Claims
- 1. A coated article comprising:
a glass substrate; a coating supported by the glass substrate, wherein the coating comprises a first dielectric layer, a first NiCrOx inclusive layer, an Ag inclusive layer, a second NiCrOx inclusive layer, and a second dielectric layer, wherein the Ag inclusive layer is located between the first and second NiCrOx inclusive layers; and wherein the coating further includes a metal or metal nitride contact layer located between and contacting the Ag layer and one of the NiCrOx inclusive layers, the metal or metal nitride contact layer being deposited using one sputtering target and the NiCrOx inclusive layer being deposited using another sputtering target.
- 2. The coated article of claim 1, wherein the metal or metal nitride contact layer comprises NiCr.
- 3. The coated article of claim 2, wherein the contact layer comprising NiCr is more metallic than said one NiCrOx inclusive layer that the contact layer is in contact with.
- 4. The coated article of claim 2, wherein the contact layer comprising NiCr is less oxidized than said one NiCrOx inclusive layer that the contact layer is in contact with.
- 5. The coated article of claim 1, wherein the metal or metal nitride contact layer comprises NiCrNx.
- 6. The coated article of claim 5, wherein the contact layer comprising NiCrNx is more metallic than said one NiCrOx inclusive layer that the contact layer is in contact with.
- 7. The coated article of claim 5, wherein the contact layer comprising NiCrNx is less oxidized than said one NiCrOx inclusive layer that the contact layer is in contact with.
- 8. The coated article of claim 1, wherein the coating further comprises another metal or metal nitride contact layer located between and contacting the Ag inclusive layer and the other one of the NiCrOx inclusive layers.
- 9. The coated article of claim 8, wherein the another contact layer comprises at least one of NiCr and NiCrNx.
- 10. The coated article of claim 1, wherein the coated article has a visible transmission of at least 70%.
- 11. The coated article of claim 10, wherein the coated article has a visible transmission of at least 75%.
- 12. The coated article of claim 1, where the coating has a sheet resistance (Rs) of no greater than 20 ohms/sq.
- 13. The coated article of claim 1, wherein the first dielectric layer comprises silicon nitride.
- 14. The coated article of claim 13, wherein the second dielectric layer comprises silicon nitride.
- 15. The coated article of claim 1, wherein the first dielectric layer comprises an oxide of titanium.
- 16. The coated article of claim 1, wherein the contact layer is provided on the upper surface of the Ag inclusive layer.
- 17. A coated article including a coating supported by a substrate, the coating comprising:
a NiCrOx inclusive layer; an Ag inclusive layer; and a metal or metal nitride layer located between and contacting each of the NiCrOx inclusive layer and the Ag inclusive layer.
- 18. The coated article of claim 17, wherein the metal or metal nitride layer comprises NiCr and is more metallic than the NiCrOx inclusive layer.
- 19. The coated article of claim 17, wherein the metal or metal nitride layer comprises at least one of CrNx and NiCrNx.
- 20. The coated article of claim 17, wherein the metal or metal nitride layer is less oxidized than the NiCrOx inclusive layer.
- 21. The coated article of claim 17, wherein the coating has a sheet resistance (Rs) of no greater than 20 ohms/sq.
- 22. A coated article including a coating supported by a substrate, the coating comprising:
an oxide layer including an oxide of a metal or metal alloy; a metallic infrared (IR) reflecting layer; a metal or metal nitride contact layer located between and contacting each of the metallic IR reflecting layer and the oxide layer; and wherein the metal or metal nitride contact layer comprises the same metal or metal alloy as is in the oxide layer.
- 23. The coated article of claim 22, wherein the oxide layer comprises NiCrOx.
- 24. The coated article of claim 23, wherein the IR reflecting layer comprises Ag.
- 25. The coated article of claim 24, wherein the metal or metal nitride contact layer comprises at least one of NiCr and CrNx.
- 26. The coated article of claim 22, wherein the coated article is characterized by a sheet resistance (Rs) of no greater than 20 ohms/sq., and a visible transmission of at least 70%.
- 27. A method of making a coated article, the method comprising:
providing a glass substrate; depositing a first dielectric layer so as to be supported by the substrate; depositing an Ag layer on the substrate over the first dielectric layer; depositing, using a first sputtering target, a metal or metal nitride contact layer on the substrate directly over and in contact with the Ag layer; depositing, using a second sputtering target different than the first sputtering target, a layer comprising NiCrOx on the substrate directly over and in contact with the metal or metal nitride contact layer; and depositing another dielectric layer on the substrate over the layer comprising NiCrOx.
- 28. The method of claim 27, wherein the contact layer comprises a metal nitride, and the method further comprises using oxygen gas in depositing the layer comprising NiCrOx, and using nitrogen gas in depositing the contact layer.
- 29. The method of claim 27, wherein each of the layers claimed is deposited via sputtering.
- 30. The method of claim 27, wherein the contact layer comprises at least one of NiCr and CrNx.
- 31. The method of claim 27, wherein the layers are deposited to respective thicknesses and in a manner so that the resulting coated article is characterized by a visible transmission of at least 70% and a sheet resistance (Rs) of no greater than 20 ohms/sq.
- 32. The coated article of claim 1, wherein the metal or metal nitride contact layer is of a lesser thickness than the NiCrOx inclusive layer which the contact layer contacts.
- 33. The coated article of claim 1, wherein the metal or metal nitride contact layer is from about 1-10 Å thick, and the NiCrOx inclusive layer which contacts the contact layer is from about 10-50 Å thick.
- 34. The coated article of claim 17, wherein the metal or metal nitride layer is from about 1-10 Å thick, and the NiCrOx inclusive layer which contacts the metal or metal nitride layer is from about 10-50 Å thick.
- 35. The coated article of claim 22, wherein the metal or metal nitride contact layer is from about 1-10 Å thick, and the oxide layer which contacts the metal or metal nitride contact layer is from about 10-50 Å thick.
- 36. The coated article of claim 1, wherein the metal or metal nitride contact layer is substantially free of oxygen.
- 37. The coated article of claim 17, wherein the metal or metal nitride layer is oxidized from 0-5%.
Parent Case Info
[0001] This application claims priority on Provisional U.S. Patent Application Serial No. ______, filed Nov. 9, 2001 (attorney docket number 3691-324), the disclosure of which is hereby incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60331160 |
Nov 2001 |
US |