Abstract:
An organic light-emitting display apparatus includes a lower substrate, an organic light-emitting device on the lower substrate, and a flexible film below the lower substrate, wherein the flexible film includes a base and a second barrier layer provided on the base to prevent infiltration of moisture and oxygen.
Abstract:
A cracks propagation preventing, polarization film attaches to outer edges of a lower inorganic layer of an organic light emitting diodes display where the display is formed on a flexible substrate having the lower inorganic layer blanket formed thereon. The organic light emitting diodes display further includes a display unit positioned on the inorganic layer and including a plurality of organic light emitting diodes configured to display an image, and a thin film encapsulating layer covering the display unit and joining with edges of the inorganic layer extending beyond the display unit.
Abstract:
An organic light-emitting display apparatus includes a lower substrate, an organic light-emitting device on the lower substrate, and a flexible film below the lower substrate, wherein the flexible film includes a base and a second barrier layer provided on the base to prevent infiltration of moisture and oxygen.
Abstract:
A display device includes a substrate including a pixel region and a peripheral region. A plurality of pixels is disposed in the pixel region of the substrate. Each of the plurality of pixels includes a light emitting element. Data lines and scan lines are connected to each of the plurality of pixels. A power line is configured to supply power to the plurality of pixels. The power line includes a plurality of first conductive lines and a plurality of second conductive lines intersecting the plurality of first conductive lines. The plurality of second conductive lines is arranged in a region between adjacent light emitting elements of the plurality of pixels. At least some of the plurality of second conductive lines extend in a direction oblique to a direction of extension of the data lines or the scan lines.
Abstract:
An electronic panel including a base substrate, a display unit including pixels and an encapsulation layer, a sensing unit including first and second conductive patterns disposed on different layers with a sensing insulating layer therebetween, a planarization portion disposed between the display unit and the sensing unit and including a flat surface, an inclined surface, and a recess portion, and a crack sensing portion spaced apart from the first and second conductive patterns and including a crack sensing pattern overlapping with the planarization portion, a first connection line connected to one end of the crack sensing pattern and extending in a first direction, and a second connection line connected to the other end of the crack sensing pattern, spaced apart from the first connection line, and extending in the first direction, in which at least one of the first and second connection lines overlaps with the recess portion.
Abstract:
A display device includes a substrate including a pixel region and a peripheral region. A plurality of pixels is disposed in the pixel region of the substrate. Each of the plurality of pixels includes a light emitting element. Data lines and scan lines are connected to each of the plurality of pixels. A power line is configured to supply power to the plurality of pixels. The power line includes a plurality of first conductive lines and a plurality of second conductive lines intersecting the plurality of first conductive lines. The plurality of second conductive lines is arranged in a region between adjacent light emitting elements of the plurality of pixels. At least some of the plurality of second conductive lines extend in a direction oblique to a direction of extension of the data lines or the scan lines.
Abstract:
A display device includes a display unit including transistors disposed in a display area and signal lines arranged in a non-display area located along an edge of the display area, at least one of the signal lines being electrically connected to the transistors; and an input sensing unit disposed over the display unit and including sensing electrodes disposed on the display area, sensing lines arranged on the non-display area, and a first dummy pattern disposed on the non-display area and spaced apart from the sensing electrodes as compared with the sensing line, wherein the first dummy pattern overlaps a first signal line of the signal lines, the first signal line being spaced farthest from the display area, a planar shape of an overlap pattern formed by overlapping the first dummy pattern and the first signal line coincides with a planar shape of an alignment mark.
Abstract:
A touch member includes a first touch electrode including a plurality of first sub-detection electrode patterns. The touch member includes a second touch electrode including a plurality of second sub-detection electrode. An electrode pattern connecting portion electrically connects adjacent second sub-detection electrode patterns. An island electrode pattern is disposed in the second touch electrode. A bridge pattern electrically connects a first sub-detection electrode of the first sub-detection electrode patterns to the island electrode pattern. The bridge pattern is formed of a first conductive layer. The first sub-detection electrode patterns, the electrode pattern connecting portion, the second sub-detection electrode patterns, and the island electrode pattern are formed of a second conductive layer. An insulating pattern is disposed between the bridge pattern and a part of the second conductive layer overlapping with the bridge pattern. The insulating pattern does not overlap a part of the bridge pattern.
Abstract:
A cracks propagation preventing, polarization film attaches to outer edges of a lower inorganic layer of an organic light emitting diodes display where the display is formed on a flexible substrate having the lower inorganic layer blanket formed thereon. The organic light emitting diodes display further includes a display unit positioned on the inorganic layer and including a plurality of organic light emitting diodes configured to display an image, and a thin film encapsulating layer covering the display unit and joining with edges of the inorganic layer extending beyond the display unit.
Abstract:
An organic light-emitting diode (OLED) display and a method of manufacturing the same are disclosed. In one aspect, the method includes: forming a barrier layer on a base substrate of a mother panel, forming a plurality of display units in units of cell panels on the barrier layer and forming an encapsulation layer on each of the plurality of display units of the cell panels. The method further includes applying an organic film to an interface portion between the cell panels and cutting along the interface portion applied with the organic film. Accordingly, cracks are prevented from occurring in the barrier layer when the mother panel is cut in units of the cell panels, thereby reducing a defect rate of a product and stabilizing its quality.