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    • 3. 发明申请
    • POWER SUPPLY SEGMENT APPARATUS FOR AN ELECTRIC VEHICLE, IN WHICH MAGNETIC FIELD INTERFERENCES BETWEEN SEGMENTS ARE MINIMIZED
    • 用于电动车辆的电力分段装置,其中部分之间的磁场干扰最小化
    • WO2011078619A3
    • 2011-10-27
    • PCT/KR2010009314
    • 2010-12-24
    • KOREA ADVANCED INST SCI & TECHCHO DONG HORIM CHUN TAEKJEONG GU HOHUH JINLEE KYUNG HUNPARK EUN HACHO YANG JINKIM HYUNG KOOKKIM YUN HO
    • CHO DONG HORIM CHUN TAEKJEONG GU HOHUH JINLEE KYUNG HUNPARK EUN HACHO YANG JINKIM HYUNG KOOKKIM YUN HO
    • B60L11/18H02J17/00
    • B60L5/005B60M1/36H05K9/0003
    • The present invention relates to a power supply segment apparatus for an electric vehicle, in which magnetic field interferences between segments are minimized. More particularly, the present invention relates to a power supply segment apparatus for an electric vehicle, in which power-supplying segments are sequentially arranged along a travel direction under a road so as to supply power to the electric vehicle traveling on the road, wherein said apparatus comprises a shielding device mounted on an upper surface or at either end of a side surface of a segment-type structure so as to compensate for electromagnetic fields generated by both ends of power-supplying segments. According to the present invention, the amount of interfering magnetic fields which pass over to a neighbor segment is minimized, thereby satisfying various domestic and foreign EMI/EMC/EMF standards associated with electromagnetic waves, which each segment block should satisfy. Further, according to the present invention, the shielding device, which is capable of compensating for magnetic fields of various sizes and various types, can be contained in segment blocks in accordance with the conditions of the installation area, thereby enabling the mass production of various types of segment blocks, and thus reducing production costs.
    • 本发明涉及一种用于电动车辆的电源段装置,其中段之间的磁场干扰被最小化。 更具体地说,本发明涉及一种电动车辆的供电段装置,其中供电段沿道路上的行进方向依次布置,以向在道路上行驶的电动车辆供电,其中所述 装置包括安装在段型结构的侧表面的上表面或任一端的屏蔽装置,以补偿供电段的两端产生的电磁场。 根据本发明,通过相邻段的干扰磁场的量被最小化,从而满足与电磁波相关的各种国内外的EMI / EMC / EMF标准,每个段块应满足。 此外,根据本发明,能够补偿各种尺寸和各种类型的磁场的屏蔽装置可以根据安装区域的条件包含在分段块中,从而能够大量生产各种 分段块的类型,从而降低生产成本。
    • 7. 发明申请
    • TRANSPARENT ELECTRODE HAVING NANO-STRUCTURE PATTERNS AND METHOD FOR MANUFACTURING SAME
    • 具有纳米结构图形的透明电极及其制造方法
    • WO2012177040A2
    • 2012-12-27
    • PCT/KR2012004863
    • 2012-06-20
    • KOREA ADVANCED INST SCI & TECHJUNG HEE TAEJEONG HYEON SUJEON HWAN-JINKIM YUN HO
    • JUNG HEE TAEJEONG HYEON SUJEON HWAN-JINKIM YUN HO
    • H01B13/00G02F1/1343H01B5/14
    • G02F1/13439B82Y30/00G02F1/13378G02F2202/36
    • The present invention relates to a transparent electrode having nano-structure patterns and a method for manufacturing the same, and more specifically, to a transparent electrode having nano-structure patterns and a method for manufacturing the same, wherein nano-structure patterns having high resolution and a high aspect ratio are formed on a transparent electrode by using an ion bombardment phenomenon through a physical ion etching step, thereby showing excellent liquid crystal alignment characteristics without deterioration of conductivity and light transmittance of the transparent electrode. The method for manufacturing a transparent electrode having nano-structure patterns according to the present invention enables: a transparent electrode to be manufactured by applying an ion bombardment phenomenon through physical ion etching, thereby manufacturing the transparent electrode having pretilt angles in liquid crystals with various high aspect ratios and uniformity using a simple process at low costs; and the liquid crystals to be aligned directly by the transparent electrode such that the transmittance of light is increased and a resistance value is lowered, whereby product performance is enhanced by improving liquid crystal alignment characteristics and stability. The alignment of the liquid crystals according to the present invention can be precisely adjusted in a desired direction by arranging two substrates having the transparent electrode, such that the invention can be applied to various display devices.
    • 本发明涉及具有纳米结构图案的透明电极及其制造方法,更具体地,涉及具有纳米结构图案的透明电极及其制造方法,其中具有高分辨率的纳米结构图案 并且通过使用离子轰击现象通过物理离子蚀刻步骤在透明电极上形成高纵横比,从而显示优异的液晶取向特性,而不会导致透明电极的导电性和透光率的劣化。 根据本发明的具有纳米结构图案的透明电极的制造方法能够:通过物理离子蚀刻施加离子轰击现象来制造透明电极,从而制造具有各种高的液晶预倾角的透明电极 纵横比和均匀性使用简单的方法以低成本; 并且由透明电极直接对准的液晶使得光的透射率增加并且电阻值降低,从而通过改善液晶取向特性和稳定性来提高产品性能。 通过配置具有透明电极的两个基板,可以在所需方向上精确地调整本发明的液晶的取向,使得本发明可以应用于各种显示装置。