Abstract:
A display device including: a display panel displaying an image; a light source unit supplying light to the display panel; a light guide including: an incidence plane facing the light source unit; an emission plane facing the display panel; and a light guide protrusion protruding in a direction perpendicular to a side of the light guide at an edge of the light guide; a reflection sheet arranged opposite to the surface of the emission plane of the light guide, and including a reflection protrusion protruding in a direction perpendicular to a side of the reflection sheet at an edge of the reflection sheet; and a supporting frame supporting an edge of the display panel, the light guide, and the reflection sheet, the supporting frame including: a light guide protrusion receiving groove receiving the light guide protrusion; and a reflection protrusion receiving groove receiving the reflection protrusion.
Abstract:
Techniques to customize a user interface for different displays are described. An apparatus such as an electronic device with a processing system may implement a custom user interface system that when executed by a processor is operative to adapt a user interface view of an application for presentation by one or more displays. The custom user interface system may comprise, among other elements, a user interface adaptation component operative to receive as input a user interface view of the application for presentation on a first display and an adaptation parameter, and modify the user interface view for presentation on a second display based on the adaptation parameter. A presentation component is operative to present the customized user interface view on the second display. Other embodiments are described and claimed.
Abstract:
A display device comprises: a display panel for displaying an image; a plurality of optical sheets disposed under the display panel; a light guiding plate disposed under the optical sheets, and including a light guiding protrusion protruding toward a side direction from a light guiding corner; a support frame for supporting the display panel, and including a protrusion cover in the frame corner to cover the light guiding protrusion; and a receiving member for supporting the support frame and the light guiding plate. The height of an upper surface of the protrusion cover is preferably no less than the height of an upper surface of the optical sheets. Thus, the display device prevents the problem in molding of the protrusion cover of the support frame, covering the light guiding protrusion of the light guiding plate, due to a slim thickness of the protrusion cover by increasing the thickness of the protrusion cover. Accordingly, a small-sized thin film light guiding plate can be applied to the display device so that luminance of the display device can be improved, and the thickness of the display device can be reduced.
Abstract:
A liquid crystal display that can be slimly formed. The liquid crystal display may include: a liquid crystal display panel; a backlight unit including: a light source; and a light guide plate receiving light emitted from the light source and diffusing the received light; and a frame receiving the liquid crystal display panel and the backlight unit. The frame includes: a chassis including a bottom part and a side wall, the bottom part having insertion holes; and a molding that is combined with the chassis through the insertion holes. In addition, the bottom part of the chassis is formed with protrusions adjacent to the insertion holes and the protrusions protrude in a direction opposite to a direction in which the molding is combined with the insertion holes of the chassis.
Abstract:
An apparatus for extracting and creating a closed caption of a DTV stream in broadcasting and communication system, the apparatus comprising: a demultiplexer to receive the stream and demultiplex the received stream into additional information and a video stream; a decoder to receive and decode the video stream; an ST converter to receive PTS information, and convert PTS information into synchronization time information; a storage unit to store the demultiplexed additional information; an analyzer to receive the additional information and analyze CSD information; a closed caption extractor to receive the decoded data and the CSD information, and extract closed caption data; a closed caption file creator to create a closed caption file; a closed caption data processing unit to construct a segment-by-segment closed caption stream; a segmentation unit to construct a segment-by-segment stream; and a keyword search unit to provide the segment-by-segment stream corresponding to the keyword.
Abstract:
The present invention relates to a signal sequence peptide for the improvement of extracellular secretion efficiency of a heterologous protein in E. coli. More particularly, the present invention relates to a gene construct for the improvement of extracellular secretion efficiency of the said heterologous protein in E. coli, which comprises a polynucleotide encoding a recombinant protein composed of the heterologous protein linked to C-terminal of the signal sequence peptide represented by SEQ. ID. NO. 3. The present invention contributes to the improvement of extracellular secretion efficiency of a recombinant protein, so that it can be effectively applied to the production of a recombinant protein.
Abstract translation:本发明涉及用于提高大肠杆菌中异源蛋白质的细胞外分泌效率的信号序列肽。 更具体地,本发明涉及用于改善大肠杆菌中所述异源蛋白质的细胞外分泌效率的基因构建体,其包含编码由与信号序列的C末端连接的异源蛋白质组成的重组蛋白质的多核苷酸 SEQ ID NO: ID。 没有。 本发明有助于提高重组蛋白的细胞外分泌效率,从而可以有效地应用于重组蛋白的生产。
Abstract:
A semiconductor device includes a substrate, a gate insulation layer, a gate structure, a gate spacer, and first and second impurity regions. The substrate has an active region defined by an isolation layer. The active region has a gate trench thereon. The gate insulation layer is formed on an inner wall of the gate trench. The gate structure is formed on the gate insulation layer to fill the gate trench. The gate structure has a width smaller than that of the gate trench, and has a recess at a first portion thereof. The gate spacer is formed on sidewalls of the gate structure. The first and second impurity regions are formed at upper portions of the active region adjacent to the gate structure. The first impurity region is closer to the recess than the second impurity region. Related methods are also provided.
Abstract:
A semiconductor device includes a semiconductor substrate having an active region and an isolation region. A gate structure is provided on the semiconductor device. First and second impurity regions are provided in the substrate on both sides of the gate structure. A pad electrode is provided to contact the first impurity region. Because the pad electrode is provided on the first impurity region of the semiconductor device, the contact plug does not directly contact the active region. Accordingly, failures caused by damage to the active region may be prevented.
Abstract:
Integrated circuit memory devices are fabricated by forming a first contact hole in a cell array region and a second contact hole in a peripheral circuit region. Conductive material is simultaneously placed in the first and second contact holes such that the conductive material in the first contact hole electrically contacts a memory cell transistor in the cell array region and the conductive material in the second contact hole electrically contacts the peripheral circuit transistor in the peripheral circuit region. A capping layer is included, and the peripheral circuit region wiring layer and the capacitor storage electrode is formed directly on the capping layer. Improved performance and reduced step height may thereby be obtained.