Linearizing Relaxation-Oscillator Based Front-End for Magneto-Resistive Angle Sensors

Sawan Kumar Ambedkar, K. Elangovan, K. B. Nandapurkar, C. Anoop
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Abstract

This paper presents a new linearizing digital front-end for magneto-resistive (MR) angle sensor having sine and/or cosine transfer-characteristics. The front-end processes a dual half-bridge MR sensor and then outputs a linear indication of the sensing angle. It combines a simple relaxation-oscillator-based circuit with linearizing ratiometric technique to achieve the aforementioned task. The front-end provides several positive features such as (1) no requirement of precision and matched bipolar reference voltages, (2) simplicity of architecture, (3) independence from various circuit non-idealities. A detailed account of the proposed front-end is discussed with the help of systematic mathematical derivation. The performance of the front-end is verified with help of simulation as well as experimental studies and reported in this paper.
基于线性化弛豫振荡器的磁阻角传感器前端
本文提出了一种具有正弦和/或余弦传递特性的磁阻式(MR)角度传感器的新型线性化数字前端。前端处理双半桥磁流变传感器,然后输出感应角度的线性指示。它结合了一个简单的基于松弛振荡器的电路和线性化比率技术来实现上述任务。前端提供了几个积极的特点,如:(1)不要求精度和匹配的双极参考电压,(2)结构简单,(3)不受各种电路非理想性的影响。在系统的数学推导的帮助下,详细讨论了所提出的前端。本文通过仿真和实验研究验证了该前端的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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