DocumentCode :
801456
Title :
Perpendicular drive integration
Author :
Guarisco, Davide ; Li, Zhaohui ; Higgins, Bill E. ; Wu, Yan ; Lefebvre, Andrew
Author_Institution :
Maxtor Corp., Milpitas, CA, USA
Volume :
42
Issue :
2
fYear :
2006
Firstpage :
171
Lastpage :
175
Abstract :
This paper reports on progress in perpendicular drive integration. In the first part, the performance of a series of perpendicular media with different coercivity (5-6 kOe), nucleation field, and soft-underlayer thickness (120/80 nm) is compared using two different head designs. Good overwrite and bit error rate performance is achieved for all head/media combinations. Higher coercivity leads to lower linear density but higher track density, resulting in approximately equal areal density capability. The thinner soft underlayer causes wider erase bands and therefore a loss of areal density. Wide-area track erasure measurements were performed on all media. The media with lower coercivity do not show any measurable amplitude loss, due to their larger absolute value of the nucleation field and the smaller write current needed to write on them. Two types of single-head, 7200 RPM desktop perpendicular drives (40 and 80 GB capacity) were built using 95 mm perpendicular media. They both achieve good bit error rate and off-track capability in all zones. The thermal decay for the 40 GB drive was measured and compared to a similar longitudinal drive. It was found that the thermal decay rate is much smaller in the case of the perpendicular drive in the range -6°C to +80°C.
Keywords :
coercive force; disc drives; error statistics; magnetic heads; nucleation; perpendicular magnetic recording; -6 to 80 C; 40 Gbit; 80 Gbit; 95 mm; areal density; bit error rate; coercivity; desktop perpendicular drives; erase bands; linear density; magnetic heads; nucleation field; perpendicular drive integration; perpendicular media; soft-underlayer thickness; thermal decay; track density; track erasure measurements; Bit error rate; Coercive force; Density measurement; Hydrogen; Land mobile radio; Magnetic field measurement; Magnetic heads; Magnetic separation; Performance evaluation; Perpendicular magnetic recording; Disk drives; perpendicular magnetic recording;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2005.861767
Filename :
1580670
Link To Document :
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