Abstract:
An organic light emitting display and a method of fabricating the same are disclosed. The organic light emitting display may include a transistor on a substrate, a lower electrode on the substrate, the lower electrode being electrically connected to the transistor, an organic light emitting layer on the lower electrode, an upper electrode on the organic light emitting layer, and a buffer layer formed on the upper electrode to modify a predetermined thickness of the upper electrode to be a non-conductive material.
Abstract:
A method of manufacturing a light emitting display including an image display part formed on a substrate and a pad part including at least one terminal electrically connected to the image display part. The method includes forming thin film transistors and at least one electroluminescent device electrically connected to the thin film transistors and including a first electrode layer, an emission layer, and a second electrode layer on the image display part, forming a protection layer on the second electrode layer of the electroluminescent device and the pad part, sealing the image display part on the protection layer, and removing the protection layer formed at least on the pad part to expose the terminals. Therefore, it is possible to easily remove the protection layer formed of organic material or inorganic material formed on the pad part without an additional mask.
Abstract:
The present invention relates to a composition for inhibiting HIV activity comprising the extract of Paecilomyces sp. (Tochu-kaso) J300. More particularly, the present invention relates to a composition for inhibiting HIV activity comprising 3-[5-(methoxy-ethyl)-3,6-dioxo-piperazine-2-yl]propionic acid represented by Formula 1 and 4-methyl-2-[(pyrrolidine-2-carbonyl)-2-amino]pentanoic acid represented by Formula 2 that are extracted from Paecilomyces sp. (Tochu-kaso) J300; and to a medical composition and food composition containing the same.
Abstract:
A flat panel display apparatus including: a mother substrate; a display unit provided on the mother substrate; an opposing mother substrate facing the mother substrate such that the display unit is interposed between the mother substrate and the opposing mother substrate; a sealing member provided between the mother substrate and the opposing mother substrate to contact the substrate and/or the opposing mother substrate and arranged outside or along a periphery of the display unit; and an auxiliary layer provided between the mother substrate and the opposing mother substrate to prevent a warpage of the mother substrate and/or the opposing mother substrate.
Abstract:
The present application discloses a method for preventing or retarding degeneration of intervertebral disc at an intervertebral disc defect site, which includes injecting a mammalian connective tissue cell into the intervertebral disc defect site.
Abstract:
An organic light emitting diode includes a first electrode, an organic layer disposed on the first electrode and including an emission layer and an electron transport layer, and a second electrode disposed on the organic layer. The electron transport layer includes an organic metal complex including beryllium and one of compounds of formula 1: wherein R1 to R22 are as defined in the specification.
Abstract:
The invention is directed to organic light emitting diodes (OLEDs) and methods of manufacturing the same. According to embodiments of the invention, an improved electron transport layer (ETL) reduces the driving voltage and current consumption of the OLED, and increase luminous efficiency and lifespan. The OLED includes a first electrode, an organic layer on the first electrode and including an emission layer (EML) and an ETL, and a second electrode on the organic layer.
Abstract:
A recording/playing device and a method for processing a broadcast signal are disclosed. The device includes an external storage device, and a broadcast receiver. The external storage device includes at least one storage medium. And, the broadcast receiver includes a broadcast processor, an interface unit, and a record/play controlling unit. The broadcast processor receives a broadcast signal of a specific channel and demodulates and decodes the received broadcast signal. The interface unit is capable of being connected to the storage medium of the external storage device. And, the record/play controlling unit activates a record/play mode, when a connection with the storage medium of the external storage device is detected through the interface unit, and stores the demodulated broadcast signal in the storage medium of the external storage device through the interface unit, or reads and plays (or plays-back) the broadcast signal from the storage medium of the external storage device.
Abstract:
The present invention relates to a both-side light emitting organic EL display device including a reflection film having an opening and a first electrode formed on the reflection film and in the opening. An organic layer is formed on the first electrode, and a second electrode is formed on the organic layer. The opening corresponds to a central portion of the first electrode.
Abstract:
An organic light emitting display device may include: a substrate having first, second and third pixel regions. A first electrode layer may be formed in each of the first, second and third pixel regions on the substrate. A hole injection layer may be formed over an entire surface of the substrate on the first electrode layers. A first hole transport layer may be formed on the first electrode layers in the first, second and third pixel region. A second hole transport layer may be formed on the first hole transport layer in any two adjacent pixel regions among the first, second and third pixel regions. A third hole transport layer may be formed on the second hole transport layer in any one of the two adjacent pixel region. A first, second and third organic emission layers may be formed on the first, second and third hole transport layer. A second electrode layer may be formed on the first, second and third organic emission layers. An OLED configured in this or a similar manner benefits from uniform operating characteristics and reducing tac time.