Abstract:
An organic light emitting display device and a driving method thereof are provided. The organic light emitting display device comprising a display panel including a plurality of pixels, each pixel including an organic light emitting element, a data driver supplying a data signal to the organic light emitting element through a data line, a gate driver supplying a gate signal to the organic light emitting element through a gate line, and a timing controller controlling an operation timing of the data driver and an operation timing of the gate driver, and generating a conversion control signal controlling a conversion timing of a refresh rate of the display panel in response to an external input signal of the display panel.
Abstract:
A display device includes a display panel including gate lines and data lines, the gate lines and the data lines intersecting, and pixels defined at the intersections of the gate lines and data lines, a gate driver to sequentially output a gate driving signal to the gate lines, a data driver to sequentially output a data signal to channels, a switching controller to electrically connect one of the channels with two or more of the data lines, the switching controller including a switch for each of the channels, wherein the two or more data lines are adjacent, one is directly connected to the channel and the other is connected to the channel through the switch, and a timing controller to provide a selection signal to the switch which controls the connection between the other of the two or more data lines and the channel.
Abstract:
An organic light-emitting diode display can include an improved aperture ratio by configuring a circuit pattern between neighboring subpixels in a symmetrical fashion such that the subpixels share signal lines. Each pixel of the organic light-emitting diode display is formed in a symmetrical fashion with respect to one contact area, the number of reference connecting patterns can be reduced and therefore the area occupied by an opening area for each pixel can be made wider, thus leading to an improved aperture ratio.
Abstract:
A liquid crystal display (LCD) device includes: a dummy region on which a gate driver is mounted; an active region including a plurality of pixel regions to implement an actual image; and first and second lines disposed in the dummy region, wherein the first line is formed on a substrate and the second line is formed on an insulating layer such that portions of the first and second lines overlap with the insulating layer interposed therebetween.