Abstract:
Disclosed is method for setting a home code of a home network system, the method including the steps of: creating the home code of the first adaptor; determining whether or not the home code is duplicated; and if the home code is not duplicated, setting the home code of the first adaptor to the second adaptor.
Abstract:
Disclosed is a display device for displaying graphical objects. The display device of the present invention comprises: a video-processing unit which processes a video signal to construct an image; a graphical processing unit which processes graphical data to construct a graphical object; a display unit for displaying the image and the graphical object; and a control unit which controls the video-processing unit and the graphical processing unit, such that the image and graphical object are each provided with different three-dimensional effects and the graphical object continues to be displayed on an overlay layer which is an upper layer of a reference layer on which the image is being displayed. According to the present invention, depth inversion may be prevented.
Abstract:
The present invention relates to a method for preparing artificial wood using a natural vegetable fibroid material, and more specifically, to a preparation method of artificial wood comprising: the binder coating step of mixing a synthetic resin comprising polypropylene or high density polyethylene, and ethylene-vinyl acetate or linear low density polyethylene with a binder selected from maleated polypropylene (MAPP), a titanate-based binder and a zirconia-based binder and a silicone oil; the drying step of drying one or more natural vegetable fibroid powders selected from the group consisting of waste paper, rice straw, corn stalks, African millet stalks, hemp, coffee husks, coconut leaves, sugarcane dregs and green tea dregs; the first mixing step of mixing the binder-coated synthetic resin and the natural vegetable fibroid powders dried at the drying step; the second mixing step of adding one or more additives selected from the group consisting of a lubricant, an antioxidizing agent, a UV stabilizer, a nucleating agent, a filler and an inorganic pigment to the natural vegetable fibroid powders from the first mixing step to mix the mixture; and the molding step of adding a swelling agent and molding the mixture into synthetic wood using an extrusion molding machine. Artificial wood which is light and can maintain a strength (physical property) similar to that of natural wood by remarkably reducing the content of a synthetic resin which is heavy and has a high toxic gas production rate in case of a fire is provided, by employing the method for preparing artificial wood using a natural vegetable fibroid material of the present invention.
Abstract:
The present invention relates to an artificial wood using a natural vegetable fibroid material,and more specifically, to an artificial wood comprising: one or more natural vegetable fibroid powders selected from the group consisting of waste paper, rice straw, corn stalks, African millet stalks, hemp, coffee husks, coconut leaves, sugarcane residue and green tea residue; a synthetic resin comprising polypropylene or high density polyethylene, and ethylene-vinyl acetate or linear low density polyethylene; one binder selected from maleated polypropylene (MAPP), a titanate-based binder and a zirconia-based binder; and one or more additives selected from the group consisting of a lubricant, an antioxidizing agent, a UV stabilizer, a nucleating agent, a filler and an inorganic pigment. The artificial wood using a natural vegetable fibroid material of the present invention is light and can maintain a strength (physical property) similar to that of a natural wood by remarkably reducing the content of a synthetic resin which is heavy and has a high toxic gas production rate in case of a fire.
Abstract:
Disclosed is a display device for displaying graphical objects. The display device of the present invention comprises: a video-processing unit which processes a video signal to construct an image; a graphical processing unit which processes graphical data to construct a graphical object; a display unit for displaying the image and the graphical object; and a control unit which controls the video-processing unit and the graphical processing unit, such that the image and graphical object are each provided with different three-dimensional effects and the graphical object continues to be displayed on an overlay layer which is an upper layer of a reference layer on which the image is being displayed. According to the present invention, depth inversion may be prevented.
Abstract:
The present invention relates to a glycoprotein analysis kit and to the use thereof, and more particularly, to a glycoprotein analysis kit comprising a fluorescein-labelled antibody, a fluorescein-labelled biomaterial, and a support, to a double-probe method that enables, using the kit, a quantitative analysis of the content and glycosylation characteristics of a glycoprotein at the same time, to a method for selecting, using the kit, a single cell which produces a glycoprotein having desired glycosylation characteristics, and to a cell which is selected by means of the method, and which produces a glycoprotein having desired glycosylation characteristics.
Abstract:
Disclosed are a data encoding method and device and decoding method and device; the encoding method being one that involves the encoding of three-dimensional image data into data units which consist of a header area and a data area and in which the header area contains type information showing the type of data contained in the data area, wherein encoding is carried out on reference-viewpoint image data and additional-point image data for providing a three-dimensional image, and wherein a header containing first unit type information constituting one form of type information defined in a legacy system is added to the encoded reference-point image data such that a first data unit is generated, and a header containing second unit type information constituting one form of type information not defined in the legacy system is added to the encoded reference-point image data such that a second data unit is generated.
Abstract:
Disclosed is a digital broadcast content transmitting method for encoding content which contains two-dimensional content and/or three-dimensional content; generating an elementary stream containing the encoded data of the content; inserting, into additional service information containing EPG information of digital broadcast content, information on a two-dimensional or three-dimensional content playback method, information on the relationship between the two-dimensional content and the three-dimensional content, and information for playing EPG information on an EPG screen in a three-dimensional manner; and multiplexing the elementary stream and the additional service information to generate a transport stream.
Abstract:
A method of generating a 3-dimensional (3D) image datastream is provided. The method includes generating an elementary stream including an encoded bit string of 3D image data; generating at least one packetized elementary stream by packetizing the elementary stream; generating at least one section including service related information of the 3D image data; inserting 3D image reproduction information for reproducing the 3D image data into a program guide information section from among the at least one section; generating at least one transport stream packet for each of the at least one section and the at least one packetized elementary stream; and generating a transport stream by multiplexing the at least one transport stream packet.
Abstract:
A method of generating a 3-dimensional (3D) image datastream is provided. The method includes generating an elementary stream including an encoded bit string of 3D image data; generating at least one packetized elementary stream by packetizing the elementary stream; generating at least one section including service related information of the 3D image data; inserting 3D image reproduction information for reproducing the 3D image data into a program guide information section from among the at least one section; generating at least one transport stream packet for each of the at least one section and the at least one packetized elementary stream; and generating a transport stream by multiplexing the at least one transport stream packet.