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Effect of Axial Force on the Performance of Micromachined Vibratory Rate Gyroscopes

机译:轴向力对微机械振动速率陀螺仪性能的影响

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摘要

It is reported in the published literature that the resonant frequency of a silicon micromachined gyroscope decreases linearly with increasing temperature. However, when the axial force is considerable, the resonant frequency might increase as the temperature increases. The axial force is mainly induced by thermal stress due to the mismatch between the thermal expansion coefficients of the structure and substrate. In this paper, two types of micromachined suspended vibratory gyroscopes with slanted beams were proposed to evaluate the effect of the axial force. One type was suspended with a clamped-free (C-F) beam and the other one was suspended with a clamped-clamped (C-C) beam. Their drive modes are the bending of the slanted beam, and their sense modes are the torsion of the slanted beam. The relationships between the resonant frequencies of the two types were developed. The prototypes were packaged by vacuum under 0.1 mbar and an analytical solution for the axial force effect on the resonant frequency was obtained. The temperature dependent performances of the operated mode responses of the micromachined gyroscopes were measured. The experimental values of the temperature coefficients of resonant frequencies (TCF) due to axial force were 101.5 ppm/°C for the drive mode and 21.6 ppm/°C for the sense mode. The axial force has a great influence on the modal frequency of the micromachined gyroscopes suspended with a C-C beam, especially for the flexure mode. The quality factors of the operated modes decreased with increasing temperature, and changed drastically when the micromachined gyroscopes worked at higher temperatures.
机译:据公开的文献报道,硅微机械陀螺仪的共振频率随温度升高而线性降低。但是,当轴向力很大时,谐振频率可能随温度升高而增加。由于结构和基板的热膨胀系数之间的不匹配,轴向力主要由热应力引起。为了评估轴向力的影响,提出了两种带有倾斜梁的微机械悬置振动陀螺仪。一种类型是用无夹紧(C-F)梁悬挂,另一种类型是用无夹紧(C-C)梁悬挂。它们的驱动模式是倾斜光束的弯曲,而它们的感应模式是倾斜光束的扭转。建立了两种类型的谐振频率之间的关系。将原型在0.1 mbar的真空下包装,并获得轴向力对共振频率的影响的解析溶液。测量了微机械陀螺仪的工作模式响应的温度相关性能。由轴向力引起的谐振频率温度系数(TCF)的实验值在驱动模式下为101.5 ppm /°C,在感测模式下为21.6 ppm /°C。轴向力对悬挂有C-C光束的微机械陀螺仪的模态频率有很大影响,特别是对于挠曲模式。随着温度的升高,工作模式的品质因数降低,而当微机械陀螺仪在更高的温度下工作时,其质量因数急剧变化。

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