微磁通门传感器采用电磁驱动和感应线圈

D. Shim, Hae-Seok Park, K. Na, Wonseo Choi, Jun-sik Hwang, Sang-on Choi
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引用次数: 1

摘要

本文介绍了一种基于mems的微磁通门磁传感器,该传感器由电磁驱动线圈、感应线圈和矩形环形磁芯组成。采用具有高电阻率和良好平面化特性的苯并环丁烯(BCB)分离电磁线圈和磁芯。采用MEMS技术制造微磁通门传感器,具有低成本、小尺寸、低功耗等优点。在Cr (300/spl Aring/)/Au (1500/spl Aring/)薄膜上电镀宽度为20 /spl mu/m、厚度为3.5/spl mu/m的铜线圈,用于驱动线圈和传感线圈。我们将磁芯设计成矩形环形,以减少漏磁。在2000高斯下电镀厚度为2/ spl mu/m的坡莫合金(NiO/sub 0.8/Fe/sub 0.2/)薄膜,诱导磁各向异性。磁芯的直流有效磁导率为/spl sim/ 1100,矫顽力为/spl sim/0.1 Oe。所制备的磁通门传感器在驱动频率为2 MHz,驱动电压为5 Vp-p时,灵敏度为/spl sim/650 V/T,功耗为40 mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micro fluxgate sensor using solenoid driving and sensing coils
This paper describes a MEMS-based micro-fluxgate magnetic sensor composed of solenoid driving coil, sensing coil and rectangular-ring shaped magnetic core. Solenoid coils and magnetic core were separated by benzocyclobutene (BCB) having high resistivity and good planarization characteristics. To take advantage of low cost, small size and low power consumption, MEMS technology was used to fabricate micro fluxgate sensor. Copper coil with 20 /spl mu/m width and 3.5/spl mu/m thickness was electroplated on Cr (300/spl Aring/)/Au (1500/spl Aring/) films for driving and sensing coils. We designed the magnetic core into a rectangular-ring shape to reduce the magnetic flux leakage. Permalloy (NiO/sub 0.8/Fe/sub 0.2/) film with the thickness of 2 /spl mu/m was electroplated under 2000 gauss to induce magnetic anisotropy. The magnetic core had the high DC effective permeability of /spl sim/1,100 and coercivity of /spl sim/0.1 Oe. The fabricated fluxgate sensor had the sensitivity of /spl sim/650 V/T and power consumption of 40 mW at the driving frequency of 2 MHz and the driving voltage of 5 Vp-p.
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