Nova Patents
EP0571192A2

Colour display system.

Abstract

A field sequential color head-up display system includes image generating means including a source of light (12) at least two different wavelengths. A color selective polarizing filter (16) having first and second absorption axes, enables the passage of linearly polarized light of first and second colors. Optical retardation imposed by variable optical retarding means (20) determines the color of the light transmitted by circular polarizing means (18). Image collimating means (26) apply a generated image of selected colors to an image combiner (28) placed in the line of sight beteen an observer (32) and a scene, thereby superimposing a generated image over the scene visible to the observer (32). Holographic elements (38) tuned to the selected wavelengths improve reflection of those wavelengths to the observer (32).

EP0571192A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 19 May 2013, 13.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

19 claims: 5 independent, 14 dependent

  1. 1
    A color display system characterised by:image generating means (11) having a source of light (12) that emits light of at least first and second substantially different colors;light switching means (14) in optical communication with said light source (12) for selectively transmitting therethrough a light output of either said first color, said second color, or a composite color containing both said first and second colors: and image combining means (28) in optical communication with said light switching means output, said image combining means (28) being arranged to reflect light of said first and second colors, the image combining means (28) being positioned, in use, in the line of sight between an observer (32) and a scene to superimpose a generated image over the scene visible to the observer.
  2. 2
    A display system as claimed in Claim 1 wherein the said first and second colors are different primary colors.
  3. 3
    A display system as claimed in Claim 1 or Claim 2 comprising optical wavelength enhancement means (36) in optical communication with said image combining means (28) for enhancement of the reflectivity on said image combining means (28) of the colors of light generated by said light source (12).
  4. 4
    A display system as claimed in Claim 3 wherein the said enhancement means (36) include first and second diffractive filter means tuned to reflect light of said first and second colors, respectively.
  5. 5
    A display system as claimed in Claim 3 wherein said first and second diffractive filter means each include a reflecting hologram (38) tuned to said first and second colors, respectively.
  6. 6
    A display system as claimed in any of Claims 1 to 5, the light switching means (14) comprising:light polarizing means in optical communication with said source, including a color selective polarizing filter (16) having first and second substantially orthogonally oriented absorption axes, the first absorption axis passing linearly polarized light of a first color and the second absorption axis passing linearly polarized light of a second color;circular polarizing means (18) in optical communication with said light polarizing means for selectively transmitting light of a color determined by the amount by which the light emitted by said source is optically retarded;variable optical retarding means (20) disposed between said color selective polarizing filter (16) and said circular polarizing means (18) for retarding light applied to said circular polarizing means (18);control means (24) coupled to said variable optical retarding means (20) for controlling the amount of optical retardation imposed by said retarding means (20) upon light transmitted therethrough, whereby said retarding means (20) are capable of at least first and second retardations resulting in the emission of light of at least the said first and second colors;the display further comprising: image collimating means (26) in optical communication with said circular polarizing means (18) for applying an image generated by said image generating means (11) to the said image combining means (28).
  7. 7
    A display system as claimed in Claim 6 in which the light emitted from said source (12) is modulated in synchronism with said control means (24) to produce images appearing to have a multi-colored appearance.
  8. 8
    A display system as claimed in Claim 7 wherein said synchronized modulation of said source of light includes switching between said first and second colors of light at a rate higher than the flicker threshold of a human eye so that in use the images generated by said source of light appear to an observer (32) to be constant and contain both of said first and second colors.
  9. 9
    A display system as claimed in Claim 6 or any claim dependent thereon including filter means (40) in the optical path between said source of light (12) and the output of said image collimating means (26) for limiting emitted light to said first and second colors of light at said image combining means (28), to eliminate unwanted colors of light from the output of said image collimating means (26) and to improve display contrast by reducing reflected ambient light without substantially affecting display brightness.
  10. 10
    A display system as claimed in Claim 6 or any claim dependent thereon, wherein said variable optical retarding means (20) include liquid crystal light valve means.
  11. 11
    A display system as claimed in Claim 10 wherein said liquid crystal light valve means (22) are dichroic liquid crystal filter means (46,48).
  12. 12
    A display system as claimed in Claim 10 wherein said liquid crystal light valve means (46,48) are cholesteric liquid crystal filter means.
  13. 13
    A display system as claimed in any of Claims 10 to 12 in which the liquid crystal light valve means (46,48) comprises first and second liquid crystal cells and said control means (24) includes a source of electric potential at first and second levels and means for applying to each of said cells said electrical potential levels for determining the amount of optical retardation imposed by each of said cells.
  14. 14
    A display system as claimed in any preceding claim wherein said image combining means (28) include a first screen (42) having a surface shape adapted to reflect said images generated by said image generating means and to allow transmission of ambient light therethrough.
  15. 15
    A display system as claimed in Claim 14, wherein said image combining means (28) further include a second screen (44) having a surface shape adapted to reflect said images generated by said image generating means (11) and to allow transmission of ambient light therethrough, each of said first and second screens (42,44) being optically tuned to efficiently reflect light of at least one of said wavelengths produced by said source of light (12).
  16. 16
    A display system as claimed in any preceding claims, wherein said source of light (12) is a cathode ray tube.
  17. 17
    A display as claimed in Claim 16, wherein said cathode ray tube source of light (12) is adapted to be modulated in synchronism with said control means (24) by switching among predetermined colors including combinations of colors at a rate higher than the flicker threshold of the human eye, so that in use the images generated by the source of light appear to an human observer (32) to be constant and to contain a combination all colors which can be produced by the cathode ray tube.
  18. 18
    A display system as claimed in Claim 16 or any claim dependent thereon, wherein said cathode ray tube is a dual phosphored cathode ray tube using a mixture of P53 and P56 phosphors to provide light of at least two separated wavelengths in the visible spectrum.
  19. 19
    A display system as claimed in Claim 16 or any claim dependent thereon wherein said cathode ray tube has a writing rate of about 1905 metres per second.
Independent claims19