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    • 1. 发明申请
    • SHIFT REGISTER AND DRIVING CIRCUIT AND DISPLAY DEVICE USING THE SAME
    • 移位寄存器和驱动电路以及使用它的显示器件
    • US20080130822A1
    • 2008-06-05
    • US11772833
    • 2007-07-03
    • Chun-Yuan HsuJan-Ruei LinHsiang-Yun WeiChe-Cheng KuoChun-Yao Huang
    • Chun-Yuan HsuJan-Ruei LinHsiang-Yun WeiChe-Cheng KuoChun-Yao Huang
    • G11C19/28
    • G11C19/28
    • A shift register, a driving circuit and a display device using the same are disclosed. The shift register includes a 1st and a 2nd rectifying elements and 1st˜4th transistors. 1st source/drains of the 1st˜3rd transistors receive a common voltage respectively. The gates of the 1st and 3rd transistors and a 2nd source/drain of the 2nd transistor are coupled to a 2nd terminal of the 2nd rectifying element. The gates of the 2nd and 4th transistors and a 2nd source/drain of the 1st transistor are coupled to a 2nd terminal of the 1st rectifying element. A 1st source/drain of the 4th transistor is coupled to a 2nd source/drain of the 3rd transistor. The 1st terminals of the 1st and 2nd rectifying elements respectively receive input signals and a 1st clock signal. A 2nd source/drain of the 4th transistor receives a 2nd clock signal.
    • 公开了一种移位寄存器,驱动电路和使用该移位寄存器的显示装置。 移位寄存器包括一个第一和第二个整流元件和一个第一至第四个第三晶体管。 1 〜3 晶体管的1 / SUP源极/漏极分别接收公共电压。 第一晶体管和第三晶体管的栅极和第二晶体管的第二和/或第二源极/漏极 耦合到第2和/或(SUP)整流元件的第2端子。 第二晶体管的第二和第四和第四晶体管的栅极和第一晶体管的第二和/或第二源极/漏极 耦合到第1级校正元件的2端子端子。 第四晶体管的源极/漏极的第一个源极/漏极耦合到第三晶体管的第二源极/漏极, SUP>晶体管。 第一和第二和/或第二整流元件的第一端子分别接收输入信号和第一时钟 信号。 第4个晶体管的源极/漏极的第2个/第2个源极/漏极接收第二个时钟信号。
    • 2. 发明申请
    • ORGANIC LIGHT EMITTING DIODE DRIVING DEVICE
    • 有机发光二极管驱动装置
    • US20080106504A1
    • 2008-05-08
    • US11754309
    • 2007-05-27
    • Hsiang-Yun WeiChun-Yuan HsuChe-Cheng KuoChun-Yao HuangJan-Ruei Lin
    • Hsiang-Yun WeiChun-Yuan HsuChe-Cheng KuoChun-Yao HuangJan-Ruei Lin
    • G09G3/32
    • G09G3/3233G09G2320/0233
    • The present invention discloses an OLED driving device, including a first switch transistor, a first transistor, a second switch transistor, a storage capacitor and a second transistor. The first switch transistor is used to receive a data signal, and output the data signal by the control of a first scan signal. The first transistor is used to compensate the effect of the threshold voltage of the second transistor. The second switch transistor is used to receive a voltage signal, and output the voltage signal by the control of a second scan signal. The storage capacitor is used to store a data voltage. The second transistor is electrically connected to the second switch transistor through the storage capacitor. The present invention can efficiently release the charges from the storage capacitor, enhance display effect, and change the input voltage level for adapting different operating voltages of integrate circuits.
    • 本发明公开了一种OLED驱动装置,包括第一开关晶体管,第一晶体管,第二开关晶体管,存储电容器和第二晶体管。 第一开关晶体管用于接收数据信号,并通过第一扫描信号的控制来输出数据信号。 第一晶体管用于补偿第二晶体管的阈值电压的影响。 第二开关晶体管用于接收电压信号,并且通过控制第二扫描信号来输出电压信号。 存储电容用于存储数据电压。 第二晶体管通过存储电容器电连接到第二开关晶体管。 本发明可以有效地从存储电容器中释放电荷,增强显示效果,并且改变输入电压电平以适应集成电路的不同工作电压。
    • 3. 发明授权
    • Shift register and driving circuit and display device using the same
    • 移位寄存器和驱动电路以及使用其的显示装置
    • US07447292B2
    • 2008-11-04
    • US11772833
    • 2007-07-03
    • Chun-Yuan HsuJan-Ruei LinHsiang-Yun WeiChe-Cheng KuoChun-Yao Huang
    • Chun-Yuan HsuJan-Ruei LinHsiang-Yun WeiChe-Cheng KuoChun-Yao Huang
    • G11C19/00
    • G11C19/28
    • A shift register, a driving circuit and a display device using the same are disclosed. The shift register includes a 1st and a 2nd rectifying elements and 1st˜4th transistors. 1st source/drains of the 1st˜3rd transistors receive a common voltage respectively. The gates of the 1st and 3rd transistors and a 2nd source/drain of the 2nd transistor are coupled to a 2nd terminal of the 2nd rectifying element. The gates of the 2nd and 4th transistors and a 2nd source/drain of the 1st transistor are coupled to a 2nd terminal of the 1st rectifying element. A 1st source/drain of the 4th transistor is coupled to a 2nd source/drain of the 3rd transistor. The 1st terminals of the 1st and 2nd rectifying elements respectively receive input signals and a 1st clock signal. A 2nd source/drain of the 4th transistor receives a 2nd clock signal.
    • 公开了一种移位寄存器,驱动电路和使用该移位寄存器的显示装置。 移位寄存器包括一个第一和第二个整流元件和一个第一至第四个第三晶体管。 1 〜3 晶体管的1 / SUP源极/漏极分别接收公共电压。 第一晶体管和第三晶体管的栅极和第二晶体管的第二和/或第二源极/漏极 耦合到第2和/或(SUP)整流元件的第2端子。 第二晶体管的第二和第四和第四晶体管的栅极和第一晶体管的第二和/或第二源极/漏极 耦合到第1级校正元件的2端子端子。 第四晶体管的源极/漏极的第一个源极/漏极耦合到第三晶体管的第二源极/漏极, SUP>晶体管。 第一和第二和/或第二整流元件的第一端子分别接收输入信号和第一时钟 信号。 第4 晶体管的源极/漏极的第2个源极/漏极接收第2个时钟信号。
    • 4. 发明授权
    • Organic light emitting diode driving device
    • 有机发光二极管驱动装置
    • US07777705B2
    • 2010-08-17
    • US11754309
    • 2007-05-27
    • Hsiang-Yun WeiChun-Yuan HsuChe-Cheng KuoChun-Yao HuangJan-Ruei Lin
    • Hsiang-Yun WeiChun-Yuan HsuChe-Cheng KuoChun-Yao HuangJan-Ruei Lin
    • G09G3/32
    • G09G3/3233G09G2320/0233
    • The present invention discloses an OLED driving device, including a first switch transistor, a first transistor, a second switch transistor, a storage capacitor and a second transistor. The first switch transistor is used to receive a data signal, and output the data signal by the control of a first scan signal. The first transistor is used to compensate the effect of the threshold voltage of the second transistor. The second switch transistor is used to receive a voltage signal, and output the voltage signal by the control of a second scan signal. The storage capacitor is used to store a data voltage. The second transistor is electrically connected to the second switch transistor through the storage capacitor. The present invention can efficiently release the charges from the storage capacitor, enhance display effect, and change the input voltage level for adapting different operating voltages of integrate circuits.
    • 本发明公开了一种OLED驱动装置,包括第一开关晶体管,第一晶体管,第二开关晶体管,存储电容器和第二晶体管。 第一开关晶体管用于接收数据信号,并通过第一扫描信号的控制来输出数据信号。 第一晶体管用于补偿第二晶体管的阈值电压的影响。 第二开关晶体管用于接收电压信号,并且通过控制第二扫描信号来输出电压信号。 存储电容用于存储数据电压。 第二晶体管通过存储电容器电连接到第二开关晶体管。 本发明可以有效地从存储电容器中释放电荷,增强显示效果,并且改变输入电压电平以适应集成电路的不同工作电压。