Abstract:
A light emitting device may include a plurality of nano-structures having a strip shape, each including a first nano-structure and a second nano-structure, the first nano-structures being the same height on the buffer layer.
Abstract:
The present invention provides an electronic paper display device including: a first electrode; a second electrode facing the first electrode; a barrier layer interposed between the first and second electrodes to define a plurality of cells; and a microcapsule disposed in each cell between the first and second electrodes and maintaining a ratio of minor axis to major axis of 0.9 to 1, and a manufacturing method of the same.
Abstract:
Provided is a case for a portable electronic device. The case includes an outer part; an inner part coupled to an inner surface of the outer part and including a plurality of holes; and fastening members, each including a main body having an outer diameter corresponding to an inner diameter of the hole in the inner part and a flange portion, wherein the flange portion is connected to an end portion of the main body, has an outer diameter greater than the outer diameter of the main body to be depressed into the inner part.
Abstract:
An electronic paper display device and a method of manufacturing the electronic paper display device are disclosed. The method in accordance with an embodiment of the present invention includes forming a plurality of partition walls on a lower board, in which the partition walls partition the lower board into cells, disposing a display unit in the cell, and attaching an upper board on an upper part of the plurality of partition walls such that the display unit is covered. This method can adjust a distance between display units and the shape of the display units, and the quantity of disposed display units can be made uniform, whereby the visual quality of the display can be improved by removing spots formed on a screen.
Abstract:
A manufacturing method for imprinting stamper is disclosed. The manufacturing method includes forming a plurality of concave patterns on an insulation layer, forming a stamper by filling copper in the concave patterns, separating the stamper from the insulation layer, providing roughness on the surface of the stamper, can separate the stamper from the insulation layer, can prevent the deformation of the stamper and can manufacture pluralities of stampers repeatedly.
Abstract:
A semiconductor substrate having a reference semiconductor chip and a method of assembling semiconductor chips using the same are provided. According to the method, a semiconductor substrate having a plurality of semiconductor chips is provided. An identification mark is made on a reference semiconductor chip among the semiconductor chips. The semiconductor substrate is aligned with reference to the reference semiconductor chip, so that an electrical die sorting test can be performed on the semiconductor chips on the semiconductor substrate.
Abstract:
Provided is a Vertical External Cavity Surface Emitting Laser (VECSEL). The VECSEL includes a semiconductor chip, a pump laser, a narrow bandwidth polarization filter, an external mirror, and a Second Harmonic Generation (SHG) element. The semiconductor chip includes an active layer generating light having a wavelength and a reflective layer reflecting the light generated in the active layer. The pump laser emits a pump beam for exciting the active layer. The narrow bandwidth polarization filter is formed on the semiconductor chip and polarizes the light. The external mirror faces the active layer, amplifies the light emitted from the active layer by repeatedly reflecting the light toward the reflective layer, and outputs the amplified light out of the VECSEL. The SHG element is disposed between the narrow bandwidth polarization filter and the external mirror and converts the wavelength of the light.
Abstract:
The present invention relates to a flame retardant resin composition for a printed circuit board and a printed circuit board using the same, in more detail, to a flame retardant resin composition which includes a complex epoxy resin, photo acid generator, a curing agent, a curing accelerator, and an inorganic filler, so that UV curable and property-maintainable insulating material can be manufactured, and to a printed circuit board using the same.The flame retardant resin composition according to the present invention contains a photo acid generator instead of an acrylate reactive diluent which is included UV curable insulating material so that fine patterned printed circuit board can be manufactured through UV curing and post thermal curing.
Abstract:
A process for fabricating a field emitter electrode includes: impregnating a cathode and anode in an electrolyte containing carbon nanotubes dispersed therein and applying a predetermined voltage to the cathode and anode so as to deposit carbon nanotubes on a substrate provided on the anode; recovering the substrate and applying a conductive polymer onto the surface of the substrate having carbon nanotubes deposited thereon; and heat treating the conductive polymer having carbon nanotubes deposited thereon, so as to completely cure it.
Abstract:
The present invention relates to a method for manufacturing a printed circuit board, more particularly to a method for manufacturing a printed circuit board, in which an oxidant capable of polymerizing conductive polymers is selectively marked on a board using imprinting, and the monomer of a conductive polymer is filled in the selected pattern and polymerized, to provide a conductive polymer wiring pattern. With the method for manufacturing a printed circuit board according to certain aspects of the invention as set forth above, a printed circuit board can be given finer wiring widths to allow a highly integrated, highly efficient printed circuit board. Thus, a printed circuit board (PCB) or a flexible printed circuit boards (FPCB) can be manufactured that is applicable to industrial, clerical, and domestic electric electronic products, by a new technique of forming conductive polymer wiring using imprinting.