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An Electromagnetically Excited Silicon Nitride Beam Resonant Accelerometer

机译:电磁激发氮化硅束共振加速度计

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摘要

A resonant microbeam accelerometer of a novel highly symmetric structure based on MEMS bulk-silicon technology is proposed and some numerical modeling results for this scheme are presented. The accelerometer consists of two proof masses, four supporting hinges, two anchors, and a vibrating triple beam, which is clamped at both ends to the two proof masses. LPCVD silicon rich nitride is chosen as the resonant triple beam material, and parameter optimization of the triple-beam structure has been performed. The triple beam is excited and sensed electromagnetically by film electrodes located on the upper surface of the beam. Both simulation and experimental results show that the novel structure increases the scale factor of the resonant accelerometer, and ameliorates other performance issues such as cross axis sensitivity of insensitive input acceleration, etc.
机译:提出了一种基于MEMS体硅技术的新型高对称结构共振微束加速度计,并给出了该方案的一些数值模拟结果。加速度计包括两个质量块,四个支撑铰链,两个锚和一个振动三重梁,该梁在两端都夹紧在两个质量块上。选择LPCVD富硅氮化物作为共振三束材料,并且对三束结构进行了参数优化。三重光束被位于光束上表面的薄膜电极激发和电磁感应。仿真和实验结果均表明,该新型结构增加了共振加速度计的比例因子,并改善了其他性能问题,例如不灵敏的输入加速度的横轴灵敏度等。

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