Claims
- 1. A process of defining track densities for data storage tracks on each of a plurality of storage surfaces of a data storage apparatus wherein each storage surface is associated with a head, the process comprising steps of:
a) assigning a minimum head quality for the data storage apparatus; b) identifying a head quality for each of the heads for each of a plurality of track densities; c) selecting a tuned track density for each head based on the minimum head quality and the head qualities identified in step (b); and d) establishing the tuned track density for the storage surface associated with each respective head.
- 2. The process of claim 1, wherein step (b) comprises steps of:
b1) for each of a plurality of track densities, identifying an off-track position for each head at which the head achieves a selected error rate, and b2) identifying the head quality for each track density for each head based on the off-track position.
- 3. The process of claim 1, wherein step (a) comprises:
a1) assigning a nominal track density for the storage apparatus, and step (c) comprises steps of: c1) selecting a tuned track density for each head as that track density that matches the track density corresponding to the minimum head quality, c2) comparing an average of the tuned track densities to the nominal track density, and c3) selecting the tuned track density for each storage surface only if the average of the tuned track densities is at least as great as the nominal track density.
- 4. The process of claim 3, wherein step (b) comprises steps of:
b1) for each of a plurality of track densities, identifying an off-track position for each head at which the head achieves a selected error rate, and b2) identifying the head quality for each track density for each head based on the off-track position.
- 5. The process of claim 1, wherein step (a) comprises steps of:
a1) assigning a nominal track density for each storage surface of the data storage apparatus, and a2) defining a sum of nominal track densities based on the number of heads of the data storage apparatus and the nominal track density for each storage surface, and step (c) includes steps of: c1) selecting a tuned track density for each head as that track density that matches the track density corresponding to the minimum head quality, c2) comparing a sum of the tuned track densities to the sum of nominal track densities, and c3) selecting the tuned track density for each storage surface only if the sum of the tuned track densities is at least as great as the sum of nominal track densities.
- 6. The process of claim 5, wherein step (c) further comprises steps of:
c4) changing the tuned track density if the sum of the tuned track densities is greater than the sum of nominal track densities by a predetermined amount.
- 7. The process of claim 5, wherein the nominal track density and the tuned track densities are expressed as numerical settings and steps (c2) and (c3) are performed by:
i) comparing a sum of the tuned track densities numerical settings to the sum of the nominal track density numerical settings, and ii) selecting a numerical setting for each storage surface if the sum of the numerical settings for the tuned track density is at least as great as the sum of the numerical settings for the nominal track density.
- 8. The process of claim 7, wherein step (c) further comprises steps of:
c4) changing the numerical setting of the tuned track density if the sum of the numerical settings of the tuned track densities is greater than the sum of the numerical settings of the nominal track density by an amount equal to the number of heads of the data storage apparatus.
- 9. The disc drive of claim 1, wherein the tuned track density is selected from the plurality of track densities based on a density at which the minimum head quality is achieved.
- 10. A data storage device including:
a plurality of head/surface combinations each surface comprising adjacent data storage tracks and the head operably arranged to transfer information with the data storage tracks; and means establishing a different data track density on at least two storage surfaces.
- 11. The data storage device of claim 10, wherein the means establishing the different data track density comprises:
an arrangement of the data storage tracks at a density defined by an off-track capability of the confronting head.
- 12. The data storage device of claim 10, wherein the surfaces have a nominal data track storage density, and the means establishing a different data track density on the storage surface comprise:
an arrangement of tracks on at least two of the storage surfaces having track densities that are different from each other and from the nominal track density such that an average of the track densities on all of the storage surfaces is not less than the nominal track density.
- 13. The data storage apparatus of claim 12, wherein the average of the data storage track densities is substantially equivalent to the nominal track density.
- 14. The data storage device of claim 13, wherein each head/surface combination comprises:
a head confronting the respective storage surface, the head having an off-track capability, and a storage surface having a plurality of adjacent data storage tracks, the density of the storage tracks on each storage surface being defined by the off-track capability of the confronting head.
- 15. The data storage device of claim 12, wherein each head/surface combination comprises:
a head confronting the respective storage surface, the head having an off-track capability, and a storage surface having a plurality of adjacent data storage tracks, the density of the storage tracks on each storage surface being defined by the off-track capability of the confronting head.
- 16. A disc drive comprising a data storage disc and a head in a data reading and writing operable relationship with the data storage disc, the head imparting electrical signals from a controller defining a data storage track density on the storage disc established by a process comprising steps of:
a) assigning a minimum head quality for the disc drive; b) identifying a head quality for the head for each of a plurality of track densities; and c) selecting a tuned track density for the head based on the minimum head quality and the head qualities at each of the plurality of track densities.
- 17. The disc drive of claim 16, wherein the tuned track density is selected from the plurality of track densities based on a density at which the minimum head quality is achieved.
- 18. The process of claim 16, wherein step (b) comprises steps of:
b1) for each of a plurality of track densities, identifying an off-track position for each head at which the head achieves a selected error rate, and b2) identifying the head quality for each track density for each head based on the off-track position.
- 19. The process of claim 16, wherein step (a) comprises:
a1) assigning a nominal track density for the storage apparatus, and step (c) comprises steps of: c1) selecting a tuned track density for each head as that track density that matches the track density corresponding to the minimum head quality, c2) comparing an average of the tuned track densities to the nominal track density, and c3) selecting the tuned track density for each storage surface only if the average of the tuned track densities is at least as great as the nominal track density.
- 20. The process of claim 16, wherein step (a) comprises steps of:
a1) assigning a nominal track density for each storage surface of the data storage apparatus, and a2) defining a sum of nominal track densities based on the number of heads of the data storage apparatus and the nominal track density for each storage surface, and step (c) includes steps of: c1) selecting a tuned track density for each head as that track density that matches the track density corresponding to the minimum head quality, c2) comparing a sum of the tuned track densities to the sum of nominal track densities, and c3) selecting the tuned track density for each storage surface only if the sum of the tuned track densities is at least as great as the sum of nominal track densities.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority of U.S. Provisional Patent Application No. 60/222,987 filed Aug. 4, 2000 for “Variable Tracks Per Inch Tuning”.
Provisional Applications (1)
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Number |
Date |
Country |
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60222987 |
Aug 2000 |
US |