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Open-loop linear differential current sensor based on dual-mode Hall effect

机译:基于双模霍尔效应的开环线性差分电流传感器

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摘要

This study proposes a novel double Hall linear differential sensor and investigates its output and temperature characteristics in detail. Finite element method is used to confirm the effectiveness of the proposed method. A practical, open-loop current sensor circuit is designed and constructed based on dual-mode Hall effect theory. Results show that the quiescent output voltage is significantly reduced, and that the signal amplitude is increased by 99.5%. Moreover, sensitivity is more than 40 mV/mT, linearity is 1.2% full scale, and the zero drift coefficient is 0.033 mV/℃. The differential output model can suppress common mode interference and zero drift. The sensor also exhibits temperature self-compensation and non-linear correction functions.
机译:这项研究提出了一种新颖的双霍尔线性差分传感器,并详细研究了其输出和温度特性。有限元法被用来确认所提方法的有效性。基于双模霍尔效应理论,设计并构建了一种实用的开环电流传感器电路。结果表明,静态输出电压显着降低,信号幅度提高了99.5%。此外,灵敏度大于40 mV / mT,线性度为满量程的1.2%,零漂移系数为0.033 mV /℃。差分输出模型可以抑制共模干扰和零漂移。该传感器还具有温度自补偿和非线性校正功能。

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