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    • 84. 发明授权
    • Display device with series connected optical sensors for determining touch position
    • 具有串联连接的光学传感器用于确定触摸位置的显示装置
    • US08717308B2
    • 2014-05-06
    • US12469132
    • 2009-05-20
    • Min-Koo HanJae-Hoon LeeHyun-Sang ParkBong-Hyun YouByoung-Jun Lee
    • Min-Koo HanJae-Hoon LeeHyun-Sang ParkBong-Hyun YouByoung-Jun Lee
    • G06F3/041
    • G06F3/0412G06F3/042G09G3/20G09G2360/144
    • A display device with a touch screen includes: first sensing units, each first sensing unit comprising first optical sensors connected in series, each first sensing unit comprising a first terminal for receiving a first voltage, each first sensing unit extending in a first direction; second sensing units, each second sensing unit comprising second optical sensors connected in series, each second sensing unit comprising a first terminal for receiving a second voltage, each second sensing unit extending in a second direction transverse to the first direction; a reset unit for applying a reset voltage to a second terminal of each of the first and second sensing units; and a read-out unit for sensing a touch position based on voltage changes at the second terminals of the first and second sensing units.
    • 具有触摸屏的显示设备包括:第一感测单元,每个第一感测单元包括串联连接的第一光学传感器,每个第一感测单元包括用于接收第一电压的第一端子,每个第一感测单元沿第一方向延伸; 第二感测单元,每个第二感测单元包括串联连接的第二光学传感器,每个第二感测单元包括用于接收第二电压的第一端子,每个第二感测单元沿横向于第一方向的第二方向延伸; 复位单元,用于将复位电压施加到第一和第二感测单元中的每一个的第二端子; 以及读出单元,用于基于第一和第二感测单元的第二端子处的电压变化来感测触摸位置。
    • 85. 发明授权
    • Display device and driving method thereof
    • 显示装置及其驱动方法
    • US08619006B2
    • 2013-12-31
    • US11274913
    • 2005-11-14
    • Ji-Hoon KimMin-Koo HanJae-Hoon Lee
    • Ji-Hoon KimMin-Koo HanJae-Hoon Lee
    • G09G3/30
    • G09G3/3233G09G2300/0819G09G2300/0842G09G2300/0861G09G2310/0251G09G2310/0254G09G2320/043G09G2330/021
    • A display device has a plurality of pixels, where each pixel includes a light emitting element, a capacitor, a driving transistor having a control terminal, an input terminal, and an output terminal and supplying a driving current to the light emitting element to emit light, a first switching unit diode-connecting the driving transistor and supplying a data voltage to the capacitor in response to a scanning signal, and a second switching unit supplying a driving voltage to the driving transistor and connecting the capacitor to the driving transistor in response to the emission signal, wherein the capacitor is connected to the driving transistor through the first switching unit, stores a control voltage depending on the data voltage and the threshold voltage of the driving transistor, and is connected to the driving transistor through the second switching unit to supply the control voltage to the driving transistor.
    • 显示装置具有多个像素,其中每个像素包括发光元件,电容器,具有控制端子的驱动晶体管,输入端子和输出端子,并向发光元件提供驱动电流以发光 第一开关单元二极管,连接驱动晶体管,并响应于扫描信号向电容器提供数据电压;以及第二开关单元,其向驱动晶体管提供驱动电压,并响应于 其中电容器通过第一开关单元连接到驱动晶体管的发射信号存储取决于驱动晶体管的数据电压和阈值电压的控制电压,并通过第二开关单元连接到驱动晶体管, 向驱动晶体管提供控制电压。
    • 89. 发明申请
    • HIGHLY SENSITIVE BIOSENSOR, BIOCHIP COMPRISING THE SAME AND METHOD FOR MANUFACTURING THE SAME
    • 高敏感生物传感器,包含该生物传感器的生物传感器及其制造方法
    • US20110017593A1
    • 2011-01-27
    • US12934093
    • 2009-01-20
    • Jae-Hoon Lee
    • Jae-Hoon Lee
    • G01N27/26G01N27/02G01N27/22G01N33/48H05K3/00
    • G01N33/54393G01N27/125
    • The present invention has a feature to form a biocompatible dielectric thin film on the surface of a metal electrode in a biosensor constructing a biochip. When using such a biocompatible dielectric thin film, this non-specific adsorption between a protein such as enzyme and a metal electrode can be prevented. Therefore, the present invention can escape a phenomenon that inhibits the reaction of a biomolecule due to the non-specific adsorption on the surface of a metal electrode. In addition, when the dielectric thin film having a high dielectric constant, as a biocompatible dielectric thin film, is made on the surface of a metal electrode, the sensitivity of an electrical detection according to the reaction of a biomolecule can be improved.
    • 本发明的特征在于,在构成生物芯片的生物传感器中,在金属电极的表面上形成生物相容性的电介质薄膜。 当使用这种生物相容的介电薄膜时,可以防止蛋白质如酶和金属电极之间的这种非特异性吸附。 因此,本发明可以避免由于金属电极表面上的非特异性吸附而抑制生物分子的反应的现象。 此外,当在金属电极的表面上形成具有高介电常数的介电薄膜作为生物相容介电薄膜时,可以提高根据生物分子的反应的电检测的灵敏度。
    • 90. 发明授权
    • Method and system for controlling remote in a TDD optical repeater
    • 用于在TDD光中继器中控制远端的方法和系统
    • US07826430B2
    • 2010-11-02
    • US11983483
    • 2007-11-09
    • Jae-Hoon LeeSeong-Taek HwangByung-Jik KimSang-Ho Kim
    • Jae-Hoon LeeSeong-Taek HwangByung-Jik KimSang-Ho Kim
    • H04J3/00H04J3/06
    • H04J14/02H04J3/0682H04W88/085
    • A method and apparatus for transmitting data to an Access Point (AP) and a Mobile Station (MS) in a Time Division Duplex (TDD) optical repeater. A main donor generates a control frame for controlling a remote, upon receipt of data from the AP, and transmits the control frame to the remote during a non-downlink transmission period. The remote analyzes the control frame received from the main donor, detects sync information about a downlink signal and an uplink signal, and remote control information from the analyzed control frame, performs a control operation according to the detected remote control information, and generates a status frame for notifying the main donor of the status of the remote upon receipt of data from the MS. The status frame is transmitted from the remote to the main donor during a non-uplink transmission period.
    • 一种用于向时分双工(TDD)光中继器中的接入点(AP)和移动台(MS)发送数据的方法和装置。 在从AP接收到数据时,主要供体生成用于控制远程的控制帧,并且在非下行链路传输周期期间将控制帧发送到远程。 遥控器分析从主供体接收到的控制帧,检测关于下行链路信号和上行链路信号的同步信息,以及来自分析的控制帧的遥控信息,根据检测到的遥控信息执行控制操作,并且生成状态 框架,用于在从MS接收到数据时通知主要供体的远程状态。 在非上行链路传输期间,状态帧从远端发送到主供体。