DocumentCode :
3560362
Title :
Effect of Slit Patterning Perpendicular to Magnetic Easy Axis in Thin Film Inductors
Author :
Masai, Taku ; Kitamoto, Yoshitaka
Author_Institution :
Dept. of Innovative & Eng. Mater., Tokyo Inst. of Technol., Ichikawa
Volume :
44
Issue :
11
fYear :
2008
Firstpage :
3871
Lastpage :
3874
Abstract :
In the case of spiral inductors using magnetic thin films with uniaxial anisotropy, magnetic flux pass through both easy and hard axes in the films. Frequency characteristics of inductance in the spiral inductors strongly depend on magnetization behaviors in the magnetic easy-axis direction. Slit patterning perpendicular to the magnetic easy axis in the magnetic thin films influences domain-wall displacement in the easy-axis direction, raising its resonant frequency and improving the permeability in the MHz range. The permeability at 1 MHz in the easy-axis direction takes the maximum value when the wire width is 0.5 mm in the slit-patterned CoZrTa films. Furthermore, also in composite spiral-inductor devices using the slit-patterned CoZrTa films and ferrite substrates, the inductance at 1 MHz takes the maximum value at the same wire width. The slit patterning perpendicular to the magnetic easy axis is effective to achieve high inductance in the MHz range for magnetic thin-film spiral inductors.
Keywords :
cobalt alloys; magnetic anisotropy; magnetic domain walls; magnetic permeability; magnetic thin film devices; magnetic thin films; magnetisation; tantalum alloys; thin film inductors; zirconium alloys; CoZrTa; composite spiral-inductor devices; domain-wall displacement; ferrite substrates; frequency 1 MHz; frequency characteristics; magnetic easy axis; magnetic easy-axis direction; magnetic flux; magnetic thin films; magnetic thin-film spiral inductors; magnetization behaviors; permeability; resonant frequency; size 0.5 mm; slit patterning perpendicular; slit-patterned films; uniaxial anisotropy; CoZrTa; domain wall; magnetic thin films; magnetization reversal; permeability;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2002476
Filename :
4717725
Link To Document :
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