IP Library › Granted Patent US 8,102,494
Granted Patent B2
US 8,102,494 · App. 11/950,607 · Granted Jan 24, 2012

Anti-reflection film and display device

Assignee: Semiconductor Energy Laboratory Co., Ltd.
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Quick Facts
Patent No.
US 8,102,494
App. No.
11/950,607
Granted
Jan 24, 2012
Kind
B2
Abstract

An anti-reflection film that can provide high visibility and has an anti-reflection function by which reflection of incident light from external can be further reduced, and a display device having such an anti-reflection film. A plurality of contiguous pyramidal projections is arranged in a geometric pattern, so that reflection of incident light is prevented. In addition, a protective layer formed of a material having a lower refractive index than the pyramidal projections is provided so as to fill a space between the plurality of pyramidal projections. The plurality of pyramidal projections has a hexagonal shape and can be densely arranged with no space therebetween. Further, since six sides of each pyramidal projection are provided at a different angle from the base, light can be effectively scattered in many directions.

Claims (84)

1. An anti-reflection film comprising:

a plurality of pyramidal projections at least including a first pyramidal projection and a second pyramidal projection adjacent to the first pyramidal projection; and

a protective layer having a lower refractive index than the plurality of pyramidal projections,

wherein each of the pyramidal projections has a hexagonal pyramidal shape,

wherein the plurality of pyramidal projections is arranged so that a side of a base of the first pyramidal projection is in contact with a side of a base of the second pyramidal projection,

wherein the protective layer is provided so as to fill a recess produced by the arrangement of the plurality of pyramidal projections, and

wherein a refractive index of the first pyramidal projection increases from an apex toward the base thereof.

2. The anti-reflection film according to claim 1 , wherein each of the pyramidal projections is surrounded by six adjacent pyramidal projections.

3. The anti-reflection film according to claim 1 , wherein an interval between apexes of the plurality of pyramidal projections is less than or equal to 350 nm and a height of each of the pyramidal projections is greater than or equal to 800 nm.

4. The anti-reflection film according to claim 1 ,

wherein a fill rate per unit area of an underlying surface with the bases of the plurality of pyramidal projections is greater than or equal to 80%.

5. An anti-reflection film comprising:

a plurality of pyramidal projections at least including a first pyramidal projection and a second pyramidal projection adjacent to the first pyramidal projection; and

a protective layer having a lower refractive index than the plurality of pyramidal projections,

wherein each of the pyramidal projections has a hexagonal pyramidal shape,

wherein apexes of the plurality of pyramidal projections are equally spaced from each other,

wherein the plurality of pyramidal projections is arranged so that a side of a base of the first pyramidal projection is in contact with a side of a base of the second pyramidal projection,

wherein the protective layer is provided so as to fill a recess produced by the arrangement of the plurality of pyramidal projections, and

wherein a refractive index of the first pyramidal projection increases from an apex toward the base thereof.

6. The anti-reflection film according to claim 5 , wherein each of the pyramidal projections is surrounded by six adjacent pyramidal projections.

7. The anti-reflection film according to claim 5 , wherein an interval between the apexes of the plurality of pyramidal projections is less than or equal to 350 nm and a height of each of the pyramidal projections is greater than or equal to 800 nm.

8. The anti-reflection film according to claim 5 , wherein a fill rate per unit area of an underlying surface with the bases of the plurality of pyramidal projections is greater than or equal to 80%.

9. An anti-reflection film comprising:

a plurality of pyramidal projections at least including a first pyramidal projection and a second pyramidal projection adjacent to the first pyramidal projection; and

a protective layer having a lower refractive index than the plurality of pyramidal projections,

wherein apexes of the plurality of pyramidal projections are equally spaced from each other,

wherein the plurality of pyramidal projections is arranged so that a side of a base of the first pyramidal projection is in contact with a side of a base of the second pyramidal projection,

wherein the protective layer is provided so as to fill a recess produced by the arrangement of the plurality of pyramidal projections, and

wherein a refractive index of the first pyramidal projection increases from an apex toward the base thereof.

10. The anti-reflection film according to claim 9 , wherein each of the pyramidal projections is surrounded by six adjacent pyramidal projections.

11. The anti-reflection film according to claim 9 , wherein an interval between the apexes of the plurality of pyramidal projections is less than or equal to 350 nm and a height of each of the pyramidal projections is greater than or equal to 800 nm.

12. The anti-reflection film according to claim 9 , wherein a fill rate per unit area of an underlying surface with the bases of the plurality of pyramidal projections is greater than or equal to 80%.

13. A display device comprising:

a pair of substrates, one of the pair of substrates being a light-transmissive substrate;

a display element provided between the pair of substrates;

a plurality of pyramidal projections at least including a first pyramidal projection and a second pyramidal projection adjacent to the first pyramidal projection, formed on an outer side of the light-transmissive substrate; and

a protective layer having a lower refractive index than the plurality of pyramidal projections,

wherein each of the pyramidal projections has a hexagonal pyramidal shape,

wherein the plurality of pyramidal projections is arranged so that a side of a base of the first pyramidal projection is in contact with a side of a base of the second pyramidal projection,

wherein the protective layer is provided so as to fill a recess produced by the arrangement of the plurality of pyramidal projections, and

wherein a refractive index of the first pyramidal projection increases from an apex toward the base thereof.

14. The display device according to claim 13 , further comprising a polarizing plate between the light-transmissive substrate and the plurality of pyramidal projections.

15. The display device according to claim 13 , wherein the display element is a light-emitting element.

16. The display device according to claim 13 , wherein the display element is a liquid crystal display element.

17. The display device according to claim 13 , wherein each of the pyramidal projections is surrounded by six adjacent pyramidal projections.

18. The display device according to claim 13 , wherein an interval between apexes of the plurality of pyramidal projections is less than or equal to 350 nm and a height of each of the pyramidal projections is greater than or equal to 800 nm.

19. The display device according to claim 13 , wherein a fill rate per unit area of a display screen with the bases of the plurality of pyramidal projections is greater than or equal to 80%.

20. A display device comprising:

a pair of substrates, one of the pair of substrates being a light-transmissive substrate;

a display element provided between the pair of substrates;

a plurality of pyramidal projections at least including a first pyramidal projection and a second pyramidal projection adjacent to the first pyramidal projection, formed on an outer side of the light-transmissive substrate; and

a protective layer having a lower refractive index than the plurality of pyramidal projections,

wherein each of the pyramidal projections has a hexagonal pyramidal shape,

wherein apexes of the plurality of pyramidal projections are equally spaced from each other,

wherein the plurality of pyramidal projections is arranged so that a side of a base of the first pyramidal projection is in contact with a side of a base of the second pyramidal projection,

wherein the protective layer is provided so as to fill a recess produced by the arrangement of the plurality of pyramidal projections, and

wherein a refractive index of the first pyramidal projection increases from an apex toward the base thereof.

21. The display device according to claim 20 , further comprising a polarizing plate between the light-transmissive substrate and the plurality of pyramidal projections.

22. The display device according to claim 20 , wherein the display element is a light-emitting element.

23. The display device according to claim 20 , wherein the display element is a liquid crystal display element.

24. The display device according to claim 20 , wherein each of the pyramidal projections is surrounded by six adjacent pyramidal projections.

25. The display device according to claim 20 , wherein an interval between the apexes of the plurality of pyramidal projections is less than or equal to 350 nm and a height of each of the pyramidal projections is greater than or equal to 800 nm.

26. The display device according to claim 20 , wherein a fill rate per unit area of a display screen with the bases of the plurality of pyramidal projections is greater than or equal to 80%.

27. A display device comprising:

a pair of substrates, one of the pair of substrates being a light-transmissive substrate;

a display element provided between the pair of substrates;

a plurality of pyramidal projections at least including a first pyramidal projection and a second pyramidal projection adjacent to the first pyramidal projection, formed on an outer side of the light-transmissive substrate; and

a protective layer having a lower refractive index than the plurality of pyramidal projections,

wherein apexes of the plurality of pyramidal projections are equally spaced from each other,

wherein the plurality of pyramidal projections is arranged so that a side of a base of the first pyramidal projection is in contact with a side of a base of the second pyramidal projection,

wherein the protective layer is provided so as to fill a recess produced by the arrangement of the plurality of pyramidal projections, and

wherein a refractive index of the first pyramidal projection increases from an apex toward the base thereof.

28. The display device according to claim 27 , further comprising a polarizing plate between the light-transmissive substrate and the plurality of pyramidal projections.

29. The display device according to claim 27 , wherein the display element is a light-emitting element.

30. The display device according to claim 27 , wherein the display element is a liquid crystal display element.

31. The display device according to claim 27 , wherein each of the pyramidal projections is surrounded by six adjacent pyramidal projections.

32. The display device according to claim 27 , wherein an interval between the apexes of the plurality of pyramidal projections is less than or equal to 350 nm and a height of each of the pyramidal projections is greater than or equal to 800 nm.

33. The display device according to claim 27 , wherein a fill rate per unit area of a display screen with the bases of the plurality of pyramidal projections is greater than or equal to 80%.

34. The anti-reflection film according to claim 1 , wherein a height of each of the pyramidal projections is five times or more larger than a base width of each of the pyramidal projections.

35. The anti-reflection film according to claim 5 , wherein a height of each of the pyramidal projections is five times or more larger than a base width of each of the pyramidal projections.

36. The anti-reflection film according to claim 9 , wherein a height of each of the pyramidal projections is five times or more larger than a base width of each of the pyramidal projections.

37. A display device according to claim 13 , wherein a height of each of the pyramidal projections is five times or more larger than a base width of each of the pyramidal projections.

38. A display device according to claim 20 , wherein a height of each of the pyramidal projections is five times or more larger than a base width of each of the pyramidal projections.

39. A display device according to claim 27 , wherein a height of each of the pyramidal projections is five times or more larger than a base width of each of the pyramidal projections.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2008
From: NISHIDA, JIRO; EGI, YUJI; NISHI, TAKESHI; YAMAZAKI, SHUNPEI
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 020424/0314 →
Priority Claims (1)
JP 2006-327789 · Dec 5, 2006 · national
Continuity (1)
Related Publication 20080129933A1 · Jun 5, 2008