IP Library Granted Patent US 8,711,316
Granted Patent B2
US 8,711,316 · App. 13/780,321 · Granted Apr 29, 2014

Liquid crystal display and manufacturing method thereof

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Quick Facts
Patent No.
US 8,711,316
App. No.
13/780,321
Granted
Apr 29, 2014
Kind
B2
Abstract

A liquid crystal display includes a substrate, a plurality of pixel electrodes formed on the substrate, a common electrode facing the pixel electrodes, and a liquid crystal layer interposed between the pixel electrodes and the common electrode. The pixel electrode includes at least one oblique edge including a plurality of protruded and depressed portions.

Claims (65)

1. A liquid crystal display comprising:

a first substrate;

a pixel electrode disposed on the first substrate and extended in a first direction;

a second substrate;

a common electrode disposed on the second substrate and facing the pixel electrode, and comprising a tilt direction determining member extended parallel to the first direction; and

a liquid crystal layer interposed between the pixel electrode and the common electrode,

wherein the pixel electrode comprises:

an edge portion defined by a plurality of protruded and depressed portions each extended in a second direction inclined with respect to the first direction, and alternately disposed along the first direction, and

a base portion comprising a base portion edge from which the edge portion extends, and

wherein for each of the protruded portions, a second direction length F of the protruded portion and a second direction distance B between the base portion edge from which the edge portion extends and the tilt direction determining member of the common electrode, satisfy the following relation:

F/B ≦1.

2. The liquid crystal display of claim 1 , wherein

the pixel electrode further comprises a bent portion,

the plurality of protruded portions comprises first protruded portions and second protruded portions,

the first protruded portions are disposed further from the bent portion of the pixel electrode than the second protruded portions, and

for each of the first protruded portions and for each of the second protruded portions, a length F 1 of the first protruded portion and a length F 2 of the second protruded portion satisfy the following relation:

F1<F2.

3. The liquid crystal display of claim 2 ,

wherein the pixel electrode further comprises at least two parallelogrammatic electrode pieces of which inclination directions are different from each other, and

wherein the bent portion of the pixel electrode is disposed where the two parallelogrammatic electrode pieces meet each other.

4. The liquid crystal display of claim 3 , wherein a tilt direction of at least two of the protruded portions disposed where the two parallelogrammatic electrode pieces meet each other are different from each other.

5. The liquid crystal display of claim 4 , wherein a tilt direction determining member of the common electrode comprises a bent portion extended in a third direction inclined with respect to the first direction.

6. The liquid crystal display of claim 5 , wherein the second protruded portions comprise a buffer protruded portion extended in a direction between the second direction and the third direction.

7. A liquid crystal display comprising:

a first substrate;

a pixel electrode disposed on the first substrate and extended in a first direction, the pixel electrode comprising a first sub-pixel electrode and a second sub-pixel electrode;

a second substrate;

a common electrode disposed on the second substrate and facing the pixel electrode, and comprising a tilt direction determining member extended parallel to the first direction; and

a liquid crystal layer interposed between the pixel electrode and the common electrode,

wherein

one of the first sub-pixel electrode and second sub-pixel electrode comprises:

an edge portion defined by a plurality of protruded and depressed portions each extended in a second direction inclined with respect to the first direction, and alternately disposed along the first direction, and

a base portion comprising a base portion edge from which the edge portion extends, and

wherein for each of the protruded portions, a second direction length F of the protruded portion and a second direction distance B between the base portion edge from which the edge portion extends and the tilt direction determining member of the common electrode, satisfy the following relation:

F/B ≦1.

8. The liquid crystal display of claim 7 , wherein

the pixel electrode further comprises a bent portion,

the plurality of protruded portions comprises first protruded portions and second protruded portions,

the first protruded portions are disposed further from the bent portion of the pixel electrode than the second protruded portions, and

for each of the first protruded portions and for each of the second protruded portions, a length F 1 of the first protruded portion and a length F 2 of the second protruded portion satisfy the following relation:

F1<F2.

9. The liquid crystal display of claim 8 ,

wherein the pixel electrode further comprises at least two parallelogrammatic electrode pieces of which inclination directions are different from each other, and

wherein the bent portion of the pixel electrode is disposed where the two parallelogrammatic electrode pieces meet each other.

10. The liquid crystal display of claim 9 , wherein a tilt direction of at least two of the protruded portions disposed where the two parallelogrammatic electrode pieces meet each other are different from each other.

11. The liquid crystal display of claim 10 , wherein a tilt direction determining member of the common electrode comprises a bent portion extended in a third direction inclined with respect to the first direction.

12. The liquid crystal display of claim 11 , wherein the second protruded portions comprise a buffer protruded portion extended in a direction between the second direction and the third direction.

13. A method of manufacturing a liquid crystal display, the method comprising:

providing a pixel electrode on a first substrate and extending in a first direction;

providing a common electrode disposed on a second substrate and facing the pixel electrode, and comprising a tilt direction determining member extended parallel to the first direction; and

interposing a liquid crystal layer between the pixel electrode and the common electrode;

wherein the pixel electrode comprises:

an edge portion defined by a plurality of protruded and depressed portions each extended in a second direction inclined with respect to the first direction, and alternately disposed along the first direction, and

a base portion from which the edge portion extends, and

wherein for each of the protruded portions, a second direction length F of the protruded portion and a second direction distance B between the base portion edge from which the edge portion extends and the tilt direction determining member of the common electrode, satisfy the following relation:

F/B ≦1.

14. A method of forming manufacturing a liquid crystal display, the method comprising:

providing a pixel electrode on a first substrate and extended in a first direction, the pixel electrode comprising a first sub-pixel electrode and a second sub-pixel electrode;

providing a common electrode disposed on a second substrate and facing the pixel electrode, and comprising a tilt direction determining member extended parallel to the first direction; and

interposing a liquid crystal layer between the pixel electrode and the common electrode;

wherein one of the first sub-pixel electrode and second sub-pixel electrode comprises:

an edge portion defined by a plurality of protruded and depressed portions each extended in a second direction inclined with respect to the first direction, and alternately disposed along the first direction, and

a base portion form with the edge portion extends,

wherein for each of the protruded portions, a second direction length F of the protruded portion and a second direction distance B between the base portion edge from which the edge portion extends and the tilt direction determining member of the common electrode, satisfy the following relation:

F/B ≦1.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2022
From: SAMSUNG DISPLAY CO., LTD.
To: TCL CHINA STAR OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 060778/0487 →