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    • 52. 发明申请
    • MICROFLUIDIC SENSOR COMPLEX STRUCTURE
    • 微流体传感器复合结构
    • US20100200428A1
    • 2010-08-12
    • US12670817
    • 2008-07-24
    • Moon Hee ChoiSeung Hyeun JungYoung Hoon KimJoo-Heon ParkHakhyun NamGeun Sig Cha
    • Moon Hee ChoiSeung Hyeun JungYoung Hoon KimJoo-Heon ParkHakhyun NamGeun Sig Cha
    • G01N27/26
    • B01L3/502707B01L3/5027B01L2200/0621B01L2200/143B01L2300/0645B01L2300/0681B01L2300/0816B01L2300/0867B01L2300/0887B01L2400/0406
    • Disclosed is a microfluidic sensor complex structure comprising a lower plate, a middle plate and an upper plate. A reference electrode, a working electrode and an electrode connection are formed on the lower plate. The middle plate comprises a microfluidic channel passage therein. The upper plate is overlaid on the middle plate so as to induce a capillary phenomenon on the microfluidic channel passage formed on in the middle plate. The microfluidic sensor complex structure allows the motion of a sample to be driven only by a capillary phenomenon, without additional operation, and allows an immune response, washing, and electrochemical analysis in one round once a sample is introduced thereinto. Hence, it requires only a short time period for measurement, is convenient to handle, and shows sensitivity and selectivity. Also, it can be produced on a mass scale because it can be formed of typical organic polymers using a simple method. Based on analytical electrochemistry, the microfluidic sensor complex structure can be used as a small-size sensor that can be applied to practice sites.
    • 公开了一种微流体传感器复合结构,其包括下板,中板和上板。 在下板上形成参考电极,工作电极和电极连接。 中间板包括其中的微流体通道通道。 上板覆盖在中间板上,以便在形成在中间板上的微流体通道通道上引起毛细管现象。 微流体传感器复合结构允许样品的运动仅由毛细管现象驱动,而无需额外的操作,并且一旦将样品引入其中就可以在一轮中进行免疫应答,洗涤和电化学分析。 因此,只需要很短的时间进行测量,便于处理,显示灵敏度和选择性。 此外,它可以以大规模生产,因为它可以使用简单的方法由典型的有机聚合物形成。 基于分析电化学,微流体传感器复合结构可用作可应用于实践场所的小尺寸传感器。
    • 53. 发明申请
    • CUTTING INSERT AND CUTTING TOOL THEREWITH
    • 切割刀具和切割工具
    • US20100183381A1
    • 2010-07-22
    • US12440078
    • 2006-09-06
    • Chang Hee ChoiChang Gyu Park
    • Chang Hee ChoiChang Gyu Park
    • B23C5/22B23C5/20
    • B23C5/2208B23C2200/361B23C2210/163Y10T407/192Y10T407/1924Y10T407/1936Y10T407/2276Y10T407/2278
    • The present invention provides a cutting insert and a cutting tool used with the same. A tool body includes at least one seating surface and a threaded hole extending as slanted with respect to the seating surface. At least one cutting insert having a mounting hole passing therethrough is removably secured on the seating surface. A screw passes through the mounting hole and is fastened to the threaded hole, thereby removably securing the cutting insert to the tool body. A wall surface of the mounting hole contacts a head of the screw about at least one first contact portion and at least one second contact portion. The first contact portion is formed at a level different from that of the second contact portion along a longitudinal axis of the mounting hole. Contact angles at the first contact portions and the second contact portions are different from each other.
    • 本发明提供一种切削刀片和与其一起使用的切削工具。 工具主体包括至少一个就座表面和相对于就座表面倾斜延伸的螺纹孔。 具有穿过其中的安装孔的至少一个切削刀片可移除地固定在就座表面上。 螺钉穿过安装孔并被紧固到螺纹孔,从而可拆卸地将切削刀片固定到工具主体上。 安装孔的壁表面围绕至少一个第一接触部分和至少一个第二接触部分接触螺钉的头部。 所述第一接触部分沿着所述安装孔的纵向轴线形成在与所述第二接触部分不同的水平面上。 第一接触部和第二接触部的接触角彼此不同。
    • 54. 发明申请
    • DIGITALLY CONTROLLED OSCILLATOR WITH THE WIDE OPERATION RANGE
    • 数字控制振荡器与宽操作范围
    • US20100127747A1
    • 2010-05-27
    • US12364173
    • 2009-02-02
    • Kwang Hee CHOIHong June PARK
    • Kwang Hee CHOIHong June PARK
    • H03H11/26
    • H03L7/10H03K3/0315H03K2005/00058H03K2005/00221H03L7/0995H03L7/0998H03L2207/06
    • There is provided a digitally controlled oscillator, which is capable of widening its operation range with maintaining its resolution and the maximum frequency at which it operates. The digitally controlled oscillator includes a phase compensation block, a coarse block, and a fine block. The phase compensation block 510 generating a PLL signal PLLCLK and a first clock signal CLK1 which has the same phase and frequency as the PLL signal, in response to a phase control signal DISABLE and a fourth clock signal CLK4. The coarse block 520 generating a second clock signal CLK2 and a third clock signal CLK3 which results from delaying the PLL signal PLLCLK and the first clock signal CLK1 for a given time, in response to a m(integer)-bit coarse A control signal COAR_A and an (m−1)-bit coarse B control signal COAR_B. The fine block generating the fourth clock signal CLK4 by applying interpolation to the second clock signal CLK2 and the third clock signal CLK3 in response to an n(integer)-bit first fine control signal FCB and a n-bit second fine control signal FC.
    • 提供了数字控制的振荡器,其能够在保持其分辨率和操作的最大频率的情况下扩大其操作范围。 数字控制振荡器包括相位补偿块,粗块和精细块。 响应于相位控制信号DISABLE和第四时钟信号CLK4,相位补偿块510产生PLL信号PLLCLK和与PLL信号具有相同相位和频率的第一时钟信号CLK1。 粗块520产生第二时钟信号CLK2和第三时钟信号CLK3,其响应于am(整数)位粗A控制信号COAR_A,延迟PLL信号PLLCLK和第一时钟信号CLK1给定时间, (m-1)位粗B控制信号COAR_B。 精细块响应于n(整数)位第一精细控制信号FCB和n位第二精细控制信号FC,通过对第二时钟信号CLK2和第三时钟信号CLK3施加内插来产生第四时钟信号CLK4。
    • 55. 发明申请
    • METHOD AND AN APPARATUS FOR PROCESSING A VIDEO SIGNAL
    • 用于处理视频信号的方法和装置
    • US20100086035A1
    • 2010-04-08
    • US12574313
    • 2009-10-06
    • Seung Wook PARKJung Sun KIMYoung Hee CHOIByeong Moon JEONJoon Young PARK
    • Seung Wook PARKJung Sun KIMYoung Hee CHOIByeong Moon JEONJoon Young PARK
    • H04N7/32
    • H04N19/51H04N19/107H04N19/11H04N19/172H04N19/176H04N19/18H04N19/44H04N19/61H04N19/86
    • The present invention relates to a video signal decoding method for adding an intra prediction mode as a sub-macroblock type to prediction of a macroblock in coding a video signal. The present invention includes obtaining a macroblock type, checking whether a macroblock includes a intra prediction coded sub-macroblock and a inter prediction coded sub-macroblock when a macroblock includes a plurality of coded sub-macroblocks according the macroblock type, when the macroblock includes the ultra prediction coded sub-macroblock and the inter prediction coded sub-macroblock, obtaining prediction mode flag information indicating whether the sub-macroblock is the intra prediction coded or the inter prediction coded, when the sub-macroblock is the intra prediction coded based on the prediction mode flag information, obtaining prediction direction information from a block adjacent to the sub-macroblock and a prediction value of the sub-macroblock based on the prediction direction information, and when the sub-macroblock is inter prediction coded based on the prediction mode flag information, obtaining motion information from the block adjacent to the sub-macroblock and a prediction value of the sub-macroblock based on the motion information. Accordingly, the present invention is able to raise coding efficiency of video signal by adding an intra prediction mode as a sub-macroblock in predicting a macroblock.
    • 本发明涉及用于将帧内预测模式作为子宏块类型添加到对编码视频信号的宏块进行预测的视频信号解码方法。 本发明包括:当宏块包括宏块类型时,当宏块包括多个编码子宏块时,获得宏块类型,检查宏块是否包括帧内预测编码子宏块和帧间预测编码子宏块 超预测编码子宏块和帧间预测编码子宏块,当子宏块是基于该预测编码的子宏块的帧内预测编码时,获得表示子宏块是帧内预测编码还是帧间预测编码的预测模式标志信息 预测模式标志信息,从与子宏块相邻的块获得预测方向信息和基于预测方向信息的子宏块的预测值,以及当子宏块基于预测模式标志进行帧间预测编码时 信息,从与子宏块相邻的块获得运动信息,以及a 基于运动信息的子宏块的预测值。 因此,本发明能够通过在预测宏块中添加帧内预测模式作为子宏块来提高视频信号的编码效率。
    • 56. 发明申请
    • METHOD AND AN APPARATUS FOR PROCESSING A VIDEO SIGNAL
    • 用于处理视频信号的方法和装置
    • US20100086034A1
    • 2010-04-08
    • US12574283
    • 2009-10-06
    • Seung Wook ParkJung Sun KimYoung Hee ChoiByeong Moon JeonJoon Young Park
    • Seung Wook ParkJung Sun KimYoung Hee ChoiByeong Moon JeonJoon Young Park
    • H04N7/50
    • H04N19/51H04N19/107H04N19/11H04N19/172H04N19/176H04N19/18H04N19/44H04N19/61H04N19/86
    • The present invention relates to a video signal decoding method for adding an intra prediction mode as a sub-macroblock type to prediction of a macroblock in coding a video signal. The present invention includes obtaining a macroblock type, obtaining a sub-macroblock type when a macroblock includes a plurality of coded sub-macroblocks according the macroblock type, obtaining flag information indicating a DC (discrete cosine) transform size, determining the DC transform size of the coded sub-macroblock based on the flag information, when the sub-macroblock is intra prediction coded based on the sub-macroblock type, determining a prediction size of the intra prediction coded sub-macroblock based on the determined DC transform size, obtaining prediction direction information from a block adjacent to the sub-macroblock based on the prediction size of the sub-macroblock, and obtaining a prediction value of the sub-macroblock based on the prediction direction information. Accordingly, the present invention is able to raise coding efficiency of video signal by adding an intra prediction mode as a sub-macroblock type in predicting a macroblock.
    • 本发明涉及用于将帧内预测模式作为子宏块类型添加到对编码视频信号的宏块进行预测的视频信号解码方法。 本发明包括获取宏块类型,当宏块包括根据宏块类型的多个编码子宏块时获得子宏块类型,获得指示DC(离散余弦)变换大小的标志信息,确定DC变换大小 基于所述标志信息的编码子宏块,当所述子宏块是基于所述子宏块类型进行帧内预测编码时,基于所确定的DC变换大小来确定所述帧内预测编码子宏块的预测大小,获得预测 基于子宏块的预测尺寸从与子宏块相邻的块的方向信息,基于预测方向信息获得子宏块的预测值。 因此,本发明能够通过在预测宏块中添加作为子宏块类型的帧内预测模式来提高视频信号的编码效率。