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Flat Bandwidth Expansion for Spin-Valve GMR Magnetic Field Sensors

机译:自旋阀GMR磁场传感器的平坦带宽扩展

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摘要

A magnetic field sensing system based on the combination of giant magnetoresistance (GMR) sensors driven by different schemes is investigated to achieve a high flat bandwidth. The system utilized a summing amplifier to combine the high-frequency (HF) and low-frequency (LF) sensors of unified sensitivity. The field modulated GMR, which is non-hysteretic and highly linear, is used as the LF sensor, while the GMR sensor operated with a dc bias field serves as the HF sensor. It is found that the total sensitivity of the combined system is constant at 4398 V/T when the second-order low-pass and high-pass filters are used. A -3 dB flat bandwidth of sensitivity is as high as 100 kHz for the second-order system, but the phase angle turns over at the transition frequency of 100 Hz. The first-order system has a moderate flat bandwidth of 40 kHz while the phase lag is less than 9.4° up to 100 Hz. The proposed systems are useful in measurement of dc and transient magnetic fields as well as non-contact monitoring of static and alternating electric currents.
机译:研究了基于不同方案驱动的巨磁阻(GMR)传感器组合的磁场传感系统,以实现高平坦带宽。该系统利用求和放大器来组合具有统一灵敏度的高频(HF)和低频(LF)传感器。非磁滞且高度线性的场调制GMR用作LF传感器,而在直流偏置磁场下工作的GMR传感器用作HF传感器。发现使用二阶低通和高通滤波器时,组合系统的总灵敏度恒定在4398 V / T。对于二阶系统,-3 dB的平坦平坦灵敏度带宽高达100 kHz,但是相角在100 Hz的跃迁频率下翻转。一阶系统具有40 kHz的适度平坦带宽,而高达100 Hz的相位滞后小于9.4°。所提出的系统可用于测量直流和瞬态磁场,以及用于静态和交流电的非接触式监控。

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