Abstract:
A mobile e-binder system according to the present invention includes at least one display for displaying information; a docking system electrically connected to the at least one display to exchange information according to standards in a telecommunication field; and a computing device for transmitting information to the at least one display by storing and processing the information, wherein the at least one display is detachably mounted in the docking system. In addition, the computing device includes a central processing unit for processing the information; a storage unit for storing the information therein; and a power supply for supplying power to the central processing unit, the storage unit, and the at least one display. Further, the docking system includes at least one of a D-ring open horizontally to allow the at least one display to be locked and fixed to the ring, a clip moved left or right to fix the at least one display by pressing the at least one display, and a slide groove for fixing the at least one display by allowing the at least one display to move up or down.
Abstract:
Disclosed are a nano printing apparatus, a manufacturing method thereof, and a printing method using the same. The nano printing apparatus includes: a circuit board; a first electric wiring which are extended, on the circuit board, in the direction of a first direction; an inter-layer insulating layer which is located on the first wiring and has holes exposing part of the first electric wiring; a second electric wiring which is located in the inter-layer insulating layer and is extended in the direction of a second direction crossed by the first electric wiring; and wedge electrodes which are connected with the first electric wiring and protrudes from the holes on each intersection where the first and the second electric wiring are crossed.
Abstract:
PURPOSE: A method for fabricating graphene is provided to cost-effectively fabricate a high quality of graphene by simply fabricating a graphite interlayer compound. CONSTITUTION: A method for fabricating graphene comprises the steps of: preparing an inserting material containing at least one alkaline metal or alkaline earth metal; preparing a graphite generating material; forming a mixture by mixing the inserting material and the graphite generating material (S110); forming a graphite interlayer compound by thermally treating the mixture (S120); and exfoliating graphene from the graphite interlayer compound (S130). The graphite generating material further contains a sacrificial graphite generating material. [Reference numerals] (S110) Form a mixture by mixing an inserting material containing at least one alkaline metal or alkaline earth metal and a graphite generating material; (S120) Form a graphite interlayer compound by thermally treating the mixture; (S130) Exfoliate graphene from the graphite interlayer compound; (S140) Centrifuge and filter the exfoliated graphene
Abstract:
PURPOSE: A method for manufacturing a flexible electrode substrate is provided to improve productivity by using a printing method cheaper than a photo lithography process for forming a grid electrode and a micro lens array. CONSTITUTION: A micro lens array(20) is formed in the lower part of a film(10). A transparent electrode layer is formed in the upper part of the film facing the micro lens array. A transparency mold layer(30) having a trench is formed on the film. A grid electrode(40) is filled in the trench of the transparency mold layer. The grid electrode and the micro lens array are formed at both surfaces of the film.
Abstract:
PURPOSE: An organic light emitting diode and a manufacturing method thereof are provided to simplify a manufacturing process by omitting a bank layer forming process. CONSTITUTION: An insulation layer(150) is formed on a substrate. Metallic ink(160) is coated on the insulation layer. A sub electrode layer(170) with the insulation layer and the metallic ink is formed by thermally processing the substrate and injecting the metallic ink to the insulation layer. A first electrode, an organic light emitting layer, and a second electrode(400) are successively formed on the sub electrode layer.
Abstract:
본 발명은 생산성을 향상시킬 수 있는 반도체 소자의 제조방법을 개시한다. 그의 방법은, 실리콘 산화막의 매몰 절연막 상에 활성 층이 형성된 SOI 기판에 실리콘 질화막 재질의 게이트 절연막을 형성하고, 상기 게이트 절연막 상에 게이트 전극을 형성하고, 상기 게이트 전극 양측의 상기 활성 층에 소스/드레인 영역을 형성한 후, 상기 게이트 전극 및 상기 소스/드레인 영역을 포함하는 박막트랜지스터의 주변에 형성된 상기 매몰 절연막을 노출시키고, 상기 박막트랜지스터를 상기 제 1 기판으로부터 분리하기 위해 상기 매몰 절연막을 식각하여 언더 컷을 형성하는 과정에서 사용되는 식각 용액으로부터 게이트 절연막이 보호될 수 있기 때문에 생산수율을 향상시킬 수 있다. SOI(silicon on insulator), 게이트(gate), 기판, 매몰, 절연막
Abstract:
PURPOSE: A wireless frequency identification tag is provided to change backscattering effects by changing impedance by detecting a target material. CONSTITUTION: A conductive layer(120) and a conductive line(140) are respectively formed on an insulation layer(110). An antenna(130) contacts to one end of the conductive line. A resistor contacts to other end of the conductive line. A first conductive plate(160) contacts to the conductive line. The first conductive plate constructs a first capacitor with the conductive layer and the insulation layer. A first sensing device is connected between the conductive line and the conductive layer.