Claims
- 1. An arc discharge lamp having an improved color rendering index for a given color coordinated temperature, the lamp comprising
a lamp envelope enclosing a discharge space and having an inner surface; an ionizable medium within said lamp envelope comprising mercury and an inert gas; first and second electrodes; and a phosphor layer comprising a phosphor blend on said inner surface, said blend including a red a phosphor selected from the group consisting of SrY2O4:Eu3+, (Y,Gd)Al3B4O12:Eu3+, and [(Y1-i-x-y-mLay)Gdx]BO3:Eum wherein y<0.50 and m=0.001-0.3.
- 2. A lamp according to claim 1, wherein said lamp exhibits a correlated color temperature of between about 2500 to about 10000 Kelvin and a color rendering index of about 90 or above.
- 3. A lamp according to claim 1, further comprising a second phosphor layer comprising a halophosphor.
- 4. A lamp according to claim 3, wherein said second phosphor layer comprises a calcium halophosphate.
- 5. A lamp according to claim 1, further comprising a green phosphor having a peak emission at about 525 to about 570 nm, a blue-green phosphor having a peak emission from about 475-525, and a blue phosphor having a peak emission from about 430 to 475 nm.
- 6. A lamp according to claim 5, further comprising at least one of a deep red phosphor having a peak emission at about 615 to 665 nm and an orange phosphor having a peak emission from about 550 to 600 nm.
- 7. A lamp according to claim 1, wherein said red phosphor comprises SrY2O4:Eu3+.
- 8. A lamp according to claim 1, wherein said red phosphor comprises (Y,Gd)Al3B4O12:Eu3+.
- 9. A lamp according to claim 1, wherein said phosphor layer further comprises LaPO4:Ce,Tb; Sr4Al14O25:Eu2+; and BaMgAl10O17:Eu2+.
- 10. A lamp according to claim 1, wherein said phosphor layer further comprises LaPO4:Ce,Tb; BaMgAl10O17:Eu2+; and BaMgAl10O17:Eu2+,Mn2+.
- 11. A lamp according to claim 1, wherein said red phosphor is (Y0.55Gd0.35Eu0.10)BO3.
- 12. A lamp according to claim 1, further comprising a UV reflecting barrier layer comprising at least one of alpha- and gamma-aluminum particles.
- 13. A lamp according to claim 1, wherein said lamp emits visible light having predetermined color coordinates on the CIE scale wherein the x value is in the range of 0.3 to 0.4 and y is in the range of 0.3 to 0.4
- 14. A lamp according to claim 1, wherein said phosphor layer has a median particle size of 1 to 10 microns
- 15. A lamp according to claim 16, wherein said thickness of said phosphor layer is 4-6 particles thick.
- 16. A lamp according to claim 1, wherein said phosphor blend comprises, by spectral weight, about 0.05-0.3 of a blue phosphor, 0.05-0.3 of a blue-green phosphor, 0.05-0.6 of a green phosphor, 0.05-0.55 of said red phosphor, 0.0-0.6 of an orange phosphor and 0.0-0.2 of a deep red phosphor, based on a total spectral weight of 1.
- 17. A fluorescent lamp according to claim 1, wherein said lamp is a compact fluorescent lamp.
- 18. A phosphor blend capable of absorbing UV radiation and emitting visible light, said blend comprising a green emitting phosphor, a blue-green emitting phosphor, a blue emitting phosphor, and red a phosphor selected from the group consisting of SrY2O4:Eu3+, (Y,Gd)Al3B4O12:Eu3+, and [(Y1-x-y-mLay)Gdx]BO3:Eum wherein y<0.50 and m=0.001-0.3.
- 19. A phosphor blend according to claim 18, wherein said green phosphor has a peak emission at about 525 to about 570 nm, said blue-green phosphor has a peak emission from about 475-525, and said blue phosphor has a peak emission from about 430 to 475 nm..
- 20. A phosphor blend according to claim 18, further comprising at least one of a deep red phosphor having a peak emission at about 615 to 665 nm and an orange phosphor having a peak emission from about 550 to 600 nm.
- 21. A phosphor blend according to claim 18, wherein said red phosphor comprises SrY2O4:Eu3+.
- 22. A phosphor blend according to claim 18, wherein said red phosphor comprises (Y,Gd)Al3B4O12:Eu3+.
- 23. A phosphor blend according to claim 18, wherein said phosphor layer further comprises LaPO4:Ce,Tb; Sr4Al14O25:Eu2+; and BaMgAl10O17:Eu2+.
- 24. Aphosphor blend according to claim 18, wherein said phosphor layer further comprises LaPO4:Ce,Tb; BaMgAl10O17:Eu2+; and BaMgAl10O17:Eu2+,Mn2+.
- 25. A phosphor blend according to claim 18, wherein said red phosphor is (Y0.55Gd0.35Eu0.10)BO3.
- 26. A phosphor blend according to claim 18, wherein said blend has a median particle size of 1 to 10 microns
- 27. A phosphor blend according to claim 18, wherein said phosphor blend comprises, by spectral weight, about 0.05-0.3 of a blue phosphor, 0.05-0.3 of a blue-green phosphor, 0.05-0.6 of a green phosphor, 0.05-0.55 of said red phosphor, 0.0-0.6 of an orange phosphor and 0.0-0.2 of a deep red phosphor, based on a total spectral weight of 1.
- 28. A phosphor blend capable of absorbing UV radiation and emitting visible light, said blend comprising a green emitting phosphor, a blue-green emitting phosphor, a blue emitting phosphor, and red a phosphor comprising SrY2O4:Eu3+.
- 29. A phosphor blend capable of absorbing UV radiation and emitting visible light, said blend comprising a green emitting phosphor, a blue-green emitting phosphor, a blue emitting phosphor, and red a phosphor comprising (Y,Gd)Al3B4O12:Eu3+.
- 30. A phosphor blend capable of absorbing UV radiation and emitting visible light, said blend comprising a green emitting phosphor, a blue-green emitting phosphor, a blue emitting phosphor, and red a phosphor comprising [(Y1-x-y-mLay)Gdx]BO3:Eum wherein y<0.50 and m=0.001-0.3.
Government Interests
[0001] The U.S. Government has a paid-up license in this invention and the right in limited circumstances to require the patent owner to license others on reasonable terms as provided for by the terms of Contract No. DE-FC26-99FT40632 awarded by the Department of Energy.