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Improvement of Stepped Magnetoimpedance Properties by Controlling the Demagnetizing Effect

机译:通过控制退磁效果改善阶梯式磁阻特性

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摘要

We investigated the effects of controlling the distribution of the demagnetizing field on the impedance profiles of stepped giant magnetoimpedance elements. Elements with an ellipsoidal shape were adopted to improve the properties in discontinuous impedance jumps, as the demagnetizing field is expected to be uniform in an ellipsoid. The impedance jumps in the ellipsoidal elements became sharper and more abrupt, and the height ratio improved by 3–4 times compared with the ratio of the conventional rectangular elements. The observed domain structures propagated from the edge to the center in the rectangular elements, which is explained on the basis of the calculated distribution of the demagnetizing factor. On the other hand, all the domains appeared or disappeared in the ellipsoidal elements, indicating that the demagnetizing factor is nearly constant in the elements. The results contribute to a miniaturization of the element in order to keep the abrupt discontinuous impedance.
机译:我们研究了控制去磁磁场分布对阶梯式巨型磁阻元件阻抗分布的影响。采用椭圆形的元件来改善不连续阻抗跳跃的特性,因为预计退磁场在椭圆形中是均匀的。椭圆形单元中的阻抗跃变变得更加尖锐和陡峭,与传统矩形单元的比率相比,高度比提高了3-4倍。观察到的畴结构在矩形元件中从边缘传播到中心,这是根据计算出的消磁因子分布进行解释的。另一方面,在椭圆形元件中所有畴都出现或消失,表明退磁因子在元件中几乎恒定。结果有助于元件的小型化,以保持突然的不连续阻抗。

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