Claims
- 1. A disk drive, comprising:
a plurality of disks, a first of said disks including a first disk surface and a second of said disks including a second disk surface; a disk base; an actuator providing a read-write head assembly communicatively coupled to said first disk surface and a second read-write head assembly communicatively coupled to said second disk surface, said actuator pivotably coupled to said disk base; a spindle motor rigidly coupled to said disk base, said spindle motor provided to rotate said disks about an axis of rotation at an operating rotational velocity; a dampening mechanism including a plate fixedly attached to said disk base and further including a first dampening surface separated from said first disk surface by essentially a first gap for at least 175 degrees with respect to said axis of rotation of said disks and for at least 16 millimeters of radial width with respect to said axis of rotation of said disks; said dampening mechanism further including,
a second dampening surface separated from said second disk surface by essentially a second gap for at least 175 degrees with respect to said axis of rotation of said disks and for at least 16 millimeters of radial width with respect to said axis of rotation of said disks, wherein each member of a gap collection comprising said first gap and said second gap is at most a fixed distance; said dampening mechanism reducing aerodynamic forces acting upon said first disk surface and said second disk surface to stabilize said disk surfaces as said first and said second disk surfaces rotate at said disk operating rotational velocity; and said dampening mechanism reducing aerodynamic forces acting upon said actuator as said first and said second disk surfaces rotate at said disk operating rotational velocity; and a disk cover attached to said disk base forming an enclosure containing said spindle motor, said plurality of disks, said actuator, and said dampening mechanism.
- 2. The disk drive of claim 1 wherein said operating rotational velocity is at least 5400 revolutions per minute.
- 3. The disk drive of claim 2 wherein said operating rotational velocity is greater than 5400 revolutions per minute.
- 4. The disk drive of claim 1 wherein rotation of said disks at said operating rotational velocity creates a boundary layer thickness from said first disk surface and wherein said fixed distance is about said boundary layer thickness.
- 5. The disk drive of claim 4 wherein said fixed distance is less than said boundary layer thickness.
- 6. The disk drive of claim 1 wherein said plate is composed of at least one member of a collection comprising a non-outgassing hard plastic and a metal alloy; wherein said metal alloy contains a majority of a member of the collection of aluminum, copper, and iron.
- 7. The disk drive of claim 6 wherein said plate is composed primarily of an aluminum alloy.
- 8. The disk drive of claim 7 wherein said plate has a coating disposed thereon for inhibiting outgassing if said aluminum alloy.
- 9. The disk drive of claim 6 wherein said plate is composed primarily of said non-outgassing hard plastic further comprising a non-outgassing polycarbonate.
- 10. The disk drive of claim 1 wherein said first disk includes said second disk surface.
- 11. The disk drive of claim 1,
wherein a member of said disk plurality includes a third disk surface; wherein said dampening mechanism further includes a third dampening surface separated from said third disk surface by essentially said third gap; and wherein said gap collection is further comprised of said third gap.
- 12. The disk drive of claim 11,
wherein a member of said disk plurality includes a fourth disk surface; wherein said dampening mechanism further includes a fourth dampening surface separated from said fourth disk surface by essentially said fourth gap; and wherein said gap collection is further comprised of said fourth gap.
- 13. The disk drive of claim 1 wherein said disk plurality is further comprised of a third of said disks.
- 14. The disk drive of claim 1,
wherein a cross section of said first dampening surface parallel to a rotational plane of said disks contains a truncated annulus including an inner circular boundary and an outer circular boundary; and wherein said inner circular boundary and said outer circular boundary are both centered near said axis of rotation of said disks.
- 15. The disk drive of claim 14,
wherein said cross section of said first dampening surface parallel to said rotational plane is said truncated annulus.
- 16. The disk drive of claim 14,
wherein an inner boundary of said cross section of said first dampening surface parallel to said rotational plane varies from said inner circular boundary.
- 17. The disk drive of claim 14,
wherein an outer boundary of said cross section of said first dampening surface parallel to said rotational plane varies from said outer circular boundary.
- 18. The disk drive of claim 1,
wherein said first dampening surface is connected.
- 19. The disk drive of claim 18,
wherein said first dampening surface is simply connected.
- 20. The disk drive of claim 18,
wherein said connected first dampening surface contains at least one perforation.
- 21. The disk drive of claim 20,
wherein a diameter of said perforation is between one millimeter and six millimeters.
- 22. The disk drive of claim 1 wherein said plate contains an inner boundary facing said spindle motor.
- 23. The disk drive of claim 22,
wherein said inner boundary contains a rounded edge; and wherein said rounded edge approximates at least one member of the collection comprising a circular rounding, an elliptical rounding, a beveled rounding, a chamfered rounding, and a knife edge rounding.
- 24. The disk drive of claim 1, wherein said fixed distance is at most 1 millimeter.
- 25. The disk drive of claim 24, wherein each gap collection member is at least 0.35 millimeters.
- 26. The disk drive of claim 25,
wherein said fixed distance is at most 0.6 millimeters; and wherein each of said gap collection members is at least 0.35 millimeters.
- 27. A disk drive, comprising:
at least one disk including a first disk surface; at least one actuator providing a read-write head assembly communicatively coupled to said first disk surface; means for rotating said at least one disk at an operating rotational velocity; and means for dampening said actuator with respect to said first disk surface, said dampening means including,
means for providing a first dampening surface separated from said first disk surface by essentially a first gap; means for reducing aerodynamic forces acting upon said first disk surface of said at least one disk for stabilizing said least one disk as said at least one disk rotates at said operating rotational velocity; and means for reducing aerodynamic forces acting upon said actuator as said at least one disk rotates at said operating rotational velocity; wherein each member of a gap collection is at most a fixed distance, said gap collection comprising said first gap.
- 28. The disk drive of claim 27 wherein said operating rotational velocity is at least 5400 revolutions per minute.
- 29. The disk drive of claim 27,
wherein rotation of said disks at said operating rotational velocity creates a boundary layer thickness from said first disk surface; and wherein said fixed distance is about said boundary layer thickness.
- 30. The disk drive of claim 29,
wherein said fixed distance is less than said boundary layer thickness.
- 31. The disk drive of claim 27, further comprising:
said actuator providing a second read-write head assembly communicatively coupled to a second disk surface.
- 32. The disk drive of claim 31,
where said dampening means further includes a second dampening surface separated from said second disk surface by essentially a second gap; and wherein said gap collection is further comprised of said second gap.
- 33. The disk drive of claim 32 wherein said first disk includes said second disk surface.
- 34. The disk drive of claim 27 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 175 degrees with respect to said axis of rotation of said disks.
- 35. The disk drive of claim 27 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 16 millimeters in width from an axis of rotation of said disks.
- 36. The disk drive of claim 27,
wherein said fixed distance is at most one millimeter; and each of said gap collection members is at least 0.35 millimeters.
- 37. A method of reducing tracking positioning errors for a disk drive, comprising the steps of:
rotating at least one disk including at least a first disk surface at an operating rotational velocity relative to at least one actuator providing a read-write head assembly communicatively coupled near said first disk surface; and dampening said actuator with respect to said first disk surface, said dampening step including the steps of,
providing a first dampening surface separated from said first disk surface by essentially a first gap; reducing aerodynamic forces acting upon said actuator based upon air flow related to said disk operating rotational velocity and related to said gap collection members; and reducing aerodynamic forces acting upon said first disk surface for stabilizing said first disk surface based upon air flow related to said disk operating rotational velocity and related to said gap collection members; wherein each member of a gap collection is at most a fixed distance, said gap collection comprising said first gap.
- 38. The method of claim 37 wherein said operating rotational velocity is at least 5400 revolutions per minute.
- 39. The method of claim 37, wherein said fixed distance is at most one millimeter.
- 40. The method of claim 37, wherein each of said gap collection members is at least 0.35 millimeters.
- 41. The method of claim 37 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 175 degrees with respect to an axis of rotation of said disks.
- 42. The method of claim 37 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 16 millimeters in width from an axis of rotation of said disks.
- 43. A disk drive, comprising:
at least one disk including a first disk surface; at least one actuator providing a read-write head assembly communicatively coupled near said first disk surface; and a dampening mechanism providing a first dampening surface separated from said first disk surface by essentially a first gap; wherein said least one disk rotates at an operating rotational velocity relative to said dampening mechanism and to said actuator; wherein each member of a gap collection is at most a fixed distance; wherein said disk drive is further comprised of:
said dampening mechanism reducing aerodynamic forces acting upon said actuator based upon air flow related to said disk operating rotational velocity and related to said gap collection members; and said dampening mechanism stabilizing said first disk based upon air flow related to said disk operating rotational velocity and related to said gap collection members; and wherein said gap collection is comprised of said first gap.
- 44. The disk drive of claim 43 wherein said operating rotational velocity is at least 5400 revolutions per minute.
- 45. The disk drive of claim 43 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 180 degrees with respect to said axis of rotation of said disks.
- 46. The disk drive of claim 43 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 200 degrees with respect to said axis of rotation of said disks.
- 47. The disk drive of claim 43 wherein said first dampening surface is separated from said first disk surface by essentially said first gap for at least 16 millimeters in width from an axis of rotation of said disks.
- 48. The disk drive of claim 43, further comprising:
a disk base; a spindle motor rigidly coupled to said disk base, said spindle motor provided to rotate said disks about an axis of rotation at said operating rotational velocity; and a disk cover attached to said disk base forming an enclosure containing said spindle motor, said at least one disk, said actuator, and said dampening mechanism.
- 49. The disk drive of claim 48 wherein said dampening mechanism reduces acoustic noise at a boundary of said enclosure.
- 50. The disk drive of claim 43,
wherein said fixed distance is at most one millimeter; and wherein each of said gap collection members is at least 0.35 millimeters.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of application Ser. No. 10/100,960, filed Dec. 6, 2001, and this application claims the benefit of U.S. Provisional Application No. 60/290,128, filed May 10, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60290128 |
May 2001 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
10100960 |
Mar 2002 |
US |
Child |
10142078 |
May 2002 |
US |