Nova Patents
EP0443586A2

Projector.

Abstract

There is provided a projector comprising: a radiation source; an illuminating system having an arrangement of the first and second polarizing beam splitters and a phase plate, in which dividing surfaces of both of the polarizing beam splitters are parallel with each other, the phase plate is arranged between both of the dividing surfaces, the first polarizing beam splitter reflects an S polarizing component in a white beam from the radiation source and transmits a P polarizing component and leads to the phase plate, and the second polarizing beam splitter reflects another S polarizing component which occurred by the phase plate; a cross dichroic mirror system which receives the beam from the arrangement; a first optical modulator for modulating a polarizing plane of the red component of the beam from the mirror system, for reflecting the red component, and for generating a first beam indicative of a first image; a second optical modulator for modulating a polarizing plane of a green component of the beam from the mirror system, for reflecting the green component, and for generating a second beam indicative of a second image; a third optical modulator for modulating a polarizing plane of a blue component of the beam from the mirror system, for reflecting the blue component, and for generating a third beam indicative of a third image; and a projection optical system for receiving the first to third beams through the mirror system and both of the dividing surfaces of the arrangement and for projecting a color image in which the first to third images were overlaid by those beams.

EP0443586A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 21 February 2011, 15.6 years ago.

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

28 claims: 4 independent, 24 dependent

  1. 1
    A projector comprising:a radiation source;an illuminating system having an arrangement of first and second polarizing beam splitters and a phase plate, in which dividing surfaces of both of said polarizing beam splitters are parallel with each other, the phase plate is arranged between both of said dividing surfaces, the first polarizing beam splitter reflects an S polarizing component in a white beam emitted from said radiation source and transmits a P polarizing component and leads to the phase plate, and the second polarizing beam splitter reflects another S polarizing component which occurred by the phase plate;a dichroic mirror system which receives the beam from said arrangement;a first optical modulator for modulating a polarizing plane of a red component of the beam from the mirror system, for reflecting said red component, and for generating a first beam indicative of a first image;a second optical modulator for modulating a polarizing plane of a green component of the beam from the mirror system, for reflecting said green component, and for generating a second beam indicative of a second image;a third optical modulator for modulating a polarizing plane of a blue component of the beam from the mirror system, for reflecting said blue component, and for generating a third beam indicative of a third image;and    a projection optical system for receiving said first to third beams through the mirror system and both of the dividing surfaces of said arrangement and for projecting a color image in which said first to third images were overlaid by said beams.
  2. 7
    A projector according to any one of claims 1 to 6, wherein the dichroic mirror system comprises cross dichroic mirrors.
  3. 8
    A projector comprising:a radiation source;an illuminating system having an arrangement of first, second, and third polarizing beam splitters and a phase plate, in which dividing surfaces of the first and second polarizing beam splitters are parallel with each other, the phase plate is arranged between both of said dividing surfaces, the first polarizing beam splitter reflects an S polarizing component in a white beam emitted from the radiation source and leads to the third polarizing beam splitter and transmits a P polarizing component and leads to the phase plate, and the second polarizing beam splitter reflects another S polarizing component which occurred by the phase plate and leads to the third polarizing beam splitter;a dichroic mirror system which receives the beam from the third polarizing beam splitter;a first optical modulator for modulating a polarizing plane of a red component of the beam from the mirror system, for reflecting said red component, and for generating a first beam indicative of a first image;a second optical modulator for modulating a polarizing plane of a green component of the beam from the mirror system, for reflecting said green component, and for generating a second beam indicative of a second image;a third optical modulator for modulating a polarizing plane of a blue component of the beam from the mirror system, for reflecting said blue component, and for generating a third beam indicative of a third image;and    a projection optical system for receiving the first to third beams through the mirror system and the dividing surface of the third polarizing beam splitter and for projecting a color image in which the first to third images were overlaid by said beams.
  4. 15
    A projector according to any one of claims 8 to 14, wherein the dichroic mirror system comprises cross dichroic mirrors.
  5. 16
    An optical modulation system comprising:a radiation source;modulator for modulating a polarizing plane of a polarizing beam which enters the modulator and reflecting said polarizing beam, thereby generating a reflection beam;and    an optical arrangement having a first polarizing beam splitter for dividing the beam from the radiation source to both of P and S polarizing components and leading the S polarizing component to the modulating means, a converter for rotating a polarizing plane of the P polarizing component and converting into another S polarizing component, and a second polarizing beam splitter for reflecting said another S polarizing component and leading to the modulator,    wherein said polarizing beam is generated by both of said S polarizing components and said first and second polarizing beam splitters are made act as an analyzer of the reflection beam.
  6. 21
    A projector comprising:a radiation source;an illuminating system having an arrangement of the first polarizing beam splitter and a reflecting surface, a phase plate, and a second polarizing beam splitter, in which a dividing surface and the reflecting surface of the first polarizing beam splitter are parallel with each other, the first polarizing beam splitter reflects an S polarizing component of a white beam from the radiation source and leads to the second polarizing beam splitter and transmits a P polarizing component and leads to the reflecting surface, the reflecting surface reflects the P polarizing component and leads to the second polarizing beam splitter, and the phase plate makes polarizing directions of both of the polarizing components coincide;a dichroic mirror system which receives the beam from the second polarizing beam splitter;a first optical modulator for modulating a polarizing plane of a red component of the beam from the mirror system, for reflecting said red component, and for generating a first beam indicative of a first image;a second optical modulator for modulating a polarizing plane of a green component of the beam from the mirror system, for reflecting said green component, and for generating a second beam indicative of a second image;a third optical modulator for modulating a polarizing plane of a blue component of the beam from the mirror system, for reflecting said blue component, and for generating a third beam indicative of a third image;and    a projection optical system for receiving said first to third beams through the mirror system and a dividing surface of the second polarizing beam splitter and for projecting a color image in which the first to third images were overlaid by said beams.
  7. 28
    A projector according to any one of claims 21 to 27, wherein the dichroic mirror system comprises cross dichroic mirrors.