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A phenomenological spice model for magneto-impedance sensors

机译:磁阻传感器的现象学香料模型

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In this paper a lumped circuit model of magneto-impedance (MI) sensors that can be easily implemented in Spice-like simulators is proposed. The model is based on the equivalent circuit of a Pade's approximation derived from the impedance relied on Bessel functions. Thus, the model can simulate the transient and frequency responses from DC to several megahertz for a fix external magnetic field. Besides, the model can predict the impedance changes of the sensors as a nonlinear function of an external magnetic field via behavioral sources. This allows simulating MI sensors using magnetic feedback for controlling their response to improve linearity and dynamic range. The model has been verified using Spice simulations together with measurement results from a discrete prototype for generating the pulse voltage source, a simple modulation-type configuration, and a feedback structure.
机译:本文提出了一种可以在类似Spice的仿真器中轻松实现的磁阻(MI)传感器的集总电路模型。该模型基于帕德近似值的等效电路,该等效值由依赖于贝塞尔函数的阻抗得出。因此,对于固定的外部磁场,该模型可以仿真从DC到几兆赫兹的瞬态和频率响应。此外,该模型可以通过行为源将传感器的阻抗变化预测为外部磁场的非线性函数。这允许使用磁反馈来模拟MI传感器,以控制其响应以改善线性度和动态范围。该模型已使用Spice仿真以及来自用于生成脉冲电压源的离散原型的测量结果,简单的调制类型配置和反馈结构进行了验证。

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