DocumentCode :
780873
Title :
Advanced probe head for perpendicular recording
Author :
Liu, Chun ; Stoev, Kroum ; Yingjian Chen ; Dang, Xiaozhong ; Wang, Lien-Chang ; Jiang, Hai ; Yinshi Liu ; Luo, Peng ; Lien-Chang Wang ; Esch, Ron ; Chen, Yingjian ; Gu, Shan Fan ; Chun Liu ; Kung, Kenneth T. ; Lederman, Marcos ; Re, Matteo
Author_Institution :
Read-Rite Corp., Fremont, CA, USA
Volume :
38
Issue :
4
fYear :
2002
fDate :
7/1/2002 12:00:00 AM
Firstpage :
1647
Lastpage :
1651
Abstract :
Basic design and recording performance of the advanced probe heads are described. Excellent writability of the advanced probe heads is demonstrated by a series of overwrite (OW) and nonlinear transition shift (NLTS) saturation measurements. Write currents as low as 5 mAo-p are required for recording. Excellent OW can be obtained with both high and low OW ratios. Media with vibrating sample magnetometry coercivities as high as 7000 Oe can be recorded with OW of 30 dB. Better than -14 dB of NLTS was measured at a linear density of 600 kfci. Minimal side-writing has been observed using the advanced probe heads with square pole shape. External field sensitivity of the advanced probe heads has also been shown to be excellent as larger than 58 Oe of external field is required to erase a low density signal on a 3380-Oe disk. Modeling results also show that the basic architecture of advanced probe head is extendible to 0.1 μm square pole
Keywords :
coercive force; digital magnetic recording; finite element analysis; hard discs; magnetic heads; perpendicular magnetic recording; advanced probe heads; areal density; field sensitivity; finite-element model; linear density; low density signal; nonlinear transition shift saturation measurements; overwrite saturation measurements; perpendicular recording; probe head; side-writing; square pole shape; vibrating sample magnetometry coercivities; writability; write currents; Coils; Conducting materials; Magnetic anisotropy; Magnetic heads; Magnetic recording; Perpendicular magnetic anisotropy; Perpendicular magnetic recording; Probes; Saturation magnetization; Writing;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2002.1017750
Filename :
1017750
Link To Document :
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