IP Library Granted Patent US 8,079,743
Granted Patent B2
US 8,079,743 · App. 11/474,187 · Granted Dec 20, 2011

Display backlight with improved light coupling and mixing

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Quick Facts
Patent No.
US 8,079,743
App. No.
11/474,187
Granted
Dec 20, 2011
Kind
B2
Abstract

A display backlight assembly providing improved optical coupling between a solid state light source and a display optical light guide. The assembly includes an optical coupler to couple the solid state light source and display optical light guide together. In addition, the optical coupler may include a light mixing element for improved mixing of the multi-colored or mono-chromatic light produced by the solid state light source.

Claims (70)

1. A display backlight assembly comprising:

a display optical light guide including a first edge and an opposing second edge;

an optical coupler proximate the first edge of the display optical light guide, wherein the optical coupler has an index of refraction greater than an index of refraction of the display optical light guide, wherein the optical coupler includes a plurality of micro-prism dispersers at least partially embedded therein, and wherein continuous regions of the optical coupler extend between adjacent micro-prism dispersers;

a solid state light source proximate the optical coupler and coupled to the first edge of the optical light guide by the optical coupler, wherein the solid slate light source comprises a plurality of individual solid state light sources, and wherein each solid state light source of the plurality of solid state light sources is arranged in approximate alignment with a single micro-prism disperser of the plurality of micro-prism dispersers; and

a reflective surface disposed at an interface between the solid state light source and the optical coupler to allow for re-entry of light traveling in a direction generally from the second edge to the first edge back into the light guide.

2. The display backlight assembly of claim 1 , wherein the optical coupler comprises an optical index matching gel.

3. The display backlight assembly of claim 1 , wherein the optical coupler comprises the edge of the display optical light guide shaped to mate with at least a portion of the solid state light source.

4. The display backlight assembly of claim 1 , wherein the optical coupler comprises a tapered pre-collimation light guide.

5. The display backlight assembly of claim 4 , wherein the tapered pre-collimation light guide has an index of refraction approximately equal to the index of refraction of the display optical light guide.

6. The display backlight assembly of claim 4 , wherein the tapered pre-collimation light guide comprises acrylic.

7. The display backlight assembly of claim 4 , wherein an optical index matching gel is disposed at an interface of the display optical light guide and the tapered pre-collimation light guide and at an interface of the solid state light source and the tapered pre-collimation light guide.

8. The display backlight assembly of claim 4 , wherein the tapered pre-collimation light guide includes one or more stepped reflectors.

9. The display backlight assembly of claim 4 , wherein the tapered pre-collimation light guide includes one or more micro-prism dispersers.

10. The display backlight assembly of claim 9 , wherein the tapered pre-collimation light guide is composed of a material having a higher index of refraction than the micro-prism dispersers.

11. The display backlight assembly of claim 9 , wherein, the tapered pre-collimation light guide is composed of a material having a lower index of refraction than the micro-prism dispersers.

12. The display backlight assembly of claim 1 , wherein the optical coupler comprises a non-linear taper pre-collimation light guide.

13. The display backlight assembly of claim 12 , wherein the non-linear taper pre-collimation light guide has an index of refraction approximately equal to the index of refraction of the display optical light guide.

14. The display backlight assembly of claim 12 , wherein the non-linear taper pre-collimation light guide comprises acrylic.

15. The display backlight assembly of claim 12 , wherein an optical index matching gel is disposed at an interface of the display optical light guide and the shaped pre-collimation light guide and at an interface of the solid state light source and the non-linear taper pre-collimation light guide.

16. The display backlight assembly of claim 12 , wherein the non-linear taper pre-collimation light guide includes one or more micro-prism dispersers.

17. The display backlight assembly of claim 16 , wherein the non-linear taper pre-collimation light guide is composed of a material having a higher index of refraction than the micro-prism dispersers.

18. The display backlight assembly of claim 17 , wherein the non-linear taper pre-collimation light guide is composed of a material having a lower index of refraction than the micro-prism dispersers.

19. The display backlight assembly of claim 12 , wherein the non-linear taper pre-collimation light guide is shaped to approximate a confocal parabolic concentrator.

20. The display backlight assembly of claim 12 , wherein the non-linear taper pre-collimation light guide comprises a non-uniform Bezier spline surface.

21. The display backlight assembly of claim 20 , wherein the non-linear Bezier spline surface comprises perturbations to increase randomization of light propagation.

22. The display backlight assembly of claim 12 , wherein the non-linear taper pre-collimation light guide is shaped to approximate a confocal elliptical concentrator.

23. The display backlight assembly of claim 1 , wherein the optical coupler comprises an inverse-tapered light guide pre-mixer.

24. The display backlight assembly of claim 23 , wherein an optical index matching gel is disposed at an interface of the display optical light guide and the inverse-tapered light guide pre-mixer and at an interface of the solid state light source and the inverse-tapered light guide pre-mixer.

25. The display backlight assembly of claim 23 , wherein the inverse-tapered light guide pre-mixer includes one or more micro-prism dispersers.

26. The display backlight assembly of claim 25 , wherein the inverse-tapered light guide pre-mixer is composed of a material having a higher index of refraction than the micro-prism dispersers.

27. The display backlight assembly of claim 25 , wherein the inverse-tapered light guide pre-mixer is composed of a material having a lower index of refraction than the micro-prism dispersers.

28. The display backlight assembly of claim 1 , wherein the optical coupler comprises an optical index matching gasket.

29. The display backlight assembly of claim 28 , wherein the optical index matching gasket comprises silicone.

30. The display backlight assembly of claim 28 , wherein the optical index matching gasket includes one or more micro-prism dispersers embedded therein.

31. The display backlight assembly of claim 30 , wherein the optical index matching gasket is composed of a material having a higher index of refraction than the micro-prism dispersers.

32. The display backlight assembly of claim 30 , wherein the optical index matching gasket is composed of a material having a lower index of refraction than the micro-prism dispersers.

33. The display backlight assembly of claim 28 , wherein the optical index matching gasket is removable.

34. The display backlight assembly of claim 1 , wherein the solid state light source comprises a light emitting diode (LED) array.

35. The display backlight assembly of claim 34 , wherein the LED array comprises LEDs of at least two different colors.

36. The display backlight assembly of claim 35 , wherein the LED array comprises one or more of red, green, cyan, amber and blue LEDs.

37. The display backlight assembly of claim 1 , wherein the solid state light source comprises a reflector.

38. The display backlight assembly of claim 1 , wherein the solid state light source comprises an array of LEDs disposed in a slotted cavity.

39. The display backlight assembly of claim 38 , wherein the slotted cavity comprises a reflective surface.

40. The display backlight assembly of claim 39 , wherein the reflective surface comprises a metal film, a metal paint, or a highly reflective polymer.

41. The display backlight assembly of claim 1 , wherein the reflective surface is conformly disposed on the solid state light source.

42. The display backlight assembly of claim 1 , wherein indices of refraction of the micro-prism dispersers are each greater than the index of refraction of the optical coupler.

43. The display backlight assembly of claim 1 , wherein indices of refraction of the micro-prism dispersers are each lower than the index of refraction of the optical coupler.

44. The display backlight assembly of claim 1 , wherein at least one micro-prism disperser has an index of refraction greater than the index of refraction of the optical coupler, and wherein at least one micro-prism disperser has an index of refraction lower than the index of refraction of the optical coupler.

45. A display backlight assembly comprising:

a display optical light guide comprising a first edge and an opposing second edge;

a first solid state light source coupled to the first edge of the display optical light guide by a first optical coupler, wherein the first optical coupler has an index of refraction greater than that of the display optical light guide; and

a second solid state light source coupled to the second edge of the display optical light guide by a second optical coupler, wherein the second optical coupler has an index of refraction greater than that of the display optical light guide;

wherein at least one of the first solid state light source and the second solid state light source has a reflective surface disposed at an interface between the respective light source and the associated optical coupler to allow for re-entry of light traveling toward the interface from within the light guide back into the light guide; and wherein,

the first solid state light source and the second solid state light source comprise a plurality of individual solid state light sources,

the first optical coupler and the second optical coupler include a plurality of micro-prism dispersers embedded therein,

continuous regions of the optical coupler extend between adjacent micro-prism dispersers, and

each micro-prism disperser of the plurality of micro-prism dispersers of each of the first and second optical couplers is arranged in approximate alignment with a single solid state light source of the plurality of solid state light sources of each of the first and second solid state light sources.

46. The display backlight assembly of claim 45 , wherein the first and second solid state light sources include opposing reflective surfaces.

47. The display backlight assembly of claim 46 , wherein the reflective surfaces comprise a metal film, a metal paint, or a highly reflective polymer.

48. The display backlight assembly of claim 45 , wherein the first optical coupler comprises an optical index matching gel.

49. The display backlight assembly of claim 45 , wherein the first optical coupler comprises an optical index matching gasket.

50. The display backlight assembly of claim 45 , wherein the first optical coupler comprises a tapered pre-collimation light guide.

51. The display backlight assembly of claim 45 , wherein the first optical coupler comprises a non-linear taper pre-collimation light guide.

52. The display backlight assembly of claim 45 , wherein the first optical coupler comprises an inverse-tapered light guide pre-mixer.

53. The display backlight assembly of claim 45 , wherein the first optical coupler comprises silicone.

54. The display backlight assembly of claim 45 , wherein an optical index matching gel is disposed at respective interfaces of the first optical coupler, the display optical light guide, and the first solid state light source.

55. The display backlight assembly of claim 45 , wherein the reflective surface is conformly disposed on the respective solid state light source.

56. The display backlight assembly of claim 45 , wherein indices of refraction of the micro-prism dispersers are each greater than the index of refraction of the optical coupler.

57. The display backlight assembly of claim 45 , wherein indices of refraction of the micro-prism dispersers are each lower than the index of refraction of the optical coupler.

58. The display backlight assembly of claim 45 , wherein at least one micro-prism disperser has an index of refraction greater than the index of refraction of the optical coupler, and wherein at least one micro-prism disperser has an index of refraction lower than the index of refraction of the optical coupler.

Assignments (12)
RELEASE OF SECURITY INTEREST Recorded Aug 14, 2018
From: MEDLEY CAPITAL CORPORATION
To: LIGHTING SCIENCE GROUP CORPORATION, A DELAWARE CORPORATION; BIOLOGICAL ILLUMINATION, LLC, A DELAWARE LIMITED LIABILITY COMPANY
Reel/Frame 048018/0515 →
RELEASE OF SECURITY INTEREST Recorded Apr 26, 2017
From: ACF FINCO I LP, A DELAWARE LIMITED PARTNERSHIP
To: LIGHTING SCIENCE GROUP CORPORATION, A DELAWARE CORPORATION; BIOLOGICAL ILLUMINATION, LLC, A DELAWARE LIMITED LIABILITY COMPANY
Reel/Frame 042340/0471 →
ASSIGNMENT AND ASSUMPTION OF SECURITY INTERESTS IN PATENTS Recorded May 26, 2015
From: FCC, LLC D/B/A FIRST CAPITAL
To: ACF FINCO I LP
Reel/Frame 035774/0632 →
SECURITY INTEREST Recorded Jun 2, 2014
From: LIGHTING SCIENCE GROUP CORPORATION; BIOLOGICAL ILLUMINATION, LLC
To: MEDLEY CAPTIAL CORPORATION, AS AGENT
Reel/Frame 033072/0395 →
SECURITY INTEREST Recorded Apr 28, 2014
From: LIGHTING SCIENCE GROUP CORPORATION; BIOLOGICAL ILLUMINATION, LLC
To: FCC, LLC D/B/A FIRST CAPITAL, AS AGENT
Reel/Frame 032765/0910 →
RELEASE OF SECURITY INTEREST Recorded Mar 26, 2014
From: ARES CAPITAL CORPORATION
To: LIGHTING SCIENCE GROUP CORPORATION
Reel/Frame 032527/0427 →
RELEASE OF SECURITY INTEREST Recorded Mar 25, 2014
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: LIGHTING SCIENCE GROUP CORPORATION
Reel/Frame 032520/0074 →
SECURITY AGREEMENT Recorded Sep 21, 2011
From: LIGHTING SCIENCE GROUP CORPORATION
To: ARES CAPITAL CORPORATION
Reel/Frame 026940/0875 →
SECURITY AGREEMENT Recorded Nov 23, 2010
From: LIGHTING SCIENCE GROUP CORPORATION
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 026109/0019 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2009
From: LAMINA LIGHTING, INC.; LLI ACQUISITION, INC.
To: LIGHTING SCIENCE GROUP CORPORATION
Reel/Frame 023141/0517 →
CHANGE OF NAME Recorded Sep 19, 2007
From: LAMINA CERAMICS, INC.
To: LAMINA LIGHTING, INC.
Reel/Frame 019843/0536 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2007
From: BAILEY, EDWARD; MAZZOCHETTE, JOSEPH B.; BURDALSKI, ROBERT J.; BEREGSZASZI, ANDREW
To: LAMINA CERAMICS, INC.
Reel/Frame 019523/0604 →