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    • 3. 发明授权
    • Display brightness control circuit
    • 显示亮度控制电路
    • US08059141B2
    • 2011-11-15
    • US11923970
    • 2007-10-25
    • Hiroki AwakuraAkihito AkaiYoshiki KurokawaNaoki TakadaGoro Sakamaki
    • Hiroki AwakuraAkihito AkaiYoshiki KurokawaNaoki TakadaGoro Sakamaki
    • G09G5/10
    • G09G3/3406G09G3/3233G09G2300/0842G09G2320/064G09G2360/144
    • A display brightness control circuit of a liquid crystal display device includes a logarithmic-linear converting circuit for converting an illuminance signal having a logarithmic relationship with incident light into a linear signal. When an output of an external light sensor is a logarithmic signal, the logarithmic signal is converted into a linear signal through the logarithmic-linear converting circuit, and when an output of the external light sensor is a linear signal, the logarithmic-linear converting circuit is not involved. The logarithmic-linear converting circuit corresponds to an exponential circuit which is an inverse function of a logarithm log. Further, when even the same logarithmic output illuminance sensor is different in input-output characteristics, setting of the abovementioned exponential circuit can be changed.
    • 液晶显示装置的显示亮度控制电路包括对数线性转换电路,用于将具有入射光的对数关系的照度信号转换为线性信号。 当外部光传感器的输出是对数信号时,通过对数线性转换电路将对数信号转换成线性信号,并且当外部光传感器的输出是线性信号时,对数线性转换电路 不参与 对数线性转换电路对应于作为对数日志的反函数的指数电路。 此外,即使相同的对数输出照度传感器在输入输出特性上不同,也可以改变上述指数电路的设定。
    • 4. 发明申请
    • DISPLAY DRIVER
    • 显示驱动器
    • US20110242139A1
    • 2011-10-06
    • US12750781
    • 2010-03-31
    • Goki ToshimaYasuyuki KudoYoshiki KurokawaAkihito Akai
    • Goki ToshimaYasuyuki KudoYoshiki KurokawaAkihito Akai
    • G09G5/10
    • G09G3/3406G09G2320/0646G09G2330/021G09G2340/02
    • The display driver achieves the balance between the image quality and power-cutting ratio by controlling the backlight dimming ratio to keep the image quality after backlight dimming constant. The display driver uses e.g. MSE (Mean Square Error) as an index of image quality. The reference gradation control unit controls the data decompression and backlight dimming ratios, thereby to keep the image quality after backlight dimming constant. Assuming display data decompression, and backlight dimming, the error calculating unit calculates a decrease of luminance for an input displayed image as MSE based on the decompression and dimming ratios of a preceding frame, in advance. In the case of MSE over a predetermined value, the decompression unit and light-adjustment control unit decrease the decompression and dimming ratios to below those of the preceding frame, respectively. In the case of MSE below the value, the ratios are lowered to below those of the preceding frame.
    • 显示驱动器通过控制背光调光比来实现图像质量和功率切换比之间的平衡,以在背光调光之后保持图像质量恒定。 显示驱动器使用例如 MSE(均方误差)作为图像质量的指标。 参考灰度控制单元控制数据解压缩和背光调光比,从而在背光调光恒定后保持图像质量。 假设显示数据解压缩和背光调光,误差计算单元预先基于前一帧的解压缩和调光比来计算输入显示图像的亮度的降低为MSE。 在MSE超过预定值的情况下,解压缩单元和调光控制单元分别将解压缩和调光比降低到前一帧以下。 在MSE低于该值的情况下,比率降低到低于前一帧的比率。
    • 7. 发明申请
    • POWER CIRCUIT AND DISPLAY DEVICE USING SAME
    • 使用相同的电源电路和显示设备
    • US20100265242A1
    • 2010-10-21
    • US12760582
    • 2010-04-15
    • Naoki TAKADANaruhiko KasaiTakuya EriguchiYuki OkadaMitsuru GotoAkihito Akai
    • Naoki TAKADANaruhiko KasaiTakuya EriguchiYuki OkadaMitsuru GotoAkihito Akai
    • G06F3/038G05F1/00
    • H02M3/156
    • A power circuit includes a coil that charges an electric charge of an input voltage, a switch device that controls charging and discharging of the coil, a diode that rectifies the flow of the electric charge from the coil, a capacitor that stabilizes an output voltage when the switch device is turned on, and a driving circuit that controls ON and OFF states of the switch device. The power circuit alternately switches the ON and OFF states of the switch device to control charging and discharging of the coil and the capacitor, and generates and supplies an output voltage higher than the input voltage, and the driving circuit controls the off-period of the switch device according to the on-period of the switch device and the voltage ratio of the output voltage and the input voltage while changing the repetition period of the ON and OFF states of the switch device.
    • 电源电路包括对输入电压的电荷进行充电的线圈,控制线圈的充电和放电的开关装置,对来自线圈的电荷的流量进行整流的二极管,稳定输出电压的电容器, 开关装置被接通,以及控制开关装置的ON和OFF状态的驱动电路。 电源电路交替地切换开关器件的导通和截止状态,以控制线圈和电容器的充电和放电,并产生并提供高于输入电压的输出电压,并且驱动电路控制 开关装置根据开关装置的导通周期和开关装置的ON和OFF状态的重复周期,输出电压和输入电压的电压比。
    • 9. 发明授权
    • Driving circuits for display device
    • 显示设备的驱动电路
    • US07616221B2
    • 2009-11-10
    • US10879047
    • 2004-06-30
    • Yasuyuki KudoAkihito AkaiTakuya EriguchiKazuo OkadoHiroki Aizawa
    • Yasuyuki KudoAkihito AkaiTakuya EriguchiKazuo OkadoHiroki Aizawa
    • G09G3/36G09G5/10G06F3/038
    • G09G3/2011G09G3/2025G09G3/3614G09G3/3688G09G3/3696G09G2330/021
    • A driving circuit provided by the present invention is characterized in that the driving circuit selects a gray-scale voltage in accordance with high-order bits of display data from a group of gray-scale voltages with their voltage level varying step by step from fractional time period to fractional time period, which are set in advance, and outputs the selected gray-scale voltage during a time period between the start of a scanning period and a time at which a number assigned to a fractional time period matches quantitative information contained in low-order bits of the display data. In addition, the driving circuit provided by the present invention is also characterized in that the time ratio of the first fractional time period is set at a relatively high value while the time ratios of the second and subsequent fractional time periods are each set at a relatively low value.
    • 本发明提供的驱动电路的特征在于,驱动电路根据来自一组灰度级电压的显示数据的高位选择灰度电压,其电压电平从分数时间逐步变化 预先设定的时间间隔到分数时间段,并且在扫描周期的开始和分配给分数时间段的时间之间的时间段期间输出所选择的灰度级电压与低包含的定量信息相匹配 显示数据的顺序位。 此外,本发明提供的驱动电路的特征还在于,将第一分数时间段的时间比设定为相对较高的值,同时将第二和后续分数时间段的时间比率设置为相对较高 低价值。