EP1558043A1

Synchronizing sequential color illumination system and pixel shift sub-frame images

Abstract

A plurality of colors of light is generated (68). The plurality of colors of light have a color sequence that periodically varies with a characteristic sequential color time period. The plurality of colors of light are modulated (70) to provide a plurality of sub-frame images for each of a sequence of image frames. The plurality of sub-frame images are projected (72) for each of the image frames during a frame period. For each image frame, each of the sub-frame images is projected (72) displaced relative to each other sub-frame image. The periodic variation of the plurality of colors of light and the projection of the plurality of sub-frame images are synchronized (74) to assure an integer relationship between the color time period and the frame period.

EP1558043A1, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 5 January 2025, 1.7 years ago.

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  5. Today

9 claims: 4 independent, 5 dependent

  1. 1
    A method for creating a sequence of image frames, the method comprising:generating (68) a plurality of colors of light having a color sequence that periodically varies with a characteristic sequential color time period;modulating (70) the plurality of colors of light to provide a plurality of sub-frame images for each of the image frames;projecting (72) the plurality of sub-frame images for each of the image frames during a frame period;for each image frame, each of the sub-frame images projected (72) displaced relative to each other sub-frame image;and synchronizing (74) the periodic variation of the plurality of colors of light and the projection of the plurality of sub-frame images to assure an integer relationship between the color time period and the frame period.
  2. 4
    A display system (2) for creating a sequence of image frames, the display system (2) comprising:a spatial light modulator (8) configured to modulate light to provide a plurality of sub-frame images for each of the image frames during a frame period;a periodic light generator (6) configured to generate a plurality of colors of light having a color sequence that periodically varies with a characteristic sequential color time period, the periodic light generator (6) disposed to pass the plurality of colors of light across the spatial light modulator (8);a periodic wobbling device (10) configured to provide a relative displacement of the sub-frame images for each image frame;and a system timing unit (34) configured to synchronize the periodic light generator (6) and the periodic wobbling device (10) to assure an integer relationship between the color time period and the frame period.
  3. 5
    A method for creating a displayed image comprising:generating (76) a first light beam carrying a first sequence of primary colors during a first image sub-frame time period;modulating (78) the first light beam during the first image sub-frame time period to generate a first modulated beam of light;casting (80) the first modulated beam of light onto a viewing surface;generating (82) a second light beam carrying a second sequence of primary colors during a second image sub-frame time period;modulating (84) the second light beam during the second sub-frame period to generate a second modulated beam of light;and casting (86) the second modulated beam of light onto the viewing surface at a position displaced relative to the first modulated beam of light in a manner to increase the effective resolution of the displayed image.
  4. 7
    A display system (2) comprising:an image processing unit (4) configured to generate at least two data arrays during a frame period, each data array defining a sub-frame image to be displayed during an image sub-frame time period;a periodic color light generator (6) configured to generate a sequence of primary colors during each of at least two of the image sub-frame time periods;a light modulator (8) configured to receive light from the periodic light generator (6) and to generate a modulated light beam during each image sub-frame time period;and a wobbling device (10) configured to receive the modulated light beam and provide relative displacement between the sub-frame images during the frame period.