Claims
- 1. A data card has a plurality of data tracks disposed on a flat data-storage medium wherein:
each of the data tracks further includes a plurality of stepwise discrete segments.
- 2. The data card of claim 1 wherein:
each of said segments further includes a servo segment and a data segment.
- 3. The data card of claim 1 wherein:
each of said servo segments is substantially a circumference segment of a first circle; and each of said data segments is substantially a circumference segment of a second circle where said first circle and said second circle have radiuses of different lengths.
- 4. The data card of claim 3 wherein:
said second circle has a substantially equal or slightly shorter radius than said first circle.
- 5. The data card of claim 3 wherein:
said second circle has a substantially equal or slightly longer radius than said first circle.
- 6. A data access system for accessing data on a flat medium comprising:
a pickup head rotating over the flat medium; at least a stepping motor for discretely moving said flat medium substantially along at least a lateral direction perpendicular to a rotational axis of said pickup head for moving said pickup head for access data stored in stepwise discrete segments.
- 7. The data access system of claim 6 further comprising:
a controller for employing a closed loop control mechanism for controlling said stepping motor for reading data from a servo segment on the flat medium; and said controller further employing an open loop control mechanism for controlling said pickup head for reading data from and writing data to a data segment on said flat medium.
- 8. The data access system of claim 7 wherein:
said open loop control mechanism further includes position sub-correction means for carrying out at least one sub-corrections in sweeping over one of said data segments.
- 9. The data access system of claim 6 wherein:
said data access system is an optical data access system.
- 10. The data access system of claim 6 wherein:
said data access system is a magnetic data access system.
- 11. The data access system of claim 7 wherein:
said controller further comprising a profile calibration processor for reading servo data from a plurality of servo segments for recording and minimizing a position error for each of said servo segments.
- 12. The data access system of claim 7 wherein:
said controller further comprising a flat medium centering processor for reading servo data from two servo segments on two opposite sides of said flat medium for centering said flat medium relative to said pickup head.
- 13. The data access system of claim 7 wherein:
said controller further comprising a sector offset processor for calculating a sector offset for controlling a movement of said pickup head from one sector to another sector on said a flat medium.
- 14. A method for providing a plurality of substantially parallel data tracks on a flat data-storage medium comprising a step of:
segmenting each of the data tracks into a plurality of stepwise discrete segments.
- 15. The method of claim 14 wherein:
said step of segmenting each of data track into said stepwise discrete segments further comprising a step of dividing each of said segments into a servo segment and a data segment.
- 16. The method claim 15 wherein:
said step of dividing each of said segments into a servo segment and a data segment further comprising a step of forming each of said servo segments substantially as a circumference segment of a first circle; and forming each of said data segments substantially as a circumference segment of a second circle where said first circle and said second circle have radiuses of different lengths.
- 17. The method of claim 16 wherein:
the step of forming said servo segment and said data segment further comprising a step of forming said servo segment and said data segment with said second circle has a substantially equal or slightly shorter radius than said first circle.
- 18. The method of claim 16 wherein:
the step of forming said servo segment and said data segment further comprising a step of forming said servo segment and said data segment with said second circle has a substantially equal or slightly longer radius than said first circle.
- 19. A method of configuring a data access system for accessing data on a flat medium comprising:
providing a pickup head for rotating over said flat medium; providing at least one stepping motor for discretely moving said flat medium substantially along at least one lateral direction perpendicular to a rotational axis of said pickup head for moving said pickup head to access data stored in stepwise discrete segments.
- 20. The method claim 19 further comprising:
providing a controller for employing a closed loop control mechanism for controlling said stepping motor for reading data from a servo segment on the flat medium; and employing an open loop control mechanism for controlling said pickup head for reading data from and writing data to a data segment on said flat medium.
- 21. The method of claim 19 further comprising a step of:
configuring said data access system as an optical data access system.
- 22. The method of claim 19 further comprising a step of:
configuring said data access system as a magnetic data access system.
- 23. The method of claim 20 wherein:
said step of providing said controller further comprising a step of providing a profile calibration processor for reading servo data from a plurality of servo segments for recording and minimizing a position error for each of said servo segments.
- 24. The method of claim 20 wherein:
said step of providing said controller further comprising a step of providing a flat medium centering processor for reading servo data from two servo segments on two opposite sides of said flat medium for centering said flat medium relative to said pickup head.
- 25. The method of claim 20 wherein:
said step of providing said controller further comprising a step of providing a sector offset processor for calculating a sector offset for controlling a movement of said pickup head from one sector to another sector on said a flat medium.
Parent Case Info
[0001] This application is a Continuation-in-Part application (CIP) of a previously filed Provisional Application No. 60/081,257 filed on Apr. 9, 1998 and a Formal application Ser. No. 09/289,427 with an attorney docket number DCARD-9907 filed on Apr. 9, 1999, by one of a common inventors of this Patent Application.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60081257 |
Apr 1998 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09289427 |
Apr 1999 |
US |
Child |
09774200 |
Jan 2001 |
US |