IP Library Granted Patent US 9,818,354
Granted Patent B2
US 9,818,354 · App. 14/854,621 · Granted Nov 14, 2017

Liquid crystal display including connector overlapping common electrode cutout

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Quick Facts
Patent No.
US 9,818,354
App. No.
14/854,621
Granted
Nov 14, 2017
Kind
B2
Abstract

A liquid crystal display includes first and second substrates. The first substrate includes a gate line, data lines, a first reference voltage line, a second reference voltage line, a pixel electrode having a first subpixel electrode and a second subpixel electrode in a pixel area, and switch circuits connected to these lines and electrodes. The first and second reference voltage lines respectively apply a first and second reference voltages having different polarities. The second substrate includes a common electrode with a cutout. The first and second reference voltage lines include a first connector and a second connector parallel to the data line, and the first connector and the second connector overlap the cutout of the common electrode.

Claims (42)

1. A liquid crystal display, comprising:

a first substrate;

a gate line on the first substrate;

a plurality of data lines on the first substrate;

a first reference voltage line and a second reference voltage line disposed on the first substrate and applying a first reference voltage and a second reference voltage having different polarities, respectively;

a pixel electrode in one pixel area including a first subpixel electrode and a second subpixel electrode;

a first switch circuit connected to the gate line, a first data line from among the plurality of data lines, and the first subpixel electrode;

a second switch circuit connected to the gate line, the first data line, and the second subpixel electrode;

a third switch circuit connected to the gate line, the first subpixel electrode, and one of the first reference voltage line and the second reference voltage line;

a second substrate facing the first substrate; and

a common electrode on the second substrate and including a cross-shaped cutout including a horizontal stem parallel to the gate line and a perpendicular stem parallel to the data line, wherein the first reference voltage line and the second reference voltage line include a first connector and a second connector parallel to the data line, and wherein the first connector and the second connector parallel to the data line overlap the perpendicular stem of the cross-shaped cutout of the common electrode.

2. The display as claimed in claim 1 , wherein:

a voltage difference between a first voltage of the first subpixel electrode and a common voltage of the common electrode is greater than a voltage difference between a second voltage of the second subpixel electrode and the common voltage.

3. The display as claimed in claim 2 , wherein:

the first subpixel electrode and the second subpixel electrode include an integral plate and a plurality of branch electrodes extending from the integral plate, and

the cross-shaped cutout of the common electrode overlaps the integral plate.

4. The display as claimed in claim 3 , wherein the first connector and the second connector overlap the integral plate.

5. The display as claimed in claim 4 , wherein:

the first reference voltage or the second reference voltage applied to one of the first reference voltage line or the second reference voltage line, the one of the first reference voltage line or the second reference voltage line being connected to the third switch circuit, has the same polarity as a data voltage applied to a data line with respect to the common voltage.

6. The display as claimed in claim 5 , wherein each of the first and second reference voltages has a predetermined magnitude and wherein the first and second reference voltages have polarities which change per frame.

7. The display as claimed in claim 2 , wherein:

the first reference voltage or the second reference voltage applied to one of the first reference voltage line or the second reference voltage line, the one of the first reference voltage line or the second reference voltage line being connected to the third switch circuit, has the same polarity as a data voltage applied to a data line with respect to the common voltage.

8. The display as claimed in claim 7 , wherein each of the first and second reference voltages has a predetermined magnitude and wherein the first and second reference voltages have polarities which change per frame.

9. A liquid crystal display, comprising:

a first substrate;

a gate line on the first substrate;

a plurality of data lines on the first substrate;

a first reference voltage line and a second reference voltage line disposed on the first substrate and applying a first reference voltage and a second reference voltage having different polarities;

a pixel electrode in one pixel area and including a first subpixel electrode and a second subpixel electrode;

a first switch circuit connected to the gate line, a first data line from among the plurality of data lines, and the first subpixel electrode;

a second switch circuit connected to the gate line, the first data line, and the second subpixel electrode;

a third switch circuit connected to the gate line, the first subpixel electrode, and one of the first reference voltage line and the second reference voltage line;

a second substrate facing the first substrate; and

a common electrode disposed between the first substrate and the second substrate and including a cross-shaped cutout including a horizontal stem parallel to the gate line and a perpendicular stem parallel to the data line, wherein the first reference voltage line and the second reference voltage line include a first connector and a second connector parallel to the data line, wherein the first subpixel electrode and the second subpixel electrode include an integral plate and a plurality of branch electrodes extending from the integral plate, and wherein the first connector and the second connector overlap the integral plate of the pixel electrode and the perpendicular stem of the cross-shaped cutout of the common electrode.

10. The display as claimed in claim 9 , wherein:

a voltage difference between a first pixel voltage of the first subpixel electrode and a common voltage of the common electrode is greater than a voltage difference between a second voltage of the second subpixel electrode and the common voltage.

11. The display as claimed in claim 10 , wherein:

the first reference voltage or the second reference voltage applied to one of the first reference voltage line or the second reference voltage line, the one of the first reference voltage line or the second reference voltage line being connected to the third switch circuit, has the same polarity as a data voltage applied to a data line with respect to the common voltage.

12. The display as claimed in claim 11 , wherein each of the first reference voltage and the second reference voltage has a predetermined magnitude and polarities which change per frame.

13. The display as claimed in claim 9 , wherein:

the first reference voltage or the second reference voltage applied to one of the first reference voltage line or the second reference voltage line, the one of the first reference voltage line or the second reference voltage line being connected to the third switch circuit, has the same polarity as a data voltage applied to a data line with respect to the common voltage of the common electrode.

14. The display as claimed in claim 13 , wherein each of the first reference voltage and the second reference voltage has a predetermined magnitude and wherein the first and second reference voltages change per frame.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2022
From: SAMSUNG DISPLAY CO., LTD.
To: TCL CHINA STAR OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 060778/0543 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2015
From: KIM, JAE WON; PARK, HYUNG JUN; LEE, SEONG YOUNG
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 036568/0531 →