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    • 6. 发明授权
    • Plasma display module
    • 等离子显示模块
    • US07535173B2
    • 2009-05-19
    • US10965222
    • 2004-10-15
    • Dae-Gyu Kim
    • Dae-Gyu Kim
    • H01J17/49H01J9/00
    • H05K5/02
    • A plasma display module constructed with a chassis base; a plasma display panel supported by the chassis base in front of the chassis base to display an image; a circuit board on which a plurality of circuit devices that drive the plasma display panel are mounted, supported by the chassis base behind the chassis base; and a connection cable electrically connecting the circuit board and the plasma display panel, and directly grounded to the chassis base. Therefore, the module will be electrically stable when driven because of its grounding structure, and is suitable for providing images of high resolution.
    • 等离子体显示模块,其构造有底座; 等离子体显示面板,其由所述底座支撑在所述底座的前方,以显示图像; 安装有驱动等离子体显示面板的多个电路装置的电路板,由底座支撑在底座后面; 以及电连接电路板和等离子体显示面板并且直接接地到底座的连接电缆。 因此,由于其接地结构,该模块在被驱动时将是电气稳定的,并且适用于提供高分辨率的图像。
    • 7. 发明授权
    • Input circuits configured to operate using a range of supply voltages
    • 配置为使用一系列电源电压进行操作的输入电路
    • US07388410B2
    • 2008-06-17
    • US11350711
    • 2006-02-09
    • Eon-Guk KimDae-Gyu KimJae-Bum Choi
    • Eon-Guk KimDae-Gyu KimJae-Bum Choi
    • H03B1/00H03K3/00
    • H03K19/0013H03K3/3565
    • An input circuit includes an input signal transmission circuit configured to output a first transmission signal at a first output node in response to an input signal at an input node, and a Schmitt trigger inverter configured to output a second transmission signal at a second output node in response to the first transmission signal. The input signal transmission circuit includes a voltage drop element connected to the input node and configured to provide a voltage drop between the input node and a transistor having a gate to which a first supply voltage is applied. An input circuit may include an input signal transmission circuit configured to output a first transmission signal in response to an input signal and a feedback control signal, a Schmitt trigger inverter configured to output a second transmission signal in response to the first transmission signal and a second control signal, and an enable block configured to generate the feedback control signal and the second control signal in response to an enable signal.
    • 输入电路包括输入信号传输电路,其被配置为响应于输入节点处的输入信号而在第一输出节点处输出第一传输信号,施密特触发器反相器被配置为在第二输出节点处输出第二传输信号 响应于第一传输信号。 输入信号传输电路包括连接到输入节点并被配置为在输入节点和具有施加了第一电源电压的栅极的晶体管之间提供电压降的电压降单元。 输入电路可以包括输入信号传输电路,其被配置为响应于输入信号和反馈控制信号输出第一传输信号,施密特触发器反相器被配置为响应于第一传输信号输出第二传输信号,第二传输信号 控制信号以及响应于使能信号产生反馈控制信号和第二控制信号的使能块。
    • 8. 发明申请
    • Input circuits configured to operate using a range of supply voltages
    • 配置为使用一系列电源电压进行操作的输入电路
    • US20060181322A1
    • 2006-08-17
    • US11350711
    • 2006-02-09
    • Eon-Guk KimDae-Gyu KimJae-Bum Choi
    • Eon-Guk KimDae-Gyu KimJae-Bum Choi
    • H03K3/037
    • H03K19/0013H03K3/3565
    • An input circuit includes an input signal transmission circuit configured to output a first transmission signal at a first output node in response to an input signal at an input node, and a Schmitt trigger inverter configured to output a second transmission signal at a second output node in response to the first transmission signal. The input signal transmission circuit includes a voltage drop element connected to the input node and configured to provide a voltage drop between the input node and a transistor having a gate to which a first supply voltage is applied. An input circuit may include an input signal transmission circuit configured to output a first transmission signal in response to an input signal and a feedback control signal, a Schmitt trigger inverter configured to output a second transmission signal in response to the first transmission signal and a second control signal, and an enable block configured to generate the feedback control signal and the second control signal in response to an enable signal.
    • 输入电路包括输入信号传输电路,其被配置为响应于输入节点处的输入信号而在第一输出节点处输出第一传输信号,施密特触发器反相器被配置为在第二输出节点处输出第二传输信号 响应于第一传输信号。 输入信号传输电路包括连接到输入节点并被配置为在输入节点和具有施加了第一电源电压的栅极的晶体管之间提供电压降的电压降单元。 输入电路可以包括输入信号传输电路,其被配置为响应于输入信号和反馈控制信号输出第一传输信号,施密特触发器反相器被配置为响应于第一传输信号输出第二传输信号,第二传输信号 控制信号以及响应于使能信号产生反馈控制信号和第二控制信号的使能块。
    • 9. 发明申请
    • LVDS receiver for controlling current based on frequency and method of operating the LDVS receiver
    • 基于频率控制电流的LVDS接收器和操作LDVS接收器的方法
    • US20060002483A1
    • 2006-01-05
    • US11173485
    • 2005-06-30
    • Dae-Gyu Kim
    • Dae-Gyu Kim
    • H04B3/00H03D3/24
    • H04L25/085H04L7/0008
    • In an embodiment, an LVDS (Low Voltage Differential Signaling) receiver includes at least one LVDS input buffer, a clock generating unit, and a bias circuit. The clock generating unit includes a voltage controlled oscillator for generating a clock signal tracking a frequency of data received via the at least one LVDS input buffer based on a control voltage. The bias circuit controls current sources that supply current to at least one differential amplifier in the at least one LVDS input buffer based on the control voltage of the clock signal generating unit. Therefore, the LVDS receiver can save current consumed in LVDS input buffers by controlling the amount of current supplied to the at least one differential amplifier included in the at least one LVDS input buffers.
    • 在一个实施例中,LVDS(低电压差分信令)接收器包括至少一个LVDS输入缓冲器,时钟发生单元和偏置电路。 时钟发生单元包括压控振荡器,用于产生跟踪经由至少一个LVDS输入缓冲器基于控制电压接收的数据频率的时钟信号。 偏置电路控制基于时钟信号产生单元的控制电压向至少一个LVDS输入缓冲器中的至少一个差分放大器供电的电流源。 因此,LVDS接收器可以通过控制提供给包括在至少一个LVDS输入缓冲器中的至少一个差分放大器的电流量来节省在LVDS输入缓冲器中消耗的电流。