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    • 1. 发明授权
    • Display apparatus and method of driving the same
    • 显示装置及其驱动方法
    • US08614697B2
    • 2013-12-24
    • US12416446
    • 2009-04-01
    • Hyoung-Hak KimSang-Hoon ParkKyu-Jin ParkKyu-Hun LimSun-Mi Son
    • Hyoung-Hak KimSang-Hoon ParkKyu-Jin ParkKyu-Hun LimSun-Mi Son
    • G09G3/36
    • G09G3/3614G09G3/3677G09G2310/06G09G2310/067
    • A display apparatus includes a timing controller which outputs image data, a data control signal and a first gate control signal, a data driving circuit which receives the image data and converts the image data into data voltages, a control signal converting circuit which delays the first gate control signal by a reference time period to convert the first gate control signal into a second gate control signal based on a reference signal, a gate driving circuit which outputs gate signals based on the second gate control signal, and a display panel which displays an image corresponding to the one line of the data voltages based on the gate signals. Each gate signal rises at a point in time delayed from a starting point of a corresponding horizontal scanning period by the reference time period and falls before an ending point of the corresponding horizontal scanning period.
    • 显示装置包括输出图像数据的定时控制器,数据控制信号和第一门控制信号,接收图像数据并将图像数据转换成数据电压的数据驱动电路,控制信号转换电路,其将第一 栅极控制信号,基于参考信号将第一栅极控制信号转换为第二栅极控制信号,基于第二栅极控制信号输出栅极信号的栅极驱动电路,以及显示面板 基于栅极信号对应于数据电压的一行的图像。 每个门信号在从相应的水平扫描周期的起始点延迟基准时间段的时间点上升,并落在相应的水平扫描周期的结束点之前。
    • 4. 发明授权
    • Liquid crystal display having a gate voltage generator for varying gate on/off voltage according to change in temperature
    • 具有栅极电压发生器的液晶显示器,用于根据温度变化改变栅极导通/截止电压
    • US08289256B2
    • 2012-10-16
    • US12548701
    • 2009-08-27
    • Eun-Woo JeongSang-Hoon ParkHwan-Jun Sung
    • Eun-Woo JeongSang-Hoon ParkHwan-Jun Sung
    • G09G3/36
    • G09G3/3696G09G3/3674G09G2310/0286G09G2310/0289G09G2320/041G11C7/04G11C19/28
    • A liquid crystal display (LCD) includes: a gate-off voltage generator including a temperature compensation unit which includes a constant voltage output device and a temperature-sensing device and outputting a gate-off voltage whose level varies according to a change in ambient temperature; a clock generator receiving a gate-on voltage and the gate-off voltage and outputting a first clock signal and a second clock signal; a gate driver receiving the first clock signal and the second clock signal and outputting gate signals; and a plurality of pixels turned on or off in response to the gate signals and thus displaying images, wherein the constant voltage output device outputs a constant voltage whose value is determined by a voltage difference between a reference terminal and an input terminal of the constant voltage output device, and the temperature-sensing device provides an input voltage whose value varies according to the change in the ambient temperature, wherein the voltage difference between the reference terminal and the input terminal of the constant voltage output device does not substantially vary according to the ambient temperature.
    • 液晶显示器(LCD)包括:栅极截止电压发生器,包括温度补偿单元,其包括恒压输出装置和温度感测装置,并输出其电平根据环境温度变化而变化的栅极截止电压 ; 接收栅极导通电压和栅极截止电压并输出第一时钟信号和第二时钟信号的时钟发生器; 接收第一时钟信号和第二时钟信号并输出​​门信号的栅极驱动器; 并且多个像素响应于门信号而导通或截止,从而显示图像,其中恒压输出装置输出其值由恒定电压的参考端和输入端之间的电压差确定的恒定电压 输出装置,并且温度感测装置提供其值根据环境温度的变化而变化的输入电压,其中恒定电压输出装置的参考端子和输入端子之间的电压差基本上不会根据 环境温度。
    • 5. 发明授权
    • Antenna using electrically conductive ink and production method thereof
    • 使用导电油墨的天线及其制造方法
    • US08106830B2
    • 2012-01-31
    • US11993172
    • 2006-06-20
    • Byung-Hoon RyouWon-Mo SungSang-Hoon Park
    • Byung-Hoon RyouWon-Mo SungSang-Hoon Park
    • H01Q1/38
    • H01Q1/243H01Q9/0421
    • Disclosed is an antenna having an antenna radiator formed by printing electrically conductive ink on a substrate. An antenna radiator according to an embodiment of the present invention is formed to the same thickness as a skin depth with respect to an operation frequency of the antenna. Therefore, an antenna can be fabricated using a small amount of electrically conductive ink while not reducing the gain of the antenna. Further, an antenna radiator according to another embodiment of the present invention is formed to the same thickness as a skin depth with respect to a predetermined frequency at a corresponding hot spot with respect to the frequency. Accordingly, an amount of electrically conductive ink used can be further reduced while maintaining the gain of the antenna.
    • 公开了具有通过在基板上印刷导电油墨而形成的天线辐射体的天线。 根据本发明的实施例的天线辐射器相对于天线的操作频率形成为与趋肤深度相同的厚度。 因此,可以使用少量的导电油墨制造天线,同时不降低天线的增益。 此外,根据本发明的另一实施例的天线辐射器形成为相对于相对于频率的相应热点处的相对于预定频率的趋肤深度相同的厚度。 因此,可以在保持天线的增益的同时进一步减少所使用的导电油墨的量。
    • 8. 发明授权
    • Low-cost network system between a base station controller and a base transceiver station, and method for transmitting data between them
    • 基站控制器和基站收发台之间的低成本网络系统,以及在它们之间传输数据的方法
    • US07565167B2
    • 2009-07-21
    • US10962076
    • 2004-10-07
    • Kyeong-Soo LeeHee-Nam SonHak-Seong YuSang-Hoon Park
    • Kyeong-Soo LeeHee-Nam SonHak-Seong YuSang-Hoon Park
    • H04B1/38H04M1/00
    • H04W92/12H04W80/04
    • Various embodiments of the invention relate to a low-cost network system that can reduce the network cost by connecting a base station controller (BSC) with a base transceiver station (BTS) by the use of matching units that match an E1/T1 line to an IP line. In one embodiment, the system comprises a BSC matching unit (BSCMU) and a BTS matching unit (BTSMU). The BSCMU, connected to the BSC through a first dedicated line, converts a first dedicated-line data signal, received from the BSC, into a first IP signal to be transmitted through an IP line and converts a received second IP signal into a second dedicated-line data signal to be transmitted to the BSC. The BTSMU, connected to the BTS through a second dedicated line, converts the first IP signal into the first dedicated-line data signal to be transmitted to the BTS and converts the second dedicated-line data signal, received from the BTS, into the second IP signal.
    • 本发明的各种实施例涉及一种低成本网络系统,其可以通过使用与E1 / T1线路匹配的匹配单元将基站控制器(BSC)与基站收发器(BTS)连接,从而降低网络成本 一条IP线路。 在一个实施例中,该系统包括BSC匹配单元(BSCMU)和BTS匹配单元(BTSMU)。 通过第一专用线连接到BSC的BSCMU将从BSC接收的第一专用线数据信号转换成要通过IP线路发送的第一IP信号,并将接收的第二IP信号转换成第二专用 线数据信号发送到BSC。 通过第二专用线连接到BTS的BTSMU将第一IP信号转换为第一专用线数据信号以发送到BTS,并将从BTS接收的第二专用线数据信号转换成第二专用线数据信号 IP信号。