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    • 2. 发明授权
    • Multi-primary colour display device
    • 多原色显示设备
    • US09311841B2
    • 2016-04-12
    • US14343186
    • 2012-09-04
    • Shinji NakagawaHiroyuki FurukawaKazuyoshi YoshiyamaYasuhiro Yoshida
    • Shinji NakagawaHiroyuki FurukawaKazuyoshi YoshiyamaYasuhiro Yoshida
    • G09G5/10G09G3/20G09G3/36
    • G09G3/2003G09G3/3607G09G2300/0452G09G2320/0242G09G2340/0457G09G2340/06G09G2360/16
    • This multi-primary-color display device (100) includes a multi-primary-color display panel (10) and a signal converter (20). The display device assigns a plurality of subpixels that form each pixel to a plurality of virtual pixels and is able to conduct a display operation using each of the plurality of virtual pixels as a minimum color display unit. The signal converter (20) includes: a low-frequency multi-primary-color signal generating section (21) which generates a low-frequency multi-primary-color signal; a high-frequency luminance signal generating section (22) which generates a high-frequency luminance signal; and a rendering processing section (23) which performs rendering processing on the plurality of virtual pixels based on the low-frequency multi-primary-color signal and the high-frequency luminance signal. The signal converter (20) further includes a magnitude of correction calculating section (24) which calculates, based on an input image signal, the magnitude of correction to be made on the high-frequency luminance signal during the rendering processing.
    • 该多原色显示装置(100)包括多原色显示面板(10)和信号转换器(20)。 显示装置将形成每个像素的多个子像素分配给多个虚拟像素,并且能够使用多个虚拟像素中的每一个作为最小颜色显示单元进行显示操作。 信号转换器(20)包括:产生低频多原色信号的低频多原色信号产生部分(21); 生成高频亮度信号的高频亮度信号生成部(22); 以及基于所述低频多原色信号和所述高频亮度信号对所述多个虚拟像素进行再现处理的渲染处理部(23)。 信号转换器(20)还包括校正计算部分(24)的大小,其根据输入图像信号计算在渲染处理期间对高频亮度信号进行校正的幅度。
    • 3. 发明申请
    • MULTI-PRIMARY COLOR DISPLAY DEVICE
    • 多主色彩显示设备
    • US20140152714A1
    • 2014-06-05
    • US14232133
    • 2012-07-12
    • Shinji NakagawaKazuyoshi YoshiyamaHiroyuki FurukawaNaoko KondohYasuhiro Yoshida
    • Shinji NakagawaKazuyoshi YoshiyamaHiroyuki FurukawaNaoko KondohYasuhiro Yoshida
    • G09G5/02
    • G09G5/02G09G3/2003G09G3/3607G09G3/3648G09G2300/0452G09G2340/0457G09G2340/06H04N9/67
    • A multiple primary color display device (100) includes a plurality of pixels (P) located in a matrix including a plurality of rows and a plurality of columns. The plurality of pixels are each formed of a plurality of sub pixels including at least four sub pixel for displaying different primary colors from one another. The multiple primary color display device can sort the plurality of sub pixels which form each of the pixels into n number of virtual pixels (n is an integer of 2 or greater), each of which is formed of two or more sub pixels, and use each of the n number of virtual pixels as a minimum color display unit for providing display. The two or more sub pixels which form each of the n number of virtual pixels include a sub pixel common to another of the n number of virtual pixels. When a line having a width corresponding to the n number of virtual pixels is displayed, two sub pixels which are located at both of two ends, in a width direction, of the line and which display a certain identical primary color to each other have a luminance lower than the luminance that the two sub pixels originally have.
    • 多原色显示设备(100)包括位于包括多行和多列的矩阵中的多个像素(P)。 多个像素分别由包括至少四个子像素的多个子像素形成,用于彼此显示不同的原色。 多原色显示装置可以将形成每个像素的多个子像素分成n个虚拟像素(n是2或更大的整数),每个子像素由两个或更多个子像素形成,并且使用 n个虚拟像素中的每一个作为用于提供显示的最小颜色显示单元。 形成n个虚拟像素中的每一个的两个或更多个子像素包括与n个虚拟像素中的另一个通用的子像素。 当显示具有与n个虚拟像素相对应的宽度的线时,位于线的宽度方向上的两端的两个并且彼此显示一定相同原色的两个子像素具有 亮度低于两个子像素原来具有的亮度。
    • 4. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20120313843A1
    • 2012-12-13
    • US13578744
    • 2011-02-15
    • Naoko KondohHiroyuki FurukawaKazuyoshi YoshiyamaShinji NakagawaYasuhiro Yoshida
    • Naoko KondohHiroyuki FurukawaKazuyoshi YoshiyamaShinji NakagawaYasuhiro Yoshida
    • G09G5/02
    • G09G3/2003G09G2300/0452G09G2340/0457G09G2340/06
    • A display device according to the present invention includes a plurality of pixels arranged in a matrix. Each of the plurality of pixels is formed of four or five types of sub pixels that display different colors from each other. In each pixel, a first sub pixel that displays a color having the highest luminance and a second sub pixel that displays a color having the second highest luminance are located so as not to be adjacent to each other. The four or five types of sub pixels include a plurality of display units, each of which is capable of displaying a specific color and is formed of one sub pixel or two or more continuous sub pixels. In the display device according to the present invention, when an input image has a resolution higher than a display resolution defined by a total number of the plurality of pixels, each of the plurality of display units is usable as a virtual pixel for providing display. According to the present invention, a multiple primary color display device which suppresses the decline of display quality even when the resolution of an input image is higher than the resolution of the display device is provided.
    • 根据本发明的显示装置包括以矩阵排列的多个像素。 多个像素中的每一个由彼此显示不同颜色的四种或五种类型的子像素形成。 在每个像素中,显示具有最高亮度的颜色的第一子像素和显示具有第二高亮度的颜色的第二子像素被定位成不彼此相邻。 四种或五种类型的子像素包括多个显示单元,每个显示单元能够显示特定颜色,并且由一个子像素或两个或更多个连续子像素形成。 在根据本发明的显示装置中,当输入图像具有高于由多个像素的总数定义的显示分辨率的分辨率时,多个显示单元中的每一个可用作用于提供显示的虚拟像素。 根据本发明,提供了即使当输入图像的分辨率高于显示装置的分辨率时也抑制显示质量下降的多原色显示装置。
    • 7. 发明申请
    • MULTI-PRIMARY COLOUR DISPLAY DEVICE
    • 多主色彩显示设备
    • US20140225940A1
    • 2014-08-14
    • US14343186
    • 2012-09-04
    • Shinji NakagawaHiroyuki FurukawaKazuyoshi YoshiyamaYasuhiro Yoshida
    • Shinji NakagawaHiroyuki FurukawaKazuyoshi YoshiyamaYasuhiro Yoshida
    • G09G3/20G09G3/36
    • G09G3/2003G09G3/3607G09G2300/0452G09G2320/0242G09G2340/0457G09G2340/06G09G2360/16
    • This multi-primary-color display device (100) includes a multi-primary-color display panel (10) and a signal converter (20). The display device assigns a plurality of subpixels that form each pixel to a plurality of virtual pixels and is able to conduct a display operation using each of the plurality of virtual pixels as a minimum color display unit. The signal converter (20) includes: a low-frequency multi-primary-color signal generating section (21) which generates a low-frequency multi-primary-color signal; a high-frequency luminance signal generating section (22) which generates a high-frequency luminance signal; and a rendering processing section (23) which performs rendering processing on the plurality of virtual pixels based on the low-frequency multi-primary-color signal and the high-frequency luminance signal. The signal converter (20) further includes a magnitude of correction calculating section (24) which calculates, based on an input image signal, the magnitude of correction to be made on the high-frequency luminance signal during the rendering processing.
    • 该多原色显示装置(100)包括多原色显示面板(10)和信号转换器(20)。 显示装置将形成每个像素的多个子像素分配给多个虚拟像素,并且能够使用多个虚拟像素中的每一个作为最小颜色显示单元进行显示操作。 信号转换器(20)包括:产生低频多原色信号的低频多原色信号产生部分(21); 生成高频亮度信号的高频亮度信号生成部(22); 以及基于所述低频多原色信号和所述高频亮度信号对所述多个虚拟像素进行再现处理的渲染处理部(23)。 信号转换器(20)还包括校正计算部分(24)的大小,其根据输入图像信号计算在渲染处理期间对高频亮度信号进行校正的幅度。
    • 10. 发明授权
    • Display device conversion device, display device correction circuit, display device driving device, display device, display device examination device, and display method
    • 显示装置转换装置,显示装置校正电路,显示装置驱动装置,显示装置,显示装置检查装置及显示方法
    • US07382382B2
    • 2008-06-03
    • US10740795
    • 2003-12-22
    • Hiroyuki FurukawaYasuhiro YoshidaMasafumi Ueno
    • Hiroyuki FurukawaYasuhiro YoshidaMasafumi Ueno
    • G09G5/10G09G3/36
    • H04N9/315G09G3/2051G09G3/3688G09G2320/0276G09G2320/0285H04N9/69
    • The liquid crystal display device inputs a signal, corrected by a correction circuit provided with a sigmoid inverse function generator, to a source driver. A sigmoid function which is an S-shaped function is used to approximate an input/output characteristic (applied voltage-transmittance curve) of a liquid crystal panel. The sigmoid inverse function generator converts an input signal by using an inverse function of the sigmoid function obtained by performing the approximation. A γ conversion circuit provided on the correction circuit and the sigmoid inverse function generator realize the desired γ characteristic regardless of a characteristic of the liquid crystal panel. Further, since the inverse function of the sigmoid function which is an S-shaped function is used, it is possible to provide a display device which corrects the input/output characteristic of the display panel by performing the approximation in accordance with not plural functions but a single function (without dividing the characteristic into sections).
    • 液晶显示装置将由具有S型反函数发生器的校正电路校正的信号输入到源极驱动器。 使用S形函数的S形函数来近似液晶面板的输入/输出特性(施加电压 - 透射率曲线)。 S形反函数发生器通过使用通过执行近似获得的S形函数的反函数来转换输入信号。 设置在校正电路上的γ转换电路和S形反相函数发生器实现期望的伽马特性,而与液晶面板的特性无关。 此外,由于使用作为S形功能的S形函数的反函数,所以可以提供一种显示装置,其通过根据多个功能执行近似来校正显示面板的输入/输出特性,但是 单个功能(不分为特征)。