DocumentCode :
1074353
Title :
Dynamic head characterization in the presence of reader nonlinear distortion
Author :
Chang, Thomas Y. ; Seagle, Dave ; Manickam, Malarvizhi
Author_Institution :
Seagate Technol., Bloomington, MN, USA
Volume :
40
Issue :
4
fYear :
2004
fDate :
7/1/2004 12:00:00 AM
Firstpage :
1963
Lastpage :
1968
Abstract :
Nonlinear response in magnetostrictive sensors significantly affects the spin-stand parametric measurements used to characterize writer and reader performance of recording heads. A simple production level test defined as the nonlinear distortion (NLD) ratio was used to quantify the degree of reader nonlinearity. A positive NLD value represents the presence of reader distortion while a value of zero represents no distortion. On a large population of heads tested, the median NLD value was 0.25, which is equivalent to an amplitude loss of 10% for an isolated pulse due to reader saturation. A detailed analysis of the measured data on nonlinear transition shift, partial erasure, and PW50 of these production heads show that greater than 50% of the measured variance is due to readback nonlinear distortion rather than true performance variation of the device.
Keywords :
giant magnetoresistance; harmonic analysis; magnetic heads; magnetic sensors; magnetostrictive devices; GMR heads; dynamic electrical test; harmonic analysis; head transfer curve characterization; isolated pulse; magnetostrictive sensors; nonlinear distortion ratio; nonlinear transition shift; partial erasure; readback nonlinear distortion; reader distortion; reader nonlinear distortion; reader nonlinearity; reader performance; reader saturation; recording head characterization; spin-stand parametric measurement; writer performance; Analysis of variance; Distortion measurement; Magnetic heads; Magnetic sensors; Magnetostriction; Nonlinear distortion; Production; Saturation magnetization; Sensor phenomena and characterization; Testing; Dynamic electrical test; GMR heads; NLD; NLTS; harmonic analysis; head transfer curve characterization; nonlinear transition shift; partial erasure; readback distortion; reader nonlinear distortion;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2003.821198
Filename :
1325369
Link To Document :
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