IP Library Granted Patent US 7,898,734
Granted Patent B2
US 7,898,734 · App. 12/361,532 · Granted Mar 1, 2011

Polarization preserving front projection screen

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Quick Facts
Patent No.
US 7,898,734
App. No.
12/361,532
Granted
Mar 1, 2011
Kind
B2
Abstract

Polarization preserving front projection screens and diffusers provide optimum polarization preservation for stereoscopic 3D viewing, as well as improved light control for enhanced brightness, uniformity, and contrast for both 2D and 3D systems. Generally, the disclosed screens direct light from a projector toward viewers within a diffusion locus, while maintaining optimum gain characteristics. More specifically, light incident on a region of the front projection screen from a predetermined projection direction is reflected by an engineered surface to a predetermined diffusion locus after undergoing substantially single reflections. The engineered surface, comprised of generating kernels, is used to optimally diffuse illumination light into a range of viewing angles, within the diffusion locus, with suitable gain profile, while optimally preserving polarization for 3D applications. Such a screen, when combined with matched polarization analyzing eyewear, provides extremely low cross-talk from any observation point.

Claims (130)

1. A projection screen, comprising:

a contoured reflective surface having a predetermined scatter profile, the predetermined scatter profile being operable to reflect incident light from a predetermined incident angle range to within a diffusion locus,

wherein the light reflected from the predetermined incident angle range to within the diffusion locus substantially undergoes no more than one reflection from the contoured reflective surface, and wherein the diffusion locus is defined by a region in which reflections within the diffusion locus substantially undergo no more than one reflection on the contoured reflective surface, and wherein light reflected outside of the diffusion locus undergoes one or more reflections on the contoured reflective surface.

2. The projection screen of claim 1 , wherein the incident light is polarized light, and wherein light reflected from the predetermined incident angle range to within the diffusion locus maintains the same state of polarization.

3. The projection screen of claim 1 , wherein the contoured reflective surface comprises a plurality of generating kernels.

4. The projection screen of claim 3 , wherein each generating kernel substantially satisfies the predetermined scatter profile.

5. The projection screen of claim 4 , wherein each generating kernel is operable to minimize point-to-point variation in diffusion.

6. The projection screen of claim 3 , wherein the plurality of generating kernels satisfy the predetermined scatter profile.

7. The projection screen of claim 6 , wherein the plurality of generating kernels is operable to minimize point-to-point variation in diffusion.

8. The projection screen of claim 3 , wherein the plurality of generating kernels are distributed to optimize viewing from a location in the diffusion locus.

9. The projection screen of claim 3 , further comprising a dielectric overcoat, the dielectric overcoat distributed over the plurality of generating kernels.

10. The projection screen of claim 3 , wherein the plurality of generating kernels are distributed in a substantially regular lattice.

11. The projection screen of claim 10 , wherein the substantially regular lattice comprises a hexagonal lattice.

12. The projection screen of claim 10 , wherein the plurality of generating kernels are distributed in a tessellation pattern.

13. The projection screen of claim 10 , wherein the substantially regular lattice comprises randomized centers.

14. The projection screen of claim 10 , wherein at least two of the generating kernels are substantially overlapping.

15. The projection screen of claim 3 , wherein at least one of the generating kernels is disposed to pre-correct for an offset resulting from overlapping adjacent generating kernels.

16. The projection screen of claim 3 , wherein the plurality of generating kernels satisfies a statistical model to minimize double reflections between generating kernels.

17. The projection screen of claim 1 , wherein the diffusion locus is defined by a predetermined reflection angle range.

18. The projection screen of claim 1 , wherein the contoured reflective surface is operable to substantially eliminate light undergoing multiple reflections from being distributed within the diffusion locus.

19. The projection screen of claim 1 , wherein substantially all light undergoing more than one reflection is distributed outside of the diffusion locus.

20. The projection screen of claim 1 , wherein the diffusion locus includes substantially all viewing locations in an auditorium.

21. The projection screen of claim 1 , wherein light reflected to the diffusion locus is of enhanced brightness.

22. The projection screen of claim 1 , wherein light reflected to the diffusion locus is substantially uniform.

23. The projection screen of claim 1 , wherein light reflected to the diffusion locus is of enhanced contrast.

24. The projection screen of claim 1 , wherein light reflected to the diffusion locus satisfies a predetermined gain profile.

25. A method for providing a projection screen, the method comprising:

providing a contoured reflective surface having a predetermined scatter profile, the predetermined scatter profile being operable to reflect incident light from a predetermined incident angle range to within a diffusion locus; and

distributing substantially all light undergoing more than one reflection outside of the diffusion locus,

wherein the light reflected from the predetermined incident angle range to within the diffusion locus substantially undergoes no more than one reflection from the contoured reflective surface.

26. The method of claim 25 , wherein the incident light is polarized light, and wherein light reflected from the predetermined incident angle range to within the diffusion locus maintains the same state of polarization.

27. The method of claim 25 , further comprising:

defining the diffusion locus by a predetermined reflection angle range.

28. The method of claim 25 , further comprising:

defining the diffusion locus by a region in which reflections within the diffusion locus substantially undergo no more than one reflection on the contoured reflective surface, and wherein light reflected outside of the diffusion locus undergoes one or more reflections on the contoured reflective surface.

29. The method of claim 25 , further comprising:

eliminating substantially all light undergoing multiple reflections from being distributed within the diffusion locus.

30. The method of claim 25 , further comprising:

including substantially all viewing locations in an auditorium in the diffusion locus.

31. The method of claim 25 , further comprising:

enhancing the brightness of the light reflected to the diffusion locus.

32. The method of claim 25 , further comprising:

making substantially uniform the light reflected to the diffusion locus.

33. The method of claim 25 , further comprising:

enhancing the contrast of the light reflected to the diffusion locus.

34. The method of claim 25 , further comprising:

satisfying a predetermined gain profile with the light reflected to the diffusion locus.

35. A projection screen, comprising:

a contoured reflective surface having a predetermined scatter profile, the predetermined scatter profile being operable to reflect incident light from a predetermined incident angle range to within a diffusion locus,

wherein the light reflected from the predetermined incident angle range to within the diffusion locus substantially undergoes no more than one reflection from the contoured reflective surface, and wherein the contoured reflective surface is operable to substantially eliminate light undergoing multiple reflections from being distributed within the diffusion locus.

36. The projection screen of claim 35 , wherein the incident light is polarized light, and wherein the contoured reflective surface is operable to reflect light from the predetermined incident angle range to within the diffusion locus while maintaining the same state of polarization of the light.

37. The projection screen of claim 35 , wherein the contoured reflective surface comprises a plurality of generating kernels.

38. The projection screen of claim 37 , wherein each generating kernel substantially satisfies the predetermined scatter profile.

39. The projection screen of claim 38 , wherein each generating kernel is operable to minimize point-to-point variation in diffusion.

40. The projection screen of claim 37 , wherein the plurality of generating kernels satisfy the predetermined scatter profile.

41. The projection screen of claim 40 , wherein the plurality of generating kernels is operable to minimize point-to-point variation in diffusion.

42. The projection screen of claim 37 , wherein the plurality of generating kernels are distributed to optimize viewing from a location in the diffusion locus.

43. The projection screen of claim 37 , further comprising a dielectric overcoat, the dielectric overcoat distributed over the plurality of generating kernels.

44. The projection screen of claim 37 , wherein the plurality of generating kernels are distributed in a substantially regular lattice.

45. The projection screen of claim 37 , wherein the plurality of generating kernels satisfies a statistical model to minimize double reflections between generating kernels.

46. The projection screen of claim 35 , wherein the diffusion locus is defined by a predetermined reflection angle range.

47. The projection screen of claim 35 , wherein the diffusion locus includes substantially all viewing locations in an auditorium.

48. A projection screen, comprising:

a contoured reflective surface having a predetermined scatter profile, the predetermined scatter profile being operable to reflect incident light from a predetermined incident angle range to within a diffusion locus,

wherein the light reflected from the predetermined incident angle range to within the diffusion locus substantially undergoes no more than one reflection from the contoured reflective surface, and wherein substantially all light undergoing more than one reflection is distributed outside of the diffusion locus.

49. The projection screen of claim 48 , wherein the incident light is polarized light, and wherein light reflected from the predetermined incident angle range to within the diffusion locus maintains the same state of polarization.

50. The projection screen of claim 48 , wherein the diffusion locus is defined by a predetermined reflection angle range.

51. The projection screen of claim 48 , wherein the diffusion locus includes substantially all viewing locations in an auditorium.

52. The projection screen of claim 48 , wherein light reflected to the diffusion locus is of enhanced brightness.

53. The projection screen of claim 48 , wherein light reflected to the diffusion locus is substantially uniform.

54. The projection screen of claim 48 , wherein light reflected to the diffusion locus is of enhanced contrast.

55. The projection screen of claim 48 , wherein light reflected to the diffusion locus satisfies a predetermined gain profile.

56. A method for providing a projection screen, the method comprising:

providing a contoured reflective surface having a predetermined scatter profile, the predetermined scatter profile being operable to reflect incident light from a predetermined incident angle range to within a diffusion locus; and

defining the diffusion locus by a region in which reflections within the diffusion locus substantially undergo no more than one reflection on the contoured reflective surface, and wherein light reflected outside of the diffusion locus undergoes one or more reflections on the contoured reflective surface,

wherein the light reflected from the predetermined incident angle range to within the diffusion locus substantially undergoes no more than one reflection from the contoured reflective surface.

57. The method of claim 56 , wherein the incident light is polarized light, and wherein light reflected from the predetermined incident angle range to within the diffusion locus maintains the same state of polarization.

58. The method of claim 56 , further comprising:

defining the diffusion locus by a predetermined reflection angle range.

59. The method of claim 56 , further comprising:

eliminating substantially all light undergoing multiple reflections from being distributed within the diffusion locus.

60. The method of claim 56 , further comprising:

including substantially all viewing locations in an auditorium in the diffusion locus.

61. The method of claim 56 , further comprising:

enhancing the brightness of the light reflected to the diffusion locus.

62. The method of claim 56 , further comprising:

making substantially uniform the light reflected to the diffusion locus.

63. The method of claim 56 , further comprising:

enhancing the contrast of the light reflected to the diffusion locus.

64. The method of claim 56 , further comprising:

satisfying a predetermined gain profile with the light reflected to the diffusion locus.

65. A method for providing a projection screen, the method comprising:

providing a contoured reflective surface having a predetermined scatter profile, the predetermined scatter profile being operable to reflect incident light from a predetermined incident angle range to within a diffusion locus; and

eliminating substantially all light undergoing multiple reflections from being distributed within the diffusion locus,

wherein the light reflected from the predetermined incident angle range to within the diffusion locus substantially undergoes no more than one reflection from the contoured reflective surface.

66. The method of claim 65 , wherein the incident light is polarized light, and wherein light reflected from the predetermined incident angle range to within the diffusion locus maintains the same state of polarization.

67. The method of claim 65 , wherein the contoured reflective surface comprises a plurality of generating kernels.

68. The method of claim 67 , further comprising:

satisfying the predetermined scatter profile with each generating kernel.

69. The method of claim 68 , further comprising:

minimizing point-to-point variation in diffusion with each generating kernel.

70. The method of claim 67 , further comprising:

satisfying the predetermined scatter profile with the plurality of generating kernels.

71. The method of claim 70 , further comprising:

minimizing point-to-point variation in diffusion with the plurality of generating kernels.

72. The method of claim 67 , further comprising:

satisfying a statistical model to minimize double reflections between generating kernels with the plurality of generating kernels.

73. The method of claim 67 , further comprising:

distributing the plurality of generating kernels to optimize viewing from a location in the diffusion locus.

74. The method of claim 67 , further comprising:

providing a dielectric overcoat; and

distributing the dielectric overcoat over the plurality of generating kernels.

75. The method of claim 67 , further comprising:

distributing the plurality of generating kernels in a substantially regular lattice.

76. The method of claim 75 , further comprising:

randomizing the centers of the substantially regular lattice.

77. The method of claim 75 , further comprising:

overlapping at least two of the generating kernels.

78. The method of claim 67 , further comprising:

distributing the plurality of generating kernels in a substantially hexagonal lattice.

79. The method of claim 67 , further comprising:

distributing the plurality of generating kernels in a tessellation pattern.

80. The method of claim 67 , further comprising:

disposing at least one of the generating kernels to pre-correct for an offset resulting from overlapping adjacent generating kernels.

81. The method of claim 65 , further comprising:

defining the diffusion locus by a predetermined reflection angle range.

82. The method of claim 65 , further comprising:

including substantially all viewing locations in an auditorium in the diffusion locus.

83. The method of claim 65 , further comprising:

satisfying a predetermined gain profile with the light reflected to the diffusion locus.

Assignments (11)
RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 047740/0085 Recorded Dec 4, 2020
From: CORTLAND CAPITAL MARKET SERVICES, LLC
To: RHOMBUS INTERMEDIATE HOLDINGS, LP; REALD INC.; COLORLINK, INC.; REALD DDMG ACQUISITION, LLC; REALD SPARK, LLC
Reel/Frame 054593/0247 →
ASSIGNMENT OF SECURITY INTEREST IN COLLATERAL Recorded May 11, 2020
From: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
To: CORTLAND CAPITAL MARKET SERVICES LLC, AS THE SUCCESSOR COLLATERAL AGENT
Reel/Frame 052623/0086 →
SECURITY INTEREST Recorded May 11, 2020
From: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
To: HPS INVESTMENT PARTNERS, LLC, AS THE SUCCESSOR-IN-INTEREST
Reel/Frame 052622/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2020
From: REALD LUXE,LLC
To: REALD INC.
Reel/Frame 052299/0517 →
RELEASE OF SECURITY INTEREST Recorded Dec 7, 2018
From: HPS INVESTMENT PARTNERS, LLC, AS COLLATERAL AGENT
To: REALD INC.; STEREOGRAPHICS CORPORATION; COLORLINK, INC.; REALD DDMG ACQUISITION, LLC
Reel/Frame 047741/0621 →
SECURITY INTEREST Recorded Dec 7, 2018
From: REALD INC.; RHOMBUS INTERMEDIATE HOLDINGS, LP; REALD HOLDINGS, INC; REALD LUXE, LLC; REALD SPARK, LLC; COLORLINK, INC.; REALD DDMG ACQUISITION, LLC
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 047740/0085 →
SECURITY INTEREST Recorded Dec 5, 2018
From: REALD INC.; RHOMBUS INTERMEDIATE HOLDINGS, LP; REALD HOLDINGS, INC; REALD LUXE, LLC; REALD SPARK, LLC; COLORLINK, INC.; REALD DDMG ACQUISITION, LLC
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 047723/0767 →
NUNC PRO TUNC ASSIGNMENT Recorded Aug 14, 2017
From: REALD INC.
To: REALD LUXE, LLC
Reel/Frame 043544/0041 →
SECURITY INTEREST Recorded Mar 24, 2016
From: REALD INC.; STEREOGRAPHICS CORPORATION; COLORLINK INC.; REALD DDMG ACQUISITION, LLC
To: HIGHBRIDGE PRINCIPAL STRATEGIES, LLC
Reel/Frame 038243/0526 →
MERGER Recorded Apr 27, 2010
From: REAL D
To: REALD INC.
Reel/Frame 024294/0658 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2010
From: COLEMAN, DAVID A.; SHARP, GARY D.
To: REAL D
Reel/Frame 024104/0269 →