Abstract:
The present disclosure relates to a light emitting diode display device, and a light emitting diode display device according to an exemplary embodiment includes: a substrate; a semiconductor disposed on the substrate; a gate electrode disposed on the semiconductor; an interlayer insulating layer disposed on the substrate and the gate electrode; source and drain electrodes disposed on the interlayer insulating layer and connected to the semiconductor; a first slit provided in the interlayer insulating layer; and a first wire disposed on the interlayer insulating layer and configured to overlap the first slit.
Abstract:
A display device according to an exemplary embodiment of the present invention may include: a display unit including a plurality of pixels; a first scan driver positioned at a first side of the display unit and arranged to output at least one first scan signal to the display unit; a second scan driver positioned at a second side of the display unit and arranged to output at least one second scan signal to the display unit; a third scan driver positioned along at least a portion of a third side of the display unit and arranged to output at least one third scan signal to the display unit; and a data driver positioned at a fourth side of the display unit and arranged to transmit a data signal to the display unit.
Abstract:
An organic light emitting diode (OLED) display includes a substrate, a first electrode disposed on the substrate, first organic emission layers disposed on the first electrode, second organic emission layers disposed on the first organic emission layers, a second electrode disposed on the second organic emission layer, and a color filter layer disposed on the second electrode. The first electrode includes a first sub-electrode, a second sub-electrode, a third sub-electrode, and a fourth sub-electrode spaced apart from each other. The first organic emission layers overlap the first, second, third, and fourth sub-electrodes, the second organic emission layers overlap the first, second, and third sub-electrodes, and the second electrode overlaps the first, second, third, and fourth sub-electrodes. The color filter layer includes sub-color filters.
Abstract:
A light emitting display device includes: a first substrate; a plurality of pixels arranged on the first substrate in a matrix and divided into a plurality of unit pixels arranged in a row direction and in a column direction, each of the unit pixels comprising a first pixel and a second pixel are arranged along the row direction, and a third pixel arranged in the column direction with respect to the first pixel and the second pixel; a first electrode corresponding to each of the pixels; a pixel defining layer partitioning the respective pixels on the substrate and having openings exposing the first electrode through the pixel defining layer; first light emitting layers consecutively on the first electrode of the first pixel and the second pixel of the unit pixels arranged in the same row line; second light emitting layers consecutively on the first electrode of the third pixel of the unit pixels arranged in the same row line; and a second electrode on the first light emitting layer and the second light emitting layer.
Abstract:
A pixel of an organic light emitting display includes first through fourth transistors and a capacitor. The first transistor operates based on a scan signal and is connected between a data line and a first node. The capacitor is connected between the first node and a second node. The second transistor operates based on a gate signal and is connected between a first power voltage and a third node. The third transistor operates based on compensation control line signal and is connected between the second node and the third node. The fourth transistor operates based on sensing control line signal and is connected between the data line and the third node. The organic light emitting element is connected between the third node and a second power voltage.
Abstract:
An organic light emitting diode display includes a plurality of transmission window areas arranged in a matrix form, a plurality of green pixels arranged in a plurality of horizontal line areas among the plurality of transmission window areas, and a plurality of red pixels and a plurality of blue pixels arranged in a plurality of vertical line areas among the plurality of transmission window areas.
Abstract:
An organic light emitting display includes a first substrate including a display area and a non-display area, a plurality of dummy pixels positioned on at least a part of the non-display area of the first substrate, a light guide plate positioned on the plurality of dummy pixels, and a light sensor positioned at one side of the light guide plate.
Abstract:
The present disclosure relates to a light emitting diode display device, and a light emitting diode display device according to an exemplary embodiment includes: a substrate; a semiconductor disposed on the substrate; a gate electrode disposed on the semiconductor; an interlayer insulating layer disposed on the substrate and the gate electrode; source and drain electrodes disposed on the interlayer insulating layer and connected to the semiconductor; a first slit provided in the interlayer insulating layer; and a first wire disposed on the interlayer insulating layer and configured to overlap the first slit.
Abstract:
A display device includes a first substrate and a second substrate opposing each other. One of the first and second substrates includes a display surface. The display device further includes a display area and a non-display area surrounding the display area when viewed in a direction perpendicular to the display device. The display device includes a common voltage line formed in the non-display area and over the first substrate, at least one column spacer formed over the common voltage line, a conductive layer formed over the first substrate to cover the column spacer and electrically connected to the common voltage line, a common electrode formed over the second substrate and electrically connected to the conductive layer, and a liquid crystal layer interposed between the first substrate and the second substrate.
Abstract:
A touch detection device supplies driving signals generated based on orthogonal carriers and a CDMA scheme to driving electrodes. A touch driving circuit drives the driving electrodes in groups including a first group and a second group, supplies first driving signals based on a designated first frequency and first orthogonal codes set to correspond to the driving electrodes of the first group, respectively, to the driving electrodes of the first group, and supplies second multiple driving signals based on a second frequency orthogonal to the first frequency and second orthogonal codes set to correspond to the driving electrodes of the second group, respectively, to the driving electrodes of the second group.