MHz. The A mode frequencies have a strong negative temperature coefficient and cross the exact 2/spl times/ relationship with the 10 MHz 3/sup rd/ overtone C mode at several temperatures ranging from 25 to 100/spl deg/C. It was possible to watch activity dips occur on the spectrum analyzer in the 10 MHz 3/sup rd/ overtone C mode signal during cooling or warming as the different 3/sup rd/ overtone A modes moved with temperature through the 2/sup rd/ relationship. Calculations of the anharmonic frequencies with changes in diopter follow experimental data obtained from units with different diopters. The experimental and theoretical data lead to the conclusion that it is possible to choose diopter designs to ensure ovenized crystal oscillators free of activity dips at oven temperatures. However, the results show that it is not practical to expect the FC-cut to operate without activity dips over large temperature ranges such as the warmup of an ovenized oscillator from room temperature. Crystal designers will have to take into consideration that a 2/spl times/ relation between the desired mode and an interfering mode causes activity dips when designing other crystallographic orientations and calculate all three mode families to look for a 2/spl times/ relationship.
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