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Structure Design and Experiment for a Resonant Accelerometer based on Electrostatic Stiffness

机译:基于静电刚度的共振加速度计的结构设计与实验

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The introduced resonant accelerometer makes use of the equivalent electrostatic stiffness to sense the acceleration. The sensitivity can be adjusted by changing the applied sensing voltage. But the no-linearity problem between the output frequency and applied acceleration is difficult to calculate the sensitivity and analysis its influence directly. When the stiffness of the fold beam is much smaller than the vibrating beam,the analytic sensitivity expression is given. The relationship between the sensitivity and the structure critical dimension is easily obtained in the design stage. A resonant accelerometer with sensitivity of 62Hz/g is designed and fabricated by bulk-silion dissolved processes. The experiment finds there is the critical dimension loss in the fabrication process, which makes the sensitivity change; the same frequency disturbance will influence the closed-loop phase equilibrium. The equivalent interface model is built for the signal processes in the future. The frequency modulation and re-modulation is suggested to eliminate the disturbance. Vacuum package should be adopt to enlarge the weaken output signal.
机译:引入的共振加速度计利用等效的静电刚度来感应加速度。可以通过改变施加的感测电压来调节灵敏度。但是,输出频率与施加的加速度之间的非线性问题很难计算灵敏度并直接分析其影响。当折叠梁的刚度远小于振动梁时,给出了解析灵敏度表达式。在设计阶段很容易获得灵敏度和结构临界尺寸之间的关系。通过体硅溶解工艺设计和制造了灵敏度为62Hz / g的共振加速度计。实验发现在制造过程中存在临界尺寸损失,这使灵敏度发生了变化。相同的频率干扰将影响闭环相位平衡。将来会为信号处理构建等效的接口模型。建议进行频率调制和重新调制以消除干扰。应采用真空包装以放大减弱的输出信号。

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