DocumentCode
992615
Title
Optimum design considerations for dual conductor bubble devices
Author
Matsuyama, Kimihide ; Urai, Haruo ; Yoshimi, Koichi
Author_Institution
Nippon Electric Co., Ltd., Kawasaki, Kanagawa, Japan
Volume
19
Issue
2
fYear
1983
fDate
3/1/1983 12:00:00 AM
Firstpage
111
Lastpage
119
Abstract
A design for dual conductor, current-access bubble devices with 8-μm periods has been optimized with a numerical calculation method for bubble motion in a propagating magnetic field, generated around hole patterns in conductor layers. Magnetic bias field distributions are calculated for an oval hole chain in the conductor layers. Bubble motion equations are obtained with analytical field distribution functions approximating the calculated field distributions. Minimum drive current density Jmin for normal bubble propagation is determined by a solution to the equations. The hole shape has been optimized by the minimization of the drive power Pmin , the product of Jmin and conductor resistance, which is calculated from current distributions around the hole pattern. Optimum layer thickness have also been obtained for 8-μm period bubble devices. Both registration tolerance between the two conductor layers and bubble skew effects have been studied semiquantitatively on the basis of the equations of motion. The numerical calculation method developed here is found to be a highly effective means to optimize pattern design for smaller period devices.
Keywords
Magnetic bubble devices; Conductors; Current density; Design optimization; Distribution functions; Drives; Equations; Magnetic analysis; Magnetic fields; Motion analysis; Shape;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1983.1062242
Filename
1062242
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