Sensitivity Improvement of TbDyFe Thin-Film Coated Saw-Based Current Sensor

Yuan Sun, Wen Wang, Yana Jia, Shuyao Fan, Yong Liang
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Abstract

In this paper, a novel surface acoustic wave current sensor combining SAW technology and magnetostrictive material is proposed. The typical structure of the sensor is a surface acoustic wave device surface sputtered hysteresis film based on planar lithography. The magnetic sensitive materials with high magnetostriction coefficient are a key factor. In this paper, the TbDyFe giant magnetostrictive film with better performance is used to induce the magnetostrictive strain by applying a magnetic field induced by current, which causes the SAW propagation speed to change. The applied current is evaluated using the differential oscillation frequency offset of the differential delay line oscillating loop. Current experiments show that the current sensor proposed in this paper has high sensitivity and good linearity.
TbDyFe薄膜镀膜锯基电流传感器灵敏度的提高
本文提出了一种结合SAW技术和磁致伸缩材料的表面声波电流传感器。该传感器的典型结构是基于平面光刻技术的表面声波器件表面溅射迟滞膜。高磁致伸缩系数的磁敏材料是关键因素。本文采用性能较好的TbDyFe超磁致伸缩薄膜,通过施加电流感应磁场诱发磁致伸缩应变,使SAW的传播速度发生变化。利用差分延迟线振荡回路的差分振荡频偏来评估外加电流。实验结果表明,本文提出的电流传感器灵敏度高,线性度好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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