IP Library › Granted Patent US 11,835,732
Granted Patent B2
US 11,835,732 · App. 17/581,833 · Granted Dec 5, 2023

Structured light projector

Inventors: Hung-Shan Chen (Tainan, TW); Yen-Chen Chen (Tainan, TW)
Assignee: LIQXTAL TECHNOLOGY INC.
G02B27/425G01B11/2513G02B5/3083G02B5/32G02B27/286G03B21/00H04N13/254G01N2021/8829G03B21/20
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Quick Facts
Patent No.
US 11,835,732
App. No.
17/581,833
Granted
Dec 5, 2023
Kind
B2
Abstract

An optical sensing device adopted to use structured light to detect an object is provided. The optical sensing device includes a structured light projector and a sensor. The structured light projector includes a light source and at least one beam multiplication film. The light source is configured to emit a light beam. The at least one beam multiplication film is disposed on a transmission path of the light beam and is made of anisotropic refractive index material, wherein a plurality of separated light beams are produced after the light beam from the light source passes through the at least one beam multiplication film, so as to form the structured light. The sensor is configured to sense the structured light reflected from the object. Besides, a structured light projector is also provided.

Claims (12)

1. A structured light projector, comprising:

a light source, configured to emit a light beam; and

at least two beam multiplication films, disposed on a transmission path of the light beam, wherein a plurality of separated light beams are produced after the light beam from the light source passes through any one of the at least two beam multiplication films, so as to form structured light, and optical axes of the at least two beam multiplication films are inclined relative to a transmission direction of the light beam emitted from the light source;

a diffractive optical element, configured to perform at least one of beam shaping and beam multiplication, wherein the at least two beam multiplication films are disposed between the light source and the diffractive optical element; and

a wave plate, disposed between adjacent two of the at least two beam multiplication films and the diffractive optical element,

wherein a polarization state of the light beam is changed from linear polarization to circular polarization or elliptical polarization after the light beam passes through the wave plate.

2. The structured light projector according to claim 1 , wherein the optical axes of the at least two beam multiplication films are inclined relative to the transmission direction of the light beam emitted from the light source by angles respectively existing in different reference planes which are not parallel or perpendicular to each other.

3. The structured light projector according to claim 1 , wherein the structured light projector further comprises a lens module disposed on the transmission path of the light beam, and the lens module is configured to perform at least one of beam shaping and beam collimation.

4. The structured light projector according to claim 1 , wherein the at least two beam multiplication films comprise uniaxial retardation films, biaxial retardation films, or oblique axial retardation films.

5. The structured light projector according to claim 1 , wherein the at least two beam multiplication films comprise flexible films.

6. The structured light projector according to claim 1 , wherein optical axes of the at least two beam multiplication films are inclined relative to a transmission direction of the light beam emitted from the light source by different angles.

7. The structured light projector according to claim 1 , wherein the light source comprises an edge emitting laser or a vertical-cavity surface-emitting laser.

Continuity (3)
Division 15970856 · May 3, 2018
Provisional Application 62590662 · Nov 27, 2017
Related Publication 20220146847A1 · May 12, 2022
Cited By (1)
US 12,625,374