Abstract:
A display apparatus includes: a substrate including a sub-pixel area, a lower conductive layer disposed on the substrate and including a connection line, a first semiconductor layer disposed on the lower conductive layer, a gate conductive layer disposed on the lower conductive layer and connected to the connection line, an inorganic insulating layer disposed on the substrate and defining a groove therein surrounding the sub-pixel area, and a connection electrode layer disposed on the inorganic insulating layer and connected to the gate conductive layer, where the connection line is disposed to cross the groove in a plan view.
Abstract:
A stretchable display apparatus includes a substrate, a circuit layer on the substrate and including first and second subpixel circuits, and a light-emitting layer on the circuit layer and including first and second light-emitting diodes, where the circuit layer includes a plurality of inorganic insulating layers interposed between the substrate and the light-emitting layer, and a first inorganic conductive pattern and a second inorganic conductive pattern interposed between a first inorganic insulating layer and a second inorganic insulating layer, where the plurality of inorganic insulating layers defines an opening passing through the first and second inorganic insulating layers and being in an area between the first subpixel circuit and the second subpixel circuit, and the first inorganic conductive pattern and the second inorganic conductive pattern are disposed between the first subpixel circuit and the second subpixel circuit and respectively disposed on opposite sides of the opening.
Abstract:
Provided is a cleaning composition, including, from about 0.01 weight % to about 10.0 weight % of a chelating agent, from about 0.01 weight to about 3.0 weight % of an organic acid containing a carboxyl group, from about 0.01 weight % to about 2.0 weight % of an inorganic acid, from about 1.0 weight % to about 15.0 weight % of an amine and water in an amount sufficient to bring the total weight of the cleaning composition to 100 weight %.
Abstract:
A display apparatus includes a base substrate, a pixel on the base substrate, and a color filter part between the base substrate and the pixel. The pixel includes a cover layer defining a TSC (Tunnel Shaped Cavity) on the base substrate, an image display part provided in the TSC, and first and second electrodes which apply an electric field to the image display part.
Abstract:
A display apparatus includes a substrate on which a display area and a peripheral area outside the display area are defined, a plurality of pixel circuits located in the display area, where each of the plurality of pixel circuits includes a thin-film transistor, a plurality of display elements connected to the plurality of pixel circuits, respectively, an inorganic partition wall located between the plurality of pixel circuits, and a bridge line crossing the inorganic partition wall to electrically connect from neighboring pixel circuits among the plurality of pixel circuits, which neighbor each other with the inorganic partition wall therebetween, to each other.
Abstract:
Provided is an organic light-emitting display apparatus including a substrate including a black pigment; a pixel electrode above the substrate; a pixel defining layer above the pixel electrode and having an opening for exposing at least a portion of the pixel electrode; an intermediate layer above the pixel electrode and including an emission layer (EML); and an opposite electrode above the intermediate layer.
Abstract:
A photoresist composition including a binder resin including a novolac resin represented by Chemical Formula 1, a diazide photosensitive initiator, and a solvent including a base solvent and an auxiliary solvent, wherein the base solvent includes propylene glycol monomethyl ether acetate, and the auxiliary solvent includes dimethyl-2-methylglutarate and ethyl beta-ethoxypropionate, wherein in Chemical Formula 1, R1 to R9 are each independently a hydrogen atom or an alkyl group, “a” is an integer number from 0 through 10, “b” is an integer number from 0 through 100, and “c” is an integer number from 1 through 10.
Abstract:
An electrowetting display device includes a black matrix that includes a plurality of openings corresponding to pixels, respectively, a first extension portion extending in a driving direction of an electrowetting layer, the driving direction being a direction in which motion of the electrowetting layer is induced when a voltage difference is applied between a common electrode and a pixel electrode, and a partition wall that partitions the pixels. The first extension portion includes first and second areas respectively extending in opposite directions to each other and a third area having a width substantially the same as a width of the partition wall. The first area has a width less than about half of a first length corresponding to a length extending between both sides of each pixel in the driving direction, and the second area has a width less than the width of the first area.
Abstract:
A display apparatus includes a substrate in which a first pixel area, a second pixel area, and a separation area are defined, the first pixel area and the second pixel area being apart from each other, and the separation area being between the first pixel area and the second pixel area, a first insulating layer which is disposed on the substrate and in which a trench corresponding to the separation area is defined, a pillar disposed in the trench, a height direction of the pillar being a thickness direction of the substrate, and a second insulating layer which is buried in the trench, surrounds at least a portion of the pillar, and includes a material different from a material of the first insulating layer.
Abstract:
A display apparatus includes a substrate including a plurality of pixel circuit areas and a plurality of wiring areas, each of the wiring areas being arranged between corresponding adjacent pixel circuit areas of the plurality of pixel circuit areas, a pixel circuit arranged in each of the plurality of pixel circuit areas and including at least one thin film transistor, a plurality of wirings arranged in the pixel circuit areas and the wiring areas, and a display element connected to the pixel circuit. The first width of the wirings arranged in the wiring areas is greater than the second width of the wirings arranged in the pixel circuit areas.