Claims
- 1. A method comprising
mounting a tool to a base, wherein the tool comprises first and second substantially parallel surfaces separated by a first distance, wherein the base comprises a base surface and a first raised surface, wherein the base surface and the first raised surface are contained in respective, substantially parallel planes that are separated by a second distance, wherein the base further comprises a base aperture formed through the base surface, wherein the first surface of the tool engages the first raised surface of the base when the tool is mounted to the base; with the tool mounted to the base, inserting a rotation cylinder of a rotation motor through the base aperture until the rotation cylinder engages the second surface of the tool; fixedly connecting the rotation motor to the base while the rotation cylinder engages the second surface of the tool and while the first raised surface engages the first surface of the tool.
- 2. The method of claim 1 wherein the base comprises second and third raised surfaces, wherein the first, second, and third raised surfaces are contained in a common plane, wherein the first surface of the tool engages the first, second, and third raised surfaces of the base when the tool is mounted to the base.
- 3. The method of claim 1 wherein the base is configured to receive a data cartridge comprising a data storage disk contained in a cartridge shell, wherein the cartridge shell comprises first and second parallel sidewalls, wherein the data storage disk is positioned between the first and second parallel side walls, wherein the first sidewall comprises first oppositely facing, parallel inner and outer surfaces, wherein the first oppositely facing, parallel inner and outer surfaces are separated by a third distance, wherein the first distance is greater than the third distance.
- 4. The method of claim 3 wherein the outer surface of the first sidewall engages the first raised surface of the base when the base receives the data cartridge, wherein the rotation cylinder engages the data storage disk when the base receives the data cartridge, and wherein the data storage disk is positioned within the cartridge shell with a first gap between the data storage disk and the first sidewall and a second gap between the data storage disk and the second sidewall when the base receives the data cartridge.
- 5. The method of claim 3 wherein the second sidewall comprises second oppositely facing, parallel inner and outer surfaces, wherein the second oppositely facing, parallel inner and outer surfaces are separated by a fourth distance, wherein the first distance is greater than the fourth distance.
- 6. The method of claim 1 wherein the base comprises a pin extending from the first raised surface, wherein the tool comprises a pin aperture in the first surface, wherein the pin is inserted into the pin aperture when the tool is mounted to the base.
- 7. The method of claim 1 further comprising:
applying an adhesive to the base or the rotation motor before the rotation cylinder of the rotation motor is inserted through the base aperture; wherein fixedly connecting the rotation motor to the base comprises curing the adhesive to create a fixed bond between the base and the rotation motor.
- 8. The method of claim 7 wherein the adhesive is an ultra-violet light sensitive adhesive, and wherein curing the adhesive comprises illuminating the applied ultra-violet light sensitive adhesive with ultra-violet light.
- 9. The method of claim 1 wherein tool is formed from steel, and wherein the rotation motor comprises a magnet, wherein the magnet attracts the tool as the tool is mounted to the base.
- 10. An apparatus comprising:
a tool, wherein the tool comprises first and second substantially parallel surfaces separated by a first distance; a base, wherein the base comprises a base surface and a first raised surface, wherein the base surface and the first raised surface are contained in respective, substantially parallel planes that are separated by a second distance, wherein the base further comprises a base aperture formed through the base surface, wherein the first surface of the tool is configured to engage the first raised surface of the base when the tool is mounted to the base; a rotation motor, wherein the rotation motor comprises a rotation cylinder, wherein the rotation cylinder is configured to extend through the base aperture and engage the second surface of the tool when the tool is mounted to the base.
- 11. The apparatus of claim 10 wherein the base comprises second and third raised surfaces, wherein the first, second, and third raised surfaces are contained in a common plane, wherein the first surface of the tool is configured to engage the first, second, and third raised surfaces of the base when the tool is mounted to the base.
- 12. The apparatus of claim 10 wherein the base is configured to receive a data cartridge comprising a data storage disk contained in a cartridge shell, wherein the cartridge shell comprises first and second parallel sidewalls, wherein the data storage disk is positioned between the first and second parallel side walls, wherein the first sidewall comprises first oppositely facing, parallel inner and outer surfaces, wherein the first oppositely facing, parallel inner and outer surfaces are separated by a third distance, wherein the first distance is greater than the third distance.
- 13. The apparatus of claim 12 wherein the outer surface of the first sidewall is configured to engage the first raised surface of the base when the base receives the data cartridge, wherein the rotation cylinder is configured to engage the data storage disk when the base receives the data cartridge, and wherein the data storage disk is positioned within the cartridge shell with a first gap between the data storage disk and the first sidewall and a second gap between the data storage disk and the second sidewall when the base receives the data cartridge.
- 14. The apparatus of claim 12 wherein the second sidewall comprises second oppositely facing, parallel inner and outer surfaces, wherein the second oppositely facing, parallel inner and outer surfaces are separated by a fourth distance, wherein the first distance is greater than the fourth distance.
- 15. The apparatus of claim 10 wherein the base comprises a pin extending from the first raised surface, wherein the tool comprises a pin aperture in the first surface, wherein the pin is configured to be received into the pin aperture when the tool is mounted to the base.
- 16. The method of claim 8 wherein curing the UV light sensitive adhesive comprises applying heat to the UV light sensitive adhesive after illuminating the UV light sensitive adhesive.
- 17. The apparatus of claim 15 wherein the pin extends in a direction orthogonal to the first raised surface.
- 18. The apparatus of claim 10 further comprising an adhesive applied to the base or the rotation motor.
- 19. The apparatus of claim 18 wherein the adhesive is an ultra-violet light sensitive adhesive.
- 20. An apparatus comprising:
a base, wherein the base comprises a base surface and a first raised surface, wherein the base surface and the first raised surface are contained in respective, substantially parallel planes that are separated by a second distance, wherein the base further comprises a base aperture formed through the base surface; a rotation motor, wherein the rotation motor comprises a rotation cylinder; a means for aligning the rotation cylinder to the first raised surface when the rotation cylinder is extended through the base aperture.
- 21. An apparatus comprising:
a base, wherein the base comprises a base surface and a first raised surface, wherein the base surface and the first raised surface are contained in respective, substantially parallel planes that are separated by a second distance, wherein the base further comprises a base aperture formed through the base surface; a rotation motor, wherein the rotation motor comprises a rotation cylinder; a means for aligning the rotation cylinder to the first raised surface when the rotation cylinder is extended through the base aperture, wherein the means comprises a surface for engaging the rotation cylinder when the rotation cylinder is extended through the base aperture.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to application Ser. No. 09/854,333, filed May 11, 2001 entitled Optical Data Storage with Enhanced Contrast, application Ser. No.______ filed Sep. 4, 2001, entitled Cartridge Load/Eject Mechanism for Data Storage Disk System (Atty Docket No. M-11682 US); application Ser. No.______ filed Sep. 4, 2001, entitled Focus Motor and Mechanism for Optical Disk Drive, (Atty. Docket No. M-11128 US); Application No. 60/265,830, filed Jan. 31, 2001, entitled Cartridge Loading Mechanism for Data Storage Disk (Attorney Docket No. M-9847-V1 US); and application Ser. No. 09/846,042, filed May 1, 2001, entitled Optical Pickup Unit Assembly Process all of which are incorporated herein in their entirety (Attorney Docket No. M-9848 US).