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    • 2. 发明公开
    • 단일기판 광전지
    • 单光子细胞
    • KR1020100014101A
    • 2010-02-10
    • KR1020090035002
    • 2009-04-22
    • 서울대학교산학협력단
    • 권성훈박영준천준호
    • H01L31/04
    • Y02E10/50H01L31/04
    • PURPOSE: A monolithic photovoltaic cell is provided to insulate a first photodiode from a reference region by including an isolation diode. CONSTITUTION: One board photoelectric cell comprises a plurality of unit photocells. A plurality of unit photocells are integrated in the substrate(110) having a semiconductor region. Each unit photocell comprises a first photo diode(102) and the isolation diode(106). The first photo diode and the isolation diode are integrated in the semiconductor region. The isolation diode insulates the first photo diode from a reference area(152). The cathode of the first photo diode and isolation diode are electrically connected from the first node. The anode of the first photo diode is electrically connected to the second node.
    • 目的:通过包括隔离二极管,提供单片光伏电池以使第一光电二极管与参考区域绝缘。 构成:单板光电池包括多个单元光电管。 多个单元光电池集成在具有半导体区域的基板(110)中。 每个单元光电池包括第一光电二极管(102)和隔离二极管(106)。 第一光电二极管和隔离二极管集成在半导体区域中。 隔离二极管将第一光电二极管与参考区域(152)绝缘。 第一光电二极管和隔离二极管的阴极与第一节点电连接。 第一光电二极管的阳极与第二节点电连接。
    • 3. 发明授权
    • 단일기판 광전지
    • 单基板光伏电池
    • KR101056128B1
    • 2011-08-10
    • KR1020090035002
    • 2009-04-22
    • 서울대학교산학협력단
    • 권성훈박영준천준호
    • H01L31/04
    • Y02E10/50
    • 단일기판 광전지에 관한 기술이 개시된다. 일 실시 예에 있어서, 단일기판 광전지는 반도체 영역을 갖는 기판에 집적되는 복수의 단위 광전지 셀들을 포함한다. 상기 단위 광전지 셀은 상기 반도체 영역에 집적되는 제1 광다이오드 및 상기 반도체 영역에 집적되며, 상기 제1 광다이오드를 기준 영역과 전기적으로 절연하는 절연 다이오드를 포함한다. 상기 제1 광다이오드의 음극 및 상기 절연 다이오드의 음극은 제1 노드에서 전기적으로 연결되며, 외부 광에 의하여 상기 제1 광다이오드의 양극과 전기적으로 연결되는 제2 노드와 상기 제1 노드 사이에서 제1 전압이 생성된다.
    • 公开了单基板光伏电池的技术。 在一个实施例中,单个基板光伏电池包括集成到具有半导体区域的基板中的多个单元光伏电池。 单位光伏电池包括集成在半导体区域中的第一光电二极管和集成在半导体区域中并且将第一光电二极管与参考区域电隔离的隔离二极管。 负电极的负电极和所述第一光电二极管的绝缘二极管之间是电连接到第一节点,由外部光与所述第二节点被连接到正电极和所述第一节点的所述第一光电二极管的电努力, 1电压产生。
    • 5. 发明公开
    • 이중 게이트로 조절되는 다이오드 구조를 이용한 발광소자
    • 双门控制二极管结构的发光装置
    • KR1020090078177A
    • 2009-07-17
    • KR1020080003994
    • 2008-01-14
    • 서울대학교산학협력단
    • 박영준이강무김헌석천준호권성훈박찬형정인영
    • H01L33/02
    • A light emitting device using a double gate controlled diode structure is provided to perform an operation at a relatively low voltage and to reduce power consumption in comparison with a linear emission operation by performing a surface emission operation. A light emitting device includes a P-type semiconductor(10), an N-type semiconductor(20), a semiconductor layer(30), a first electrode(40), and a second electrode(50). A semiconductor film is connected between the P-type semiconductor and the N-type semiconductor. The first electrode is positioned on the semiconductor film. The first electrode is formed to apply electric field to the semiconductor film. The second electrode is positioned under the semiconductor film. The second electrode is formed to apply the additional electric field to the semiconductor film.
    • 提供使用双栅极控制二极管结构的发光器件,以通过执行表面发射操作来执行相对低电压的操作并且与线性发射操作相比降低功耗。 发光器件包括P型半导体(10),N型半导体(20),半导体层(30),第一电极(40)和第二电极(50)。 半导体膜连接在P型半导体和N型半导体之间。 第一电极位于半导体膜上。 形成第一电极以向半导体膜施加电场。 第二电极位于半导体膜下方。 形成第二电极以向半导体膜施加附加电场。
    • 9. 发明公开
    • 나노구조물 센서
    • NANOSTRUCTURE传感器
    • KR1020080069995A
    • 2008-07-29
    • KR1020087011385
    • 2007-08-06
    • 서울대학교산학협력단
    • 박영준천준호서성민
    • G01N33/48G01N33/53G01N33/00B82Y15/00
    • G01N27/127G01N27/4146
    • A sensor and a method for preparing the same are provided to reduce a manufacturing cost by omitting a step of patterning a carbon nanotube, operate normally even if the carbon nanotube connecting a first electrode and an adjacent first electrode remains and maintain potential of a liquid adjacent to the carbon nanotube more constant. A sensor comprises: a substrate(10); a first electrode(20) disposed on the substrate; a second electrode(30) disposed on the substrate, the second electrode being spaced apart from the first electrode and substantially surrounding the first electrode; and at least one nanostructure(40) contacting the first electrode and the second electrode, the at least one nanostructure configured to vary an electrical characteristic according to an object to be sensed. A method for preparing the sensor comprises the steps of: (a) preparing the substrate for forming at least one structure; (b) forming the first electrode and the second electrode on the substrate, the second electrode being spaced apart from the first electrode and surrounding the first electrode; and (c) forming the nanostructure contacting an upper surface of the first electrode and the second electrode. Further, the sensor additionally comprises an insulator between the first electrode and the second electrode.
    • 提供了一种传感器及其制备方法,以便通过省略图案化碳纳米管的步骤来降低制造成本,即使连接第一电极和相邻的第一电极的碳纳米管仍然保持并保持相邻的液体的电位, 到碳纳米管更恒定。 传感器包括:基板(10); 设置在所述基板上的第一电极(20) 设置在所述基板上的第二电极(30),所述第二电极与所述第一电极间隔开并且基本上围绕所述第一电极; 以及与第一电极和第二电极接触的至少一个纳米结构(40),所述至少一个纳米结构被配置成根据待感测的物体改变电特性。 制备传感器的方法包括以下步骤:(a)制备用于形成至少一种结构的基底; (b)在基板上形成第一电极和第二电极,第二电极与第一电极间隔开并围绕第一电极; 和(c)形成接触第一电极和第二电极的上表面的纳米结构。 此外,传感器还包括在第一电极和第二电极之间的绝缘体。