磁阻传感器的模拟行为建模

H. Fardi, G. Alaghband
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引用次数: 3

摘要

建立了一种通过调制软邻接层驱动偏置工作的各向异性磁阻传感器行为电路模型。通过在直流水平上构造一个二维多项式来描述传感器驱动电流在传感器自身偏置和磁场偏置控制下的变化,从而对传感器的非线性外在行为进行建模。在SPICE中使用模拟行为模型来实现该模型。给出了二次谐波(2f)灵敏度信号的仿真结果,并与桥梁结构下的实验数据进行了比较。通过与实验数据的比较,可以准确预测AMR传感器的2f测量值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analog behavioral modeling of magnetoresistive sensors
A behavioral circuit model of anisotropic magneto resistance (AMR) sensors that operates by modulating the drive bias on soft-adjacent-layer is developed. The non-linear extrinsic behavior of the sensor is modeled by constructing a two-dimensional (2D) polynomial at DC level for the variation of the sensor drive current controlled by the self bias of the sensor and magnetic field bias. Analog Behavioral Model is used to implement the model in SPICE. The simulation of second harmonic (2f) sensitivity signal and its comparison to the experimental data in a bridge configuration is presented. The comparison made with the experimental data permits the accurate prediction of 2f measurement for AMR sensors.
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