Claims
- 1. An optical device, comprising:
an absorbing polarizer having a double pass color shift of |Δx|≦0.005 and |Δy|≦0.005 for illumination by a C-illuminant, and a double pass contrast modulation of at least 90%.
- 2. A device as recited in claim 1, wherein the absorbing polarizer has a double pass color shift of |Δx|≦0.004 and |Δy|≦0.004 for illumination by a C-illuminant.
- 3. A device as recited in claim 1, wherein the absorbing polarizer has a double pass color shift of |Δx|≦0.002 and |Δy ≦0.003 for illumination by a C-illuminant.
- 4. A device as recited in claim 1, wherein the absorbing polarizer has a double pass contrast modulation of more than 95%.
- 5. A device as recited in claim 1, wherein the absorbing polarizer has a double pass contrast modulation of more than 97%.
- 6. A device as recited in claim 1, wherein the absorbing polarizer has a double pass efficiency of more than 60%.
- 7. A device as recited in claim 1, wherein the absorbing polarizer has a double pass efficiency of more than 68%.
- 8. A device as recited in claim 1, wherein the absorbing polarizer includes iodine as a polarization sensitive absorber.
- 9. A device as recited in claim 1, wherein the absorbing polarizer exhibits a double pass color shift having a negative value for Δx when illuminated by an A-illuminant.
- 10. A device as recited in claim 1, wherein the absorbing polarizer exhibits a double pass color shift having a color shift of Δx<0.005 and Δy<0.002 when illuminated by an A-illuminant.
- 11. A device as recited in claim 10, wherein the absorbing polarizer exhibits a double pass color shift having a value of Δx<0.003 when illuminated by an A-illuminant.
- 12. A device as recited in claim 1, wherein light is blue shifted after double passing the absorbing polarizer.
- 13. An optical device, comprising:
an absorbing polarizer having a double pass color shift of Δx≦0.005 and Δy≦0.005 for illumination by a C-illuminant, and a double pass contrast modulation of at least 90%.
- 14. An optical device, comprising:
an absorbing polarizer having a double pass color shift of Δx≦0.005 and Δy≦0.002 and a double pass contrast modulation of at least 90% under illumination by an A-illuminant, and a double pass color shift of Δx≦0.005 and Δy≦0.005 under illumination by a C-illuminant.
- 15. A device as recited in claim 14, wherein the double pass color shift Δx under illumination by the A-illuminant is negative.
- 16. A device as recited in claim 14, wherein the absorbing polarizer has a double pass contrast modulation of more than 95% under illumination by the A-illuminant.
- 17. A device as recited in claim 14, wherein the absorbing polarizer has a double pass contrast modulation of more than 97% under illumination by the A-illuminant.
- 18. A device as recited in claim 14, wherein the absorbing polarizer has a double pass efficiency of more than 60% under illumination by the A-illuminant.
- 19. A device as recited in claim 14, wherein the absorbing polarizer has a double pass efficiency of more than 68% under illumination by the A-illuminant.
- 20. A device as recited in claim 14, wherein light is blue shifted after double passing the absorbing polarizer.
- 21. A device as recited in claim 14, wherein the absorbing polarizer includes iodine as a polarization sensitive absorber.
- 22. A device for displaying information, comprising:
two or more layers stacked together, at least one of the layers being an absorbing polarizer having a double pass color shift of |Δx|≦0.005 and |Δy|≦0.005 for illumination by a C-illuminant.
- 23. A device as recited in claim 22, wherein the two or more optical layers include a liquid crystal display layer (LCD) layer disposed below the absorbing polarizer and a reflective layer disposed below the LCD layer.
- 24. A device as recited in claim 23, wherein the double pass color shift through the two or more optical layers stacked together is less than |Δx|≦0.01 and |Δy|≦0.015 for illumination by a C-illuminant.
- 25. A device as recited in claim 23, wherein the reflective layer is a transflective layer.
- 26. A device as recited in claim 25, further comprising a backlight disposed below the transflective layer.
- 27. A device as recited in claim 25, wherein the transflective layer has a single reflection color shift of |Δx|≦0.005 and |Δy|≦0.002 for illumination by a C-illuminant.
- 28. A device as recited in claim 25, wherein the transflective layer is a reflecting polarizer.
- 29. A device as recited in claim 28, wherein the reflecting polarizer has a pass polarization direction either substantially perpendicular or substantially parallel to a pass polarization direction of the absorbing polarizer.
- 30. A device as recited in claim 28, wherein the reflecting polarizer has a pass polarization direction oriented to be neither perpendicular nor parallel to a pass polarization direction of the absorbing polarizer.
- 31. A device as recited in claim 28, wherein the reflecting polarizer includes one of a multilayer reflecting polarizer, a wire grid polarizer, a cholesteric polarizer, and a dispersed phase polarizer.
- 32. A device as recited in claim 31, wherein the reflecting polarizer includes a cholesteric polarizer coupled to a retarding layer.
- 33. A device as recited in claim 23, wherein the LCD layer further includes color filters for respective pixels of the LCD layer.
- 34. A device as recited in claim 23, further comprising a control unit coupled to the LCD layer to control polarization rotation of individual pixels of the LCD layer, so as to present an image on the device to a user.
- 35. A device as recited in claim 22, wherein one of the two or more layers includes a touch sensitive panel.
- 36. A device as recited in claim 22, wherein the two or more layers form layers of a rear projection screen, the two or more layers further including a dispersing layer to disperse light projected at the screen for viewing by a viewer.
- 37. A device as recited in claim 36, wherein the dispersing layer is disposed closer to a light input side of the rear projection screen than the absorbing polarizer, and further comprising a retarder layer disposed between the dispersing layer and the absorbing polarizer.
- 38. A device as recited in claim 36, further comprising an image light source projecting an image of light to the rear projection screen.
- 39. A device as recited in claim 38, further comprising a controller coupled to the image light source to control the image projected to the rear projection screen.
- 40. A device as recited in claim 22, wherein an image viewed by a viewer includes at least a portion that is substantially white.
- 41. A rear projection screen, comprising:
a dispersing layer stacked together with first absorbing polarizer, the first absorbing polarizer having a single pass color shift with at least one of Δx and Δy being negative under illumination by a C-illuminant, and a polarization co-efficiency greater than 90%.
- 42. A screen as defined in claim 41, further comprising a first retarder layer disposed between the dispersing layer and the absorbing polarizer.
- 43. A screen as defined in claim 42, further comprising a second retarder layer, the dispersing layer disposed between the first and second retarder layers.
- 44. A screen as defined in claim 43, further comprising a second absorbing polarizer, the second retarding layer disposed between the second absorbing polarizer and the dispersing layer.
- 45. A screen as defined in claim 41, wherein both Δx and Δy are negative for a single pass color shift.
- 46. A screen as defined in claim 41, wherein the polarization co-efficiency is greater than 97%.
- 47. A screen as defined in claim 41, wherein light is blue-shifted upon passing through the screen.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from provisional patent application Ser. No. 60/203,322, filed on May 11, 2000, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60203332 |
May 2000 |
US |