IP Library Patent Application 10492119
Patent Application
App. No. 10/492,119

Pixel electrode having reflective and transmissive areas and liquid crystal display device using the same

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Quick Facts
Patent No.
US None
App. No.
10/492,119
Abstract

An object of the invention is to provide a pixel electrode and a liquid crystal display device using it, which can reduce improper reflected light. A pixel electrode 1 for applying a voltage for each pixel. This pixel electrode comprises: a reflective area portion 1 r reflecting a light ray from a display screen side in such a manner that the light ray is along a predetermined bidirectional optical path within a pixel; a transmissive area portion 1 t transmitting a light ray from a rear side to the display screen side in such a manner that the light ray is along a predetermined unidirectional optical path within the pixel; and a transition area portion 1 TR being formed between the reflective area portion 1 r and the transmissive area portion 1 t and including a portion 4 c in which the reflective area portion 1 r and the transmissive area portion 1 t are coupled. The transition area portion 1 TR is extended with an at least partly rounded shape on a plan view.

Claims (26)

1 . A pixel electrode for applying a voltage for each pixel, comprising:

a reflective area portion for reflecting a light ray from a display face side in such a manner that the light ray is along a predetermined bidirectional optical path within a pixel;

a transmissive area portion for transmitting a light ray from a rear side to the display face side in such a manner that the light ray is along a predetermined unidirectional optical path within the pixel; and

a transition area portion being formed between the reflective area portion and the transmissive area portion and including a portion in which the reflective area portion and the transmissive area portion are coupled,

wherein the transition area portion is extended with an at least partly rounded shape on a plan view.

2 . A pixel electrode as defined in claim 1 , characterized in that the transition area portion has a circular ring shape of surrounding the transmissive area portion on a plan view.

3 . A pixel electrode as defined in claim 1 , characterized in that the transition area portion has a shape that is along an outline of an ellipse surrounding the transmissive area portion on a plan view.

4 . A pixel electrode for applying a voltage for each pixel, comprising:

a reflective area portion for reflecting a light ray from a display face side in such a manner that the light ray is along a predetermined bidirectional optical path within a pixel;

a transmissive area portion for transmitting a light ray from a rear side to the display face side in such a manner that the light ray is along a predetermined unidirectional optical path within the pixel; and

a transition area portion being formed between the reflective area portion and the transmissive area portion and including a portion in which the reflective area portion and the transmissive area portion are coupled,

wherein the transition area portion is extended with a shape that is along an outline of substantially a polygon formed by five or more line segments on a plan view.

5 . A pixel electrode as defined in claim 1 - 4 , characterized in that the transmissive area portion is formed with an island shape, substantially at a center of the pixel area on a plan view.

6 . A pixel electrode as defined in claim 1 , characterized in that a main surface of the reflective area portion and a main surface of the transmissive area portion are different in height by a predetermined height.

7 . A pixel electrode as defined in claim 1 , characterized in that the electrode comprises:

a step forming layer supported by a base layer, wherein a recess portion is formed for a pixel, the recess portion having an opening corresponding to the transmissive area portion and a wall face of a predetermined height;

a transmissive electrically-conductive layer supported by the base layer, at least a part of which is formed within the opening; and

a reflective electrically-conductive layer extending over a top face and the wall face of the step forming layer, which is in contact with the transmissive electrically-conductive layer,

wherein the transmissive area portion substantially corresponds to an exposed surface of the transmissive electrically-conductive layer, the reflective area portion substantially corresponds to a portion of the reflective electrically-conductive layer, which extends over a top face of the step forming layer, and the transition area portion substantially corresponds to a portion of the reflective electrically-conductive layer, which extends over a wall face of the step forming layer and to a portion of the reflective electrically-conductive layer, which is in contact with the transmissive electrically-conductive layer.

8 . A pixel electrode as defined in claim 7 , characterized in that a surface of the step forming layer and/or a surface of the reflective electrically-conductive layer are/is roughened.

9 . A liquid crystal display device comprising a pixel electrode as defined in claim 1 .

10 . A liquid crystal display device as defined in claim 9 , characterized in that the display device comprises:

two opposed substrates between which a liquid crystal medium is sandwitched;

driving elements provided on one of the substrates in correspondence with pixels arranged substantially in matrix, for driving the pixels individually; and

a common electrode provided on the other of the substrates,

wherein the pixel electrodes are individually connected to outputs of the driving elements.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2007
From: KONINKLIJKE PHILIPS ELECTRONICS N.V.
To: TPO HONG KONG HOLDING LIMITED
Reel/Frame 019038/0320 →