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Active gap reduction in comb drive of three axes capacitive micro accelerometer for enhancing sense capacitance and sensitivity

机译:减少三轴电容式微加速度计梳状驱动中的主动间隙,以增强感测电容和灵敏度

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摘要

The performance of micro-machined sensors is primarily determined via the sensitivity of sensing electrode to displacement. This paper presents the design, modelling, optimization and fabrication of an active gap reduction mechanism used on a conventional comb drive to enhance the capacitance in a three axes capacitive micro accelerometer. The design parameters of the active gap reduced comb drive (AGRCD) are optimized for best performance. The finite element analysis of the AGRCD is performed for design verification. The modeling and simulation results demonstrated a 534 % increase in sensitivity of the three axes capacitive micro accelerometer. The three axes capacitive micro accelerometer with AGRCD is fabricated using a commercially available standard metal-multi user MEMS processes.
机译:微机械传感器的性能主要取决于感应电极对位移的敏感性。本文介绍了用于传统梳状驱动器的有源间隙减小机制的设计,建模,优化和制造,以增强三轴电容式微型加速度计中的电容。主动间隙缩小梳状驱动器(AGRCD)的设计参数已得到优化,以实现最佳性能。对AGRCD进行了有限元分析,以进行设计验证。建模和仿真结果表明,三轴电容式微型加速度计的灵敏度提高了534%。具有AGRCD的三轴电容式微型加速度计是使用市售的标准金属多用户MEMS工艺制造的。

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