DocumentCode :
1530766
Title :
The dynamic coupling of the slider to the disk surface and its relevance to take-off height
Author :
Gonzalez, Daniel ; Nayak, Vasant ; Marchon, Bruno ; Payne, Robert ; Crump, Daniel ; Dennig, Paul
Author_Institution :
ETSI, Madrid, Spain
Volume :
37
Issue :
4
fYear :
2001
fDate :
7/1/2001 12:00:00 AM
Firstpage :
1839
Lastpage :
1841
Abstract :
Recent studies have attempted to correlate take-off height (TOH or Glide Avalanche) of rigid disks to their topography. Roughness average, mean peak height, and waviness have been emphasized, but no model has been proposed that takes into account the dynamic response of the glide slider to the spatial frequency of the disk topography. In this paper, we calculate the frequency response of glide sliders to disk inputs of various wavelengths, using an air-bearing solver. This calculated transfer function is then used to filter the one-dimensional disk topography, obtained with a conventional stylus profiler, using its complex Fourier transform. From the filtered profile, a mean peak height Rpm can be obtained which correlates well with actual TOH values. The slope is close to unity as expected from a first-principle model. Schemes to break down the wavelength range of interest into short (roughness) and long (waviness) parts will be demonstrated, as well as the practical use of optical profilers
Keywords :
Fourier transforms; hard discs; magnetic heads; surface topography; transfer functions; Fourier transform; air bearing surface; frequency response; glide avalanche; head-disk interface; magnetic recording; mean peak height; one-dimensional disk topography; optical profilometry; rigid disk; slider dynamics; stylus profilometry; surface roughness; surface waviness; take-off height; transfer function; Aerodynamics; Drives; Frequency; Magnetic recording; Optical recording; Optical surface waves; Rough surfaces; Surface roughness; Surface topography; Transfer functions;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.950984
Filename :
950984
Link To Document :
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