Claims
- 1. A flat-panel evacuated display having a face plate assembly which includes a substrate having array of spacer support structures formed by a method comprising:
providing a laminar template having a pair of major planar faces and an array of mold holes perpendicular to the major planar faces, each mold hole corresponding to a desired location of a spacer support structure; providing a manifold block having at least one generally planar surface and an array of mating ports on said planar surface, each such port mating with an adjacent major surface of said laminar template and aligning with at least one mold hole in said template; forming a temporary structure by sandwiching and sealing said laminar template between said substrate and the planar surface of said manifold block; heating said substrate to a state of plasticity for at least one pressure condition; creating a pressure differential between the ambient atmosphere surrounding the temporary structure and the pressure within the mold holes, the pressure within the mold holes being less than that of the ambient atmosphere, the pressure differential causing each of the mold holes to fill with material from the substrate; and removing the face plate assembly from the laminar template.
- 2. The flat-panel evacuated display of claim 1, wherein the process further comprises:
cooling at least the substrate for allowing the substrate to below a temperature at which the substrate material is plastic at said at least one pressure condition and the substrate material within the mold holes to solidify the substrate material which is plastic; and removing the laminar substrate and protruding spacer support structures from the laminar template.
- 3. The flat-panel evacuated display of claim 1, wherein the process further comprises:
removing flashing material from a portion of at least one spacer support structure that is most distant from the laminar face plate, said flashing material having entered a mating port during the forming of the spacer support structures; and flashing material being integral with the spacer support structure.
- 4. The flat-panel evacuated display of claim 1, wherein the method process includes mating ports, each of which partially restricts an opening of each mold hole to which it is aligned.
- 5. The flat-panel evacuated display of claim 3, wherein the flashing material removal includes a polishing operation.
- 6. The flat-panel evacuated display of claim 1, wherein creating the pressure differential includes applying a partial vacuum to each mold hole via the mating ports, each mating port being aligned to at least one mold hole.
- 7. The flat-panel evacuated display of claim 1, wherein the heating the substrate includes heating the substrate within an oven chamber.
- 8. The flat-panel evacuated display of claim 7, wherein the oven chamber includes a oven for hermetically sealing and for pressurizing for increasing the pressure differential.
- 9. The flat-panel evacuated display of claim 8, wherein the oven chamber includes an oven for pressuring using a compressor pump connected to the oven chamber.
- 10. The flat-panel evacuated display of claim 1, wherein each mold hole includes a tapered hole having a taper within a range of about 0.5 degrees to 2 degrees from a line normal to the major planar faces of the laminar template.
- 11. The flat-panel evacuated display of claim 1, wherein each mold hole includes a mold hole lined with a layer that is selectively etchable with respect to the substrate material and the laminar template.
- 12. The flat-panel evacuated display of claim 1, wherein the substrate includes a generally laminar silicate glass substrate.
- 13. The flat-panel evacuated display of claim 12, further including heating a laminar substrate in a temperature range from about 600° C. to 1,000° C.
- 14. The flat-panel evacuated display of claim 1, wherein the laminar template employed to fabricate the face plate assembly includes a template formed from at least one material selected from the group of materials consisting of ceramic compounds, metals and metal alloys having a melting point greater than 1000° C., and graphite.
- 15. A flat-panel display having a face plate assembly having a face plate having edges in a manufacturing method comprising:
a laminar template having a pair of major planar faces and an array of mold holes perpendicular to the major planar faces, each mold hole corresponding to a desired location of a spacer support structure; a manifold block having at least one generally planar surface and an array of mating ports on said planar surface, each such port mating with an adjacent major surface of said laminar template and aligning with at least one mold hole in said laminar template; a structure for sealing and sandwiching said laminar template between said face plate and the planar surface of said manifold block for heating said face plate to a state of plasticity during at least one pressure condition and for creating a pressure differential between the ambient atmosphere surrounding the structure and the pressure within the mold holes, the pressure within the mold holes being less than that of the ambient atmosphere, the pressure differential causing each of the mold holes to fill with material from the face plate; and spacer support structures protruding from the face plate formed from material continuously drawn from the face plate into the mold holes of the laminar template.
- 16. The flat-panel display of claim 15, wherein each spacer support structure includes a tapered structure having a cross-sectional area greater nearest the face plate.
- 17. The flat-panel display of claim 15, wherein at least some of said spacer support structures include tapered columns.
- 18. The flat-panel display of claim 15, wherein each spacer support structure includes a column having uniform cross-sectional area throughout its length.
- 19. The flat-panel display of claim 15, which further comprises a base plate assembly having edges, said base plate assembly being maintained at a uniform distance within a range of 200 to 700 microns from the face plate by the spacer support structures.
- 20. The flat-panel display of claim 19, wherein the edges of said face plate assembly include edges sealed to the edges of said base plate assembly for forming an evacuable chamber.
- 21. The flat-panel display of claim 19, wherein said base plate assembly includes multiple micro cathode emitters.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of application Ser. No. 09/639,423, filed Aug. 14, 2000, pending, which is a divisional of application Ser. No. 08/795,752, filed Feb. 6, 1997, now U.S. Pat. No. 6,101,846, issued Aug. 15, 2000.
Divisions (1)
|
Number |
Date |
Country |
Parent |
08795752 |
Feb 1997 |
US |
Child |
09639423 |
Aug 2000 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09639423 |
Aug 2000 |
US |
Child |
10186552 |
Jul 2002 |
US |