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Barium-Ferrite Particulate Media for High-Recording-Density Tape Storage Systems

机译:高记录密度磁带存储系统的钡铁氧体颗粒介质

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摘要

The feasibility of data storage on magnetic tape at an areal recording density of 6.7 ${rm Gbit/in}^{2}$ employing barium-ferrite (BaFe) particulate media was demonstrated in 2006 in a stringent demo. Recently, progress in BaFe media design has been made in three areas as compared with the medium used for the 6.7 ${rm Gbit/in}^{2}$ demo: i) by using ultrafine BaFe magnetic particles, achieving a reduction in particle volume from 2100 to 1800 ${rm nm}^{3}$; ii) by increasing the perpendicular squareness ratio from 0.52 to 0.7; iii) by achieving a smoother tape surface, effectively reducing surface roughness from 1.7 to 0.8 nm. This paper describes the characteristics of the new BaFe particles and medium, and discusses their potential for achieving areal recording densities as high as 20 ${rm Gbit/in}^{2}$.
机译:2006年在严格的演示中证明了采用钡铁氧体(BaFe)颗粒介质以6.7 $ {rm Gbit / in} ^ {2} $的面记录密度将数据存储在磁带上的可行性。最近,与用于6.7 $ {rm Gbit / in} ^ {2} $演示的介质相比,BaFe介质设计在三个领域取得了进展:i)通过使用超细BaFe磁性颗粒,实现了颗粒的减少体积从2100到1800 $ {rm nm} ^ {3} $; ii)通过将垂直矩形比从0.52增加到0.7; iii)通过使胶带表面更光滑,有效地将表面粗糙度从1.7纳米降低到0.8纳米。本文介绍了新型BaFe颗粒和介质的特性,并讨论了其实现高达20 $ {rm Gbit / in} ^ {2} $的面记录密度的潜力。

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