Abstract:
A display apparatus is disclosed. The display apparatus comprises a display panel including a first area and a second area extending from a first side of the first area, and a plurality of flexible films connected to the display panel. A distance between a first end and a second end of the first area is less than a distance between a first end and a second end of the second area and the plurality of flexible films are connected to the first end of the first area and the first end of the second area.
Abstract:
A display apparatus comprises a substrate including a display area and a non-display area, a light-emitting element on the substrate in the display area, a bank on the substrate, an encapsulation layer on the light-emitting element, the encapsulation layer comprising a first inorganic encapsulation layer, an organic encapsulation layer, and a second inorganic encapsulation layer, a low-potential power line on the substrate, the low-potential power line overlapping the organic encapsulation layer, a dam on the substrate, the dam surrounding the organic encapsulation layer, and a plurality of structures at a first side of the dam and below the organic encapsulation layer, the plurality of structures comprising a first structure on the bank and a plurality of second structures on the low-potential power line, wherein an end of the first inorganic encapsulation layer and an end of the second inorganic encapsulation layer overlap an end of the substrate.
Abstract:
A display apparatus includes a mode controller that generates a first and second control signals, a gate drive circuit that generates a light-emitting signal, a pixel circuit comprising a driving transistor, a first and second transistor that receives the first and control signals, a first light-emitting element connected to the first transistor, a second light-emitting element connected to the second transistor, a third transistor connected between the driving transistor and the first transistor and operates responsive to the light-emitting signal, and a capacitor connected to a gate electrode of the driving transistor, and a first and second lens on the first and second light-emitting elements, wherein in an initialization period of the pixel circuit, a reference voltage is applied to a first electrode of the capacitor and an initialization voltage is applied to a second electrode of the capacitor.
Abstract:
A display apparatus includes a first area including a first display area having a first size, a second area including a second display area having a second size, a low potential line at least partially surrounding outer peripheries of the first area and the second area and between the first area and the second area in a plan view of the display apparatus, the low potential line supplying a low potential power voltage to a pixel circuit included in each of the first area and the second area, and a cover glass on the first area, the low potential line, and the second area.
Abstract:
The light emitting display panel includes a plurality of pixels, a plurality of gate lines transferring gate signals to the plurality of pixels, a plurality of data lines transferring data voltages to the plurality of pixels, and a sensing line connected to a plurality of light emitting devices respectively included in the plurality of pixels. Each of the plurality of pixels includes a light emitting device, a sensing control transistor including a first terminal connected to a first terminal of the light emitting device and a gate connected to a sensing control line, and a sensing switching transistor including a first terminal connected to a second terminal of the sensing control transistor, a second terminal connected to the sensing line, and a gate connected to a sensing switching line.
Abstract:
Disclosed are an array substrate and a method of fabricating the same. The array substrate includes an active area including a plurality of pixels defined at an intersection area of a gate line and a data line, a gate driving circuit formed at one side of a non-active area and a signal line extending in parallel with the data line in the non-active area to transfer a signal to the gate driving circuit. The signal line includes a first line with a plurality of segmental lines, and at least one additional line formed of a different material and formed at a different layer than the first line. The at least one additional line electrically connects two segmental lines of the first line adjacent to each other.