Claims
- 1. An apparatus for assembling an actuator assembly for use in a data storage device, the apparatus comprising:
an actuator arm having a proximal and a distal end, wherein the actuator arm defines a clamp-opening hole and a clasp hole between the proximal end and the distal end and a first slot running from the clamp-opening hole to the clasp hole; a flex suspension assembly; and a cam insertable through the clamp-opening hole in the actuator arm to resiliently widen the clasp hole when the cam is actuated in the clamp-opening hole, permitting a protrusion of the flex suspension assembly to be received within the clasp hole.
- 2. The apparatus of claim 1, wherein the cam is oval such that it can be rotated to widen the clasp holes.
- 3. The apparatus of claim 1, wherein the cam comprises:
an outer sleeve sized to be inserted through the clamp-opening hole; and a pin with an outer diameter larger than an inner diameter of the outer sleeve, the pin including a tapered tip; wherein the pin is inserted, tapered tip first, into the outer sleeve so that the pin causes the outer sleeve to expand and thereby widen the clasp hole.
- 4. The apparatus of claim 1, wherein the cam comprises:
a cam body having an outer diameter sized to be less than an inner diameter of the clamp-opening hole; and a conical cam tip, wherein at least a portion of the conical cam tip has an outer diameter that is greater than the inner diameter of the clamp-opening hole.
- 5. The apparatus of claim 1, wherein the cam comprises:
a first portion having an outer diameter sized to be less than an inner diameter of the clamp-opening hole of the actuator arm; a second portion having an outer diameter sized to be less than an inner diameter of the clamp-opening hole; and a middle cam portion coupled at a first end to the first cam portion and at a second end to the second cam portion, wherein an outer diameter of the middle cam portion is greater than the inner diameter of the clamp-opening holes.
- 6. A method of coupling a plurality of actuator arms of an actuator assembly to a plurality of flex suspension assemblies, the method comprising steps of:
(a) positioning a first flex suspension assembly from the plurality of flex suspension assemblies near a first actuator arm from the plurality of actuator arms so that a first protrusion on the first flex suspension assembly is disposed adjacent to a first clasp hole defined by the first actuator arm; (b) positioning a second flex suspension assembly from the plurality of flex suspension assemblies near a second actuator arm so that a second protrusion on the second flex suspension assembly is disposed adjacent to a second clasp hole defined by the second actuator arm, such that a first head on the first flex suspension assembly is facing a second head on the second flex suspension assembly; (c) inserting a first key from a plurality of keys between the first flex suspension assembly and the second flex suspension assembly so as to bias the first protrusion towards the first clasp hole and the second protrusion towards the second clasp hole; (d) widening the first clasp hole and the second clasp hole by deforming a first clamp-opening hole defined by the first actuator arm and a second clamp-opening hole defined by the second actuator arm; and (e) removing the first key.
- 7. The method of claim 6, further comprising steps of:
(f) advancing a clasp pin through the first protrusion; and (g) advancing the clasp pin through the second protrusion.
- 8. The method of claim 7, further comprising a step (h) of repeating the positioning, inserting, and advancing steps for each of the plurality of actuator arms and each of the plurality of flex suspension assemblies.
- 9. The method of claim 6, further comprising a step (f) of inserting an alignment pin through a nest and through an alignment hole defined by each of the plurality of flex suspension assemblies.
- 10. The method of claim 6, wherein the widening step (d) comprises steps of:
(d)(i) inserting a cam through the first clamp-opening hole and the second clamp-opening hole; and (d)(ii) rotating the cam.
- 11. The method of claim 6, wherein the widening step (d) comprises steps of:
(d)(i) inserting a collet sleeve through the first clamp-opening hole and the second clamp-opening hole; and (d)(ii) inserting a pin sized larger in diameter than a diameter of the collet sleeve and diameters of the first clamp-opening hole and the second clamp-opening hole into the collet sleeve.
- 12. The method of claim 6, further comprising steps of:
(f) inserting a cam through the first clamp-opening hole; (g) widening the first clasp hole; and (h) removing the first protrusion from within the first clasp hole of the first actuator arm.
- 13. An actuator assembly for reading and writing data from and to a magnetic data storage disc, the actuator assembly comprising:
an actuator arm coupled at a proximal end to an E-block body; and means for releasably coupling a protrusion on a flex suspension assembly to a distal end of the actuator arm.
- 14. The actuator assembly of claim 13, wherein the actuator arm defines a clasp hole and a clamp-opening hole.
- 15. The actuator assembly of claim 13, wherein the actuator assembly further comprises a plurality of flex suspension assemblies coupled to a plurality of actuator arms.
RELATED APPLICATIONS
[0001] This application claims priority of U.S. provisional application Serial No. 60/295,275, filed Jun. 1, 2001 and U.S. provisional application Serial No. 60/311,727, filed Aug. 10, 2001.
Provisional Applications (2)
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Number |
Date |
Country |
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60295275 |
Jun 2001 |
US |
|
60311727 |
Aug 2001 |
US |