Compact Design of a Wide Bandwidth High Current Sensor Using Tilted Magnetic Field Sensors

Philipp Ziegler, Yiru Zhao, Jörg Haarer, J. Ruthardt, M. Fischer, J. Roth-Stielow
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引用次数: 5

Abstract

Magnetic field-based current sensors are widely used due to their galvanically isolated measurement principle. A well-proved concept is based on the discrete realization of the Ampère´s law using a circular array of magnetic field sensors. Depending on the linear operating range of the magnetic field sensors the radius of the circular array has to be chosen, leading to large dimensions for high current values. This paper presents a novel approach to build a compact wide bandwidth current sensor based on the combination of tilted tunnel-magnetoresistance sensors and a Rogowski coil. The used tunnel-magnetoresistance sensors are characterized and show an increased linear range in the a current sensor application if they are tilted. In addition, the sensor sensitivity is varied with the tilt angel. A novel current sensor concept based on tilting in combination with repositioning the magnetic field sensors is presented. This concept offers the opportunity to reduce the size of state-of-the-art current sensors based on magnetic field sensors significantly. The proposed concept is verified in a current sensor prototype and the DC current linearity, the dynamic behavior as well as the signal-to-noise ratio is characterized.
基于倾斜磁场传感器的宽带宽大电流传感器的紧凑设计
基于磁场的电流传感器由于其电隔离的测量原理而得到广泛的应用。一个很好的概念是基于安培特雷定律的离散实现,使用一个圆形的磁场传感器阵列。根据磁场传感器的线性工作范围,必须选择圆形阵列的半径,从而导致高电流值的大尺寸。本文提出了一种基于倾斜隧道磁电阻传感器和Rogowski线圈相结合的小型宽带电流传感器的新方法。本文对隧道磁阻传感器进行了特性分析,发现倾斜的隧道磁阻传感器在电流传感器应用中线性范围增大。此外,传感器的灵敏度随倾角的变化而变化。提出了一种基于倾斜与磁场传感器重新定位相结合的电流传感器新概念。这一概念为显著减小基于磁场传感器的最先进电流传感器的尺寸提供了机会。在电流传感器样机中验证了所提出的概念,并对直流电流线性度、动态特性以及信噪比进行了表征。
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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