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    • 1. 发明授权
    • Method for forming metal pattern by using metal nanocrystals
    • 使用金属纳米晶体形成金属图案的方法
    • US07205096B2
    • 2007-04-17
    • US11117431
    • 2005-04-29
    • Jong Jin ParkSang Yeol KimTae Woo LeeLyong Sun Pu
    • Jong Jin ParkSang Yeol KimTae Woo LeeLyong Sun Pu
    • C23C18/30
    • G03F7/405G03F7/0392Y10T428/31678
    • Disclosed herein is a method for forming a metal pattern by using metal nanocrystals. The method comprises the steps of: (i) coating a photosensitive compound having a substituent, which is converted into a free carboxyl group by light exposure, on a substrate to form a photosensitive film; (ii) selectively exposing the photosensitive film to light in the presence of a photoacid generator to form a latent pattern for crystal growth having a free carboxyl group; and (iii) treating the latent pattern for crystal growth with a nanometallic solution in which metal nanocrystals can be formed to grow the metal nanocrystals on the latent pattern. According to the method, a metal wiring pattern can be formed in a cost-effective and relatively simple manner. Further, the metal pattern formed by the method can be useful in the manufacture of an electromagnetic interference filter for flat panel display devices or an electrode, and can thus be applied to devices, e.g., organic light-emitting devices (OLED) and organic thin-film transistors (OTFT).
    • 本文公开了通过使用金属纳米晶体形成金属图案的方法。 该方法包括以下步骤:(i)通过曝光将具有取代基的感光性化合物转化成游离羧基,形成感光膜; (ii)在光致酸产生剂的存在下将感光膜选择性曝光以形成具有游离羧基的晶体生长的潜在图案; 和(iii)用可以形成金属纳米晶体的纳米金属溶液处理潜在图案以进行晶体生长,以在潜在图案上生长金属纳米晶体。 根据该方法,可以以成本有效且相对简单的方式形成金属布线图案。 此外,通过该方法形成的金属图案可用于制造用于平板显示装置或电极的电磁干扰滤光器,并且因此可以应用于诸如有机发光器件(OLED)和有机薄膜 - 薄膜晶体管(OTFT)。
    • 5. 发明授权
    • Bidirectional optical signal transmitting and receiving system with a single main amplifier
    • 具有单个主放大器的双向光信号发射和接收系统
    • US07603039B2
    • 2009-10-13
    • US11052828
    • 2005-02-09
    • Tae Woo LeeSae Kyong KangHyo Hoon Park
    • Tae Woo LeeSae Kyong KangHyo Hoon Park
    • H04B10/00
    • H04B10/40
    • Disclosed herein is an optical interconnecting system for transmitting a large amount of data. The system includes a bidirectional transmitting/receiving circuit that is installed at each of both ends of a data line between chips or boards, selectively receives an electric signal or an optical signal, amplifies and converts the received signal and selectively outputs the signal. The optical interconnecting system integrates a transmitter and a receiver into one bidirectional transmitting/receiving circuit to reduce circuit design and manufacturing costs and decrease power consumption. The system can integrate the bidirectional transmitting/receiving circuit in a highly integrated semiconductor chip and extend it to a multi-dimension multi-channel form to produce a compact package. Moreover, the system can freely select an electric signal or an optical signal as input/output signal forms at input/output stages using the select switches of the bidirectional transmitting/receiving circuit and thus the system can be applied to various applications.
    • 这里公开了用于发送大量数据的光学互连系统。 该系统包括安装在芯片或电路板之间的数据线两端的双向发送/接收电路,有选择地接收电信号或光信号,放大并转换接收的信号并有选择地输出信号。 光互连系统将发射机和接收机集成到一个双向发射/接收电路中,以减少电路设计和制造成本并降低功耗。 该系统可以将双向发送/接收电路集成在高度集成的半导体芯片中,并将其扩展到多维多通道形式,以产生紧凑的封装。 此外,系统可以使用双向发送/接收电路的选择开关,在输入/输出级形成输入/输出信号,自由选择电信号或光信号,因此该系统可应用于各种应用。
    • 8. 发明授权
    • USB compatible apparatus for connecting between optical USB device and electrical USB device
    • USB兼容设备,用于连接光学USB设备和电气USB设备
    • US08224185B2
    • 2012-07-17
    • US12635036
    • 2009-12-10
    • Min Hyuk LeeDong Min ImHyo Hoon ParkTae Woo LeeMu Hee ChoSeong Woon Kim
    • Min Hyuk LeeDong Min ImHyo Hoon ParkTae Woo LeeMu Hee ChoSeong Woon Kim
    • H04B10/14
    • G06F13/409
    • A USB compatible apparatus for connecting an optical universal serial bus (USB) (or an optical serial bus; OSB) device and an electrical USB device, and a structure of the apparatus are provided. More particularly, a USB compatible apparatus for guaranteeing a connection between an optical USB device for inputting/outputting an optical signal and an electrical USB device for inputting/outputting an electrical signal, for example, signal transmission and reception between an electrical USB device (e.g., an electrical USB memory) and an optical USB device (e.g., a computer) having an optical USB port, and a structure of the USB compatible apparatus (a first exemplary embodiment), and a USB compatible apparatus for guaranteeing signal transmission and reception between an optical USB device (e.g., an optical USB memory) and an electrical USB device (e.g., a portable telephone) having an electrical USB port, and a structure of the USB compatible apparatus (a second exemplary embodiment) are provided.
    • 提供了用于连接光通用串行总线(USB)(或光串行总线,OSB)设备和电USB设备的USB兼容设备以及该设备的结构。 更具体地说,一种用于保证用于输入/输出光信号的光学USB设备与用于输入/输出电信号的电USB设备之间的连接的USB兼容设备,例如电USB设备之间的信号传输和接收(例如, ,USB电子USB存储器)和具有光学USB端口的光学USB设备(例如,计算机),以及USB兼容设备(第一示例性实施例)的结构,以及用于保证在USB兼容设备之间的信号发送和接收的USB兼容设备 提供具有电USB端口的光学USB设备(例如,光学USB存储器)和具有USB的USB设备(例如,便携式电话),以及USB兼容设备(第二示例性实施例)的结构。
    • 10. 发明申请
    • Optical interconnection system using optical waveguide-integrated optical printed circuit board
    • 光互连系统采用光波导集成光电印刷电路板
    • US20100232741A1
    • 2010-09-16
    • US12227995
    • 2008-09-22
    • Do Won KimTae Woo LeeHyo Hoon Park
    • Do Won KimTae Woo LeeHyo Hoon Park
    • G02B6/12G02B6/43
    • G02B6/43G02B6/4214H05K1/0274
    • An optical interconnection system is provided. The optical interconnection system includes an optical printed circuit board (PCB) that includes transmitter-unit and receiver-unit optical interconnection blocks for bending an optical path by a predetermined angle, an one-unit optical waveguide including an optical waveguide which is inserted into each of the optical interconnection blocks so as to connect optical paths of the transmitter-unit and receiver-unit optical interconnection blocks, and a PCB having the one-unit optical waveguide integrated therein; a light emitting element that is formed in-line with the optical waveguide on an upper surface of the transmitter-unit optical interconnection block exposed to an upper surface of the optical PCB; a driver integrated circuit that is formed on the upper surface of the optical PCB and electrically connected to the light emitting element and the optical PCB; a light receiving element that is formed in-line with the optical waveguide on an upper surface of the receiver-unit optical interconnection block exposed to the upper surface of the optical PCB; and a receiver integrated circuit that is formed on the upper surface of the optical PCB and electrically connected to the light receiving element and the optical PCB. The upper surfaces of the respective optical interconnection blocks are substantially aligned with the upper surface of the PCB
    • 提供光互连系统。 光互连系统包括光学印刷电路板(PCB),其包括用于将光路弯曲预定角度的发射器单元和接收器单元光学互连块,包括插入每个光路中的光波导的单个单元光波导 以连接发射机单元和接收机单元光学互连块的光路,以及将其中集成有单一单元光波导的PCB连接在一起; 在与所述光学PCB的上表面露出的所述发射单元光互连块的上表面上与所述光波导成一行的发光元件; 驱动器集成电路,其形成在所述光学PCB的上表面上并电连接到所述发光元件和所述光学PCB; 光接收元件,其在与所述光学PCB的上表面接触的所述接收器单元光互连块的上表面上与所述光波导成一直线; 以及形成在光学PCB的上表面并电连接到光接收元件和光学PCB的接收器集成电路。 各个光互连块的上表面基本上与PCB的上表面对齐