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Optimization of Autonomous Magnetic Field Sensor Consisting of Giant Magnetoimpedance Sensor and Surface Acoustic Wave Transducer

机译:由巨磁阻抗传感器和表面声波传感器组成的自主磁场传感器的优化

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摘要

This paper presents a novel autonomous thin film magnetic field sensor consisting of a tri-layer giant magnetoimpedance sensor and a surface acoustic wave transponder. Double and single electrode interdigital transducer (IDT) designs are employed and compared. The integrated sensor is fabricated using standard microfabrication technology. The results show the double electrode IDT has an advantage in terms of the sensitivity. In order to optimize the matching component, a simulation based on P-matrix is carried out. A maximum change of 2.4 dB of the reflection amplitude and a sensitivity of 0.34 dB/Oe are obtained experimentally.
机译:本文提出了一种新颖的自主薄膜磁场传感器,该传感器由三层巨型磁阻传感器和表面声波应答器组成。使用并比较了双电极和单电极叉指换能器(IDT)设计。集成传感器使用标准的微制造技术制造。结果表明,双电极IDT在灵敏度方面具有优势。为了优化匹配分量,进行了基于P矩阵的仿真。通过实验获得2.4 dB的反射振幅的最大变化和0.34 dB / Oe的灵敏度。

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