Claims
- 1. A read/write head comprising:
a slider substrate; a read shield including a bottom magnetic shield layer on the slider substrate and a shared magnetic shield layer that is spaced apart from the bottom magnetic shield layer; a write head disposed on the shared magnetic shield layer; a read sensor disposed between the bottom magnetic shield layer and the shared magnetic shield layer, the read sensor being spaced apart from the read shield by reader magnetic gaps; electrically insulating layers on the read sensor, the electrically insulating layers forming thermal resistance between the read sensor and the read shield; and a thermally conducting nonmagnetic layer deposited on the read shield in a first one of the reader magnetic gaps, the thermally conducting nonmagnetic layer reducing the thermal resistance without a corresponding reduction in the reader magnetic gaps.
- 2. The read/write head of claim 1 wherein a second thermally conducting non-magnetic layer is deposited on the read shield in a second one of the reader magnetic gaps.
- 3. The read/write head of claim 1 wherein the thermally conducting nonmagnetic layer comprises a metal layer deposited on the read shield.
- 4. The read/write head of claim 3 wherein the metal layer comprises a metal selected from the group of tungsten and chromium.
- 5. The read/write head of claim 4 wherein the metal layer is bonded to the read shield with a seed layer.
- 6. The read/write head of claim 5 wherein the seed layer is a mixture of metals including metal matching metal used in the read shield and metal matching metal used in the metal layer.
- 7. The read/write head of claim 1 wherein the electrically insulating layers are layers of atomic layer deposition Al2O3.
- 8. The read/write head of claim 7 wherein the electrically insulating layers include a layer that has a thickness of 20 nanometers or less.
- 9. The read/write head of claim 8 wherein the electrically insulating layer includes a layer that has a thickness of 10 nanometers or less.
- 10. A method of manufacturing a read /write head, comprising:
providing a slider substrate; depositing a bottom magnetic shield layer on the slider substrate and depositing a shared magnetic shield layer that is spaced apart from the bottom magnetic shield layer, the bottom magnetic shield layer and the shared magnetic shield layer forming a read shield; depositing a write head on the shared magnetic shield layer; depositing a read sensor between the bottom magnetic shield layer and the shared magnetic shield layer and spacing the read sensor apart from the read shield by reader magnetic gaps; depositing electrically insulating layers on the read sensor, the electrically insulating layers forming thermal resistance between the read sensor and the read shield; and reducing the thermal resistance without a corresponding reduction in the reader magnetic gaps by depositing a thermally conducting nonmagnetic layer on the read shield in a first one of the reader magnetic gaps.
- 11. The method of claim 10, further comprising:
reducing the thermal resistance without a corresponding reduction in the reader magnetic gaps by depositing a second thermally conducting nonmagnetic layer on the read shield in a second one of the reader magnetic gaps.
- 12. The method of claim 10, further comprising:
forming the thermally conducting nonmagnetic layer as a metal layer deposited on the read shield.
- 13. The method of claim 12, further comprising:
forming the metal layer from a metal selected from the group of tungsten and chromium.
- 14. The method of claim 13, further comprising:
depositing a seed layer between the metal layer and the read shield.
- 15. The method of claim 14, further comprising:
forming the seed layer from a mixture of metals including metal matching metal used in the read shield and metal matching metal used in the metal layer.
- 16. The method of claim 10, further comprising:
forming the electrically insulating layers by a process of atomic layer deposition of Al2O3.
- 17. The method of claim 16, further comprising:
forming at least one of the electrically insulating layers with a thickness of 20 nanometers or less.
- 18. The method of claim 17, further comprising:
forming at least one of the electrically insulating layers with a thickness of 10 nanometers or less.
- 19. A read/write head comprising:
a bottom magnetic shield layer on a slider substrate and a shared magnetic shield layer that is spaced apart from the bottom magnetic shield layer, a write head disposed on the shared magnetic shield layer, a read sensor spaced apart from the read shield by reader magnetic gaps, electrically insulating layers on the read sensor forming thermal resistance between the read sensor and the bottom and shared magnetic shield layers; and means for reducing the thermal resistance without a corresponding reduction in the reader magnetic gaps.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority benefits from U.S. Provisional Application 60/284,624 titled “Increasing The Read-Back Amplitude In Magnetic Recording Heads by Adding A Nonmagnetic Metallic Layer In The Reader Gap,” filed Apr. 18, 2001 and identified as Docket Number STL 10206.01.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60284624 |
Apr 2001 |
US |