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单晶硅各向异性对振动环陀螺仪频率分裂的影响。

The Effect of the Anisotropy of Single Crystal Silicon on the Frequency Split of Vibrating Ring Gyroscopes.

作者信息

Qin Zhengcheng, Gao Yang, Jia Jia, Ding Xukai, Huang Libin, Li Hongsheng

机构信息

School of Instrument Science and Engineering, Southeast University, Nanjing 210096, China.

Key Laboratory of Micro-Inertial Instruments and Advanced Navigation Technology, Ministry of Education, Nanjing 210096, China.

出版信息

Micromachines (Basel). 2019 Feb 14;10(2):126. doi: 10.3390/mi10020126.

Abstract

This paper analyzes the effect of the anisotropy of single crystal silicon on the frequency split of the vibrating ring gyroscope, operated in the n = 2 wineglass mode. Firstly, the elastic properties including elastic matrices and orthotropic elasticity values of (100) and (111) silicon wafers were calculated using the direction cosines of transformed coordinate systems. The (111) wafer was found to be in-plane isotropic. Then, the frequency splits of the n = 2 mode ring gyroscopes of two wafers were simulated using the calculated elastic properties. The simulation results show that the frequency split of the (100) ring gyroscope is far larger than that of the (111) ring gyroscope. Finally, experimental verifications were carried out on the micro-gyroscopes fabricated using deep dry silicon on glass technology. The experimental results are sufficiently in agreement with those of the simulation. Although the single crystal silicon is anisotropic, all the results show that compared with the (100) ring gyroscope, the frequency split of the ring gyroscope fabricated using the (111) wafer is less affected by the crystal direction, which demonstrates that the (111) wafer is more suitable for use in silicon ring gyroscopes as it is possible to get a lower frequency split.

摘要

本文分析了在n = 2酒杯模式下工作的振动环陀螺仪中,单晶硅各向异性对频率分裂的影响。首先,利用变换坐标系的方向余弦计算了(100)和(111)硅片的弹性特性,包括弹性矩阵和正交各向异性弹性值。发现(111)硅片在平面内是各向同性的。然后,利用计算得到的弹性特性对两种硅片的n = 2模式环陀螺仪的频率分裂进行了模拟。模拟结果表明,(100)环陀螺仪的频率分裂远大于(111)环陀螺仪。最后,对采用玻璃上深干法刻蚀硅技术制造的微陀螺仪进行了实验验证。实验结果与模拟结果充分吻合。虽然单晶硅是各向异性的,但所有结果表明,与(100)环陀螺仪相比,采用(111)硅片制造的环陀螺仪的频率分裂受晶体方向的影响较小,这表明(111)硅片更适合用于硅环陀螺仪,因为可以获得较低的频率分裂。

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