Claims
- 1. An actuator adapted to support a head suspension assembly for a data storage device comprising:
an actuator body adapted to be rotationally coupled relative to a base chassis of a disc drive; a yoke assembly including spaced yoke arms extending from the actuator body; and at least one rigid actuator arm extending from the actuator body and adapted to rigidly support the head suspension assembly, the at least one rigid actuator arm including multiple arm plates supported in spaced relation to form a separation between the arm plates and defining a thickness of the at least one rigid actuator arm.
- 2. The actuator of claim 1 in which the multiple arm plates of the at least one actuator arm are formed of a stainless steel material.
- 3. The actuator of claim 1 and further comprising:
a head suspension assembly welded to the at least one rigid actuator arm.
- 4. The actuator of claim 1 in which the multiple arm plates are supported in spaced relation by an interface support to form a hollow space between the multiple spaced arm plates.
- 5. The actuator of claim 1 and including a plurality of spaced rigid actuator arms extending from the actuator body and each including multiple spaced arm plates.
- 6. The actuator of claim 1 in which the actuator body includes multiple spaced body plates supported in spaced relation.
- 7. The actuator of claim 6 in which the multiple spaced body plates are supported by an interface structure to form a hollow space between the multiple spaced body plates.
- 8. The actuator of claim 1 in which the spaced yoke arms include multiple spaced yoke plates.
- 9. The actuator of claim 8 wherein the multiple spaced yoke plates are supported by an interface structure to form a hollow space between the multiple spaced yoke plates.
- 10. The actuator of claim 1 in which the actuator includes multiple composite plates including body portions and arm portions and the multiple composite plates are supported in spaced relation to form the multiple spaced arm plates formed by the arm portions and multiple spaced body plates of the actuator body formed by the body portions.
- 11. The actuator of claim 10 in which the multiple composite plates are welded to form a composite plate assembly of the actuator.
- 12. The actuator of claim 11 in which at least one of the composite plates of the composite plate assembly includes a raised rim forming an interface structure to support the multiple composite plates in spaced relation to form a hollow space between the composite plates.
- 13. The actuator of claim 5 in which the plurality of actuator arms are formed of a plurality of composite plate assemblies including multiple composite plates having arm portions and supported in spaced relation to form the multiple arm plates for each of the plurality of actuator arms.
- 14. The actuator of claim 13 in which the multiple composite plates of the plurality of composite plate assemblies include body portions and the actuator including at least one spacer between the plurality of composite plate assemblies to form the plurality of spaced actuator arms and a multi tiered actuator body structure formed of the at least one spacer and the body portions of the plurality of composite plate assemblies.
- 15. The actuator of claim 14 in which the actuator includes at least three actuator arms formed by at least three composite plate assemblies and at least two spacers separating the at least three composite plate assemblies.
- 16. A disc drive comprising:
at least one disc rotationally coupled to a chassis; a head suspension assembly adapted to support a data head relative to a disc surface of the at least one disc; and actuator means for movably supporting the head suspension assembly relative to the disc surface of the at least one disc for read-write operations.
- 17. The disc drive of claim 16 in which the actuator means includes a low mass actuator arm including multiple arm plates supported in spaced relation.
- 18. The disc drive of claim 16 in which the actuator means includes a plurality of stacked actuator arms separated by spacers.
- 19. The disc drive of claim 18 in which the plurality of stacked actuator arms are formed of a multiple plate structure.
- 20. A disc drive comprising:
a base chassis; at least one disc rotationally coupled to the base chassis; at least one flexible head suspension assembly; an actuator including an actuator body rotationally coupled to the base chassis and including at least one rigid actuator arm extending from the actuator body and rigidly supporting the at least one flexible head suspension assembly, the at least one rigid actuator arm including multiple arm plates supported to form a hollow actuator arm structure; and a motor assembly operably coupled to the actuator to moveably support the at least one head suspension assembly relative to the at least one disc.
- 21. The disc drive of claim 20 wherein at least one of the multiple arm plates includes an interface rim to support the arm plates in spaced relation to form the hollow actuator arm structure.
- 22. The disc drive of claim 20 wherein the actuator includes multiple composite plates including body portions and arm portions and the multiple composite plates are supported in spaced relation to form a composite plate assembly forming the at least one actuator arm and the actuator body of the actuator.
- 23. The disc drive of claim 22 wherein the actuator includes a plurality of spaced actuator arms extending from the actuator body and further including a plurality of composite plate assemblies and at least one spacer between the composite plate assemblies to form the plurality of spaced actuator arms and a multi-tiered actuator body structure formed of the body portions of the plurality of composite plate assemblies and the at least one spacer.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to Provisional Application Serial No. 60/253,183, filed Nov. 27, 2000 and entitled “BOX ACTUATOR FOR HARD DISC DRIVE”.
Provisional Applications (1)
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Number |
Date |
Country |
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60253183 |
Nov 2000 |
US |