Claims
- 1. A head gimbal assembly having a load beam, a slider and a gimbal comprising:
a transducer including a read element and a write element; a bleed resistor electrically connected to said write element and read element of said transducer, wherein the bleed resistor is positioned on a head gimbal assembly.
- 2. The head gimbal assembly of claim 1, the head gimbal assembly further comprising a flex on suspension (FOS), wherein said FOS includes a breakaway tab positioned on an end of the FOS and a plurality of transducer leads mounted on an entire length of said FOS.
- 3. The FOS of claim 2, said FOS further including a tail tack, wherein one of said transducer leads is a ground lead, said ground lead is connected to said tail tack and said tail tack is connected to ground.
- 4. The FOS of claim 2, wherein the bleed resistor is a resistive polymer in electrical communication with a portion of said transducer leads, further wherein said resistive polymer has a resistance between 220 kΩ to 10 MΩ.
- 5. The FOS of claim 4, wherein said resistive polymer is overlayed on the entire length of the leads of said transducer.
- 6. The FOS of claim 3, said FOS further including an intrinsically conductive polymer overlayed on a portion of said transducer leads, wherein a polymer covercoat is applied over the intrinsically conductive polymer, further wherein said conductive polymer has a resistance less than 1 MΩ.
- 7. The FOS of claim 2, wherein the FOS further includes a substrate, said substrate is a resistive polymer substrate, further wherein said resistive polymer substrate has a resistance between 220 kΩ to 10 MΩ.
- 8. The FOS of claim 2, wherein a discrete ceramic resistor is connected to said transducer leads and an electrically conductive pad, said pad located on the FOS near a distal end of said FOS, further wherein a conductive epoxy is electrically connected between said pad and said load beam.
- 9. The FOS of claim 8, wherein said load beam acts as a ground.
- 10. The FOS of claim 8, wherein said discrete ceramic resistor is connected to said portion of said transducer leads located on said breakaway tab.
- 11. The FOS of claim 7, wherein a portion of said substrate is carborized by a laser source producing a resistive substrate, further wherein said resistive substrate is in electrical communication with said transducer leads.
- 12. The transducer of claim 2, further comprising a via and a shield, wherein said transducer is positioned in a slider, said transducer is electrically connected to said slider by said via, and said slider is connected to ground.
- 13. The transducer of claim 12, wherein at least one bleed resistor is electrically connected between said via and said write element.
- 14. The transducer of claim 13, wherein at least one bleed resistor is electrically connected from a portion of the write element to the via.
- 15. The transducer of claim 13, wherein at least two bleed resistors are connected in parallel between said via and opposite ends of said write element.
- 16. The transducer of claim 13, wherein a resistor is electrically connected between said shield and said via.
- 17. The transducer of claim 13, wherein each of said bleed resistors has a resistance between 10 kΩ to 1 GΩ.
- 18. A head gimbal assembly having a load beam, a slider and a gimbal comprising:
a transducer including a read element, a write element; a polymer bleed resistor electrically connected to said write element and said read element, wherein the bleed resistors are positioned on a head gimbal assembly.
- 19. The head gimbal assembly of claim 18, further comprising a flex on suspension (FOS) and a plurality of transducer leads mounted on an entire length of said FOS.
- 20. The FOS of claim 19, said FOS further including a tail tack, wherein one of said transducer leads is a ground lead, said ground lead is connected to a tail tack and said tail tack is connected to ground.
- 21. The FOS of claim 19, wherein the polymer bleed resistor is in electrical communication with a portion of said transducer leads, further wherein said resistive polymer has a resistance between 220 kΩ to 10 MΩ.
- 22. The FOS of claim 21, wherein said polymer bleed resistor is overlayed on the entire length of the leads of said transducer.
- 23. The FOS of claim 20, said FOS further including an intrinsically conductive polymer overlayed on a portion of said transducer leads, wherein a polymer covercoat is applied over the intrinsically conductive polymer, further wherein said conductive polymer has a resistance less than 1 MΩ.
- 24. The FOS of claim 19, wherein the FOS further includes a substrate, said substrate is a resistive polymer substrate, further wherein said resistive polymer substrate has a resistance between 220 kΩ to 10 MΩ.
- 25. The FOS of claim 24, wherein a portion of said substrate is carborized by a laser source producing a resistive substrate, further wherein said resistive substrate is in electrical communication with said transducer leads.
- 26. A head gimbal assembly having a load beam, a slider and a gimbal comprising:
a transducer including a read element, a write element, and a shield; a discrete ceramic bleed resistor electrically connected to said write element and said read element, wherein the bleed resistors are positioned on a head gimbal assembly.
- 27. The head gimbal assembly of claim 26, further comprising a flex on suspension (FOS), wherein said FOS includes a breakaway tab positioned on an end of the FOS and a plurality of transducer leads mounted on an entire length of said FOS.
- 28. The FOS of claim 27, wherein the discrete ceramic bleed resistor is connect to said transducer leads and an electrically conductive pad, said pad located on the FOS near a distal end of said FOS, further wherein a conductive epoxy is electrically connected between said pad and said load beam.
- 29. The FOS of claim 27, wherein said load beam acts as a ground.
- 30. The FOS of claim 28, wherein said discrete ceramic bleed resistor is connected to said portion of said transducer leads located on said breakaway tab.
- 31. A magnetoresistive head comprising:
a slider, said slider having a connection to ground; a transducer, said transducer including a read element, a write element, a shield, and a via, said transducer positioned in said slider, and said transducer electrically connected to said slider by said via; a first bleed resistor connected between one end of said write element and said via; a second bleed resistor connected between said shield and said via, wherein said first and second bleed resistors have a resistance between 10 kΩ to 1 GΩ.
- 32. The transducer of claim 31, wherein the first bleed resistor is electrically connected from a portion of the write element to the via.
- 33. The transducer of claim 31, wherein a third bleed resistor is connected between the other side of said write element and said via, further wherein said third bleed resistor has a resistance between 10 kΩ to 1 GΩ.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is based on and claims the benefit of U.S. provisional patent application Serial No. 60/284,734, filed Apr. 18, 2001, and U.S. patent application Ser. No. 09/824,528, filed Apr. 2, 2001, by Tabat et al, entitled “MAGNETIC TRANSDUCERS WITH INTEGRATED CHARGE BLEED RESISTORS,” the content of which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60284734 |
Apr 2001 |
US |