Abstract:
Provided is a display apparatus capable of minimizing defect occurrences during manufacturing of the display apparatus while securing a long lifespan of the display apparatus. The display apparatus includes a substrate comprising a bent area between a first area and a second area and bent about a bending axis, display devices on the first area, a scan driving circuit unit on the second area, a first encapsulation layer configured to cover the display devices, and a second encapsulation layer apart from the first encapsulation layer and configured to cover the scan driving circuit unit.
Abstract:
A thin film transistor array substrate comprises: a substrate; a driving thin film transistor including an active layer, a gate electrode, a source electrode, and a drain electrode; a first capacitor including a first electrode connected to the gate electrode, and a second electrode disposed at a layer different from a layer at which the first electrode is disposed and at least partially overlapping the first electrode; a first conductive layer disposed at a layer that is the same as the layer of the second electrode of the first capacitor; a second conductive layer disposed at a layer different from the layer at which the first conductive layer is disposed; and a bridge electrode disposed at a layer that is different from the first and second conductive layers, and contacting the first and second conductive layers so that the first and second conductive layers are electrically connected to each other.
Abstract:
A display apparatus includes a first substrate including a display area and a peripheral area outside the display area, a display layer disposed in the display area and including first to third light-emitting elements, a shield pattern portion including a lower pattern layer disposed in the peripheral area and surrounding at least part of the display layer, and an upper pattern layer disposed above the lower pattern layer and electrically connected to the lower pattern layer through contact holes in an insulating layer covering the lower pattern layer, a second substrate disposed above the display layer, and a sealing portion surrounding at least a part of the display layer, disposed between the first substrate and the second substrate, covering one side of the shield pattern portion in a direction toward the display layer, and overlapping the contact holes.
Abstract:
A display device includes: a substrate; a semiconductor layer of a transistor, on the substrate; a gate electrode of the transistor on the semiconductor layer; and a conductive layer element corresponding to the transistor. The conductive layer element is both electrically connected to a constant voltage source and contacts the substrate.
Abstract:
A thin film transistor substrate may include a base substrate, a semiconductor member, a gate electrode, a first insulation layer, and a source/drain electrode. The semiconductor member may overlap the base substrate. The gate electrode may overlap the semiconductor member and may be insulated from the semiconductor member. The first insulation layer may be positioned on the gate electrode and may include a first contact hole. The source/drain electrode may include a first discharge hole, may be electrically connected to the semiconductor member, and may be at least partially positioned inside the first contact hole. The first discharge hole may partially expose the semiconductor member.
Abstract:
A pixel circuit to be connected to a data line and first and second power supply lines includes a light emitting element connected between the first power supply line and the second power supply line; a driving transistor to control a current flowing from the first power supply line to the second power supply line through the light emitting element according to a voltage of a first node; a first switching element connected between the first node and a second node; a second switching element connected between the second node and a third node; a first capacitor connected between the first power supply line and the first node; and a second capacitor connected between the second node and the data line.
Abstract:
A unit pixel includes a circuit structure, first and second wiring patterns, an interlayer insulating layer, a planarization layer, and a light emission structure. The first wiring pattern disposed on the circuit structure has a first bump structure. The interlayer insulating layer covers the circuit structure and the first wiring pattern. The second wiring pattern disposed on the interlayer insulating layer overlaps the first wiring pattern and has a second bump structure. The planarization layer covers the interlayer insulating layer and the second wiring pattern and includes a via-hole exposing at least a portion of be second wiring pattern. The light emission structure contacts the second wiring pattern through the via-hole. The first and second wiring patterns and the interlayer insulating layer form a capacitor, the light emission structure includes an OLED, and the capacitor is directly connected to an anode of the OLED.
Abstract:
A display device includes: a substrate; a semiconductor layer of a transistor, on the substrate; a gate electrode of the transistor on the semiconductor layer; and a conductive layer element corresponding to the transistor. The conductive layer element is both electrically connected to a constant voltage source and contacts the substrate.
Abstract:
A display device and method of manufacturing the device that facilitates exposing a pad includes a flexible substrate including a central area and a peripheral area surrounding the central area, a display unit in the central area, an encapsulation layer covering the display unit and including at least one inorganic layer and at least one organic layer, an insulating layer disposed in the peripheral area defining a recess having a bottom and side portions, and a reinforcing portion disposed inside the recess, including a metallic material, and covering at least a part of the bottom and side portions of the recess.
Abstract:
A display device includes a display panel, and a protective member disposed outside the display panel. The circuit layer includes a display area and a non-display area, and a first bending line and a second bending line crossing the first bending line are defined are defined in the non-display area. The non-display area includes: a first non-display area bent from the display area with respect to the first bending line; a second non-display area bent from the display area with respect to the second bending line; and a corner non-display area bent from the second non-display area with respect to the first bending line and bent from the first non-display area with respect to the second bending line. A slit is defined in the protective member, and the slit overlap at least a part of the first bending line and the second bending line.