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GMI Output Stability of Glass-coated Co-based Microwires for Sensor Application

机译:GMI用于传感器应用的玻璃涂层CO基微针的GMI输出稳定性

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We report a study here on the technique of Cu electro-plated wire-connecting for stabilizing the GMI output of Co_(68.15)Fe_(4.35)B_(15)Si_(12.5) glass-coated amorphous microwires at the magnetic field ranging from 0 Oe to 4.2 Oe. The GMI output stability was characterized by a precision impedance analyzer and in a magnetically shielded space (MSS). The results show that this method could reduce the emission of RF electro-magnetic wave and driving signal attenuation, minimize the disturbance of stray capacity and parasitic capacity, and suppress high frequency destabilization and concussion at the relatively high frequency (≥ MHz), hence effectively improve the GMI output stability for high-resolution magnetic sensor application.
机译:我们在这里报告了Cu电镀线连接技术的研究,用于稳定CO_(68.15)FE_(4.35)B_(15)Si_(12.5)玻璃涂覆的无定形微射线的GMI输出在磁场范围为0 OE到4.2 oe。 GMI输出稳定性的特征在于精密阻抗分析仪和磁屏蔽空间(MSS)。结果表明,该方法可以减少RF电磁波的发射和驱动信号衰减,最大限度地减少杂散容量和寄生能力的干扰,并抑制相对高频(≥MHz)的高频稳定化和脑震荡,因此有效提高高分辨率磁传感器应用的GMI输出稳定性。

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