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    • 1. 发明授权
    • Timed sequence mixed color display
    • 定时序列混色显示
    • US09280938B2
    • 2016-03-08
    • US12978173
    • 2010-12-23
    • Rod G. FleckDerek Leslie Knee
    • Rod G. FleckDerek Leslie Knee
    • G09G3/36G09G3/34
    • G09G3/3413G09G3/3611G09G2300/0452G09G2310/0235G09G2320/0242G09G2320/0261G09G2330/021
    • In embodiments of mixed sequential color display, a light source sequentially generates different colors of light in a timed sequence. A display panel is implemented with multiple sub-pixel combinations, where each pixel of the display panel is a combination of sub-pixels that emit a color based on a color of the light that illuminates a sub-pixel combination. The emitted color from a sub-pixel combination is generated as a product of the color of the light and a combination of sub-pixel colors (to include clear and/or colored sub-pixels). The clear and/or different colored sub-pixels in a sub-pixel combination are a spatial aspect of the emitted color, and the sequentially generated different colors of light are a temporal aspect of the emitted color. The pixel combination and the light source together enhance the luminescence of the emitted color over the chrominescence of the emitted color.
    • 在混合顺序彩色显示的实施例中,光源以定时顺序顺序地产生不同颜色的光。 显示面板具有多个子像素组合,其中显示面板的每个像素是基于照亮子像素组合的光的颜色发出颜色的子像素的组合。 产生来自子像素组合的发射颜色作为光的颜色和子像素颜色的组合(包括清晰和/或着色的子像素)的乘积。 子像素组合中的透明和/或不同颜色的子像素是发射颜色的空间方面,并且顺序生成的不同颜色的光是发射颜色的时间方面。 像素组合和光源一起增强发射颜色在所发射的颜色发光上的发光。
    • 4. 发明申请
    • POWER SAVING FIELD SEQUENTIAL COLOR
    • 省电场地顺序颜色
    • US20120287142A1
    • 2012-11-15
    • US13104264
    • 2011-05-10
    • Rod G. FleckDerek Leslie Knee
    • Rod G. FleckDerek Leslie Knee
    • G09G5/02
    • G09G3/3413G09G2310/0235G09G2320/0276G09G2320/0613G09G2320/0646G09G2330/021G09G2360/16
    • In embodiments of power saving field sequential color (FSC), an illumination source illuminates pixels of a displayable image by sequentially generating RGB (red, green, blue) components of a pixel in a timed sequence of field sequential color. The pixels of a displayable image may also include a white component derived from the RGB components. An illumination reduction algorithm is implemented to determine the highest RGB (or RGBW) components from any of the pixels of the displayable image. The highest RGB (or RGBW) components can be determined from any combination of the same or different pixels of the displayable image. The illumination reduction algorithm then divides each of the highest RGB (or RGBW) components by a maximum brightness value to generate respective RGB (or RGBW) component factors. A display controller then processes each pixel of the displayable image for display according to the RGB (or RGBW) component factors.
    • 在功率节省场顺序颜色(FSC)的实施例中,照明源通过以场顺序颜色的定时序列顺序地生成像素的RGB(红色,绿色,蓝色)分量来照亮可显示图像的像素。 可显示图像的像素还可以包括从RGB分量导出的白色分量。 实现照明降低算法以从可显示图像的任何像素中确定最高的RGB(或RGBW)分量。 可以从可显示图像的相同或不同像素的任何组合来确定最高的RGB(或RGBW)分量。 照明降低算法然后将最高RGB(或RGBW)分量中的每一个除以最大亮度值以生成相应的RGB(或RGBW)分量因子。 然后,显示控制器根据RGB(或RGBW)分量因子处理可显示图像的每个像素以进行显示。
    • 5. 发明授权
    • Power saving field sequential color
    • 省电字段顺序颜色
    • US08704844B2
    • 2014-04-22
    • US13104264
    • 2011-05-10
    • Rod G. FleckDerek Leslie Knee
    • Rod G. FleckDerek Leslie Knee
    • G09G3/16G09G5/00G09G5/02A61B1/06H04N9/04H04N9/083H04N5/57H04N9/12H04N1/46G03F3/08G06K9/00G06K9/40
    • G09G3/3413G09G2310/0235G09G2320/0276G09G2320/0613G09G2320/0646G09G2330/021G09G2360/16
    • In embodiments of power saving field sequential color (FSC), an illumination source illuminates pixels of a displayable image by sequentially generating RGB (red, green, blue) components of a pixel in a timed sequence of field sequential color. The pixels of a displayable image may also include a white component derived from the RGB components. An illumination reduction algorithm is implemented to determine the highest RGB (or RGBW) components from any of the pixels of the displayable image. The highest RGB (or RGBW) components can be determined from any combination of the same or different pixels of the displayable image. The illumination reduction algorithm then divides each of the highest RGB (or RGBW) components by a maximum brightness value to generate respective RGB (or RGBW) component factors. A display controller then processes each pixel of the displayable image for display according to the RGB (or RGBW) component factors.
    • 在功率节省场顺序颜色(FSC)的实施例中,照明源通过依次产生场顺序颜色的定时序列中的像素的RGB(红色,绿色,蓝色)分量来照亮可显示图像的像素。 可显示图像的像素还可以包括从RGB分量导出的白色分量。 实现照明降低算法以从可显示图像的任何像素中确定最高的RGB(或RGBW)分量。 可以从可显示图像的相同或不同像素的任何组合来确定最高的RGB(或RGBW)分量。 照明降低算法然后将最高RGB(或RGBW)分量中的每一个除以最大亮度值以生成相应的RGB(或RGBW)分量因子。 然后,显示控制器根据RGB(或RGBW)分量因子处理可显示图像的每个像素以进行显示。
    • 7. 发明申请
    • Mixed Sequential Color Display
    • 混合顺序彩色显示
    • US20120162270A1
    • 2012-06-28
    • US12978173
    • 2010-12-23
    • Rod G. FleckDerek Leslie Knee
    • Rod G. FleckDerek Leslie Knee
    • G09G5/10G09G3/36
    • G09G3/3413G09G3/3611G09G2300/0452G09G2310/0235G09G2320/0242G09G2320/0261G09G2330/021
    • In embodiments of mixed sequential color display, a light source sequentially generates different colors of light in a timed sequence. A display panel is implemented with multiple sub-pixel combinations, where each pixel of the display panel is a combination of sub-pixels that emit a color based on a color of the light that illuminates a sub-pixel combination. The emitted color from a sub-pixel combination is generated as a product of the color of the light and a combination of sub-pixel colors (to include clear and/or colored sub-pixels). The clear and/or different colored sub-pixels in a sub-pixel combination are a spatial aspect of the emitted color, and the sequentially generated different colors of light are a temporal aspect of the emitted color. The pixel combination and the light source together enhance the luminescence of the emitted color over the chrominescence of the emitted color.
    • 在混合顺序彩色显示的实施例中,光源以定时顺序顺序地产生不同颜色的光。 显示面板具有多个子像素组合,其中显示面板的每个像素是基于照亮子像素组合的光的颜色发出颜色的子像素的组合。 产生来自子像素组合的发射颜色作为光的颜色和子像素颜色的组合(包括清晰和/或着色的子像素)的乘积。 子像素组合中的透明和/或不同颜色的子像素是发射颜色的空间方面,并且顺序生成的不同颜色的光是发射颜色的时间方面。 像素组合和光源一起增强发射颜色在所发射的颜色发光上的发光。
    • 10. 发明申请
    • Display Region Refresh
    • 显示区域刷新
    • US20120162238A1
    • 2012-06-28
    • US12978141
    • 2010-12-23
    • Rod G. FleckDerek Leslie Knee
    • Rod G. FleckDerek Leslie Knee
    • G09G5/36
    • G09G3/20G09G3/3433G09G2320/103G09G2330/021G09G2340/0435
    • In embodiments of display region refresh, a display panel has addressable display regions that display at different display refresh rates. Display data is buffered to update the addressable display regions, and subsequent display data is received to further update the addressable display regions. A display controller can determine display update deltas that indicate pending display updates based on a comparison of the display data to the subsequent display data. A first addressable display region can then be refreshed at display refresh rate based on a first display update delta that corresponds to the first addressable display region, and a second addressable display region can be refreshed at a different display refresh rate based on a second display update delta that corresponds to the second addressable display region.
    • 在显示区域刷新的实施例中,显示面板具有以不同的显示刷新率显示的可寻址显示区域。 显示数据被缓冲以更新可寻址的显示区域,并且接收后续显示数据以进一步更新可寻址的显示区域。 显示控制器可以基于显示数据与后续显示数据的比较来确定指示未决显示更新的显示更新增量。 然后可以基于对应于第一可寻址显示区域的第一显示更新增量以显示刷新率刷新第一可寻址显示区域,并且可以基于第二显示更新以不同的显示刷新率刷新第二可寻址显示区域 delta对应于第二可寻址显示区域。