LIQUID CRYSTAL DISPLAY DEVICE
A liquid crystal display device is provided and includes a substrate; a liquid crystal layer; pixels each having a pixel electrode between the liquid crystal layer and the substrate, and a thin film transistor connected to the pixel electrode; a counter electrode over the pixels; scanning lines each having a longitudinal direction along a first direction; signal lines each having a longitudinal direction along a second direction; and a first protrusion having a convex shape, the first protrusion being a part of the pixel electrode, protruding in one of the first direction and the second direction, and not overlapping the thin film transistor.
1 . A liquid crystal display device comprising:
a substrate;
a liquid crystal layer;
pixels each having a pixel electrode between the liquid crystal layer and the substrate, and a thin film transistor connected to the pixel electrode;
a counter electrode over the pixels;
scanning lines each having a longitudinal direction along a first direction;
signal lines each having a longitudinal direction along a second direction; and
a first protrusion having a convex shape, the first protrusion being a part of the pixel electrode, protruding in one of the first direction and the second direction, and not overlapping the thin film transistor.
2 . The liquid crystal display device according to claim 1 , wherein the first protrusion overlaps one of the signal lines and one of the scanning lines.
3 . The liquid crystal display device according to claim 1 , wherein the first protrusion is located at a corner of the pixel electrode.
4 . The liquid crystal display device according to claim 1 , further comprising a second protrusion being a part of the pixel electrode, protruding in the one of the first direction and the second direction, and not overlapping the thin film transistor,
wherein the first protrusion is opposed to the second protrusion in an other of the first direction and the second direction.
5 . The liquid crystal display device according to claim 1 , wherein a short direction of the pixel electrode is the one of the first direction and the second direction, and
a longitudinal direction of the pixel electrode is an other of the first direction and the second direction.
6 . The liquid crystal display device according to claim 1 , wherein
the pixel electrode has an outer edge that intersects a bottom of the convex shape, and
the outer edge has a bend point.
7 . A liquid crystal display device comprising:
a substrate;
a liquid crystal layer;
pixels each having a pixel electrode between the liquid crystal layer and the substrate, and a thin film transistor connected to the pixel electrode, the pixel electrode having electrode branches and slits each located between corresponding two of the electrode branches;
a counter electrode over the pixels;
scanning lines each having a longitudinal direction along a first direction;
signal lines each having a longitudinal direction along a second direction; and
a first protrusion being a part of the pixel electrode and not overlapping the thin film transistor,
wherein the electrode branches have respective first ends and respective second ends, each of the respective second ends being opposed to a corresponding one of the respective first ends,
the pixel electrode has a first connection portion connecting the respective first ends and a second connection portion connecting the respective second ends, and
the first protrusion protrudes from one of the first connection portion and the second connection portion.
8 . The liquid crystal display device according to claim 7 , wherein each of the slits has a closed shape.
9 . The liquid crystal display device according to claim 7 , wherein the first protrusion protrudes in one of the first direction and the second direction.
10 . The liquid crystal display device according to claim 7 , wherein the first protrusion overlaps one of the signal lines and one of the scanning lines.
11 . The liquid crystal display device according to claim 7 , further comprising a second protrusion being a part of the pixel electrode and not overlapping the thin film transistor,
wherein the second protrusion from an other of the first connection portion and the second connection portion.
12 . The liquid crystal display device according to claim 11 , wherein
the first protrusion overlaps one of the signal lines, and
the second protrusion does not overlap the signal lines.
13 . The liquid crystal display device according to claim 7 , wherein a longitudinal direction of one of the slits is different from the second direction.
14 . The liquid crystal display device according to claim 13 , further comprising a first slit included in the slits, wherein
the first slit is closest to the first protrusion among all the slits, and
a longitudinal direction of the first slit is different from the second direction.
15 . The liquid crystal display device according to claim 7 , further comprising a first slit included in the slits, wherein
the first slit is closest to the first protrusion among all the slits, and
a part of the first slit has a first width in a short direction of the first slit, and
the first width is widest among the slits.
16 . The liquid crystal display device according to claim 7 , wherein the electrode branches are bent.
17 . The liquid crystal display device according to claim 16 , wherein
the electrode branches have respective bend points, and
the pixel electrode has a connection branch connecting the respective bend points.
18 . The liquid crystal display device according to claim 7 , further comprising a first pixel and a second pixel included in the pixels, the first pixel being adjacent to the second pixel in one of the first direction and the second direction,
wherein the first protrusion protrudes in the one of the first direction and the second direction, and
the first pixel and the second pixel have a mirror structure with respect to one line interposed therebetween, the one line being one of the scanning lines or one of the signal lines.
19 . A liquid crystal display device comprising:
a substrate;
a liquid crystal layer;
pixels each having a pixel electrode between the liquid crystal layer and the substrate, the pixel electrode having electrode branches and slits each located between corresponding two of the electrode branches;
a counter electrode over the pixels;
scanning lines each having a longitudinal direction along a first direction;
signal lines each having a longitudinal direction along a second direction; and
a protrusion being a part of the pixel electrode,
wherein the electrode branches have respective first ends and respective second ends, each of the respective second ends being opposed to a corresponding one of the respective first ends,
the pixel electrode has a first connection portion connecting the respective first ends and a second connection portion connecting the respective second ends, and
the protrusion protrudes from one of the first connection portion and the second connection portion, in the first direction.
20 . The liquid crystal display device according to claim 19 , wherein
the electrode branches includes an outermost electrode branch that is outermost of all the electrode branches and is located closest to the first protrusion in the first direction,
the protrusion protrudes
from an area of the one of the first connection portion and the second connection portion, the area being connected to an end of the outermost electrode branch,
toward an outside of the pixel in the first direction, and
an outermost end of the protrusion in the first direction is located outside an entirety of the electrode branches.