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A Non-Invasive Thermal Drift Compensation Technique Applied to a Spin-Valve Magnetoresistive Current Sensor

机译:一种用于自旋阀磁阻电流传感器的非侵入式热漂移补偿技术

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摘要

A compensation method for the sensitivity drift of a magnetoresistive (MR) Wheatstone bridge current sensor is proposed. The technique was carried out by placing a ruthenium temperature sensor and the MR sensor to be compensated inside a generalized impedance converter circuit (GIC). No internal modification of the sensor bridge arms is required so that the circuit is capable of compensating practical industrial sensors. The method is based on the temperature modulation of the current supplied to the bridge, which improves previous solutions based on constant current compensation. Experimental results are shown using a microfabricated spin-valve MR current sensor. The temperature compensation has been solved in the interval from 0 °C to 70 °C measuring currents from −10 A to +10 A.
机译:提出了一种磁阻惠斯通电桥电流传感器灵敏度漂移的补偿方法。该技术是通过将钌温度传感器和MR传感器放置在通用阻抗转换器电路(GIC)内进行补偿的。无需对传感器桥臂进行内部修改,因此该电路能够补偿实际的工业传感器。该方法基于提供给电桥的电流的温度调制,从而改进了基于恒定电流补偿的先前解决方案。使用微型旋转阀MR电流传感器显示了实验结果。温度补偿已在0°C至70°C的范围内解决,测量电流范围为-10 A至+10A。

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