Claims
- 1. In a data storage device having a plurality of storage media and a plurality of corresponding data transducer heads, each transducer head for recording on and playback of information from a corresponding storage media, a method of defining storage format in one or more regions on each storage media, wherein each region includes a plurality of concentric tracks for recording on and playback of information, the method comprising the steps of:
(a) moving each storage media with respect to the corresponding transducer head and reading data from each storage media with the corresponding transducer head; (b) measuring a record/playback performance capability of each transducer head; and (c) selecting a group of track densities, one track density for each region on a storage media, based on the measured record/playback performance capability of the corresponding transducer head.
- 2. The method of claim 1, further comprising the steps of:
(d) defining the boundaries of each region based on the track density selected for that region.
- 3. The method of claim 1, wherein each track density represents track pitch on a storage media.
- 4. The method of claim 1, wherein:
each storage media includes multiple regions, and step (c) further includes the steps of selecting a group of track densities for each storage media, one track density for each region on that storage media, based on the measured record/playback performance capability of the corresponding transducer head for that storage media.
- 5. The method of claim 4, wherein:
said multiple regions on each storage media are arranged as concentric regions, each region having an inner and an outer boundary at different radial locations on the storage media, step (c) further includes the steps of, for each storage media selecting a group of track densities, one track density for each region on that storage media based on the measured record/playback performance capability of the corresponding transducer head for regions on that storage media.
- 6. The method of claim 5, further comprising the steps of, before step (a), writing servo information in servo tracks at track densities on each storage media.
- 7. The method of claim 6, wherein each data track density represents a data track pitch, and each servo track density represents a servo track pitch relative to the data track pitch.
- 8. The method of claim 7, wherein the data track pitch in two or more regions on a storage media are different.
- 9. The method of claim 7, wherein the servo track pitch in two or more regions on a storage media are different.
- 10. The method of claim 7, wherein:
the data track pitch in two or more regions on a storage media are different, and the servo track pitch in said or more regions on that storage media are different.
- 11. The method of claim 7, wherein:
the data track pitch in two or more regions on a storage media are essentially the same, and the servo track pitch in said two or more regions on that storage media are different.
- 12. The method of claim 7, wherein:
the data track pitch in two or more regions on a storage media are different, and the servo track pitch in said two or more regions on that storage media are essentially the same.
- 13. The method of claim 7, wherein:
the ratio of data track pitch to servo track pitch in two or more of the regions on a storage media are different.
- 14. The method of claim 7, wherein:
the ratio of data track pitch to servo track pitch in two or more of the regions on a storage media are essentially the same.
- 15. The method of claim 5, wherein each storage media includes the same number of concentric regions as other storage media in that data storage device, wherein the boundaries of radially similarly situated regions on all the storage media in that data storage device are at the same radial locations.
- 16. The method of claim 1, wherein in step (b) the steps of measuring is performed at one or more locations on each storage media.
- 17. The method of claim 1, wherein in step (b) each head performance is measured at one or more read/write frequencies.
- 18. The method of claim 1, wherein in step (b) each head performance is measured at one or more track densities.
- 19. The method of claim 1, wherein step (c) further includes the steps of selecting said group of track densities to provide a required data storage capacity for the data storage device.
- 20. The method of claim 1, wherein step (c) further includes the steps of selecting said group of track densities to provides optimum data storage capacity for the data storage device.
- 21. The method of claim 1, wherein step (c) further comprises the steps of selecting said track densities, one track density for each region on a storage media based on the measured record/playback performance capability of the corresponding transducer head, to satisfy a required storage capacity and performance for the data storage device.
- 22. The method of claim 1, wherein step (c) further comprising the steps of selecting a group of read/write frequencies, one frequency for each region, based on the measured record/playback performance capability of the corresponding transducer head.
- 23. The method of claim 1, wherein in step (c) selecting said group of track densities further includes the steps of selecting said group of track densities to satisfy a specified constraint.
- 24. The method of claim 23, wherein step (c) further includes the steps of:
(i) selecting a performance metric for each head in the data storage device; (ii) determining a performance capability of each head at different track densities per region; such that the steps of selecting said group of frequencies further includes the steps of: (iii) ranking the performance capability values of all the heads determined in step (ii) with respect to said performance metric,
if the performance capability of at least one of said heads is below said performance metric and the performance capability of at least another of said heads is above said performance metric, then reducing the track density for the head having a performance capability below said performance metric by an amount sufficient to cause said head to perform at least to the performance metric, and increasing the track density of said at least another head, to satisfy said constraint.
- 25. The method of claim 24, wherein said constraint comprises providing at least a required data storage capacity.
- 26. The method of claim 24, wherein said constraint comprises providing at least a required storage device performance.
- 27. The method of claim 24, wherein said constraint comprises providing at least a required data storage capacity and required storage device performance.
- 28. The method of claim 1, wherein the storage device comprises a disk drive and each storage media comprises a data disk.
- 29. A data storage device prepared for storage of data by the method of claim 1.
- 30. In a data storage device having a plurality of storage media and a plurality of corresponding data transducer heads, each transducer head for recording on and playback of information from a corresponding storage media, a method of defining storage format in one or more regions on each storage media, wherein each region includes a plurality of concentric tracks for recording on and playback of information, the method comprising the steps of:
(a) moving each storage media with respect to the corresponding transducer head and reading data from each storage media with the corresponding transducer head; (b) measuring a record/playback performance capability of each transducer head; and (c) selecting a group of track densities, one track density for each region on each storage media, based on the measured record/playback performance capability of the corresponding transducer head; wherein
said multiple regions on each storage media are arranged as concentric regions, each region having an inner and an outer boundary at different radial locations on the storage media, such that each storage media includes the same number of concentric regions as other storage media in that data storage device, wherein the boundaries of radially similarly situated regions on all the storage media in that data storage device are essentially at the same radial locations.
- 31. The method of claim 30, wherein step (c) further includes the steps of:
for each set of radially similarly situated regions in the storage device, selecting a group of track densities, one track density for each said region, based on the measured record/playback performance capability of the corresponding transducer head for that region.
- 32. The method of claim 31, further comprising the steps of, before step (a), writing servo information in servo tracks at track densities on each storage media.
- 33. The method of claim 32, wherein each data track density represents a data track pitch, and each servo track density represents a servo track pitch relative to the data track pitch.
- 34. The method of claim 33, wherein the data track pitch in two or more radially similarly situated regions on two or more storage media are different.
- 35. The method of claim 33, wherein the servo track pitch in two or more radially similarly situated regions on two or more storage media are different.
- 36. The method of claim 33, wherein:
the data track pitch in two or more radially similarly situated regions on two or more storage media are different, and the servo track pitch in said or more regions are different.
- 37. The method of claim 33, wherein:
the data track pitch in two or more radially similarly situated regions on two or more storage media are essentially the same, and the servo track pitch in said two or more regions are different.
- 38. The method of claim 33, wherein:
the data track pitch in two or more radially similarly situated regions on two or more storage media are different, and the servo track pitch in said two or more regions are essentially the same.
- 39. The method claim 33, wherein:
the ratio of data track pitch to servo track pitch in two or more radially similarly situated regions on two or more storage media are different.
- 40. The method claim 33, wherein:
the ratio of data track pitch to servo track pitch in two or more radially similarly situated regions on two or more storage media are essentially the same.
- 41. The method of claim 30, further including the steps of:
(d) accessing data tracks in a set of radially similarly situated regions by accessing data tracks in a first of said regions on a surface via a corresponding head, before accessing data tracks in a subsequent region of said regions on another surface via a corresponding head.
- 42. The method of claim 30, further including the steps of:
(d) accessing data tracks in a set of radially similarly situated regions by, for each of said regions, sequentially accessing all data tracks in that region a surface via a corresponding head, before accessing data tracks in a subsequent region of said regions on another surface via a corresponding head.
- 43. In a data storage device having a plurality of storage media and a plurality of corresponding data transducer heads, each transducer head for recording on and playback of information from a corresponding storage media, a method of defining storage format in one or more regions on each storage media, wherein each region includes a plurality of concentric tracks for recording on and playback of information, the method comprising the steps of:
(a) moving each storage media with respect to the corresponding transducer head and reading data from each storage media with the corresponding transducer head; (b) measuring a record/playback performance capability of each transducer head by measuring off-track (OTC) performance of each head; and (c) selecting a group of track densities, one track density for each region on a storage media, based on the measured record/playback performance capability of the corresponding transducer head.
- 44. The method of claim 43, wherein step (c) further includes the steps of selecting said group of track densities such that each head has maximum off-track capacity performance, for a required minimum storage capacity for the data storage device.
- 45. The method of claim 43, wherein the step of measuring off-track capacity performance of each head further includes the steps of measuring the Unsqueezed off-track capacity (UOTC) performance and the squeezed off-track capacity (SOTC) performance for each head.
- 46. The method of claim 45, wherein step (c) further includes the steps of selecting said group of track densities such that each head has maximum UOTC performance and maximum SOTC performance, for a required minimum storage capacity for the data storage device.
- 47. The method of claim 45, wherein:
- 48. A method of testing a data storage device having a plurality of media surfaces, the method comprising the steps of:
(a) measuring for each media surface, at least one of a maximum recordable track density of data or maximum recordable linear density of data; (b) calculating the surface capacity of each media surface from the measured maximum recordable track density or maximum recordable linear density; (c) summing the surface capacities of each media surface to determine a device capacity and qualifying the data storage device if the device capacity equals or exceeds a desired capacity.
- 49. The method of claim 48 wherein step. (a) comprises the steps of:
(1) selecting a track density of data and recording data in the selected track density on the media surface; (2) reading the recorded data and measuring an error rate of the recorded data; and (3) comparing the measured error rate to an acceptable error rate, and if the measured error rate is greater than the acceptable error rate, repeating steps (1) to (3) for the selected track density less a decrement, until the error is less than or equal to the acceptable error rate, to determine a maximum recordable data track density for the media surface.
- 50. A data storage device prepared for storage of data by the method of claim 48.
RELATED APPLICATION
[0001] Priority is claimed from U.S. patent application Ser. No. 10/053,220 filed Jan. 17, 2002, which is incorporated by reference herein in its entirety.