两种新型巨磁阻传感器线性化电路的设计与性能评价

Tapabrata Sen, Anoop Chandrika Sreekantan, S. Sen
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引用次数: 10

摘要

本研究提出了两种简单有效的巨磁阻(GMR)磁场传感器线性化电路。GMR传感器通常采用惠斯通电桥形式,包括两个有源GMR和两个无源GMR元件。这种传感器的输出对输入磁场具有非线性的依赖性。所提出的线性化电路在GMR传感器的输出上工作,并提供相对于磁场的线性输出。第一个GMR线性化电路(GLC1)基于增强的反馈补偿方法,而第二个(GLC2)方案使用恒流技术。这些方案的方法用数学推导来描述。对这些方案进行了详细的分析,得出了电路和传感器非理想性对电路性能的影响。此外,在印刷电路板上实现了该电路并进行了测试。试验结果表明,GLC1和GLC2能够产生线性转移特性。然后制造了一个原型GMR传感器单元并使用所开发的电路进行了测试。实验过程中得到的输出非线性在0.7%左右。分析结果表明,GLC1和GLC2方案优于现有方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and performance evaluation of two novel linearisation circuits for giant magneto-resistance based sensors
This study presents two simple and efficient linearisation circuits for giant magneto-resistance (GMR)-based magnetic field sensors. GMR sensors are commonly available in wheatstone-bridge form, comprising two active GMR and two passive GMR elements. The output of such a sensor possesses a non-linear dependence on the input magnetic field. The proposed linearisation circuits operate on the output of a GMR sensor and provide a linear output with respect to the magnetic field. The first GMR linearisation circuit (GLC1) is based on an enhanced feedback compensation approach, while the second (GLC2) scheme uses a constant current technique. The methodologies of the schemes are described using mathematical derivations. Detailed analyses of the schemes are carried out to bring out the effects of circuit and sensor non-idealities on circuit performance. Further, the circuits were implemented on printed circuit boards and tested. Test results showed the capability of GLC1 and GLC2 to produce linear transfer characteristics. A prototype GMR sensor unit was then fabricated and tested with the developed circuits. Output non-linearity obtained during the experimentation was around 0.7%. Analyses of the results proved the superior performance of GLC1 and GLC2 over the existing schemes.
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