Abstract:
A display device according to an exemplary embodiment of the present invention includes: a display panel configured to display an image; and a liquid crystal lens panel operated in one of a 2D mode or a 3D mode for the image of the display panel to be recognized as a 2D image or a 3D image. The liquid crystal lens panel includes a lower substrate and an upper substrate facing each other, a lower lens electrode formed on a lower substrate, an upper lens electrode formed on the upper substrate, and a liquid crystal layer interposed between the lower substrate and the upper substrate. When the liquid crystal lens panel is converted from the 2D mode to the 3D mode, the voltage applied to the upper lens electrode of the liquid crystal lens is applied while being increased in stages.
Abstract:
A display device includes a base substrate having a display area and a non-display area. The non-display area has an opening. A circuit is disposed on the base substrate within the display area and the non-display area. A display element is disposed on the circuit. The display element overlaps the display area. A sealing member is disposed over the display element. A first circuit substrate is disposed on the base substrate and overlaps with the non-display area. The first circuit substrate covers the opening. The first circuit substrate is connected to the circuit. A second circuit substrate is disposed under the base substrate and overlaps with the first circuit substrate. The second circuit substrate covers the opening. At least one connection pin is disposed in the opening and is configured to connect the first circuit substrate to the second circuit substrate.
Abstract:
A multiview image displaying system is provided. The multiview image displaying system includes: a display panel, a shutter panel, a shutter panel, and glasses. The display panel is for displaying images for different viewpoints by time division and includes a first polarizer. The shutter panel is provided in front of the display panel and includes an active shutter panel and a phase retardation plate. The glasses are for observing the images. The glasses are selected from among polarized glasses and shutter glasses.
Abstract:
A display device includes a display panel which includes a pixel including a driving transistor and a light-emitting element, and a sensing line connected to the pixel. A sensing driver senses a first sensing signal corresponding to mobility of the driving transistor through the sensing line, and processes the first sensing signal to output first sensing data. A driving controller receives the first sensing data from the sensing driver, generates mobility compensation data and kickback compensation data based on the first sensing data, and converts image data into compensation image data by the mobility compensation data and the kickback compensation data. A data driver converts the compensation image data into a data signal and provides the data signal to the pixel.
Abstract:
A liquid crystal lens module includes: a first substrate that includes a plurality of lens electrodes and a plurality of bus lines; a second substrate facing the first substrate; and a liquid crystal layer provided between the first substrate and the second substrate. The plurality of bus lines include at least two bus lines having different widths, and the plurality of lens electrodes include first electrodes and second electrodes that are electrically insulated from each other A widest bus line of the at least two bus lines is connected to a widest lens electrode of the plurality of lens electrodes.
Abstract:
A luminance compensation method for a display device includes measuring a luminance of each of white grayscale values, measuring an actual luminance value for each of colors, determining a target luminance value for each of the colors based on the luminance of each of the white grayscale values and a luminance contribution ratio of each of the colors, determining a luminance compensation amount for each of the colors based on the target luminance value and the actual luminance value, and compensating for input image data for each of the colors based on the luminance compensation amount.
Abstract:
A liquid crystal display panel and a method for manufacturing the same are provided. The liquid crystal display panel includes a lens area and a peripheral area. The lens area includes a plurality of liquid crystal lenses. Each of the plurality of liquid crystal lenses includes a plurality of electrodes. The peripheral area surrounds the lens area. The peripheral area includes a first bus line layer and a second bus line layer facing each other in a first direction. The first and second bus line layers include first bus lines and second bus lines, respectively. The first and second bus lines are electrically connected to each of the plurality of electrodes through one end of each electrode.