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    • 1. 发明授权
    • Organic EL drive circuit IC
    • 有机EL驱动电路IC
    • US07580013B2
    • 2009-08-25
    • US11156535
    • 2005-06-21
    • Hiroshi YagumaShinichi AbeMasato Kobayashi
    • Hiroshi YagumaShinichi AbeMasato Kobayashi
    • G09G3/30
    • G09G3/3233G09G3/3283G09G2300/0842G09G2300/0861G09G2310/0251G09G2320/0233
    • An organic EL drive circuit includes a reset voltage generator circuit for generating a predetermined constant voltage for constant voltage resetting, reset switches provided between an output of the reset voltage generator circuit and terminal pins of an organic EL display panel and ON/OFF controlled by one of the timing control signal, a reset control signal similar to the timing control signal, a reset pulse, other pulse generated in the reset period in synchronism with these signal, and the pulse and an output terminal for outputting the predetermined constant voltage to other organic EL drive circuits, which have identical circuit constructions to that of the organic EL drive circuit and arranged adjacently to the organic EL drive circuit, as a voltage for constant voltage resetting.
    • 有机EL驱动电路包括用于产生用于恒定电压复位的预定恒定电压的复位电压发生器电路,设置在复位电压发生器电路的输出和有机EL显示面板的端子引脚之间的复位开关和由一个控制的ON / OFF 定时控制信号的复位控制信号,与定时控制信号类似的复位控制信号,复位脉冲,与这些信号同步的复位期间产生的其他脉冲,以及用于将预定恒定电压输出到其他有机物的输出端子 EL驱动电路具有与有机EL驱动电路相同的电路结构,并且与有机EL驱动电路相邻配置,作为恒压复位的电压。
    • 4. 发明申请
    • Organic EL drive circuit and organic EL display device using the same organic EL drive circuit
    • 有机EL驱动电路和使用相同有机EL驱动电路的有机EL显示装置
    • US20050259050A1
    • 2005-11-24
    • US11127249
    • 2005-05-12
    • Masanori FujisawaShinichi AbeHiroshi Yaguma
    • Masanori FujisawaShinichi AbeHiroshi Yaguma
    • H01L51/50G09G3/20G09G3/30G09G3/32H05B33/14
    • G09G3/325G09G3/3283G09G2300/0842G09G2310/027G09G2320/0233
    • A current inputted from a first input terminal and a reference current generated by an internal reference current generator circuit, which are in phase, are inputted to a reference current selector circuit by which either the inputted current or the reference current is selected. The selected current is temporarily phase-inverted by a current inverter circuit and drives a current mirror circuit of a current distributor circuit (or a reference current regulator circuit) for duplicating the reference current and distributing them. Currents, each of which is in phase with the reference current or the inputted current and has same current value as that of the reference current or the inputted current, can be generated in the output side transistors of the current mirror circuit. In order to realize this, a second output side transistor is provided in the current mirror circuit so that a current, which is in phase with the reference current and has substantially equal value to that of the selected current, is supplied from the output terminal to a next stage integrated circuit as an input reference current.
    • 从第一输入端子输入的电流和同相的内部参考电流发生器电路产生的参考电流输入到选择了输入电流或参考电流的参考电流选择电路。 所选择的电流由当前的逆变器电路暂时相位反相,并驱动用于复制参考电流并分配它们的电流分配器电路(或参考电流调节器电路)的电流镜像电路。 可以在电流镜电路的输出侧晶体管中产生与参考电流或输入电流同相并且具有与参考电流或输入电流相同的电流值的电流。 为了实现这一点,在电流镜电路中设置第二输出侧晶体管,使得与参考电流同相并且与所选择的电流基本相等的电流从输出端子被提供给 下一级集成电路作为输入参考电流。
    • 8. 发明授权
    • Organic EL drive circuit and organic EL display device using the same organic EL drive circuit
    • 有机EL驱动电路和使用相同有机EL驱动电路的有机EL显示装置
    • US07586469B2
    • 2009-09-08
    • US11127249
    • 2005-05-12
    • Masanori FujisawaShinichi AbeHiroshi Yaguma
    • Masanori FujisawaShinichi AbeHiroshi Yaguma
    • G09G3/30
    • G09G3/325G09G3/3283G09G2300/0842G09G2310/027G09G2320/0233
    • A current inputted from a first input terminal and a reference current generated by an internal reference current generator circuit, which are in phase, are inputted to a reference current selector circuit by which either the inputted current or the reference current is selected. The selected current is temporarily phase-inverted by a current inverter circuit and drives a current mirror circuit of a current distributor circuit (or a reference current regulator circuit) for duplicating the reference current and distributing them. Currents, each of which is in phase with the reference current or the inputted current and has same current value as that of the reference current or the inputted current, can be generated in the output side transistors of the current mirror circuit. In order to realize this, a second output side transistor is provided in the current mirror circuit so that a current, which is in phase with the reference current and has substantially equal value to that of the selected current, is supplied from the output terminal to a next stage integrated circuit as an input reference current.
    • 从第一输入端子输入的电流和同相的内部参考电流发生器电路产生的参考电流输入到选择了输入电流或参考电流的参考电流选择电路。 所选择的电流由当前的逆变器电路暂时相位反相,并驱动用于复制参考电流并分配它们的电流分配器电路(或参考电流调节器电路)的电流镜像电路。 可以在电流镜电路的输出侧晶体管中产生与参考电流或输入电流同相并且具有与参考电流或输入电流相同的电流值的电流。 为了实现这一点,在电流镜电路中设置第二输出侧晶体管,使得与参考电流同相并且与所选择的电流基本相等的电流从输出端子被提供给 下一级集成电路作为输入参考电流。
    • 9. 发明授权
    • Reference current generator circuit of organic EL drive circuit, organic EL drive circuit and organic EL display device
    • 有机EL驱动电路的参考电流发生电路,有机EL驱动电路和有机EL显示装置
    • US07372439B2
    • 2008-05-13
    • US11114179
    • 2005-04-26
    • Hiroshi YagumaMasanori FujisawaShinichi Abe
    • Hiroshi YagumaMasanori FujisawaShinichi Abe
    • G09G3/30
    • G09G3/3283G09G3/3208G09G2320/041
    • A first current mirror circuit including an input side transistor, an output transistor and passive elements respectively connected in series with said input side transistor and said output side transistor, temperature coefficients of said passive elements being opposite in characteristics and a second current mirror circuit provided as a load circuit of the first current mirror circuit, for feeding back an output current of the output side transistor to an input of the input side transistor are provided. A drive current is generated on a basis of a current corresponding to a current generated in the output side transistor as a reference current and an operating current ratio of the input side transistor and the output side transistor is selected such that luminance change of organic EL elements with respect to temperature change is restricted.
    • 包括分别与所述输入侧晶体管和所述输出侧晶体管串联连接的输入侧晶体管,输出晶体管和无源元件的第一电流镜电路,所述无源元件的温度系数与特性相反,第二电流镜电路设置为 提供了用于将输出侧晶体管的输出电流反馈到输入侧晶体管的输入的第一电流镜电路的负载电路。 基于与在输出侧晶体管中产生的电流相对应的电流作为参考电流产生驱动电流,并且选择输入侧晶体管和输出侧晶体管的工作电流比,使得有机EL元件的亮度变化 关于温度变化的限制。