Abstract:
The present invention is directed to a wireless communication system, more specifically, a transmitter used for wireless communication and a method for the same. The transmitter used for wireless communication comprises a plurality of transmitting antennas; a plurality of radio frequency (RF) chains configured for each of the
Abstract:
A liquid crystal display includes a first substrate including a display area and a fan-out area, a plurality of pixels disposed in the display area; a dam disposed in the fan-out area, and a plurality of display signal lines disposed on the first substrate, where the plurality of display signal lines is connected to the plurality of pixels in the display area, the plurality of display signal lines includes a plurality of wiring units in the fan-out area, the dam is disposed in a dummy area between the plurality of wiring units, and a shape of the dam is different from a shape of the plurality of wiring units.
Abstract:
The present design relates to an advantageous and useful sheet which contains rice bran and to a gift-set tray made with the same, wherein the sheet comprises: a substrate layer (10); and a rice-bran-containing layer (20) formed on at least one surface of the substrate layer (10), wherein the rice-bran-containing layer (20) consists of a rice-bran-containing composition comprising a synthetic resin and rice bran as well as an inorganic filler and an additive, such that the use of rice bran and inorganic filler provide a rice-bran foaming effect during extrusion of the sheets for gift-set trays, which makes it possible to reduce the synthetic resin content and prevent depletion of petroleum resources and reduce environmental pollution, while lowering production costs by addition of the rice bran, and provide unique texture and aroma which are not possible with synthetic resins, and the use of the rice bran sheets provides environmentally friendly gift-set trays.
Abstract:
A titanium oxide nano tube material is configured so that crystal grains of a nano tube has a crystal structure oriented with the [001] direction of a tetragonal crystal system as a preferred direction. FWHM (Full Width at Half Maximum) of a rocking curve with respect to the (004) plane peak is 11.1 degrees to 20.3 degrees. The titanium oxide nano tube material has excellent photoelectric characteristics since the crystal grains of the nano tube are oriented with the (004) plane or the [001] direction of a tetragonal crystal system as a preferred direction.
Abstract:
A method of transmitting and receiving channel bandwidth information in a wireless communication system is disclosed, by which backward compatibility can be maintained. The present invention includes transmitting the channel bandwidth information including information on a maximum number of resource blocks available for a mobile station supporting the first system and transmitting information on a number of resource blocks available for a mobile station supporting the second system.
Abstract:
The present invention relates to a pharmaceutical composition for preventing or treating Hepatitis C, comprising the roots extract of Platycodon grandiflorum and/or saponin components in Platycodon grandiflorum useful as an antiviral agent. The composition of the present invention has no harm to human and inhibits the proliferation of Hepatitis C virus, so that it can be effectively used as a preventive or therapeutic agent for Hepatitis C.
Abstract:
A liquid crystal display (LCD) is provided. The LCD includes at least one light source which provides light, a display panel which includes pixels reflecting the light from the light source, and at least one light guide plate (LGP) which is formed substantially parallel to a surface of the display panel and is separated from the display panel, wherein a predetermined space is defined between the LGP and the display panel, and the LGP guides the light emitted from the light source to the pixels and allows the light reflected by the pixels to pass through the LGP.
Abstract:
Disclosed is a liquid crystal display device that includes: a blue phase mode liquid crystal layer between the first and second substrates, and has an optical anisotropy when an electric field is applied and not applied; polarizing plates on outer surfaces of first and second substrates, respectively; and one of a first optical compensation film including a +C plate, and a second optical compensation film including a biaxial phase retardation layer, between the polarizing plate and the liquid crystal panel.
Abstract:
A method for generating a structured-light pattern is disclosed, wherein high-resolution real-time three-dimensional (3D) data can be obtained by using a single frame (or one-shot) imaging or double frames (or two-shot) imaging methods. The structured-light pattern for the one-shot imaging is formed of a multiple-stripe color pattern using a color selection scheme and a sequence principle. The proposed color selection scheme reduces the ambiguity in stripe labeling in one-shot imaging, and the proposed sequence principle increases the number of distinguishable stripe codes. The structured-light pattern for two-shot imaging is formed so that three-dimensional (3D) data can be obtained even for objects having strong surface colors with ambient lights, wherein the first two-shot pattern is synthesized, thereby forming a multiple-stripe color pattern using sign codes and a sequence principle under a condition that prevents color-transitions in more than one channels from occurring. Subsequently, the second two-shot pattern is formed by reversing the first two-shot pattern. Accordingly, high-resolution real-time three-dimensional (3D) data, which is insensitive to object shape and surface color, system noise and nonlinearity, can be obtained.
Abstract:
The present invention relates to a method for controlling the growth, size, and distribution of a lipid domain in a lipid layer using a substrate on which a topographic structure is formed, and a method of preparing a membrane device including a lipid layer having a lipid domain, where the growth, size, and distribution of the lipid domain can be controlled by said method, and a membrane device prepared thereby.