Claims
- 1. An electric discharge lamp comprising:
an envelope having a first wall of a first wall material defining an enclosed first chamber including a first fill material; the first chamber being substantially surround by and sealed to a second wall of a second wall material defining an enclosed second chamber intermediate the first wall and the second wall, the second chamber including a second fill material; the first fill material being excitable to light emission of a first spectrum on the application of electric power, and the first wall material being light transmissive of at least a portion of the first spectrum; the second fill material having a gaseous state at least during lamp operation, and being excitable to light emission of a second spectrum on the application of energy from the first envelope, and being light transmissive of at least a portion of the first spectrum under operating conditions; and the second wall material being light transmissive of at least a portion of the first spectrum and of the second spectrum.
- 2. The lamp in claim 1, wherein the first fill material is excitable to light emission by microwave power.
- 3. The lamp in claim 1, wherein a first electrode extends in a sealed fashion from the exterior into the first chamber for conduction of electric power, without the first electrode contacting the second fill material.
- 4. The lamp in claim 3, wherein a second electrode similarly extends in a sealed fashion from the exterior into the first chamber for conduction of electric power, without the second electrode contacting the second fill material, and thereby support electric discharged between the first electrode and the second electrode in the first chamber.
- 5. The lamp in claim 1, where in the first spectrum includes ultraviolet light and visible light, the first wall material is transmissive of at least a portion of the ultraviolet light and the visible light; and the second fill material is excitable to visible light emission by at least a portion of transmitted ultraviolet light, and the second wall material is transmissive of at least a portion of the visible light emitted from the first chamber and of the visible light emitted from the second chamber.
- 6. The lamp in claim 1, where in the first spectrum includes first visible light and a second visible light, the first wall material is transmissive of at least a portion of the first visible light and the second visible light; and the second fill material is excitable to re-radiate visible light by at least a portion of transmitted first visible light, and the second wall material is transmissive of at least a portion of the second visible light emitted from the first chamber and of the re-radiated visible light emitted from the second chamber.
- 7. The lamp in claim 1, where in the first spectrum includes infrared light and a second visible light, the first wall material is transmissive of at least a portion of the infrared light and the second visible light; and the second fill material is excitable to re-radiate visible light by at least a portion of transmitted infrared light, and the second wall material is transmissive of at least a portion of the second visible light emitted from the first chamber and of the re-radiated infrared light emitted from the second chamber.
- 8. An electric discharge lamp, comprising:
a double jacketed lamp envelope with a sealed inner chamber of a first light transmissive wall material containing a first fill material that emits light when activated by electric power, and a separately sealed outer chamber between said double jackets, said outer chamber containing a second fill material that converts at least a portion of the light emitted from said inner chamber that is outside the visible spectrum to at least some light in the visible spectrum, which is then emitted by the second fill material from said outer chamber.
- 9. The lamp of claim 8, wherein said double jacketed bulb comprises an inner light transmissive jacket that defines said sealed inner chamber and an outer light transmissive jacket around a light transmissive portion of said inner jacket that defines said separately sealed outer chamber between said inner and outer jackets, said outer jacket being in thermally transmissive contact with said inner jacket.
- 10. The lamp of claim 8, wherein said second fill material is vaporizable by heat from said sealed inner chamber during normal operation of the lamp.
- 11. The lamp of claim 8, wherein said second fill material converts at least a portion of ultraviolet and deep blue light to at least some light in the visible spectrum.
- 12. The lamp of claim 8, wherein said second fill material comprises sulfur.
- 13. The lamp of claim 8, wherein said second fill material comprises selenium.
- 14. The lamp of claim 8, wherein said second fill material comprises tellurium.
- 15. The lamp of claim 8, wherein said second fill material comprises one of carbon disulfide, boron sulfide, phosphorus, mercury halides, a mixture of xenon with one of: HCl, AlCl3, sodium, or iodine vapor.
- 16. The lamp of claim 8, wherein said second fill material converts at least a portion of the light emitted by the first material with a wavelength less than 450 nanometers to at least some visible light with a wavelength greater than 450 nanometers.
- 17. The lamp of claim 8, wherein said sealed inner chamber is an electrodeless high intensity discharge lamp.
- 18. The lamp of claim 8, further comprising at least one electrode that extends into said sealed inner chamber.
- 19. An electric discharge lamp comprising:
a light transmissive inner jacket of a first wall material that defines a sealed inner chamber; a first fill material in said inner chamber that emits light and heat when activated; a light transmissive outer jacket around a light transmissive portion of said inner jacket and that defines a sealed outer chamber between said inner jacket and said outer jacket, said outer jacket being in thermally transmissive contact with said inner jacket; and a second fill material in said outer chamber that, when vaporized by the heat from said inner chamber when the lamp is operating, converts at least a portion of ultraviolet (UV) light emitted from said inner chamber to at least some visible light, thereby increasing an amount of visible light transmitted through said outer jacket from an amount of visible light transmitted through said inner jacket.
- 20. The lamp of claim 19, wherein said second fill material comprises one of sulfur, selenium, tellurium, carbon disulfide, boron sulfide, phosphorous, mercury halides, a mixture of xenon with one of: HCl, AlCl3, sodium, and or iodine vapor.
- 21. The lamp of claim 19, wherein said second fill material converts at least a portion of light with a wavelength less than 450 nanometers to at least some visible light with a wavelength greater than 450 nanometers.
- 22. The lamp of claim 19, wherein said sealed inner chamber is an electrodeless high intensity discharge lamp.
- 23. The lamp of claim 19, further comprising at least one electrode that extends into said sealed inner chamber.
- 24. A method of increasing an amount of visible light from lamp that has a light transmissive inner jacket that defines a sealed inner chamber containing a first fill material that emits light when energized, the method comprising the steps of:
providing a light transmissive outer jacket around the inner jacket so as to define a sealed outer chamber between the inner jacket and the outer jacket; and providing a second fill material in the outer chamber that, when vaporized by heat from the inner chamber when the lamp is operating, converts at least a portion of ultraviolet (UV) light emitted from the inner chamber to at least some visible light, thereby increasing an amount of visible light transmitted through the outer jacket from an amount of visible light transmitted through the inner jacket.
- 25. The lamp in claim 19, wherein the first wall material comprises a light transmitting ceramic.
- 26. The lamp in claim 19, wherein the first wall material comprises vitreous silica (quartz).
- 27. The lamp in claim 19, wherein the first wall material comprises polycrystalline alumina (PCA).
- 28. The lamp in claim 19, wherein the first wall material comprises polycrystalline yttria.
- 29. The lamp in claim 19, wherein the first wall material comprises yttria alumina garnet (YAG).
- 30. The lamp in claim 1, wherein the pressure of the second fill material during normal lamp operation is one atmosphere or less.
Parent Case Info
[0001] The Applicants hereby claim the benefit of their provisional application, Serial No. 60/342,348 filed Dec. 21, 2001 Dual Chambered High Intensity Discharge Lamp.
Provisional Applications (1)
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Number |
Date |
Country |
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60342348 |
Dec 2001 |
US |