EP1908304A2

Two-panel liquid crystal system with circular polarization and polarizer glasses suitable for three dimensional imaging

Abstract

This record has no abstract on file.

EP1908304A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 11 July 2026, 0.2 years ago.

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

27 claims: 3 independent, 24 dependent

  1. 1
    Claims of equivalent WO 2007008777 A2 Claims:1. A three-dimensional display system for providing stereo images to a user, said display system comprising: a pair of polarized glasses wearable by said user, said polarized glasses containing one lens for each of two eyes of the user, each said lens having a direction of polarization different from the other said lens;a light source;a first and a second liquid crystal panel placed in stacked configuration between said light source and said user with said first liquid crystal panel being closer to said light source;a first polarizer being placed between said light source and said first liquid crystal panel and adapted to impart linear polarization of a first orientation to light directed toward said first liquid crystal panel;a second polarizer being placed between said first and second liquid crystal panels and having a polarization orientation different from said first polarizer;electronic processing means for processing a composite image from a stereopair, said stereopair comprising a left input image and a right input image, said processing means being further adapted to calculate an angle of polarization for each pixel of said second liquid crystal panel;and panel control means for receiving signals from said processing means and controlling operation of said panels in accord with said signals;wherein said composite image represents an average color intensity for each pixel of the left and right input images, and said angle of polarization φ for each pixel of the second liquid crystal panel can be calculated from the relationship tan φ = Square root of (L/R) where L is the intensity of a corresponding pixel for the left input image and R is the intensity of a corresponding pixel for the right input image, and wherein said panel control means causes said polarizers and said liquid crystal panels to polarize light from said source and rotate said polarized light such that a left image corresponding to said left input image is decoded by a left lens of said polarized glasses and a right image corresponding to said right input image is decoded by a right lens of said polarized glasses.
  2. 10
    A three-dimensional display system for providing stereo images to a user, said display system comprising:a pair of polarized glasses wearable by said user, said polarized glasses containing one lens for each of two eyes of the user, each said lens having a direction of polarization different from the other said lens;a fixed pixel display monitor, said liquid crystal display monitor capable of producing color images via a plurality of individually controllable pixels;a transmissive liquid crystal panel adapted to be fitted on top of said fixed pixel monitor such that it is placed in stacked configuration between said monitor and said user;electronic processing means for processing a composite image from a stereopair, said stereopair comprising a left input image and a right input image, said processing means being further adapted to calculate an angle of polarization for each pixel of said second liquid crystal panel;display monitor control means for receiving first signals from said processing means and controlling operation of said fixed pixel monitor in accord with said first signals;and liquid crystal panel control means for receiving second signals from said processing means and controlling operation of said liquid crystal panel in accord with said second signals;wherein said composite image represents an average color intensity for each pixel of the left and right input images, and said angle of polarization φ for each pixel of the liquid crystal panel can be calculated from the relationship tan φ = Square root of (L/R) where L is the intensity of a corresponding pixel for the left input image and R is the intensity of a corresponding pixel for the right input image, and wherein said liquid crystal panel control means causes said liquid crystal panel to polarize image light from said fixed pixel display monitor and rotate said polarized light such that a left image corresponding to said left input image is decoded by a left lens of said polarized glasses and a right image corresponding to said right input image is decoded by a right lens of said polarized glasses.
  3. 19
    A method for producing a perceived three dimensional image, said method comprising:providing a pair of polarized glasses to be worn by said user, said polarized glasses containing one lens for each of two eyes of the user, each said lens having a direction of polarization different from the other said lens;arranging a first and a second liquid crystal panel in stacked configuration between a light source and said user with said first liquid crystal panel being closer to said light source;placing a first polarizer between said light source and said first liquid crystal panel, said first polarizer being adapted to impart linear polarization of a first orientation to light directed toward said first liquid crystal panel;placing a second polarizer between said first and second liquid crystal panels, said second polarizer imparting a polarization orientation different from said first polarizer;determining a composite image from a stereopair comprising a left input image and a right input image, said composite image representing an average color intensity for each pixel of the left and right input images;controlling said first liquid crystal panel to display said composite image;calculating an angle of polarization for each pixel of said second liquid crystal panel, wherein said angle of polarization φ for each pixel of the second liquid crystal panel is calculated from the relationship tan φ = Square root of (L/R) where L is the intensity of a corresponding pixel for the left input image and R is the intensity of a corresponding pixel for the right input image;and controlling said second liquid crystal display panel to achieve said calculated angle of polarization for each pixel of said second liquid crystal panel to produce a three dimensional image viewable by said user wearing said polarized glasses.
  4. 22
    The method as set forth in claim 22, wherein said means for converting linearly polarized light to circularly polarized light comprises a quarter wave retardation plate.