• DocumentCode
    1331336
  • Title

    High Precision Erase Band Measurement With Four Written Tracks

  • Author

    Enhao Ed Lin ; Shaoping Li ; Bai, Dongbi ; Sining Mao ; Bo Zhang ; Stoev, K. ; Tao Pan

  • Author_Institution
    Western Digital, Inc., Fremont, CA, USA
  • Volume
    47
  • Issue
    10
  • fYear
    2011
  • Firstpage
    2984
  • Lastpage
    2987
  • Abstract
    This article introduces a four track erase band width (EBW) measurement derived from triple track test. The method writes the first center track to adaptively control the track pitch (TP) and the final center track to minimize the impact from system´s positioning error during EBW measurement. It uses one-way dual-frequency scan on the neighboring magnetic write width (MWW) edges to further minimize the impact from system´s positioning error. Experiment shows that measured EBW decreases with TP decreasing due to the side reading, cross-track field interaction, and edge noise suppression in perpendicular recording. Setting TP at 100% MWW is proposed for measuring “intrinsic” erase band (EB). The new method demonstrates significant improvement on test accuracy over the conventional methods, and can control EBW measurement variation range within 1 nm. With the new method, the relations of EBW with write revolutions, write current, write frequency, and adjacent track interference (ATI) were experimented and analyzed. The experiment result further validates the new method.
  • Keywords
    magnetic recording; adjacent track interference; cross-track field interaction; edge noise suppression; erase bandwidth measurement; high precision erase band measurement; magnetic write width edges; one-way dual-frequency scan; track pitch; write current; write frequency; write revolutions; Current measurement; Magnetic heads; Media; Noise; Perpendicular magnetic recording; Servomotors; Adjacent track interference; erase band width; magnetic write width; perpendicular recording; track pitch;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2011.2158206
  • Filename
    6028052