Abstract:
The present invention relates to a display apparatus comprising a display part on which a picture based on a video signal is displayed, further comprising a signal processor for processing the video signal; a user selection part for enabling a user to set a part of a full picture displayed on the display part as a selected part; and a controller for controlling the signal processor to process the video signal corresponding to the full picture to be displayed as a first picture on a first area and the video signal corresponding to the selected part to be displayed as a second picture on a second area when the selected part is set through the user selection part.
Abstract:
Provided is a method for manufacturing a planar buried semiconductor optical amplifier in which a spot size converter with a double-core structure is integrated, comprising the steps of: after growing a lower cladding layer, a lower waveguide layer and an upper cladding layer on a substrate, patterning a portion of thickness of the lower cladding layer, the lower waveguide layer and the upper cladding layer through an etching process using a dielectric layer pattern to form a lower waveguide; growing a planarization layer on the etched portions of the lower cladding layer, the lower waveguide layer and the upper cladding layer to smooth a surface; after removing the dielectric layer pattern, growing a space layer, an upper waveguide layer and a first cladding layer on the overall upper surface; patterning the first cladding layer, the upper waveguide layer and the space layer through the etching process using the dielectric layer pattern to form an upper waveguide having a horizontal taper area; after growing a first current blocking layer on the etched portions of the first cladding layer, the upper waveguide layer and the space layer of the upper waveguide, growing a second current blocking layer on the exposed portion of the first current block layer excluding the dielectric layer pattern; and after removing the dielectric layer pattern, forming a second cladding layer on the overall upper surface, and forming an electrode on the second cladding layer and the substrate, respectively.
Abstract:
A stack for a fuel cell system which can include a simplified fastening structure and a fuel cell system having the stack are shown. The stack includes at least one electricity generator, a housing, and a cover. The electricity generator includes a MEA and separators located on both surfaces of the MEA. The housing has an internal space in which the electricity generator is positioned, and a cover coupled to the housing to fix the electricity generator in place. A number of various mechanisms are shown for holding the housing and the cover together and for fixing the stacks in place. A number of reinforcing elements and structural shapes are also shown that yield a stronger housing and cover assembly that resists buckling and other forms of stress.
Abstract:
A fuel cell system includes a stack for generating electrical energy by a reaction of the hydrogen and oxygen, a reformer for generating hydrogen gas from fuel through a chemical catalytic reaction by thermal energy, a fuel supply assembly for supplying fuel to the reformer, and an air supply assembly for supplying air to the reformer and the stack. The reformer includes a plurality of reactors having a channel, respectively, and being stacked.
Abstract:
A fuel cell system includes a stack for generating electricity through an electrochemical reaction between hydrogen and oxygen, a fuel supply unit for supplying fuel to the stack, an air supply unit for supplying air to the stack, and a vaporizing unit connected with the stack and for vaporizing moisture discharged from the stack.
Abstract:
The present invention is a stacked fuel cell system which is formed by stacking a plurality of electricity generators, each electricity generator having a membrane-electrode assembly and a separator provided with the membrane-electrode assembly. The stack comprises an aligner which is disposed at least one portion of the separator and which couples and aligns the plurality of electricity generators.
Abstract:
A cooling apparatus of a fuel cell system includes a housing for providing a space for receiving an electricity generating unit and a cooling medium supply unit connected to the housing to supply the cooling medium to the electricity generating unit. The housing has a body having a space for receiving the electricity generating unit. A guide section is connected to the body to collect the cooling medium passing through electricity generating unit. An exhaust unit is connected to the guide section to exhaust the cooling medium to outside of the housing.
Abstract:
A fuel cell system includes a stack having an electricity generator for receiving fuel and air to generate electrical energy, a fuel supply unit for supplying the fuel to the stack, a housing in which the stack is mounted, a fan unit for supplying external air to the interior of the housing for cooling the electricity generator, and a region wherein air heated while cooling the electricity generator and air discharged from the stack and containing moisture are mixed. The air that is mixed in the region is discharged from the region.
Abstract:
A clutch assembly of an automatic transmission includes a clutch drum having a slanted inner surface at a corner formed by circumferentially bending an circumferential edge of the clutch drum, a plurality of friction members alternately arranged in the clutch drum, a piston for actuating the friction members, the piston contacting the friction members, and a cushion ring having a circumferentially slanted outer surface corresponding to the slanted inner surface of the clutch drum, the cushion ring being installed into the clutch drum so as to contact the slanted outer surface of the cushion ring with the slanted inner surface of the clutch drum.