Abstract:
An organic light-emitting display (OLED) device is disclosed. In one aspect, the OLED device includes a substrate including a display region and a peripheral region and a transistor disposed in the display region and including an active pattern, a gate insulation layer, a gate electrode, a source electrode, and a drain electrode. The OLED device also includes an organic light-emitting structure disposed in the display region and electrically connected to the transistor, the organic light-emitting structure including a first electrode, an organic light-emitting layer, and a second electrode, and a first wiring and a second wiring disposed in the peripheral region and configured to generate heat. The OLED device further includes an encapsulation layer disposed over the first and second wirings and the organic light-emitting structure and a heat blocking layer disposed between the first and the second wirings and the encapsulation layer to block the heat generated from the first and the second wirings.
Abstract:
A semiconductor element includes a substrate, a gate electrode, an active layer, a contact layer, a first electrode, and a second electrode. The gate electrode is disposed on the substrate. The gate insulation layer is disposed on the gate electrode. The active layer is disposed on the gate insulation layer, and includes a first end portion and a second end portion that is opposite the first end portion. The contact layer overlaps the second end portion of the active layer. The first electrode is in contact with the first end portion. The second electrode is spaced apart from the first electrode, and is in contact with the contact layer.
Abstract:
A semiconductor element includes a substrate, a gate electrode, an active layer, a contact layer, a first electrode, and a second electrode. The gate electrode is disposed on the substrate. The gate insulation layer is disposed on the gate electrode. The active layer is disposed on the gate insulation layer, and includes a first end portion and a second end portion that is opposite the first end portion. The contact layer overlaps the second end portion of the active layer. The first electrode is in contact with the first end portion. The second electrode is spaced apart from the first electrode, and is in contact with the contact layer.
Abstract:
An organic light-emitting diode (OLED) display is disclosed. In one aspect, the OLED display includes a substrate and an active pattern formed over the substrate. The OLED display also includes first and second gate electrodes formed over the active pattern. The first gate electrode defines a first transistor together with the active pattern. The second gate electrode defines a second transistor and a third transistor together with the active pattern. The OLED display further includes a first conductive pattern formed over the first and second gate electrodes. The first conductive pattern overlaps at least a portion of the second and/or third transistors so as to define a parasitic capacitor.
Abstract:
An organic light-emitting display (OLED) device is disclosed. In one aspect, the OLED device includes a substrate including a display region and a peripheral region and a transistor disposed in the display region and including an active pattern, a gate insulation layer, a gate electrode, a source electrode, and a drain electrode. The OLED device also includes an organic light-emitting structure disposed in the display region and electrically connected to the transistor, the organic light-emitting structure including a first electrode, an organic light-emitting layer, and a second electrode, and a first wiring and a second wiring disposed in the peripheral region and configured to generate heat. The OLED device further includes an encapsulation layer disposed over the first and second wirings and the organic light-emitting structure and a heat blocking layer disposed between the first and the second wirings and the encapsulation layer to block the heat generated from the first and the second wirings.