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Variation in the Magneto-Impedance (MI) Effect According to the Shape of Patterned Co30Fe34Ni36 Alloys
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  • Variation in the Magneto-Impedance (MI) Effect According to the Shape of Patterned Co30Fe34Ni36 Alloys
  • Variation in the Magneto-Impedance (MI) Effect According to the Shape of Patterned Co30Fe34Ni36 Alloys
저자명
Kim. Hyun-Kyung,Kim. Do-Hun,Son. De-Rac,Jeung. Won-Young
간행물명
Journal of magnetics
권/호정보
2008년|13권 2호|pp.65-69 (5 pages)
발행정보
한국자기학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The magneto impedance (MI) behaviors of patterned $Co_{30}Fe_{34}Ni_{36}$ microwire were investigated with respect to its shape variation. After preparing $Co_{30}Fe_{34}Ni_{36}$ microwires using electrodeposition and photolithography methods, impedance measurements were conducted to compare the MI ratios of the devices with different aspect ratios. As a result, the anisotropy field and transverse permeability were found to be strongly affected by the aspect ratio of the device. The external field value at the maximum impedance and maximum sensitivity of the device was found to increase with increasing device width, which was attributed to the increased transverse anisotropy with decreasing aspect ratio. While an increase in the thickness also contributed to an increase in the MI ratio, a variation in the thickness not only increased the anisotropic field, but the variation in the MI ratio was as also affected by the skin effect. Conversely, the MI ratios of the present devices were hardly affected by variations in the length. Considering the typical aspect ratios of our devices, it was expected that the length effect would emerge when the aspect ratio was reduced to less than 10. Nevertheless, our results show that for the practical application of MI devices, the MI characteristics can be optimized by tailoring the aspect ratio of the devices.