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    • 2. 发明授权
    • Driving apparatus for display device
    • 显示装置用驱动装置
    • US07196701B2
    • 2007-03-27
    • US09823927
    • 2001-03-29
    • Yusuke TsutsuiMakoto KitagawaMitsugu KobayashiHisao Uehara
    • Yusuke TsutsuiMakoto KitagawaMitsugu KobayashiHisao Uehara
    • G09G5/00
    • G09G3/3611G09G3/3696G09G2330/021
    • A power supply circuit (300) for a display device such as a liquid crystal outputs a boosted supply voltage VDD2 during normal operation, and generates a non-boosted supply voltage VDD2 having a voltage lower than that during the normal display operation by controlling the switches for switching the output within the power supply circuit (300) during a power save mode. The non-boosted supply voltage is supplied to the analog circuits of a driving circuit (100) so that the power consumption at the analog circuits is reduced. By controlling the switch for switching the output within the power supply circuit and the supply of the power supply clock, the circuit can be switched, in the power save mode, to either a mode where a lower supply voltage is generated or to a mode where the power supply is turned off.
    • 用于诸如液晶的显示装置的电源电路(300)在正常操作期间输出升压的电源电压VDD 2,并且通过控制产生具有低于正常显示操作期间电压的非升压电源电压VDD 2 用于在节电模式期间切换电源电路(300)内的输出的开关。 非升压电源电压被提供给驱动电路(100)的模拟电路,使得模拟电路的功耗降低。 通过控制用于切换电源电路内的输出的开关和电源时钟的供给,可以在省电模式下将电路切换到产生较低电源电压的模式或者其中 电源关闭。
    • 4. 发明授权
    • Charge pump type power supply circuit and driving circuit for display device and display device using such power supply circuit
    • 电荷泵型电源电路和显示装置的驱动电路以及使用这种电源电路的显示装置
    • US06891427B2
    • 2005-05-10
    • US09823328
    • 2001-03-29
    • Yusuke TsutsuiMakoto KitagawaMitsugu KobayashiHisao Uehara
    • Yusuke TsutsuiMakoto KitagawaMitsugu KobayashiHisao Uehara
    • G02F1/133G09G3/20G09G3/36H02M1/36H02M3/07G09G5/00
    • H02M1/36G09G3/3696H02M3/07
    • A driving circuit of a display device such as a liquid crystal generates power supply clocks (1 and 2) based on a system clock during the normal display operation which is not a power save mode. The generated power supply clocks are supplied, directly or after inversion, to the switches (SW1 through SW4 (and SW5 through SW8)) in a charge pump type power supply circuit (300) for switching the connection of capacitors (C1 and C2 (and C11 and C12)) in the power supply circuit (300). In this manner, supply voltages VDD2 and VDD3 which function as the driving power supply for a driving circuit (100) and a display panel (200) can be obtained at the power supply circuit (300) by boosting the input voltage Vin. The driving circuit (100) stops supply of the power supply clocks to the power supply circuit (300) when a transition to the power save mode is instructed and a power save control signal generated by a CPU I/F circuit (16) is changed, thereby suspending generation of the supply voltage an consumption of power consumption at the circuit and display panel.
    • 诸如液晶的显示装置的驱动电路在不是省电模式的正常显示操作期间基于系统时钟产生电源时钟(1和2)。 在用于切换电容器(C)的连接的电荷泵型电源电路(300)中,将所产生的电源时钟直接或反转后提供给开关(SW 1至SW 4(和SW 5至SW 8)) 1和C 2(和C 11和C 12))。 以这种方式,通过升压输入电压Vin,可以在电源电路(300)获得用作驱动电路(100)和显示面板(200)的驱动电源的电源电压VDD 2和VDD 3。 驱动电路(100)在指示向省电模式的转变时停止向电源电路(300)供给电源时钟,并且由CPU I / F电路(16)产生的省电控制信号发生变化 从而暂停生成电源电压消耗电路和显示面板的功耗。
    • 5. 发明授权
    • Digital correction circuit and image data processing apparatus equipped with a digital correction circuit
    • 具有数字校正电路的数字校正电路和图像数据处理装置
    • US06278496B1
    • 2001-08-21
    • US09168773
    • 1998-10-08
    • Makoto KitagawaMitsugu KobayashiMakoto FujiokaYusuke TsutsuiHisao Uehara
    • Makoto KitagawaMitsugu KobayashiMakoto FujiokaYusuke TsutsuiHisao Uehara
    • H04N5202
    • H04N5/202G09G3/2059G09G3/3648G09G2320/0276G09G2320/0606G09G2320/0626G09G2320/066H04N9/69
    • In the &ggr; correction circuit, a crossover point arithmetic processing unit performs arithmetic processing for each region on crossover points y in the output data direction of a &ggr; correction crossover line based on a plurality of slope data A respectively specified for each of a plurality of regions and crossover point positions X in the input data direction set in advance. A 5-to-4 encoder and a selector select one of a plurality of slope data A respectively specified for each of a plurality of regions and one result B of the results y of arithmetic processing on said crossover points based on the upper bits of input data, a flag encoder and another selector calculate the difference &Dgr;X from a crossover point position in the input data direction to the input data in the region to which input data belongs, and an arithmetic processing unit multiples the above difference &Dgr;X by the selected slope A, adds the multiplication result to the value of the selected crossover point position B in the output data direction, and outputs that value as a &ggr; correction value. Consequently, even if the number of crossover lines for digital &ggr; correction increases, arithmetic processing is simplified. When an image data processing apparatus is used, a pseudo gray scale processing circuit may be provided in a later stage of this &ggr; correction circuit to decrease the number of data bits.
    • 在伽马校正电路中,交叉点算术处理单元基于分别为多个区域中的每一个指定的多个斜率数据A,对伽马校正交叉线的输出数据方向上的交叉点y上的各区域进行运算处理 并在预先设定的输入数据方向上的交叉点位置X。 5对4编码器和选择器选择分别为多个区域中的每一个指定的多个斜率数据A中的一个,以及基于输入的较高位的所述交叉点上的算术处理结果y的一个结果B 数据,标志编码器​​和另一个选择器从输入数据方向上的交叉点位置到输入数据所属的区域中的输入数据计算差DELTAX,并且运算处理单元将上述差DELTAX乘以所选择的斜率A ,将乘法结果与输出数据方向上所选交叉点位置B的值相加,并输出该值作为伽马校正值。 因此,即使用于数字伽马校正的交叉线的数量增加,也能够简化算术处理。 当使用图像数据处理装置时,可以在该伽马校正电路的后期提供伪灰度级处理电路以减少数据比特数。
    • 9. 发明申请
    • Display
    • 显示
    • US20060208991A1
    • 2006-09-21
    • US11283045
    • 2005-11-21
    • Tamotsu UekuriYusuke TsutsuiMakoto Kitagawa
    • Tamotsu UekuriYusuke TsutsuiMakoto Kitagawa
    • G09G3/36
    • G09G3/3655G09G3/3614G09G3/3677G09G2300/0876G09G2310/06
    • A display capable of rendering flickering hard to visually recognize, reducing power consumption and simplifying the structure of a circuit for negatively/positively reversing an image is provided. This display comprises a plurality of drain lines and a plurality of gate lines, a first pixel portion and a second pixel portion each including a subsidiary capacitor having a first electrode and a second electrode and a first subsidiary capacitance line and a second subsidiary capacitance line connected to the subsidiary capacitors of the first pixel portion and the second pixel portion respectively. The display also comprises a signal supply circuit supplying either a first signal or a second signal for negatively/positively reversing an image to the first subsidiary capacitance line of the first pixel portion when displaying the image while supplying either a third signal or a fourth signal for negatively/positively reversing the image to the second subsidiary capacitance line of the second pixel portion when reversing the image.
    • 本发明提供了一种显示器,其能够呈现出难以视觉识别的闪烁,降低功耗并简化了电路的结构,从而使/否正反转图像。 该显示器包括多个漏极线和多条栅极线,第一像素部分和第二像素部分,每个包括具有第一电极和第二电极的辅助电容器和第二辅助电容线路以及连接到第二辅助电容线路的第二像素部分 分别到第一像素部分和第二像素部分的辅助电容器。 显示器还包括信号供给电路,当显示图像时,向第一像素部分的第一辅助电容线提供第一信号或第二信号,用于负/正反转图像,同时提供第三信号或第四信号 当图像反转时,负/正反转图像到第二像素部分的第二辅助电容线。
    • 10. 发明授权
    • Display device
    • 显示设备
    • US07091946B2
    • 2006-08-15
    • US10454777
    • 2003-06-05
    • Yusuke TsutsuiMakoto KitagawaMitsugu Kobayashi
    • Yusuke TsutsuiMakoto KitagawaMitsugu Kobayashi
    • G09G3/36
    • G09G3/3648G09G2310/0248G09G2310/04G09G2330/021
    • A mask circuit is provided in a display device having a plurality of pixels. The mask circuit supplies a video signal to each of the pixels in a partial display area selected based on a display area selection signal, and prevents the supply of the video signal to each of the pixels in a background display area. Accordingly, this display device displays an arbitrary pattern at an arbitrary position of the display panel of the display device. In addition, an inverting controlling circuit is provided for inverting the background display signal supplied to each of the pixels in the background display area for each frame. The power consumption of the display device can be reduced.
    • 在具有多个像素的显示装置中设置有掩模电路。 掩模电路将视频信号提供给基于显示区域选择信号选择的部分显示区域中的每个像素,并且防止视频信号提供给背景显示区域中的每个像素。 因此,该显示装置在显示装置的显示面板的任意位置显示任意图案。 此外,提供反转控制电路,用于反转提供给每帧的背景显示区域中的每个像素的背景显示信号。 可以减少显示装置的功耗。