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Development and Comparative Analysis of Fluxgate Magnetic Sensor Structures in PCB Technology

机译:PCB技术中磁通门磁传感器结构的发展与比较分析

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In this paper, we present a family of fluxgate magnetic sensors on printed circuit boards (PCBs), suitable for an electronic compass. This fabrication process is simple and inexpensive and uses commercially available thin ferromagnetic materials. We developed and analyzed the prototype sensors with software tools based on the finite-element method. We developed both single- and double-axis planar fluxgate magnetic sensors as well as front-end circuitry based on second-harmonic detection. Two amorphous magnetic materials, Vit-rovac 6025X (25μm thick) and Vitrovac 6025Z (20 μm thick), were used as the ferromagnetic core. We found that the same structures can be made with Metglas ferromagnetic core. The double-axis fluxgate magnetic sensor has a sensitivity of about 1.25 mV/μT with a linearity error of 1.5% full scale, which is suitable for detecting Earth's magnetic field (±60μT full-scale) in an electronic compass.
机译:在本文中,我们介绍了适用于电子罗盘的印刷电路板(PCB)上的磁通门磁传感器系列。该制造过程简单且便宜,并且使用可商购的薄铁磁材料。我们使用基于有限元方法的软件工具开发并分析了原型传感器。我们开发了单轴和双轴平面磁通门磁传感器以及基于二次谐波检测的前端电路。铁磁芯使用了两种无定形磁性材料Vit-rovac 6025X(厚度为25μm)和Vitrovac 6025Z(厚度为20μm)。我们发现,Metglas铁磁芯可以制造相同的结构。双轴磁通门磁传感器的灵敏度约为1.25 mV /μT,线性误差为满量程的1.5%,适用于在电子罗盘中检测地球磁场(满量程为±60μT)。

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