Claims
- 1. A display apparatus having an optical material between a pair of substrates, and having a plurality of display pixel sections,
wherein each of the substrates has a glass substrate and a film that is attached to an outer surface of the glass substrate and has a thickness greater than a thickness of the glass substrate, at least one of the films is formed of a polarizer plate, and each of the glass substrate is formed to have a thickness that permits bending of the display apparatus.
- 2. The display apparatus according to claim 1, wherein the thickness of each of the glass substrates is 0.15 mm or less.
- 3. The display apparatus according to claim 2, wherein the display apparatus is formed to be bendable with a radius of curvature of 200 mm or less.
- 4. The display apparatus according to claim 1, wherein the optical material is a liquid crystal composition.
- 5. The display apparatus according to claim 1, wherein the optical material is an EL (electro-luminescence) material.
- 6. The display apparatus according to claim 1, wherein the display apparatus includes a spacer that is disposed between the pair of substrates, the spacer being fixed on at least one of the substrates.
- 7. The display apparatus according to claim 1, wherein each of the display pixel section includes a TFT (thin film transistor) and a pixel electrode, which are formed on one of the glass substrates.
- 8. The display apparatus according to claim 7, wherein the TFT includes a p-Si film (polysilicon film).
- 9. A display apparatus having a plurality of display pixel sections on one of major surfaces of a substrate,
wherein the substrate has a glass substrate and a polarizer plate that is disposed to extend to an end part of the glass substrate on the other major surface of the substrate, and has a thickness greater than a thickness of the glass substrate, and the glass substrate is formed to have a thickness that permits bending of the display apparatus.
- 10. The display apparatus according to claim 9, wherein the thickness of the glass substrate is 0.15 mm or less.
- 11. The display apparatus according to claim 10, wherein the display apparatus is formed to be bendable with a radius of curvature of 200 mm or less.
- 12. The display apparatus according to claim 10, wherein the thickness of the polarizer plate is 0.5 mm or less.
- 13. The display apparatus according to claim 9, wherein the display pixel section includes a switch element near an intersection of a signal line and a scan line that are disposed to be substantially perpendicular to each other on the glass substrate, and
the switch element is composed of a thin film transistor including a polysilicon film.
- 14. The display apparatus according to claim 13, wherein the display apparatus includes:
a signal line drive circuit that supplies a drive signal to the signal line; and a scan line drive circuit that supplies a drive signal to the scan line, and the signal line drive circuit and the scan line drive circuit are provided on the glass substrate.
- 15. The display apparatus according to claim 14, wherein the signal line drive circuit and the scan line drive circuit are composed of thin film transistors each including a polysilicon film.
- 16. A method of manufacturing a display apparatus having an optical material between a pair of glass substrates comprising:
(a) a step of attaching the pair of glass substrates together with a predetermined distance; (b) polishing an outer surface of each of the glass substrates to a thickness of 0.15 mm or less; (c) attaching a film to the outer surface of at least one of the glass substrates, the film having a thickness greater than a thickness of the glass substrate; and (d) cutting the film and the pair of glass substrates into a predetermined size.
- 17. The method of manufacturing a display apparatus, according to claim 16, further comprising, prior to the attaching step, a step of dropping a liquid crystal composition on one of the glass substrates.
- 18. The method of manufacturing a display apparatus, according to claim 16, further comprising, following the cutting step, a step of connecting the glass substrate, on which the film is not attached, to an external electrode terminal.
- 19. The method of manufacturing a display apparatus, according to claim 18, further comprising, following the connecting step, a step of attaching another film on the glass substrate.
- 20. A display apparatus comprising:
a display panel configured to hold a liquid crystal layer between an array substrate and a counter substrate; and a backlight unit that illuminates the display panel, wherein the array substrate includes: a first light-transmissive insulation substrate; a signal line and a scan line that are disposed to be substantially perpendicular to each other on one of major surfaces of the first light-transmissive insulation substrate; a switch element disposed near an intersection of the signal line and the scan line; and a pixel electrode connected to the switch element, the counter substrate includes: a second light-transmissive insulation substrate; and a counter electrode disposed on one of major surfaces of the second light-transmissive insulation substrate so as to face the pixel electrode, and polarizer plates are disposed respectively on the other major surfaces of the first light-transmissive insulation-substrate and the second light-transmissive insulation substrate, the polarizer plates having thicknesses greater than those of the first light-transmissive insulation substrate and the second light-transmissive insulation substrate.
- 21. A display apparatus comprising a display panel configured to hold a liquid crystal layer between an array substrate and a counter substrate,
wherein the array substrate includes: a first insulation substrate; a signal line and a scan line that are disposed to be substantially perpendicular to each other on one of major surfaces of the first insulation substrate; a switch element disposed near an intersection of the signal line and the scan line; and a reflective electrode connected to the switch element, the counter substrate includes: a second insulation substrate; and a counter electrode disposed on one of major surfaces of the second insulation substrate so as to face the reflective electrode, and a polarizer plate is disposed on the other major surface of the second insulation substrate, the polarizer plate having a thickness greater than a thickness of the second insulation substrate.
- 22. A display apparatus with a plurality of display-pixel sections, comprising:
an insulation substrate; a polarizer plate attached to the insulation substrate; and a touch panel that is attached to the polarizer plate and generates an input signal by sensing a position within a predetermined region.
- 23. A display apparatus comprising:
a first insulation substrate; a plurality of display pixel sections provided on one of major surfaces of the first insulation substrate; a second insulation substrate that is disposed to face the display pixel sections of the first insulation substrate; a polarizer plate that is attached to one of major surfaces of the second insulation substrate, which is opposite to the major surface that faces the display pixel sections; and a touch panel that is attached to the polarizer plate and generates an input signal by sensing a position within a predetermined region.
- 24. The display apparatus according to claim 22 or 23, wherein the polarizer plate has a thickness greater than a thickness of the insulation substrate.
- 25. The display apparatus according to claim 22 or 23, wherein the touch panel comprises:
a first substrate including a first conductor layer disposed in the predetermined region and a pair of first detection electrodes disposed on opposed two sides of the first conductor layer; a second substrate including a second conductor layer disposed in the predetermined region and a pair of second detection electrodes disposed on opposed two sides of the second conductor layer, which are perpendicular to the first detection electrodes; and holding means for holding the first substrate and the second substrate with a predetermined distance, and the first electrode is attached to the polarizer plate.
- 26. The display apparatus according to claim 22 or 23, wherein the display pixel section includes a display medium between a pair of electrodes.
- 27. The display apparatus according to claim 26, wherein the display pixel section includes a switch element near an intersection of a signal line and a scan line that are disposed to be substantially perpendicular to each other on the insulation substrate, and
the switch element is composed of a thin film transistor including a polysilicon film.
- 28. The display apparatus according to claim 27, wherein the display apparatus includes:
a signal line drive circuit that supplies a drive signal to the signal line; and a scan line drive circuit that supplies a drive signal to the scan line, and the signal line drive circuit and the scan line drive circuit are provided on the insulation substrate.
- 29. The display apparatus according to claim 28, wherein the signal line drive circuit and the scan line drive circuit are composed of thin film transistors each including a polysilicon film.
- 30. The display apparatus according to claim 26, further comprising a columnar spacer that creates a predetermined gap between the pair of electrodes of the display pixel section.
- 31. The display apparatus according to claim 22 or 23, wherein the insulation substrate on which the polarizer plate is disposed has a thickness of 0.15 mm or less.
- 32. A display apparatus comprising:
a display panel configured to hold a liquid crystal layer between an array substrate and a counter substrate; a backlight unit that illuminates the display panel; and a touch panel that generates an input signal by sensing a position within a predetermined region, wherein the array substrate includes: a first light-transmissive insulation substrate; a signal line and a scan line that are disposed to be substantially perpendicular to each other on one of major surfaces of the first light-transmissive insulation substrate; a switch element disposed near an intersection of the signal line and the scan line; and a pixel electrode connected to the switch element, the counter substrate includes: a second light-transmissive insulation substrate; and a counter electrode disposed on one of major surfaces of the second light-transmissive insulation substrate so as to face the pixel electrode, polarizer plates are disposed respectively on the other major surfaces of the first light-transmissive insulation substrate and the second light-transmissive insulation substrate, and the touch panel is attached to the polarizer plate on the second light-transmissive insulation substrate side.
- 33. A display apparatus comprising:
a display panel configured to hold a liquid crystal layer between an array substrate and a counter substrate; and a touch panel that generates an input signal by is sensing a position within a predetermined region, wherein the array substrate includes: a first light-transmissive insulation substrate; a signal line and a scan line that are disposed to be substantially perpendicular to each other on one of major surfaces of the first light-transmissive insulation substrate; a switch element disposed near an intersection of the signal line and the scan line; and a pixel electrode connected to the switch element, the counter substrate includes: a second light-transmissive insulation substrate; and a counter electrode disposed on one of major surfaces of the second light-transmissive insulation substrate so as to face the pixel electrode, a polarizer plate is disposed on the other major surface of the second light-transmissive insulation substrate, and the touch panel is attached to the polarizer plate.
- 34. A display apparatus with a plurality of display pixel sections, comprising:
an insulation substrate; a touch panel that is attached to the insulation substrate and generates an input signal by sensing a position within a predetermined region; and a polarizer plate attached to the touch panel.
- 35. A display apparatus with a plurality of display pixel sections, comprising:
an insulation substrate; a polarizer plate attached to the insulation substrate; and a backlight unit that is attached to the polarizer plate and illuminates the display pixel sections.
- 36. A display apparatus comprising:
an insulation substrate; a plurality of display pixel sections provided on one of major surfaces of the insulation substrate; a polarizer plate attached to the other major surface of the insulation substrate; and a backlight unit that is attached to the polarizer plate and illuminates the display pixel sections.
- 37. The display apparatus according to claim 35 or 36, wherein the polarizer plate has a thickness greater than a thickness of the insulation substrate.
- 38. The display apparatus according to claim 35 or 36, wherein the backlight unit includes a light source section and an optical sheet that imparts predetermined optical characteristics to light emitted from the light source section, and
the optical sheet is attached to the polarizer plate.
- 39. The display apparatus according to claim 35 or 36, wherein the backlight unit includes a planar light source section, and the planar light source section is attached to the polarizer plate.
- 40. The display apparatus according to claim 35 or 36, wherein the display pixel section includes a display medium between a pair of electrodes.
- 41. The display apparatus according to claim 40, wherein the display pixel section includes a switch element near an intersection of a signal line and a scan line that are disposed to be substantially perpendicular to each other on the insulation substrate, and
the switch element is composed of a thin film transistor including a polysilicon film.
- 42. The display apparatus according to claim 41, wherein the display apparatus includes:
a signal line drive circuit that supplies a drive signal to the signal line; and a scan line drive circuit that supplies a drive signal to the scan line, and the signal line drive circuit and the scan line drive circuit are provided on the insulation substrate.
- 43. The display apparatus according to claim 42, wherein the signal line drive circuit and the scan line drive circuit are composed of thin film transistors each including a polysilicon film.
- 44. The display apparatus according to claim 40, further comprising a columnar spacer that creates a predetermined gap between the pair of electrodes of the display pixel section.
- 45. The display apparatus according to claim 35 or 36, wherein the insulation substrate on which the polarizer plate is disposed has a thickness of 0.15 mm or less.
- 46. A display apparatus comprising:
a display panel configured to hold a liquid crystal layer between an array substrate and a counter substrate; and a backlight unit that illuminates the display panel, wherein the array substrate includes: a first light-transmissive insulation substrate; a signal line and a scan line that are disposed to be substantially perpendicular to each other on one of major surfaces of the first light-transmissive insulation substrate; a switch element disposed near an intersection of the signal line and the scan line; and a pixel electrode connected to the switch element, the counter substrate includes: a second light-transmissive insulation substrate; and a counter electrode disposed on one of major surfaces of the second light-transmissive insulation substrate so as to face the pixel electrode, polarizer plates are disposed respectively on the other major surfaces of the first light-transmissive insulation substrate and the second light-transmissive insulation substrate, and the backlight unit is attached to the polarizer plate on the first light-transmissive insulation substrate side.
Priority Claims (4)
Number |
Date |
Country |
Kind |
2002-143812 |
May 2002 |
JP |
|
2002-143813 |
May 2002 |
JP |
|
2002-143814 |
May 2003 |
JP |
|
2003-134349 |
May 2003 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation Application of PCT Application No. PCT/JP03/06071, filed May 15, 2003, which was not published under PCT Article 21 (2) in English.
[0002] This application is based upon and claims the benefit of priority from prior Japanese Patent Applications No. 2002-143812, filed May 17, 2002; No. 2002-143813, filed May 17, 2002; No. 2002-143814, filed May 17, 2002; and No. 2003-134349, filed May 13, 2003, the entire contents of all of which are incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP03/06071 |
May 2003 |
US |
Child |
10807186 |
Mar 2004 |
US |