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Temperature Dependence of Offset and Sensitivity in Orthogonal Fluxgate Operated in Fundamental Mode

机译:在基本模式下操作的正交磁通门的偏移量和灵敏度的温度依赖性

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摘要

Orthogonal fluxgate in fundamental mode has low noise output but its offset is often very large. A method has been proposed to compensate the offset consisting in periodical switching of the dc bias of the excitation and subtraction of the signal obtained with positive and negative dc bias. This method has been already proved to effectively suppress the offset, however no investigation has been made for the temperature drift of the offset. In this paper we show that this method can be used also to compensate the drift of the offset for a wide temperature range: compensated output shows about 120 nT maximum variation of the offset in $-90^{circ}{rm C}$ to $+90^{circ}{rm C}$ temperature range, making orthogonal fluxgate in fundamental mode competitive to cheap parallel fluxgate. Moreover the dependence of the open loop sensitivity on the temperature is also investigated: no substantial drop of the sensitivity is observed in the same temperature range.
机译:基本模式下的正交磁通门具有低噪声输出,但其偏移通常很大。已经提出了一种补偿偏移的方法,该偏移包括周期性地激励和减小通过正负直流偏置获得的信号的直流偏置的切换。已经证明该方法可以有效地抑制偏移,但是尚未对偏移的温度漂移进行研究。在本文中,我们证明了该方法还可以用于补偿宽温度范围内失调的漂移:补偿后的输出显示,失调的最大变化量为$ -90 ^ {circ} {rm C} $至$ 120 $ + 90 ^ {circ} {rm C} $温度范围,使基本模式下的正交磁通门与廉价的平行磁通门相比具有竞争力。此外,还研究了开环灵敏度对温度的依赖性:在相同温度范围内未观察到灵敏度的大幅下降。

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