Claims
- 1. A storage medium having a nominal surface and being movable relative to an aerodynamic slider to cause the slider to fly relative to the nominal surface, the storage medium having:
a plurality of data sectors separated by respective servo sectors and a plurality of substantially parallel tracks extending through the servo sectors and data sectors; and a pattern of surface irregularities in the nominal surface so disposed and arranged to minimize fly height perturbations of the slider, at least some of the surface irregularities forming a pattern of servo data in the servo sectors, and at least a portion of a region between each of the tracks in each of the data sectors having an elevation substantially the same as the nominal surface.
- 2. The storage medium of claim 1, wherein the pattern of surface irregularities comprises:
first surface irregularities in each servo sector representing servo data, second surface irregularities in each data sector arranged to separate adjacent tracks, the first and second surface irregularities having elevations different from the nominal surface, and third surface irregularities in the second surface irregularities, the third surface irregularities having an elevation substantially the same as the nominal surface.
- 3. The storage medium of claim 2, wherein the third surface irregularities are pseudo-randomly spaced along each second surface irregularity to form segments of the second surface irregularities of pseudo-random length.
- 4. The storage medium of claim 2, wherein a surface of at least one of the second surface irregularities has an elevation that is different from a corresponding surface of another of the second surface irregularities.
- 5. The storage medium of claim 1, wherein the storage medium is arranged to move at a predetermined velocity relative to the slider to cause the slider to fly along a track over the data sectors and servo sectors, and wherein the pattern of surface irregularities comprises:
surface irregularities in each servo sector representing servo data, the surface irregularities extend a length along the tracks to define a null frequency based on a pitch frequency of modulation of the slider due to the surface irregularities when the medium moves at the predetermined velocity.
- 6. The storage medium of claim 5, wherein the length, Ls, of the servo sector along each track is based on the relationship
- 7. A storage medium having a nominal surface and being movable at a predetermined velocity relative to an aerodynamic slider to cause the slider to fly relative to the nominal surface, the storage medium having:
a plurality of data sectors separated by respective servo sectors and a plurality of substantially parallel tracks extending through the servo sectors and data sectors; and a pattern of surface irregularities in the nominal surface to minimize fly height perturbations of the slider, the pattern being selected from the group consisting of (i) first surface irregularities in the servo sectors having an elevation different from the nominal surface representing servo data and extending a length along the tracks on the storage medium to define a null frequency that substantially matches a pitch frequency of modulation of the slider due to the surface irregularities when the medium moves at the predetermined velocity, and (ii) first surface irregularities in the servo sectors representing servo data, second surface irregularities in the data sectors between adjacent tracks, and third surface irregularities in the second surface irregularities such that the first and second surface irregularities have elevations different from the nominal surface and the third surface irregularities have elevations different from the second surface irregularities.
- 8. A storage medium having a plurality of data sectors separated by respective servo sectors and a plurality of substantially parallel tracks extending through the servo sectors and data sectors, the medium including:
a pattern of first surface irregularities representing servo data in the servo sectors; and patterning means on the storage medium to minimize fly height perturbations of a slider adjacent the medium.
- 9. The storage medium of claim 8, wherein the patterning means comprises:
second surface irregularities in each data sector arranged to separate adjacent tracks, the first and second surface irregularities having elevations different from a nominal surface of the medium, and third surface irregularities in the second surface irregularities, the third surface irregularities having elevations different from the second surface irregularities.
- 10. The storage medium of claim 9, wherein the third surface irregularities are pseudo-randomly spaced along each second surface irregularity to form segments of pseudo-random length.
- 11. The storage medium of claim 10, wherein the third surface irregularities are pseudo-randomly positioned across the data sector.
- 12. The storage medium of claim 9, wherein the patterning means comprises:
a surface of each second surface irregularity having an elevation that is different from the elevation of the nominal surface, the surface of at least one of the second surface irregularities having an elevation that is different from a corresponding surface of another of the second surface irregularities.
- 13. The storage medium of claim 9, wherein the servo sectors have lengths along the tracks so disposed and arranged to minimize modulation of an aerodynamic slider arranged to fly adjacent the medium.
- 14. The storage medium of claim 13, wherein the storage medium is arranged to move at a predetermined velocity relative to the slider to cause the slider to fly along a track over the data sectors and servo sectors, the lengths of the servo sectors along the tracks being so disposed and arranged to define a null frequency when the medium moves at the predetermined velocity based on a pitch frequency of modulation of the slider due to the first surface irregularities of the servo sectors.
- 15. The storage medium of claim 14, wherein the length, Ls, of the servo sector along each track is based on the relationship
- 16. The storage medium of claim 8, wherein the storage medium is arranged to move at a predetermined velocity relative to the slider to cause the slider to fly along a track over the data sectors and servo sectors, and wherein the patterning means comprises:
an arrangement of the tracks such that the servo sectors extend a length along the tracks to define a null frequency based on a pitch frequency of modulation of the slider due to the surface irregularities of the servo sectors when the medium moves at the predetermined velocity.
- 17. The storage medium of claim 16, wherein the length, Ls, of the servo sector along each track is based on the relationship
- 18. The storage medium of claim 16, wherein the medium is a rotating disc containing concentric tracks, the length, Ls, of the servo sector along each track is based on the relationship
- 19. In a process of fabricating a patterned storage medium comprising steps of:
a) forming first surface irregularities at an elevation different from a nominal surface of the storage medium to define servo patterns in servo sectors separating data sectors on the medium; b) defining a plurality of tracks through data sectors and servo sectors; and c) patterning surface irregularities on the medium so that a slider adjacent the medium exhibits minimum fly height perturbations when the slider is moved relative to the medium at a predetermined velocity along the tracks.
- 20. The process of claim 19, wherein step (c) includes steps of:
c1) defining a plurality of second surface irregularities substantially parallel to each track through the data sectors, c2) defining a plurality of third surface irregularities relative to the second irregularities, and c3) fabricating the medium so that the third surface irregularities are so disposed and arranged that a slider adjacent the medium exhibits minimum fly height perturbations when the slider is moved at a selected velocity along the tracks.
- 21. The process of claim 20, wherein step (c2) includes a step of:
pseudo-randomly spacing the third surface irregularities along each second surface irregularity to form segments of the second surface irregularities having pseudo-random length.
- 22. The process of claim 21, wherein step (c2) includes a step of:
pseudo-randomly positioning the third surface irregularities across the data sector.
- 23. The process of claim 20, wherein step (c2) includes steps of:
defining a surface of at least one of the second surface irregularities at an elevation that is different from the elevation of the nominal surface, and defining a surface of at least a second of the second surface irregularities at an elevation that is different from the elevations of both the nominal surface and the at least one of the second surface irregularities.
- 24. The process of claim 20, wherein step (c) further includes a step of:
c4) defining a length of each servo sector along each track to minimize modulation of an aerodynamic slider arranged to fly adjacent the medium.
- 25. The process of claim 24, wherein the storage medium is constructed to move at the predetermined velocity relative to the slider to cause the slider to fly along a track over the data sectors and servo sectors, and step (c4) includes:
c4i) identifying a pitch frequency of modulation of the slider due to the first surface irregularities of the servo sector, and c4ii) defining a length of each servo sector along each track to define a null frequency based on the pitch frequency.
- 26. The process of claim 25, wherein step (c4ii) defines the length, Ls, of the servo sectors along each track based on the relationship
- 27. The process of claim 19, wherein step (c) includes a step of:
c1) defining a length of each servo sector along each track to minimize modulation of an aerodynamic slider arranged to fly adjacent the medium.
- 28. The process of claim 27, wherein the storage medium is constructed to move at the predetermined velocity relative to the slider to cause the slider to fly along a track over the data sectors and servo sectors, and step (c1) is performed by:
c1i) identifying a pitch frequency of modulation of the slider due to the surface irregularities of the servo sector, and c1ii) defining a length of each servo sector along each track to define a null frequency based on the pitch frequency.
- 29. The process of claim 28, wherein step (c1ii) defines the length, Ls, of the servo sectors along each track based on the relationship
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims benefit of Provisional Application No. 60/232,034, filed Sep. 12, 2000 and of Provisional Application No. 60/243,241, filed Oct. 25, 2000.
Provisional Applications (2)
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Number |
Date |
Country |
|
60232034 |
Sep 2000 |
US |
|
60243241 |
Oct 2000 |
US |