2010Transducer and Microsystem TechnologiesRequires access

Finite element simulation and related experiments of excitation effect of the excitation device

Jianjun Zhao

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Abstract

For a type of permanent magnet multiloop excitation devices,the magnetic field distribution of the inner and 2 mm above the surface of the ferromagnetic bar was numerically calculated and analyzed by FES while two important sizes is varying,the magnetization effect of the excitation device was analyzed,and the structure of the excitation device was designed.In the experiments,high sensitive giant magnetic resistive(GMR)sensor was employed to detect while the magnetization effect of the excitation device the two parameters is changing.The experimental results are qualitatively in agreement with the simulation.The research results can help to further optimize the design of the excitation device.

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What this paper is about

For a type of permanent magnet multiloop excitation devices,the magnetic field distribution of the inner and 2 mm above the surface of the ferromagnetic bar was numerically calculated and analyzed by FES while two important sizes is varying,the magnetization effect of the excitation device was analyzed,and the structure of the excitation device was designed.In the experiments,high sensitive giant magnetic resistive(GMR)sensor was employed to detect while the magnetization effect of the excitation device the two parameters is changing.The experimental results are qualitatively in agreement with the simulation.The research results can help to further optimize the design of the excitation device.

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Available abstract

For a type of permanent magnet multiloop excitation devices,the magnetic field distribution of the inner and 2 mm above the surface of the ferromagnetic bar was numerically calculated and analyzed by FES while two important sizes is varying,the magnetization effect of the excitation device was analyzed,and the structure of the excitation device was designed.In the experiments,high sensitive giant magnetic resistive(GMR)sensor was employed to detect while the magnetization effect of the excitation device the two parameters is changing.The experimental results are qualitatively in agreement with the simulation.The research results can help to further optimize the design of the excitation device.

Key concepts: Excitation, Magnetization, Resistive touchscreen, Materials science, Bar (unit), Magnet, Finite element method, Magnetic field

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