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    • 52. 发明授权
    • Secondary battery
    • 二次电池
    • US07790313B2
    • 2010-09-07
    • US11179307
    • 2005-07-11
    • Sang-Won Lee
    • Sang-Won Lee
    • H01M10/16
    • H01M2/263H01M2/12H01M2/18H01M10/0413H01M10/0431H01M10/613H01M10/625H01M10/647H01M10/6551H01M10/6566
    • A secondary battery comprising an electrode assembly having a positive electrode plate, a negative electrode plate, and a separator between the positive and negative electrodes is provided. The secondary battery further comprises a case for containing the electrode assembly, and a cap assembly connected to the case. The cap assembly comprises positive and negative terminals electrically connected to the positive electrode plate and the negative electrode plate, respectively. Lead connectors are electrically connected to the positive and negative electrode plates and the positive and negative terminals. A support is connected to each end of the electrode assembly and surrounds the lead connectors. The supports are adapted to fit between the electrode assembly and the case.
    • 提供一种二次电池,其包括在正极和负极之间具有正极板,负极板和隔膜的电极组件。 二次电池还包括用于容纳电极组件的壳体和连接到壳体的帽组件。 盖组件包括分别与正极板和负极板电连接的正极和负极端子。 引线连接器电连接到正极板和正极板以及正极端子和负极端子。 支撑件连接到电极组件的每个端部并且围绕引线连接器。 支撑件适于装配在电极组件和壳体之间。
    • 53. 发明申请
    • OPTICAL COHERENCE TOMOGRAPHY
    • 光学相干测量
    • US20100220333A1
    • 2010-09-02
    • US12682140
    • 2008-10-17
    • Beop-Min KimSang-Won Lee
    • Beop-Min KimSang-Won Lee
    • G01B9/02
    • G01B9/02084G01B9/02037G01B9/02091G01N21/4795
    • This invention relates to an optical coherence tomography, in which a light source and an optical linear beam forming system are adopted to obtain two dimensional image of high quality resolution within short time without affection by any mechanical movements. For such purpose, the optical linear beam forming system (20) comprises semicy Under lens (21), convex lens (22) and slit (23) to implement the frequency domain optical coherence tomography. Parallel light beam from the light source is incident on the surface of the semicylinder lens (21), and focal line of the semicylinder lens (21) is located in front of the convex lens (22). The convex lens (22) has short focal point where the parallel light component converges and long focal point where the diverging light component converges. The slit (23) is located between the short focal point and the long focal point.
    • 本发明涉及一种光学相干断层摄影,其中采用光源和光学线性光束形成系统,以在短时间内获得高质量分辨率的二维图像,而不受任何机械运动的影响。 为此,光学线性光束形成系统(20)包括半透镜(21),凸透镜(22)和狭缝(23),以实现频域光学相干断层成像。 来自光源的平行光束入射到半圆柱透镜(21)的表面上,半圆柱透镜(21)的焦线位于凸透镜(22)的前面。 凸透镜(22)具有平行光分量会聚的短焦点和发散光分量收敛的长焦点。 狭缝(23)位于短焦点和长焦点之间。
    • 54. 发明授权
    • Organic light emitting display including a protruding insulating layer and method of fabricating the same
    • 包括突出绝缘层的有机发光显示器及其制造方法
    • US07592624B2
    • 2009-09-22
    • US11121992
    • 2005-05-05
    • Tae-Wook KangYu-Sung ChoSang-Won Lee
    • Tae-Wook KangYu-Sung ChoSang-Won Lee
    • H01L31/00
    • H01L27/3244H01L27/3246H01L27/3248H01L27/3258H01L51/5203H01L51/56
    • An organic light emitting display and method of fabricating the same are provided, such that an organic light emitting display includes a substrate having formed thereon a thin film transistor including a gate electrode, a source electrode, and a drain electrode, a passivation layer formed on the substrate having a contact hole exposing the source or the drain electrode, a first insulating layer pattern formed on a portion of the passivation layer corresponding to an emission region and having a step portion that is higher than the passivation layer on the thin film transistor, a pixel electrode formed on a portion of the passivation layer and on a portion of the first insulating layer pattern that contacts the source or the drain electrode through the contact hole, and a second insulating layer pattern formed on portions of the passivation layer and the pixel electrode that defines the emission region.
    • 提供有机发光显示器及其制造方法,使得有机发光显示器包括其上形成有包括栅电极,源电极和漏电极的薄膜晶体管的基板,形成在 所述基板具有暴露所述源极或漏极的接触孔,形成在所述钝化层的与发光区域对应的部分上并且具有比所述薄膜晶体管上的钝化层高的台阶部分的第一绝缘层图案, 形成在所述钝化层的一部分上的所述第一绝缘层图案的部分以及通过所述接触孔与所述源极或漏极接触的部分的像素电极,以及形成在所述钝化层和所述像素的部分上的第二绝缘层图案 限定发射区域的电极。
    • 55. 发明申请
    • Phased array antenna having the highest efficiency at slant angle
    • US20090174620A1
    • 2009-07-09
    • US11921411
    • 2006-06-07
    • Young-Sik KimSang-Won LeeYong-Ki Lee
    • Young-Sik KimSang-Won LeeYong-Ki Lee
    • H01Q21/29H01Q1/36H01Q1/42
    • H01Q1/362H01Q1/3275H01Q1/421H01Q11/08H01Q21/061
    • The present invention relates to a phased array antenna, which is configured such that a plurality of radiation elements, having high reception efficiency for radio waves incident at a tilt angle, is arranged in a plurality of rows and columns, thus attaining high reception efficiency, and which adjusts radio waves, incident through a radome for protecting the antenna, to a desired tilt angle, thus further increasing radio wave reception efficiency.For this purpose, the present invention includes a printed circuit board provided with a plurality of electrical and electronic devices for processing radio waves received from a satellite; and a plurality of radiation elements arranged and mounted on the printed circuit board in a plurality of rows and columns, formed such that the radiation characteristic for the received radio waves is maximized at the tilt angle, and formed in a helical or monopolar form to be optimized for the radio waves received at the tilt angle. Furthermore, the present invention is configured such that a radome through which the radio waves pass is installed outside the printed circuit board on which the radiation elements are mounted, wherein, in order to allow radio waves, passing through and refracted, to be converged at the tilt angle at which the reception efficiency of the radiation elements is maximized, an uneven surface is formed on the inner or outer surface of the radome. Furthermore, in order to allow the radio waves, passing through and refracted, to be maintained at the tilt angle at which the reception efficiency of the radiation elements is maximized, the radome includes a sidewall member provided on the sides of the printed circuit board, and a cover member configured to be connected to the upper portions of the sidewall member and to be lifted and lowered upward and downward from the sidewall member, wherein a lifting drive unit for selectively lifting and lowering the cover member is installed on the sidewall member and the cover unit.
    • 56. 发明授权
    • Chip information character set generation system and method of marking a chip with a chip information character set
    • 芯片信息字符集生成系统和芯片信息字符集的芯片标记方法
    • US07451010B2
    • 2008-11-11
    • US11639926
    • 2006-12-15
    • Sang-Won LeeKui-Wn KimHyo-Jin Sim
    • Sang-Won LeeKui-Wn KimHyo-Jin Sim
    • G06F19/00G06F17/00
    • G06Q50/04Y02P90/30
    • A chip information character set including a lot ID for chip-marking, which has a smaller number of characters than that of a conventional lot ID used in a fabrication line for a semiconductor device, is generated by coding the conventional lot ID using a decimal numeration system or a 62 decimal numeration system. A wafer identifier for chip-marking having 1-character is generated by coding a conventional number of a wafer using a set of identification symbols. A chip coordinate for chip-marking is having either 1-character or 2-characters is generated by coding a conventional coordinate of a chip in the wafer using the decimal or 62 decimal numeration system. The chip information character set has a simplified form to be written in a relatively short time, thereby increasing a productivity of the semiconductor device.
    • 通过使用十进制数字对常规批号进行编码,生成包括用于芯片标记的批ID的芯片信息字符集,其具有比用于半导体器件的制造线中使用的常规批号更少的字符数 系统或62位十进制数字系统。 通过使用一组识别符号对常规数量的晶片进行编码来产生具有1个字符的芯片标记的晶片标识符。 通过使用十进制或十六进制数字系统对晶片中的芯片的常规坐标进行编码来生成用于芯片标记的芯片坐标,其具有1个字符或2个字符。 芯片信息字符集具有在较短时间内写入的简化形式,从而提高半导体器件的生产率。