Title :
Advanced heads for perpendicular recording at high areal densities and high data rates
Author :
Liu, Francis H. ; Stoev, K. ; Leal, L. ; Wang, J. ; Chen, Y. ; Shi, S. ; Tong, H.C. ; Lederman, M. ; Re, M.
Author_Institution :
Read-Rite Corp., Fremont, CA, USA
Abstract :
Perpendicular magnetic recording at high areal densities and high data rates has been studied. Using ring heads and perpendicular media with soft underlayer, we have successfully demonstrated the areal density of 60 Gb/in2 at the corresponding ultrahigh-linear density of 750 kbpi, a bit-aspect ratio (BAR) of 9.4, and a data rate of 300 Mb/s. Comparing the BAR of 5.7 in our recent 63.2 Gb/in2 demonstration on longitudinal media, a larger BAR has been demonstrated with present perpendicular recording system. We have also demonstrated the data rate capability of 1 Gb/s by using both ring heads and modified-single-pole heads on perpendicular media with soft underlayer. Finally, a comparison of high-data-rate recording between ring heads and single pole heads has shown that neither magnetic viscosity nor gyromagnetic switching in perpendicular media is the limiting mechanism for magnetic recording at data rates as high as 1 Gb/s.
Keywords :
finite element analysis; magnetic heads; perpendicular magnetic recording; 1 Gbit/s; 300 Mbit/s; BAR; areal densities; bit-aspect ratio; data rates; limiting mechanism; modified-single-pole heads; perpendicular media; perpendicular recording; ring heads; soft underlayer; ultrahigh-linear density; Disk drives; Gyromagnetism; Magnetic heads; Magnetic recording; Magnetic switching; Micromagnetics; Perpendicular magnetic recording; Torque; Viscosity;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2002.988928