Claims
- 1. A disk carrier for housing a plurality of disks, each disk having an inner perimeter defining a central aperture, the disk carrier comprising an outer shell and a spindle,
the outer shell comprising an upper portion having a bottom rim defining an upper portion opening and a lower portion having a top rim defining a lower portion opening, the upper portion and lower portion configured and arranged to connect together at their rims to form a chamber to enclose the disks and support the spindle in the chamber; and the spindle comprised of
at least two elongate portions, each having a longitudinal dimension, a convex transverse profile, at least two edges along the longitudinal dimension, and an outer surface; a living hinge joining an edge from each of a pair of the at least two elongate portions so the transverse profiles of the pair of elongate portions open towards each other, wherein the spindle has a contracted position and an expanded position so the spindle may freely pass through the central aperture of a disk when the spindle is in the contracted position and so the transverse profiles of the elongate portions form an open circle and the outer surface of each elongate portion fits continuously and snuggly against the inner perimeter of the disk when the hinge is in the expanded position.
- 2. The disk carrier of claim 1, wherein disks housed therein remain free and clear of the outer shell even when the carrier is jolted or shocked.
- 3. The disk carrier of claim 1, wherein the top portion, bottom portion, and spindle are each made of a molded polymer.
- 4. The disk carrier of claim 3, wherein the molded polymer is selected from the group of polymers consisting of polycarbonate, polypropylene, polyester, and any combination thereof..
- 5. The spindle of claim 1, wherein the hinge and the elongated portions are integrally molded components.
- 6. The disk carrier of claim 1, wherein the spindle is electrically conductive.
- 7. The disk carrier of claim 1, wherein the lower portion has a bottom surface and is electrically conductive between the spindle and the bottom surface.
- 8. The disk carrier of claim 1, wherein the lower portion has a bottom surface and an electrically conductive strip connects the spindle and the bottom surface.
- 9. The disk carrier of claim 1, wherein the upper portion and the lower portion each have opposing ends and the opposing ends on a portion each have a wedge pointing toward the other portion, wherein the spindle engages the wedges to hold the spindle in the expanded position.
- 10. The disk carrier of claim 1, wherein the upper portion and the lower portion each have a tab structure that in combination clamps the spindle in place.
- 11. The disk carrier of claim 1, wherein the spindle has a plurality of ribs to maintain separation between the disks.
- 12. The disk carrier of claim 1, wherein to remove the spindle from the disks, the bottom portion has a plurality of ribs to dock the disks and the outer shell has a keyhole through which the spindle is removed from the disks.
- 13. A disk carrier for housing a plurality of disks, each disk having an inner perimeter defining a central aperture, the disk carrier comprising:
a housing means for enclosing disks; and a spindle means for axially aligning and securing disks serially along the spindle means; wherein the spindle means attaches to the housing means.
- 14. A disk carrier for housing a plurality of disks, each disk having an inner perimeter defining a central aperture, the disk carrier comprising an outer shell and a spindle,
the outer shell comprising an upper portion having a bottom rim defining an upper portion opening and a lower portion having a top rim defining a lower portion opening, the upper portion and the lower portion configured and arranged to connect together to form a chamber to enclose the disks and support the spindle in the chamber; and the spindle comprised of
at least two elongate portions, each having a longitudinal dimension, at least one edge along the longitudinal dimension, and an outer surface; a hinge joining an edge from each of a pair of the at least two elongate portions, wherein the spindle has a contracted position and an expanded position so the spindle may freely pass through the central aperture of a disk when the spindle is in the contracted position and so at least part of the outer surfaces of the at least two elongate portions contact the inner perimeter of the disk when the spindle is in the expanded position.
- 15. The disk carrier of claim 14, wherein the transverse profile of the spindle forms an open circle when the spindle is in the expanded position, and wherein the outer surfaces of the spindle continuously and snuggly fit against the inner perimeter of a disk.
- 16. The spindle of claim 14, wherein the spindle is made of a molded polymer.
- 17. The spindle of claim 16, wherein the molded polymer is selected from the group of polymers consisting of polycarbonate, polypropylene, polyester, and any combination thereof.
- 18. The spindle of claim 14, wherein the hinge and the elongated portions are integrally molded components.
- 19. A spindle for securing a plurality of disks, each disk having an inner perimeter defining a central aperture, the spindle comprising:
at least two elongate portions, each having a longitudinal dimension and an outer surface; and at least one hinge joining the at least two elongate portions, wherein the spindle has a contracted position and an expanded position so the spindle may freely pass through the central aperture of a disk when the spindle is in the contracted position and so at least part of the outer surfaces of the at least two elongate portions contact the inner perimeter of the disk when the spindle is in the expanded position.
- 20. The spindle of claim 19, wherein the spindle is made of a molded polymer.
- 21. The spindle of claim 19, wherein the molded polymer is selected from the group of polymers consisting of polycarbonate, polypropylene, polyester, and any combination thereof.
- 22. The spindle of claim 19, wherein the hinge and the elongated portions are integrally molded components.
- 23. A method of using a disk carrier having a spindle for housing a plurality of disks, each disk having an inner perimeter defining a central aperture, the method comprising:
a) providing a disk carrier including a lower portion having a lower portion inside, an upper portion having an upper portion inside, and a spindle having a hinge and a plurality of receiving regions; b) providing at least one disk; c) contracting the spindle so that the spindle passes freely through the central aperture of the at least one disk; d) aligning each disk with a receiving region; e) expanding the spindle to secure the at least one disk on the spindle; f) positioning the spindle in a portion of the outer shell; g) connecting the upper portion and lower portion together to form an outer shell having a chamber to enclose the at least one disk and constrain the spindle inside the lower and upper portions.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Ser. No. 60/309,195, filed on Jul. 31, 2001, which is hereby incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60309195 |
Jul 2001 |
US |