• DocumentCode
    3559992
  • Title

    Magnetic Recording Performance of “Bit Printing Method” on PMR Media and Its Extendibility to the Higher Areal Density

  • Author

    Morooka, Atsushi ; Nagao, Makoto ; Yasunaga, Tadashi ; Nishimaki, Katsuhiro

  • Author_Institution
    Recording Media Res. Labs., Fujifilm Corp., Odawara
  • Volume
    44
  • Issue
    11
  • fYear
    2008
  • Firstpage
    3754
  • Lastpage
    3756
  • Abstract
    Servo pattern printing which supports bulk magnetic transfer of the servo pattern is expected to be the ultimate solution for perpendicular magnetic recording (PMR) media servo track writing method. There are two printing methods, ldquoEdge Printing (EP)rdquo and ldquoBit printing (BP)rdquo for PMR media. The reproduced waveform of EP method is not compatible with head writing. On the other hand, BP method is able to give the waveform like head write. We examined BP characteristic of the short bit length recording and its extendibility. The reproduced waveform of BP at 70 nm bit was equivalent to the head writing in its shape and amplitude. The spacing loss factor of BP was about 8 dB, and the signal-to-noise ratio of reproduced waveform had its peak at the point where Ha was close to Hc of recording media. It was easy to apply larger Ha by BP method than EP method, and magnetic printing signal had no write stitching problem that was seen in head writing especially at outer diameter area. There was no significant concern to increase Ha on BP, and BP was suitable for the future short bit length pattern.
  • Keywords
    magnetic heads; magnetic noise; perpendicular magnetic recording; bit printing; edge printing; magnetic printing signal; perpendicular magnetic recording media; servo track writing method; short bit length pattern; signal-to-noise ratio; spacing loss factor; write stitching problem; Hard disk drive (HDD); magnetic printing; patterned master; perpendicular magnetic recording media; servo track writing;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2008.2002421
  • Filename
    4717324