A new silicon micro-transducer for the measurement of the magnitude and direction of a magnetic-field vector

V. Zieren
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引用次数: 11

Abstract

This paper describes a new Silicon Micro-Transducer (SMT) which is capable of measuring the magnitude and direction of a magnetic-field vector. This vector sensor --made by standard bipolar technology-is a four-collector npn-transistor giving output signals which are a linear function of the two components of an in-plane magnetic field. A centrally injected current is divided into four equal parts. The current differences of the two pairs of opposite collectors, affected by the two in-plane field components, are the output signals. Consequently, the amplitude and direction of the applied field can be derived from these independent signals. The vector sensor was developed from a one-dimensional sensor having two collectors only. As the basic operating principles are the same, most of the one-dimensional characteristics also apply to the vector sensor. Non-linearity: ≤ 0.3% for |B| ≤ 1 T. Typical sensitivity per collector pair: δIc/(Ic.B) = 3 × 10-2T-1at Ucb= 5 V.
一种用于测量磁场矢量大小和方向的新型硅微传感器
本文介绍了一种能够测量磁场矢量大小和方向的新型硅微换能器。这种矢量传感器采用标准双极技术制造,是一种四集电极npn晶体管,输出信号是平面内磁场两个分量的线性函数。集中注入的电流被分成四等份。两对相对集电极的电流差,受两个面内场分量的影响,即为输出信号。因此,可以从这些独立的信号推导出外加场的振幅和方向。矢量传感器是由只有两个收集器的一维传感器发展而来的。由于基本工作原理相同,矢量传感器的大部分一维特性也适用于矢量传感器。每集电极对的典型灵敏度:δIc/(Ic.B) = 3 × 10-2T-1at Ucb= 5 V。
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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