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    • 1. 发明申请
    • Electrochemical Detector Integrated on Microfabricated Capillary Electrophoresis Chip and Method of Manufacturing the Same
    • 集成在微型毛细管电泳上的电化学检测器芯片及其制造方法
    • US20080230389A1
    • 2008-09-25
    • US12053906
    • 2008-03-24
    • Kon HaYong Sang KimChi Jung KangIn Je Yi
    • Kon HaYong Sang KimChi Jung KangIn Je Yi
    • G01N27/00
    • G01N27/44791B01L3/502707B01L2300/0645B01L2300/0816B01L2400/0421G01N27/4473
    • An electrochemical detector integrated on a capillary electrophoresis chip according to the present invention includes: a first substrate having a microchannel; a second substrate adapted to mate with the first substrate and having at least one peripheral electrode for conducting electrophoresis of a sample injected along the microchannel of the first substrate, in which a separation channel is formed along the microchannel by bonding the first substrate with the second substrate; a first electrode, made of indium tin oxide (ITO), formed on the first substrate to be positioned over the separation channel; and a second electrode, made of indium tin oxide (ITO), formed on the second substrate to be positioned under the separation channel, and spaced apart from the first electrode at a predetermined interval, wherein the first electrode and the second electrode constitute a detector to measure electrical characteristics of the sample passing along the separation channel. According to the present invention, since the specific characteristics of a sample can be evaluated by measuring the electrical or genetic characteristics of the sample flowing along the microchannel formed in a chip using a detector, a chip for a micro-analysis system having a simple structure can be realized.
    • 集成在根据本发明的毛细管电泳芯片上的电化学检测器包括:具有微通道的第一衬底; 第二衬底,其适于与第一衬底配合并且具有至少一个用于进行沿着第一衬底的微通道注入的样品的电泳的外围电极,其中通过将第一衬底与第二衬底接合而沿着微通道形成分离通道 基质; 形成在所述第一基板上以位于所述分离通道上方的由氧化铟锡(ITO)制成的第一电极; 以及形成在所述第二基板上的氧化铟锡(ITO)的第二电极,所述第二电极被定位在所述分离通道下方,并且以预定间隔与所述第一电极间隔开,其中所述第一电极和所述第二电极构成检测器 以测量通过分离通道的样品的电特性。 根据本发明,由于可以通过使用检测器测量沿着形成在芯片中的微通道流动的样品的电或遗传特性来评价样品的特性,所以具有简单结构的微分析系统用芯片 可以实现。
    • 4. 发明授权
    • Method and apparatus for turbo encoding and decoding
    • 用于turbo编码和解码的方法和装置
    • US08166373B2
    • 2012-04-24
    • US12065718
    • 2006-09-05
    • Kyung Whon CheunYong Sang KimWang rok Oh
    • Kyung Whon CheunYong Sang KimWang rok Oh
    • H03M13/00
    • H03M13/2978H03M13/6561
    • A method and apparatus for turbo encoding and method and apparatus for turbo decoding are disclosed, by which encoding and decoding speeds of turbo codes and performance thereof can be enhanced. In performing turbo encoding on inputted information bits by a unit of an information frame including a predetermined number of bits, the present invention includes dividing the information frame into at least two information sub-blocks, encoding each of the at least two information sub-blocks independently, rearranging information bits configuring the information frame by interleaving the information frame, dividing the rearranged information frame into at least two information sub-blocks, and encoding each of the at least two information sub-blocks independently.
    • 公开了用于turbo编码的方法和装置以及用于turbo解码的方法和装置,通过该方法和装置可以增强turbo码的编码和解码速度及其性能。 本发明的目的在于,对于输入的信息比特进行包含预定比特数的信息帧的Turbo编码,本发明包括将信息帧划分为至少两个信息子块,对至少两个信息子块 独立地通过交织信息帧来重新布置配置信息帧的信息位,将重新排列的信息帧划分为至少两个信息子块,以及独立地编码至少两个信息子块中的每一个。