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Characteristics of a Magnetic Field Sensor with a Concentrating-Conducting Magnetic Flux Structure

机译:具有浓缩磁通结构的磁场传感器的特性

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摘要

A magnetic field sensor with a new concentrating-conducting magnetic flux structure (CCMFS) is proposed in this paper, using a silicon-on insulator (SOI) Hall element fabricated by complementary metal oxide semiconductor (CMOS) technology as a magnetic sensitive unit. By fixing the CCMFS above the Hall element packaged on a printed circuit board (PCB) based on inner-connect wire bonding technology, a non-magnetized package can subsequently be obtained. To analyze the inner magnetic field vector distribution of the CCMFS, a simulation model was built based on a finite element software, where the CCMFS was processed using Ni-Fe alloys material by a low speed wire-cut electric discharge technology. The test results showed that the measurement of magnetic fields along a sensitive and a non-sensitive axis can be achieved when VDD = 5.0 V at room temperature, with magnetic sensitivities of 122 mV/T and 132 mV/T in a testing range from −30 mT to 30 mT, respectively. This study makes it possible to not only realize the detection of magnetic field, but also to significantly improve the sensitivity of the sensor along a non-sensitive axis.
机译:本文用诸如互补金属氧化物半导体(CMOS)技术制造的硅上的绝缘体(SOI)霍尔元件作为磁敏敏感单元,用磁场 - 霍尔元件提出了一种具有新的浓缩磁通结构(CCMF)的磁场传感器。通过将CCMFS固定在基于内连接线键合技术的印刷电路板(PCB)上的霍尔元件上方,随后可以获得非磁化包装。为了分析CCMF的内部磁场矢量分布,基于有限元软件构建了模拟模型,其中CCMF通过低速线切割电放电技术使用Ni-Fe合金材料处理。测试结果表明,当室温下VDD = 5.0V = 5.0V时,磁性敏感度在测试范围内的磁敏敏率可以实现沿敏感轴的磁场和非敏感轴的测量,从而实现122mV / t和132 mV / t的 - 分别为30吨至30吨。该研究使得不仅可以实现磁场的检测,而且还可以显着提高传感器沿着非敏感轴的灵敏度。

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