Abstract:
There is provided an organic light emitting display that includes a plurality of pixels are arranged in a plurality of rows and columns Each of the pixels includes a plurality of sub pixels. At least one sub pixel of the plurality of sub pixels of at least one pixel is divided into a plurality of divisional sub pixels. Since the divisional sub pixels alternately emit light, it is possible to reduce deterioration speed of the sub pixels, thereby preventing an afterimage from being generated by deterioration of the sub pixels.
Abstract:
An organic light emitting diode (OLED) display is provided. The OLED display includes: a substrate; an organic light emitting element including a first electrode on the substrate, an organic emission layer on the first electrode, and a second electrode on the organic emission layer; and an encapsulation member encapsulating the organic light emitting element and including a first conductive layer on the organic light emitting element and electrically connected to the second electrode, an insulation layer on the first conductive layer, and a second conductive layer on the insulation layer and configured to electrically connect to the first electrode.
Abstract:
An organic light emitting diode (OLED) display is provided. The OLED display includes: a substrate; an organic light emitting element including a first electrode on the substrate, an organic emission layer on the first electrode, and a second electrode on the organic emission layer; and an encapsulation member encapsulating the organic light emitting element and including a first conductive layer on the organic light emitting element and electrically connected to the second electrode, an insulation layer on the first conductive layer, and a second conductive layer on the insulation layer and configured to electrically connect to the first electrode.
Abstract:
An organic light emitting diode (OLED) display comprises: a thin film transistor substrate including an organic light emitting element; and a sealing substrate attached to the thin film transistor substrate, thereby sealing the thin film transistor substrate. The sealing substrate has a folded portion enclosing a side surface and a bottom surface of an edge portion of the thin film transistor substrate.
Abstract:
A method of manufacturing a display device includes providing a display panel including a first alignment mark on one side of opposite facing sides, obtaining location information of the first alignment mark by imaging the one side of the display panel, providing a flexible printed circuit board that includes a second alignment mark and a subsidiary mark on one side of the flexible printed circuit board, the subsidiary mark being spaced apart from the display panel and being spaced a predetermined distance apart from the second alignment mark, aligning the first alignment mark and the second alignment mark by disposing the subsidiary mark to be spaced the predetermined distance apart from the first alignment mark on the basis of the location information of the first alignment mark, and bonding the display panel and the flexible printed circuit board.
Abstract:
An organic light emitting diode (OLED) display comprises: a thin film transistor substrate including an organic light emitting element; and a sealing substrate attached to the thin film transistor substrate, thereby sealing the thin film transistor substrate. The sealing substrate has a folding portion enclosing a side surface and a bottom surface of an edge portion of the thin film transistor substrate.
Abstract:
A method of manufacturing a display device includes providing a display panel including a first alignment mark on one side of opposite facing sides, obtaining location information of the first alignment mark by imaging the one side of the display panel, providing a flexible printed circuit board that includes a second alignment mark and a subsidiary mark on one side of the flexible printed circuit board, the subsidiary mark being spaced apart from the display panel and being spaced a predetermined distance apart from the second alignment mark, aligning the first alignment mark and the second alignment mark by disposing the subsidiary mark to be spaced the predetermined distance apart from the first alignment mark on the basis of the location information of the first alignment mark, and bonding the display panel and the flexible printed circuit board.