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A Micro-Force Sensor with Beam-Membrane Structure for Measurement of Friction Torque in Rotating MEMS Machines

机译:具有束膜结构的微力传感器,用于测量旋转MEMS机器中的摩擦扭矩

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In this paper, a beam-membrane (BM) sensor for measuring friction torque in micro-electro-mechanical system (MEMS) gas bearings is presented. The proposed sensor measures the force-arm-transformed force using a detecting probe and the piezoresistive effect. This solution incorporates a membrane into a conventional four-beam structure to meet the range requirements for the measurement of both the maximum static friction torque and the kinetic friction torque in rotating MEMS machines, as well as eliminate the problem of low sensitivity with neat membrane structure. A glass wafer is bonded onto the bottom of the sensor chip with a certain gap to protect the sensor when overloaded. The comparisons between the performances of beam-based sensor, membrane-based sensor and BM sensor are conducted by finite element method (FEM), and the final sensor dimensions are also determined. Calibration of the fabricated and packaged device is experimentally performed. The practical verification is also reported in the paper for estimating the friction torque in micro gas bearings by assembling the proposed sensor into a rotary table-based measurement system. The results demonstrate that the proposed force sensor has a potential application in measuring micro friction or force in MEMS machines.
机译:本文提出了一种用于测量微机电系统(MEMS)气体轴承中摩擦转矩的束膜(BM)传感器。拟议的传感器使用检测探针和压阻效应来测量力臂转换后的力。该解决方案将膜片结合到常规的四束结构中,以满足在旋转MEMS机器中测量最大静摩擦扭矩和动摩擦扭矩的范围要求,并消除了纯膜结构的低灵敏度问题。玻璃晶片以一定的间隙粘结到传感器芯片的底部,以在过载时保护传感器。通过有限元方法(FEM)对基于束的传感器,基于膜的传感器和BM传感器的性能进行比较,并确定最终的传感器尺寸。所制造和封装的设备的校准通过实验进行。通过将拟议的传感器组装到基于旋转工作台的测量系统中来估算微型气体轴承中的摩擦扭矩的论文中也进行了实际验证。结果表明,提出的力传感器在测量MEMS机器中的微摩擦或力方面具有潜在的应用。

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