IP Library › Granted Patent US 10,527,775
Granted Patent B2
US 10,527,775 · App. 15/196,059 · Granted Jan 7, 2020

Optical substrates having light collimating and diffusion structures

Inventors: Ching-An Yang (Dasi Town, TW); Han-Tsung Pan (Dasi Town, TW)
Assignee: UBRIGHT OPTRONICS CORPORATION
G02B6/0053B26D3/06B29C33/3842B29C33/424B29C59/026B29D11/00278B29D11/00798G02B3/0043G02B3/0068G02B5/0215G02B5/0221G02B5/0278G02B6/0051G02B6/0058G02B27/30G02F1/133504B29C2035/0827B29C2059/023B29L2011/00B29L2011/0016G02F2001/133607
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Quick Facts
Patent No.
US 10,527,775
App. No.
15/196,059
Granted
Jan 7, 2020
Kind
B2
Abstract

This invention discloses a method of forming an uneven structure on a substrate. Use a hard tool to penetrate into a mold to cut a first trench and a second trench in an order on a surface of a mold, wherein the hard tool has a smoothly-curved shape such that the transverse width of each of the first trench and the second trench increases as the penetrating depth of the hard tool increases, wherein when each of the first trench and the second trench marches along a first direction, the penetrating depth of the hard tool is controlled by repeating moving the hard tool up and down to cut the mold such that the transverse width of each of the first trench and the second trench varies according to the controlled penetrating depth of the hard tool, wherein the first trench and the second trench completely overlap with each other with no space therebetween. Then, use the surface of the mold to emboss a thin film on a substrate.

Claims (26)

1. An optical sheet, comprising:

a substrate having a first surface and a second surface opposite to the first surface; and

a film having a third surface and a fourth surface opposite to the third surface, wherein the third surface of the film is on the first surface of the substrate and the fourth surface of the film comprises a plurality of lenticular segments each of which does not extend from a first edge of the substrate to a second edge of the substrate opposite to the first edge of the substrate, wherein each first lenticular segment of the plurality of lenticular segments is enclosed by a plurality of second lenticular segments arranged in a closed path and each of the plurality of second lenticular segments overlaps the corresponding first lenticular segment, wherein the overall exposed surface of each first lenticular segment of the plurality of lenticular segments is a roughed surface.

2. The optical sheet according to claim 1 , wherein the roughed surface of each of the plurality of first lenticular segments has a plurality of convex features thereon.

3. The optical sheet according to claim 2 , wherein the size of the first lenticular segment is larger than the size of the convex feature.

4. The optical sheet according to claim 1 , wherein the roughed surface of each of the plurality of first lenticular segments has a plurality of concave features thereon.

5. The optical sheet according to claim 4 , wherein the size of the first lenticular segment is larger than the size of the concave feature.

6. The optical sheet according to claim 1 , wherein each two adjacent lenticular segments overlap so as to have no space therebetween.

7. The optical sheet according to claim 1 , wherein the first surface of the substrate is a major light input surface and the second surface the substrate is a major light output surface.

8. The optical sheet according to claim 7 , further comprising a prismatic structure disposed on the second surface of the substrate, wherein the prismatic structure comprises a plurality of prisms each of which extends substantially in a first direction.

9. The optical sheet according to claim 1 , wherein each of the plurality of lenticular segments has an elliptic-like projection on the first surface of the substrate.

10. An optical sheet, comprising:

a substrate having a first surface and a second surface opposite to the first surface;

a prismatic structure disposed on the second surface of the substrate, wherein the prismatic structure comprises a plurality of prisms each of which extends substantially in a first direction; and

a film having a third surface and a fourth surface opposite to the third surface, wherein the third surface of the film is on the first surface of the substrate and the fourth surface of the film comprises a plurality of light-diffusing elements each of which does not extend from a first edge of the substrate to a second edge of the substrate opposite to the first edge of the substrate, wherein each first light-diffusing element of the plurality of light-diffusing elements is enclosed by a plurality of second light-diffusing elements arranged in a closed path and each of the plurality of second light-diffusing elements overlaps the corresponding first light-diffusing element, wherein the overall exposed surface of each first light-diffusing element of the plurality of light-diffusing elements is a roughed surface.

11. An optical sheet, comprising:

a substrate having a first surface and a second surface opposite to the first surface; and

a film having a third surface and a fourth surface opposite to the third surface, wherein the third surface of the film is on the first surface of the substrate and the fourth surface of the film comprises a plurality of lenticular segments each of which does not extend from a first edge of the substrate to a second edge of the substrate opposite to the first edge of the substrate, wherein each first lenticular segment of the plurality of lenticular segments is enclosed by a plurality of second lenticular segments arranged in a closed path, wherein each first lenticular segment of the plurality of lenticular segments has a top and an enclosed valley region formed by each of the plurality of second lenticular segments overlapping the corresponding first lenticular segment, wherein the overall exposed surface of each of the plurality of first lenticular segments is roughed from the top to the enclosed valley region.

12. The optical sheet according to claim 11 , wherein each of the plurality of lenticular segments has an elliptic-like projection on the first surface of the substrate.

13. The optical sheet according to claim 11 , wherein each two adjacent lenticular segments overlap so as to have no space therebetween.

14. The optical sheet according to claim 11 , wherein the first surface of the substrate is a major light input surface and the second surface the substrate is a major light output surface.

15. The optical sheet according to claim 14 , further comprising a prismatic structure disposed on the second surface of the substrate, wherein the prismatic structure comprises a plurality of prisms each of which extends substantially in a first direction.

16. The optical sheet according to claim 11 , wherein the roughed surface of each of the plurality of first lenticular segments has a plurality of convex features thereon.

17. The optical sheet according to claim 16 , wherein the size of the first lenticular segment is larger than the size of the convex feature.

18. The optical sheet according to claim 11 , wherein the roughed surface of each of the plurality of first lenticular segments has a plurality of concave features thereon.

19. The optical sheet according to claim 18 , wherein the size of the first lenticular segment is larger than the size of the concave feature.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2016
From: YANG, CHING-AN; PAN, HAN-TSUNG
To: UBRIGHT OPTRONICS CORPORATION
Reel/Frame 039439/0237 →
Continuity (7)
Continuation 14870008 · Sep 30, 2015
Continuation In Part 14469572 · Aug 26, 2014
Continuation In Part 14166842 · Jan 28, 2014
Continuation In Part 13073859 · Mar 28, 2011
Provisional Application 61318061 · Mar 26, 2010
Provisional Application 61406094 · Oct 22, 2010
Related Publication 20160341883A1 · Nov 24, 2016
Cited By (9)
US 12,228,835 US 12,253,748 US 12,259,608 US 12,366,701 US 12,392,949 US 12,393,066 US 12,523,899 US 12,587,618 US 12,650,627