DocumentCode :
3602427
Title :
123 Gbit/in2 Recording Areal Density on Barium Ferrite Tape
Author :
Lantz, Mark A. ; Furrer, Simeon ; Engelen, Johan B. C. ; Pantazi, Angeliki ; Rothuizen, Hugo E. ; Cideciyan, Roy D. ; Cherubini, Giovanni ; Haeberle, Walter ; Jelitto, Jens ; Eleftheriou, Evangelos ; Oyanagi, Masahito ; Morooka, Atsushi ; Mori, Masahiko ;
Author_Institution :
IBM Res. - Zurich, Rüschlikon, Switzerland
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
The recording performance of a prototype magnetic tape based on perpendicularly oriented barium ferrite particles is investigated using an enhanced field tape write head and a 90 nm wide giant-magnetoresistive reader. A linear density of 680 kbits/in with a postdetection byte-error rate (BER) <;3.2e-2 is demonstrated based on recorded data processed by a software read channel with noise-predictive maximum likelihood detection. With this detector error rate, a user BER of <;1e-20 can be achieved by means of product error correction coding and iterative decoding. Several advances in the area of track-following servo control are also presented. Specifically, we describe a new timing-based servo pattern, which in combination with an optimized servo channel enables the generation of position estimates with nanoscale resolution and a high update rate. Track-following experiments are performed using an experimental low-noise tape transport, a prototype high-bandwidth actuator, and a set of speed-optimized H-infinity-based track-following controllers. Combining these technologies, we demonstrate a position-error signal (PES) with a standard deviation of 5.9 nm or less over a tape speed range of 1.23-4.08 m/s. This magnitude of PES in combination with a 90 nm wide reader allows operation with 140 nm wide tracks. Combined with a linear density of 680 kbits/in, this leads to an equivalent areal density of 123 Gbits/in2.
Keywords :
barium compounds; error correction codes; ferrite devices; iterative decoding; magnetic recording; magnetic tape storage; barium ferrite tape; byte-error rate; enhanced field tape write head; giant-magnetoresistive reader; iterative decoding; noise-predictive maximum likelihood detection; perpendicularly oriented barium ferrite particles; position-error signal; product error correction coding; prototype magnetic tape; recording areal density; software read channel; Actuators; Detectors; Magnetic heads; Media; Optical variables measurement; Servomotors; Signal to noise ratio; Magnetic recording; magnetic recording; magnetic tape recording; signal detection; tracking;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2435893
Filename :
7111332
Link To Document :
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