Claims
- 1. A plasma display panel having first and second substrates, comprising:a first electrode on the first substrate; a first dielectric layer on the first substrate including the first electrode; a plurality of second electrodes completely buried in the first dielectric layer; a second dielectric layer on the first dielectric layer including the first electrode; a third dielectric layer on the second substrate; a plurality of UV visible photon conversion layers on the third dielectric layer; a plurality of barrier ribs between each of the UV visible photon conversion layers and connecting the first and second substrates; and a discharge chamber between the first and second substrates defined by the barrier ribs, wherein the first dielectric layer includes at least one trench type discharge space exposing a portion of the first electrode to the discharge chamber.
- 2. The plasma display panel according to claim 1, wherein the second dielectric layer is formed of magnesium oxide.
- 3. The plasma display panel according to claim 1, wherein the exposed portion of the first electrode in the trench type discharge space is completely coated with the second dielectric layer.
- 4. The plasma display panel according to claim 1, wherein the first electrode acts as an address electrode.
- 5. The plasma display panel according to claim 1, wherein the first electrode is formed of indium tin oxide.
- 6. The plasma display panel according to claim 1, wherein the trench type discharge space has a dimension of 80 to 150 μm×240 μm.
- 7. The plasma display panel according to claim 1, wherein the trench type discharge space includes a cylindrical type discharge space.
- 8. The plasma display panel according to claim 7, wherein the cylindrical type discharge space has a diameter in the range of 80 to 150 μm.
- 9. The plasma display panel according to claim 1, wherein the second electrodes act as sustain electrodes.
- 10. The plasma display panel according to claim 1, wherein the first substrate is a viewing panel.
- 11. The plasma display panel according to claim 1, wherein the UV visible photon conversion layers are formed of phosphor.
- 12. The plasma display panel according to claim 1, further comprising a third electrode between each of the trench type discharge spaces, the third electrode being substantially parallel to the barrier ribs.
- 13. The plasma display panel according to claim 12, wherein the third electrode acts as a bus electrode.
- 14. The plasma display panel according to claim 13, wherein the third electrode is formed of silver.
- 15. The plasma display panel according to claim 1, wherein the first dielectric layer is formed of lead oxide.
- 16. The plasma display according to claim 1, wherein the third dielectric layer is formed of a white dielectric layer.
- 17. The plasma display panel according to claim 1, wherein the panel is operated by an AC voltage in the range of 100 to 300 V.
- 18. A plasma display panel having first and second substrates, comprising:a plurality of UV visible photon conversion layers on the first substrate; a plurality of barrier ribs between each of the UV visible photon conversion layers; a first electrode on the second substrate; a first dielectric layer on the second substrate including the first electrode; a plurality of second electrodes completely buried in the first dielectric layer; a second dielectric layer on the first dielectric layer; and a discharge chamber between the first and second substrates defined by the barrier ribs connecting the first and second substrates, wherein the first dielectric layer has at least one trench type discharge space exposing a portion of the first electrode to the discharge chamber.
- 19. The plasma display panel according to claim 18, wherein the first electrode reflects UV light to a direction of the first substrate.
- 20. The plasma display panel according to claim 18, wherein the first electrode is formed of aluminum.
- 21. The plasma display panel according to claim 18, wherein the second dielectric layer is formed of magnesium fluoride.
- 22. The plasma display panel according to claim 18, wherein the first dielectric layer is formed of lead oxide.
- 23. The plasma display panel according to claim 18, wherein the exposed portion of the first electrode is completely coated with the second dielectric layer.
- 24. The plasma display panel according to claim 18, wherein the trench type discharge space has a dimension of 80 to 150 μm×240 am.
- 25. The plasma display panel according to claim 18, wherein the trench type discharge space includes a cylindrical type discharge space.
- 26. The plasma display panel according to claim 25, wherein the cylindrical type discharge space has a diameter in the range of 80 to 150 μm.
- 27. The plasma display panel according to claim 18, wherein the first substrate a viewing panel.
- 28. The plasma display panel according to claim 18, wherein the UV visible photon conversion layers are formed of phosphor.
- 29. The plasma display panel according to claim 18, wherein the second electrodes act as sustain electrodes.
- 30. The plasma display panel according to claim 18, wherein the panel is operated by an AC voltage in the range of 100 to 300 V.
- 31. A method of fabricating a plasma display panel having first and second substrates, the method comprising the steps of:forming a first electrode on the first substrate; forming a first dielectric layer on the first substrate including the first electrode; forming a plurality of second electrodes in the first dielectric layer, the second electrodes being completely buried in the first dielectric layer; forming a second dielectric layer on the first dielectric layer including the second electrodes; forming a reflection layer on the second substrate; forming a UV visible photon conversion layer on the reflection layer; forming at least one trench type discharge space in the first and second dielectric layers exposing a portion of the first electrode in the trench type discharge space to the UV visible photon conversion layer; and forming a plurality of barrier ribs connecting the first and second substrates, thereby defining a discharge chamber between the first and second substrates.
- 32. The method according to claim 31, wherein the reflection layer includes a white dielectric layer.
- 33. The method according to claim 31, further comprising the step of forming a bus electrode on the first electrode after the step of forming a first electrode.
- 34. The method according to claim 31, wherein the first electrode is formed of indium tin oxide.
- 35. The method according to claim 31, wherein the step of forming at least one trench type discharge space in the first and second dielectric layers includes laser machining or etching.
- 36. The method according to claim 31, wherein the trench type discharge space has a dimension of 80 to 150 μm×240 μm.
- 37. A method of fabricating a plasma display panel having first and second substrates, the method comprising the steps of:forming a UV visible photon conversion layer on the first substrate; forming a first electrode on the second substrate; forming a first dielectric layer on the second substrate including the first electrode; forming a plurality of second electrodes on the first dielectric layer; forming a second dielectric layer on the first dielectric layer including the second electrodes; forming at least one trench type discharge space in the first and second dielectric layers exposing a portion of the first electrode in the trench type discharge space to the UV visible conversion layer; and forming a plurality of barrier ribs connecting the first and second substrates, thereby defining a discharge chamber between the first and second substrates.
- 38. The method according to claim 37, wherein the step of forming at least one trench type discharge space in the first and second dielectric layers includes laser machining or etching.
- 39. The method according to claim 37, wherein the second dielectric layer is formed of magnesium fluoride.
- 40. The method according to claim 37, wherein the first dielectric layer is formed of lead oxide.
- 41. The method according to claim 37, wherein the first electrode is formed of aluminum.
- 42. The method according to claim 37, wherein the trench type discharge space has a dimension of 80 to 150 μm×240 μm.
Parent Case Info
This application claims the benefit of a provisional application, entitled “Plasma Display Panel Device Having Trench Discharge Space and Method of Fabricating the Same,” which was filed May 22, 2000, and assigned Provisional Application No. 60/205,565, which is hereby incorporated by reference.
US Referenced Citations (9)
Provisional Applications (1)
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Number |
Date |
Country |
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60/205565 |
May 2000 |
US |