Claims
- 1. A sign comprising a surface and an illuminated design coupled thereto, said illuminated design comprising:
a first electrode formed on said sign surface, said first electrode defining a first perimeter; a phosphor layer substantially aligned with said first electrode and defining a second perimeter, the second perimeter extending beyond the first perimeter of said first electrode; a conductor layer substantially aligned with said phosphor layer and defining a third perimeter; and an outlining electrode formed onto said sign surface and substantially circumscribing at least one of said second perimeter and third perimeter, said outlining electrode being configured to transport energy to said conductor layer.
- 2. A sign in accordance with claim 1 wherein said first electrode comprises a rear electrode, said rear electrode screen printed on said substrate as a forward image.
- 3. A sign in accordance with claim 1 further comprising a dielectric layer between said first electrode and said phosphor, said dielectric layer screen printed on said sign surface and said first electrode, said phosphor layer screen printed on said dielectric layer.
- 4. A sign in accordance with claim 1 wherein said second electrode is a front electrode, said front electrode screen printed on said sign surface as a forward image.
- 5. A sign in accordance with claim 1 wherein said second electrode includes a first portion, said second electrode screen printed on said sign surface such that said first portion of said second electrode contacts an outer perimeter of said conductor layer.
- 6. A sign comprising a surface and an illuminated design coupled thereto, said illuminated design comprising:
a first electrode formed on said sign surface, said first electrode defining a first perimeter; a dielectric layer screen printed onto said first electrode and sign surface, said dielectric layer being substantially aligned with said first electrode and defining a dielectric perimeter, the dielectric perimeter extending beyond the first perimeter of the first electrode, a phosphor layer formed on said dielectric layer and substantially aligned with said first electrode, the phosphor layer defining a second perimeter, the dielectric layer perimeter extending beyond the second perimeter of said phosphor layer to define an exposed dielectric layer; a sealing layer formed on at least a portion of said exposed dielectric layer to electrically seal the dielectric layer; a conductor layer substantially aligned with said phosphor layer and defining a third perimeter; and an outlining electrode formed onto the sealing layer and substantially circumscribing at least one of said second perimeter and third perimeter, said outlining electrode being configured to transport energy to said conductor layer.
- 7. A sign in accordance with claim 6 wherein said first electrode comprises a rear electrode, said rear electrode being screen printed on said substrate as a forward image.
- 8. A sign in accordance with claim 6 wherein at least one of said first electrode and outlining electrode is comprised of silver particles.
- 9. A sign in accordance with claim 8 wherein said dialectic layer is comprised of barium-titanate particles, and wherein said sealing layer comprises a barrier to prevent silver migration between said first electrode and said outlining electrode.
- 10. A sign comprising a surface and an illuminated design coupled thereto, said illuminated design comprising:
a first electrode formed on said sign surface; a phosphor layer substantially aligned with said first electrode and screen printed on said first electrode and said sign surface; a conductor layer substantially aligned with said phosphor layer and screen printed on said phosphor layer; a second electrode screen printed onto said sign surface and configured to transport energy to said indium tin oxide layer, and a reflective coating formed onto one of said sign surface, said first electrode and said second electrode, said reflective coating having an index of refraction in the range of 1.9 to 2.1.
- 11. A sign in accordance with claim 10 wherein the reflective coating is screen printed onto said sign surface.
- 12. A sign in accordance with claim 10 wherein the reflective coating is screen over the second electrode.
- 13. A sign in accordance with claim 10 wherein said first electrode defines a first perimeter; said phosphor layer defines a second perimeter extending beyond the first perimeter of said first electrode; said conductor defines a third perimeter and said second electrode substantially circumscribes at least one of said second perimeter and third perimeter, said outlining electrode being configured to transport energy to said conductor layer.
- 14. A method for forming an illuminated design on a substrate, said method comprising the steps of:
forming a first electrode on the substrate, the first electrode defining a first perimeter; forming a dielectric layer on the substrate and the first electrode, the dielectric layer extending beyond the first perimeter of the first electrode, forming a phosphor layer on the dielectric layer, the phosphor layer extending on less than the entire dielectric layer to define an exposed dielectric layer; forming a sealing layer on at least a portion of said exposed dielectric layer; forming a conductor layer on the phosphor layer; and forming a second outlining electrode on the sealing layer to transport energy to the conductor layer and phosphor layer.
- 16. A method in accordance with claim 14 wherein said step of forming a second outlining electrode comprises the step of screen printing a front electrode layer such that a portion of the front electrode layer contacts an outer perimeter of the conductor layer.
- 17. A method in accordance with claim 14 wherein the substrate is a sign having a front surface, said step of forming the first electrode on the substrate comprises the step of screen printing a rear electrode to the front surface of the sign.
- 18. A method in accordance with claim 14 wherein said step of forming a phosphor layer comprises the step of screen printing the phosphor layer onto the dielectric layer, the phosphor layer having substantially the same shape and size as the illuminated design.
- 19. A method in accordance with claim 14 wherein said step of forming a conductor layer over the phosphor layer comprises the step of screen printing a conductive ink over the phosphor layer as a forward image having substantially the same shape and size as the illuminated design.
- 20. A method in accordance with claim 14 further comprising the step of forming an ultraviolet coating on the substrate so that the ultraviolet coating substantially covers the conductor layer.
- 21. A method in accordance with claim 14 further comprising the step of forming an ultraviolet coating on the substrate before forming the rear electrode on the substrate.
- 22. A method in accordance with claim 14 further comprising the step of printing a background on the substrate.
- 23. A method in accordance with claim 14 further comprising the step of installing the substrate on a vending machine.
- 24. A method in accordance with claim 14 further comprising the step of installing the substrate on a bicycle helmet.
- 25. A method in accordance with claim 14 further comprising the step of installing the substrate on a slot machine.
- 26. A method in accordance with claim 14 further comprising the step of attaching the substrate to a road sign.
- 27. A method for forming an integral electroluminescent lamp and display sign, the display sign including a surface, said method comprising the steps of:
forming a first electrode on the surface of the sign; forming a conductor layer on the first electrode and the surface of the sign; screen printing a phosphor layer on the conductor layer; forming a second electrode on the sign surface and the phosphor layer; and forming a reflective coating on the sign surface and second electrode.
- 28. A method in accordance with claim 27 wherein the step of forming a first electrode comprises the step of screen printing the first electrode to the surface of the sign.
- 29. A method in accordance with claim 27 wherein the sign is fabricated from substantially clear plastic and includes a rear surface, and wherein the step of forming a first electrode on the surface of the sign comprises the step of screen printing a front electrode on the rear surface of the sign.
- 30. A method in accordance with claim 29 wherein the sign further includes an illumination area, said method further comprising the step of screen printing a background layer over the sign surface, the background layer including an illumination portion substantially aligned with the illumination area.
- 31. A method in accordance with claim 30 wherein said step of forming a first electrode comprises the step of screen printing a first electrode onto the sign surface such that the first electrode contacts an outer perimeter of the illumination portion.
- 32. A method in accordance with claim 27 wherein said step of forming a conductor layer comprises the step of screen printing a layer of indium tin oxide onto the sign surface.
- 33. A method in accordance with claim 27 wherein said step of forming a conductor layer comprises the step of screen printing a layer of a nonmetallic conductor onto the sign surface.
- 34. A method in accordance with claim 33 wherein said step of forming a conductor layer comprises the step of screen printing a transparent and translucent layer of a non-metallic conductor onto the sign surface.
- 35. A method in accordance with claim 33 wherein said step of screen printing a layer of non-metallic conductor onto the sign surface comprises the step of screen printing a layer of poly-phenylene-amine-imine onto the sign surface.
- 36. A method in accordance with claim 27 wherein said step of forming a second electrode comprises the step of screen printing a rear electrode onto the phosphor layer.
- 37. A method in accordance with claim 27 further comprising the step of screen printing a UV coating to the sign rear surface over the first electrode, the conductor layer, the phosphor layer, and the second electrode layer.
- 38. A method in accordance with claim 27 further comprising an initial step of printing a background substrate onto the surface of the sign.
RELATED APPLICATIONS
[0001] The following application is a continuation-in-part of patent application Ser. No. 09/548,560, which is a continuation-in-part of U.S. Pat. No. 6,203,391.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09548560 |
Apr 2000 |
US |
Child |
09815077 |
Mar 2001 |
US |