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Design and application of a novel contactless sensor

机译:新型非接触式传感器的设计与应用

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The paper presents a novel design of the contactless sensor by the giant magnetoresistance (GMR) effect, instead of the traditional Hall effect or optical technology. The contactless sensing device comprises a magnetic stripe fixed on a tested object, a GMR detector and a processor. The magnetic stripe has arranged plurality of N-pole and S-pole blocks. While the object is moving to make the magnetic stripe pass through the GMR detector, the magnetic direction of the free magnetic layer is influenced by the N-pole and S-pole blocks, such that the magnetic direction of the free magnetic layer is parallel or antiparallel to the fixed magnetic layer. The induced change of the magnetoresistance results in the obvious change of the output signal to the processor, and then the information of the tested object is calculated. The advantages of the contactless sensor are demonstrated in the paper, such as: (1)GMR effect is firstly applied to the sensor design, with the advantages of simple structure, easy installation, low power consumption, low cost, portability, and flexible installing function. (2)The output signal, with high sensitivity, noise immunity and bandwidth, is synchronous with external magnetic field change. (3)Compared with traditional contactless sensor, e.g. optical tachometers, which is only applicable to measure RPM, the sensor is multifunctional to detect not only the position, but also RPM, translational speed and abnormal information.
机译:本文提出了一种通过巨磁阻(GMR)效应代替传统的霍尔效应或光学技术的非接触式传感器的新颖设计。非接触感测设备包括固定在被测物体上的磁条,GMR检测器和处理器。磁条布置有多个N极和S极块。当物体移动以使磁条穿过GMR检测器时,自由磁层的磁方向会受到N极和S磁极块的影响,从而使自由磁层的磁方向平行或平行。与固定磁性层反平行。磁阻的感应变化导致处理器的输出信号发生明显变化,然后计算出被测对象的信息。论文展示了非接触式传感器的优点,例如:(1)首先将GMR效应应用于传感器设计中,具有结构简单,易于安装,功耗低,成本低,便携性强,安装灵活的优点。功能。 (2)输出信号具有高灵敏度,抗噪声能力和带宽,与外部磁场变化同步。 (3)与传统的非接触式传感器相比光学转速表仅适用于测量RPM,该传感器具有多功能功能,不仅可以检测位置,还可以检测RPM,平移速度和异常信息。

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