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Sensitivity and Noise of Wire-Core Transverse Fluxgate

机译:线芯横向磁通门的灵敏度和噪声

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Fluxgate sensors with cores made of amorphous microwire have low sensitivity due to the small cross-sectional area of the wire. Previous studies with multiwire cores have shown nonlinear increase of sensitivity with number of wires, which was explained by interaction between the wires. In this study, we show that the anomalous increase of sensitivity cannot be explained neither by exchange coupling nor by magnetostatic interaction, but by change in parametric amplification caused by change of the quality factor of the resonant circuit. Interactions between the wires may cause hysteresis effects; therefore, we recommend to keep the wires in distance. Optimization of the pick-up coil geometry may significantly increase the sensitivity and, thus, reduce the magnetic field noise. Using four wires in parallel, we reached a noise level of 120 pT/$surd$Hz@1 Hz for a 10-mm-long sensor excited by a 20-mA current.
机译:由于导线的横截面积小,具有由非晶态微线制成的磁芯的磁通门传感器具有较低的灵敏度。先前对多线芯的研究表明,灵敏度随线数的增加而非线性增加,这可以通过线之间的相互作用来解释。在这项研究中,我们表明灵敏度的异常增加不能通过交换耦合或静磁相互作用来解释,而不能通过由谐振电路的品质因数变化引起的参数放大倍数的改变来解释。导线之间的相互作用可能会导致磁滞效应。因此,我们建议保持电线的距离。拾取线圈几何形状的优化可以显着提高灵敏度,从而减少磁场噪声。使用四根并联的线,对于由20mA电流激励的10mm长传感器,我们达到了120 pT / $ surd $ Hz @ 1 Hz的噪声水平。

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