MEMS陀螺仪悬架设计原理

Q. Shi, Shourong Wang, A. Qiu, Yishen Xu, Xunsheng Ji
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引用次数: 12

摘要

消除和减小正交误差是提高微机电系统陀螺仪性能的关键。本文讨论了如何设计悬架弹簧以减小由于制造不对称而引起的正交误差。根据悬架弹簧的刚度矩阵,提出了正交误差与刚度矩阵项和宽度失配之间的关系。驱动方向和传感方向耦合的非对角项对系统刚度矩阵的正交误差影响较大。提出了MEMS陀螺仪悬架弹簧的设计原则,建议优先采用u形弹簧、蛇形弹簧和折叠柔性弹簧。最后,根据设计原理对z轴MEMS陀螺仪进行了改进,有限元仿真和实验结果表明,该陀螺仪的正交误差大大减小
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Design Principle of Suspension of MEMS Gyroscope
Canceling and minimizing quadrature error is the key to improve the performance of MEMS gyroscopes. This paper addresses how to design suspension springs to decrease the quadrature error which induced with manufacture asymmetric. According to the stiffness matrix of suspension spring, the relationship among quadrature error, terms of stiffness matrix and width mismatch was put forward. The off-diagonal term which is coupled between driven and sensing directions has larger effect on the quadrature error than other off-diagonal terms of system stiffness matrix. The design principle of suspension springs of MEMS gyroscope was put forward, which is suggest that U-spring, serpentine spring and folded-flexure spring should be preferential adopted. At last, a z-axis MEMS gyroscope was improved based on the design principle, and the results of FEM simulation and experiment show the quadrature error is decreased largely
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