Claims
- 1. An apparatus comprising:
a separating device to separate received light into first, second, and third color components; a first element to provide a first optical path for the first color component; a second element to provide a second optical path for the second color component; and a space to provide a third optical path for the third color component; wherein the first, second, and third optical paths have a substantially equal optical length between the separating device and a downstream component.
- 2. The apparatus of claim 1, wherein the space is occupied by a gas.
- 3. The apparatus of claim 2, wherein the gas comprises air.
- 4. The apparatus of claim 1, wherein a vacuum is maintained in the space.
- 5. The apparatus of claim 1, wherein the separating device comprises an X-plate.
- 6. The apparatus of claim 1, wherein the separating device comprises an X-cube.
- 7. The apparatus of claim 1, wherein the first element is constructed of a material and the second element is constructed of the same material.
- 8. The apparatus of claim 7, wherein the material comprises one of a glass material, a polymer material, and quartz.
- 9. The apparatus of claim 1, where in the first element is constructed of one material and the second element is constructed of a different material.
- 10. The apparatus of claim 1, wherein the first element has a size and configuration and the second element has substantially the same size and configuration.
- 11. The apparatus of claim 1, wherein the first element has a size and configuration and the second element has a different size and configuration.
- 12. The apparatus of claim 1, wherein the first element includes a surface to direct the first color component along the first optical path, the surface oriented at an angle relative to the first optical path that is greater than a critical angle.
- 13. The apparatus of claim 12, wherein the angle of the surface comprises forty-five degrees.
- 14. The apparatus of claim 12, wherein the critical angle comprises an angle less than forty-five degrees.
- 15. The apparatus of claim 12, wherein the first element comprises a single body including the surface.
- 16. The apparatus of claim 12, wherein the first element comprises a first body and a second body, one of the first and second bodies including the surface.
- 17. The apparatus of claim 12, wherein the second element includes a surface to direct the second color component along the second optical path, the surface oriented at an angle relative to the second optical path that is greater than the critical angle.
- 18. The apparatus of claim 1, wherein the first element comprises:
a body; and a mirror disposed adjacent the body, the mirror to direct the first color component along the first optical path and into the body.
- 19. The apparatus of claim 18, wherein the mirror is oriented at a forty-five degree angle relative to the first optical path.
- 20. The apparatus of claim 18, wherein the second element comprises:
a second body; and a second mirror disposed adjacent the second body, the second mirror to direct the second color component along the second optical path and into the second body.
- 21. The apparatus of claim 1, wherein the first element includes a surface having a reflective coating, the coated surface to direct the first color component along the first optical path.
- 22. The apparatus of claim 21, wherein the reflective coating comprises a dichroic coating.
- 23. The apparatus of claim 21, wherein the coated surface is oriented at a forty-five degree angle relative to the first optical path.
- 24. The apparatus of claim 21, wherein the first element comprises a single body including the coated surface.
- 25. The apparatus of claim 21, wherein the first element comprises a first body and a second body, one of the first and second bodies including the coated surface.
- 26. The apparatus of claim 21, wherein the second element includes a surface having a reflective coating, the coated surface to direct the second color component along the second optical path.
- 27. The apparatus of claim 1, further comprising:
a first wave plate disposed in the first optical path between the separating device and the first element, the first wave plate to change an orientation of the first color component; and a second wave plate disposed in the second optical path between the separating device and the second element, the second wave plate to change an orientation of the second color component.
- 28. The apparatus of claim 1, wherein each of first and second elements is coupled with the separating device.
- 29. The apparatus of claim 1, wherein the downstream component comprises a polarized beam splitter (PBS).
- 30. The apparatus of claim 29, wherein each of the first and second elements is coupled with to the PBS.
- 31. The apparatus of claim 29, further comprising:
a first field lens disposed in the first optical path between the first element and the PBS; a second field lens disposed in the second optical path between the second element and the PBS; and a third field lens disposed in the third optical path between the space and the PBS.
- 32. The apparatus of claim 29, wherein the PBS comprises a single element to receive each of the first, second, and third color components.
- 33. The apparatus of claim 29, wherein the PBS comprises three elements, each of the three of elements to receive one of the first, second, and third color components.
- 34. The apparatus of claim 29, wherein the PBS directs each of the first, second, and third color components to a multi-array device having a number of addressable arrays of elements, each of the addressable arrays of elements capable of receiving one of the first, second, and third color components and modulating the one color component to generate and image.
- 35. The apparatus of claim 34, further comprising a converger disposed adjacent the PBS, the converger capable of receiving the images generated by the multi-array device and combining the images into a single image.
- 36. The apparatus of claim 34, wherein the multi-array device comprises a liquid crystal on silicon (LCOS) device.
- 37. The apparatus of claim 34, wherein the multi-array device comprises a reflective liquid crystal display (LCD).
- 38. The apparatus of claim 34, wherein the multi-array device comprises a micromirror device.
- 39. The apparatus of claim 1, wherein the downstream component comprises a multi-array spatial light modulating (SLM) device, the multi-array SLM device including a number of addressable arrays of elements disposed on one side thereof, the addressable arrays facing the first and second elements.
- 40. The apparatus of claim 39, wherein the multi-array SLM device comprises a transmissive liquid crystal display (LCD).
- 41. The apparatus of claim 39, further comprising a converger disposed on an opposing side of the multi-array SLM device.
- 42. The apparatus of claim 41, further comprising:
a first field lens disposed in the first optical path between the first element and the multi-array SLM device; a second field lens disposed in the second optical path between the second element and the multi-array SLM device; and a third field lens disposed in the third optical path between the space and the multi-array SLM device.
- 43. The apparatus of claim 42, further comprising a number of other field lenses disposed between the multi-array SLM device and the converger.
- 44. An apparatus comprising:
a first reflective element, the first reflective element to receive light from a source, the first reflective element to reflect a first color component and transmit other colors of light, the first reflective element to direct the first color component along a first optical path; a second reflective element, the second reflective element to receive the first color component from the first reflective element and direct the first color component along the first optical path toward a downstream component; a third reflective element, the third reflective element to receive the other colors of light, the third reflective element to reflect a second color component and transmit a third color component, the third reflective element to direct the second color component along a second optical path; a fourth reflective element, the fourth reflective element to receive the second color component from the third reflective element and direct the second color component along the second optical path toward the downstream component; a fifth reflective element, the fifth reflective element to receive the third color component, the fifth reflective element to direct the third color component along a third optical path; and a sixth reflective element, the sixth reflective element to receive the third color component from the fifth reflective element and direct the third color component along the third optical path toward the downstream component; wherein the first, second, and third optical path have a substantially equal optical length between the first reflective element and the downstream component.
- 45. The apparatus of claim 44, wherein at least one of the first and third reflective elements comprises a dichroic mirror.
- 46. The apparatus of claim 44, wherein at least one of the second, fourth, fifth, and sixth reflective elements comprises a mirror.
- 47. The apparatus of claim 44, wherein at least one of the second, fourth, fifth, and sixth reflective elements comprises a surface oriented at an angle greater than a critical angle.
- 48. The apparatus of claim 47, wherein the angle is forty-five degrees.
- 49. The apparatus of claim 47, wherein the critical angle is less than forty-five degrees.
- 50. The apparatus of claim 44, further comprising:
a body constructed from a material; wherein each of the first, second, third, fourth, fifth, and sixth reflective elements is disposed on the body.
- 51. The apparatus of claim 50, wherein the material comprises one of a glass material, a polymer material, and quartz.
- 52. The apparatus of claim 50, wherein at least one of the first, second, third, fourth, fifth, and sixth reflective elements comprises a coating.
- 53. The apparatus of claim 50, wherein at least one of the second, fourth, fifth, and sixth reflective elements comprises a mirror attached to the body.
- 54. The apparatus of claim 50, wherein at least one of the second, fourth, fifth, and sixth reflective elements comprises a surface of the body oriented at an angle greater than a critical angle.
- 55. The apparatus of claim 54, wherein the angle is forty-five degrees.
- 56. The apparatus of claim 54, wherein the critical angle is less than forty-five degrees.
- 57. The apparatus of claim 50, wherein the body comprises a number of parts assembled together.
- 58. The apparatus of claim 44, wherein the first, second, and third optical paths lie within a space.
- 59. The apparatus of claim 58, wherein the space is occupied by a gas.
- 60. The apparatus of claim 59, wherein the gas comprises air.
- 61. The apparatus of claim 58, wherein the space is maintained at a vacuum.
- 62. The apparatus of claim 44, wherein the downstream component comprises a multi-array device having a number of addressable arrays of elements, each of the addressable arrays to receive one of the first, second, and third color components.
- 63. The apparatus of claim 44, wherein the downstream component comprises a total internal reflection (TIR) prism.
- 64. The apparatus of claim 44, wherein the downstream component comprises a polarized beam splitter (PBS).
RELATED APPLICATIONS
[0001] This application is related to application Ser. No. ______, entitled “Optics Engine Having Multi-Array Spatial Light Modulating Device and Method of Operation,” application Ser. No. ______, entitled “Multi-Array Spatial Light Modulating Devices and Methods of Fabrication,” and application Ser. No. ______, entitled “Apparatus for Combining a Number of Images Into a Single Image,” all filed on even date herewith.