IP Library › Granted Patent US 10,083,335
Granted Patent B2
US 10,083,335 · App. 15/320,243 · Granted Sep 25, 2018

Image acquisition apparatus, terminal device, liquid crystal terminal device and image acquisition method

Inventor: Mingfang Zhang (Guangdong, CN)
Assignee: Vkansee Technology Company Ltd.
G06K9/00013A61B5/1172G02B6/005G02F1/13338G06K9/209G06K9/2036G02F1/133615
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,083,335
App. No.
15/320,243
Granted
Sep 25, 2018
Kind
B2
Abstract

An image acquisition apparatus, a terminal device, a liquid crystal terminal device, and an image acquisition method are provided. The image acquisition apparatus ( 8 ) includes a light guide plate ( 1 ) and an image scanner ( 16 ) disposed to be spaced apart from the light guide plate ( 1 ), a light source ( 2 ) being disposed at a side of the light guide plate ( 1 ). The image acquisition apparatus ( 8 ) is integrated into the terminal device ( 7 ). The liquid crystal terminal device includes a LCD panel ( 11 ), a backlight element ( 12 ) and the image acquisition apparatus ( 8 ), an image scanner ( 16 ) of the image acquisition apparatus ( 8 ) being disposed in the backlight element ( 12 ). The image acquisition method includes: making at least part of light emitted by the light source ( 2 ) enter and propagate inside the light guide plate ( 1 ) through TIR, and acquiring an image of an object on the other side of the light guide plate ( 1 ) by an image scanner ( 16 ). An ultra-thin image acquisition apparatus ( 8 ), terminal device ( 7 ) and liquid crystal terminal device formed based on a waveguide principle and a multi-pinhole imaging principle significantly reduce the size and thickness of an image acquisition module in the device and greatly facilitate the implementation of mobile devices and embedded devices in which an image acquisition function is required.

Claims (62)

1. An image acquisition apparatus, comprising:

a light guide plate;

a light source for emitting light into the light guide plate, wherein the light source is disposed at one side of the light guide plate;

a pinhole imaging plate disposed to be spaced apart from the light guide plate, wherein the pinhole imaging plate has at least one imaging pinhole; and

an image sensor for acquiring an image of an object above the light guide plate, wherein the image sensor is disposed to be spaced apart from the pinhole imaging plate;

wherein, vertical distance from a surface of the light guide plate away from the pinhole imaging plate to a center plane of the pinhole imaging plate is defined as object distance h object and the object distance h object satisfies a formula of

h

object

≥

2

⁢

r

2

⁢

⁢

tg

⁡

(

α

/

2

)

,

wherein r represents distance between centers of two adjacent imaging pinholes, and α represents angular field of view of the imaging pinhole,

wherein the image acquisition apparatus is configured for:

making at least part of light emitted by the light source enter and propagate inside the light guide plate through total internal reflection;

establishing multiple scanning regions corresponding to multiple imaging pinholes for the object above the light guide plate, wherein adjacent scanning regions are overlapping with each other;

capturing multiple imaging regions corresponding to multiple imaging pinholes by the image sensor as partial images of the object above the light guide plate being scanned in corresponding scanning regions, wherein the partial images do not overlap with each other; and

stitching together the partial images in each of the imaging regions to obtain a complete image of the object being scanned.

2. The image acquisition apparatus according to claim 1 , wherein, distance r between centers of two adjacent imaging pinholes satisfies a formula of r≥2·h image tg(α/2), wherein h image represents image distance, which is vertical distance from the image sensor to a center plane of the pinhole imaging plate, and α represents angular field of view of the imaging pinhole.

3. A terminal device, comprising the image acquisition apparatus according to claim 1 .

4. A terminal device, comprising the image acquisition apparatus according to claim 2 .

5. An image acquisition method for an image acquisition apparatus, the method comprising:

making at least part of light emitted by a light source enter and propagate inside a light guide plate through total internal reflection;

establishing multiple scanning regions corresponding to multiple imaging pinholes for the object above the light guide plate, wherein adjacent scanning regions are overlapping with each other;

capturing multiple imaging regions corresponding to multiple imaging pinholes by the image sensor as partial images of the object above the light guide plate being scanned in corresponding scanning regions, wherein the partial images do not overlap with each other; and

stitching together the partial images in each of the imaging regions to obtain a complete image of the object being scanned,

wherein the image acquisition apparatus comprises:

the light guide plate;

the light source for emitting light into the light guide plate, wherein the light source is disposed at one side of the light guide plate;

a pinhole imaging plate disposed to be spaced apart from the light guide plate, wherein the pinhole imaging plate has at least one imaging pinhole; and

an image sensor for acquiring an image of an object above the light guide plate, wherein the image sensor is disposed to be spaced apart from the pinhole imaging plate;

wherein, vertical distance from a surface of the light guide plate away from the pinhole imaging plate to a center plane of the pinhole imaging plate is defined as object distance h object , and the object distance h object satisfies a formula of

h

object

≥

2

⁢

r

2

⁢

⁢

tg

⁡

(

α

/

2

)

,

wherein r represents distance between centers of two adjacent imaging pinholes, and α represents angular field of view of the imaging pinhole, and

distance r between centers of two adjacent imaging pinholes satisfies a formula of r≥2·h image tg(α/2), wherein h image represents image distance, which is vertical distance from the image sensor to a center plane of the pinhole imaging plate, and α represents angular field of view of the imaging pinhole.

Assignments (3)
CHANGE OF NAME Recorded Jul 28, 2026
From: VKANSEE TECHNOLOGY COMPANY LTD.
To: WEINAN VKANSEE TECHNOLOGY CO., LTD.
Reel/Frame 076083/0753 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2026
From: WEINAN VKANSEE TECHNOLOGY CO., LTD.
To: BEIJING FOREVER THRIVING UNIVERSAL INVESTMENT CO., LTD.
Reel/Frame 076084/0456 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2017
From: ZHANG, MINGFANG
To: VKANSEE TECHNOLOGY COMPANY LTD.
Reel/Frame 041005/0811 →
Priority Claims (1)
CN 2014 1 0281380 · Jun 20, 2014 · national
Continuity (1)
Related Publication 20170193270A1 · Jul 6, 2017
Cited By (8)
US 12,216,277 US 12,238,982 US 12,361,875 US 12,393,765 US 12,481,387 US 12,482,075 US 12,633,157 US 12,651,320