Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor

碩士 === 中原大學 === 電機工程研究所 === 102 === This dissertation investigates the effect of different core bending stress and composite-cored structures of magnetic properties on micro-fluxgate sensor with amorphous materials. Three types of amorphous alloys, including SA1, HB1 and HB1-M, are fabricated by HIT...

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Main Authors: Jia-Hong Lin, 林嘉宏
Other Authors: Chun-Yao Lee
Format: Others
Language:zh-TW
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/23004712077442876553
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spelling ndltd-TW-102CYCU54420192016-03-11T04:13:02Z http://ndltd.ncl.edu.tw/handle/23004712077442876553 Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor 高導磁低損耗磁通匝磁感測器之研究 Jia-Hong Lin 林嘉宏 碩士 中原大學 電機工程研究所 102 This dissertation investigates the effect of different core bending stress and composite-cored structures of magnetic properties on micro-fluxgate sensor with amorphous materials. Three types of amorphous alloys, including SA1, HB1 and HB1-M, are fabricated by HITACHI Metal Co. Japan, which is applicable into core thickness with 0.0254 mm 30 piece. Firstly, in order to analyze the core inner magnetic flux density distribution and magnetic loss, 3D simulation structure for fluxgate sensor was constructed by using finite element analysis method (FEA). Secondly, it is necessary to generate better magnetic anisotropy performance for amorphous core due to the core was annealed during 325 ℃ to 350 ℃ soak for 1hour and conducting at DC current to generate magnetic field density 800A/m. According to the experimental results, the measured characteristics of hysteresis loop, exciting power and magnetic loss under alternate current signal during 0.5k~3kHz, can be obtained. Thirdly, Fast Fourier Transformation (FFT) can be used to observer the magnetic core vibration. A better sensitivity property for magnetic fluxgate sensor operated at 3kHz, can be obtained. This study was proposed better magnetic properties for triangle forming core in bending stress than that counterpart of others cores. Finally, it is indicated that a better magnetic sensor performance for composite-cored structure with high magnetic induction, can be obtained. Chun-Yao Lee 李俊耀 2014 學位論文 ; thesis 101 zh-TW
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language zh-TW
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sources NDLTD
description 碩士 === 中原大學 === 電機工程研究所 === 102 === This dissertation investigates the effect of different core bending stress and composite-cored structures of magnetic properties on micro-fluxgate sensor with amorphous materials. Three types of amorphous alloys, including SA1, HB1 and HB1-M, are fabricated by HITACHI Metal Co. Japan, which is applicable into core thickness with 0.0254 mm 30 piece. Firstly, in order to analyze the core inner magnetic flux density distribution and magnetic loss, 3D simulation structure for fluxgate sensor was constructed by using finite element analysis method (FEA). Secondly, it is necessary to generate better magnetic anisotropy performance for amorphous core due to the core was annealed during 325 ℃ to 350 ℃ soak for 1hour and conducting at DC current to generate magnetic field density 800A/m. According to the experimental results, the measured characteristics of hysteresis loop, exciting power and magnetic loss under alternate current signal during 0.5k~3kHz, can be obtained. Thirdly, Fast Fourier Transformation (FFT) can be used to observer the magnetic core vibration. A better sensitivity property for magnetic fluxgate sensor operated at 3kHz, can be obtained. This study was proposed better magnetic properties for triangle forming core in bending stress than that counterpart of others cores. Finally, it is indicated that a better magnetic sensor performance for composite-cored structure with high magnetic induction, can be obtained.
author2 Chun-Yao Lee
author_facet Chun-Yao Lee
Jia-Hong Lin
林嘉宏
author Jia-Hong Lin
林嘉宏
spellingShingle Jia-Hong Lin
林嘉宏
Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor
author_sort Jia-Hong Lin
title Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor
title_short Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor
title_full Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor
title_fullStr Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor
title_full_unstemmed Study Of High Permeability And Low Loss Magnetic Fluxgate Sensor
title_sort study of high permeability and low loss magnetic fluxgate sensor
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/23004712077442876553
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