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    • 91. 发明申请
    • Liquid Crystal Display Device
    • 液晶显示装置
    • US20070109247A1
    • 2007-05-17
    • US11622510
    • 2007-01-12
    • Jun KOYAMATomoaki AtsumiHiroyuki Miyake
    • Jun KOYAMATomoaki AtsumiHiroyuki Miyake
    • G09G3/36
    • G09G3/3648G09G3/3677G09G3/3688G09G2300/0809G09G2300/0828G09G2300/0842G09G2300/0857
    • A liquid crystal display device with low power consumption is provided. In the liquid crystal display device having a source signal line driver circuit, a gate signal line driver circuit, a DAC controller, and a pixel portion and performing an image display using an n-bit (n is a natural number, n≧2) digital image signal, one pixel has memory circuits for storing an n-bit digital image signal and a D/A converter, and the n-bit digital image signal for one frame can be stored in the pixel. In case of a static image display, the image signal stored in the memory circuits is read out every frame to perform the display, and thus, only a DAC controller is driven during the display. Therefore, this contributes to a reduction of the power consumption of the entire liquid crystal display device.
    • 提供具有低功耗的液晶显示装置。 在具有源极信号线驱动电路,栅极信号线驱动电路,DAC控制器和像素部分的液晶显示装置中,使用n位(n为自然数,n> = 2)进行图像显示 )数字图像信号,一个像素具有用于存储n位数字图像信号和D / A转换器的存储电路,并且用于一帧的n位数字图像信号可以存储在像素中。 在静态图像显示的情况下,每帧读出存储在存储器电路中的图像信号以进行显示,因此在显示期间仅驱动DAC控制器。 因此,这有助于降低整个液晶显示装置的功耗。
    • 94. 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
    • US20060280279A1
    • 2006-12-14
    • US11467022
    • 2006-08-24
    • Shou NagaoYoshifumi TanadaYutaka ShionoiriHiroyuki Miyake
    • Shou NagaoYoshifumi TanadaYutaka ShionoiriHiroyuki Miyake
    • G11C19/00
    • 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,随后阶段的输出被输入到TFT 103以使TFT 103导通,同时TFT 102和106的节点α的电位下降以使TFT 105关闭。 结果,输出节点的电位变为低电平。
    • 97. 发明申请
    • Drive device
    • 驱动装置
    • US20060207250A1
    • 2006-09-21
    • US10554498
    • 2004-04-30
    • Noriyuki KomoriIchihiro AbeHiroyuki MiyakeHideki KunishioYuji Tadano
    • Noriyuki KomoriIchihiro AbeHiroyuki MiyakeHideki KunishioYuji Tadano
    • F01B29/10F02G1/04
    • F03G7/065
    • The driving device includes a bendable shape memory alloy member, a resilient member for applying a tension to the shape memory alloy member in a longitudinal direction thereof, a bending member for bending the shape memory alloy member, and a movable body moved by a displacement of the shape memory alloy member. The bending member contacts the shape memory alloy member, so that the tension is applied to the shape memory alloy member in the longitudinal direction thereof. Compared with the driving device in which the shape memory alloy member is linearly disposed, the decrease in the amount of displacement can be suppressed, so that a space efficiency can be enhanced and the downsizing of the driving device can be accomplished.
    • 驱动装置包括可弯曲形状记忆合金构件,用于向形状记忆合金构件沿其纵向施加张力的弹性构件,用于弯曲形状记忆合金构件的弯曲构件,以及通过位移移动的移动体 形状记忆合金构件。 弯曲构件与形状记忆合金构件接触,使得张力在其形状记忆合金构件的纵向上被施加到形状记忆合金构件。 与形状记忆合金构件线性配置的驱动装置相比,可以抑制位移量的减小,从而可以提高空间效率并且可以实现驱动装置的小型化。