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    • 1. 发明授权
    • Liquid crystal display and portable terminal having the same
    • 具有相同的液晶显示器和便携式终端
    • US07746308B2
    • 2010-06-29
    • US11454518
    • 2006-06-16
    • Noboru ToyozawaYoshiharu Nakajima
    • Noboru ToyozawaYoshiharu Nakajima
    • G09G3/36
    • G09G3/3677G09G3/2011G09G3/3614G09G3/3659G09G2300/0809G09G2300/0857G09G2310/04G09G2320/10G09G2330/02G09G2330/021G09G2340/0428
    • A liquid crystal display that is unsusceptible to the effect of a pixel potential during writing of data to a memory, allowing a large margin to be provided against variation in characteristics of transistors forming a pixel circuit, and a portable terminal having the liquid crystal display. In a pixel circuit including a memory circuit (25), separate paths are provided for writing image data from a signal line (16-i) to the memory circuit (25) via a data-write switch (24) and for reading image data held in the memory circuit (25) out into a liquid crystal cell unit via a data-read switch (27). Furthermore, image data are read via a data-read buffer (26). Accordingly, when image data is written to the memory, data held in the memory circuit (25) is not affected by a pixel potential. Thus, a large margin can be provided against variation in the characteristics of the transistors forming the pixel circuit, serving to avoid variation in picture quality due to the variation in the transistor characteristics.
    • 一种液晶显示器,其在将数据写入存储器期间不受影响像素电位的影响,允许针对形成像素电路的晶体管的特性的变化提供较大的余量,以及具有液晶显示器的便携式终端。 在包括存储器电路(25)的像素电路中,提供分离的路径,用于经由数据写入开关(24)将图像数据从信号线(16-i)写入存储器电路(25)并用于读取图像数据 通过数据读取开关(27)将其保持在存储器电路(25)中并进入液晶单元单元。 此外,经由数据读取缓冲器(26)读取图像数据。 因此,当将图像数据写入存储器时,保持在存储电路(25)中的数据不受像素电位的影响。 因此,为了避免由于晶体管特性的变化引起的图像质量的变化,可以提供大的边缘来抵抗形成像素电路的晶体管的特性的变化。
    • 3. 发明授权
    • Liquid crystal display and portable terminal having the same
    • 具有相同的液晶显示器和便携式终端
    • US08456399B2
    • 2013-06-04
    • US12776986
    • 2010-05-10
    • Noboru ToyozawaYoshiharu Nakajima
    • Noboru ToyozawaYoshiharu Nakajima
    • G09G3/36
    • G09G3/3677G09G3/2011G09G3/3614G09G3/3659G09G2300/0809G09G2300/0857G09G2310/04G09G2320/10G09G2330/02G09G2330/021G09G2340/0428
    • A liquid crystal display that is unsusceptible to the effect of a pixel potential during writing of data to a memory, allowing a large margin to be provided against variation in characteristics of transistors forming a pixel circuit, and a portable terminal having the liquid crystal display. In a pixel circuit including a memory circuit (25), separate paths are provided for writing image data from a signal line (16-i) to the memory circuit (25) via a data-write switch (24) and for reading image data held in the memory circuit (25) out into a liquid crystal cell unit via a data-read switch (27). Furthermore, image data are read via a data-read buffer (26). Accordingly, when image data is written to the memory, data held in the memory circuit (25) is not affected by a pixel potential. Thus, a large margin can be provided against variation in the characteristics of the transistors forming the pixel circuit, serving to avoid variation in picture quality due to the variation in the transistor characteristics.
    • 一种液晶显示器,其在将数据写入存储器期间不受影响像素电位的影响,允许针对形成像素电路的晶体管的特性的变化提供较大的余量,以及具有液晶显示器的便携式终端。 在包括存储器电路(25)的像素电路中,提供分离的路径,用于经由数据写入开关(24)将图像数据从信号线(16-i)写入存储器电路(25)并用于读取图像数据 通过数据读取开关(27)将其保持在存储器电路(25)中并进入液晶单元单元。 此外,经由数据读取缓冲器(26)读取图像数据。 因此,当将图像数据写入存储器时,保持在存储电路(25)中的数据不受像素电位的影响。 因此,为了避免由于晶体管特性的变化引起的图像质量的变化,可以提供大的边缘来抵抗形成像素电路的晶体管的特性的变化。
    • 5. 发明授权
    • Level converter circuit, display device and portable terminal device
    • 电平转换电路,显示设备和便携式终端设备
    • US07911434B2
    • 2011-03-22
    • US11529683
    • 2006-09-27
    • Noboru ToyozawaYoshiharu Nakajima
    • Noboru ToyozawaYoshiharu Nakajima
    • G09G3/36
    • H03K19/0016G09G3/20G09G3/3659G09G3/3688G09G2300/0408G09G2300/0814G09G2300/0842G09G2310/0232G09G2310/0289G09G2310/0297G09G2310/08G09G2330/021H03K3/356113
    • This invention realizes reduction in consumption of DC current in a level converter circuit by setting level shifters in an operating state only when necessary in accordance with hierarchical control, in which an output pulse of a level shifter (311) that is constantly in a power-ON state is used to set a level shifter (321) of the next hierarchical level in the operating state, then output pulses of the level shifter (311) and the level shifter (321) are used to generate control pulses LT1 and LT2, which are used to set level shifters (341 to 346) of the next hierarchical level in the operating state, and an output pulse of one of the level shifters is used to set level shifters (351), (352) and (353) of the next hierarchical level in the operating state. Thus, a level converter circuit in which the consumption of DC current is reduced and which enables reduction in power consumption of the whole device, a display device equipped with this level converter circuit, and a portable telephone device using the display device as an output display unit can be constructed.
    • 本发明通过仅在根据分级控制的必要时将电平移位器设定在工作状态来实现电平转换器电路中的直流电流的消耗的降低,其中,电平转换器(311)的输出脉冲始终处于电源转换器 ON状态用于在操作状态下设置下一级别的电平移位器(321),然后使用电平移位器(311)和电平移位器(321)的输出脉冲来产生控制脉冲LT1和LT2, 用于在操作状态下设置下一层级的电平移位器(341至346),并且使用一个电平移位器的输出脉冲来设置电平移位器(351),(352)和(353)的电平移位器 在运行状态下的下一层级。 因此,其中直流电流的消耗减少并且能够降低整个装置的功耗的电平转换器电路,配备有该电平转换器电路的显示装置以及使用显示装置作为输出显示器的便携式电话装置 单位可以建造。
    • 7. 发明申请
    • Power supply generating circuit, display apparatus, and portable terminal device
    • 电源发生电路,显示装置和便携式终端装置
    • US20070040827A1
    • 2007-02-22
    • US11590169
    • 2006-10-30
    • Noboru ToyozawaYoshiharu Nakajima
    • Noboru ToyozawaYoshiharu Nakajima
    • G09G5/00
    • H02M3/073G09G3/36G09G2330/022H02M3/07
    • A power supply generating circuit, a display apparatus incorporating the same, and a portable terminal device using the display apparatus as an output display unit are provided. In a DC-DC converter having a charge pump circuit (31), a voltage dividing circuit (32), and a regulation circuit (33), p-channel MOS transistors (Qp21, Qp22, Qp31) are turned on/off based on an enable pulse enb to make the voltage dividing circuit (32) and a comparator (41) active only for a period of regulation time and inactive otherwise. This can cause a current to flow in voltage-divider resistors (R1, R2) and the comparator (41) only for a certain period of time required for the regulation operation, thus reducing the power consumption loss caused by a constant current flow in the voltage-divider resistors (R1, R2) and the comparator (41).
    • 提供电源发生电路,其结合的显示装置以及使用该显示装置作为输出显示单元的便携式终端装置。 在具有电荷泵电路(31),分压电路(32)和调节电路(33)的DC-DC转换器中,p沟道MOS晶体管(Qp 21,Qp 22,Qp 31)导通/ 基于使能脉冲enb使得分压电路(32)和比较器(41)仅在调节时间的周期内有效,否则不起作用。 这可能导致电流在分压电阻(R 1,R 2)和比较器(41)中流过调节操作所需的一段时间,从而减少由恒定电流流动引起的功耗损耗 在分压电阻(R 1,R 2)和比较器(41)中。
    • 8. 发明申请
    • Display device
    • 显示设备
    • US20060152460A1
    • 2006-07-13
    • US10542503
    • 2003-12-25
    • Noboru ToyozawaYoshiharu NakajimaHirotoshi Koyama
    • Noboru ToyozawaYoshiharu NakajimaHirotoshi Koyama
    • G09G3/36
    • G09G3/3677G09G3/2011G09G3/3614G09G3/3648G09G3/3655G09G3/3696G09G2300/0876G09G2310/027G09G2310/08G09G2330/02G09G2330/021
    • A display apparatus that can improve power savings in a waiting mode is disclosed. The display apparatus (0) is used as a display component of an electronic device capable of switching between a normal power consumption state and a low power consumption state and includes a panel in which a display area (2) and a peripheral circuit section for driving the display area are integrally formed on an insulating substrate (1). The circuit section can switch between an operation mode and a waiting mode in response to the switching between the normal power consumption state and the low power consumption state of a main body of the electronic device. The circuit section includes standby control means that, in the operation mode, the circuit section operates by receiving a power supply voltage from the main body of the electronic device and drives the display area (2) to show an image. In the waiting mode, while receiving the power supply voltage from the main body of the electronic device, the standby control means stops driving the display area 2 and inactivates the circuit section to suppress power consumption. The standby control means executes a control sequence to shut off direct current components flowing through resistive elements at least included in the circuit section during the inactivation.
    • 公开了一种可以提高等待模式下的节能的显示装置。 显示装置(0)用作能够在正常功耗状态和低功耗状态之间切换的电子设备的显示部件,并且包括其中显示区域(2)和用于驱动的​​外围电路部分 显示区域一体地形成在绝缘基板(1)上。 响应于电子设备的主体的正常功耗状态和低功耗状态之间的切换,电路部分可以在操作模式和等待模式之间切换。 电路部分包括备用控制装置,在操作模式中,电路部分通过从电子设备的主体接收电源电压并驱动显示区域(2)来显示图像来操作。 在等待模式中,待机控制装置在从电子装置主体接收电源电压的同时,停止驱动显示区域2,使电路部分失效以抑制电力消耗。 备用控制装置执行控制顺序,以在停用期间截止至少包括在电路部分中的电阻元件流过的直流分量。
    • 10. 发明授权
    • Power supply generating circuit, display apparatus, and portable terminal device
    • 电源发生电路,显示装置和便携式终端装置
    • US07872646B2
    • 2011-01-18
    • US11590169
    • 2006-10-30
    • Noboru ToyozawaYoshiharu Nakajima
    • Noboru ToyozawaYoshiharu Nakajima
    • G09G5/00H02M3/18
    • H02M3/073G09G3/36G09G2330/022H02M3/07
    • A power supply generating circuit, a display apparatus incorporating the same, and a portable terminal device using the display apparatus as an output display unit are provided. In a DC-DC converter having a charge pump circuit (31), a voltage dividing circuit (32), and a regulation circuit (33), p-channel MOS transistors (Qp21, Qp22, Qp31) are turned on/off based on an enable pulse enb to make the voltage dividing circuit (32) and a comparator (41) active only for a period of regulation time and inactive otherwise. This can cause a current to flow in voltage-divider resistors (R1, R2) and the comparator (41) only for a certain period of time required for the regulation operation, thus reducing the power consumption loss caused by a constant current flow in the voltage-divider resistors (R1, R2) and the comparator (41).
    • 提供电源发生电路,其结合的显示装置以及使用该显示装置作为输出显示单元的便携式终端装置。 在具有电荷泵电路(31),分压电路(32)和调节电路(33)的DC-DC转换器中,基于P沟道MOS晶体管(Qp21,Qp22,Qp31)的导通/截止 使得分压电路(32)和比较器(41)的使能脉冲enb仅在调节时间段内有效,否则不起作用。 这可能导致电流在分压电阻器(R1,R2)和比较器(41)中流动一段调节操作所需的一段时间,从而降低了由于恒流电流引起的功耗损耗 分压电阻(R1,R2)和比较器(41)。