Claims
- 1. An AC color plasma display system comprising, in combination,an AC plasma display panel having first and second dielectrically insulated linear electrode arrays, said linear arrays being carried, respectively, on first and second substrates, and in transverse relation to each other, to define a matrix of display pixels in a display region, a plurality of linear ribs carried on the first substrate and in substantially parallel alignment with the first linear electrode array forming gas channels each aligned with a respective electrode in said first array, and providing an optical barrier in directions transverse to the direction of orientation of said linear ribs, a plurality of blue, green and red phosphor layers, respectively, phosphor layers on said ribs, said blue phosphor layer being on said ribs in every third one of said channels, respectively, said blue phosphor layer being on said ribs in every next third of said channels, respectively, and a blue phosphor layer on ribs in every next third of said channels, respectively, gas discharge medium in said channels and at a pressure, said gas on discharge being rich in UV, and seal means retaining said gas discharge medium in said channels, an interface circuit for receiving video signals from one of a selected plurality of video sources and producing, in digital form, pixel data, pixel clock, and horizontal and vertical synchronizing signals, and a gray scale drive system connected between said interface circuit and said AC plasma display panel, said gray scale drive system including blue, green, and red color channels and pixel-by-pixel gray scale control means within each color channel.
- 2. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical synchronizing signals, said interface circuit including a digitizer, said digitizer including image processing and memory circuits, to selectively capture video images.
- 3. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical synchronizing signals, said interface circuit including a digitizer, said digitizer including image processing and memory circuits, to selectively capture video graphics.
- 4. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical synchronizing signals, said interface circuit including a digitizer, said digitizer including image processing and memory circuits, to selectively capture video images and video graphics.
- 5. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical synchronizing signals, said interface circuit including a rescan converter, said rescan converter including image processing and memory circuits, to selectively capture video images.
- 6. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical synchronizing signals, said interface circuit including a rescan converter, said rescan converter including image processing and memory circuits, to selectively capture video graphics.
- 7. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical synchronizing signals, said interface circuit including a rescan converter, said rescan converter including image processing and memory circuits, to selectively capture video images and video graphics.
- 8. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical imaging signals, said interface circuit including, i) a digitizer, and ii) a rescan converter, said digitizer and said rescan converter including image processing and memory circuits, to selectively capture video images.
- 9. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical imaging signals, said interface circuit including, i) a digitizer, and ii) a rescan converter, said digitizer and said rescan converter including image processing and memory circuits, to selectively capture video graphics.
- 10. The AC color plasma display system defined in claim 1, and further including,a) an interface circuit, said interface circuit connected to receive video signals from one of a selected plurality of video sources to produce in digital form pixel data, pixel clock, and horizontal and vertical imaging signals, said interface circuit including, i) a digitizer, and ii) a rescan converter, said digitizer and said rescan converter including image processing and memory circuits, to selectively capture video images and video graphics.
- 11. The system defined in claim 1, wherein the pixel data is represented by bytes of N bits per pixel, which result in gray scales of 2N levels per pixel.
- 12. The system defined in claim 1, wherein the AC plasma color display panel is constructed with column electrodes in the ribbed substrate, and includes channels containing phosphors therein, with the ribbed substrate being the back, non-viewing side, of the display panel.
- 13. The system defined in claim 1, wherein the AC plasma color display panel is constructed with split row electrodes on the non-ribbed substrate, said non-ribbed substrate being the front of the display panel.
- 14. The system defined in claim 1, wherein said AC plasma color display panel is constructed with transparent electrodes including bus-bars on said non-ribbed substrate, said non-ribbed substrate being the front of said AC plasma color display panel.
- 15. The system defined in claim 1, wherein said plasma color display panel is constructed as a columnar discharge type display panel.
- 16. The system defined in claim 1, wherein said AC plasma color display panel is a surface discharge type AC plasma color display panel.
- 17. The system defined in claim 1, wherein it said AC plasma color display panel is in a high-definition television (HDTV) format.
- 18. The AC color plasma display system defined in claim 1, wherein said gray scale drive system includes a computer.
- 19. The AC color plasma display system defined in claim 1, wherein said gray scale drive system includes a TV receiver.
- 20. The AC color plasma display system defined in claim 1, wherein said gray scale drive system includes a camera.
- 21. The AC color plasma display system defined in claim 1, wherein said gray scale drive system includes a VCR.
- 22. The AC color plasma display system defined in claim 1, wherein said gray scale drive system includes one or more items selected from the group including a computer, TV receiver, camera, VCR.
- 23. A process for the manufacture of AC color plasma display devices includinga) applying an array of electrodes to a first substrate and an array of electrodes to a second substrate; b) applying at least one layer of a dielectric material over said array of electrodes on said first substrate and at least one layer of a dielectric material over said array of electrodes on said second substrate; c) forming in said dielectric layer of said first substrate, a multiplicity of ribs or barriers forming grooves, channels, or troughs, aligned with one of said electrode arrays; d) applying at least one layer of a protective undercoat over said at least one layer of dielectric materials including said first groove, channels, or troughs of said first substrate; e) applying phosphor within said grooves, channels, or troughs of said first substrate such that the phosphors in said channels emit a light of a different color then immediately adjacent left vertical or right vertical flanking channels so that the blue phosphor in every third channel is flanked by red and green channels, and said red channels in every third channel are flanked by blue and green channels, and said green channels in every third channel are flanked by red and blue channels; f) applying at least one layer of a protective overcoat over said dielectric, said protective undercoat, and said phosphor of said first substrate; g) positioning the dielectric face of said second substrate over said dielectric grooves, channels, or troughs of said first substrate, the array of electrodes on said second substrate being appropriately oriented relative to the array of electrodes on said first substrate so as to define a plurality of discrete cell sites; h) sealing said first substrate and said second substrate together; and i) filling said grooves, channels, or troughs, with an ionizable gas.
- 24. The process for the manufacture of AC color display panels defined in claim 23, and including:(a) receiving video signals from one of a selected plurality of video sources through an interface circuit and, (b) performing rescan conversions on said video signals, wherein the connection between said one of a plurality of video sources and the interface circuit is a stream of pixel data bytes, and associated pixel clock and horizontal and vertical synchronizing signals.
- 25. The method defined in claim 23, including providing the pixel data as bytes of N bits per pixel to produce gray scales of 2N levels per pixel.
- 26. The method defined in claim 23, and including the step of constructing the AC plasma color display panel with column electrodes in the ribbed substrate, to form channels containing phosphors therein, wherein the ribbed substrate is the back, non-viewing side, of the display panel.
- 27. The method defined in claim 23, including constructing said AC plasma color display panels with split row electrodes on the non-ribbed substrate, said non-ribbed substrate being the front of the display panel.
- 28. The method defined in claim 23, including the step of constructing said AC plasma color display panel with transparent electrodes, including bus-bars on the non-ribbed substrate, said non-ribbed substrate being the front of the display panel.
- 29. The method defined in claim 23, including this step of constructing the AC plasma color display panel as a columnar discharge type AC plasma color display panel.
- 30. The method defined in claim 23, including the step of constructing said AC plasma color display panel as a surface discharge type AC plasma color display panel.
- 31. The method defined in claim 23, including the step of constructing said AC plasma color display panel as a high-definition television (HDTV) AC plasma color display panel.
REFERENCE TO RELATED APPLICATION
This is a continuation of application Ser. No. 08/978,225 filed on Nov. 19, 1992; which is a continuation-in-part of Ser. No. 07/932,198, filed Aug. 21, 1992, now abandoned.
US Referenced Citations (6)
Continuations (2)
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Number |
Date |
Country |
Parent |
08/978225 |
Nov 1992 |
US |
Child |
09/004975 |
|
US |
Parent |
07/932198 |
Aug 1992 |
US |
Child |
08/978225 |
|
US |