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Vibration Sensitivity Reduction of Micromachined Tuning Fork Gyroscopes through Stiffness Match Method with Negative Electrostatic Spring Effect

机译:负静电弹簧效应的刚度匹配法降低微机械音叉陀螺仪的振动灵敏度

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In this paper, a stiffness match method is proposed to reduce the vibration sensitivity of micromachined tuning fork gyroscopes. Taking advantage of the coordinate transformation method, a theoretical model is established to analyze the anti-phase vibration output caused by the stiffness mismatch due to the fabrication imperfections. The analytical solutions demonstrate that the stiffness mismatch is proportional to the output induced by the external linear vibration from the sense direction in the anti-phase mode frequency. In order to verify the proposed stiffness match method, a tuning fork gyroscope (TFG) with the stiffness match electrodes is designed and implemented using the micromachining technology and the experimental study is carried out. The experimental tests illustrate that the vibration output can be reduced by 73.8% through the stiffness match method than the structure without the stiffness match. Therefore, the proposed stiffness match method is experimentally validated to be applicable to vibration sensitivity reduction in the Micro-Electro-Mechanical-Systems (MEMS) tuning fork gyroscopes without sacrificing the scale factor.
机译:本文提出一种刚度匹配方法,以降低微机械音叉陀螺仪的振动灵敏度。利用坐标变换法,建立了理论模型来分析由于制造缺陷而引起的刚度不匹配所引起的反相​​振动输出。解析解表明,刚度不匹配与外部线性振动在反相模式频率下从感测方向产生的输出成正比。为了验证所提出的刚度匹配方法,采用微加工技术设计并实现了带有刚度匹配电极的音叉陀螺仪(TFG),并进行了实验研究。实验测试表明,与没有刚度匹配的结构相比,采用刚度匹配方法可以将振动输出降低73.8%。因此,通过实验验证了所提出的刚度匹配方法可适用于在不牺牲比例因子的情况下降低微机电系统(MEMS)音叉陀螺仪中的振动灵敏度。

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