Abstract:
본 발명은 플래시 메모리 장치를 제공한다. 상기 장치는 제 1 도전형을 갖는 반도체 기판으로부터 돌출되어 일 방향으로 연장되는 반도체 핀, 상기 반도체 핀의 상부(upper portion) 및 상기 반도체 핀의 하부(lower portion)에 각각 제공되어 서로 수직으로 이격된 제 2 도전형의 제 1 도핑층 및 제 2 도핑층, 및 상기 일 방향과 교차하도록 상기 반도체 핀의 표면 상으로 연장하는 복수의 워드 라인들을 포함한다. 상기 반도체 핀과 상기 워드 라인들 사이에 터널 절연막, 전하저장막 및 블로킹 절연막이 개재한다. 상기 복수개의 워드 라인들은 상기 제 1 도핑층 및 상기 제 2 도핑층과 중첩되어, 상기 플래시 메모리 장치를 수직 채널을 갖도록 한다. 수직 채널, 반도체 핀, 플래시, 집적도, 셀프 부스팅
Abstract:
The present invention relates to an organic photoelectric device and an image sensor. The organic photoelectric device includes: a first electrode; a metal nanolayer contacting the first electrode on one surface of the first electrode; an active layer located on one surface of the metal nanolayer; and a second electrode located on one surface of the active layer.
Abstract:
PURPOSE: A metal dome sheet having a conductivity sheet is provided to reduce a noise by using a ground member through electrically connecting a conductive sheet to a printed circuit board. CONSTITUTION: In a metal dome sheet having a conductivity sheet, metal domes(200,201,202) are installed in a base sheet(210). Conductive sheets(220,221,222) are installed on the base sheet. The conductive sheet blocks electromagnetic wave or noise. The base sheet and conductive sheet are insulated each other. The conductive sheet has a elastic force power.
Abstract:
PURPOSE: A device and manufacturing method for a reflective type display are provided to improve a driving performance even if using a thin film transistor having a low mobility because of making the channel width of the thin film transistor to be large. CONSTITUTION: A reflective display device includes a first and second substrate(110,120), a driving unit, a reflective layer(115), a color filter layer, a transparent electrode(125), and a PDLC(Polymer Dispersed Liquid Crystal) layer(130). The first and second substrate is separately arranged. The driving unit is formed on an upper surface of the first substrate. The reflective layer reflects an entered light by being located on an upper part of the driving unit. The color filter layer is formed on the reflective layer. The transparent electrode is formed on a lower surface of the second substrate. The PDLC layer is filled between the transparent electrode and the color filter layer.