1460913006-442f1dba-d87d-41bd-a934-edc8c09df0d5

1. A data storage device comprising:
a stator;
a rotor rotatable about the stator, the rotor comprising a hub, the hub defining a recess in a top thereof and having a shoulder surrounding the recess and a plurality of threaded holes in said recess;
at least one disk seated on the shoulder, the at least one disk defining a central opening above and in communication with the recess; and
a clamp comprising a bottom fixing part, defining a plurality of through holes patterned to correspond to said threaded holes, a cylindrical wall extending from a circumferential edge of the fixing part, and a pressing part extending outwardly from the cylindrical wall and abutting the at least one disk, and fixed to the hub in the recess by means of a plurality of fasteners extending through the through holes and engaging with the hub in the threaded holes, respectively, and pressing on the at least one disk thereby mounting the at least one disk to the rotor.
2. The data storage device as claimed in claim 1, wherein an outer diameter of the recess is equal to or larger than a diameter of the central opening of the at least one disk.
3. The data storage device as claimed in claim 1, wherein the cylindrical wall of the clamp abuts an inside of the shoulder in the recess.
4. The data storage device as claimed in claim 1, wherein the cylindrical wall of the clamp extends through the, central opening of the least one disk and abuts the at least one disk in the central opening.
5. The data storage device as claimed in claim 2, wherein the stator comprises a shaft, the rotor comprises a tube rotatably attached around the shaft by bearings, and the hub is fixedly attached around the tube.
6. The data storage device as claimed in claim 5, wherein the stator further comprises a baseplate, an outer cylinder, an inner cylinder and a plurality of stator laminations arranged between the outer and inner cylinders, and wherein the shaft is fixed to the baseplate in the inner cylinder.
7. The data storage device as claimed in claim 2, wherein the hub further comprises a protruding portion surrounded by the recess and extending through the central opening of the at least one disk, and the rotor further comprises a shaft fixed to the protruding portion so that the hub can rotate with the shaft.
8. A data storage device comprising:
a stator having a first central cylindrical member housing bearings;
a rotor rotatable about the stator, the rotor comprising a hub wherein the hub defines a recess below the at least one disk and in communication with the central opening and further wherein the hub has a second cylindrical member fitted around, and concentric but not in contact with said first cylindrical member and attached by a bridging member to a central shaft within said first cylindrical member passing through and in contact with the inner races of said bearings;
at least one disk mounted to the hub, the at least one disk defining a central opening; and
a clamp comprising a bottom fixing part, defining a plurality of through holes patterned to correspond to said threaded holes, a cylindrical wall extending from a circumferential edge of the fixing part, and a pressing part extending outwardly from the cylindrical wall and abutting the at least one disk, and attached on the hub by means of a plurality of fasteners extending through the through holes and engaging with the hub in the threaded holes, respectively, the clamp further comprising a pressing part pressing on the at least one disk such that the at least one disk is capable of rotating with the rotor.
9. The data storage device as claimed in claim 8, wherein the stator comprises a plurality of stator laminations each having a winding wound therearound.
10. The data storage device as claimed in claim 9, wherein the hub defines a cavity in a bottom portion thereof, the cavity receiving the stator laminations therein.
11. The data storage device as claimed in claim 8, wherein the hub comprises a shoulder at a top portion thereof, the shoulder surrounding the recess.
12. The data storage device as claimed in claim 11, wherein the cylindrical wall abuts an inside of the shoulder.
13. The data storage device as claimed in claim 8, wherein the hub further comprises a protruding portion extending through the central opening of the at least one disk and surrounded by the recess, and wherein the rotor further comprises a shaft fixed to the protruding portion so that the hub can rotate with the shaft.
14. The data storage device as claimed in claim 8, wherein the pressing part has a S-shaped cross-section.
15. The data storage device as claimed in claim 8, wherein said clamp includes a cylindrical wall compliantly received in the central opening to restrict lateral movement of said disk relative to the hub.
16. A method of assembly a disk drive motor, comprising steps of: providing a stator; providing a rotor rotatably surrounding said stator, said stator including a hub, said hub defining a recess in a top thereof and having a shoulder surrounding the recess and a plurality of threaded holes in said recess; providing a clamp comprising a bottom fixing part, defining a plurality of through holes patterned to correspond to said threaded holes, a cylindrical wall extending from a circumferential edge of the fixing part, and a pressing part extending outwardly from the cylindrical wall; downwardly locating a memory disk, via a non-vacuum procedure, to a top face of the hub, said disk defining a central opening concentric to the hub and in communication with the recess; and downwardly locating said clamp to the hub; and fastening with screws inserted through said through holes and into said threaded holes, thereby, downwardly pressing the disk against the top face of the hub with said pressing part.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A heat dissipation device adapted for removing heat from heat-generating components, comprising:
a plurality of first fins spaced from each other and adapted for connecting to the heat-generating components in thermal relationship; and
a plurality of second fins alternately arranged with the first fins, each second fin being wave-shaped and having a plurality of wave crests attached to a rear side of one of two first fins neighboring to each second fin and a plurality of wave troughs attached to a front side of another one of the two first fins.
2. The heat dissipation device as claimed in claim 1, wherein a plurality of flat first engaging portions are formed at the wave crests and attached to a front one of the two first fins, while a plurality of flat second engaging portions are formed at the wave troughs and attached to a rear one of the two first fins.
3. The heat dissipation device as claimed in claim 2, wherein the first and second engaging portions are elongated and parallel to each other.
4. The heat dissipation device as claimed in claim 2, wherein each second fin further comprises a plurality of connecting portions which are extended obliquely and outwardly from upper and lower side edges of the first engaging portions and connected to the neighboring second engaging portions, to thus respectively connect neighboring first and second engaging portions together.
5. The heat dissipation device as claimed in claim 4, wherein a plurality of retaining parts are formed on the rear side of the front one of the two first fins and engage with the connecting portions of each second fin.
6. The heat dissipation device as claimed in claim 5, wherein the retaining parts includes a plural pairs of retaining flakes extending obliquely and outwardly from the rear side of the front one of the two first fins, wherein an upper one of each pair of the retaining flakes extending upwardly and obliquely from the rear side of the front one of the two first fins, while a lower one of each pair of the retaining flakes extending downwardly and obliquely from the rear side of the front one of two first fins.
7. The heat dissipation device as claimed in claim 6, wherein the first engaging portions are respectively located between every pair of retaining flakes which are engaged with the connecting portions.
8. The heat dissipation device as claimed in claim 6, wherein the retaining flakes include a plural pairs of first retaining flakes spaced from each other and arranged along a middle vertical line of each first fin and a plural pairs of second retaining flakes spaced from each other and arranged along two opposite vertical sides of each first fin.
9. The heat dissipation device as claimed in claim 8, wherein the front one of the two first fins defines a plurality of opening therein located between every two neighboring pairs of the first retaining flakes and a plurality of cutouts recessing from the two opposite vertical sides thereof and located between every two neighboring pairs of the second retaining flakes.
10. The heat dissipation device as claimed in claim 9, wherein the second engaging portions of each second fin are attached to a front side of the rear one of the first fins and span over the openings and the cutouts of the rear one of the first fins.
11. The heat dissipation device as claimed in claim 2, wherein two flanges are extended perpendicularly from upper and lower edges of each first fin and have two groups of engaging patches extending perpendicularly from two distal ends of the two flanges toward each other and attached to front sides of two second engaging portions of a neighboring second fin.
12. A heat dissipation device adapted for removing heat from heat-generating components, comprising:
a plurality of first fins spaced from each other and adapted for connecting the heat-generating components in thermal relationship; and
a plurality of second fins alternately arranged with the first fins, each second fin being wave-shaped and having a plurality of flat first engaging portions formed at wave crests thereof and a plurality of flat second engaging portions formed at wave troughs thereof;
wherein the first portions are attached to a rear side of one of two first fins neighboring to each second fin while the second engaging portions are attached to a front side of another one of the two neighboring first fins.
13. The heat dissipation device as claimed in claim 12, wherein the first and second engaging portions are elongated and parallel to each other.
14. The heat dissipation device as claimed in claim 12, wherein each second fin further comprises a plurality of connecting portions which are extended obliquely and outwardly from opposite side edges of the first engaging portions and connected to the neighboring second engaging portions, to thus respectively connect neighboring first and second engaging portions together.
15. The heat dissipation device as claimed in claim 14, wherein a plurality of retaining parts are formed on the rear side of one the two first fins and engage with the connecting portions of each second fin.
16. The heat dissipation device as claimed in claim 15, wherein the retaining parts includes a plurality pair of retaining flakes extending outwardly and obliquely from the rear side of the one of the two first fins, and wherein an upper one of each pair of the retaining flakes extends upwardly and obliquely from the rear side of the one the two first fins, while a lower one of each pair of the retaining flakes extends downwardly and obliquely from the rear side of the one of the two first fins.
17. The heat dissipation device as claimed in claim 16, wherein the first engaging portions are respectively located between every pair of retaining flakes which are engaged with the connecting portions.
18. The heat dissipation device as claimed in claim 12, further comprising at least one fixing pole extending through the first and second fins.