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Low Offset Drift–Low-Noise Orthogonal Fluxgate With Synchronized Polarity Flipping

机译:具有同步极性翻转功能的低失调漂移-低噪声正交磁通门

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摘要

In this paper, we present an orthogonal fluxgate in fundamental mode with extremely stable offset and low noise. The typical solution to stabilizing the offset in this type of sensor is to flip the dc bias of its excitation current and subtract the output obtained with opposite polarities. In this case, on the contrary, we flip both the ac and dc components of the excitation current and sum the output voltages. This is performed using fast solid-state switches with low on-resistance. In this way, we achieved a large suppression of the dependence of the offset on temperature, obtaining an average offset drift of 0.012 nT/K, making this sensor on the top class for offset stability. We digitally sampled and numerically demodulated the output voltage of the sensor to extract the first harmonic. The value of the first harmonic shows noise right after switching of the current. Therefore, we numerically erased those few noisy values of the first harmonic before integrating it. In this way, we managed to limit the noise growth given by switching of the current. Finally, we strongly improved the offset stability with minor increment of noise.
机译:在本文中,我们提出了一种基本模式的正交磁通门,它具有极稳定的失调和低噪声。在这种类型的传感器中,稳定失调的典型解决方案是翻转其激励电流的直流偏置,并减去具有相反极性的输出。相反,在这种情况下,我们翻转励磁电流的交流和直流分量并求和输出电压。这是使用具有低导通电阻的快速固态开关执行的。通过这种方式,我们极大地抑制了偏移量对温度的依赖性,获得了0.012 nT / K的平均偏移量漂移,使该传感器在偏移量稳定性方面处于顶级水平。我们对传感器的输出电压进行数字采样和数字解调,以提取一次谐波。一次谐波的值在电流切换后立即显示出噪声。因此,在积分之前,我们在数值上消除了一次谐波的少量噪声值。这样,我们设法限制了电流切换所产生的噪声增长。最后,我们以很小的噪声增量极大地改善了偏移稳定性。

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