Abstract:
An organic light emitting diode (OLED) display includes: a substrate; and a plurality of pixels positioned on the substrate. Each pixel includes a thin film transistor positioned on the substrate, an interlayer insulating layer and a light path control layer positioned on the thin film transistor, a first electrode positioned on the light path control layer and connected to the thin film transistor, an organic emission layer positioned on the first electrode, and a second electrode positioned on the organic emission layer, and the light path control layer includes a first control layer, a second control layer having a larger refractive index than the first control layer, and a middle layer having the same refractive index as the first control layer.
Abstract:
A method of manufacturing an optical sheet includes providing a first stacked structure comprising a plurality of first light shielding layers and a plurality of color filter layers which are alternately stacked, and cutting the first stacked structure to form a plurality of optical films. Each optical film includes first and second cut faces, the second cut face being parallel to the first cut face, each optical film comprising a plurality of light shielding layer sections and a plurality of color filter layer sections extending in a first direction. The method further includes forming a second stacked structure comprising a plurality of second light shielding layers and the plurality of optical films which are alternately stacked; and cutting the second stacked structure to form an optical sheet which comprises third and fourth cut faces, the fourth cut face being parallel to the third cut face.
Abstract:
A thin film semiconductor device including a thin film transistor (TFT) that maintains a constant electrical characteristic and an organic light-emitting display device. The thin film semiconductor device includes: a substrate; and a thin film transistor (TFT) disposed on the substrate and comprising a semiconductor layer comprising a source region and a drain region, wherein a part of the source region is spaced apart from the drain region and partially surrounds the drain region, and wherein a part of the drain region is spaced apart from the source region and partially surrounds the source region.
Abstract:
A stretchable organic light-emitting display device includes a stretchable base plate including a stretchable substrate, first metal electrodes that are separated from each other and located in a plurality of rows on a the stretchable substrate, and first power wirings electrically coupling respective ones of the metal electrodes of each row, a light-emitting layer on the stretchable base plate, second metal electrodes located in a plurality of rows on the light-emitting layer and corresponding to the first metal electrodes, second power wirings for electrically coupling respective ones of the second metal electrodes of each row, and an encapsulation substrate covering the second power wiring.
Abstract:
In a method of manufacturing an optical sheet, a stacked structure may be formed by alternatively and repeatedly stacking at least one transparent layer and at least one light scattering layer. A first cut face may be formed by partially cutting the stacked structure. A second cut face may be formed by partially cutting the stacked structure. The second cut face may be parallel to the first cut face.
Abstract:
In a method of driving a display apparatus, an outside illuminance is sensed by an illuminance sensor. At least one first color subpixel of a plurality of first color subpixels is disabled. Remaining first color subpixels are enabled based on the sensed outside illuminance. The first color subpixels corresponding to a first color are arranged along a first direction and a second direction crossing the first direction. An image is displayed on the remaining enabled first color subpixels.
Abstract:
A display apparatus includes a display panel, an illumination part, an illumination controller, a luminance compensation part and a data driver. The display panel includes data lines, and is configured to display an image in a first direction. The illumination part is configured to emit illumination light having a first color in a second direction opposite to the first direction. The illumination controller is configured to control the illumination part and output an illumination signal corresponding to an intensity of the illumination light. The luminance compensation part is configured to compensate luminance of an input image data based on the illumination signal to output a data signal, and the data driver is configured to generate a data voltage based on the data signal, and output the data voltage to the data lines.
Abstract:
An image processing method and image processing device for performing the same are disclosed. In one aspect, the image processing method includes transmitting a content image having a visual condition to a display unit. The method also includes periodically changing the visual condition from a first visual condition to a second visual condition according to a modulation timing such that the content image to be displayed after the modulation timing has the second visual condition different from the first visual condition before commencement of the modulation timing.
Abstract:
An image processing method and image processing device for performing the same are disclosed. In one aspect, the image processing method includes transmitting a content image having a visual condition to a display unit. The method also includes periodically changing the visual condition from a first visual condition to a second visual condition according to a modulation timing such that the content image to be displayed after the modulation timing has the second visual condition different from the first visual condition before commencement of the modulation timing.
Abstract:
An image processing method and image processing device for performing the same are disclosed. In one aspect, the image processing method includes transmitting a content image having a visual condition to a display unit. The method also includes periodically changing the visual condition from a first visual condition to a second visual condition according to a modulation timing such that the content image to be displayed after the modulation timing has the second visual condition different from the first visual condition before commencement of the modulation timing.