Claims
- 1. A suspension system for supporting a data transducer comprising:
a slider support member for holding a slider having an air bearing surface and a backside surface; a load beam for applying a load to the slider; an electrical cable extending along the load beam and positioned for connection to the backside of the slider, the electrical cable being comprised of a first layer and a second layer, the second layer positioned on the first layer and comprising at least a first elongated strip of a high strength electrically conductive material and a second elongated strip of the high strength electrically conductive material, with the first elongated strip being separated from the second elongated strip by a space that prevents the first elongated strip from electrically shorting the second electrical strip and the first layer being positioned between the backside surface of the slider and the second layer.
- 2. The suspension of claim 1 wherein the second layer has a thickness less than or equal to eighteen microns.
- 3. The suspension of claim 1 wherein the second layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 4. The suspension of claim 1 wherein the first layer comprises a polyimide.
- 5. A suspension system for supporting a data transducer comprising:
a data transducer for reading and/or writing data on a data storage medium; a slider for holding the data transducer, the slider having a backside surface which is positioned away from the data storage medium; a slider support member for holding the slider; a load beam for applying a load to the slider; a flexure that connects the load beam to the slider support member, the flexure comprising a first arm and a second arm; an electrical cable extending along the backside surface of the slider and comprised of a first layer and a second layer, the second layer positioned on the first layer and comprising at least a first elongated strip of a high strength electrically conductive material and a second elongated strip of the high strength electrically conductive material, with the first elongated strip being separated from the second elongated strip by a space that prevents the first elongated strip from electrically shorting the second electrical strip, and the first layer being positioned between the backside surface of the slider and the second layer; and a first termination pad which is electrically connected to the data transducer and is positioned on the backside surface of the slider, the first elongated strip being electrically connected to the first termination pad.
- 6. The suspension of claim 5 wherein the second layer has a thickness less than or equal to eighteen microns.
- 7. The suspension of claim 5 wherein the second layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 8. The suspension of claim 5 wherein the first layer comprises a polyimide.
- 9. The suspension of claim 5 wherein the first layer comprises a dielectric material selected from the group consisting of a polyimide, an epoxy and a Teflon.
- 10. The suspension of claim 5 wherein the first elongated strip is electrically connected to the first termination pad by an ultrasonic weld.
- 11. The suspension of claim 5 wherein the first elongated strip is electrically connected to the first termination pad by solder.
- 12. The suspension of claim 5 further comprising a support tab positioned on the backside surface between the slider and the first layer, the support tab providing mechanical support for the electrical cable.
- 13. The suspension of claim 5 wherein the flexure means comprises a dielectric layer comprised of a dielectric material and a conductive layer comprised of a high strength electrically conductive material positioned over the dielectric layer.
- 14. The suspension of claim 13 wherein the conductive layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 15. A suspension system for supporting a data transducer comprising:
a slider support member for holding a slider having an air bearing surface, a backside surface, a leading edge and a trailing edge; a load beam for applying a load to the slider, the load beam having a backside surface; and an electrical cable extending along the backside surface of the load beam and positioned for connection to the trailing edge of the slider, the electrical cable being comprised of a first layer and a second layer, the second layer positioned on the first layer and comprising at least a first elongated strip of a high strength electrically conductive material and a second elongated strip of the high strength electrically conductive material, with the first elongated strip being separated from the second elongated strip by a space that prevents the first elongated strip from electrically shorting the second electrical strip and the first layer being positioned between the slider support member and the second layer.
- 16. The suspension of claim 15 wherein the second layer has a thickness less than or equal to eighteen microns.
- 17. The suspension of claim 15 wherein the second layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 18. The suspension of claim 15 wherein the first layer comprises a polyimide.
- 19. The suspension of claim 15 wherein the z-height of the suspension is less than or equal to 1.3 mm.
- 20. The suspension of claim 15 further comprising:
an aperture positioned between the load beam and the slider support member; and a free portion of the electrical cable positioned over the aperture.
- 21. The suspension of claim 20 wherein the free portion includes a section of the electrical cable that forms a curve.
- 22. A suspension system for supporting a data transducer comprising:
a data transducer for reading and/or writing data on a data storage medium; a slider for holding the data transducer, the slider having a backside surface which is positioned away from the data storage medium; a slider support member for holding the slider; a load beam for applying a load to the slider, the load beam having a backside surface; and an electrical cable extending along the backside surface of the load beam and positioned for connection to the trailing edge of the slider, the electrical cable being comprised of a first layer and a second layer, the second layer positioned on the first layer and comprising at least a first elongated strip of a high strength electrically conductive material and a second elongated strip of the high strength electrically conductive material, with the first elongated strip being separated from the second elongated strip by a space that prevents the first elongated strip from electrically shorting the second electrical strip and the first layer being positioned between the slider support member and the second layer.
- 23. The suspension of claim 22 wherein the second layer has a thickness less than or equal to eighteen microns.
- 24. The suspension of claim 22 wherein the second layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 25. The suspension of claim 22 wherein the first layer comprises a polyimide.
- 26. The suspension of claim 22 wherein the z-height of the suspension is less than or equal to 1.3 mm.
- 27. The suspension of claim 22 wherein edge of the slider is the closest contact point between the suspension and a disk spacer ring.
- 28. The suspension of claim 22 further comprising:
a first flexure arm for connecting the load beam to the slider support member; a second flexure arm for connecting the load beam to the slider support member; a first beam portion connected to the first flexure arm by a first curved section; and a second beam portion connected to the second flexure arm by a second curved section.
- 29. A method for forming a head gimbal assembly comprising the steps of:
a. forming a head gimbal assembly and frame from a continuous portion of a laminated material comprised of a first layer, a second layer and a third layer: b. positioning a slider at an approximately ninety degree angle to a plane containing the head gimbal assembly and frame; c. bonding the slider to a plurality of electrical lines extending across an aperture in the frame; d. partially separating the frame from the head gimbal assembly; e. changing the relative position of the slider to the head gimbal assembly by approximately ninety degrees; and f. completely removing the frame from the head gimbal assembly.
- 30. The suspension of claim 29 wherein the third layer has a thickness less than or equal to eighteen microns.
- 31. The suspension of claim 29 wherein the third layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 32. The suspension of claim 29 wherein the second layer comprises a polyimide.
- 33. The suspension of claim 29 wherein the first layer comprises stainless steel.
- 34. A suspension system for supporting a data transducer comprising:
a slider support member for holding a slider having an air bearing surface, a backside surface, a leading edge and a trailing edge; a load beam for applying a load to the slider, the load beam having a frontside surface; and an electrical cable extending along the frontside surface of the load beam and positioned for connection to the trailing edge of the slider, the electrical cable being comprised of a first layer and a second layer, the second layer positioned on the first layer and comprising at least a first elongated strip of a high strength electrically conductive material and a second elongated strip of the high strength electrically conductive material, with the first elongated strip being separated from the second elongated strip by a space that prevents the first elongated strip from electrically shorting the second electrical strip and the first layer being positioned between the load beam and the second layer.
- 35. The suspension of claim 34 wherein the second layer has a thickness less than or equal to eighteen microns.
- 36. The suspension of claim 34 wherein the second layer comprises a high strength electrically conductive material selected from the group consisting of Cu—Ni—Si—Mg alloy, Be—Cu—Ni alloy, Cu—Fe—Zn—P alloy and Cu—Ti alloy.
- 37. The suspension of claim 34 wherein the first layer comprises a polyimide.
- 38. The suspension of claim 34 wherein the z-height of the suspension is less than or equal to 1.3 mm.
- 39. The suspension of claim 34 further comprising:
an aperture positioned between the load beam and the slider support member; and a free portion of the electrical cable positioned over the aperture.
- 40. The suspension of claim 39 wherein the free portion includes a section of the electrical cable that forms a curve.
Parent Case Info
[0001] This is a divisional application of application Ser. No. 08/643,935, filed on May 7, 1996, which is a continuation of Ser. No. 08/365,123, filed on Dec. 27, 1994, now abandoned, which was a continuation-in-part of application Ser. No. 08/270,928, now abandoned, which was continued as application Ser. No. 08/613,287, now abandoned, which was continued as application Ser. No. 08/972,100, now U.S. Pat. No. 5,955,176.
Divisions (1)
|
Number |
Date |
Country |
Parent |
08643935 |
May 1996 |
US |
Child |
09898213 |
Jul 2001 |
US |
Continuations (3)
|
Number |
Date |
Country |
Parent |
08365123 |
Dec 1994 |
US |
Child |
08643935 |
May 1996 |
US |
Parent |
08613287 |
Mar 1996 |
US |
Child |
08270928 |
Jul 1994 |
US |
Parent |
08972100 |
Nov 1997 |
US |
Child |
08613287 |
Mar 1996 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08270928 |
Jul 1994 |
US |
Child |
08365123 |
Dec 1994 |
US |