DocumentCode :
1241604
Title :
VCM design to improve dynamic performance of an actuator in a disk drive
Author :
Lee, Haeng-Soo ; Kim, Young-Hoon ; Hwang, Tae-Yeon ; Kim, Cheol-Soon
Author_Institution :
HDD Program Team, Samsung Adv. Inst. of Technol., Yong-In, South Korea
Volume :
41
Issue :
2
fYear :
2005
Firstpage :
774
Lastpage :
778
Abstract :
Position error signal (PES) design margin of a current hard disk drive is getting smaller as the track density of high-capacity disk drives increases. In the present work, a new actuator design concept is introduced for suppressing one of the actuator vibration modes, the so-called butterfly mode, that normally limits the expansion of servo bandwidth. The new actuator has a single coil with four sections having respective particular directions. By adjusting the length and inclined angle of the sections of the voice coil motor (VCM) coil, the forces perpendicular to track-seeking direction can be balanced with each other. Consequently, the butterfly mode is not excited by the resultant force of the VCM. Contribution of the proposed actuator design for the PES management is verified by numerical simulations. Our results show that the servo bandwidth can be increased from 1207 to 1680 Hz so that the PES can be decreased by 27% due to the use of the improved actuator.
Keywords :
disc drives; electric actuators; hard discs; magnetic recording; vibrations; 1680 Hz; actuator design concept; actuator vibration modes; butterfly mode; hard disk drive; high-capacity disk drives; position error signal; servo bandwidth; track density; voice coil motor coil; Actuators; Bandwidth; Coils; Disk drives; Frequency; Hard disks; Resonance; Servomechanisms; Servomotors; Signal design; Actuator; disk drive; position error signal (PES); servo bandwidth;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.840312
Filename :
1396225
Link To Document :
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