Abstract:
The present invention provides an organic electronic device using the compound of the formula (1) and a pyrene derivative having a new structure.
Abstract:
A method of determining a amount of ice collected in a storage container of a refrigerator, the ice being discharged into the storage container by an ice maker having an ice detecting sensor with a heater, the method comprises determining whether or not the ice storage container is full or nearly full of ice by turning on the detecting sensor for a prescribed period of time. In one embodiment, the heater is turned on while the determining step is preformed. In an alternative embodiment, the heater is continuously maintained in an “ON” state.
Abstract:
A thin film transistor (TFT) substrate and a method of fabricating the same are provided. The thin film transistor substrate may have low resistance characteristics and may have reduced mutual diffusion and contact resistance between an active layer pattern and data wiring. The thin film transistor substrate may include gate wiring formed on an insulating substrate. Oxide active layer patterns may be formed on the gate wiring and may include a first substance. Data wiring may be formed on the oxide active layer patterns to cross the gate wiring and may include a second substance. Barrier layer patterns may be disposed between the oxide active layer patterns and the data wiring and may include a third substance.
Abstract:
A liquid crystal display (LCD) device and a method of manufacturing the same are disclosed. The liquid crystal display device includes: a plurality of cell regions including a first substrate upon which a pixel electrode is formed, a second substrate upon which a common electrode is formed, and a liquid crystal layer interposed between the first substrate and the second substrate, and a cutting region formed between the plurality of cell regions, and including the first substrate and the second substrate extended from the plurality of cell regions, and at least one peripheral spacer interposed between the first substrate and the second substrate, where the peripheral spacer contacts at least one of the first and second substrates.
Abstract:
An LCD device and a method for manufacturing the same are disclosed in which if an overcoating layer is not formed on a color filter substrate, a gap between exposed pigments is filled with a column spacer material to increase a process margin. The LCD device includes first and second substrates facing each other, gate and data lines formed on the second substrate to cross each other, thereby defining pixel regions, a thin film transistor (TFT) formed in each portion where the gate lines cross the data lines, common and pixel electrodes alternately formed in the pixel regions, a black matrix layer formed on the first substrate to cover the gate lines, the data lines and the thin film transistor, color filter layers of a plurality of color films having a stripe shape and spaced apart from one another at a predetermined interval, wherein the color films partially overlap the black matrix layer, a filling pattern formed in regions between the respective color films, a column spacer formed on the black matrix layer and a predetermined portion of the color filter layers, and a liquid crystal layer formed between the first and second substrates.
Abstract:
A method of manufacturing a quantum dot, the method including: mixing of a Group II precursor and a Group III precursor in a solvent to prepare a first mixture; heating the first mixture at a temperature of about 200° C. to about 350° C.; adding a Group V precursor and a Group VI precursor to the first mixture while maintaining the first mixture at the temperature of about 200° C. to about 350° C. to prepare a second mixture; and maintaining the second mixture at the temperature of about 200° C. to about 350° C. to form a quantum dot.
Abstract:
Provided are an integrating sphere photometer and a measuring method of the same. The integrating sphere photometer includes a plurality of photodetectors, an integrating sphere having through-holes formed to correspond to the photodetectors, baffles disposed inside the integrating sphere in front of the photodetectors to be spaced apart from the photodetectors, a photometer disposed at a through-hole, and an adjustment unit adjusting output signals of the photodetectors to have the same output signal with respect to light illuminated from a point-like standard light source disposed at a center region in the integrating sphere.
Abstract:
A method and system is provided for generating digital content using text-to-speech (TTS) conversion. A predetermined script is selected using a portable terminal or user personal computer (PC). A format for converting the selected script into an audio data file is determined. The selected script is generated into the audio data file according to the determined conversion format of the audio data file using a TTS engine provided to at least one of the user PC and a web server.
Abstract:
An integrating sphere photometer and a measuring method of the same are provided to precisely measure a directional light source. The integrating sphere photometer includes an integrating sphere having a plurality of through-holes, a plurality of photometers disposed at the through-holes, baffles disposed in front of the photometers to be spaced apart therefrom, an auxiliary light source disposed inside the integrating sphere, an auxiliary baffle disposed in front of the auxiliary light source, and a summing unit of output signals of the photometers under the illumination of a light source to be measured disposed in the central area inside the integrating sphere.
Abstract:
Exemplary embodiments of the present invention provide a display substrate including a gate electrode, an oxide semiconductor pattern, a source electrode, a drain electrode, and an etch stop pattern. The gate electrode may be disposed on a base substrate. The oxide semiconductor pattern may be disposed over the gate electrode. The source electrode may be disposed on the oxide semiconductor pattern. The drain electrode may be disposed on the oxide semiconductor pattern and spaced apart from the source electrode. The etch stop pattern may be disposed over the gate electrode, the etch stop pattern may be overlapping a space between the source electrode and the drain electrode and may include a metal oxide. The reliability of the display substrate may, therefore, be improved.