IP Library › Granted Patent US 11,543,696
Granted Patent B2
US 11,543,696 · App. 16/516,236 · Granted Jan 3, 2023

Optical surface mapping system

Inventors: Hung-Shan Chen (Tainan, TW); Ming-Syuan Chen (Tainan, TW); Ming-Shu Hsiao (Tainan, TW); Cheng-Hung Chi (Tainan, TW); Kuan-Ming Chen (Tainan, TW); Chin-Jung Tsai (Tainan, TW); Yi-Nung Liu (Tainan, TW)
Assignee: HIMAX TECHNOLOGIES LIMITED
G02F1/133504G02F1/133365
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Quick Facts
Patent No.
US 11,543,696
App. No.
16/516,236
Granted
Jan 3, 2023
Kind
B2
Abstract

A liquid crystal element includes a substrate, a diffractive optical element layer, and a liquid crystal material. The diffractive optical element layer has an uneven surface. The liquid crystal material is between the substrate and the uneven surface of the diffractive optical element layer. The liquid crystal material is disposed contiguously with the uneven surface of the diffractive optical element layer.

Claims (13)

1. An optical surface mapping system, comprising:

a light source providing a light to a target region;

a first liquid crystal element comprising a first diffractive optical element layer and a first liquid crystal material, wherein the first diffractive optical element layer comprises a plurality of repeating first units, each of the first units has a first protruding portion, and the first protruding portion comprises a first sidewall, a second sidewall substantially parallel with the first sidewall, and a first flat surface connecting the first sidewall to the second sidewall, each of the first and second sidewalls comprises a first segment adjoining a first part of the first protruding portion and a second segment adjoining a second part of the first protruding portion, a first distance between the first segment of the first sidewall and the first segment of the second sidewall is greater than a second distance between the second segment of the first sidewall and the second segment of the second sidewall from a top view, and the first liquid crystal material is disposed contiguously with the first sidewall, the second sidewall, and the first flat surface of the first protruding portion of the first diffractive optical element layer;

a second liquid crystal element comprising a second diffractive optical element layer and a second liquid crystal material, wherein the second diffractive optical element layer comprises a plurality of repeating second units, each of the second units has a second protruding portion, and the second protruding portion comprises a third sidewall, a fourth sidewall substantially parallel with the third sidewall, and a second flat surface connecting the third sidewall to the fourth sidewall, each of the third and fourth sidewalls comprises a first segment adjoining a first part of the second protruding portion and a second segment adjoining a second part of the second protruding portion, a third distance between the first segment of the third sidewall and the first segment of the fourth sidewall is greater than a fourth distance between the second segment of the third sidewall and the second segment of the fourth sidewall from a top view, and the second liquid crystal material is disposed contiguously with the third sidewall, the fourth sidewall, and the second flat surface of the second protruding portion of the second diffractive optical element layer, wherein the first liquid crystal element is configured to receive the light from the light source and send the light to the second liquid crystal element, and the second liquid crystal element is configured to receive the light from the first liquid crystal element and send the light to the target region, wherein the first and second liquid crystal elements are configured to apply a pattern to the light;

an image capture component configured to capture an image of the pattern reflected by the target region and generate image data; and

a processor configured to generate a three-dimensional map according to the image data.

2. The optical surface mapping system of claim 1 , wherein the first liquid crystal element does not comprise a polymer in the first liquid crystal material, and the second liquid crystal element does not comprise a polymer in the second liquid crystal material.

3. The optical surface mapping system of claim 1 , wherein at least one of the first and second liquid crystal elements further comprises a polymer in one of the first and second liquid crystal materials of said one of the first and second liquid crystal elements.

4. The optical surface mapping system of claim 3 , wherein another one of the first and second liquid crystal elements does not comprise the polymer.

5. The optical surface mapping system of claim 3 , wherein said one of the first and second liquid crystal materials is doped with a chiral dopant.

6. The optical surface mapping system of claim 3 , wherein the first protruding portion of the first diffractive optical element layer is opposite to the light source.

7. The optical surface mapping system of claim 3 , the second protruding portion of the second diffractive optical element layer is opposite to the light source.

8. The optical surface mapping system of claim 1 , wherein the light source comprises an emitter array providing a plurality of beams of the light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2019
From: CHEN, HUNG-SHAN; CHEN, MING-SYUAN; HSIAO, MING-SHU; CHI, CHENG-HUNG; CHEN, KUAN-MING; TSAI, CHIN-JUNG; LIU, YI-NUNG
To: HIMAX TECHNOLOGIES LIMITED
Reel/Frame 049797/0046 →
Continuity (1)
Related Publication 20210018791A1 · Jan 21, 2021