DocumentCode :
83585
Title :
Influence of Winding Structure and the Effect of MMF Harmonics to the Spindle Motor Performance for Ultrahigh TPI HDD
Author :
Phyu, H.N. ; Aung, N.L.H. ; Bi, Chuang
Author_Institution :
Data Storage Inst., A*STAR, Singapore, Singapore
Volume :
49
Issue :
6
fYear :
2013
fDate :
Jun-13
Firstpage :
2776
Lastpage :
2781
Abstract :
The technologies for maintaining high recording density to suppress mechanical vibration and media flutter for ultrahigh TPI hard disk drive (HDD) require advance spindle motor design and technology against the traditional norms. To realize multimagnetic poles with limited stator slots, spindle motors generally use concentrated windings which offer small end winding and simple structure suitable for mass production. There is a variety of ways to construct a motor with different winding structures based on different pole/slot combinations. Winding structures directly affect the producing of motor back-emf and torque which determine motor capacity, reliability and efficiency. In this work, detailed analysis is carried out to identify the optimal winding structures of the high speed spindle motor and analyze their effect on the motor performances by using magneto-motive force harmonics analysis and electromagnetic magnetic field analysis. Results are useful in preliminary and final optimal designs of the high speed spindle motors.
Keywords :
disc drives; electric motors; electric potential; hard discs; reliability; stators; torque; vibration control; MMF harmonics; electromagnetic magnetic field analysis; high speed spindle motor; magneto-motive force harmonics analysis; mechanical vibration; media flutter; motor back-emf; multimagnetic poles; reliability; small end winding; spindle motor design; spindle motor performance; stator slots; torque; ultrahigh TPI HDD; ultrahigh TPI hard disk drive; winding structure; Concentrated winding structure; hard disk drive (HDD) spindle motor; magneto-motive force (MMF) harmonics analysis; motor winding layout;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2247389
Filename :
6522294
Link To Document :
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