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    • 12. 发明授权
    • Quinoline compound extracted from scolopendra subspinipes, and
derivatives thereof
    • 蛇舌草素提取的喹啉化合物及其衍生物
    • US5824689A
    • 1998-10-20
    • US865126
    • 1997-05-30
    • Ho-Seong LeeYoung-Jun ParkMin-Hwan KimSeok-Shik MoonNam-Sun ChoJong-Hyun ShinYoung-Whan SuhJung-Ok Lee
    • Ho-Seong LeeYoung-Jun ParkMin-Hwan KimSeok-Shik MoonNam-Sun ChoJong-Hyun ShinYoung-Whan SuhJung-Ok Lee
    • C07D215/26A61K31/47C07D215/20C07D215/24
    • C07D215/26
    • The jineol extracted from scolopendra subspinipes is represented as the following formula (I): ##STR1## The jineol is obtained from scolopendra subspinipes by extracting scolopendra subspinipes with a solvent, separating an activating portion from the extracted liquid with an organic solvent, and purifying an anticancerous activating portion from the activating portion by chromatography. The jineol derivatives prepared from the jineol extracted scolopendra subspinipes are represented as the following formula (II): ##STR2## wherein each R.sub.1 and R.sub.2, independently of each other, is a hydrogen; a lower alkyl group of C.sub.1 to C.sub.6 ; a cycloalkyl group of C.sub.5 to C.sub.7 having a substituting group; an alkyl group of C.sub.1 to C.sub.4 having a phenyl group with one to three substituting groups; a lower alkyl group of C.sub.1 to C.sub.6 having a hydroxy, an alkoxy having C.sub.1 to C.sub.5, or an aryloxy; a lower acyl group of C.sub.1 to C.sub.7 having a hydroxy, an alkoxy having C.sub.1 to C.sub.5, or an aryloxy; a cycloalkylcarbonyl group of C.sub.5 to C.sub.7 with one to three substituting groups; or an acyl group of C.sub.1 to C.sub.4 having a phenyl group with one to three substituting groups.
    • 从o藜提取的金枪鱼以下列公式(I)表示:ι(I)通过用溶剂提取槐叶子菜子,通过用有机溶剂从提取的液体中分离活化部分,从sc ra子菜子得到金银花, 并通过色谱法从活化部分纯化抗癌活化部分。 由金枪鱼提取的scolopendra subspinipes制备的jineol衍生物由下式(II)表示:其中每个R 1和R 2彼此独立地为氢; C1至C6的低级烷基; 具有取代基的C5〜C7的环烷基; 具有1-3个取代基的苯基的C1〜C4的烷基; 具有羟基的C1至C6的低级烷基,具有C1至C5的烷氧基或芳氧基; 具有羟基的C1至C7的低级酰基,具有C1至C5的烷氧基或芳氧基; 具有一至三个取代基的C5至C7的环烷基羰基; 或具有1-3个取代基的苯基的C1〜C4酰基。
    • 13. 发明授权
    • Method and circuit for correcting image edge
    • 用于校正图像边缘的方法和电路
    • US5151787A
    • 1992-09-29
    • US632074
    • 1990-12-21
    • Young-Jun Park
    • Young-Jun Park
    • H04N5/208H04N9/68
    • H04N5/208
    • An edge correction circuit and method for enhancing image definition by reducing a conversion time at an region of a luminance signal in a digital image processor, said method including the steps of and the circuitry for: (a) generating a first control signal by detecting a pixel where a image luminance signal starts to change; (b) converting and outputting a pixel level state which is the same as the state before conversion of an edge region while said first control signal is being generated; (c) generating a second control signal by detecting a pixel prior to the luminance signal stabilization; and (d) outputting a pixel level state which is the same as the state after a complete conversion of the edge region which the second control signal generates.
    • 一种边缘校正电路和方法,用于通过减少数字图像处理器中的亮度信号的区域处的转换时间来增强图像清晰度,所述方法包括以下步骤和电路:(a)通过检测第一控制信号产生第一控制信号 图像亮度信号开始变化的像素; (b)在产生所述第一控制信号的同时,转换和输出与边缘区域的转换之前的状态相同的像素电平状态; (c)通过在亮度信号稳定之前检测像素来产生第二控制信号; 和(d)输出与第二控制信号产生的边缘区域的完全转换后的状态相同的像素电平状态。
    • 14. 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。
    • 15. 发明授权
    • Method of manufacturing field emission backlight unit
    • 制造场致发射背光单元的方法
    • US07905756B2
    • 2011-03-15
    • US11902477
    • 2007-09-21
    • Ho-Suk KangIn-Taek HanYong-Wan JinMin-Jong BaeYoung-Jun Park
    • Ho-Suk KangIn-Taek HanYong-Wan JinMin-Jong BaeYoung-Jun Park
    • H01J9/24
    • H01J9/241H01J9/025H01J63/02H01J63/06H01J2201/30469H01J2329/00
    • A field emission backlight unit for a liquid crystal display (LCD) includes: a lower substrate; first electrodes and second electrodes alternately formed in parallel lines on the lower substrate; emitters disposed on at least the first electrodes; an upper substrate spaced apart from the lower substrate by a predetermined distance such that the upper and lower substrates face each other; a third electrode formed on a bottom surface of the upper substrate; and a fluorescent layer formed on the third electrode. Since the backlight unit has a triode-type field emission structure, field emission is very stable. Since the first electrodes and the second electrodes are formed in the same plane, brightness uniformity is improved and manufacturing processes are simplified. If the emitters are disposed on both the first electrodes and the second electrodes, and a cathode voltage and a gate voltage are alternately applied to the first electrodes and second electrodes, the lifespan and brightness of the emitters can be improved. The above advantages are also achieved as a result of the method of driving the backlight unit and the method of manufacturing the lower panel thereof.
    • 用于液晶显示器(LCD)的场发射背光单元包括:下基板; 第一电极和第二电极在下基板上交替地以平行线形成; 至少设置在第一电极上的发射器; 上基板与下基板隔开预定距离,使得上基板和下基板彼此面对; 形成在所述上基板的底面上的第三电极; 以及形成在第三电极上的荧光层。 由于背光单元具有三极管型场发射结构,因此场发射非常稳定。 由于第一电极和第二电极形成在同一平面上,因此亮度均匀性得到改善,制造工艺简化。 如果发射体设置在第一电极和第二电极两者上,并且阴极电压和栅极电压交替施加到第一电极和第二电极,则能够提高发光体的寿命和亮度。 通过驱动背光单元的方法和制造其下面板的方法也可以实现上述优点。
    • 19. 发明授权
    • Field emission device and its method of fabrication
    • 场发射装置及其制造方法
    • US07531950B2
    • 2009-05-12
    • US11488680
    • 2006-07-19
    • Young-Jun ParkTae-Won Jeong
    • Young-Jun ParkTae-Won Jeong
    • H01J9/02H01J19/24
    • H01J1/304B82Y10/00H01J1/312H01J9/025
    • A field emission device has an improved structure in which electron emission from a cathode is enhanced through external light radiation. The field emission device includes: a light transmitting substrate; a cathode unit arranged on the light transmitting substrate and adapted to emit electrons, the cathode unit including: a first electrode layer of a transparent conductive material arranged on the substrate; a first electron emission layer of a semiconductive polymer organic material arranged on the first electrode layer; a second electron emission layer of a composite of a carbon-based inorganic material and a semiconductive polymer organic material arranged on the first electron emission layer; and a second electrode layer of a conductive material arranged on the second electron emission layer. The field emission device further includes an anode arranged to face the cathode unit.
    • 场发射器件具有改进的结构,其中来自阴极的电子发射通过外部光辐射增强。 场致发射器件包括:透光衬底; 阴极单元,布置在所述透光衬底上并适于发射电子,所述阴极单元包括:布置在所述衬底上的透明导电材料的第一电极层; 布置在第一电极层上的半导体聚合物有机材料的第一电子发射层; 布置在第一电子发射层上的碳基无机材料和半导体聚合物有机材料的复合材料的第二电子发射层; 以及布置在第二电子发射层上的导电材料的第二电极层。 场发射器件还包括布置成面对阴极单元的阳极。
    • 20. 发明申请
    • Field emission backlight unit, method of driving the backlight unit, and method of manufacturing lower panel
    • 场致发射背光单元,驱动背光单元的方法以及制造下面板的方法
    • US20080106221A1
    • 2008-05-08
    • US11902477
    • 2007-09-21
    • Ho-Suk KangIn-Taek HanYong-Wan JinMin-Jong BaeYoung-Jun Park
    • Ho-Suk KangIn-Taek HanYong-Wan JinMin-Jong BaeYoung-Jun Park
    • H01J19/24H01J9/00
    • H01J9/241H01J9/025H01J63/02H01J63/06H01J2201/30469H01J2329/00
    • A field emission backlight unit for a liquid crystal display (LCD) includes: a lower substrate; first electrodes and second electrodes alternately formed in parallel lines on the lower substrate; emitters disposed on at least the first electrodes; an upper substrate spaced apart from the lower substrate by a predetermined distance such that the upper and lower substrates face each other; a third electrode formed on a bottom surface of the upper substrate; and a fluorescent layer formed on the third electrode. Since the backlight unit has a triode-type field emission structure, field emission is very stable. Since the first electrodes and the second electrodes are formed in the same plane, brightness uniformity is improved and manufacturing processes are simplified. If the emitters are disposed on both the first electrodes and the second electrodes, and a cathode voltage and a gate voltage are alternately applied to the first electrodes and second electrodes, the lifespan and brightness of the emitters can be improved. The above advantages are also achieved as a result of the method of driving the backlight unit and the method of manufacturing the lower panel thereof.
    • 用于液晶显示器(LCD)的场发射背光单元包括:下基板; 第一电极和第二电极在下基板上交替地以平行线形成; 至少设置在第一电极上的发射器; 上基板与下基板隔开预定距离,使得上基板和下基板彼此面对; 形成在所述上基板的底面上的第三电极; 以及形成在第三电极上的荧光层。 由于背光单元具有三极管型场发射结构,因此场发射非常稳定。 由于第一电极和第二电极形成在同一平面上,因此亮度均匀性得到改善,制造工艺简化。 如果发射体设置在第一电极和第二电极两者上,并且阴极电压和栅极电压交替施加到第一电极和第二电极,则能够提高发光体的寿命和亮度。 通过驱动背光单元的方法和制造其下面板的方法也可以实现上述优点。