IP Library Granted Patent US 8,638,400
Granted Patent B2
US 8,638,400 · App. 13/182,381 · Granted Jan 28, 2014

Field-of-view compensated polarization switch for short-throw 3D projection

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Quick Facts
Patent No.
US 8,638,400
App. No.
13/182,381
Granted
Jan 28, 2014
Kind
B2
Abstract

Generally, this disclosure concerns the angle sensitivity of polarization switch elements and the resulting impact of the ray direction on performance. More specifically, apparatus and techniques for compensating the angular sensitivity of liquid crystal (LC) polarization switches are described that enhance the performance of polarization switches. For example, a polarization switch is disclosed that transforms linearly polarized light of an initial polarization orientation that includes a first and second liquid crystal cell with a compensator located between the LC cells. The compensator layer is operable to enhance the field of view through the polarization switch. Such compensation techniques are particularly useful for short-throw projection environments.

Claims (61)

1. A polarization switch that transforms linearly polarized light of an initial polarization orientation, comprising:

a first liquid crystal cell having a first axis of orientation relative to the initial polarization orientation;

a second liquid crystal cell having a second axis of orientation relative to the initial polarization orientation; and

at least a first compensation layer located between the first liquid crystal cell and a first side of the second liquid crystal cell, the first compensation layer being operable to enhance the field of view through the polarization switch;

wherein the first liquid crystal cell is operable to transform the linearly polarized light to a first circularly polarized light in a first state, and

wherein the second liquid crystal cell is operable to transform the linearly polarized light to a second circularly polarized light in a second state different from the first state.

2. The polarization switch of claim 1 , wherein the first compensation layer is a negative C-plate compensator.

3. The polarization switch of claim 1 , wherein the first compensation layer has a retardation that approximately matches the net retardation of the first liquid crystal cell and the second liquid crystal cell.

4. The polarization switch of claim 1 , wherein the first compensation layer comprises polycarbonate.

5. The polarization switch of claim 1 , further comprising a second compensation layer.

6. The polarization switch of claim 5 , wherein the second compensation layer is adjacent to a second side of the second liquid crystal cell.

7. The polarization switch of claim 6 , wherein the second compensation layer is a negative C-plate compensator.

8. The polarization switch of claim 7 , wherein the first compensation layer has a first compensation retardation in a range of approximately 60-80% of the splay-state retardation of one of the first or second liquid crystal cells.

9. The polarization switch of claim 8 , wherein the second compensation layer has a second compensation retardation of approximately half of the splay-state retardation of one of the first or second liquid crystal cells.

10. A method for compensating the angular sensitivity of a polarization switch comprising:

providing a first liquid crystal cell on an optical path;

providing at least a first compensation layer located on the optical path after the first liquid crystal cell; and

providing a second liquid crystal cell on the optical path after the at least first compensation layer;

wherein the first liquid crystal cell is operable to transform linearly polarized light to a first circularly polarized light in a first state, and

wherein the second liquid crystal cell is operable to transform linearly polarized light to a second circularly polarized light in a second state different from the first state.

11. The method for compensating the angular sensitivity of a polarization switch of claim 10 , wherein the first compensation layer is a negative C-plate compensator.

12. The method for compensating the angular sensitivity of a polarization switch of claim 10 , wherein the first compensation layer has a retardation that approximately matches the net retardation of the first liquid crystal cell and the second liquid crystal cell.

13. The method for compensating the angular sensitivity of a polarization switch of claim 10 , wherein the first compensation layer has the dispersion of polycarbonate.

14. The method for compensating the angular sensitivity of a polarization switch of claim 10 , further comprising providing a second compensation layer located on the optical path after the second liquid crystal cell.

15. The method for compensating the angular sensitivity of a polarization switch of claim 14 , wherein the second compensation layer has a second compensation retardation of approximately half of the splay-state retardation of one of the first or second liquid crystal cells.

16. The method for compensating the angular sensitivity of a polarization switch of claim 10 , wherein the second compensation layer is a negative C-plate compensator.

17. The method for compensating the angular sensitivity of a polarization switch of claim 10 , wherein the first compensation layer has a first compensation retardation of approximately 60-80% of the same splay-state retardation of one of the first or second liquid crystal cells.

18. The method for compensating the angular sensitivity of a polarization switch of claim 10 , further comprising providing a second compensation layer located on the optical path after the second liquid crystal cell, wherein the second compensation layer has a second compensation retardation of approximately half of the splay-state retardation of one of the first or second liquid crystal cells.

19. A projection system comprising:

a projection subsystem operable to output light; and

a polarization subsystem operable to receive the light from the projection subsystem, the polarization subsystem comprising:

a first liquid crystal cell on an optical path;

at least a first compensation layer located on the optical path after the first liquid crystal cell;

a second liquid crystal cell located on the optical path after the at least first compensation layer; and

at least a second compensation layer located on the optical path after the second liquid crystal cell;

wherein the first liquid crystal cell is operable to transform linearly polarized light to a first circularly polarized light in a first state, and

wherein the second liquid crystal cell is operable to transform linearly polarized light to a second circularly polarized light in a second state different from the first state.

20. The projection system of claim 19 , wherein a substandard-case luminance loss of the projection system is approximately 1.1%.

21. The projection system of claim 19 , wherein a substandard-case color shift is approximately 0.01.

22. A polarization switch that transforms linearly polarized light of an initial polarization orientation, comprising:

a first liquid crystal cell having a first axis of orientation relative to the initial polarization orientation;

a second liquid crystal cell having a second axis of orientation relative to the initial polarization orientation; and

at least a first compensation layer located between the first liquid crystal cell and a first side of the second liquid crystal cell, the first compensation layer being operable to enhance the field of view through the polarization switch,

wherein the first compensation layer has a retardation that approximately matches the net retardation of the first liquid crystal cell and the second liquid crystal cell.

23. The polarization switch of claim 22 , further comprising a second compensation layer, wherein the second compensation layer is adjacent to a second side of the second liquid crystal cell, wherein the second compensation layer is a negative C-plate compensator, and wherein the first compensation layer has a first compensation retardation in a range of approximately 60-80% of the splay-state retardation of one of the first or second liquid crystal cells.

24. The polarization switch of claim 23 , wherein the second compensation layer has a second compensation retardation of approximately half of the splay-state retardation of one of the first or second liquid crystal cells.

25. A method for compensating the angular sensitivity of a polarization switch comprising:

providing a first liquid crystal cell on an optical path;

providing at least a first compensation layer located on the optical path after the first liquid crystal cell; and

providing a second liquid crystal cell on the optical path after the at least first compensation layer,

wherein the first compensation layer has a retardation that approximately matches the net retardation of the first liquid crystal cell and the second liquid crystal cell.

26. The method for compensating the angular sensitivity of a polarization switch of claim 25 , wherein the first compensation layer has a first compensation retardation of approximately 60-80% of the same splay-state retardation of one of the first or second liquid crystal cells.

27. A projection system comprising:

a projection subsystem operable to output light; and

a polarization subsystem operable to receive the light from the projection subsystem, the polarization subsystem comprising:

a first liquid crystal cell on an optical path;

at least a first compensation layer located on the optical path after the first liquid crystal cell;

a second liquid crystal cell located on the optical path after the at least first compensation layer; and

at least a second compensation layer located on the optical path after the second liquid crystal cell;

wherein a substandard-case luminance loss of the projection system is approximately 1.1%.

28. The projection system of claim 27 , wherein a substandard-case color shift is approximately 0.01.

Assignments (10)
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 →
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 →
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 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 →
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 →
RELEASE FROM PATENT SECURITY AGREEMENTS AT REEL/FRAME NO. 28146/0006 Recorded Mar 22, 2016
From: CITY NATIONAL BANK
To: REALD INC.
Reel/Frame 038216/0436 →
PATENT SECURITY AGREEMENT Recorded May 2, 2012
From: REALD, INC.
To: CITY NATIONAL BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 028146/0006 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2011
From: SHARP, GARY D.; CHEN, JIANMIN; ROBINSON, MICHAEL G.
To: REALD INC.
Reel/Frame 026697/0211 →