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A New Method to Measure the Output Torque for Micromotor

机译:一种测量微电机输出转矩的新方法

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摘要

A noncontact measuring method has been proposed to measure the micronewton meter-order output microtorque of micromotors to overcome the problem of large measurement errors caused by temperature, vibration, friction, and the flow of air. Physical model of this method is built according to Newton’s third law and the electromagnetic theory. To realize this method, an apparatus named noncontact microtorque measuring equipment is designed to measure the output torque of micronewton meter-order micromotors. This device is mainly composed of electromagnetic windings, control circuit, an electronic balance, and a photoelectric sensor. Working principle of this device is introduced and the measured precisions of rotating speed and microtorque of the device are also analyzed in detail. Finally, a microelectromechanical system fabricated planar dc micromotor is tested by this device. The analyzed precision of the microtorque is 0.01 , which is precise enough for the measurement. The tested result indicates this method is feasible to measure the micronewton meter-order output microtorque of the micromotor.
机译:为了克服由温度,振动,摩擦和空气流动引起的大的测量误差的问题,已经提出了一种非接触式测量方法来测量微电机的微牛顿计级输出微扭矩。该方法的物理模型是根据牛顿第三定律和电磁理论建立的。为了实现该方法,设计了一种称为非接触式微扭矩测量设备的设备来测量微牛顿米级微电机的输出扭矩。该装置主要由电磁绕组,控制电路,电子天平和光电传感器组成。介绍了该装置的工作原理,并详细分析了该装置的转速和微扭矩的测量精度。最后,通过该装置测试了由微机电系统制造的平面直流微电机。微扭矩的分析精度为0.01,足以进行测量。测试结果表明,该方法对测量微电机的牛顿米级输出微扭矩是可行的。

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