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    • 1. 发明申请
    • SOLAR CELL SUBSTRATE AND SOLAR CELL USING SAME
    • 太阳能电池基板和使用相同的太阳能电池
    • US20140130859A1
    • 2014-05-15
    • US14126115
    • 2012-06-08
    • Kyoung-Bo KimYoung-Jun ParkJe-Hoon BaekJong-Sang Kim
    • Kyoung-Bo KimYoung-Jun ParkJe-Hoon BaekJong-Sang Kim
    • H01L31/0224
    • H01L31/022425H01L31/03928H01L31/0749Y02E10/541
    • The present invention relates to a solar cell substrate, and to a solar cell using same. The solar cell according to one embodiment of the present invention comprises: a lower substrate; and a lower electrode formed on the lower substrate. The lower electrode is formed of a Mo—X—Na three-component-system compound metal layer. Here, X may be one of Nb, Ni, Si, Ti, W, and Cr. The solar cell according to another embodiment of the present invention may comprise: a solar cell substrate including a lower substrate and a Mo—X—Na three-component-system compound metal layer that is a lower electrode formed on the lower substrate; a light-absorption layer formed on the solar cell substrate; a buffer layer formed on the light-absorption layer; a transparent window formed on the buffer layer; and an upper electrode formed on the transparent window.
    • 太阳能电池基板及其制造方法技术领域本发明涉及太阳能电池基板,太阳能电池。 根据本发明的一个实施例的太阳能电池包括:下基板; 和形成在下基板上的下电极。 下电极由Mo-X-Na三组分体系复合金属层形成。 这里,X可以是Nb,Ni,Si,Ti,W和Cr中的一种。 根据本发明的另一实施例的太阳能电池可以包括:太阳能电池基板,其包括下基板和Mo-X-Na三组分系统复合金属层,其是形成在下基板上的下电极; 形成在太阳能电池基板上的光吸收层; 形成在所述光吸收层上的缓冲层; 形成在缓冲层上的透明窗; 和形成在透明窗上的上电极。
    • 2. 发明申请
    • SOLAR CELL SUBSTRATE, METHOD FOR MANUFACTURING SAME, AND SOLAR CELL USING SAME
    • 太阳能电池基板,其制造方法和使用该太阳能电池的太阳能电池
    • US20140124028A1
    • 2014-05-08
    • US14124867
    • 2012-06-08
    • Kyoung-Bo KimYoung-Jun ParkJe-Hoon BaekJong-Sang KimYoung-Geun Kim
    • Kyoung-Bo KimYoung-Jun ParkJe-Hoon BaekJong-Sang KimYoung-Geun Kim
    • H01L31/0216H01L31/18
    • H01L31/02167H01L31/03928H01L31/0749H01L31/18Y02E10/541Y02P70/521
    • One aspect of the present invention is a solar cell substrate, comprising: a lower substrate; and a lower electrode that is formed on the upper part of said lower substrate, wherein a metal diffusion-preventing film having at least one or two or more metal layers is included between said lower substrate and said lower electrode, and if two or more metal layers are formed, the metal layers adjoining each other can be different metals. Additionally, a solar cell, which is another aspect of the present invention, comprises: a lower substrate; and a lower electrode that is formed on the upper part of said lower substrate, wherein a metal diffusion-preventing film having at least one or two or more metal layers is included between said lower substrate and said lower electrode, and if two or more metal layers are formed, the metal layers adjoining each other comprise solar cell substrates which are of different metals; p-type light absorption layers formed on said solar cell substrates; n-type buffer layers formed on said light absorption layers; transparent windows formed on said buffer layers; and upper electrodes formed on said transparent windows.
    • 本发明的一个方面是太阳能电池基板,包括:下基板; 以及形成在所述下基板的上部的下电极,其中在所述下基板和所述下电极之间包括具有至少一个或两个或更多个金属层的金属防扩散膜,并且如果两个或更多个金属 形成层,彼此相邻的金属层可以是不同的金属。 此外,作为本发明的另一方面的太阳能电池包括:下基板; 以及形成在所述下基板的上部的下电极,其中在所述下基板和所述下电极之间包括具有至少一个或两个或更多个金属层的金属防扩散膜,并且如果两个或更多个金属 形成层,彼此相邻的金属层包括具有不同金属的太阳能电池基板; 形成在所述太阳能电池基板上的p型光吸收层; 形成在所述光吸收层上的n型缓冲层; 形成在所述缓冲层上的透明窗; 和形成在所述透明窗口上的上电极。
    • 3. 发明授权
    • Global coordinate creation method for precision measurement of hollow frame
    • 中空框架精密测量全局坐标创建方法
    • US07893874B2
    • 2011-02-22
    • US12442331
    • 2007-09-21
    • Seong-Youb ChungSung-Han KimSe-Hwan SongYoung-Jun ParkJae-Hoon Kim
    • Seong-Youb ChungSung-Han KimSe-Hwan SongYoung-Jun ParkJae-Hoon Kim
    • G01S3/02
    • G01S19/11G01C15/00
    • A method of creating a global coordinate of a polyhedral hollow frame includes a first step of providing a plurality of transmitters on a reference surface in the hollow frame, providing a plurality of reference sensors to create the coordinate of the reference surface, and creating a local coordinate frame of the reference surface on the basis of the positional coordinates measured by the reference sensors; a second step of providing reference sensors at common points of a first vertical surface neighboring to the reference surface to measure and store the coordinates of the common points; a third step of providing a plurality of transmitters and reference sensors on the first vertical surface neighboring to the reference surface to create a local coordinate frame of the first vertical surface; a fourth step of transforming the local coordinate frames created at the first and the third steps into a global coordinate frame using the coordinates of the common points measured at the second step; a fifth step of repeatedly performing the second step to the fourth step on remaining vertical surfaces of the polyhedral hollow frame to transform the respective local coordinate frames into a unified global coordinate frame; a sixth step of providing transmitters on an upper surface neighboring to each vertical surface to obtain the relationship between the global coordinate frame and a local coordinate frame of the upper surface using the coordinates of the common point; and a seventh step of creating and applying a global coordinate frame using the relationship obtained at the sixth step.
    • 创建多面体中空框架的全局坐标的方法包括:第一步骤,在中空框架的参考表面上提供多个发射器,提供多个参考传感器以产生参考表面的坐标,以及创建局部 基于由参考传感器测量的位置坐标,参考表面的坐标系; 在与参考表面相邻的第一垂直表面的公共点处提供参考传感器以测量和存储公共点的坐标的第二步骤; 第三步骤,在与参考表面相邻的第一垂直表面上设置多个发射器和参考传感器,以产生第一垂直表面的局部坐标系; 使用在第二步骤测量的公共点的坐标将在第一和第三步骤中创建的局部坐标系变换为全局坐标系的第四步骤; 在所述多面体中空框架的剩余垂直表面上反复进行第二步骤至第四步骤的第五步骤,以将各个局部坐标系变换为统一的全局坐标系; 在与每个垂直表面相邻的上表面上提供发射器以使用公共点的坐标获得全局坐标系和上表面的局部坐标系之间的关系的第六步骤; 以及使用在第六步骤中获得的关系创建和应用全局坐标系的第七步骤。
    • 4. 发明申请
    • System and method for transmitting uplink data in a broadband wireless communication system
    • 用于在宽带无线通信系统中发送上行数据的系统和方法
    • US20070189239A1
    • 2007-08-16
    • US11654176
    • 2007-01-17
    • Se-Youn LimYoung-Jun ParkJoo-Han Song
    • Se-Youn LimYoung-Jun ParkJoo-Han Song
    • H04B7/212
    • H04W28/20H04W28/26H04W72/0406
    • An uplink packet data transmission system and method are provided which can reduce a collision probability in a contention period by assigning a priority to mobile stations when bandwidth allocation is rejected due to lack of resources of a base station from which a best effort service is provided. In a method for transmitting best effort data in a communication system, the base station allocates resources to mobile stations for which a reservation has been made in a previous time period when bandwidth for the mobile stations requesting bandwidth allocation is insufficient, reserves bandwidth for mobile stations for which the bandwidth allocation has been rejected, and transmits reservation information. The mobile stations receive the reservation information, skip a next scheduled bandwidth allocation request, and transmit data through bandwidth allocated from the base station.
    • 提供了一种上行链路分组数据传输系统和方法,其可以通过在由于缺乏从其提供尽力而为服务的基站的资源而拒绝带宽分配时向移动台分配优先级,从而在竞争时段中降低冲突概率。 在通信系统中发送尽力数据的方法中,基站向先前的时间段内的移动台分配资源,对于请求带宽分配的移动台的带宽不足时,为移动台预留带宽 带宽分配已经被拒绝,并且发送预约信息。 移动站接收预约信息,跳过下一个调度的带宽分配请求,并通过从基站分配的带宽发送数据。