IP Library Granted Patent US 7,317,496
Granted Patent B2
US 7,317,496 · App. 10/893,328 · Granted Jan 8, 2008

Liquid crystal display wiring pattern having gate lines and storage electrode lines

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Quick Facts
Patent No.
US 7,317,496
App. No.
10/893,328
Granted
Jan 8, 2008
Kind
B2
Abstract

A liquid crystal display comprises a first wiring pattern formed on a substrate. The first wiring pattern comprises a gate line, a gate electrode and a storage electrode line. A first insulating layer is formed on the first wiring pattern. A semiconductor pattern is formed on the first insulating layer. A second wiring pattern is formed on the semiconductor pattern and the first insulating layer. The second wiring pattern comprises a data line, a source electrode and a drain electrode. The drain electrode at least partially overlaps the storage electrode line. A second insulating layer is formed on the second wiring pattern. The second insulating layer has an opening exposing the drain electrode. A pixel electrode is formed on the second insulating layer and connected to the drain electrode via the opening. The storage electrode line has a branch extending parallel to the data line. The pixel electrode overlaps the gate line of the previous row.

Claims (47)

1. A liquid crystal display (LCD) device, comprising:

a substrate;

a first conductive layer formed on the substrate and comprising a gate line and a storage electrode line, wherein the gate line is in communication with a gate included in a TFT region of the LCD device, wherein the gate line extends from the TFT region of the LCD device along a first direction and has a width in a second direction perpendicular to the first direction;

a first insulating layer formed on the first conductive layer;

a semiconductor layer formed on the first insulating layer;

a second conductive layer formed on the semiconductor layer, and comprising a data line, a source electrode, and a drain electrode, and

a pixel electrode in communication with the drain electrode,

wherein the drain electrode includes at least a portion that overlaps at least a portion of the storage electrode, and wherein at least a portion of the pixel electrode overlaps the entire width of the gate line.

2. The LCD device of claim 1 , wherein the semiconductor layer is made of amorphous silicon.

3. The LCD of claim 1 , further comprising:

a second insulating layer formed on the second conductive layer and having an opening exposing the drain electrode; and

wherein the pixel electrode comprises a transparent material formed on the second insulating layer and electrically connected to the drain electrode via the opening.

4. A liquid crystal display (LCD), comprising:

a substrate;

a first wiring pattern formed on the substrate and comprising a plurality of gate lines extending in a row direction, a plurality of gate electrodes each connected to a corresponding gate line of the plurality of gate lines, and a plurality of storage electrode lines, wherein each of the plurality of gate lines extends along a first direction and has a width in a second direction perpendicular to the first direction;

a first insulating layer covering the first wiring pattern;

a semiconductor pattern formed on the first insulating layer and overlapping the gate electrodes;

a second wiring pattern formed on the first insulating layer and the semiconductor pattern and comprising a plurality of data lines extending in a column direction and crossing the gate lines, a plurality of source electrodes each connected to a corresponding data line of the plurality of data lines, and a plurality of drain electrodes each including at least a portion overlapping at least a portion of a corresponding storage electrode line of the plurality of storage electrode lines, and

a plurality of pixel electrodes including a first pixel electrode, each of the plurality of pixel electrodes connected to a corresponding one of the plurality of drain electrodes, and wherein at least a portion of the first pixel electrode overlaps the entire width of a corresponding gate line.

5. The LCD of claim 4 , wherein each storage electrode line has a branch extending parallel to the data lines.

6. The LCD of claim 4 , further comprising a protection layer pattern formed on portions of the semiconductor pattern between the source electrodes and the drain electrodes.

7. The LCD of claim 4 , wherein the semiconductor pattern is formed of amorphous silicon layer.

8. The LCD of claim 4 , further comprising:

a second insulating layer covering the second wiring pattern and having a plurality of openings exposing the drain electrodes; and

a plurality of pixel electrodes connected to corresponding ones of the drain electrodes, and wherein at least a portion of each of the plurality of pixel electrodes covers the entire widths of at least a portion of the gate lines of the previous rows.

9. A liquid crystal display (LCD) comprising:

a substrate;

a first wiring pattern formed on the substrate and comprising a gate line, a gate electrode and a storage electrode line, the gate line in communication with the gate electrode and extending from the gate electrode along a first direction, the gate line having a width in a second direction perpendicular to the first direction;

a semiconductor pattern formed on the first wiring pattern;

a second wiring pattern formed on the semiconductor pattern and comprising a data line, a source electrode and a drain electrode having at least a portion overlapping at least a portion of the storage electrode line;

a pixel electrode formed on the second wiring pattern and connected to the drain electrode,

wherein the storage electrode line has a branch extending parallel to the data line, and wherein at least a portion of the pixel electrode completely covers the entire width of the gate line.

10. The LCD of claim 9 , further comprising:

a first insulating layer formed on the first wiring pattern; and

a second insulating layer formed on the second wiring pattern and having an opening exposing the drain electrode,

wherein the pixel electrode is connected to the drain electrode via the opening.

11. The LCD of claim 10 , wherein the second insulating layer has a substantially flat surface.

12. The LCD of claim 9 , wherein the semiconductor pattern is formed of amorphous silicon.

13. The LCD of claim 9 , wherein the branch of the storage electrode is connected to the gate line.

14. The LCD of claim 9 , further comprising a protection layer formed on a portion of the semiconductor pattern between the source electrode and the drain electrode.

15. A liquid crystal display (LCD), comprising:

a substrate;

a first wiling pattern formed on the substrate and comprising a plurality of gate lines extending in a row direction, a plurality of gate electrodes each connected to a corresponding gate line of the plurality of gate lines, and a plurality of storage electrode lines, wherein each of the plurality of gate lines extend along a first direction and have a width in a second direction perpendicular to the first direction;

a first insulating layer covering the first wiring pattern;

a semiconductor pattern formed on the first insulating layer and overlapping the gate electrodes;

a second wiring pattern formed on the first insulating layer and the semiconductor pattern and comprising a plurality of data lines extending in a column direction and crossing the gate lines, a plurality of source electrodes each connected to a corresponding data line of the plurality of data lines, and a plurality of drain electrodes each including at least a portion overlapping at least a portion of a corresponding storage electrode line of the plurality of storage electrode lines,

a plurality of pixel electrodes including a first pixel electrode, each of the plurality of pixel electrodes connected to a corresponding one of the plurality of drain electrodes, and wherein at least a portion of the first pixel electrode overlaps the entire width of at least a portion of a corresponding gate line, wherein each storage electrode line has a branch extending parallel to the data lines, and wherein the branch is connected to the corresponding gate line.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2012
From: SAMSUNG ELECTRONICS CO., LTD.
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 029015/0862 →