Abstract:
A thin film transistor substrate includes a base substrate, a first metallic layer including a gate electrode of a thin film transistor and an island electrode spaced apart from the gate electrode on the base substrate, a semiconductor layer of which a portion thereof overlaps the gate electrode of the first metallic layer, and a second metallic layer including a source electrode and a drain electrode of the thin film transistor which are spaced apart from each other on the portion of the semiconductor layer. The source electrode of the thin film transistor overlaps the island electrode.
Abstract:
A display apparatus includes: a substrate; a pixel circuit layer on the substrate and including a thin-film transistor; a display element layer on the pixel circuit layer and including a display element electrically connected to the thin-film transistor; a color filter layer on the display element layer and including a color filter overlapping the display element and a black matrix having a first side contacting the color filter and a second side extending in an edge direction of the substrate; and a blocking layer between the black matrix and the substrate, wherein a tip end of the blocking layer has no step difference with an end of the black matrix.
Abstract:
A display device may include a display panel including a first pixel and a second pixel. The first pixel may include a first pixel electrode and a first pixel circuit, and the second pixel may be disposed adjacent to the first pixel and may include a second pixel electrode and a second pixel circuit. The first pixel electrode may include a first electrode including a first side and a second side extending in a first direction, a first connection electrode connected to the first electrode and electrically connected to the first pixel circuit, first branch electrodes extended from the first side in a second direction away from the first connection electrode, and second branch electrodes extended from the second side in a third direction away from the first connection electrode.
Abstract:
A display apparatus of which configuration may be simple and in which reflection of external light can be effectively reduced, the display apparatus including a substrate including a component area and a main area, the component area including sub-display areas and transmission areas, the main display area at least partially surrounding the component area, main pixel electrodes located in the main display area and spaced apart from one another, sub-pixel electrodes located in the sub-display areas and spaced apart from one another, three color filter layers stacked on each other in the main display area to correspond to a space between the main pixel electrodes, and two color filter layers stacked on each other in the component area to correspond to a space between the transmission areas.
Abstract:
A cutting method of a mother substrate includes: irradiating a laser to the mother substrate at first intervals along a first cutting line overlapping dummy areas positioned adjacent to sides of each of display panel areas on the mother substrate; and irradiating the laser to the mother substrate at second intervals different from the first intervals along the first cutting line overlapping edge areas positioned adjacent to corner portions of each of the display panel areas.
Abstract:
A display apparatus includes a first substrate that includes a display area in which pixels are arranged and a non-display area surrounding the display area, a second substrate disposed to face the first substrate, and a sealing member disposed in the non-display area to attach the second substrate to the first substrate. The first substrate includes a base substrate, a plurality of inorganic insulating layers disposed on the base substrate in the non-display area, and an organic layer disposed on the inorganic insulating layer.
Abstract:
A display apparatus includes: a substrate; a pixel circuit layer on the substrate and including a thin-film transistor; a display element layer on the pixel circuit layer and including a display element electrically connected to the thin-film transistor; a color filter layer on the display element layer and including a color filter overlapping the display element and a black matrix having a first side contacting the color filter and a second side extending in an edge direction of the substrate; and a blocking layer between the black matrix and the substrate, wherein a tip end of the blocking layer has no step difference with an end of the black matrix.
Abstract:
A thin film transistor substrate includes a base substrate, a first metallic layer including a gate electrode of a thin film transistor and an island electrode spaced apart from the gate electrode on the base substrate, a semiconductor layer of which a portion thereof overlaps the gate electrode of the first metallic layer, and a second metallic layer including a source electrode and a drain electrode of the thin film transistor which are spaced apart from each other on the portion of the semiconductor layer. The source electrode of the thin film transistor overlaps the island electrode.
Abstract:
Each pixel of a thin film transistor substrate includes a base substrate including a pixel display area and a pixel non-display area surrounding the pixel display area, a gate electrode on the base substrate in the pixel non-display area, a first insulating layer which is on the base substrate in the pixel non-display area and covers the gate electrode, a semiconductor layer on the first insulating layer, of which a predetermined portion thereof overlaps the gate electrode, a source electrode and a drain electrode which are spaced apart from each other and on the semiconductor layer, a second insulating layer which is on the first insulating layer and the base substrate and covers the source electrode and the drain electrode, and a pixel electrode on the second insulating layer in the pixel display area.