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Design and Characterization of a Novel T-Shaped Multi-Axis Piezoresistive Force/Moment Sensor

机译:新型T形多轴压阻力/力矩传感器的设计与表征

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摘要

In this paper, a T-shaped piezoresistive multi-axis force sensor fabricated by the semiconductor technology is developed. The sensor’s design, simulation, piezoresistors arrangement, and characterization are discussed. Fourteen piezoresistors are arranged on silicon beams and used as independent strain gauges. The three components (, , and ) of an applied force and two components of a moment (, and ) can be simultaneously resolved from the piezoresistance changes induced by the stresses. The sensor was first characterized using a gravity mass reference test bench. The results show the properties of linearity (0.99), sensitivity (force: 1.5 mN; moment: 0.003 Nmm), and small crosstalk (%) between the dominant force component and other components. The fabricated sensor was also verified against a commercial six degree of freedom load cell, and found to perform reliably with high repeatability, low hysteresis (0.5%), and good dynamic response (4 ms).
机译:本文开发了一种利用半导体技术制造的T形压阻式多轴力传感器。讨论了传感器的设计,仿真,压敏电阻布置和特性。十四个压阻器排列在硅梁上,并用作独立的应变仪。施加力的三个分量(和)和力矩的两个分量(和)可以同时从应力引起的压阻变化中解决。首先使用重力质量参考测试台对传感器进行了表征。结果显示出线性(0.99),灵敏度(力:1.5 mN;力矩:0.003 Nmm)和主导力分量与其他分量之间的较小串扰(%)的属性。还对制造的传感器进行了商业六自由度称重传感器的验证,发现该传感器具有高重复性,低滞后(0.5%)和良好的动态响应(4 ms)的性能。

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