EP0802446A1

Illuminator, liquid crystal display using the illuminator and electronic device

Abstract

On a surface of the light guiding body 311, on which the projections 312 are formed with intervals, the reflection layer 313 is provided except the side surfaces 312b-1 and 312b-2 of the projections 312. The light emitting means 322 is provided close to one of end surfaces of the light guiding means 307. Most of the light 305 from the light emitting means 322 is input to the light guiding body 311 through the light input surface 315. The light 305 travels through the light guiding body 311 to be output from the side surfaces 312b-2 of the projections. After passing through the directional change means 321, the light 305 is input to the light receiving element 302 in a direction substantially perpendicular to the light receiving element 302. Light 306 from outside passes through the light receiving element 302 and is then input to the lighting apparatus 303. In the lighting apparatus 303, the light 306 passes through the directional change means 321 to be reflected by the reflection layer 313 on the light-output-side surface of the light guiding body 311, and then again passes through the directional change means 321 toward the light receiving element 302 perpendicularly. When the light passes through the light receiving element 302, a displayed image can be viewed. The reflection layer 313 can reflect the light with a small loss. In addition, if the light 306 from outside is input at an angle of other than 90° to the light receiving element at first, the light can be reflected by the reflection layer 313 with a small loss to be transmitted to the light receiving element 302.

EP0802446A1, drawing sheet 1
Sheet 1 of 31

Term

Term ended

Projected expiry passed 6 November 2016, 9.9 years ago.

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

32 claims: 29 independent, 3 dependent

  1. 1
    Lighting apparatus comprising:light emitting means;and light guiding means for guiding the light from said light emitting means to a back surface of a light receiving element;wherein said light guiding means comprises: a light guiding body having at least one light input surface which receives the light from said light emitting means, and a light-output-side surface facing said light receiving element;and a plurality of projections extending from said light-output-side surface of said light guiding body;and    wherein each of said projections has a top surface which is substantially parallel to said light-output-side surface, and side surfaces which are substantially perpendicular to said light-output-side surface.
  2. 2
    The lighting apparatus as defined in claim 1, wherein said projections have a different refractive index from said light guiding body.
  3. 4
    The lighting apparatus as defined in any one of claims 1 to 3,    wherein a vertical section of each of said projections is substantially a trapezoid;and    wherein said side surfaces of said projections are inclined at an angle of 10 degrees or less from a plane which is perpendicular to said light-output-side surface.
  4. 5
    The lighting apparatus as defined in claim 3, wherein said top surface of each of said projections has a width ranging from 10 µm to 50 µm.
  5. 6
    The lighting apparatus as defined in any one of claims 1 to 5, wherein a reflection layer is provided on said light-output-side surface of said light guiding body for reflecting the light from outside and the light transmitted through said light guiding body.
  6. 7
    The lighting apparatus as defined in claim 6, wherein said reflection layer is further provided on said top surface of each of said projections.
  7. 9
    The lighting apparatus as defined in any one of claims 6 to 8, wherein said light guiding body is provided with said reflection layer on all side surfaces except said light input surface.
  8. 10
    The lighting apparatus as defined in any one of claims 6 to 9, wherein said reflection layer is made of a thin metal film.
  9. 11
    The lighting apparatus as defined in claim 9, wherein said reflection layer provided on said light guiding body is made of a mirror sheet, a reflecting surface of said mirror sheet facing said light guiding body.
  10. 12
    The lighting apparatus as defined in any one of claims 1 to 11, wherein said projections are in the form of a grating on said light-output-side surface.
  11. 13
    The lighting apparatus as defined in any one of claims 1 to 11, wherein the number of said projections per unit area becomes small nearer to said light emitting means, and large farther from said light emitting means.
  12. 14
    The lighting apparatus as defined in any one of claims 1 to 11, wherein a vertical-sectional area of each of said projections becomes large farther from said light emitting means.
  13. 15
    The lighting apparatus as defined in any one of claims 1 to 14, further comprising directional change means for changing the direction of the light which is output from said light guiding means to a direction substantially perpendicular to said light receiving element.
  14. 16
    The lighting apparatus as defined in claim 15,    wherein said light emitting means is in the form of a cylinder extending along said light input surface of said light guiding body;and    wherein said directional change means includes a prism array which comprises a plurality of prisms arranged in parallel to each other and to said light emitting means, each of said prisms having an apex pointing to said light-output-side surface.
  15. 17
    The lighting apparatus as defined in claim 16, wherein a vertical section of each of said prisms is substantially a triangular, an angle of said apex ranging from 50 degrees to 70 degrees.
  16. 18
    The lighting apparatus as defined in claim 16,    wherein each of said prisms has a first surface for receiving the light and a second surface, said apex being formed by said first and second surfaces;and    wherein said first surface comprises a plurality of planes, the normals to said planes being different from each other.
  17. 19
    The lighting apparatus as defined in claim 18,    wherein said first surface comprises a plane tilted at an angle of about 20 degrees from the plane which is perpendicular to said light-output-side surface;and    wherein said second surface is tilted at an angle of about 30 degrees from the plane which is perpendicular to said light-output-side surface.
  18. 20
    The lighting apparatus as defined in claim 15, wherein said directional change means has a structure of diffraction grating which is provided parallel to said light-output-side surface.
  19. 21
    The lighting apparatus as defined in claim 20,    wherein said directional change means includes a hologram element which has a photosensitive layer made of a photosensitive material, said structure of diffraction grating being recorded on said photosensitive layer.
  20. 22
    The lighting apparatus as defined in claim 20, wherein said structure of diffraction grating of said directional change means is a blazed grating which has a sawtooth vertical section.
  21. 23
    The lighting apparatus as defined in any one of claims 15 to 22, further comprising polarizing means which is provided between said light receiving element and said directional change means to convert the light which is output from said directional change means into linearly-polarized light.
  22. 24
    The lighting apparatus as defined in any one of claims 15 to 22, further comprising polarizing means which is provided between said light receiving element and said directional change means to convert the light which is output from said directional change means into linearly-polarized light;    wherein said polarizing means comprises:a cholesteric liquid crystal layer provided to face said prism array;and a quarter wave film which generates retardation by a quarter wavelength and is provided on said cholesteric liquid crystal layer.
  23. 25
    A lighting apparatus comprising:light emitting means;light guiding means which has a light-output-side surface and guides the light from said light emitting means through said light-output-side surface toward a light receiving element with improved directivity;and directional change means for changing the direction of the light which is output from said light guiding means to a direction substantially perpendicular to said light receiving element;wherein said directional change means has a structure of a diffraction grating which is parallel to said light-output-side surface.
  24. 26
    A lighting apparatus comprising:light emitting means;light guiding means which has a light-output-side surface and guides the light from said light emitting means through said light-output-side surface toward a light receiving element with improved directivity;and directional change means for changing the direction of the light which is output from said light guiding means to a direction substantially perpendicular to said light receiving element;wherein said directional change means includes a prism array which comprises a plurality of prisms, each of said prisms having an apex pointing to said light-output-side surface;wherein each of said prisms has a first surface for receiving the light and a second surface, said apex being formed by said first and second surfaces;and    wherein said first surface comprises a plurality of planes, the normals to said planes being different from each other.
  25. 27
    A lighting apparatus comprising:light emitting means for lighting a light receiving element;and light guiding means for guiding the light from said light emitting means to said light receiving element;wherein said light guiding means has a first surface from which the light is output to said light receiving element, and a second surface from which no light is output;and    wherein a reflection layer which reflects the light from outside and the light guided through said light guiding means is provided on said second surface.
  26. 28
    A liquid crystal display system comprising a lighting apparatus as defined in any one of claims 1 to 27, wherein said light receiving element is a liquid crystal display panel.
  27. 29
    The liquid crystal display system as defined in claim 28, further comprising light diffusing means which is provided between said liquid crystal display panel and said light guiding means.
  28. 31
    The liquid crystal display system as defined in any one of claims 28 to 30, wherein said light diffusing means is provided at the front of said liquid crystal display panel.
  29. 32
    Electronic equipment comprising a liquid crystal display system as defined in any one of claims 28 to 31.
Independent claims29