Abstract:
Provided is an organic light emitting display apparatus. The organic light emitting display apparatus includes: a substrate; a display unit disposed on the substrate; an encapsulation layer covering the display unit; an integrated circuit device disposed on an outer portion of the display unit on the substrate; and a transparent protection unit (window) disposed on the encapsulation layer and separated from the integrated circuit device.
Abstract:
A flexible display apparatus includes a main body, a rotation structure and a signal transfer portion. The main body includes a control circuit portion. The rotation structure includes a rotation body and a flexible display panel. The rotation body is capable of rotating about an axis extending in a first direction, and the flexible display panel is fixed to the rotation body. The signal transfer portion transfers a signal between the control circuit portion and the flexible display panel. A method of manufacturing the flexible display apparatus is also provided.
Abstract:
The organic light emitting display apparatus includes a substrate; a gate electrode formed on the substrate; a source electrode and a drain electrode formed on the gate electrode to be insulated from the gate electrode; an active layer formed on the source electrode and the drain electrode and containing an organic semiconductor material, at least one region of the active layer overlapping with the gate electrode; a pixel defining layer formed on the active layer and including an aperture; an intermediate layer disposed to correspond to the aperture and including an organic emission layer; and an opposite electrode formed on the intermediate layer. One of the source electrode and the drain electrode is formed to be long to act as a pixel electrode and includes a first conductive layer and a second conductive layer on the first conductive layer, the second conductive layer formed to contact the intermediate layer.
Abstract:
An electronic device includes a processor and a touchscreen. The processor is configured to execute an application program. The touchscreen is configured to display, in response to a first user input, a display region corresponding to the application program being executed and a command region transparently overlapped on a portion of the display region, the display region including a command execution object. The processor is further configured to execute a command operation assigned to the command region for the command execution object in response to a second user input moving the command execution object to the command region.
Abstract:
A carrier substrate includes: a base substrate; a first coating layer on a first surface of the base substrate; and a second coating layer on a second surface of the base substrate. The thermal expansion coefficients of the first coating layer and the second coating layer are greater than a thermal expansion coefficient of the base substrate, and a thickness of the first coating layer is different from a thickness of the second coating layer.
Abstract:
A method of manufacturing a display device, the method including forming a first layer on a rigid glass substrate, the first layer having a hydrophobic surface; forming a second layer to be bonded to a rigid thin glass substrate on the first layer to prepare a carrier substrate; bonding the rigid thin glass substrate onto the second layer; forming and encapsulating a display portion on an upper surface of the rigid thin glass substrate; and irradiating a laser beam to delaminate the first layer and detaching the rigid thin glass substrate from the rigid glass substrate.
Abstract:
The organic light emitting display apparatus includes a substrate; a gate electrode formed on the substrate; a source electrode and a drain electrode formed on the gate electrode to be insulated from the gate electrode; an active layer formed on the source electrode and the drain electrode and containing an organic semiconductor material, at least one region of the active layer overlapping with the gate electrode; a pixel defining layer formed on the active layer and including an aperture; an intermediate layer disposed to correspond to the aperture and including an organic emission layer; and an opposite electrode formed on the intermediate layer. One of the source electrode and the drain electrode is formed to be long to act as a pixel electrode and includes a first conductive layer and a second conductive layer on the first conductive layer, the second conductive layer formed to contact the intermediate layer.
Abstract:
A flexible display apparatus including: a first film including a first surface and a second surface that are opposite each other, and a first groove formed in the first surface, the first film having a first rigidity; a third film on the second surface of the first film; a fourth film facing the third film; an emission display unit between and encapsulated by the third film and the fourth film; and a second film on the fourth film and facing the first film, the second film having a second rigidity that is less than the first rigidity.
Abstract:
A color mirror substrate may include a transparent substrate, a plurality of wavelength conversion patterns arranged on the transparent substrate, and a plurality of mirror patterns, ones of the mirror patterns stacked on respective ones of the wavelength conversion patterns. Each wavelength conversion pattern may include a wavelength conversion particle with a quantum dot. In the color mirror display device, a mirror property having a desired color may be implemented. For example, a gold mirror or a black mirror may be implemented by using various types of quantum dots.