Nova Patents
IL74869A

Biocular holographic helmet mounted display

Abstract

This record has no abstract on file.

IL74869A, drawing sheet 1
Sheet 1 of 4

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

29 claims: 2 independent, 27 dependent

  1. 1
    What is Claimed is:1. Biocular display apparatus for mounting on a helmet to־ provide biocular images combined with real world cues received through a helmet visor canprising: an object source device to be generally mounted adjacent the helmet for providing a display to be directed generally downwardly along the forward portion to the helmet;beam splitting means for splitting incident light from the object source device into a pair of oppositely directed transverse beams;a generally transparent visor for mounting on said helmet and having dual eyepieces oriented at a selected angle, said eyepieces being substantially transparent to permit the helmet wearer to view external scenes therethrough but having the capability of reflecting and collimating light directed thereto from the object source device to project biocular images at respective exit pupils in the general vicinity of the helmet wearer's eyes;means between the object source device and the splitting means for directing light from the object source device to the splitting means;and fold means adjacent the splitting means for direcing the two light beams from the splitting means toward the respective eyepieces.
  2. 2
    Apparatus of Claim 1 wherein the spacing between the visor eyepieces is fixed at a predetermined distance between them, and wherein the exit pupils are of such a size that the apparatus can be used by a 5 substantial portion of the general population without mechanical adjustment.
  3. 3
    Apparatus of Claim 2 wherein the eyepieces afford the helmet wearer a normal field of view without visual obscuration, and wherein the biocular images provide substantially full overlap with each other.
  4. 4
    Apparatus of Claim 1 wherein the object source device is a cathode ray tube capable of providing a video display combining video signals derived from a real world cue sensor with selected instrumentation 5 symbology.
  5. 5
    Apparatus of Claim 4 wherein the cathode ray tube is oriented in a generally horizontal plane.
  6. 6
    Apparatus of Claim 1 wherein the means between the object source device and the splitting means comprise means for bending the light beam from the object source device display and projecting it toward the splitting 5 means.
  7. 7
    Apparatus of Claim 6 wherein the bending means comprise an image folding element and a relay lens mounted in succession along the light path between the object source device and the splitting means.
  8. 8
    Apparatus of Claim 7 wherein the image folding means comprise a prism having an exit face oriented at a preselected wedge angle selected to provide aberration correction of the light beam.
  9. 9
    *Apparatus of Claim 7 wherein the relay lens comprises a triplet of individual lenses separately spaced from each other.
  10. 10
    Apparatus of Claim 9 wherein the triplet of lenses comprises first and third lenses having aspheric surfaces and an intermediate meniscus lens having spherical surfaces.
  11. 11
    Apparatus of Claim 10 wherein the relay lens further includes a filter for eliminating unwanted colors from the object source device display.
  12. 12
    Apparatus of Claim 7 wherein the beam splitting means is generally centrally oriented relative to the axial ray of incident light projected from the relay lens.
  13. 13
    Apparatus of Claim 1 wherein the beam splitting means comprise and X־cube prism having internal surfaces which are partially reflective and partially transmissive to develop the transverse beams from incident light at 5 one external face of the prism.
  14. 14
    Apparatus of Claim 13 wherein the fold means comprise a pair of wing mirrors mounted transversely on opposite sides of the X-cube prism and angled to reflect the transverse beams respectively in the direction 5 of the visor eyepieces.
  15. 15
    Apparatus of Claim 1 wherein the visor is a unitary molded plastic member having respective right and left viewing portions shaped to develop a focusing effect for light reflected from a partially reflective 5 surface thereof.
  16. 16
    Apparatus of Claim 15 wherein the visor is mounted at a selected angle relative to the axial ray of the light beams incident thereon to develop a fold angle for said light beams suitable for projecting the 5 light beams toward the eyes of a wearer of the helmet.
  17. 17
    Apparatus of Claim 16 wherein the visor eyepieces comprise thin surface elements laminated respectively to the right and left portions of the visor and having holograms embedded therein. 1 IB. Apparatus of Claim 17 wherein the object source device is a cathode ray tube and wherein said holograms are fabricated to have a tuned wavelength matching the phosphor of the cathode ray tube.
  18. 18
    19. A biocular holographic display device for mounting on a helmet to pr6vide a transparent image display through which real world cues may be viewed comprising:5 a miniature cathode ray tube having a face plate facing in a generally horizontal direction;a combiner in the form of a helmet visor bearing a pair of substantially clear holographic elements through which the user may view an external 10 scene, said holographic elements constituting eyepieces which are displaced by a preselected distance on opposite sides of the midpoint of the visor;and means comprising a plurality of optical elements positioned between the cathode ray tube face 15 plate and the visor for bending the beam of light rays from the cathode ray tube face plate, splitting said beam into a pair of like beams! and directing said pair of beams to respective eyepieces on said visor for biocular image viewing by a user.
  19. 19
    20. The device of Claim 19 wherein the biocular images provide substantially complete image overlap to to viewer.
  20. 20
    21. The device of Claim 19 wherein the field of view provided through the visor eyepiece through which an external scene may be viewed is substantially without visual obscuration by any part of the device.
  21. 21
    22. The device of Claim 19 wherein the visor is mounted at an angle in the vertical plane such that a bend angle in excess of 50° is developed in the axial ray of the projected image.
  22. 22
    23. The device of Claim 19 wherein said optical elements means comprise a folding prism, a relay lens, an X-cube prism for splitting the beam from the cathode ray tube into a pair of laterally transmitted beams, 5 and a pair of wing mirrors mounted on opposite sides of the X-cube prism for reflecting the split beams toward the combiner.
  23. 23
    24. The device of Claim 23 wherein the optical elements are oriented such that the relay lens and the folding prism are displaced in a vertical plane from a reference line which is parallel to the axial rays of 5 the split beams as they are projected on the combiner.
  24. 24
    25. The device of Claim 19 wherein the cathode ray tube face plate is of glass with a phosphor On the inner surface thereof, and wherein the holographic elements are formed with a tuned wavelength selected to 5 match the phosphor.
  25. 25
    26. The device of Claim 24 wherein the relay lens comprises a triplet of lens elements including a pair of aspheric lenses arrayed on opposite sides of, and spatially separated from, a meniscus lens,
  26. 26
    27. The device of Claim 26 wherein the relay lens further includes a spectral filter following said triplet.
  27. 27
    28. The device of Claim 26 wherein the axis of the relay lens is angularly displaced from the reference line by a predetermined angle.
  28. 28
    29. The device of Claim 19 wherein the exit pupil of each of the dual images reflected from the combiner at a plane 90mm. distant from the combiner as measured along the axial ray of the projected image is 15mm. 5 wide and 10 mm. high.
  29. 29
    30. The device of Claim 29 wherein the dimensions of the exit pupils and the distance between the eyepieces are selected to accommodate approximately 90% of the general population of users.
Independent claims29