Tapered fiber optic bundle metadisplay
A metadisplay comprising a plurality of subdisplays, each subdisplay comprising a microdisplay for displaying a subimage, and FTFOB having an FTFOB entrance end and an FTFOB exit end, wherein said entrance end is optically coupled to said microdisplay for transmitting said subimage from said entrance end to said exit end, whereby said exit end provides a subdisplay face with said subimage.
1 . A metadisplay comprising a plurality of subdisplays, each subdisplay comprising:
a microdisplay for displaying a subimage, and
an FTFOB having an FTFOB entrance end and an FTFOB exit end,
wherein said entrance end is optically coupled to said microdisplay for transmitting said subimage from said entrance end to said exit end, whereby said exit end provides a subdisplay face with said subimage.
2 . The metadisplay of claim 1 , wherein at least two of said plurality of said subdisplays have said subdisplay faces in close proximity.
3 . The metadisplay of claim 1 , wherein each of said plurality of subdisplays has said subdisplay face proximate to said subdisplay face of at least one other of said plurality of subdisplays.
4 . The metadisplay of claim 3 , further comprising a composite metadisplay face, said composite metadisplay face comprising substantially all of said subdisplay faces.
5 . The metadisplay of claim 4 , wherein said composite metadisplay face displays a metaimage comprising said subimage displayed on each of said plurality of subdisplays.
6 . The metadisplay of claim 5 , wherein said composite metadisplay face is substantially planar in extent.
7 . The metadisplay of claim 5 , wherein said composite metadisplay face is substantially concave in extent.
8 . The metadisplay of claim 5 , wherein said composite metadisplay face is substantially convex in extent.
9 . The metadisplay of claim 5 , wherein said composite metadisplay face is substantially of an arbitrary surface contour in extent.
10 . A metadisplay comprising a plurality of subdisplays, each subdisplay comprising:
a microdisplay for displaying a subimage, and
an FTFOB having an FTFOB entrance end and an FTFOB exit end,
wherein the area of said FTFOB entrance end is greater than the area of said FTFOB exit end, and
wherein said entrance end is optically coupled to said microdisplay for transmitting said subimage from said entrance end to said exit end, whereby said exit end provides a subdisplay face with said subimage.
11 . The metadisplay of claim 10 , wherein at least two of said plurality of said subdisplays have said subdisplay faces in close proximity.
12 . The metadisplay of claim 10 , wherein each of said plurality of subdisplays has said subdisplay face proximate to said subdisplay face of at least one other of said plurality of subdisplays.
13 . The metadisplay of claim 12 , further comprising a composite metadisplay face, said composite metadisplay face comprising substantially all of said subdisplay faces.
14 . The metadisplay of claim 13 , wherein said composite metadisplay face displays a metaimage comprising said subimage displayed on each of said plurality of subdisplays.
15 . The metadisplay of claim 14 , wherein said composite metadisplay face is substantially planar in extent.
16 . The metadisplay of claim 14 , wherein said composite metadisplay face is substantially concave in extent.
17 . The metadisplay of claim 14 , wherein said composite metadisplay face is substantially convex in extent.
18 . The metadisplay of claim 14 , wherein said composite metadisplay face is substantially of an arbitrary surface contour in extent.
19 . A metadisplay comprising a plurality of subdisplays, each subdisplay comprising:
a microdisplay for displaying a subimage, and
an FTFOB having an FTFOB entrance end and an FTFOB exit end,
wherein the area of said FTFOB entrance end is greater than the area of said FTFOB exit end, and
wherein said entrance end is optically coupled to said microdisplay for transmitting said subimage from said entrance end to said exit end, whereby said exit end provides a subdisplay face with said subimage, further characterized in that at least two of said plurality of said subdisplays have said subdisplay faces in close proximity, and
further comprising a composite metadisplay face, said composite metadisplay face comprising said subdisplay faces and wherein said composite metadisplay face displays a metaimage comprising said subimage displayed on each of said plurality of subdisplays, and wherein said composite metadisplay face is substantially of an arbitrary surface contour in extent.
20 . A metadisplay comprising a plurality of subdisplays, each subdisplay comprising:
a microdisplay for displaying a subimage, and
an FTFOB having an FTFOB entrance end and an FTFOB exit end,
wherein the area of said FTFOB entrance end is greater than the area of said FTFOB exit end, and
wherein said entrance end is optically coupled to said microdisplay for transmitting said subimage from said entrance end to said exit end, whereby said exit end provides a subdisplay face with said subimage, and wherein said optical coupling is achieved via optical coupling means comprising an optical faceplate, said optical faceplate being disposed between said microdisplay and said FTFOB entrance end.