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    • 11. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20140159045A1
    • 2014-06-12
    • US14180415
    • 2014-02-14
    • Semiconductor Energy Laboratory Co., Ltd.
    • Munehiro AzamiShou NagaoYoshifumi Tanada
    • H01L29/786
    • H01L29/786H03K19/01714H03K19/01721
    • There is provided a semiconductor device in which fabrication steps can be reduced by constructing a circuit using only TFTs of one conductivity type and in which a voltage amplitude of an output signal can be normally obtained. A capacitance (205) is provided between a gate and a source of a TFT (203) connected to an output node, and a circuit formed of TFTs (201) and (202) has a function to bring a node α into a floating state. When the node α is in the floating state, a potential of the node α is caused higher than VDD by using gate-source capacitance coupling of the TFT (203) through the capacitance (205), thus an output signal having an amplitude of VDD−GND can be normally obtained without causing amplitude attenuation due to the threshold value of the TFT.
    • 提供了一种半导体器件,其中可以通过仅使用一种导电类型的TFT构成电路并且可以正常获得输出信号的电压振幅来减小制造步骤。 电容(205)设置在连接到输出节点的TFT(203)的栅极和源极之间,并且由TFT(201)和(202)形成的电路具有使节点α成为浮置状态的功能 。 当节点α处于浮置状态时,通过使用TFT(203)通过电容(205)的栅源电容耦合,使节点α的电位高于VDD,因此具有VDD的幅度的输出信号 通常可以获得-GND,而不会由于TFT的阈值引起振幅衰减。
    • 14. 发明授权
    • Semiconductor device
    • 半导体器件
    • US09136385B2
    • 2015-09-15
    • US14180415
    • 2014-02-14
    • Semiconductor Energy Laboratory Co., Ltd.
    • Munehiro AzamiShou NagaoYoshifumi Tanada
    • H01L29/786H03K19/017
    • H01L29/786H03K19/01714H03K19/01721
    • There is provided a semiconductor device in which fabrication steps can be reduced by constructing a circuit using only TFTs of one conductivity type and in which a voltage amplitude of an output signal can be normally obtained. A capacitance (205) is provided between a gate and a source of a TFT (203) connected to an output node, and a circuit formed of TFTs (201) and (202) has a function to bring a node α into a floating state. When the node α is in the floating state, a potential of the node α is caused higher than VDD by using gate-source capacitance coupling of the TFT (203) through the capacitance (205), thus an output signal having an amplitude of VDD−GND can be normally obtained without causing amplitude attenuation due to the threshold value of the TFT.
    • 提供了一种半导体器件,其中可以通过仅使用一种导电类型的TFT构成电路并且可以正常获得输出信号的电压振幅来减小制造步骤。 电容(205)设置在连接到输出节点的TFT(203)的栅极和源极之间,并且由TFT(201)和(202)形成的电路具有使节点α成为浮置状态的功能 。 当节点α处于浮置状态时,通过使用TFT(203)通过电容(205)的栅源电容耦合,使节点α的电位高于VDD,因此具有VDD的幅度的输出信号 通常可以获得-GND,而不会由于TFT的阈值引起振幅衰减。
    • 15. 发明申请
    • PULSE OUTPUT CIRCUIT, SHIFT REGISTER AND ELECTRONIC EQUIPMENT
    • 脉冲输出电路,移位寄存器和电子设备
    • US20130251091A1
    • 2013-09-26
    • US13760147
    • 2013-02-06
    • SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
    • Shou NagaoYoshifumi TanadaYutaka ShionoiriHiroyuki Miyake
    • G11C19/28
    • G11C19/28G09G3/3688G09G2310/0275G11C19/00
    • A driver circuit of a display device, which includes TFTs of a single conductivity type and outputs an output signal with normal amplitude. A pulse is inputted to TFTs 101 and 104 to turn ON the TFTs and a potential of a node α is raised. When the potential of the node α reaches (VDD−VthN), the node α becomes in a floating state. Accordingly, a TFT 105 is turned ON and a potential of an output node is raised as a clock signal becomes High level. On the other hand, a potential of a gate electrode of the TFT 105 is further raised due to an operation of a capacitance means 107 as the potential of the output node is raised, so that the potential of the gate electrode of the TFT 105 becomes higher than (VDD+VthN). Thus, the potential of the output node is raised to VDD without causing a voltage drop due to a threshold voltage of the TFT 105. An output at the subsequent stage is then inputted to a TFT 103 to turn the TFT 103 ON, while the potential of the node α of TFTs 102 and 106 is dropped to turn the TFT 105 OFF. As a result, the potential of the output node becomes Low level.
    • 一种显示装置的驱动电路,其包括单导电类型的TFT并输出具有正常振幅的输出信号。 一个脉冲被输入到TFT101和104,使TFT导通,并且提高节点α的电位。 当节点α的电位达到(VDD-VthN)时,节点α变为浮动状态。 因此,随着时钟信号变为高电平,TFT 105导通,输出节点的电位升高。 另一方面,随着输出节点的电位升高,由于电容装置107的操作,TFT 105的栅电极的电位进一步上升,使得TFT 105的栅电极的电位变为 高于(VDD + VthN)。 因此,输出节点的电位升高到VDD,而不会由于TFT 105的阈值电压引起电压降。然后,后级的输出被输入到TFT103,使TFT103导通,同时电位 的TFT102和106的节点α的下降以使TFT 105关闭。 结果,输出节点的电位变为低电平。