CN203950102U - A kind of array base palte and display device - Google Patents

A kind of array base palte and display device Download PDF

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Publication number
CN203950102U
CN203950102U CN201420410178.9U CN201420410178U CN203950102U CN 203950102 U CN203950102 U CN 203950102U CN 201420410178 U CN201420410178 U CN 201420410178U CN 203950102 U CN203950102 U CN 203950102U
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projection
transparency electrode
lug boss
base palte
array base
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CN201420410178.9U
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姚琪
张锋
曹占锋
舒适
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BOE Technology Group Co Ltd
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BOE Technology Group Co Ltd
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Abstract

The utility model discloses a kind of array base palte and display device, relate to display technique field.Described array base palte comprises: a plurality of pixel cells that are in array-like arrangement, and described in each, pixel cell comprises the first transparency electrode and the colored light-filtering units being oppositely arranged, the overlapping setting in edge of adjacent described colored light-filtering units forms overlapping region; Between described the first transparency electrode and described colored light-filtering units, be provided with the first insulation course, between adjacent described the first transparency electrode, be provided with projection, described projection at least comprises the part of corresponding described overlapping region in described the first insulation course, and the summit of described projection is higher than the upper surface of described the first transparency electrode.When this array base palte is applied to display device, can reduce the interference of electric field between the first adjacent transparency electrode, reduce colour mixture and light leakage phenomena between adjacent pixel cell, improve the display effect of display device.

Description

A kind of array base palte and display device
Technical field
The utility model relates to display technique field, relates in particular to a kind of array base palte and display device.
Background technology
Along with showing the development and progress of (TFT-LCD Display) technology, LCD device, tft liquid crystal has been substituted the main flow display device that CRT display becomes daily demonstration field.
At present, show the quality of image in order to improve constantly liquid crystal indicator, its resolution is constantly improving, and making every effort to provides more clear display frame true to nature for consumer.And resolution is defined as the quantity of the pixel cell in per inch area in liquid crystal indicator, so, resolution is higher, the quantity of the pixel cell in per inch area is just more, cause the size of pixel cell in each liquid crystal indicator also just more and more less, and then make the spacing between the pixel electrode in two adjacent pixel cells also more and more less, as shown in Figure 1, when passing into certain operating voltage to pixel electrode 10, cause the electric field between two adjacent pixel electrodes 10 to disturb (as shown by arrows in FIG.), thereby affect the quality of display frame.
For example, as shown in Figure 2, when only requiring a certain pixel cell (to be labeled as a) corresponding liquid crystal molecule 12 deflections and one other pixel unit (be labeled as b) the corresponding liquid crystal molecule 12 adjacent with this pixel cell while not deflecting, because the interval between pixel cell a and pixel cell b is very little, electric field between two adjacent pixel electrodes 10 is disturbed, cause adjacent pixel cell a and the liquid crystal molecule 12 between pixel cell b, and pixel cell b deflects near liquid crystal molecule 12 corresponding to the edge of pixel cell a, thereby make pixel cell adjacent in liquid crystal indicator produce colour mixture, the phenomenons such as light leak, affected the effect of the demonstration of liquid crystal indicator.
Utility model content
The purpose of this utility model is to provide a kind of array base palte and display device, when this array base palte is applied to display device, can alleviate the interference of electric field between the first adjacent transparency electrode, reduce colour mixture and light leakage phenomena between adjacent pixel cell, improve the display effect of display device.
For solving the problems of the technologies described above, the utility model adopts following technical scheme:
An array base palte, comprising: a plurality of pixel cells that are in array-like arrangement, and described in each, pixel cell comprises the first transparency electrode and the colored light-filtering units being oppositely arranged, wherein,
The overlapping setting in edge of adjacent described colored light-filtering units, forms overlapping region;
Between described the first transparency electrode and described colored light-filtering units, be provided with the first insulation course, between adjacent described the first transparency electrode, be provided with projection, described projection at least comprises the part of corresponding described overlapping region in described the first insulation course, and the summit of described projection is higher than the upper surface of described the first transparency electrode.
Preferably, described projection is the part of corresponding described overlapping region in described the first insulation course.
Alternatively, described projection comprises the first lug boss and the second lug boss that is positioned at described the first lug boss top; Wherein,
Described the first lug boss consists of the overlapping region of adjacent described colored light-filtering units, and described the second lug boss is the part of corresponding described overlapping region in described the first insulation course.
Further, above-mentioned array base palte also comprises: underlay substrate, be located at many grid lines and many data lines on described underlay substrate; Described projection is corresponding with grid line described at least one, and/or described projection is corresponding with data line described at least one.
Preferably, the height that described projection exceeds the upper surface of described the first transparency electrode is 1 μ m~2 μ m, the width of described projection is greater than the width of described grid line, the difference of the width of described projection and the width of described grid line is 3 μ m~6 μ m, the width of described projection is greater than the width of described data line, and the difference of the width of described projection and the width of described data line is 3 μ m~6 μ m.
Further, above-mentioned array base palte also comprises black matrix, and described black matrix is between adjacent described pixel cell, and corresponding with described projection.
Further, described in each, pixel cell also comprises: be positioned at the second transparency electrode of described the first transparency electrode top, be located at the second insulation course between described the second transparency electrode and described the first transparency electrode; Described projection also comprises the part of corresponding described crossover region in described the second insulation course, and the summit of described projection is higher than the upper surface of described the second transparency electrode.
Alternatively, described the first transparency electrode is pixel electrode, and described the second transparency electrode is public electrode, or described the first transparency electrode is public electrode, and described the second transparency electrode is pixel electrode.
Preferably, described projection comprises: the first lug boss, be positioned at the second lug boss of described the first lug boss top, and be positioned at the 3rd lug boss of described the second lug boss top; Wherein,
Described the first lug boss consists of the overlapping region of adjacent described colored light-filtering units; Described the second lug boss is the part of corresponding described overlapping region in described the first insulation course; Described the 3rd lug boss is the part of corresponding described overlapping region in described the second insulation course.
The utility model also provides a kind of display device simultaneously, comprises any array base palte that technique scheme is carried.
In the array base palte providing at the utility model, between the first adjacent transparency electrode, be provided with projection, therefore, when passing into certain operating voltage to the first transparency electrode, utilize protruding buffer action, can obviously alleviate the electric field interference phenomenon between the first adjacent transparency electrode, thereby can alleviate the impact of this electric interfering field on the liquid crystal molecule between the first adjacent transparency electrode, and then reduce colour mixture and the light leakage phenomena between adjacent pixel cell, improved the display effect of display device.
Accompanying drawing explanation
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, below the accompanying drawing of required use during embodiment is described is briefly described, apparently, accompanying drawing in the following describes is only embodiment more of the present utility model, for those of ordinary skills, do not paying under the prerequisite of creative work, can also obtain according to these accompanying drawings other accompanying drawing.
Fig. 1 is the structural representation of array base palte of the prior art;
Fig. 2 is array base palte light leak test result schematic diagram of the prior art;
Fig. 3 is the structural representation one of the array base palte in the utility model embodiment;
Fig. 4 is the array base palte light leak test result schematic diagram in the utility model embodiment;
Fig. 5 is the structural representation two of the array base palte in the utility model embodiment;
Fig. 6 is the floor map one of the array base palte in the utility model embodiment;
Fig. 7 is the floor map two of the array base palte in the utility model embodiment;
Fig. 8 is the floor map three of the array base palte in the utility model embodiment;
Fig. 9 is the floor map four of the array base palte in the utility model embodiment;
Figure 10 is the floor map five of the array base palte in the utility model embodiment;
Figure 11 is the floor map six of the array base palte in the utility model embodiment;
Figure 12 is the floor map seven of the array base palte in the utility model embodiment;
Figure 13 is the floor map eight of the array base palte in the utility model embodiment;
Figure 14 is the preparation method's of the array base palte in the utility model embodiment schematic flow sheet one;
Figure 15 is the preparation method's of the array base palte in the utility model embodiment schematic flow sheet two.
Description of reference numerals:
1-the first transparency electrode, 2-the first insulation course,
3-colored light-filtering units, 4-projection,
5-underlay substrate, 6-data line,
The black matrix of 7-, 8-the second insulation course,
9-the second transparency electrode, 10-pixel electrode,
12-liquid crystal molecule, 41-the first lug boss,
42-the second lug boss, 43-the 3rd lug boss.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the utility model embodiment is clearly and completely described, obviously, described embodiment is the utility model part embodiment, rather than whole embodiment.Embodiment based in the utility model, those of ordinary skills are not making the every other embodiment obtaining under creative work prerequisite, all belong to the scope of the utility model protection.
Embodiment mono-
Refer to Fig. 3, the utility model embodiment provides a kind of array base palte, comprising: a plurality of pixel cells that are in array-like arrangement, and each pixel cell comprises the first transparency electrode 1 and the colored light-filtering units 3 being oppositely arranged, wherein,
The overlapping setting in edge of adjacent colored light-filtering units 3, forms overlapping region;
Between the first transparency electrode 1 and colored light-filtering units 3, be provided with the first insulation course 2, between the first adjacent transparency electrode 1, be provided with projection 4, projection 4 at least comprises the part of corresponding overlapping region in the first insulation course 2, and the summit of projection 4 is higher than the upper surface of the first transparency electrode 1.
When above-mentioned array base palte is applied in display device, because be provided with projection 4 between the first adjacent transparency electrode 1, this projection 4 can alleviate the electric field interference phenomenon between the first adjacent transparency electrode 1, thereby can alleviate the impact of electric field interference phenomenon on the liquid crystal molecule 12 between the first adjacent transparency electrode 1, and then reduced colour mixture and the light leakage phenomena between adjacent pixel cell, improved the display effect of display device.
Particularly, refer to Fig. 4, under the electric field action that liquid crystal molecule 12 in pixel cell a can form in corresponding the first transparency electrode 1, deflect, buffer action due to projection 4, the electric field that can alleviate another the first transparency electrode 1 in the pixel cell b that 1 pair of this first transparency electrode is adjacent disturbs, thereby can alleviate liquid crystal molecule 12 between the first adjacent transparency electrode 1 and pixel cell b deflects near the corresponding liquid crystal molecule 12 in edge of pixel cell a, and then can alleviate colour mixture and the light leakage phenomena between two the adjacent pixel cells in display device, improved display effect.
Please continue to refer to Fig. 3, projection 4 comprises the first lug boss 41 and is positioned at the second lug boss 42 of the first lug boss 41 tops; Wherein, the first lug boss 41 consists of the overlapping region of adjacent colored light-filtering units 3, and the second lug boss 42 is the part of corresponding overlapping region in the first insulation course 2.Particularly, when overlapping setting the in the edge of adjacent colored light-filtering units 3, at the overlapping region of adjacent colored light-filtering units 3, form and exceed colored light-filtering units 3 main bodys, the first lug boss 41 as shown in Figure 3, and it is different to form the color of adjacent colored light-filtering units 3 of the first lug boss 41; Because the overlapping region of adjacent colored light-filtering units 3 is formed with the first lug boss 41, therefore, when forming the first insulation course 2 in colored light-filtering units 3, can on the first insulation course 2, cover as shown in Figure 3 on the first lug boss 41 by self-assembling formation the second lug boss 42, the second lug bosses 42.
Above-mentioned protruding 4 comprise the first lug boss 41 and the second lug boss 42, and wherein, the first lug boss 41 is to form by adjacent colored light-filtering units 3 is overlapping; But be not limited to this, for example, when the overlapping region of adjacent colored light-filtering units 3 does not have formation not exceed the first lug boss 41 of colored light-filtering units 3 main bodys, can supporting pad be set at the overlapping region of adjacent colored light-filtering units 3, also can be on this supporting pad when forming the first insulation course 2 self-assembling formation the second lug boss 42, now, projection 4 comprises supporting pad and covers the second lug boss 42 on supporting pad.And for example, when the overlapping region of adjacent colored light-filtering units 3 does not have formation not exceed the first lug boss 41 of colored light-filtering units 3 main bodys, in colored light-filtering units 3, form insulating film layer, utilize a composition technique on this insulating film layer, to form the first insulation course 2 and projection 4, now, projection 4 is the part of corresponding above-mentioned overlapping region in the first insulation course 2.
Refer to Fig. 5, in a kind of preferred implementation, each pixel cell also comprises: be positioned at the second transparency electrode 9 of the first transparency electrode 1 top, be located at the second insulation course 8 between the second transparency electrode 9 and the first transparency electrode 1; Projection 4 also comprises the part of corresponding crossover region in the second insulation course 8, and the summit of projection 4 is higher than the upper surface of the second transparency electrode 9; Wherein, the first transparency electrode 1 is pixel electrode, the second transparency electrode 9 is public electrode, or, the first transparency electrode 1 is public electrode, and the second transparency electrode 9 is pixel electrode, it should be noted that, in above-mentioned array base palte, the first insulation course 2 and the second insulation course 8 can adopt the insulating material such as monox, silicon nitride, hafnia or resin to make; Pixel electrode can be selected strip shaped electric poles or plate electrode, and public electrode can be selected strip shaped electric poles or plate electrode.
In order to reach isolation effect, the summit of requirement projection 4 exceeds the upper surface of the second transparency electrode 9, and preferably, in order to reach preferably electric field interference and insulation effect, summit and the difference in height between the upper surface of the second transparency electrode 9 of projection 4 are 1 μ m~2 μ m.Now, projection 4 comprises: the first lug boss 41, be positioned at the second lug boss 42 of the first lug boss 41 tops, and be positioned at the 3rd lug boss 43 of the second lug boss 42 tops; And the first lug boss 41 consists of the overlapping region of adjacent colored light-filtering units 3; The second lug boss 42 is the part of the first insulation course 2 corresponding overlapping regions, covers on the first lug boss 41; The 3rd lug boss 43 is the part of the second insulation course 8 corresponding overlapping regions, covers the second lug boss 42; The forming process of concrete forming process and above-mentioned Fig. 3 protrusions 4 is basic identical, therefore repeats no more.
Please continue to refer to Fig. 3 and Fig. 5, above-mentioned array base palte also comprises: underlay substrate 5, be located at many grid line (not shown)s and many data lines 6 on underlay substrate 5; Projection 4 is corresponding with at least one grid line, and/or projection 4 is corresponding with at least one data line 6.Because grid line and data line 6 can define pixel cell, and the first transparency electrode 1 is positioned at pixel cell, is substantially full of pixel cell; Meanwhile, projection 4 is between the first adjacent transparency electrode 1, and known protruding 4 corresponding grid lines and/or data line 6 arrange.
Particularly, in above-mentioned array base palte, each pixel cell is respectively rectangular configuration conventionally, comprises long limit and minor face, and because display device is when working, the electromotive force of the first transparency electrode 1 of each pixel cell is unequal, and therefore, pixel cell does not contact mutually, when pixel cell is arranged on array base palte, the He Chang limit, long limit of pixel cell is adjacent, and minor face and minor face are adjacent, and long limit and minor face are perpendicular.Because the first transparency electrode 1 takes pixel cell conventionally, be that the He Chang limit, long limit of adjacent the first transparency electrode 1 is adjacent, minor face is adjacent with minor face, the gap location gapped between the first adjacent transparency electrode 1, projection 4 can be between the first adjacent transparency electrode 1.Below by the arrangement mode of describing projection 4, further illustrate the structure of the array base palte that the utility model embodiment provides.
As shown in Figure 6, projection 4 is arranged between the long limit of the first adjacent transparency electrode 1, between two adjacent row the first transparency electrodes 1, is provided with projection 4, and is intervally arranged along the long side direction projection 4 of the first transparency electrode 1.As shown in Figure 7, projection 4 is arranged between the minor face of the first adjacent transparency electrode 1, and between two row pixel cells, correspondence is provided with projection 4, and is intervally arranged along the short side direction projection 4 of the first transparency electrode 1.As shown in Figure 8, projection 4 is arranged between the long limit of the first adjacent transparency electrode 1, also be arranged between the minor face of the first adjacent transparency electrode 1, be between adjacent two row pixel cells and between two adjacent row pixel cells, to be provided with projection 4, and projection 4 long side directions along the first transparency electrode 1 and short side direction are intervally arranged.As shown in Figure 9, two adjacent row the first transparency electrodes 1 are one group, projection 4 is arranged between the minor face of the first transparency electrode 1 in two adjacent groups, and between two groups of pixel cells, correspondence is provided with projection 4, and is intervally arranged along the short side direction projection 4 of the first transparency electrode 1.
As shown in figure 10, projection 4 is arranged between the long limit of the first adjacent transparency electrode 1, between two adjacent row the first transparency electrodes 1, is provided with projection 4, and arranges continuously along the long side direction projection 4 of the first transparency electrode 1.As shown in figure 11, projection 4 is arranged between the minor face of the first adjacent transparency electrode 1, between two adjacent row the first transparency electrodes 1, is provided with projection 4, and arranges continuously along the short side direction projection 4 of the first transparency electrode 1.As shown in figure 12, two adjacent row the first transparency electrodes 1 are one group, projection 4 is arranged between the long limit of the first transparency electrode 1 in two adjacent groups, and between two groups of pixel cells, correspondence is provided with projection 4, and arranges continuously along the long side direction projection 4 of the first transparency electrode 1.As shown in figure 13, projection 4 is arranged between the long limit of the first adjacent transparency electrode 1, also be arranged between the minor face of the first adjacent transparency electrode 1, be between adjacent two row pixel cells and between two adjacent row pixel cells, to be provided with projection 4, and projection 4 long side directions along the first transparency electrode 1 and short side direction are arranged continuously.
Please continue to refer to Fig. 3 and Fig. 5, in order to reach preferably isolation effect, projection 4 height that exceed the upper surface of the first transparency electrode 1 are 1 μ m~2 μ m, the width of projection 4 is greater than the width of grid line, the difference of the width of projection 4 and the width of described grid line is 3 μ m~6 μ m, the width of projection 4 is greater than the width of data line 6, and the difference of the width of projection 4 and the width of data line 6 is 3 μ m~6 μ m.
Please continue to refer to Fig. 3, in order further to reduce the light leak between adjacent pixel unit, in embodiment of the utility model, array base palte also comprises black matrix 7, and black matrix 7 is between adjacent pixel cell, and with protruding 4 corresponding.Black matrix 7 can be arranged on below the overlapping region part of adjacent colored light-filtering units, or can be arranged on above the overlapping region part of adjacent colored light-filtering units, or can also be arranged at above the first insulation course.Existence due to black matrix, projection between adjacent pixel unit further raises with respect to the height of the first transparency electrode upper surface, therefore, the electric field that can further alleviate between adjacent pixel cell disturbs and mixed light phenomenon, has improved aperture opening ratio and then has promoted display effect.In addition, black matrix 7 is corresponding with each grid line and pieces of data line 6.
In above-mentioned array base palte, because colored light-filtering units is arranged on array base palte, therefore, above-mentioned array base palte is also referred to as COA (Color Filter On Array) array base palte.Described array base palte can specifically be applied in twisted nematic (Twisted Nematic, abbreviation TN) in the display device of pattern, also can be applied in senior super Wei Chang conversion (Advanced Super Dimension Switch, abbreviation ADS) in the display device of pattern, can also be applied in the display device of wide visual angle plane conversion (In Plane Switching is called for short IPS) pattern.
The utility model embodiment also provides a kind of display device that comprises above-mentioned array base palte, and described display device can be: any product or parts with Presentation Function such as liquid crystal panel, Electronic Paper, mobile phone, panel computer, televisor, display, notebook computer, digital album (digital photo frame), navigating instrument.In the array base palte adopting because of display device, between the first adjacent transparency electrode, be provided with projection, this projection can alleviate the electric field interference phenomenon between the first adjacent transparency electrode, thereby can alleviate the impact of electric field interference phenomenon on the liquid crystal molecule between the first adjacent transparency electrode, reduce colour mixture and light leakage phenomena between adjacent pixel cell, and then improved the display effect of display device.
Embodiment bis-
Refer to Fig. 3 and Figure 14, the utility model embodiment provides a kind of preparation method of array base palte, and this preparation method comprises:
101, form chromatic filter layer, described chromatic filter layer comprises a plurality of colored light-filtering units 3 that are in array-like arrangement, and the color of adjacent colored light-filtering units 3 is different, and the overlapping setting in edge of adjacent colored light-filtering units 3, forms overlapping region;
102, on chromatic filter layer, form the first insulation course 2 and projection 4, projection 4 at least comprises the part of corresponding overlapping region in the first insulation course 2;
103, on the first insulation course 2, form a plurality of the first transparency electrodes 1 that are in array-like arrangement, each first transparency electrode 1 is corresponding with a colored light-filtering units 3; Projection 4 is between the first adjacent transparency electrode 1, and the summit of projection 4 is higher than the upper surface of the first transparency electrode 1.
In the preparation process of above-mentioned array base palte, on chromatic filter layer, form the step of the first insulation course 2 and projection 4, the preparation method of wherein said projection specifically comprises: on chromatic filter layer, form insulating film layer, form the projection 4 of the first insulation course 2 and the first insulation course 2 corresponding overlapping regions by intermediate tone mask composition technique.Particularly, first by the mode that is coated with or applies, form one deck insulating film layer on chromatic filter layer, this insulating film layer can be made by transparent resin material; Then, by process portion such as film forming, exposure, developments, remove overlapping region transparent resin material in addition, retain the transparent resin material of corresponding overlapping region, thereby form required the first insulation course 2 and projection 4.
The step that forms the first insulation course 2 and projection 4 on chromatic filter layer, the preparation method of its protrusions 4 can also form by the following method:
Overlapping formation first lug boss 41 in edge of adjacent colored light-filtering units 3, while forming the first insulation course 2 on the first lug boss 41 self-assembling formation the second lug boss 42.Particularly, when overlapping setting the in the edge of adjacent colored light-filtering units 3, at the overlapping region of adjacent colored light-filtering units 3, form and exceed colored light-filtering units 3 main bodys, the first lug boss 41 as shown in Figure 3, because the overlapping region of adjacent colored light-filtering units 3 is formed with the first lug boss 41, therefore, when the mode of the mode by coating or laying forms the first insulation course 2 on chromatic filter layer, can on the first insulation course 2, cover as shown in Figure 3 on the first lug boss 41 by self-assembling formation the second lug boss 42, the second lug bosses 42.
Certainly, when the overlapping region of adjacent colored light-filtering units 3 does not have formation not exceed the first lug boss 41 of colored light-filtering units 3 main bodys, above-mentioned protruding 4 can also prepare by the following method: in colored light-filtering units 3, form after the first insulation course 2, utilize a composition technique to form required projection 4, now, projection 4 comprises the part of corresponding above-mentioned overlapping region in the first insulation course 2.
Refer to Fig. 5 and Figure 15, further, the preparation method of above-mentioned array base palte also comprises:
104, in a plurality of the first transparency electrodes 1, form the second insulation course 8;
105, on the second insulation course 8, form a plurality of the second transparency electrodes 9, wherein, projection 4 also comprises the part of corresponding crossover region in the second insulation course 8, and the summit of projection 4 is higher than the upper surface of the second transparency electrode 9.
When the mode of the mode by coating or laying forms the second insulation course 8 in the first transparency electrode 1, because being formed with the second lug boss 42 on the first insulation course 2, therefore, meeting self-assembling formation the 3rd lug boss 43 on the second insulation course 8.
The above; it is only embodiment of the present utility model; but protection domain of the present utility model is not limited to this; anyly be familiar with those skilled in the art in the technical scope that the utility model discloses; can expect easily changing or replacing, within all should being encompassed in protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with the protection domain of described claim.

Claims (10)

1. an array base palte, comprising: a plurality of pixel cells that are in array-like arrangement, and described in each, pixel cell comprises the first transparency electrode and the colored light-filtering units being oppositely arranged, it is characterized in that,
The overlapping setting in edge of adjacent described colored light-filtering units, forms overlapping region;
Between described the first transparency electrode and described colored light-filtering units, be provided with the first insulation course, between adjacent described the first transparency electrode, be provided with projection, described projection at least comprises the part of corresponding described overlapping region in described the first insulation course, and the summit of described projection is higher than the upper surface of described the first transparency electrode.
2. array base palte according to claim 1, is characterized in that, described projection is the part of corresponding described overlapping region in described the first insulation course.
3. array base palte according to claim 1, is characterized in that, described projection comprises the first lug boss and is positioned at the second lug boss of described the first lug boss top; Wherein,
Described the first lug boss consists of the overlapping region of adjacent described colored light-filtering units, and described the second lug boss is the part of corresponding described overlapping region in described the first insulation course.
4. according to the arbitrary described array base palte of claim 1-3, it is characterized in that, also comprise: underlay substrate, be located at many grid lines and many data lines on described underlay substrate; Described projection is corresponding with grid line described at least one, and/or described projection is corresponding with data line described at least one.
5. array base palte according to claim 4, it is characterized in that, the height that described projection exceeds the upper surface of described the first transparency electrode is 1 μ m~2 μ m, the width of described projection is greater than the width of described grid line, the difference of the width of described projection and the width of described grid line is 3 μ m~6 μ m, the width of described projection is greater than the width of described data line, and the difference of the width of described projection and the width of described data line is 3 μ m~6 μ m.
6. array base palte according to claim 1, is characterized in that, also comprises black matrix, and described black matrix is between adjacent described pixel cell, and corresponding with described projection.
7. array base palte according to claim 1, it is characterized in that, described in each, pixel cell also comprises: be positioned at the second transparency electrode of described the first transparency electrode top, be located at the second insulation course between described the second transparency electrode and described the first transparency electrode;
Described projection also comprises the part of corresponding described crossover region in described the second insulation course, and the summit of described projection is higher than the upper surface of described the second transparency electrode.
8. array base palte according to claim 7, is characterized in that, described the first transparency electrode is pixel electrode, and described the second transparency electrode is public electrode, or described the first transparency electrode is public electrode, and described the second transparency electrode is pixel electrode.
9. array base palte according to claim 8, is characterized in that, described projection comprises: the first lug boss, be positioned at the second lug boss of described the first lug boss top, and be positioned at the 3rd lug boss of described the second lug boss top; Wherein,
Described the first lug boss consists of the overlapping region of adjacent described colored light-filtering units; Described the second lug boss is the part of corresponding described overlapping region in described the first insulation course; Described the 3rd lug boss is the part of corresponding described overlapping region in described the second insulation course.
10. a display device, is characterized in that, comprises the array base palte as described in claim 1-9 any one.
CN201420410178.9U 2014-07-24 2014-07-24 A kind of array base palte and display device Active CN203950102U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106292038A (en) * 2016-10-17 2017-01-04 武汉华星光电技术有限公司 A kind of display panels
CN106483709A (en) * 2017-01-03 2017-03-08 京东方科技集团股份有限公司 Color membrane substrates, array base palte and display device
CN106842674A (en) * 2015-11-19 2017-06-13 三星显示有限公司 Display device
CN110618555A (en) * 2019-09-26 2019-12-27 京东方科技集团股份有限公司 Display substrate, manufacturing method thereof and display device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106842674A (en) * 2015-11-19 2017-06-13 三星显示有限公司 Display device
CN106292038A (en) * 2016-10-17 2017-01-04 武汉华星光电技术有限公司 A kind of display panels
CN106483709A (en) * 2017-01-03 2017-03-08 京东方科技集团股份有限公司 Color membrane substrates, array base palte and display device
CN110618555A (en) * 2019-09-26 2019-12-27 京东方科技集团股份有限公司 Display substrate, manufacturing method thereof and display device

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