Claims
- 1. A differential CPP sensor comprising:
a first GMR multilayer device; a non-magnetic interlayer adjacent said first GMR multilayer device; a second GMR multilayer device adjacent said layer of non-magnetic material opposite said first GMR multilayer device; and a biasing element for biasing said GMR multilayer devices in opposite directions; wherein a given applied magnetic field causes the resistance of said first GMR multilayer and the resistance of said second GMR multilayer to vary inversely.
- 2. The differential CPP sensor of claim 1 wherein said non-magnetic interlayer magnetically decouples said first and second GMR multilayers.
- 3. The differential CPP sensor of claim 1 wherein said non-magnetic interlayer electrically decouples said first and second GMR multilayers.
- 4. The differential CPP sensor of claim 1 wherein said non-magnetic interlayer is composed of a material selected from a group comprising Ta, W, Ru, Al, Au and Cu.
- 5. The differential CPP sensor of claim 1 wherein said biasing element comprises:
a first permanent magnet adjacent said first GMR multilayer device, said first permanent magnet having its magnetization oriented in a first direction toward said first GMR multilayer device; a layer of non-magnetic material adjacent said first permanent magnet; and a second permanent magnet adjacent said layer of non-magnetic material and adjacent said second GMR multilayer device, said second permanent magnet having a magnetization oriented in a second direction opposite said first direction and away from said second GMR multilayer device.
- 6. The differential CPP sensor of claim 1 wherein said first and said second permanent magnets are composed of a material selected from a group comprising CoPt, CoTa, CoCr and CoB.
- 7. The differential CPP sensor of claim 1 wherein said biasing element comprises a synthetic anti-ferromagnet.
- 8. The differential CPP sensor of claim 7 wherein said synthetic anti-ferromagnet comprises:
a first layer of ferromagnetic material adjacent said first GMR multilayer device; a layer of non-magnetic material adjacent said first layer of ferromagnetic material; and a second layer of ferromagnetic material adjacent said layer of non-magnetic material opposite said first layer of ferromagnetic material and adjacent said second GMR multilayer device.
- 9. The differential CPP sensor of claim 8 wherein said first and said second layers of ferromagnetic material are composed of a material selected from a group comprising Co, CoFe, CoNiFe, NiFe and CoFeB.
- 10. The differential CPP sensor of claim 8 wherein said layer of non-magnetic material is composed of a material selected from a group comprising PtMn, PtPdMn, IrMn and CrPtMn.
- 11. The differential CPP sensor of claim 8 wherein said layer of non-magnetic material is relatively thin with respect to said first and said second layers of ferromagnetic material.
- 12. The differential CPP sensor of claim 11 wherein said layer of non-magnetic material is between approximately two Angstroms (2 Å) and twelve Angstroms (12 Å) in thickness.
- 13. The differential CPP sensor of claim 8 further comprising a stabilizing layer adjacent said first layer of ferromagnetic material opposite said layer of non-magnetic material.
- 14. The differential CPP sensor of claim 13 wherein said stabilizing layer is a permanent magnet.
- 15. The differential CPP sensor of claim 13 wherein said stabilizing layer is composed of an anti-ferromagnetic material.
- 16. The differential CPP sensor of claim 8 further comprising a stabilizing layer adjacent said second layer of ferromagnetic material opposite said layer of non-magnetic material.
- 17. The differential CPP sensor of claim 16 wherein said stabilizing layer is a permanent magnet.
- 18. The differential CPP sensor of claim 16 wherein said stabilizing layer is composed of an anti-ferromagnetic material.
- 19. The differential CPP sensor of claim 8 further comprising:
a first stabilizing layer adjacent said first layer of ferromagnetic material opposite said layer of non-magnetic material; and a second stabilizing layer adjacent said second layer of ferromagnetic material opposite said layer of non-magnetic material.
- 20. The differential CPP sensor of claim 19 wherein said first and said second stabilizing layers are selected from a group comprising a permanent magnet and a layer of anti-ferromagnetic material.
- 21. A disc drive system comprising:
a magnetic media; a write head for writing data on said magnetic media; and a differential read head comprising:
a first GMR multilayer device; a non-magnetic interlayer adjacent said first GMR multilayer device; a second GMR multilayer device adjacent said layer of non-magnetic material opposite said first GMR multilayer device; and a biasing element for biasing said GMR multilayer devices in opposite directions; wherein a given applied magnetic field causes the resistance of said first GMR multilayer and the resistance of said second GMR multilayer to vary inversely.
- 22. The disc drive system of claim 21 wherein said biasing element is a synthetic anti-ferromagnet comprising:
a first layer of ferromagnetic material adjacent said first GMR multilayer device; a layer of non-magnetic material adjacent said first layer of ferromagnetic material; and a second layer of ferromagnetic material adjacent said layer of non-magnetic material opposite said first layer of ferromagnetic material and adjacent said second GMR multilayer device.
- 23. The disk drive system of claim 22 wherein said synthetic anti-ferromagnet further comprises: one or more stabilizing layers selected from a group comprising a permanent magnet and a layer of anti-ferromagnetic material.
- 24. The disc drive system of claim 23 wherein said one or more stabilizing layers are located adjacent said layers of ferromagnetic material opposite said layer of non-magnetic material.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional application Ser. No. 60/315,413, filed Aug. 28, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60315413 |
Aug 2001 |
US |