Projector, electronic device having projector, and method for obtaining depth information of image data
10942362 ยท 2021-03-09
Assignee
Inventors
- Biing-Seng Wu (Tainan, TW)
- Han-Yi Kuo (Tainan, TW)
- Kuan-Ming Chen (Tainan, TW)
- Li-Chiu Tsai (Tainan, TW)
Cpc classification
G03B15/03
PHYSICS
G02B27/4222
PHYSICS
G02B27/18
PHYSICS
G03B21/00
PHYSICS
International classification
G02B27/42
PHYSICS
Abstract
The present invention provides a projector, wherein the projector includes a light-emitting device, a lens module having a diffuser part and a lens part, and a DOE. In the operations of the projector, the light-emitting device is arranged for generating at least one laser beam, and the at least one laser beam passes through the diffuser part and the DOE to illuminate a field of view, and the at least one laser beam passes through the lens part and the DOE to generate a plurality of dots.
Claims
1. A projector, comprising: a light-emitting device, for generating at least one laser beam; a lens module having a diffuser part and a lens part, wherein the lens module has a single lens serving as the lens part, the single lens is at a corner of the lens module, and the other region of the lens module is a micro-lens array serving as the diffuser part; and a diffraction optical element (DOE); wherein the at least one laser beam passes through the diffuser part and the DOE to illuminate a field of view, the at least one laser beam passes through the lens part and the DOE to generate a plurality of dots.
2. The projector of claim 1, wherein the at least one laser beam passes through the diffuser part and the DOE to generate an uniform illumination, and the uniform illumination and the plurality of dots serve as an output image of the projector.
3. The projector of claim 2, wherein the uniform illumination and the plurality of dots are simultaneously outputted to a surrounding area of the projector.
4. The projector of claim 2, wherein for the output image of the projector, the plurality of dots are within a region of the uniform illumination.
5. The projector of claim 1, wherein the diffuser part is a micro-lens array.
6. The projector of claim 1, wherein the light-emitting device is a vertical-cavity surface-emitting laser (VCSEL) having a plurality of laser emitters for generating a plurality of laser beams.
7. The projector of claim 6, wherein only a portion of the laser emitters generates the laser beam(s) to the lens part of the lens module, and the lens part does not receive the laser beams generated by the other portion of the laser emitters.
8. An electronic device, comprising: a projector, comprising: a light-emitting device, for generating at least one laser beam; a lens module having a diffuser part and a lens part, wherein the lens module has a single lens serving as the lens part, the single lens is at a corner of the lens module, and the other region of the lens module is a micro-lens array serving as the diffuser part; and a diffraction optical element (DOE); wherein the at least one laser beam passes through the diffuser part and the DOE to illuminate a field of view, the at least one laser beam passes through the lens part and the DOE to generate a plurality of dots to generate an output image of the projector to a surrounding environment; and a camera module, for capturing the region of the surrounding environment to generate image data.
9. The electronic device of claim 8, wherein the at least one laser beam passes through the diffuser part and the DOE to generate an uniform illumination, and the uniform illumination and the plurality of dots are simultaneously outputted to the surrounding area of the projector.
10. The electronic device of claim 9, wherein for the output image of the projector, the plurality of dots are within a region of the uniform illumination.
11. The electronic device of claim 8, wherein the diffuser part is a micro-lens array.
12. The electronic device of claim 8, wherein the light-emitting device is a vertical-cavity surface-emitting laser (VCSEL) having a plurality of laser emitters for generating a plurality of laser beams.
13. The electronic device of claim 12, wherein only a portion of the laser emitters generates the laser beam(s) to the lens part of the lens module, and the lens part does not receive the laser beams generated by the other portion of the laser emitters.
14. A method for obtaining depth information of image data, comprising: controlling a projector to project an output image having an uniform illumination with a plurality of dots to a surrounding environment; capturing the region of the surrounding environment to generate image data corresponding to the output image; and analyzing the image data to obtain the depth information of image data; wherein the step of controlling the projector to project the output image having the uniform illumination with the plurality of dots to the surrounding environment comprises: using a light-emitting device to generate at least one laser beam; providing a lens module having a diffuser part and a lens part, wherein the lens module has a single lens serving as the lens part, the single lens is at a corner of the lens module, and the other region of the lens module is a micro-lens array serving as the diffuser part; providing a diffraction optical element (DOE); wherein the at least one laser beam passes through the diffuser part and the DOE to generate the uniform illumination, and the at least one laser beam passes through the lens part and the DOE to generate the plurality of dots.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(9) In the operations of the projector 100, the light-emitting device 110 is arranged to generate at least one laser beam, and the laser beam passes through the diffuser part of the lens module 120 and the DOE 130 to generate an uniform illumination, and the laser beam passes through the lens part of the lens module 120 and the DOE 130 to generate a plurality of dots, to generate an output image of the projector 100.
(10) In this embodiment, the uniform illumination and the plurality of dots are generated simultaneously, that is the projector 100 can serve as the illuminator and the pattern generator. Therefore, the designs of an electronic device having the projector 100 are easier and flexible, and the manufacturing cost is better than the prior art electronic device having the distinct pattern generator and the illuminator.
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(13) In the embodiments shown in
(14) It is noted that the lens module 120 shown in
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(16) In the embodiment show in
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(18) Step 700: the flow starts.
(19) Step 702: control a projector to project an output image having an uniform illumination with a plurality of dots to a surrounding environment.
(20) Step 704: capture the region of the surrounding environment to generate image data corresponding to the output image.
(21) Step 706: analyze the image data to obtain the depth information of image data.
(22) Briefly summarized, in the projector of the present invention, the projector can serve as the illuminator and the pattern generator simultaneously, that is the output image projected by the projector has an uniform illumination with a plurality of dots, where the uniform illumination can increase the ambient light while the plurality of dots can be used to generate the 3D image. Therefore, the designs of an electronic device having the projector are easier and flexible, and the manufacturing cost is better than the prior art electronic device having the distinct pattern generator and the illuminator.
(23) Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.