• DocumentCode
    1015624
  • Title

    Low Flying-Height Slider With High Thermal Actuation Efficiency and Small Flying-Height Modulation Caused by Disk Waviness

  • Author

    Liu, B. ; Yu, S.K. ; Zhou, W.D. ; Wong, C.H. ; Hua, W.

  • Author_Institution
    Data Storage Inst., Singapore
  • Volume
    44
  • Issue
    1
  • fYear
    2008
  • Firstpage
    145
  • Lastpage
    150
  • Abstract
    To sustain an ultra-low and stable flying height (FH) is crucial for achieving high areal densities in magnetic recording. Recently, a new method called thermal flying height control (TFC) has been introduced to the latest generations of disk drives for precise control of slider-disk spacing. It is noted that the TFC technique is able to eliminate almost all static FH loss, but is unable to circumvent dynamic FH loss such as flying height modulation (FHM) due to disk waviness. It is therefore advantageous to have both high thermal actuation efficiency and low FHM due to disk waviness characteristics in a TFC slider design. This paper investigates the effects of air bearings on the thermal actuation efficiency and the capability in following disk waviness of the TFC sliders. Air bearing surface (ABS) design strategies for TFC slider are proposed and investigated with simulations. The results show that both excellent thermal actuation efficiency and strong capability in following disk waviness can be achieved through proper arrangements of air bearing pressure distribution on the ABS of TFC sliders.
  • Keywords
    disc drives; machine bearings; magnetic heads; magnetic recording; modulation; TFC slider design; air bearing pressure distribution; air bearing surface design; disk drives; disk waviness; flying-height modulation; flying-height slider; head-disk interface; magnetic recording; slider-disk spacing; thermal actuation efficiency; thermal flying height control; Design optimization; Disk drives; Disk recording; Helium; Magnetic heads; Magnetic modulators; Magnetic recording; Memory; Resistance heating; Stability; Flying height; flying height modulation; head-disk interface; thermal flying height control; waviness;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2007.911036
  • Filename
    4407603