Abstract:
An organic light emitting display (OLED) device that includes a first substrate and a second substrate. An organic light emitting element and a sealing member are formed between the first substrate and the second substrate. A touch panel, a block pattern, and a protective layer are formed on the second substrate. The block pattern is arranged above the sealing member to prevent a center of the sealing member from being excessively illuminated by a laser beam during a curing process.
Abstract:
Provided are a display apparatus and a method of manufacturing the same. The display apparatus includes a display substrate arranged with a display portion including a display device; a sealing substrate disposed to face the display substrate; and a sealing portion that bonds the display substrate and the sealing substrate and surrounds the display portion. The sealing portion includes a first sealing portion that includes a sealing material and an insulating layer that includes at least one first opening; and a second sealing portion that is disposed outside the first sealing portion and includes at least one gas hole.
Abstract:
A display device including a display substrate, the display substrate including an active area including a display unit that displays an image, a circuit area extending from the active area toward an exterior of the display device, and a cell seal area extending from the circuit area toward an exterior of the display device; an encapsulation substrate covering the display substrate; and a sealing portion between the display substrate and the encapsulation substrate, wherein the sealing portion includes a first sealing portion on the cell seal area, and a second sealing portion on the circuit area and extending from the first sealing portion.
Abstract:
An organic light emitting display apparatus includes a first substrate, a second substrate, an organic light emitting device, a thin film transistor, a wiring pattern and a seal. The first substrate includes a first region, a second region and a third region. The third region surrounds the first region. The second region is between the first region and the third region, and is partially overlapped with the third region. The second substrate faces the first substrate. The organic light emitting device is disposed on the first substrate in the first region. The thin film transistor is disposed on the first substrate in a region where the second region and the third region overlap. The wiring pattern is disposed on the first substrate in the second region. The seal is disposed in the third region, between the first substrate and the second substrate in the third region.
Abstract:
A display device integrated with a touch screen panel includes upper and lower substrates; the upper substrate comprising a major surface; a display area and a non-display area next to the display area when viewed in a viewing direction perpendicular to the major surface; and a sealing material formed between the upper and lower substrates and in the non-display area when viewed in the viewing direction. The display further includes a sensing cell structure formed over the upper substrate and in the display area; conductive lines formed over the upper substrate and in the non-display area, and connected to the sensing cell structure. The conductive lines overlap with the sealing material; and an optical layer is formed between two immediately neighboring conductive lines among the conductive lines.
Abstract:
A display device includes: a substrate on which a display unit is formed and an encapsulation unit for sealing the substrate; a touch screen panel formed on the encapsulation unit; a window cover provided on the touch screen panel; an alignment key for aligning positions of the display panel and the window cover; and a sealing portion disposed between the substrate and encapsulation unit. An area expansion portion is formed in a position of the sealing portion corresponding to the alignment key.
Abstract:
An organic light emitting display device and manufacturing method thereof are disclosed. One inventive aspect includes a first substrate, a second substrate, a pixel unit, a circuit unit, a sealing member and a radiation unit. The pixel unit is formed on the first substrate and comprises an organic light emitting device and a thin-film transistor (TFT). The radiation unit includes radiation fins formed in the sealing member and a radiation layer contacting first ends of the radiation fins.
Abstract:
An organic light emitting diode (OLED) display including a substrate; a scan line formed on the substrate and applying a scan signal; a data line and a driving voltage line intersecting the scan line and respectively applying a data signal and a driving voltage; a switching TFT connected to the scan line and data line; a driving TFT connected to a switching drain electrode TFT and the driving voltage line; an OLED connected to the driving drain electrode; a storage capacitor connected between the driving voltage line and the driving gate electrode; and a boosting capacitor including a first boosting capacitor plate connected to the driving gate electrode and a second boosting capacitor plate overlapping the first boosting capacitor plate and connected to the scan line, where an area of the first boosting capacitor plate of the boosting capacitor is larger than an area of the second boosting capacitor plate.
Abstract:
An organic light emitting display apparatus includes a first substrate, a second substrate, an organic light emitting device, a thin film transistor, a wiring pattern and a seal. The first substrate includes a first region, a second region and a third region. The third region surrounds the first region. The second region is between the first region and the third region, and is partially overlapped with the third region. The second substrate faces the first substrate. The organic light emitting device is disposed on the first substrate in the first region. The thin film transistor is disposed on the first substrate in a region where the second region and the third region overlap. The wiring pattern is disposed on the first substrate in the second region. The seal is disposed in the third region, between the first substrate and the second substrate in the third region.
Abstract:
A display device is disclosed. In one aspect, the display device includes a display unit formed in the display area and an encapsulation substrate formed over the base substrate. The display device further includes a touch screen panel formed over the encapsulation substrate, a sealant film interposed between the base substrate and the encapsulation substrate, and a thermal conductor interposed between the sealant film and the encapsulation substrate.