Claims
- 1. A slider comprising:
a slider body including a leading edge, a trailing edge and opposed sides and including an air bearing surface having at least one raised bearing surface and at least one recessed bearing surface; and at least one flow gate on the slider body interposed in a flow path along the air bearing surface of the slider body.
- 2. The slider of claim 1 including a plurality of flow gates on the slider body.
- 3. The slider of claim 2 wherein the plurality of flow gates are spaced along the leading edge of the slider body.
- 4. The slider of claim 1 wherein the at least one flow gate is positioned between opposed sides of the slider body.
- 5. The slider of claim 2 wherein the plurality of flow gates includes a first flow gate proximate to one of the opposed sides of the slider body and a second flow gate proximate to another of the opposed sides of the slider body.
- 6. The slider of claim 1 wherein the flow gate includes a gate portion operable by a flow gate actuator to increase or decrease a flow passage area of the at least one flow gate to regulate flow to the air bearing surface of the slider.
- 7. The slider of claim 6 wherein operation of the flow gate actuator is controlled via feedback from transducer elements on the slider body to regulate flow to the air bearing surface of the slider.
- 8. The slider of claim 6 wherein the flow gate actuator is an electrostatic actuator.
- 9. The slider of claim 8 wherein the electrostatic actuator includes an static electrode comb on a body portion of the flow gate and a floating electrode comb on the gate portion of the flow gate and the gate portion is movably coupled to the body portion.
- 10. The slider of claim 9 wherein the gate portion is movably coupled to the body portion of the flow gate by a flexible spring portion.
- 11. The slider of claim 6 wherein the gate portion is formed of a material having an energizable dimension change and the gate portion is coupled to a power source to form the flow gate actuator to regulate flow to the air bearing surface of the slider.
- 12. The slider of claim 11 wherein the material having the energizable dimension change includes a piezoelectric or shape memory material.
- 13. The slider of claim 1 wherein the flow gate is interposed in the flow path to the air bearing surface of the slider body to adjust pitch, roll or fly height parameters of the slider.
- 14. A slider comprising:
a slider body including a leading edge, a trailing edge and opposed sides and including an air bearing surface having at least one raised bearing surface and at least one recessed bearing surface; and means for controlling air flow along the air bearing surface of the slider body.
- 15. The slider of claim 14 wherein the means for controlling air flow along the air bearing surface includes at least one flow gate selectively operable to regulate flow to the air bearing surface of the slider body based upon operating feedback.
- 16. The slider of claim 14 wherein the means for controlling air flow along the air bearing surface includes an electrostatic flow gate operably coupled to a power source and energizable to regulate flow to the air bearing surface of the slider.
- 17. The slider of claim 14 wherein the means for controlling air flow along the air bearing surface includes a flow gate having a gate portion formed of a material having an energizable dimension change operably coupled to a power source and energizable to regulate flow to the air bearing surface of the slider.
- 18. The slider of claim 14 wherein the means for controlling air flow along the air bearing surface includes at least one flow gate on a leading edge portion of the slider body of the slider.
- 19. A disc drive comprising:
a disc having a disc surface rotationally coupled to a drive chassis and operable to rotate relative to the drive chassis for operation; and a head including a slider carrying a transducer element to read data from or write data to the disc surface, the slider including a slider body having a leading edge, a trailing edge and opposed sides and including an air bearing surface having at least one raised bearing surface and at least one recessed bearing surface and at least one flow gate on the slider body interposed in a flow path along the air bearing surface of the slider body.
- 20. A method of fabricating a slider comprising steps of:
fabricating an array of flow gates on a wafer; slicing a slider bar from the wafer; and forming air bearing surfaces on the slider bar and slicing individual sliders from the slider bar.
- 21. The method of claim 20 wherein the step of fabricating the array of flow gates on the wafer includes:
fabricating an electrostatic comb structure on the wafer to form the array of flow gates.
- 22. The method of claim 18 and wherein the flow gates are fabricated on a first surface of the wafer and comprising the step of:
fabricating an array of transducers on a second surface of the wafer.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from U.S. Provisional Application 60/335,784 filed on Oct. 30, 2001 and entitled METHOD TO ACHIEVE AAB FLY HEIGHT CONTROL.
Provisional Applications (1)
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Number |
Date |
Country |
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60335784 |
Oct 2001 |
US |