IP Library › Granted Patent US 11,323,669
Granted Patent B2
US 11,323,669 · App. 16/697,145 · Granted May 3, 2022

Thermal compensation in image projection

Inventors: Christopher John Orlick (Furlong, PA); Jerome D. Shields (Lumberton, NJ)
Assignee: Dolby Laboratories Licensing Corporation
H04N9/3144G02B27/0025G03B21/16G03B21/206G03B21/2053G06T5/003H04N9/3126H04N9/3182H04N9/3194G02B27/0927
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Quick Facts
Patent No.
US 11,323,669
App. No.
16/697,145
Granted
May 3, 2022
Kind
B2
Abstract

An image projector includes an image data input, a controller, a light source, illumination optics, an imaging spatial light modulator (SLM), and imaging optics. The controller is coupled to receive the image data and is operative to determine a thermal state of the image projector. The controller also adjusts the image data depending on the thermal state of the image projector to generate thermally adjusted image data. The thermal state of facilitates adjustment of the imaging data, because the thermal state is indicative of changes in the lightfield incident on the SLM.

Claims (38)

1. An image projector comprising:

a sensor configured to sense a temperature associated with the image projector;

a controller configured to

receive a first image data, the first image data corresponding to a frame of a video to be displayed by the projector,

receive the sensed temperature,

determine a thermal state of the image projector based at least in part on a content of the first image data and the sensed temperature, and

generate a second image data based on the first image data and the thermal state, the second image data corresponding to a thermally adjusted frame of the video to be displayed by the projector;

an illumination source configured to emit light in response to the second image data; and

an optical system configured to project an image onto a screen based on the emitted light.

2. The image projector according to claim 1 , wherein:

the illumination source includes a plurality of light emitters, and

the thermal state of the image projector includes a plurality of thermal sub-states, respective ones of the plurality of thermal sub-states corresponding to respective ones of the plurality of light emitters.

3. The image projector according to claim 2 , wherein the controller is configured to determine the thermal state of the image projector based at least in part on respective thermal sub-states of adjacent groups of the plurality of light emitters.

4. The image projector according to claim 2 , wherein respective ones of the plurality of light emitters are pixels of a spatial light modulator.

5. The image projector according to claim 2 , wherein respective ones of the plurality of light emitters are lasers.

6. The image projector according to claim 1 , wherein the illumination source includes at least one light emitter and at least one spatial light modulator.

7. The image projector according to claim 1 , wherein the sensor is configured to sense at least one of ambient air and cooling air flow.

8. The image projector according to claim 1 , wherein the sensor is in thermal contact with at least one of a prism, an optical mount, and a reflector.

9. An image projector comprising:

a sensor configured to sense a temperature associated with the image projector;

a controller configured to

receive a first image data, the first image data corresponding to a frame of a video to be displayed by the projector,

receive the sensed temperature,

determine a thermal state of the image projector based at least in part on a content of the first image data and the sensed temperature, and

generate a second image data based on the first image data and the thermal state, the second image data corresponding to a thermally adjusted frame of the video to be displayed by the projector;

an illumination source including an illumination light modulator in communication with the controller;

an imaging light modulator in communication with the controller, the imaging light modulator arranged downstream of the illumination light modulator, and

an optical system arranged downstream of the imaging light modulator, the optical system configured to project an image onto a screen,

wherein at least one of the illumination light modulator and the imaging light modulator is configured to adjust its light output based on the second image data generated by the controller.

10. An image projector comprising:

a controller configured to

receive a first image data corresponding to a frame of a video,

determine a thermal state of the image projector based at least in part on a content of the first image data, and

generate a second image data based on the first image data, the second image data corresponding to a thermally adjusted frame of the video;

an illumination source including an illumination light modulator in communication with the controller;

an imaging light modulator in communication with the controller, the imaging light modulator arranged downstream of the illumination light module, and

an optical system arranged downstream of the imaging light modulator, the optical system configured to project an image onto a screen,

wherein at least one of the illumination light modulator and the imaging light modulator is configured to adjust its light output based on the second image data generated by the controller.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2019
From: ORLICK, CHRISTOPHER JOHN; SHIELDS, JEROME D.
To: DOLBY LABORATORIES LICENSING CORPORATION
Reel/Frame 051175/0007 →
Priority Claims (1)
EP 15185915 · Sep 18, 2015 · regional
Continuity (4)
Continuation 15572153
Provisional Application 62203770 · Aug 11, 2015
Provisional Application 62157825 · May 6, 2015
Related Publication 20200099903A1 · Mar 26, 2020
Cited By (1)
US 12,205,258