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A reluctance-Hall Effect based linear digital angle sensor

机译:基于磁阻霍尔效应的线性数字角度传感器

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A new angle sensor based on a combination of a reluctance technique and Hall-Effect principle is presented in this paper. The proposed sensor provides a linear, digital output proportional to the angle being sensed. The sensor consists of two identical ring shaped sheets, in parallel, and a permanent magnet, placed between the rings. This unit rotates in unison with the target. Two fixed Hall-Effect sensor ICs, which are 180° apart, are kept in the air gap between the rings. An analysis shows that the flux density seen by these fixed Hall-Effect ICs vary as a third order polynomial function of the angle being sensed. A new signal conditioning method that provides a linear digital output from the proposed sensor is presented. A prototype angle sensor and signal conditioning unit have been built and tested. Output of the prototype unit was linear across 0 - 110° and worst-case error was less than 1.2%. The proposed sensor is suitable for automotive and industrial applications, especially where center of the target is not easily accessible to employ the conventional magnetic sensors directly.
机译:本文提出了一种结合磁阻技术和霍尔效应原理的新型角度传感器。所提出的传感器提供与所感测的角度成比例的线性数字输出。该传感器由两个平行的相同环形片和一个放置在两个环之间的永磁体组成。本机与目标一起旋转。两个固定的霍尔效应传感器IC(相隔180°)保持在环之间的气隙中。分析表明,这些固定的霍尔效应IC所看到的通量密度随着所感测角度的三阶多项式函数而变化。提出了一种新的信号调理方法,该方法可从提出的传感器提供线性数字输出。原型角度传感器和信号调理单元已经制造并经过测试。原型单元的输出在0-110°范围内呈线性,最坏情况的误差小于1.2%。所提出的传感器适用于汽车和工业应用,尤其是在目标中心不易接近而直接采用常规磁传感器的情况下。

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