WO2019100429A1 - 显示组件的制造方法 - Google Patents
显示组件的制造方法 Download PDFInfo
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- WO2019100429A1 WO2019100429A1 PCT/CN2017/113699 CN2017113699W WO2019100429A1 WO 2019100429 A1 WO2019100429 A1 WO 2019100429A1 CN 2017113699 W CN2017113699 W CN 2017113699W WO 2019100429 A1 WO2019100429 A1 WO 2019100429A1
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- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—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
- G02F1/01—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
- G02F1/13—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 liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G3/00—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
- G09G3/20—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
- G09G3/34—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source
- G09G3/36—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source using liquid crystals
- G09G3/3607—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source using liquid crystals for displaying colours or for displaying grey scales with a specific pixel layout, e.g. using sub-pixels
Definitions
- the present application relates to the field of liquid crystal display, and in particular to a method of manufacturing a display assembly.
- the liquid crystal panel industry has undergone several decades of development.
- the design method of forming rounded corners at four corners through the occlusion of the pixel unit by the mask layer has become a current development trend, but when the user is looking at the display screen, it is obvious.
- the borders of the rounded corners are felt jagged, resulting in poor display.
- the application provides a display assembly having smooth arc corners.
- a method of manufacturing a display assembly comprising:
- An array substrate is provided, the surface of the array substrate includes a plurality of pixel unit regions;
- the pixel unit area marks a predetermined masking area; the partition line divides each pixel unit of the pixel calculation area into a first portion and a second portion, the first portion faces a predetermined display area, and the second portion faces a predetermined masking area ;
- the pixel unit is disposed in the predetermined portion of the predetermined display area and the pixel calculation area.
- the pixel unit is disposed in the predetermined display area, the pixel calculation area, and the predetermined mask area.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are Similarly, the area of the first green areas S G of the plurality of green sub-pixels is the same, the first blue areas S B of the plurality of blue sub-pixels are the same, and the first red light-emitting rates X R of the plurality of red sub-pixels are the same, and some green The first green light-emitting rate X G of the sub-pixels is the same, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are the same.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are different.
- the first green area S G of the plurality of green sub-pixels is different, the first blue area S B of the plurality of blue sub-pixels is different, the first red light-emitting rate X R of the plurality of red sub-pixels is different, and the first of the plurality of green sub-pixels is different
- the green light-emitting rate X G is different, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are different.
- a plurality of second effective light-emitting areas S x are different, and a plurality of red sub-pixels are different.
- the two red areas S Rx are different, the second green areas S Gx of the plurality of green sub-pixels are different, the second blue areas S Bx of the plurality of blue sub-pixels are different, and the second red light-emitting rates X Rx of the plurality of red sub-pixels are different, and some
- the second green light-emitting rate X Gx of the green sub-pixel is different, and the second blue light-emitting rates X Bx of the plurality of blue sub-pixels are different.
- a method of manufacturing a display assembly comprising:
- An array substrate is provided, the surface of the array substrate includes a plurality of pixel unit regions;
- the pixel unit area marks a predetermined masking area; the partition line divides each pixel unit of the pixel calculation area into a first portion and a second portion, the first portion faces a predetermined display area, and the second portion faces a predetermined masking area ;
- the shielding layer is disposed on the color film substrate
- the pixel unit is disposed in the predetermined portion of the predetermined display area and the pixel calculation area.
- the pixel unit is disposed in the predetermined display area, the pixel calculation area, and the predetermined mask area.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are Similarly, the area of the first green areas S G of the plurality of green sub-pixels is the same, the first blue areas S B of the plurality of blue sub-pixels are the same, and the first red light-emitting rates X R of the plurality of red sub-pixels are the same, and some green The first green light-emitting rate X G of the sub-pixels is the same, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are the same.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are different.
- the first green area S G of the plurality of green sub-pixels is different, the first blue area S B of the plurality of blue sub-pixels is different, the first red light-emitting rate X R of the plurality of red sub-pixels is different, and the first of the plurality of green sub-pixels is different
- the green light-emitting rate X G is different, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are different.
- a plurality of second effective light-emitting areas S x are different, and a plurality of red sub-pixels are different.
- the two red areas S Rx are different, the second green areas S Gx of the plurality of green sub-pixels are different, the second blue areas S Bx of the plurality of blue sub-pixels are different, and the second red light-emitting rates X Rx of the plurality of red sub-pixels are different, and some
- the second green light-emitting rate X Gx of the green sub-pixel is different, and the second blue light-emitting rates X Bx of the plurality of blue sub-pixels are different.
- a method of manufacturing a display assembly comprising:
- An array substrate is provided, the surface of the array substrate includes a plurality of pixel unit regions;
- the pixel unit area marks a predetermined masking area; the partition line divides each pixel unit of the pixel calculation area into a first portion and a second portion, the first portion faces a predetermined display area, and the second portion faces a predetermined masking area ;
- a masking layer is disposed on an optical path of the predetermined masking region and the second portion of the pixel computing region according to an area of a red sub-pixel, a green sub-pixel, and a blue sub-pixel of each pixel unit region.
- the pixel unit is disposed in the predetermined portion of the predetermined display area and the pixel calculation area.
- the pixel unit is disposed in the predetermined display area, the pixel calculation area, and the predetermined mask area.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are Similarly, the area of the first green areas S G of the plurality of green sub-pixels is the same, the first blue areas S B of the plurality of blue sub-pixels are the same, and the first red light-emitting rates X R of the plurality of red sub-pixels are the same, and some green The first green light-emitting rate X G of the sub-pixels is the same, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are the same.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are different.
- the first green area S G of the plurality of green sub-pixels is different, the first blue area S B of the plurality of blue sub-pixels is different, the first red light-emitting rate X R of the plurality of red sub-pixels is different, and the first of the plurality of green sub-pixels is different
- the green light-emitting rate X G is different, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are different.
- a plurality of second effective light-emitting areas S x are different, and a plurality of red sub-pixels are different.
- the two red areas S Rx are different, the second green areas S Gx of the plurality of green sub-pixels are different, the second blue areas S Bx of the plurality of blue sub-pixels are different, and the second red light-emitting rates X Rx of the plurality of red sub-pixels are different, and some
- the second green light-emitting rate X Gx of the green sub-pixel is different, and the second blue light-emitting rates X Bx of the plurality of blue sub-pixels are different.
- the product of the first red area S R and the first red light output rate X R , the product of the first green area S G and the first green light output rate X G is equal to the first effective light exit area S .
- the product of the product of the second red area S Rx and the second red light output rate X Rs , the product of the second green area S Gx and the second green light output rate X Gx is equal to the second effective light exit area S x .
- the manufacturing method of the display component provided by the embodiment of the present application is calculated according to the preset light-emitting rate and effective light-emitting area of the red sub-pixel, the green sub-pixel, and the blue sub-pixel in each pixel unit area.
- the area of the red sub-pixel, the green sub-pixel, and the blue sub-pixel of the plurality of pixel unit regions is obtained, thereby setting the sub-pixels according to the calculation result, thereby obtaining a display component having a good display effect.
- FIG. 1 is a top plan view of an array substrate of a method of fabricating a display assembly provided by the present application.
- FIG. 2 is a perspective view of an array substrate and a color filter substrate of a method of manufacturing a display assembly provided by the present application.
- the present application provides a method of fabricating the display assembly 100.
- an array substrate 10 is provided, and the surface 11a of the array substrate 10 includes a plurality of pixel unit regions 110. .
- the array substrate 10 can be a glass substrate.
- a partition line A-A is disposed on the surface 11a of the array substrate 10;
- a number of pixel cell regions 110 through which the partition line A-A passes are labeled as pixel computing regions 21
- a plurality of pixel unit areas 110 on one side of the pixel calculation area 21 are marked as predetermined display areas 22, and a plurality of pixel unit areas located on the other side of the pixel calculation area 21 are marked as predetermined masking areas 23
- the partition line A-A divides each pixel unit area 110 of the pixel calculation area 21 into a first portion 111 and a second portion 112, the first portion 111 facing the predetermined display area 22
- the second portion 112 faces the predetermined masking area 23.
- each pixel unit area 110 The light-emitting rate and effective light-emitting area of the predetermined red sub-pixel, green sub-pixel, and blue sub-pixel are calculated to calculate the areas of the red sub-pixel, the green sub-pixel, and the blue sub-pixel of each pixel unit region.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are the same, and some green sub-pixels are
- the first green area S G of the area is the same, the first blue areas S B of the plurality of blue sub-pixels are the same, the first red light-emitting rates X R of the plurality of red sub-pixels are the same, and the first green of the plurality of green sub-pixels
- the light-emitting rates X G are the same, and the first blue light-emitting rates X B of the plurality of blue sub-pixels are the same.
- the array substrate 10 can be displayed in a plane.
- a plurality of first effective light-emitting areas S are the same, and first red areas S R of the plurality of red sub-pixels are different, and some of the green sub-pixels are different.
- the first green area S G is different, the first blue areas S B of the plurality of blue sub-pixels are different, the first red light-emitting rates X R of the plurality of red sub-pixels are different, and the first green light-emitting rates X G of the plurality of green sub-pixels are different.
- the first blue light-emitting rate X B of the plurality of blue sub-pixels is different.
- the array substrate 10 can be displayed in a flat surface or in a curved surface.
- the plurality of second effective light-emitting areas S x are different, and the second red regions S Rx of the plurality of red sub-pixels Different, the second green area S Gx of the plurality of green sub-pixels is different, the second blue area S Bx of the plurality of blue sub-pixels is different, and the second red light-emitting rate X Rx of the plurality of red sub-pixels is different, and the plurality of green sub-pixels are different.
- the product of the first red area S R and the first red light output rate X R , the product of the first green area S G and the first green light output rate X G and the first blue area S B and The product of the first blue light exit rate X B is equal to the first effective light exit area S .
- the light-emitting rate of the effective light-emitting area, the red sub-pixel, the green sub-pixel, and the blue sub-pixel may be set in advance according to the cool and warm color tone, the light source composition of the backlight, and the light transmittance of the substrate.
- the predetermined portion 22 and the first portion 111 of the pixel computing region 21 may be The pixel unit 110 is set.
- the predetermined display area 22, the pixel calculation area 21, and the predetermined mask area 23 may also be The pixel unit 110 is disposed.
- An obstruction layer 40 is disposed on the optical path of the second portion 110 of the pixel calculation area 21.
- the shielding layer 40 may be located on a surface of the array substrate 10 away from the pixel unit 110. 11b.
- the surface 11a and the surface 11b are oppositely disposed on both sides of the array substrate 10.
- the manufacturing method of the display component provided in the embodiment of the present application may further include providing a color film substrate 50, and the shielding layer 40. It is disposed on the color filter substrate 50.
- the shielding layer 40 is disposed on a side of the color filter substrate 50 facing the array substrate 10.
- the manufacturing method of the display component provided by the embodiment of the present application is calculated according to the preset light-emitting rate and effective light-emitting area of the red sub-pixel, the green sub-pixel, and the blue sub-pixel in each pixel unit area.
- the area of the red sub-pixel, the green sub-pixel, and the blue sub-pixel of the plurality of pixel unit regions is obtained, thereby setting the sub-pixels according to the calculation result, thereby obtaining a display component having a good display effect.
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Abstract
一种显示组件的制造方法,包括:一表面(11a,11b)包括若干像素单元区(110)的阵列基板(10);设置一分区线(A-A);根据分区线(A-A)将若干像素单元区(110)标记为像素计算区(21)、预定显示区(22)和预定遮蔽区(23),将像素计算区(21)分第一部分(111)和第二部分(112);根据预先设定的子像素的出光率(XR,XB,XG;XRx,XBx,XGx)和有效出光面积(S,SX)计算得出面积(SR,SB,SG;SRx,SBx,SGx);根据子像素的面积(SR,SB,SG;SRx,SBx,SGx)设置遮蔽层(40)。
Description
本申请涉及液晶显示领域,具体涉及一种显示组件的制造方法。
液晶面板行业已经历了数十年的发展,通过遮蔽层对像素单元的遮挡,在四个边角形成圆角的设计方式已成为当前的发展趋势,但是,当用户在看显示屏时,明显感觉到圆角的边界呈锯齿状,导致显示效果不佳。
本申请提供一种具有光滑圆弧边角的显示组件。
一种显示组件的制造方法,包括:
提供一阵列基板,所述阵列基板的表面包括若干像素单元区;
在所述阵列基板表面设置一分区线;
将所述分区线穿过的若干像素单元区标记为像素计算区,将位于所述像素计算区一侧的若干像素单元区标记为预定显示区,将位于所述像素计算区另一侧的若干像素单元区标记预定遮蔽区;所述分区线将所述像素计算区的每一像素单元区分为第一部分和第二部分,所述第一部分朝向预定显示区,所述第二部分朝向预定遮蔽区;
根据每个像素单元区的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积;
根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区和所述像素计算区的第二部分的光路上设置遮蔽层,所述遮蔽层位于所述阵列基板远离所述像素单元的一面。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区和所述像素计算区的第一部分设置所述像素单元。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区、所述像素计算区和所述预定遮蔽区均设置所述像素单元。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积
SR 均相同,若干绿色子像素的面积第一绿色面积 SG 均相同,若干蓝色子像素的第一蓝色面积
SB 均相同,若干红色子像素的第一红色出光率 XR 均相同,若干绿色子像素的第一绿色出光率
XG 均相同,若干蓝色子像素的第一蓝色出光率 XB 均相同。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积
SR 不同,若干绿色子像素的第一绿色面积 SG 不同,若干蓝色子像素的第一蓝色面积 SB
不同,若干红色子像素的第一红色出光率 XR 不同,若干绿色子像素的第一绿色出光率 XG
不同,若干蓝色子像素的第一蓝色出光率 XB 不同。
在本申请实施例所提供的显示组件的制造方法中,在所述像素计算区的每一像素单元区的所述第一部分中,若干第二有效出光面积 Sx
不同,若干红色子像素的第二红色面积 SRx 不同,若干绿色子像素的第二绿色面积 SGx
不同,若干蓝色子像素的第二蓝色面积 SBx 不同,若干红色子像素的第二红色出光率 XRx
不同,若干绿色子像素的第二绿色出光率 XGx 不同,若干蓝色子像素的第二蓝色出光率 XBx 不同。
一种显示组件的制造方法,包括:
提供一阵列基板,所述阵列基板的表面包括若干像素单元区;
在所述阵列基板表面设置一分区线;
将所述分区线穿过的若干像素单元区标记为像素计算区,将位于所述像素计算区一侧的若干像素单元区标记为预定显示区,将位于所述像素计算区另一侧的若干像素单元区标记预定遮蔽区;所述分区线将所述像素计算区的每一像素单元区分为第一部分和第二部分,所述第一部分朝向预定显示区,所述第二部分朝向预定遮蔽区;
根据每个像素单元区的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积;
根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区和所述像素计算区的第二部分的光路上设置遮蔽层;以及
提供一彩膜基板,将所述遮蔽层设置于所述彩膜基板上
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区和所述像素计算区的第一部分设置所述像素单元。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区、所述像素计算区和所述预定遮蔽区均设置所述像素单元。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积
SR 均相同,若干绿色子像素的面积第一绿色面积 SG 均相同,若干蓝色子像素的第一蓝色面积
SB 均相同,若干红色子像素的第一红色出光率 XR 均相同,若干绿色子像素的第一绿色出光率
XG 均相同,若干蓝色子像素的第一蓝色出光率 XB 均相同。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积
SR 不同,若干绿色子像素的第一绿色面积 SG 不同,若干蓝色子像素的第一蓝色面积 SB
不同,若干红色子像素的第一红色出光率 XR 不同,若干绿色子像素的第一绿色出光率 XG
不同,若干蓝色子像素的第一蓝色出光率 XB 不同。
在本申请实施例所提供的显示组件的制造方法中,在所述像素计算区的每一像素单元区的所述第一部分中,若干第二有效出光面积 Sx
不同,若干红色子像素的第二红色面积 SRx 不同,若干绿色子像素的第二绿色面积 SGx
不同,若干蓝色子像素的第二蓝色面积 SBx 不同,若干红色子像素的第二红色出光率 XRx
不同,若干绿色子像素的第二绿色出光率 XGx 不同,若干蓝色子像素的第二蓝色出光率 XBx 不同。
一种显示组件的制造方法,包括:
提供一阵列基板,所述阵列基板的表面包括若干像素单元区;
在所述阵列基板表面设置一分区线;
将所述分区线穿过的若干像素单元区标记为像素计算区,将位于所述像素计算区一侧的若干像素单元区标记为预定显示区,将位于所述像素计算区另一侧的若干像素单元区标记预定遮蔽区;所述分区线将所述像素计算区的每一像素单元区分为第一部分和第二部分,所述第一部分朝向预定显示区,所述第二部分朝向预定遮蔽区;
根据每个像素单元区的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积;
根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区和所述像素计算区的第二部分的光路上设置遮蔽层。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区和所述像素计算区的第一部分设置所述像素单元。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区、所述像素计算区和所述预定遮蔽区均设置所述像素单元。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积
SR 均相同,若干绿色子像素的面积第一绿色面积 SG 均相同,若干蓝色子像素的第一蓝色面积
SB 均相同,若干红色子像素的第一红色出光率 XR 均相同,若干绿色子像素的第一绿色出光率
XG 均相同,若干蓝色子像素的第一蓝色出光率 XB 均相同。
在本申请实施例所提供的显示组件的制造方法中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积
SR 不同,若干绿色子像素的第一绿色面积 SG 不同,若干蓝色子像素的第一蓝色面积 SB
不同,若干红色子像素的第一红色出光率 XR 不同,若干绿色子像素的第一绿色出光率 XG
不同,若干蓝色子像素的第一蓝色出光率 XB 不同。
在本申请实施例所提供的显示组件的制造方法中,在所述像素计算区的每一像素单元区的所述第一部分中,若干第二有效出光面积 Sx
不同,若干红色子像素的第二红色面积 SRx 不同,若干绿色子像素的第二绿色面积 SGx
不同,若干蓝色子像素的第二蓝色面积 SBx 不同,若干红色子像素的第二红色出光率 XRx
不同,若干绿色子像素的第二绿色出光率 XGx 不同,若干蓝色子像素的第二蓝色出光率 XBx 不同。
在本申请实施例所提供的显示组件的制造方法中,所述第一红色面积 SR
与第一红色出光率 XR 的乘积、第一绿色面积 SG 与第一绿色出光率 XG
乘积和第一蓝色面积 SB 与第一蓝色出光率 XB 的乘积均等于第一有效出光面积 S 。
在本申请实施例所提供的显示组件的制造方法中,所述第二红色面积 SRx
与第二红色出光率 XRs 的乘积、第二绿色面积 SGx 与第二绿色出光率 XGx
乘积和第二蓝色面积 SBx 与第二蓝色出光率 XBx 的乘积均等于第二有效出光面积 Sx
。
本申请实施例所述提供的显示组件的制造方法,通过在每一像素单元区的中,根据预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积,计算得到若干像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,从而根据计算结果设置子像素,从而得到显示效果良好的显示组件。
图 1 为本申请提供的显示组件的制造方法的阵列基板的俯视图。
图 2 为本申请提供的显示组件的制造方法的阵列基板和彩膜基板的透视图。
请参阅图 1-2 ,本申请提供一种显示组件 100 的制造方法。
首先,提供一阵列基板 10 ,所述阵列基板 10 的表面 11a 包括若干像素单元区 110
。
其中,所述阵列基板 10 可以为一玻璃基板。
其次,在所述阵列基板 10 的表面 11a 设置一分区线 A-A ;
再次,将所述分区线 A-A 穿过的若干像素单元区 110 标记为像素计算区 21
,将位于所述像素计算区 21 一侧的若干像素单元区 110 标记为预定显示区 22 ,将位于所述像素计算区 21 另一侧的若干像素单元区标记预定遮蔽区 23
;所述分区线 A-A 将所述像素计算区 21 的每一像素单元区 110 分为第一部分 111 和第二部分 112 ,所述第一部分 111 朝向预定显示区 22
,所述第二部分 112 朝向预定遮蔽区 23 。
然后,根据每个像素单元区 110
的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积。
在一种实施例中,在所述预定显示区 22 的若干像素单元区 110 中,若干第一有效出光面积 S
均相同,若干红色子像素的第一红色面积 S R 均相同,若干绿色子像素的面积第一绿色面积 S G
均相同,若干蓝色子像素的第一蓝色面积 S B 均相同,若干红色子像素的第一红色出光率 X R
均相同,若干绿色子像素的第一绿色出光率 X G 均相同,若干蓝色子像素的第一蓝色出光率 X B
均相同。所述阵列基板 10 可以用平面显示。
在一种实施例中,在所述预定显示区 22 的若干像素单元区 110 中,若干第一有效出光面积 S
均相同,若干红色子像素的第一红色面积 S R 不同,若干绿色子像素的第一绿色面积 S G
不同,若干蓝色子像素的第一蓝色面积 S B 不同,若干红色子像素的第一红色出光率 X R
不同,若干绿色子像素的第一绿色出光率 X G 不同,若干蓝色子像素的第一蓝色出光率 X B 不同。所述阵列基板
10 可以用平面显示,也可以用于曲面显示。
在一种实施例中,在所述像素计算区 21 的每一像素单元区 110 的所述第一部分 111
中,若干第二有效出光面积 S x 不同,若干红色子像素的第二红色面积 S Rx 不同,若干绿色子像素的第二绿色面积
S Gx 不同,若干蓝色子像素的第二蓝色面积 S Bx 不同,若干红色子像素的第二红色出光率 X
Rx 不同,若干绿色子像素的第二绿色出光率 X Gx 不同,若干蓝色子像素的第二蓝色出光率 X Bx
不同,也即在所述预定显示区 22 的每一像素单元区 110 中,
SR*XR=SG*XG=S
B*XB=S 。
在一种实施例中,所述第一红色面积 S R 与第一红色出光率 X
R 的乘积、第一绿色面积 S G 与第一绿色出光率 X G 乘积和第一蓝色面积 S
B 与第一蓝色出光率 X B 的乘积均等于第一有效出光面积 S 。
在一种实施例中,所述第二红色面积 S Rx 与第二红色出光率 X
Rs 的乘积、第二绿色面积 S Gx 与第二绿色出光率 X Gx 乘积和第二蓝色面积 S
Bx 与第二蓝色出光率 X Bx 的乘积均等于第二有效出光面积 S x ,也即在所述像素计算区 21
的每一像素单元区 110 的所述第一部分 111 中, S Rx *X Rx =S Gx
*X Gx =S Bx *X Bx =S x 。
所述有效出光面积、红色子像素、绿色子像素和蓝色子像素的出光率均可以根据的冷暖色调、背光源的光源组成、基板透光率的情况预先设置。
在一种实施例中,可以在所述预定显示区 22 和所述像素计算区 21 的第一部分 111
设置所述像素单元 110 。
在一种实施例中,也可以在所述预定显示区 22 、所述像素计算区 21 和所述预定遮蔽区 23
均设置所述像素单元 110 。
最后,根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区 23
和所述像素计算区 21 的第二部分 110 的光路上设置遮蔽层 40 。
在一种实施例中,所述遮蔽层 40 可以位于所述阵列基板 10 远离所述像素单元 110 的一表面
11b 。所述表面 11a 和表面 11b 相对设置于所述阵列基板 10 的两侧。
另外,本申请实施例所述提供的显示组件的制造方法还可以包括提供一彩膜基板 50 ,将所述遮蔽层 40
设置于所述彩膜基板 50 上。所述遮蔽层 40 设置于所述彩膜基板 50 朝向阵列基板 10 的一侧。
本申请实施例所述提供的显示组件的制造方法,通过在每一像素单元区的中,根据预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积,计算得到若干像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,从而根据计算结果设置子像素,从而得到显示效果良好的显示组件。
以上对本发明实施例提供的液晶显示组件进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明。同时,对于本领域的技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。
Claims (20)
- 一种显示组件的制造方法,包括:提供一阵列基板,所述阵列基板的表面包括若干像素单元区;在所述阵列基板表面设置一分区线;将所述分区线穿过的若干像素单元区标记为像素计算区,将位于所述像素计算区一侧的若干像素单元区标记为预定显示区,将位于所述像素计算区另一侧的若干像素单元区标记预定遮蔽区;所述分区线将所述像素计算区的每一像素单元区分为第一部分和第二部分,所述第一部分朝向预定显示区,所述第二部分朝向预定遮蔽区;根据每个像素单元区的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积;根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区和所述像素计算区的第二部分的光路上设置遮蔽层,所述遮蔽层位于所述阵列基板远离所述像素单元的一面。
- 如权利要求 1 所述的显示组件的制造方法,其中,在所述预定显示区和所述像素计算区的第一部分设置所述像素单元。
- 如权利要求 1 所述的显示组件的制造方法,其中,在所述预定显示区、所述像素计算区和所述预定遮蔽区均设置所述像素单元。
- 如权利要求 1 所述的显示组件的制造方法,其中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积 SR 均相同,若干绿色子像素的面积第一绿色面积 SG 均相同,若干蓝色子像素的第一蓝色面积 SB 均相同,若干红色子像素的第一红色出光率 XR 均相同,若干绿色子像素的第一绿色出光率 XG 均相同,若干蓝色子像素的第一蓝色出光率 XB 均相同。
- 如权利要求 1 所述的显示组件的制造方法,其中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积 SR 不同,若干绿色子像素的第一绿色面积 SG 不同,若干蓝色子像素的第一蓝色面积 SB 不同,若干红色子像素的第一红色出光率 XR 不同,若干绿色子像素的第一绿色出光率 XG 不同,若干蓝色子像素的第一蓝色出光率 XB 不同。
- 如权利要求 1 所述的显示组件的制造方法,其中,在所述像素计算区的每一像素单元区的所述第一部分中,若干第二有效出光面积 Sx 不同,若干红色子像素的第二红色面积 SRx 不同,若干绿色子像素的第二绿色面积 SGx 不同,若干蓝色子像素的第二蓝色面积 SBx 不同,若干红色子像素的第二红色出光率 XRx 不同,若干绿色子像素的第二绿色出光率 XGx 不同,若干蓝色子像素的第二蓝色出光率 XBx 不同。
- 一种显示组件的制造方法,包括:提供一阵列基板,所述阵列基板的表面包括若干像素单元区;在所述阵列基板表面设置一分区线;将所述分区线穿过的若干像素单元区标记为像素计算区,将位于所述像素计算区一侧的若干像素单元区标记为预定显示区,将位于所述像素计算区另一侧的若干像素单元区标记预定遮蔽区;所述分区线将所述像素计算区的每一像素单元区分为第一部分和第二部分,所述第一部分朝向预定显示区,所述第二部分朝向预定遮蔽区;根据每个像素单元区的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积;根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区和所述像素计算区的第二部分的光路上设置遮蔽层;以及提供一彩膜基板,将所述遮蔽层设置于所述彩膜基板上
- 如权利要求 7 所述的显示组件的制造方法,其中,在所述预定显示区和所述像素计算区的第一部分设置所述像素单元。
- 如权利要求 7 所述的显示组件的制造方法,其中,在所述预定显示区、所述像素计算区和所述预定遮蔽区均设置所述像素单元。
- 如权利要求 7 所述的显示组件的制造方法,其中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积 SR 均相同,若干绿色子像素的面积第一绿色面积 SG 均相同,若干蓝色子像素的第一蓝色面积 SB 均相同,若干红色子像素的第一红色出光率 XR 均相同,若干绿色子像素的第一绿色出光率 XG 均相同,若干蓝色子像素的第一蓝色出光率 XB 均相同。
- 如权利要求 7 所述的显示组件的制造方法,其中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积 SR 不同,若干绿色子像素的第一绿色面积 SG 不同,若干蓝色子像素的第一蓝色面积 SB 不同,若干红色子像素的第一红色出光率 XR 不同,若干绿色子像素的第一绿色出光率 XG 不同,若干蓝色子像素的第一蓝色出光率 XB 不同。
- 如权利要求 7 所述的显示组件的制造方法,其中,在所述像素计算区的每一像素单元区的所述第一部分中,若干第二有效出光面积 Sx 不同,若干红色子像素的第二红色面积 SRx 不同,若干绿色子像素的第二绿色面积 SGx 不同,若干蓝色子像素的第二蓝色面积 SBx 不同,若干红色子像素的第二红色出光率 XRx 不同,若干绿色子像素的第二绿色出光率 XGx 不同,若干蓝色子像素的第二蓝色出光率 XBx 不同。
- 一种显示组件的制造方法,包括:提供一阵列基板,所述阵列基板的表面包括若干像素单元区;在所述阵列基板表面设置一分区线;将所述分区线穿过的若干像素单元区标记为像素计算区,将位于所述像素计算区一侧的若干像素单元区标记为预定显示区,将位于所述像素计算区另一侧的若干像素单元区标记预定遮蔽区;所述分区线将所述像素计算区的每一像素单元区分为第一部分和第二部分,所述第一部分朝向预定显示区,所述第二部分朝向预定遮蔽区;根据每个像素单元区的预先设定的红色子像素、绿色子像素和蓝色子像素的出光率和有效出光面积计算得出每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积;根据每个像素单元区的红色子像素、绿色子像素和蓝色子像素的面积,在所述预定遮蔽区和所述像素计算区的第二部分的光路上设置遮蔽层。
- 如权利要求 13 所述的显示组件的制造方法,其中,在所述预定显示区和所述像素计算区的第一部分设置所述像素单元。
- 如权利要求 13 所述的显示组件的制造方法,其中,在所述预定显示区、所述像素计算区和所述预定遮蔽区均设置所述像素单元。
- 如权利要求 13 所述的显示组件的制造方法,其中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积 SR 均相同,若干绿色子像素的面积第一绿色面积 SG 均相同,若干蓝色子像素的第一蓝色面积 SB 均相同,若干红色子像素的第一红色出光率 XR 均相同,若干绿色子像素的第一绿色出光率 XG 均相同,若干蓝色子像素的第一蓝色出光率 XB 均相同。
- 如权利要求 13 所述的显示组件的制造方法,其中,在所述预定显示区的若干像素单元区中,若干第一有效出光面积 S 均相同,若干红色子像素的第一红色面积 SR 不同,若干绿色子像素的第一绿色面积 SG 不同,若干蓝色子像素的第一蓝色面积 SB 不同,若干红色子像素的第一红色出光率 XR 不同,若干绿色子像素的第一绿色出光率 XG 不同,若干蓝色子像素的第一蓝色出光率 XB 不同。
- 如权利要求 13 所述的显示组件的制造方法,其中,在所述像素计算区的每一像素单元区的所述第一部分中,若干第二有效出光面积 Sx 不同,若干红色子像素的第二红色面积 SRx 不同,若干绿色子像素的第二绿色面积 SGx 不同,若干蓝色子像素的第二蓝色面积 SBx 不同,若干红色子像素的第二红色出光率 XRx 不同,若干绿色子像素的第二绿色出光率 XGx 不同,若干蓝色子像素的第二蓝色出光率 XBx 不同。
- 如权利要求 16 所述的显示组件的制造方法,其中,所述第一红色面积 SR 与第一红色出光率 XR 的乘积、第一绿色面积 SG 与第一绿色出光率 XG 乘积和第一蓝色面积 SB 与第一蓝色出光率 XB 的乘积均等于第一有效出光面积 S 。
- 如权利要求 18 所述的显示组件的制造方法,其中,所述第二红色面积 SRx 与第二红色出光率 XRs 的乘积、第二绿色面积 SGx 与第二绿色出光率 XGx 乘积和第二蓝色面积 SBx 与第二蓝色出光率 XBx 的乘积均等于第二有效出光面积 Sx 。
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| CN108957875B (zh) * | 2018-09-10 | 2019-12-27 | 惠科股份有限公司 | 一种画素结构与液晶显示装置 |
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| CN205334901U (zh) * | 2016-01-25 | 2016-06-22 | 成都京东方光电科技有限公司 | 异形显示面板及显示装置 |
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| CN105911744B (zh) * | 2016-06-29 | 2020-10-09 | 上海天马微电子有限公司 | 显示面板与显示装置 |
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| CN106707606B (zh) * | 2017-03-14 | 2019-10-22 | 上海天马微电子有限公司 | 异形显示面板及显示装置 |
| CN107357066B (zh) * | 2017-06-30 | 2020-04-03 | 厦门天马微电子有限公司 | 异形显示面板和显示装置 |
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