Roll/Pitch Rate Integrating MEMS Gyroscope Using Dynamically Balanced Dual-Mass Resonator

Shihe Wang, Muhammad Salman Al Farisi, T. Tsukamoto, Shuji Tanaka
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引用次数: 4

Abstract

An in-plane and out-of-plane 2-axis resonator is required for a roll/pitch rate integrating gyroscope (RIG), which is much more challenging in design and fabrication compared with an in-plane 2-axis resonator used in a yaw RIG. In this study, we propose a dynamically balanced out-of-plane resonator to increase the out-of-plane quality factor (Q-factor). A balanced dual-mass structure is designed to reduce the torque applied to the supporting substrate, and thus increase the Q-factor of the out-of-plane mode. Design optimization for frequency matching, reducing mechanical deformation and increasing Q-factor through finite element method (FEM) simulation has been demonstrated. Manufacturing method of the device employing Au-Au thermo-compression bonding has been developed. The fabricated resonator oscillated at around 4380 Hz after remove by using an externally stacked piezoelectric actuator and laser Doppler vibrometer (LDV).
采用动态平衡双质量谐振器集成滚/俯仰速率的MEMS陀螺仪
横摇/俯仰速率积分陀螺仪(RIG)需要面内和面外两轴谐振器,与偏航RIG中使用的面内两轴谐振器相比,在设计和制造方面更具挑战性。在这项研究中,我们提出了一个动态平衡的面外谐振器,以提高面外品质因子(q因子)。设计了一种平衡的双质量结构,以减小施加在支承基板上的扭矩,从而提高了面外模态的q因子。通过有限元模拟验证了频率匹配、减小机械变形和增加q因子的优化设计。开发了采用金-金热压缩键合的器件制造方法。利用外部堆叠式压电致动器和激光多普勒振动计(LDV)去除谐振腔后,谐振腔的振荡频率约为4380 Hz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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