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    • 27. 发明申请
    • Lens driving device
    • 镜头驱动装置
    • US20060067666A1
    • 2006-03-30
    • US11234331
    • 2005-09-23
    • Jae-Hyoung ParkChang-Hyeon JiMan-Hyo HaSeong-Hyok KimJong-Uk BuYoung-Joo Yee
    • Jae-Hyoung ParkChang-Hyeon JiMan-Hyo HaSeong-Hyok KimJong-Uk BuYoung-Joo Yee
    • G03B17/00
    • H02N2/0065G03B17/00H02N2/08
    • Disclosed herein is a lens driving device which is able to increase displacement without restriction, does not require a complex structure despite having a low power consumption, solves problems of friction and noise occurring in a gear mechanism, and realizes miniaturization and lightness. The lens driving device of the present invention includes a substrate which generates surface acoustic waves on a surface thereof, and a movable unit which is coupled to an optical lens and executes translation above the substrate using the surface acoustic waves. Therefore, the lens driving device of the present invention can implement translation of a lens without a separate mechanism, unlike conventional driving devices using motors and screws. Furthermore, the present invention satisfies the recent trend towards miniaturization and lightness, thus being usable in a variety of industrial fields that use optical lenses.
    • 本文公开了一种能够不受限制地增加位移的透镜驱动装置,尽管功耗低,但不需要复杂的结构,解决了在齿轮机构中产生的摩擦和噪音的问题,并实现了小型化和轻量化。 本发明的透镜驱动装置包括在其表面上产生表面声波的基板和耦合到光学透镜的可移动单元,并使用声表面波在基板上执行平移。 因此,与使用电机和螺钉的传统驱动装置不同,本发明的透镜驱动装置可以实现透镜的平移,而不需要单独的机构。 此外,本发明满足近来的小型化和轻量化的趋势,因此可用于使用光学透镜的各种工业领域。
    • 28. 发明申请
    • Liquid crystal display device and method for driving the same
    • 液晶显示装置及其驱动方法
    • US20050276088A1
    • 2005-12-15
    • US11147514
    • 2005-06-08
    • Seung-Hwan MoonSang-Soo KimJae-Hyoung Park
    • Seung-Hwan MoonSang-Soo KimJae-Hyoung Park
    • G02F1/133G09G3/20G09G3/36G11C5/06
    • G09G3/3648G09G2320/02G09G2320/028G09G2320/0673
    • A liquid crystal display device (LCD) includes a liquid crystal panel having a plurality of gate lines and a plurality of data lines arranged in column and row directions, respectively, and intersecting each other, a plurality of switching elements connected to the plurality of gate lines and the plurality of data lines, and a plurality of pixels connected to the plurality of switching elements, a gate driver for supplying a gate signal to the gate lines, a timing controller for receiving an external image signal and producing a first data signal and a second data signal having different gamma constants, and a data driver for supplying gray voltages corresponding to the first and second data signals produced from the timing controller to a first pixel group of the plurality of pixels and a second pixel group of the plurality of pixels via the data lines.
    • 一种液晶显示装置(LCD),具有分别具有多条栅极线和多条数据线的液晶面板,分别以列方向排列配置,并相互交叉,多个开关元件与多个栅极连接 线和多条数据线,以及连接到多个开关元件的多个像素,用于向栅极线提供栅极信号的栅极驱动器,用于接收外部图像信号并产生第一数据信号的定时控制器,以及 具有不同伽马常数的第二数据信号和用于将对应于从定时控制器产生的第一和第二数据信号的灰度电压提供给多个像素中的第一像素组的数据驱动器和多个像素中的第二像素组 通过数据线。
    • 29. 发明授权
    • Microbial fuel cell comprising a microprobe array
    • 微生物燃料电池包括微探针阵列
    • US09431671B2
    • 2016-08-30
    • US14007566
    • 2012-03-22
    • Jae-Hyoung ParkSeung-Ki Lee
    • Jae-Hyoung ParkSeung-Ki Lee
    • H01M8/02H01M8/16C12Q1/02
    • H01M8/16C12Q1/02H01M8/0204H01M8/0247Y02E60/527
    • Provided is a microbial fuel cell (MFC). The MFC includes a microfluidic element having an inlet portion and an outlet portion for intake and discharge of a culture fluid containing cells and a microchannel portion for capturing the cells and interconnecting the inlet portion and the outlet portion, a microprobe-array element having microprobes as anodes for extracting electrons produced during a metabolic process of the cells, and delivering the extracted electrons to an external circuit outside the cells, and a cathode for delivering the electrons used in the external circuit to an electron acceptor outside the cells. The microprobes penetrate the microfluidic element and are inserted into a plurality of single cells captured by the microchannel portion when the microfluidic element and the microprobe-array element are coupled together. The microprobes are separated from the single cells when the microfluidic element and the microprobe-array element are separated from each other.
    • 提供了一种微生物燃料电池(MFC)。 MFC包括具有入口部分和出口部分的微流体元件,用于进入和排出含有细胞的培养液和用于捕获细胞并将入口部分和出口部分互连的微通道部分,具有微探针的微探针阵列元件 用于提取在细胞的代谢过程中产生的电子的阳极,以及将提取的电子输送到电池外部的外部电路,以及用于将外部电路中使用的电子传送到电池外部的电子受体的阴极。 当微流体元件和微探针阵列元件耦合在一起时,微探针穿透微流体元件并插入由微通道部分捕获的多个单个细胞。 当微流体元件和微探针阵列元件彼此分离时,微探针与单个单元分离。