Abstract:
본 발명은 물체의 움직임을 제어하는 움직임 제어 장치 및 그것의 제어 방법에 관한 것이다. 본 발명의 실시 예에 따른 움직임 제어 장치는 착용자의 뇌파 신호가 센싱되면 상기 뇌파 신호를 증폭 및 필터링(filtering)하여 출력하는 뇌파 전처리부, 상기 뇌파 전처리부에서 출력되는 전처리(preprocessing)된 뇌파 신호를 처리하여 분석 신호로 출력하는 뇌파 분석부 및 상기 분석 신호에 근거하여 상기 제어 신호를 생성하여 상기 물체로 전송하는 통신부를 포함하되, 상기 뇌파 신호는 상기 착용자의 시선 이동에 기반하여 발생한다.
Abstract:
Provided are a method for manufacturing a graphene electronic device and the graphene electronic device manufactured by the same. The method for manufacturing the graphene electrode device includes the steps of: separately forming a first electrode and a second electrode on a substrate; forming support patterns on the first electrode and the second electrode; forming complex patterns by coating the support patterns with graphene oxide containing solutions; and separating the support patterns from the complex patterns. [Reference numerals] (S10) Provide a substrate;(S20) Form support patterns;(S30) Form graphene oxide complex patterns;(S35) Form graphene complex patterns;(S40) Separate the support patterns from the complex patterns
Abstract:
PURPOSE: A method for early diagnosing Alzheimer's disease using a phototransistor is provided to enable early diagnosis of the disease and to quantitate cells or beta-amyloid proteins. CONSTITUTION: A method for early diagnosing Alzheimer's disease using a phototransistor comprises: a step of placing the phototransistor for sensing photocurrent difference according to the amount of incident light and a step of sensing photocurrent different according to cells fixed on the surface of a channel layer. The phototransistor comprises the channel layer. The cells have a protein biomarker causing Alzheimer's disease. The protein biomarker is labeled with magnetic particles(200) which are conjugated with multi-proteins. The protein biomarker is beta-amyloid protein(240).
Abstract:
PURPOSE: A method for manufacturing a thin film type absorbing layer, a method for manufacturing a thin film solar battery using the same, and a thin film solar battery are provided to form a light absorbing layer by a heat evaporation deposition method, thereby forming a CIGS(Cu-In-Ga-Se) thin film type light absorbing layer with high quality. CONSTITUTION: An evaporation source of a chamber is charged by CIGS crystalline powder(S10). The CIGS crystalline powder has the diameter of 10 nano meters ~ 2 micro meters. The CIGS crystalline powder is simultaneously evaporated(S20). The evaporated CIGS crystalline powder is evaporate on the substrate to form a thin CIGS film(S30). A selenization process is performed to enhance the features of the thin CIGS film(S40).
Abstract:
본 발명은 기판 상에 아민층을 형성하는 단계; 상기 아민층 상에 OHP 필름으로 구성되며 투과영역과 비투과영역을 포함하는 마스크를 위치시키는 단계; 및 상기 아민층 상에 상기 마스크를 이용하여 UV를 조사하여 선택적으로 상기 아민층을 제거하는 단계를 포함하는 것을 특징으로 하는 바이오센서 기판의 패턴 형성방법 및 이를 이용한 바이오센서에 관한 것이다. 인쇄, 패터닝, 고분자, 폴리에틸렌이민, 바이오 물질, 셀, 고분자, 고정화
Abstract:
PURPOSE: A method for forming pattern of bio-sensor substrate is provided to selectively generate amine group when treating surface of the substrate and reduce production cost using printer and OHP film. CONSTITUTION: A method for forming a pattern of bio-sensor substrate comprises: a step of supplying a substrate; a step of forming amine layer on the substrate; a step of positioning a mask containing transmission region and non-transmission region; a step of irradiating UV on the amine layer using the mask to selectively remove amine layer; a step of preparing the substrate; and a step of forming silicon oxide layer or metal layer on the substrate.
Abstract:
본 발명의 박막 트랜지스터는 채널층을 구성하는 비정질상의 칼코게나이드층과, 비정질상의 칼코게나이드층의 양측부에 각각 형성되어 소오스 및 드레인 영역을 구성하는 결정질상의 칼코게나이드층과, 결정질상의 칼코게나이드층에 연결된 소오스 전극 및 드레인 전극과, 비정질상의 칼코게나이드층의 상부 또는 하부에 게이트 절연층을 개재하여 형성된 게이트 전극을 포함한다. 이에 따라, 본 발명은 칼코게나이드층을 광전도층으로 이용하여 광 박막 트랜지스터를 구현하거나, 비정질상의 칼코게나이드층와 결정질상의 칼코게나이드층간의 다이오드 정류 기능을 구비하는 전기 박막 트랜지스터를 구현할 수 있다.
Abstract:
A hetero-junction diode having an n-type CIS(CuInSe2) and a p-type CuSe is provided to obtain a rectification function by using a stacked structure including a junction of the n-type CIS and the p-type CuSe. An n-type region is made of an n-type CIS. A p-type region is made of a p-type CuSe. A junction is formed between the n-type region and the p-type region. Each of the n-type region and the p-type region is made of a thin film. A cathode is electrically connected to the n-type region. An anode is electrically connected to the p-type region. A CIS layer is formed on a substrate. A CuSe layer is formed on the CIS layer. A first electrode is electrically connected to the CIS layer. A second electrode is electrically connected to the CuSe layer.
Abstract:
A pump using electromagnetic actuators is provided to obtain a longer driving distance, a high energy density, and a high responding speed with a relatively less voltage. A pump using electromagnetic actuators includes an upper end coil unit(2), a lower end coil unit(3), and a central driving unit(1). The upper end coil unit includes a coil on which electricity flows, and forms a magnetic field according to a direction of a flow of electricity. The lower end coil unit includes a coil on which the electricity flows, and forms the magnetic field according to the flow of the electricity corresponding to the flow of the electricity of the upper end coil unit. The central driving unit is placed between the upper end coil unit and the lower end coil unit, and has one or more than one pump chamber including a permanent magnet. The permanent magnet transports a fluid by reciprocating inside the pump chamber through conversion of a direction of the magnetic field by the upper coil unit and the lower coil unit.