CN115185135A - Color filtering module - Google Patents
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- CN115185135A CN115185135A CN202110356151.0A CN202110356151A CN115185135A CN 115185135 A CN115185135 A CN 115185135A CN 202110356151 A CN202110356151 A CN 202110356151A CN 115185135 A CN115185135 A CN 115185135A
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- 239000002245 particle Substances 0.000 description 9
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- G02F1/165—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on translational movement of particles in a fluid under the influence of an applied field
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- G02F1/167—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on translational movement of particles in a fluid under the influence of an applied field characterised by the electro-optical or magneto-optical effect by electrophoresis
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Abstract
本发明提供一种色彩滤波模块。色彩滤波模块设置在显示面板上。色彩滤波模块包括透明基材以及色阻层。透明基材包括阵列排列的多个子像素区域。色阻层设置在所述透明基材上。所述色阻层包括多个色阻单元。所述多个色阻单元各别横跨设置在至少两个子像素区域中,并且所述多个色阻单元在所述透明基材形成错位阵列。本发明的色彩滤波模块可使电泳显示器具有良好的观看效果。
The invention provides a color filter module. The color filter module is arranged on the display panel. The color filter module includes a transparent substrate and a color resist layer. The transparent substrate includes a plurality of sub-pixel regions arranged in an array. A color resist layer is provided on the transparent substrate. The color resist layer includes a plurality of color resist units. The plurality of color resist units are respectively disposed across at least two sub-pixel regions, and the plurality of color resist units form a dislocation array on the transparent substrate. The color filter module of the present invention can make the electrophoretic display have a good viewing effect.
Description
技术领域technical field
本发明涉及一种滤波模块,尤其涉及一种色彩滤波模块。The present invention relates to a filter module, in particular to a color filter module.
背景技术Background technique
电子纸(e-paper)以及电子书(e-book)采用电泳显示(ElectrophoreticDisplay,EPD)技术来达到显示的目的。以显示黑白的电子书为例,电泳显示器的显示介质主要是由电泳液以及掺于电泳液中的黑色带电粒子与白色带电粒子所构成。通过施加电压的方式可以驱动带电粒子移动,以使各个像素分别显示黑色、白色或灰阶。Electronic paper (e-paper) and electronic book (e-book) use electrophoretic display (Electrophoretic Display, EPD) technology to achieve the purpose of display. Taking an e-book displaying black and white as an example, the display medium of the electrophoretic display is mainly composed of electrophoretic liquid and black charged particles and white charged particles mixed in the electrophoretic liquid. The charged particles can be driven to move by applying a voltage, so that each pixel displays black, white or grayscale respectively.
在现有技术中,电泳显示器多半是利用外界光源的反射来达成显示的目的,而通过电压驱动掺于电泳液中的带电粒子可以使各个像素显示出所需的灰阶。再者,为了扩大电泳显示器的应用,亦可于电泳显示薄膜上设置色彩滤波矩阵(Color Filter Array,CFA)。此时,电泳显示器的色彩的呈现主要是利用外界光通过色彩滤波矩阵后,电泳液中的带电粒子会将外界光反射后再穿透色彩滤波矩阵而进行显示。In the prior art, most electrophoretic displays use the reflection of external light sources to achieve the purpose of display, and each pixel can display a desired gray scale by driving charged particles doped in the electrophoretic liquid with a voltage. Furthermore, in order to expand the application of the electrophoretic display, a Color Filter Array (CFA) can also be arranged on the electrophoretic display film. At this time, the color presentation of the electrophoretic display mainly utilizes the external light passing through the color filter matrix, and the charged particles in the electrophoretic liquid will reflect the external light and then penetrate the color filter matrix for display.
一般来说,色彩滤波矩阵主要是由多个不同颜色的滤光图案所组成,且每一个不同颜色的滤光图案会分别对应驱动阵列基材上一个像素单元。电泳显示器利用白色带电粒子与黑色带电粒子进行吸收与反射光线,再搭配红色、蓝色、绿色的滤光图案来呈现彩色的显示画面。Generally speaking, the color filter matrix is mainly composed of a plurality of filter patterns of different colors, and each filter pattern of different colors corresponds to a pixel unit on the driving array substrate. Electrophoretic displays use white charged particles and black charged particles to absorb and reflect light, and then match red, blue, and green filter patterns to present a colorful display screen.
然而,现有的电泳显示器的视角有一定的限制。具体而言,当使用者的视线从较倾斜的角度观看电泳显示器时,进入使用者眼睛的反射光可能会不仅经过一个颜色的滤光图案。如此一来,使用者所看到的图像可能出现混色的现象,影响到观看的体验。However, the viewing angle of the existing electrophoretic displays is limited. Specifically, when the user's line of sight is viewing the electrophoretic display from an oblique angle, the reflected light entering the user's eyes may not only pass through a filter pattern of one color. As a result, the images viewed by the user may appear to be mixed in color, which affects the viewing experience.
发明内容SUMMARY OF THE INVENTION
本发明是针对一种色彩滤波模块,可降低使用者从较倾斜的角度观看电泳显示器时的混色的现象。The present invention is directed to a color filter module, which can reduce the phenomenon of color mixing when a user views an electrophoretic display from an oblique angle.
根据本发明的实施例,本发明的色彩滤波模块设置在显示面板上。色彩滤波模块包括透明基材以及色阻层。透明基材包括阵列排列的多个子像素区域。色阻层设置在所述透明基材上。所述色阻层包括多个色阻单元。所述多个色阻单元各别横跨设置在至少两个子像素区域中,并且所述多个色阻单元在所述透明基材形成错位阵列。According to an embodiment of the present invention, the color filter module of the present invention is disposed on the display panel. The color filter module includes a transparent substrate and a color resist layer. The transparent substrate includes a plurality of sub-pixel regions arranged in an array. A color resist layer is provided on the transparent substrate. The color resist layer includes a plurality of color resist units. The plurality of color resist units are respectively disposed across at least two sub-pixel regions, and the plurality of color resist units form a dislocation array on the transparent substrate.
基于上述,本发明的色彩滤波模块可让使用者在电泳显示装置在较为倾斜的角度的视角所观看到图像不会受到混色的影响,进而使具有本发明的色彩滤波模块的电泳显示装置可具有良好的观看体验。Based on the above, the color filter module of the present invention allows the user to view the image viewed from the electrophoretic display device at a relatively oblique angle without being affected by color mixing, so that the electrophoretic display device having the color filter module of the present invention can have Good viewing experience.
为让本发明的上述特征和优点能更明显易懂,下文特举实施例,并配合附图作详细说明如下。In order to make the above-mentioned features and advantages of the present invention more obvious and easy to understand, the following embodiments are given and described in detail with the accompanying drawings as follows.
附图说明Description of drawings
图1是本发明的一实施例的电泳显示装置的局部剖面图;1 is a partial cross-sectional view of an electrophoretic display device according to an embodiment of the present invention;
图2A是本发明的一实施例的色彩滤波模块的俯视图;2A is a top view of a color filter module according to an embodiment of the present invention;
图2B是本发明的一实施例的重复单元的俯视图;2B is a top view of a repeating unit of an embodiment of the present invention;
图3A是本发明的一实施例的像素区域的俯视图;3A is a top view of a pixel region according to an embodiment of the present invention;
图3B是本发明的图3A的像素区域沿着剖面1-1’的局部剖面图;3B is a partial cross-sectional view of the pixel region of FIG. 3A of the present invention along section 1-1';
图4A是本发明的一实施例的像素区域的俯视图;4A is a top view of a pixel region according to an embodiment of the present invention;
图4B是本发明的图4A的像素区域沿着剖面2-2’的局部剖面图;Figure 4B is a partial cross-sectional view of the pixel region of Figure 4A of the present invention along section 2-2';
图5A是本发明的一实施例的像素区域的俯视图;5A is a top view of a pixel region according to an embodiment of the present invention;
图5B是本发明的图5A的像素区域沿着剖面3-3’的局部剖面图。FIG. 5B is a partial cross-sectional view of the pixel region of FIG. 5A along section 3-3' of the present invention.
附图标记说明Description of reference numerals
100:电泳显示装置;100: electrophoresis display device;
110:显示驱动模块;110: display driver module;
120:显示面板;120: display panel;
121:电泳显示介质;121: electrophoresis display medium;
200:色彩滤波模块;200: color filter module;
210:透明基材;210: transparent substrate;
220:色阻层;220: color resist layer;
221:色阻单元;221: color resistance unit;
221R:红色色阻单元;221R: red color resistance unit;
221G:绿色色阻单元;221G: Green color resistance unit;
221B:蓝色色阻单元;221B: blue color resistance unit;
230:像素区域;230: pixel area;
240:子像素区域;240: sub-pixel area;
241:颜色子像素区域;241: color sub-pixel area;
250:重复单元;250: repeating unit;
251:第一色阻单元;251: the first color resistance unit;
252:第二色阻单元;252: the second color resistance unit;
253:第三色阻单元;253: the third color resistance unit;
290:眼睛;290: eyes;
1-1’、2-2’、3-3’:剖面;1-1', 2-2', 3-3': section;
D1:第一方向;D1: the first direction;
D2:第二方向;D2: the second direction;
D3:第三方向;D3: the third direction;
L1:入射光;L1: incident light;
L2:反射光;L2: reflected light;
P1、P2、P3、P4:投影;P1, P2, P3, P4: projection;
REF:参考轴线;REF: reference axis;
S、T:间隔距离;S, T: separation distance;
θ:角度。θ: Angle.
具体实施方式Detailed ways
现将详细地参考本发明的示范性实施例,示范性实施例的实例说明于附图中。只要有可能,相同元件符号在附图和描述中用来表示相同或相似部分。Reference will now be made in detail to the exemplary embodiments of the present invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numerals are used in the drawings and description to refer to the same or like parts.
图1是本发明的一实施例的电泳显示装置的局部剖面图。为了方便说明起见,图1中省略示出部分元件。以下将以图1说明电泳显示装置100的具体结构。FIG. 1 is a partial cross-sectional view of an electrophoretic display device according to an embodiment of the present invention. For convenience of description, some elements are omitted in FIG. 1 . The specific structure of the
参考图1,电泳显示装置100包括显示驱动模块110、显示面板120以及色彩滤波模块200。并且,显示面板120可沿着第三方向D3设置于显示驱动模块110上。再者,色彩滤波模块200可沿着第三方向D3设置于显示面板120上。在本实施例中,色彩滤波模块200可包括透明基材210以及色阻层220。须说明的是,色阻层220可沿着第三方向D3设置于透明基材210上,并且色阻层220包括沿着第一方向D1以及第二方向D2阵列排列的多个色阻单元221。举例而言,色阻单元221可可包括红色、绿色以及蓝色等不同颜色的色阻单元221,本发明并不以此为限。此外,色阻单元221可对应于电泳显示介质121而设置,例如以一对一、多对一、一对多或多对多的方式来设置,本发明并不以此为限。如此一来,电泳显示装置100的显示画面可经由色彩滤波模块200来显示对应的颜色,并且可经由驱动模块110驱动电泳显示介质121来调整亮度值。Referring to FIG. 1 , the
在本实施例中,显示驱动模块110可包括薄膜晶体管(Thin-Film Transistor,TFT)阵列。并且,薄膜晶体管阵列可包括多个顶电极薄膜晶体管(Top-gate TFT)或多个底电极薄膜晶体管(Bottom gate TFT),本发明并不以此为限。在本实施例中,显示面板120可包括反射式电泳显示面板,本发明并不以此为限。在本实施例中,显示面板120可包括多个电泳显示介质121,并且每一个电泳显示介质121可包括电泳液、多个白色带电粒子以及多个黑色带电粒子,本发明并不以此为限。在本实施例中,色彩滤波模块200可包括色彩滤波矩阵(Color Filter Array,CFA),本发明不以此为限。在本实施例中,透明基材210可包括可挠式透明基材(例如塑胶薄膜)或非可挠式透明基材(例如玻璃基材),本发明不以此为限。在本实施例中,第一方向D1、第二方向D2以及第三方向D3两两之间彼此互相垂直,以形成三维的坐标轴。In this embodiment, the
图2A是本发明的一实施例的色彩滤波模块的俯视图。为了方便说明起见,图2A中省略示出部分元件。以下将以图2A说明色彩滤波模块200的具体结构。FIG. 2A is a top view of a color filter module according to an embodiment of the present invention. For convenience of description, some elements are omitted in FIG. 2A . The specific structure of the
参考图2A,色彩滤波模块200可包括透明基材210以及色阻层220。在本实施例中,色阻层220可沿着第三方向D3设置于透明基材210上,并且色阻层220包括沿着第一方向D1以及第二方向D2阵列排列的多个色阻单元221。在本实施例中,透明基材210可包括多个像素区域230,并且每个像素区域230可包括多个子像素区域240。在本实施例中,子像素区域240可用2乘3(2列3行)的方式来组成一个像素区域230。在一实施例中,子像素区域240可用1乘3、2乘2、3乘3等方式来组成一个像素区域230,本发明并不以此为限。需要说明的是,在本实施例中,多个色阻单元221中分别标示有代表红色的R、代表绿色的G以及代表蓝色的B,但这些表示的排列方式仅为示范性的排列方式,本发明不以此为限。Referring to FIG. 2A , the
在本实施例中,每个像素区域230上可设置有多个不同颜色的色阻单元221,例如红色、绿色以及蓝色的色阻单元,本发明并不以此为限。在本实施例中,多个色阻单元221的每一个可横跨地设置在两个连续的子像素区域240中,并且所述两个连续的子像素区域240形成一个颜色子像素区域241。在一实施例中,多个色阻单元221可设置在三个连续的子像素区域240中,并且所述三个连续的子像素区域240形成一个颜色子像素区域241,本发明对颜色子像素区域241内的子像素区域240的数量并不加以限制。此外,图2A的子像素区域240可对应于图1的电泳显示介质121而设置,例如以一对一、多对一、一对多或多对多的方式来设置,本发明并不以此为限。In this embodiment, each
值得注意的是,如图2A所示,多个色阻单元221可在透明基材210形成错位(Staggered)阵列(Array),以形成具有错位图案(Pattern)的色阻层220。详细而言,所述错位阵列中的每一行(Column)的多个色阻单元221与相邻一行的另多个色阻单元221为错位排列。换句话说,所述每一行沿着第二方向D2延伸,所述每一行的在第一方向D1相邻两色阻单元221在第二方向D2上错位地排列。并且,所述相邻的两色阻单元221的错位的距离可依设计需求而设置,本发明并不加以限制。关于错位排列的细节,以下将以图2B来进行说明。It should be noted that, as shown in FIG. 2A , a plurality of color resist
图2B是本发明的一实施例的重复单元的俯视图。参考图2A以及图2B,多个色阻单元221(如图2B的第一色阻单元251、第二色阻单元252、第三色阻单元253)可形成重复单元250,并且所述错位阵列可由多个重复单元250以错位排列的方式形成。具体来说,第一色阻单元251与第二色阻单元252以及第三色阻单元253在第一方向D1上相邻,并且第一色阻单元251与第二色阻单元252以及第三色阻单元253在第二方向D2上错位排列。如图2B所示,参考轴线REF沿着行的方向(即第一方向D1)延伸。第一色阻单元251在参考轴线REF上的投影P1与相邻一行的第二色阻单元252以及第三色阻单元253的投影P2、P3重叠。并且,第一色阻单元251在参考轴线REF上的投影P1与第二色阻单元252以及第三色阻单元253之间的间隔区域(间隔距离S所标示的区域)的投影P4重叠。2B is a top view of a repeating unit of an embodiment of the present invention. Referring to FIGS. 2A and 2B , a plurality of color resist units 221 (such as the first color resist
值得注意的是,第二色阻单元252以及第三色阻单元253之间的间隔距离S可为大于或等于一个子像素区域240的边长的长度的十分之一。在一实施例中,间隔距离S可为大于或等于一个子像素区域240的边长的长度的五分之一,以更佳地降低使用者的视线从在倾斜角度观看时的混色的现象。然而,间隔距离S可依照对视角的需求而设置,本发明并不以此为限。并且,第一色阻单元251、第二色阻单元252以及第三色阻单元253可为不同颜色。举例而言,第一色阻单元251、第二色阻单元252以及第三色阻单元253可分别为红色、绿色以及蓝色,但本发明不以此为限。再者,多个色阻单元221(即第一色阻单元251、第二色阻单元252、第三色阻单元253)的形状可为长方形,但本发明不以此为限。此外,多个色阻单元221(即第一色阻单元251、第二色阻单元252、第三色阻单元253)的每一个的面积小于各别横跨设置的所述至少两个子像素区域240的总和面积。It should be noted that the separation distance S between the second color resist
图3A是本发明的一实施例的像素区域的俯视图。参考图2A以及图3A,每个像素区域230可包括多个子像素区域240。在本实施例中,子像素区域240可用2乘3(2列3行)的方式来组成一个像素区域230。也就是说,每个像素区域230可包括6个子像素区域240。然而,在其他未示出的实施例中,子像素区域240可用1乘3、2乘2、3乘3等方式来组成一个像素区域230,本发明并不以此为限。在本实施例中,像素区域230在第一方向D1上的3行依序设置有一个红色色阻单元221R、半个绿色色阻单元221G与半个蓝色色阻单元221B以及一个红色色阻单元221R,但本发明不以此为限。并且,在半个绿色色阻单元221G与半个蓝色色阻单元221B之间在第二方向D2上具有间隔距离S,且在第一方向D1上相邻上的红色色阻单元221R与绿色色阻单元221G或红色色阻单元221R与蓝色色阻单元221B之间具有间隔距离T。在本实施例中,间隔距离S与T可依照设计需求而设置为相同或不同的距离,本发明不以此为限。3A is a top view of a pixel region according to an embodiment of the present invention. Referring to FIGS. 2A and 3A , each
值得注意的是,图3A标示有像素区域230的剖面1-1’。并且,像素区域230的剖面1-1’在第一方向D1上依序地经过红色光阻单元221R、绿色光阻单元221G以及红色光阻单元221R。以下将以图3B对像素区域230的剖面1-1’进行详细的说明。It is worth noting that FIG. 3A indicates the cross section 1-1' of the
图3B是本发明的图3A的像素区域沿着剖面1-1’的局部剖面图。参考图2A、图3A以及图3B,当入射光L1照射到子像素区域240时,入射光L1经过反射后而形成反射光L2。并且,经由色阻单元221的设计,反射光L2可显示对应于色阻单元221的颜色。并且,经由电泳显示介质121的驱动情形,子像素区域240可显示出特定的颜色。举例而言,子像素区域240上设置有红色色阻单元221R。在正常环境下,若入射光L1经过反射而形成反射光L2的路径中,有经过红色色阻单元221R,则反射光L2会呈现红色。类似地,若入射光L1经过反射而形成反射光L2的路径中,有经过绿色色阻单元221G,则反射光L2会呈现绿色。类似地,若入射光L1经过反射而形成反射光L2的路径中,有经过蓝色色阻单元221B,则反射光L2会呈现蓝色。如此一来,经由多个子像素区域240的混色,对应的像素区域230可呈现出不同的颜色。在本实施例中,入射光L1可包括环境光或具备发光功能的电子产品所提供的光源,本发明并不以此为限。FIG. 3B is a partial cross-sectional view of the pixel region of FIG. 3A along section 1-1' of the present invention. Referring to FIG. 2A , FIG. 3A and FIG. 3B , when the incident light L1 is irradiated to the
值得注意的是,由于在第一方向D1上相邻上的红色色阻单元221R与绿色色阻单元221G之间具有间隔距离T,入射光L1形成反射光L2的路径中同时经过红色色阻单元221R与绿色色阻单元221G的机率会下降。具体而言,如图3B所示,法线LN垂直于透明基材210,并且法线N与入射光L1或反射光L2之间可具有角度θ。即,角度θ可代表入射光L1的入射角或反射光L2的反射角。此外,角度θ可代表使用者的眼睛290观看电泳显示器100时的视角。如图3B所示,在设置有间隔距离T的情况下,使用者观看电泳显示装置100时的视角(即角度θ)在倾斜一定程度范围内,仅会看到仅经过红色色阻单元221R或绿色色阻单元221G的反射光L2。也就是说,使用者在较为倾斜的角度θ的视角的观看的图像不会受到混色的影响,进而提升使用电泳显示装置100的体验。It is worth noting that, since the adjacent red color resist
此外,类似于间隔距离T的描述,在第一方向D1相邻的绿色色阻单元221G与蓝色色阻单元221B之间设置的间隔距离S同样地可有效地降低入射光L1形成反射光L2的路径中同时经过不同颜色的色阻单元221的机率。如此一来,使用者在较为倾斜的角度θ的视角的观看的图像不会受到混色的影响,进而提升使用电泳显示装置100的体验。In addition, similar to the description of the separation distance T, the separation distance S set between the adjacent green color resist
图4A是本发明的一实施例的像素区域的俯视图。参考图2A、图3A以及图4A,图4A与图3A的差异在于图4A标示有像素区域230的剖面2-2’。并且,像素区域230的剖面2-2’在第一方向D1上依序地经过红色光阻单元221R、蓝色光阻单元221B以及红色光阻单元221R。以下将以图4B对像素区域230的剖面2-2’进行详细的说明。4A is a top view of a pixel region according to an embodiment of the present invention. Referring to FIGS. 2A , 3A and 4A, the difference between FIG. 4A and FIG. 3A is that FIG. 4A indicates a section 2-2' of the
图4B是本发明的图4A的像素区域沿着剖面2-2’的局部剖面图。参考图2A、图4A以及图4B,当入射光L1照射到子像素区域240时,入射光L1经过反射后而形成反射光L2。由于在第一方向D1上相邻上的红色色阻单元221R与蓝色色阻单元221B之间具有间隔距离T,入射光L1形成反射光L2的路径中同时经过红色色阻单元221R与蓝色色阻单元221B的机率会下降。具体而言,如图3B所示,法线LN垂直于透明基材210,并且法线N与入射光L1或反射光L2之间可具有角度θ。即,角度θ可代表入射光L1的入射角或反射光L2的反射角。此外,角度θ可代表使用者的眼睛290观看电泳显示器100时的视角。如图4B所示,在设置有间隔距离T的情况下,使用者观看电泳显示装置100时的视角(即角度θ)在倾斜一定程度范围内,仅会看到仅经过红色色阻单元221R或蓝色色阻单元221B的反射光L2。也就是说,使用者在较为倾斜的角度θ的视角的观看的图像不会受到混色的影响,进而提升使用电泳显示装置100的体验。FIG. 4B is a partial cross-sectional view of the pixel region of FIG. 4A along section 2-2' of the present invention. Referring to FIG. 2A , FIG. 4A and FIG. 4B , when the incident light L1 is irradiated to the
图5A是本发明的一实施例的像素区域的俯视图。参考图2A、图3A以及图5A,图5A与图3A的差异在于图5A标示有像素区域230的剖面3-3’。并且,像素区域230的剖面3-3’在第一方向D1上依序的第一与第三行设置有红色光阻单元221R,并且在第一方向D1上的第二行没有设置任何光阻单元221。以下将以图5B对像素区域230的剖面3-3’进行详细的说明。FIG. 5A is a top view of a pixel region according to an embodiment of the present invention. Referring to FIGS. 2A , 3A and 5A , the difference between FIG. 5A and FIG. 3A is that FIG. 5A indicates a section 3-3' of the
图5B是本发明的图5A的像素区域沿着剖面3-3’的局部剖面图。参考图2A、图5A以及图5B,当入射光L1照射到子像素区域240时,入射光L1经过反射后而形成反射光L2。由于像素区域230的剖面3-3’仅在第一方向D1上的第一行以及第三行设置有红色光阻单元221R,入射光L1形成反射光L2的路径中同时经过不同颜色的色阻单元221的机率会下降。具体而言,如图3B所示,法线LN垂直于透明基材210,并且法线N与入射光L1或反射光L2之间可具有角度θ。即,角度θ可代表入射光L1的入射角或反射光L2的反射角。此外,角度θ可代表使用者的眼睛290观看电泳显示器100时的视角。如图4B所示,像素区域230的剖面3-3’仅在第一方向D1上的第二行没有设置任何的色阻单元221的情况下,使用者观看电泳显示装置100时的视角(即角度θ)不论如何倾斜,仅会看到仅经过红色色阻单元221R的反射光L2。也就是说,使用者在较为倾斜的角度θ的视角的观看的图像不会受到混色的影响,进而提升使用电泳显示装置100的体验。FIG. 5B is a partial cross-sectional view of the pixel region of FIG. 5A along section 3-3' of the present invention. Referring to FIG. 2A , FIG. 5A and FIG. 5B , when the incident light L1 is irradiated to the
综上所述,本发明的色彩滤波模块经由多个色阻单元形成错位阵列的方式,可有效地降低入射光形成反射光的路径中同时经过不同颜色的色阻单元的机率。如此一来,使用者在较为倾斜的角度的视角所观看的图像不会受到混色的影响,而使具有本发明的色彩滤波模块的电泳显示装置可具有良好的观看体验。In conclusion, the color filter module of the present invention forms a dislocation array through a plurality of color resist units, which can effectively reduce the probability of incident light passing through color resist units of different colors simultaneously in the path of reflected light. In this way, the image viewed by the user at a relatively oblique angle of view will not be affected by color mixing, so that the electrophoretic display device with the color filter module of the present invention can have a good viewing experience.
最后应说明的是:以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围。Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, but not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: The technical solutions described in the foregoing embodiments can still be modified, or some or all of the technical features thereof can be equivalently replaced; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the technical solutions of the embodiments of the present invention. scope.
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