IP Library Granted Patent US 10,678,101
Granted Patent B2
US 10,678,101 · App. 16/016,878 · Granted Jun 9, 2020

Liquid crystal grating, control method thereof and display device

Inventors: Yanchen Li (Beijing, CN); Yue Li (Beijing, CN); Jian Wang (Beijing, CN); Yu Zhao (Beijing, CN); Wenjun Xiao (Beijing, CN)
Assignees: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
G02F1/1343G02F1/13306G02F1/136286G09G3/006G09G3/003G09G3/36
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Quick Facts
Patent No.
US 10,678,101
App. No.
16/016,878
Granted
Jun 9, 2020
Kind
B2
Abstract

Provided is a liquid crystal grating including: a first substrate; a second substrate opposite to the first substrate; a liquid crystal layer between the first substrate and the second substrate; a first electrode structure on the first substrate; and a second electrode structure on the second substrate. The first electrode structure and the second electrode structure are configured to receive control signals, the control signal including a first set of control signals and a second set of control signals; to cause the liquid crystal grating to have a first grating pitch in response to the first set of control signals; and to cause the liquid crystal grating to have a second grating pitch in response to the second set of control signals, the second grating pitch being different from the first grating pitch.

Claims (48)

1. A liquid crystal grating comprising:

a first substrate;

a second substrate opposite to the first substrate;

a liquid crystal layer between the first substrate and the second substrate;

a first electrode structure on the first substrate, the first electrode structure comprising a plurality of first strip electrodes spaced apart in a first direction on the first substrate and a plurality of second strip electrodes spaced apart in the first direction on the first substrate; and

a second electrode structure on the second substrate, the second electrode structure comprising a plurality of third strip electrodes spaced apart in the first direction on the second substrate and a plurality of fourth strip electrodes spaced apart in the first direction on the second substrate,

wherein the first electrode structure and the second electrode structure are configured:

to receive control signals, the control signals comprising a first set of control signals and a second set of control signals, the second set of control signals comprising a first timing control signal supplied to the plurality of third strip electrodes, and a second timing control signal supplied to the plurality of first strip electrodes, the plurality of second strip electrodes and the plurality of fourth strip electrodes, respectively, and the first set of control signals comprising the first timing control signal supplied to the plurality of first strip electrodes, and the second timing control signal supplied to the plurality of second strip electrodes, the plurality of third strip electrodes and the plurality of fourth strip electrodes, respectively;

to cause the liquid crystal grating to have a first grating pitch in response to the first set of control signals; and

to cause the liquid crystal grating to have a second grating pitch in response to the second set of control signals, the second grating pitch being different from the first grating pitch.

2. The liquid crystal grating according to claim 1 , wherein the first electrode structure comprises:

a first insulating layer between the plurality of first strip electrodes and the plurality of second strip electrodes,

wherein the plurality of first strip electrodes are located in a first plane, the plurality of second strip electrodes are located in a second plane different from the first plane, and orthogonal projections of the plurality of first strip electrodes on the first substrate are not overlapped with orthogonal projections of the plurality of second strip electrodes on the first substrate.

3. The liquid crystal grating according to claim 2 , wherein a width of each of the plurality of first strip electrodes in the first direction is a first electrode width, a width of a gap between two adjacent first strip electrodes in the first direction is a first width, and the first grating pitch is equal to the sum of the first electrode width and the first width.

4. The liquid crystal grating according to claim 2 , wherein an orthogonal projection of each of the plurality of second strip electrodes on the first substrate coincides with an orthogonal projection of a gap between two adjacent first strip electrodes on the first substrate, and

wherein a width of the gap between the two adjacent first strip electrodes in the first direction is a first width, a width of a gap between two adjacent second strip electrodes in the first direction is a second width, and the first grating pitch is equal to the sum of the first width and the second width.

5. The liquid crystal grating according to claim 4 , wherein the first width is equal to the second width.

6. The liquid crystal grating according to claim 2 , wherein the first electrode structure further comprises:

first electrode input lines electrically connected to the plurality of first strip electrodes, the first electrode input lines being located in the first plane; and

second electrode input lines electrically connected to the plurality of second strip electrodes, the second electrode input line being located in the second plane,

wherein the first electrode input lines and the second electrode input lines are configured to receive the control signals.

7. The liquid crystal grating according to claim 1 , wherein the second electrode structure comprises:

a second insulating layer between the plurality of third strip electrodes and the plurality of fourth strip electrodes,

wherein the plurality of third strip electrodes are located in a third plane, the plurality of fourth strip electrodes are located in a fourth plane different from the third plane, and orthogonal projections of the plurality of third strip electrodes on the second substrate are not overlapped with orthogonal projections of the plurality of fourth strip electrodes on the second substrate.

8. The liquid crystal grating according to claim 7 , wherein a width of each of the plurality of third strip electrodes in the first direction is a third electrode width, a width of a gap between two adjacent third strip electrodes in the first direction is a third width, and the second grating pitch is equal to the sum of the third electrode width and the third width.

9. The liquid crystal grating according to claim 7 , wherein an orthogonal projection of each of the plurality of fourth strip electrodes on the second substrate coincides with an orthogonal projection of a gap between two adjacent third strip electrodes on the second substrate, and

wherein a width of the gap between the two adjacent third strip electrodes in the first direction is a third width, a width of a gap between two adjacent fourth strip electrodes in the first direction is a fourth width, and the second grating pitch is equal to the sum of the third width and the fourth width.

10. The liquid crystal grating of claim 9 , wherein the third width is equal to the fourth width.

11. The liquid crystal grating according to claim 7 , wherein the second electrode structure further comprises:

third electrode input lines electrically connected to the plurality of third strip electrodes, the third electrode input lines being located in the third plane; and

fourth electrode input lines electrically connected to the plurality of fourth strip electrodes, the fourth electrode input line being located in the fourth plane,

wherein the third electrode input lines and the fourth electrode input lines are configured to receive the control signals.

12. A display device, wherein the display device comprises the liquid crystal grating according to claim 1 .

13. The display device according to claim 12 , wherein the display device is a 3D display device and/or a dual view display device.

14. A control method of a liquid crystal grating, wherein the liquid crystal grating comprises: a first substrate; a second substrate opposite to the first substrate; a liquid crystal layer between the first substrate and the second substrate; a first electrode structure on the first substrate; and a second electrode structure on the second substrate, and the method comprises:

receiving a first set of control signals by the first electrode structure and the second electrode structure to control the liquid crystal grating to have a first grating pitch; and

receiving a second set of control signals by the first electrode structure and the second electrode structure to control the liquid crystal grating to have a second grating pitch different from the first grating pitch,

wherein the first electrode structure comprises a plurality of first strip electrodes spaced apart in a first direction on the first substrate and a plurality of second strip electrodes spaced apart in the first direction on the first substrate, and the second electrode structure comprises a plurality of third strip electrodes spaced apart in the first direction on the second substrate and a plurality of fourth strip electrodes spaced apart in the first direction on the second substrate,

wherein the receiving a second set of control signals by the first electrode structure and the second electrode structure to control the liquid crystal grating to have a second grating pitch different from the first grating pitch comprises:

receiving a first timing control signal by the plurality of third strip electrodes, and receiving a second timing control signal by the plurality of first strip electrodes, the plurality of second strip electrodes and the plurality of fourth strip electrodes, to control the liquid crystal grating to have the second grating pitch, and

wherein the receiving, a first set of control signals by the first electrode structure and the second electrode structure to control the liquid crystal grating to have a first grating pitch comprises:

receiving the first timing control signal by the plurality of first strip electrodes, and receiving the second timing control signal by the plurality of second strip electrodes, the plurality of third strip electrodes and the plurality of fourth strip electrodes, to control the liquid crystal grating to have the first grating pitch.

15. The control method according to claim 14 , wherein the first timing control signal is a square wave signal.

16. The control method according to claim 14 , wherein the second timing control signal is a constant voltage DC signal.

17. The control method according to claim 14 , wherein the receiving the first timing control signal by the plurality of first strip electrodes, and receiving the second timing control by the plurality of second strip electrodes, the plurality of third strip electrodes and the plurality of fourth strip electrodes, to control the liquid crystal grating to have the first grating pitch comprises:

receiving the first timing control signal by the plurality of first strip electrodes, and receiving the second timing control by the plurality of second strip electrodes, the plurality of third strip electrodes and the plurality of fourth strip electrodes, to control regions where the plurality of first strip electrodes are located to appear dark and control regions where the plurality of second strip electrodes are located to appear bright, so as to form a first liquid crystal grating having the first grating pitch.

18. The control method according to claim 14 , wherein the receiving the first timing control signal by the plurality of third strip electrodes, and receiving the second timing control by the plurality of first strip electrodes, the plurality of second strip electrodes and the plurality of fourth strip electrodes, to control the liquid crystal grating to have the second grating pitch comprises:

receiving the first timing control signal by the plurality of third strip electrodes, and receiving the second timing control by the plurality of first strip electrodes, the plurality of second strip electrodes and the plurality of fourth strip electrodes, to control regions where the plurality of third strip electrodes are located to appear dark and control regions where the plurality of fourth strip electrodes are located to appear bright, so as to form a second liquid crystal grating having the second grating pitch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2018
From: LI, YANCHEN; LI, YUE; WANG, JIAN; ZHAO, YU; XIAO, WENJUN
To: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 046189/0636 →
Priority Claims (1)
CN 2018 1 0002320 · Jan 2, 2018 · national
Continuity (1)
Related Publication 20190204640A1 · Jul 4, 2019