DocumentCode
1390389
Title
Performance of Tunable Magnetic Inductors in Relation to the Magnetic Layer Thickness and an Applied Longitudinal Magnetic Field in Electrodeposition of the Magnetic Layer
Author
Ning, N. ; Li, X.P.
Author_Institution
Dept. of Mech. Eng., Nat. Univ. of Singapore, Singapore, Singapore
Volume
46
Issue
2
fYear
2010
Firstpage
337
Lastpage
340
Abstract
A tunable magnetic inductor based on magnetoimpedance effect, with low dc current/power consumption for continuous inductance tuning, has been reported recently. To optimize the tunability and quality factor of the tunable magnetic inductor of composite wire structure, the effects of the thickness of the magnetic layer and an applied longitudinal magnetic field in electrodeposition of the magnetic layer on the inductance and quality factor of tunable magnetic inductor have been investigated in this study. Specimens with a range of thicknesses of the magnetic coating layer were produced by electrodeposition. Also, specimens from electrodeposition in an applied longitudinal magnetic field varying from 0-600 Oe were produced. The characterization results indicate that there is a critical thickness for the coating layer, below which the tunability under a weak bias magnetic field (H ex) is high (up to 50.6% at 100 kHz and 5.3% at 100 MHz, when H ex is 1.7 Oe) and is proportional to the magnetic coating layer thickness tm, and above which the tunability under a weak bias field is low (up to 6.6% at 100 kHz and 2.5% at 100 MHz, when H ex is 1.7 Oe) and is inversely proportional to tm. The variation of the quality factor follows the change of Fe% in the Ni-Fe layer, and the longitudinal field imposed during the electrodeposition amplifies such change by improving the uniformity of the plated layer. An averaged 23% increase of the quality factor was observed for specimens fabricated with imposed field at 143 Oe, and the inductance tunablity was significantly higher than previously reported results.
Keywords
electrodeposition; inductors; magnetic thin films; applied longitudinal magnetic field; composite wire structure; continuous inductance tuning; electrodeposition; frequency 100 MHz; magnetic coating layer; magnetic films; magnetic layer thickness; magnetoimpedance effect; quality factor; tunable circuits; tunable devices; tunable magnetic inductors; weak bias magnetic field; Coatings; Energy consumption; Inductance; Magnetic fields; Q factor; Soft magnetic materials; Thin film inductors; Tunable circuits and devices; Tuning; Wire; Inductors; magnetic films; magnetoimpedance; tunable circuits and devices;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2009.2031981
Filename
5393232
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