Abstract:
A liquid crystal display includes a display substrate, a plurality of unit pixels, a switching device provided per unit pixel on the display substrate and configured to drive a corresponding unit pixel of the plurality of unit pixels, and an alignment layer on an inner surface of the display substrate. The alignment layer defines a pixel area formed as a single domain per unit pixel, and a liquid crystal is aligned such that liquid crystal alignment directions of unit pixels adjacent in at least one direction are opposite to each other.
Abstract:
A liquid crystal display includes a display substrate, in which a plurality of domains is defined, includes a pixel electrode disposed in each of the plurality of domains and configured to have a plurality of branch electrodes and a common electrode. A liquid crystal layer disposed between the display substrate and an opposite substrate. A plurality of domains is arranged in a column direction and a row direction. Each of the domains includes first and second sides, a first horizontal edge, and a second horizontal edge facing the first horizontal edge. The second side is parallel with the column direction and the first side is parallel with a first slanted direction. A slit is defined between adjacent branch electrodes. The slit has a first width adjacent to the first horizontal edge, and a second width adjacent to the second horizontal edge.
Abstract:
A method for manufacturing a curved liquid crystal display panel includes bending a display member including at least one alignment layer at a predetermined curvature using a jig and forming an alignment axis in the alignment layer while the display member is bent using an alignment axis forming part. A control part is used to control an operation of the jig and the alignment axis forming part.
Abstract:
A thin film transistor substrate includes a first substrate which includes a transmissive area and a reflective area, a common electrode disposed on the first substrate, a pixel electrode overlapped with and insulated from the common electrode, and a reflective portion which is disposed on the reflective area and includes a lower electrode which includes a first transparent conductive material, a metal layer disposed on the lower electrode, and an upper electrode disposed on the metal layer and including a second transparent conductive material different from the first transparent conductive material.