Abstract:
PURPOSE: A decoding method and a decoding apparatus thereof are provided to have compatibility with bit stream process codec on a conversion domain. CONSTITUTION: A decoding apparatus decodes a bit stream(910). The decoding apparatus partitions the decoded bit stream into n sub band signals(920). The decoding apparatus converts each sub band signal in a frequency domain(930). The decoding apparatus generates a composite audio signal by multiplying converted sub band signals and composite filter bank coefficients(940).
Abstract:
PURPOSE: A signal processing method, an encoding apparatus thereof, and a decoding apparatus are provided to reduce the degradation of the sound quality of a signal due to down-mixing. CONSTITUTION: An encoding apparatus restores a down-mixed original signal in the use of a de-quantized prediction parameter(310). The encoding apparatus generates mute information according to the value of a first restoration signal(320). The mute information indicates the original sound is mute. The encoding apparatus transmits the down-mixed original signal to a decoding apparatus(330).
Abstract:
PURPOSE: A method and an apparatus for generating a media file with media information compatible between media files in the same format, and a method and an apparatus for executing the media file are provided to input/output media information from/to the outside, thereby sharing media information that a user directly edits among different media files. CONSTITUTION: A digital item inserting unit(420) inserts one or more digital items to a media file. A template inserting unit(430) inserts one or more templates to the media file. An application inserting unit(440) inserts one or more applications to the media file.
Abstract:
A liquid crystal display is provided to implement a symmetric viewing angle by locating a first and a second contact hole on the center part of the pixel region. A gate line(22) is spread toward the cross direction and delivers the gate signal. The first of the pair and second gate electrodes(26a,26b) are formed as long as it protrudes in the gate line. The gate insulating layer is formed on the gate line consisting of the silicon nitride(SiNx) etc. A pair of semiconductor layers(40a,40b) are formed as long as it is made of the amorphous silicon hydride(hydrogenated amorphous silicon) or the polycrystalline silicon etc. on the gate insulating layer. The first and second data lines(62a,62b) deliver data voltage.
Abstract:
A liquid crystal display device and a method for manufacturing the same are provided to improve the display quality by enhancing the contrast ratio between white and black. A first display panel(100) includes a first common electrode(150). A second display panel(200) includes a first pixel electrode facing the first display panel. A first liquid crystal panel(10) includes a first liquid crystal layer(11) interposed between the first and the second display panel. A third display panel(300) includes a second common electrode(350). A fourth display panel(400) includes the second pixel electrode(450) facing with the third display panel. A second liquid crystal panel(20) includes the second liquid crystal layer(21) interposed between the third and fourth display panel.
Abstract:
A liquid crystal display device is provided to reduce an afterimage by distributing ion on a liquid crystal layer by forming a long and thin second drain electrode. A liquid crystal display device includes a first substrate where thin film transistors and pixel electrodes are formed, a second substrate opposite to the first substrate and having common electrodes, and a liquid crystal layer placed between the first substrate and the second substrate. The pixel electrodes include a first pixel electrode(161a) and a second pixel electrode(161b) separated from each other. The thin film transistors include a first drain electrode directly supplying an electric signal to the first pixel electrode and a second drain electrode(1432) extended long, having a change in width within 400% while forming coupling capacitance with the second pixel electrode.
Abstract:
A liquid crystal display device is provided to improve a transmissivity of the LCD and to prevent the texture generation by forming electric field in a notch formed in a cut pattern. A liquid crystal display device includes a first substrate(100); a pixel electrode(150) formed on the first substrate and having a pixel electrode cut pattern(151); a second substrate opposite to the first substrate; a common electrode(250) formed on the second substrate, with a common electrode cut pattern(252); and a first 1/4 wavelength plate formed at least one portion of the pixel electrode cut pattern and the common electrode cut pattern adjacent to each other, and a second 1/4 wavelength plate formed at a portion corresponding to the first 1/4 wavelength plate on the common electrode, the first and second 1/4 wavelength plates being adapted on the pixel electrodes.
Abstract:
본 발명의 일 실시예에 박막 트랜지스터 표시판은 기판, 기판 위에 형성되어 있는 복수의 게이트선, 기판 위에 형성되어 있으며 투명한 도전체로 이루어진 복수의 공통 전극, 게이트선과 교차하는 데이터선, 게이트선 및 데이터선과 연결되어 있는 박막 트랜지스터, 박막 트랜지스터와 연결되어 있으며, 공통 전극과 중첩하고 복수의 가지 전극과 가지 전극을 연결하는 연결부를 포함하는 복수의 화소 전극을 포함하고, 서로 이웃하는 화소 전극의 가지 전극은 다른 방향으로 배열되어 있다. 이를 통하여 시인성 및 시야각을 향상시킬 수 있다. 액정표시장치, PLS, IPS, 화소전극, 공통전극, 시인성, 시야각, 단락
Abstract:
A method of manufacturing a substrate of an LCD is provided to significantly reduce a procedure for substrate manufacturing by performing a slit forming process of a transparent conductive layer and a spacer forming process using a single mask. A transparent conductive layer(40) is deposited on a substrate(10). A photoresist layer(75) is formed on the transparent conductive layer. The photoresist layer is patterned to form an opening formed by removing a spacer on which the photoresist layer remains and the photoresist layer, and a non-opening formed by removing the photoresist layer to a predetermined thickness. The transparent conductive layer exposed by the opening is etched to form a slit in the transparent conductive layer. The non-opening is removed to expose the transparent conductive layer under the non-opening, and a portion of the spacer is removed to form a spacer.