Abstract:
According to one aspect of the invention, a display device includes: a first layer having a display area and a non-display area adjacent thereto, the first layer including first and second pads overlapping the non-display area and spaced apart from each other in a first direction; a second layer including third and fourth pads that respectively face the first and second pads in a thickness direction of the first layer; and an adhesive layer disposed between the first and second layers and including and a plurality of conductive groups spaced apart from each other in the first direction and distributed along a second direction generally perpendicular to the first direction, wherein the conductive groups comprise conductive particles arranged in the second direction, and the adhesive layer has a thickness greater than about 0.5 times to about 2.0 times a diameter of the conductive particles.
Abstract:
A liquid crystal display includes: first and second gate lines disposed on the first substrate and which respectively transmit first and second gate signals; first, second and third data lines disposed on the first substrate; a first switching element connected to the first gate line and the first data line; a second switching element connected to the first gate line and the second data line; a third switching element connected to the second gate line and the second data line; a fourth switching element connected to the second gate line and the third data line; first and second pixel electrodes respectively connected to the first and second switching and which form a first liquid crystal capacitor; and third and fourth pixel electrodes respectively connected to the third and fourth switching elements and which form a second liquid crystal capacitor.
Abstract:
A liquid crystal display includes: first and second gate lines disposed on the first substrate and which respectively transmit first and second gate signals; first, second and third data lines disposed on the first substrate; a first switching element connected to the first gate line and the first data line; a second switching element connected to the first gate line and the second data line; a third switching element connected to the second gate line and the second data line; a fourth switching element connected to the second gate line and the third data line; first and second pixel electrodes respectively connected to the first and second switching and which form a first liquid crystal capacitor; and third and fourth pixel electrodes respectively connected to the third and fourth switching elements and which form a second liquid crystal capacitor.
Abstract:
A display device and a manufacturing method thereof are provided. The display device includes a display panel, a circuit board, and a conductive adhesive member. The display panel includes a display area and a non-display area adjacent to the display area. The circuit board overlaps the non-display area and is connected to the display panel. The conductive adhesive member is between and electrically connects the circuit board and the display panel. The circuit board includes: a base layer including a pad area; circuit pads overlapping the pad area and on the base layer, the circuit pads being spaced apart in a plan view and arranged in a direction; and a first resin layer overlapping the pad area and on the base layer. In a plan view, the first resin layer overlaps an area between two adjacent circuit pads and covers side surfaces of the two adjacent circuit pads facing in the direction.
Abstract:
A circuit board includes a board, first connection pads disposed on the board and arranged in a first direction, second connection pads disposed on the board and arranged in the first direction, a driving chip disposed on the board and between the first connection pads and the second connection pads, and a first adhesive layer disposed on the board and overlapping with an entirety of the first connection pads in a plan view. The second connection pads are spaced apart from the first connection pads in a second direction perpendicular to the first direction.
Abstract:
A display device including a lower substrate having a display area and a pad area, a display structure disposed in the display area of the lower substrate, an upper substrate disposed on the display structure in the display area, and facing the lower substrate, pad electrodes disposed in the pad area of the lower substrate and spaced apart from each other in a first direction parallel to a top surface of the lower substrate, a conductive film member including conductive balls disposed on the pad electrodes and having a first area overlapping the pad electrodes and a second area not overlapping the pad electrodes, and a film package disposed on the conductive film member and including bump electrodes overlapping the first area of the conductive film member, in which the shape of the conductive balls disposed in the first area is different from those disposed in the second area.
Abstract:
An organic light-emitting display apparatus includes a reduced dead space, and a method of manufacturing provides the same. The organic light-emitting display apparatus includes a lower substrate comprising a display area and a peripheral area surrounding the display area; first thin film transistors (TFTs) disposed in the display area of the lower substrate; a first insulating layer that is disposed in the display area and at least a portion of the peripheral area of the lower substrate and that covers the first TFTs; organic light-emitting diodes (OLEDs) electrically connected to the first TFTs; a sealant disposed such that at least a portion thereof overlaps the first insulating layer; a barrier layer disposed between the first insulating layer and the sealant; and an upper substrate sealed with the lower substrate by the sealant.
Abstract:
A method of removing particles from a display panel is disclosed. In one aspect, the method includes charging the particles and applying an electric field to the charged particles to capture the charged particles. Organic particles and inorganic particles may be forcibly charged to capture the organic and inorganic particles using a metal bar so that the organic and inorganic particles may be substantially removed.
Abstract:
A liquid crystal display includes: a first substrate and a second substrate disposed opposite the first substrate; a liquid crystal layer interposed between the first and second substrates and including liquid crystal molecules; a gate line which transmits a gate signal; first and second data lines which respectively transmit first and second data voltages, the first and second data voltages having opposite polarities; a first switching element connected to the gate line and the first data line; a second switching element connected to the gate line and the second data line; a first subpixel electrode connected to the first switching element; and a second subpixel electrode connected to the second switching element. The first and second subpixel electrodes overlap portions of the first and second data lines. The first and second subpixel electrodes include first and second branches, respectively, which are alternately arranged between the first and second data lines.