Claims
- 1. A display device comprising:
- a pair of opposed spaced apart substrates at least one of which is transparent;
- an electrode disposed on the interior surface of each of the substrates, the electrode on the transparent substrate being itself transparent;
- a display material enclosed between the substrates; and
- wherein the transparent electrode is about ((5500.times.N)/(2.times.n)).ANG. thick, wherein N is a natural number and n is the refractive index of the transparent electrode.
- 2. The display device of claim 1, wherein the display material is an electro-optical material.
- 3. The display device of claim 1, wherein the display material is an electro-chromic material.
- 4. The display device of claim 1, wherein the display material is a liquid crystal material.
- 5. The display device of claim 4, wherein the liquid crystal material has a refractive index of 1.53 in the short axis direction and a birefringent index of 0.21.
- 6. The display device of claim 1, further including a transparent insulating film formed on the transparent electrode.
- 7. The display device of claim 1, wherein the transparent substrate is soda lime glass coated with silicon dioxide.
- 8. The display device of claim 6, wherein the transparent electrode is an indium oxide and tin oxide film having a refractive index, n, of 1.8.
- 9. The display device of claim 8, wherein the indium oxide and tin oxide film is deposited by sputtering.
- 10. The display device of claim 7, wherein the transparent electrode is tin oxide doped with antimony oxide and the refractive index of the transparent electrode is 2.2.
- 11. The display device of claim 1, wherein the transparent substrate is soda lime glass having a refractive index, n, of 1.52.
- 12. The display device of claim 11, wherein the transparent electrode is an indium oxide and tin oxide film having a refractive index, n, of 1.8.
- 13. The display device of claim 12, further including a transparent insulating film disposed on the transparent electrode.
- 14. The display device of claim 13, wherein the transparent insulating film is silicon dioxide having a refractive index of 1.45.
- 15. The display device of claim 14, wherein both the indium oxide and tin oxide film and the silicon dioxide transparent insulating film are formed by sputtering.
- 16. The display device of claim 13, wherein the transparent insulating film is a polyimide resin having a refractive index of 1.7.
- 17. The display device of claim 13, wherein the transparent insulating film is 50% by weight of silicon dioxide and by weight of tantalum pentaoxide and the transparent insulating film has a refractive index of 1.7.
- 18. A display device comprising:
- a pair of opposed substrates having electrodes formed on the interior surfaces thereof, at least one of the substrates being transparent;
- a transparent electrode formed on the internal surface of the transparent substrate;
- a transparent insulating film formed on the transparent electrode selected so that the refractive index n.sub.1 of the transparent insulating film is substantially identical to the refractive index n.sub.2 of the transparent electrode and the value of 2.times.(n.sub.1 .times.d.sub.1 .times.n.sub.2 .times.d.sub.2) is about (5500.times.N) .ANG., wherein N is a natural number, d.sub.1 represents the thickness of the transparent insulating film and d.sub.2 represents the thickness of the transparent electrode.
- 19. The display device of claim 18, wherein the display medium layer is formed of an electro-optical material.
- 20. The display device of claim 18, wherein the display medium layer is formed of an electro-chromic material.
- 21. The display device of claim 18, wherein the display medium layer is formed of a liquid crystal material.
- 22. The display device of claim 21, wherein the liquid crystal material has a refractive index of 1 53 in the short axis direction and a birefringent index of 0.21.
- 23. The display device of claim 18, wherein the transparent substrate is soda lime glass coated with silicon dioxide.
- 24. The display device of claim 23, wherein the transparent electrode is an indium oxide and tin oxide film having a refractive index, n, of 1.8.
- 25. The display device of claim 24, wherein the indium oxide and tin oxide film is deposited by sputtering.
- 26. The display device of claim 24, wherein the transparent insulating film is silicon dioxide having a refractive index of 1.45.
- 27. The display device of claim 26, wherein both the indium oxide and tin oxide electrode film and the silicon dioxide transparent insulating film are formed by sputtering.
- 28. The display device of claim 23, wherein the transparent electrode is tin oxide doped with antimony oxide and the refractive index of the transparent electrode is 2.2.
- 29. The display device of claim 18, wherein the transparent substrate is soda lime glass having a refractive index, n, of 1.52.
- 30. The display device of claim 29, wherein the transparent electrode is an indium oxide film having a refractive index, n, of 1.8.
- 31. The display device of claim 18, wherein the transparent insulating film is a polyimide resin having a refractive index of 1.7.
- 32. The display device of claim 18, wherein the transparent insulating film is 50% by weight of silicon dioxide and 50% by weight of tantalum pentoxide and has a refractive index of 1.7.
- 33. A display device comprising:
- a pair of opposed substrates having electrodes formed on the interior surfaces thereof, at least one of the substrates being transparent;
- a display medium layer between the substrates;
- a transparent electrode having a refractive index n.sub.0 and a thickness d.sub.0 formed on the internal surface of the transparent substrate:
- at least one transparent insulating film formed on the transparent electrode and having refractive indices, n.sub.1, n.sub.2, . . . n.sub.p, which are substantially identical to the refractive index n.sub.0 of the transparent electrode and wherein the thicknesses, d.sub.1, d.sub.2, . . . d.sub.p, of the transparent electrode and the transparent insulating film layers satisfy the equation: ##EQU4## wherein N is a natural number and p is the of transparent insulating film layers.
Priority Claims (3)
Number |
Date |
Country |
Kind |
60-15848 |
Jan 1985 |
JPX |
|
60-15849 |
Jan 1985 |
JPX |
|
60-153691 |
Jul 1985 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a continuation-in-part of copending U.S. patent application Ser. No. 824,028, filed Jan. 30, 1986.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
4248502 |
Bechteler et al. |
Feb 1981 |
|
4309083 |
Duchene et al. |
Jan 1982 |
|
4505547 |
Sekimura |
Mar 1985 |
|
4737018 |
Iwashita et al. |
Apr 1988 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
824028 |
Jan 1980 |
|