박판형 기판 고정 장치 및 이를 이용한 박판형 기판의 나노패턴 제조 방법
    51.
    发明公开
    박판형 기판 고정 장치 및 이를 이용한 박판형 기판의 나노패턴 제조 방법 失效
    用于固定塑料片的纳米材料的制造方法和使用该塑料片的塑料片的制造方法

    公开(公告)号:KR1020090056131A

    公开(公告)日:2009-06-03

    申请号:KR1020070123156

    申请日:2007-11-30

    CPC classification number: H01L21/6838 B82Y10/00 B82Y40/00 G03F7/0002

    Abstract: An apparatus for fixing plastic sheet and fabrication method of nanopattern on plastic sheet using this same are provided to simplify the manufacturing process of the nano pattern and decrease the manufacturing cost. The apparatus for fixing plastic sheet comprises the chuck(100) for metal guide ring(400) and clipping substrate. The metal guide ring is comprised of the pair. Metal guide rings have a thin shape. Metal guide rings are arranged on the upper side and lower side of the substrate of the thin shape. Metal guide rings are positioned at the edge of the substrate of the thin shape. The chuck for fixing substrate has the ring fixing unit(300) and substrate fixture(200). The chuck for the clipping substrate is arranged under metal guide rings. The ring fixing unit has the same certain person as metal guide rings. The ring fixing unit has a grove along the surface. The ring fixing unit fixes metal guide rings to the chuck. The unit for fixing substrate has the pinhole on the surface. The substrate fixture is surrounded by the ring fixing unit.

    Abstract translation: 为了简化纳米图案的制造工序,降低了制造成本,提供了一种用于固定塑料片的装置和使用该装置的塑料片上的纳米图案的制造方法。 用于固定塑料片的装置包括用于金属导向环(400)的卡盘(100)和夹持基板。 金属导环由一对组成。 金属导环具有较薄的形状。 金属导向环布置在薄型基板的上侧和下侧。 金属引导环位于薄型基板的边缘。 用于固定基板的卡盘具有环固定单元(300)和基板固定件(200)。 用于夹持基板的卡盘布置在金属导环周围。 环固定单元与金属导环相同。 环形固定单元具有沿表面的凹槽。 环形固定单元将金属导向环固定在卡盘上。 用于固定基板的单元在表面上具有针孔。 基板固定件被环固定单元包围。

    광송수신기 모듈
    52.
    发明授权
    광송수신기 모듈 有权
    光收发模块

    公开(公告)号:KR100734868B1

    公开(公告)日:2007-07-03

    申请号:KR1020050121240

    申请日:2005-12-10

    CPC classification number: H04B10/2504

    Abstract: 본 발명은 광통신(optical communication)에 쓰이는 광송수신기로서, 광원과 수광소자 사이에 전기적 교화(crosstalk)가 억제되는 광송수신기(optical transceiver) 모듈을 제공한다. 그 광송수신기 모듈은 광송수신기( optical transceiver)에 있어서, 기판에 함께 집적되는 광원 및 수광소자를 구비한 광송수신소자; 광원을 구동하는 구동회로 및 수광소자의 신호를 읽어내는 검출회로를 구비한 회로부; 및 기판 및 접지(ground) 사이에 연결되고 상기 광원과 수광소자 사이의 전기적 교화(crosstalk)를 방지하는 교화 방지수단;을 포함한다.
    광송수신기(optical transceiver), 광원(optical source), 레이저 다이오드(Laser Diode), 수광소자(photodetector), 교화(crosstalk), 단일기판 광송수신기(monolithic optical transceiver)

    추출 격자 브래그 반사기와 결합된 추출 격자 분포궤환파장가변 반도체 레이저
    54.
    发明公开
    추출 격자 브래그 반사기와 결합된 추출 격자 분포궤환파장가변 반도체 레이저 失效
    SG-DFB(采样式分布式反馈)带SG-DBR的可调式半导体激光器(采样分布式分路器反射器)

    公开(公告)号:KR1020040094190A

    公开(公告)日:2004-11-09

    申请号:KR1020030028186

    申请日:2003-05-02

    Abstract: PURPOSE: An SG-DFB(Sampled Grating Distributed Feed-Back) tunable semiconductor laser WITH an SG-DBR(Sampled Grating Distributed Bragg Reflector) is provided to tune a wavelength by integrating an SG-DFB structure and an SG-DBR structure and forming a phase control region of the SG-DFB structure. CONSTITUTION: A sampled grating(39) is formed on an n-type InP substrate(31) used as a lower clad layer. A phase control region of an InGaAsP waveguide and a gain region of an active layer are formed on the sampled grating. A p-type InP clad layer(32) used as an upper clad layer is formed thereon. A plurality of electrodes are formed on the p-type InP clad layer. A phase control region electrode(36) is formed on the phase control region. A gain region electrode(37) is formed on the gain region. A non-reflective thin film(33) is formed on a section of a semiconductor laser diode.

    Abstract translation: 目的:提供具有SG-DBR(采样光栅分布式布拉格反射器)的SG-DFB(采样光栅分布式反馈)可调谐半导体激光器,通过集成SG-DFB结构和SG-DBR结构并形成 SG-DFB结构的相位控制区域。 构成:在用作下包层的n型InP衬底(31)上形成采样光栅(39)。 在采样光栅上形成InGaAsP波导的相位控制区域和有源层的增益区域。 在其上形成用作上覆盖层的p型InP覆盖层(32)。 在p型InP覆盖层上形成多个电极。 相位控制区电极(36)形成在相位控制区域上。 增益区电极(37)形成在增益区上。 在半导体激光二极管的一部分上形成非反射薄膜(33)。

    그래핀 기반의 테라헤르츠파 발생/검출기
    57.
    发明公开
    그래핀 기반의 테라헤르츠파 발생/검출기 审中-实审
    用于生成/检测THZ波的装置及其制造方法

    公开(公告)号:KR1020140084866A

    公开(公告)日:2014-07-07

    申请号:KR1020120154839

    申请日:2012-12-27

    CPC classification number: H01L31/028 H01L31/085

    Abstract: Disclosed are an apparatus for generating/detecting a terahertz wave using graphene and a method for manufacturing the same. The apparatus for generating/detecting a terahertz wave includes a substrate which has an active region and a transmission region, a lower metal layer which is extended in a first direction on the active region and the transmission region of the substrate, a graphene layer which is arranged on the lower metal layer of the active region, and an upper metal layers which are extended in the first direction on the substrate of the transmission region and the graphene layer of the active region. Here, a terahertz wave can be generated or amplified by surface plasmon polaritons which are induced at the boundary surface between the lower metal layer and the graphene layer by a non-tilt laser beam which is applied to the graphene layer and the lower metal layer.

    Abstract translation: 公开了使用石墨烯生成/检测太赫兹波的装置及其制造方法。 用于产生/检测太赫波的装置包括具有有源区和透射区的基板,在有源区上沿第一方向延伸的下金属层和基板的透射区,石墨烯层是 和布置在有源区的下金属层上的上金属层,以及在透射区的基板和有源区的石墨烯层上沿第一方向延伸的上金属层。 这里,可以通过施加在石墨烯层和下金属层上的非倾斜激光束在表面等离子体激元中产生或放大太赫兹波,这些表面等离子体激元在下金属层和石墨烯层之间的边界表面处被感应。

    비접촉 두께 측정 장치 및 그것의 두께 측정 방법
    58.
    发明公开
    비접촉 두께 측정 장치 및 그것의 두께 측정 방법 有权
    无接触式测量的方法和方法

    公开(公告)号:KR1020140031070A

    公开(公告)日:2014-03-12

    申请号:KR1020120109025

    申请日:2012-09-28

    Abstract: The contactless thickness measurement apparatus according to the present invention comprises; a laser generating device to generate a first laser beam of a first frequency and a second laser beam of a second frequency other than the first frequency; a coupler to couple the generated first and second laser beams; a terahertz wave transmitter to receive the first optical signal outputted from the coupler and to generate terahertz continuous wave by the inputted first optical signal and the imposed bias; an optical delay line to delay the second optical signal outputted from the coupler; and a terahertz wave receiver to receive the terahertz continuous wave having transmitted through the sample and to detect photocurrent by homodyne method using the received terahertz continuous wave and the delayed second optical signal, wherein the thickness of the sample is a value corresponding to the photocurrent.

    Abstract translation: 根据本发明的非接触式厚度测量装置包括: 激光产生装置,用于产生第一频率的第一激光束和除第一频率之外的第二频率的第二激光束; 用于耦合所产生的第一和第二激光束的耦合器; 太赫兹波发射器,用于接收从耦合器输出的第一光信号,并通过输入的第一光信号和施加的偏置产生太赫兹连续波; 光延迟线,用于延迟从耦合器输出的第二光信号; 以及太赫兹波接收器,用于接收通过样品传输的太赫兹连续波,并使用接收的太赫兹连续波和延迟的第二光信号通过零差方法检测光电流,其中样品的厚度是对应于光电流的值。

    광 검출기 및 그를 구비한 광학 소자
    59.
    发明公开
    광 검출기 및 그를 구비한 광학 소자 审中-实审
    照片检测器和光学设备使用它

    公开(公告)号:KR1020130140940A

    公开(公告)日:2013-12-26

    申请号:KR1020120051117

    申请日:2012-05-14

    Abstract: Disclosed in the present invention are a photo detector and an optical device including the same. The device includes: first and second lasers which generate first and second laser beams; an optical waveguide which is connected to the first and second lasers; and a photo detector which detects the first and second laser beams transmitted through the optical waveguide, wherein the photo detector includes: a substrate; a first impurity layer on the substrate; an absorption layer on the first impurity layer; and a second impurity layer on the absorption layer. The absorption layer generates terahertz waves by the beating of the first and second laser beams and is able to have a thickness less than 0.2 micrometer. [Reference numerals] (12) First laser;(14) Second laser;(30) Photodetector;(50) Output circuit

    Abstract translation: 在本发明中公开了一种光检测器和包括该光检测器的光学器件。 该装置包括:产生第一和第二激光束的第一和第二激光器; 连接到第一和第二激光器的光波导; 以及光检测器,其检测透过所述光波导的所述第一和第二激光束,其中,所述光检测器包括:基板; 衬底上的第一杂质层; 第一杂质层上的吸收层; 和吸收层上的第二杂质层。 吸收层通过第一和第二激光束的跳动产生太赫兹波,并且能够具有小于0.2微米的厚度。 (附图标记)(12)第一激光器;(14)第二激光器;(30)光电检测器;(50)输出电路

    고효율 반도체 발광 소자
    60.
    发明授权
    고효율 반도체 발광 소자 有权
    具有高效率的半导体照明装置

    公开(公告)号:KR101290150B1

    公开(公告)日:2013-07-26

    申请号:KR1020090111652

    申请日:2009-11-18

    Abstract: 본 발명은 고효율 반도체 발광 소자에 관한 것으로, 본 발명에 따른 반도체 발광 소자는 하부전극, 발광층 및 상부전극을 포함하는 반도체 발광 소자에 있어서, 상기 발광층은 실리콘 나노 결정을 포함하고, 상기 발광층 상부에 서로 다른 밴드 갭을 갖는 박막을 교대로 성장시킨 다층 구조의 도핑층을 포함한다. 이와 같은 서로 다른 밴드갭을 갖는 박막을 교대로 성장시킨 다층 구조의 도핑층을 발광층 상부에 포함시킴에 따라서, 발광층으로의 캐리어 주입효율을 증가시켜 궁극적으로 발광 효율을 증가시킨다.
    발광, 소자, 효율, 밴드갭

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