Claims
- 1. A suspension for supporting a head slider over a media surface, comprising:
a load beam having a proximal end, a distal end, and a longitudinal centerline; a localized stiffening portion raised above the longitudinal centerline of the load beam and connected to the load beam by rounded side edges; a base plate interface region coupled to a proximal end of the load beam, and providing a pre-load bend; and a base plate coupled to the base plate interface region, the base plate coupled to a side of the base plate interface region that is opposite the media surface.
- 2. The suspension of claim 1 further comprising:
a flex circuit providing an electrical connection between the head slider and an interface circuit, the flex circuit being connected to the load beam, the base plate interface region, and the base plate such that the flex circuit is shielded from exposure to fluid flow.
- 3. The suspension of claim 2 further comprising:
a shelf formed into the base plate, the shelf being shaped to allow for attachment of the flex circuit.
- 4. The suspension of claim 1 wherein the load beam is formed of laminate materials.
- 5. The suspension of claim 1 wherein the stiffening portion has a proximal end, a distal end and a cross-sectional area, the cross-sectional area at the proximal end being greater than the cross-sectional area at the distal end of the stiffening portion.
- 6. The suspension of claim 5 wherein the cross-sectional area decreases at a uniform rate between the proximal end of the stiffening portion and the distal end of the stiffening portion.
- 7. The suspension of claim 5 wherein the cross-section of the stiffening portion is hat shaped.
- 8. The suspension of claim 1 wherein the stiffening portion is raised above the load beam by a height of between about 2.5 mils and about 6 mils.
- 9. The suspension of claim 1 wherein at least one aperture is formed in the stiffening portion.
- 10. The suspension of claim 9 wherein a plurality of apertures are formed in the stiffening portion.
- 11. The suspension of claim 1 wherein the suspension has a length of less than 14 mm.
- 12. The suspension of claim 11 wherein the suspension has a length of 11 mm.
- 13. The suspension of claim 11 wherein the suspension has a length of 9.5 mm.
- 14. The suspension of claim 11 wherein the proximal and distal ends of the load beam are connected to form a planar surface, such that a secondary form is not present in the load beam.
- 15. A disc drive having a suspension according to the suspension of claim 1.
- 16. A suspension for supporting a head slider over a media surface, comprising:
a load beam having a proximal end and a distal end; a stiffening portion raised above the load beam and connected to the load beam, the stiffening portion being aerodynamically profiled; a base plate coupled to the proximal end of the load beam, the base plate coupled to a side of the load beam that is opposite the media surface; and wherein the suspension is composed of laminate material.
- 17. The suspension of claim 16 wherein the stiffening portion has a proximal end, a distal end and a cross-sectional area, the cross-sectional area at the proximal end being greater than the cross-sectional area at the distal end of the stiffening portion.
- 18. The suspension of claim 16 wherein at least one aperture is formed in the stiffening portion.
- 19. The suspension of claim 16 wherein the suspension has a length of 11 mm.
- 20. The suspension of claim 16 wherein the proximal and distal ends of the load beam are connected to form a planar surface, such that a secondary form is not present in the load beam.
- 21. A disc drive having a suspension according to the suspension of claim 16.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from U.S. Provisional Application No. 60/387,984 filed on Jun. 12, 2002 for inventors Sandeepan Bhattacharya and Srinivas Tadepalli and entitled HAT-SHAPED LOAD BEAM TO REDUCE OFF-TRACK PES.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60387984 |
Jun 2002 |
US |