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Impact of Adjustment of the Static Working Point on the 1/

机译:静态工作点调整对1 /的影响

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摘要

The resolution of giant magneto-impedance (GMI)-based magnetic sensor is limited by its equivalent magnetic noise level. It presents a white noise and a low-frequency 1/f noise behavior. Previous works have showed that the white noise is mainly determined by the electronic conditioning noise, nevertheless, the 1/f noise's origin is not totally clear yet. To optimize the 1/f noise, in this paper, first, we develop an optimized negative feedback GMI sensor. It contains of a low-distortion oscillator, a high-performance amplitude detector, and a GMI sensing element with adjustable static working point. And then, the sensitivity and the 1/f noise level of the GMI sensor are studied when considering the electronic conditioning parameters and the static working point. The experiment results show that the adjustment of the static working point has a significant effect on the 1/f noise at low frequencies. The optimal 1/f noise is obtained by setting the static working point at the position where the GMI element possesses with the maximum intrinsic sensitivity. Finally, we achieve the GMI sensor noise performance of 20 pT/root Hz at white noise region and 100 pT/root Hz at 1 Hz.
机译:基于巨磁阻抗(GMI)的磁传感器的分辨率受到等效磁噪声水平的限制。它表现出白噪声和低频1 / f噪声行为。先前的工作表明,白噪声主要由电子调节噪声决定,但是,1 / f噪声的起源还不完全清楚。为了优化1 / f噪声,在本文中,首先,我们开发了一种优化的负反馈GMI传感器。它包含一个低失真振荡器,一个高性能幅度检测器以及一个具有可调静态工作点的GMI传感元件。然后,在考虑电子调节参数和静态工作点时,对GMI传感器的灵敏度和1 / f噪声水平进行了研究。实验结果表明,静态工作点的调整对低频下的1 / f噪声有很大影响。通过将静态工作点设置在GMI元件具有的最大固有灵敏度的位置,可以获得最佳的1 / f噪声。最后,我们在白噪声区域实现了20 pT /根Hz的GMI传感器噪声性能,在1 Hz时达到了100 pT /根Hz的GMI传感器噪声性能。

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