DocumentCode :
882875
Title :
Single-pole/TMR heads for 140-gb/in2 perpendicular recording
Author :
Nakamoto, K. ; Okada, T. ; Watanabe, K. ; Hoshiya, H. ; Yoshida, N. ; Kawato, Y. ; Hatatani, M. ; Meguro, K. ; Okada, Y. ; Kimura, H. ; Mochizuki, M. ; Kusukawa, K. ; Ishikawa, C. ; Fuyama, M.
Author_Institution :
Storage Technol. Res. Center, Hitachi Ltd., Kanagawa, Japan
Volume :
40
Issue :
1
fYear :
2004
Firstpage :
290
Lastpage :
294
Abstract :
Single-pole writers and tunneling magnetoresistive (TMR) readers for 140-Gb/in2 perpendicular recording were fabricated and their recording performance was tested. Data erasure, which is observed as write instability in a repeated read-write operation, can be suppressed by combining a laminated pole and low throat height. Fe-Co/Ni-Cr laminated film was used to reduce the remanent magnetization of the main pole after patterning. Narrow track writers with a 120-nm-wide trapezoidal pole showed a good write ability of 30 dB or more in overwrite for media with high coercivity of up to 7 kOe. Also, negligibly small skew writing was confirmed. TMR heads with a sensor width of 85 nm and a head resistance of 250 Ω showed approximately 30 dB of head signal-to-noise ratio (SNR). A potentially higher SNR with a higher operating voltage was suggested from a measured output versus sensing current curve. Calculations showed that the side reading was suppressed in a side-shielded design. A 10% amplitude width of the microtrack profile of a 100-nm-wide reader was reduced from 198 to 162 nm by applying the side shields.
Keywords :
chromium alloys; cobalt alloys; iron alloys; magnetic heads; nickel alloys; perpendicular magnetic recording; tunnelling magnetoresistance; Fe-Co-Ni-Cr; amplitude width; head resistance; laminated film; laminated pole; low throat height; microtrack profile; narrow track writers; operating voltage; perpendicular recording; pole erasure; remanent magnetization; repeated read-write operation; sensing current curve; side shield; side-shielded design; signal-to-noise ratio; single-pole TMR heads; single-pole writer; single-pole writers; skew writing; tunneling magnetoresistive readers; Coercive force; Magnetic heads; Magnetic sensors; Magnetization; Perpendicular magnetic recording; Signal to noise ratio; Testing; Tunneling magnetoresistance; Voltage; Writing;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2003.821174
Filename :
1264167
Link To Document :
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