Claims
- 1. A lamp which comprises:a lamp envelope having an inner surface; means within the lamp envelope for generating ultraviolet radiation; and a layer of a luminescent material on said inner surface comprising a phosphor derived from a mixture of (1) a blue-halo calcium halophosphate phosphor having an average particle size within the range of about 6.6 to about 10 microns; (2) a calcium-yellow calcium halophosphate phosphor having an average particle size within the range of about 9.0 to about 13 microns; and (3) fines of a warm-white calcium halophosphate phosphor.
- 2. A lamp as claimed in claim 1, wherein said blue-halo phosphor has an average particle size of about 8.60 microns.
- 3. A lamp as claimed in claim 1, wherein said calcium-yellow calcium halophosphate phosphor has an average particle size of about 11.3 microns.
- 4. A lamp as claimed in claim 1, wherein said warm white fines have an average particle size of about 4.62 microns.
- 5. A low pressure low-mercury consumption mercury vapor fluorescent lamp, comprising:a. a tubular, light transmissive lamp envelope having opposing sealed ends, an inner tubular surface and enclosing a discharge space between said sealed ends with a volume; b. a filling of elemental mercury and a rare gas; c. a pair of discharge electrodes each arranged at a respective sealed end of said lamp envelope; d. means for connecting said discharge electrodes to a source of electric potential outside of said lamp envelope, whereby during lamp operation a gas discharge is maintained between said discharge electrodes, which gas discharge emits ultraviolet radiation; e. optionally, a first, light transmissive and ultraviolet radiation reflecting layer disposed adjacent said inner surface of said lamp envelope, f. a layer of a luminescent material comprising a phosphor derived from a mixture of (1) a blue-halo calcium halophosphate phosphor having an average particle size within the range of about 6.6 to about 10 microns; (2) a calcium-yellow calcium halophosphate phosphor having an average particle size within the range of about 9.0 to about 13 microns; and (3) fines of a warm-white calcium halophosphate phosphor, said phosphor mixture providing a cool-white color to the lamp, and said lamp being TCLP-compliant.
- 6. A lamp as claimed in claim 5, wherein said envelope is convoluted and is selected from the group of envelopes comprising at least two leg segments joined by a bent-U section, and envelopes bent to a desired shape.
- 7. A lamp as claimed in claim 6, wherein said blue halo phosphor has. an average particle size of about 8.60 microns.
- 8. A lamp as claimed in claim 6, wherein said calcium-yellow calcium halophosphate phosphor has an average particle size of about 11.3 microns.
- 9. A lamp as claimed in claim 6, wherein said warm white fines have an average particle size of about 4.62 microns.
- 10. A low-mercury consumption mercury vapor fluorescent lamp, comprising:a. a tubular, light transmissive lamp envelope having opposing sealed ends, an inner tubular surface and enclosing a discharge space between said sealed ends with a volume; b. a filling of elemental mercury and a rare gas; c. a pair of discharge electrodes each arranged at a respective sealed end of said lamp envelope; d. means for connecting said discharge electrodes to a source of electric potential outside of said lamp envelope, whereby during lamp operation a gas discharge is maintained between said discharge electrodes, which gas discharge emits ultraviolet radiation; e. optionally, a first, light transmissive and ultraviolet radiation reflecting layer disposed adjacent said inner surface of said lamp envelope; f. a layer of a luminescent material comprising a phosphor derived from a mixture of (1) about 18% by weight of a blue-halo calcium halophosphate phosphor having an average particle size within the range of about 6.6 to about 10 microns; (2) about 41% by weight of a calcium-yellow calcium halophosphate phosphor having an average particle size within the range of about 9.0 to about 13 microns; and (3) about 41% by weight of fines of a warm-white calcium halophosphate phosphor, said phosphor mixture providing a cool-white color to the lamp.
- 11. A lamp as claimed in claim 10, wherein said envelope is convoluted and is selected from the group of envelopes comprising at least two leg segments joined by a bent-U section, and envelopes bent to a desired shape.
- 12. A lamp as claimed in claim 11, wherein said envelope comprises at least two leg segments joined by a bent-U section, and said blue halo phosphor has an average particle size of about 8.60 microns.
- 13. A lamp as claimed in claim 12, wherein said calcium-yellow calcium halophosphate phosphor has an average particle size of about 11.3 microns.
- 14. A lamp as claimed in claim 13, wherein said warm white fines have an average particle size of about 4.62 microns.
- 15. A phosphor blend which comprises:(1) a blue-halo calcium halophosphate phosphor having an average particle size within the range of about 6.6 to about 10 microns; (2) a calcium-yellow calcium halophosphate phosphor having an average particle size within the range of about 9.0 to about 13 microns; and (3) fines of a warm-white calcium halophosphate phosphor, said phosphor blend when incorporated as a layer of a luminescent material on an inner surface of a lamp being effective to lower mercury consumption in the lamp without substantial reduction of the lamp life.
- 16. A phosphor blend as claimed in claim 15, wherein said blue-halo phosphor has an average particle size of about 8.60 microns.
- 17. A phosphor blend as claimed in claim 15, wherein said calcium-yellow calcium halophosphate phosphor has an average particle size of about 11.3 microns.
- 18. A lamp as claimed in claim 15, wherein said warm white fines have an average particle size of about 4.62 microns.
- 19. A phosphor blend for low-mercury consumption fluorescent lamps which comprises:(1) about 18% by weight of a blue-halo calcium halophosphate phosphor having an average particle size within the range of about 6.6 to about 10 microns; (2) about 41% by weight of a calcium-yellow calcium halophosphate phosphor having an average particle size within the range of about 9.0 to about 13 microns; and (3) about 41% by weight of fines of a warm-white calcium halophosphate phosphor, said phosphor blend when incorporated as a layer of a luminescent material on an inner surface of a fluorescent lamp being effective to lower mercury consumption in the lamp without substantial reduction in the lamp life.
RELATED APPLICATION
This application is related to U.S. application Ser. No. 10/179,365, filed Jun. 24, 2002, of Gary Sigai and Snehasish Ghosh, “Low Pressure Mercury Vapor Fluorescent Lamps”, and commonly assigned herewith, the disclosure of which is incorporated by reference.
US Referenced Citations (7)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0239924 |
Oct 1987 |
EP |
0257554 |
Mar 1988 |
EP |