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Magnetic angular position sensor enabled by spin-orbit torque

机译:自旋轨道扭矩可实现磁性角度位置传感器

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We propose a simple scheme for magnetic angular position sensor based on current-induced spin-orbit torque effect. A full range detection of 360 degrees is realized with a pair of Hall crosses made of heavy metal/ferromagnet heterostructures. The current axes of the two Hall crosses are aligned orthogonal to each other, such that when both devices are subject to a rotational in-plane magnetic field, the differential Hall voltage due to current pulses of opposite polarity exhibits a sine and cosine angular dependence on the field direction, respectively. The field rotational angle is then calculated from the sine and cosine output signals via the arctan2 function. A linear correspondence between the calculated and actual field angle is obtained in the field range of 500-2000 Oe, with an average angle error of 0.38 degrees-0.65 degrees. Published by AIP Publishing.
机译:我们提出了一种基于电流感应自旋轨道转矩效应的磁角位置传感器的简单方案。通过一对由重金属/铁磁体异质结构制成的霍尔十字,可以实现360度的全范围检测。两个霍尔交叉点的电流轴彼此正交对齐,这样,当两个设备都受到旋转的平面内磁场时,由于极性相反的电流脉冲而产生的差分霍尔电压会表现出正弦和余弦角依赖性。场方向。然后,通过arctan2函数根据正弦和余弦输出信号计算出磁场旋转角度。在500-2000 Oe的视场范围内获得了计算出的视场角与实际视场角之间的线性对应关系,平均角度误差为0.38度至0.65度。由AIP Publishing发布。

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