Abstract:
Method and apparatus for managing channels for a plurality of digital broadcasting methods. The method of managing channels comprises: detecting broadcasting channels which correspond to at least one broadcasting method predetermined from a plurality of digital broadcasting methods with respect to each physical channel in a predetermined reception range; and storing channel information of the detected broadcasting channels in a memory. Accordingly, an efficient and convenient method of managing channels is provided in a plurality of digital broadcasting standards.
Abstract:
A thin film transistor panel includes; an insulating substrate, a gate line including a gate electrode disposed on the insulating substrate, a gate insulating layer disposed on the gate electrode, a semiconductor layer disposed on the gate insulating layer, the semiconductor layer including a sidewall, a data line including a source electrode disposed on the semiconductor layer, a drain electrode disposed substantially opposite to and spaced apart from the source electrode, a first protective film disposed on the data line, the first protective film including a sidewall, a second protective film disposed on the first protective film and including a sidewall, and a pixel electrode electrically connected to the drain electrode, wherein the sidewall of the second protective film is disposed inside an area where the sidewall of the first protective film is disposed, and the source electrode and the drain electrode cover the sidewall of the semiconductor layer.
Abstract:
A mobile terminal and method of controlling a mobile terminal are provided. While a preview image is displayed on a screen and a camera zooms in, a zoom-in region is stored after being cropped from the preview image. According to the present invention, when an image resulting from zooming in a preview image is photographed and stored, the region corresponding to the zoomed-in image is cropped from the preview image and then stored instead of the zoomed-in image with a resolution size of the preview image being stored. Therefore, the present invention reduces a size of a stored image without degradation of a picture, thereby increasing an available size of the memory.
Abstract:
An array substrate for a liquid crystal display device includes gate and data lines crossing on a substrate, common lines parallel to and between the gate lines, thin film transistors at crossing portions of the gate and data lines, and a pixel electrode. The common lines define pixel regions, which are each divided into first and second regions by the corresponding gate line. The thin film transistors each include a gate electrode in a first direction, a semiconductor layer on the gate electrode, and source and drain electrodes on the semiconductor layer in a second direction. The source and drain electrodes cross the gate electrode in each of the first and second regions. The pixel electrode is connected to the drain electrode.
Abstract:
A method for detecting two dimensional sketch data from source model data for three dimensional reverse modeling. The method includes the steps of detecting optional model data, establishing X-axis, Y-axis and Z-axis of the model data depending upon a reference coordinate system information inputted from a user, and setting a work plane for detecting two dimensional section data of the model data; projecting, on the work plane, two dimensional section data to be detected from the model data or polylines detected by designating a detection position; detecting two dimensional projected section data of the model data projected on the work plane, and dividing the two dimensional projected section data into feature segments depending upon a curvature distribution; and establishing a constraint and numerical information in accordance with connection of the divided feature segments of the two dimensional projected section data, and creating two dimensional sketch data.
Abstract:
A liquid crystal display device has pixel regions defined by gate lines and data lines perpendicular to the gate lines. The gate electrodes of thin film transistors (TFTs) at a first side of the data lines project from the gate lines. Active layers are disposed on the gate electrodes. Source electrodes overlap the active layers. Drain electrodes are parallel to the gate lines, spaced from the source electrodes and overlap the active layers. Pixel electrodes formed on the pixel region are connected to the drain electrodes. This structure prevents poor picture quality by minimizing the differences between the parasitic capacitance formed between the gate electrode and the drain electrode in adjacent pixel regions even if Y- or X-axis misalignment occurs.
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:
Provided are an ice maker and a refrigerator including the same. An ice maker is mounted on a rear side of a door. Flooding of water stored in an ice tray is prevented by a tray cover. Also, an ice bank storing ice made from the ice maker is taken in and out through a home bar provided to the door. Therefore, reduction in the storage capacity of the refrigerator is minimized, and simultaneously, the ice can be easily taken out.
Abstract:
A video scaler may include a scaler core and an output memory having a reduced size. An image processing apparatus may include a video scaler with a scaler core and an output memory with a reduced size. The scaler core may scale input image data and store the scaled image data in the output memory. The image processing apparatus may read image data from the output memory a reduced storage time.
Abstract:
A digital transmission apparatus and a method thereof and a digital reception apparatus are provided. A frame body processor converts incoming data and outputs a frame body, a system information generator generates system information, which is necessary for processing the data at a reception apparatus, by using a different processing method from the frame body processing method of the frame body processor, a frame generator multiplexes data of the frame body, a header of the frame, and the system information, thereby generating a frame, and a signal processor up-coverts a signal of the frame and transmits the signal to the reception apparatus.