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Design Fabrication of a MEMS Piezoresistive Accelerometer with Beam-film Combined Structure

机译:具有梁膜组合结构的MEMS压阻式加速度计的设计与制造

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In this paper,a MEMS (micro-electro-mechanical system) accelerometer has been developed utilizing piezoresistive sensing elements for vibration measurements in large-scale rotating machineries.The accelerometer consists of highly symmetric beam-film combined structure with 4 p-type piezoresistors diffused on beam surface.The beam and two same films,acting as a whole,give the structure a higher mechanical stiffness making the accelerometer's nature frequency enhanced.During the chip design,classical vibration and elasticity theories are taken advantaged of to determine the dimensions of the sensor chip based on the requirements of industrial practical application.FEM (finite element method) is also used to investigate the performances of the sensor under acceleration load.The device is fabricated by using bulk micromachining technology,and an n-type,(100) oriented silicon wafer is used as the blank of the chip.The packaged sensor is tested and the experimental results show that the sensor has a sufficient linear response (non-linearity≤0.26%FS) up to 50g with a sensitivity of 1.5mV/g/8V.The resonance frequency of the sensor is about2860Hz,and this allows the usage of the sensor in state monitoring with the necessary bandwidth.
机译:本文采用MEMS(微机电系统)加速度计,利用压阻式传感元件进行大规模旋转机械中的振动测量。加速度计由高度对称的光束膜组合结构组成,具有4个P型压电电阻的扩散器在梁表面上。梁和两个相同的薄膜,表现为整体,使结构更高的机械刚度使加速度计的性质增强。芯片设计,经典振动和弹性理论被采取优势,以确定尺寸传感器芯片基于工业实用应用的要求.FEM(有限元方法)还用于研究加速负荷下传感器的性能。通过使用批量微机械技术和N型,(100)制造该装置。定向硅晶片用作芯片的坯料。封装的传感器经过测试,实验结果表明SENS或者具有足够的线性响应(非线性≤0.26%fs),高达50克,灵敏度为1.5mV / g / 8v。传感器的共振频率为约2860Hz,这允许传感器在状态监测中使用传感器必要的带宽。

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