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CN105842932A - Liquid crystal display (LCD) panel - Google Patents

Liquid crystal display (LCD) panel Download PDF

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Publication number
CN105842932A
CN105842932A CN201610409989.0A CN201610409989A CN105842932A CN 105842932 A CN105842932 A CN 105842932A CN 201610409989 A CN201610409989 A CN 201610409989A CN 105842932 A CN105842932 A CN 105842932A
Authority
CN
China
Prior art keywords
spacer
black matrix
row
display panels
array
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201610409989.0A
Other languages
Chinese (zh)
Inventor
宋琼
吴玲
沈柏平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tianma Microelectronics Co Ltd
Xiamen Tianma Microelectronics Co Ltd
Original Assignee
Tianma Microelectronics Co Ltd
Xiamen Tianma Microelectronics Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tianma Microelectronics Co Ltd, Xiamen Tianma Microelectronics Co Ltd filed Critical Tianma Microelectronics Co Ltd
Priority to CN201610409989.0A priority Critical patent/CN105842932A/en
Publication of CN105842932A publication Critical patent/CN105842932A/en
Pending legal-status Critical Current

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL 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
    • G02F1/00Devices 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
    • G02F1/01Devices 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 
    • G02F1/13Devices 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
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1339Gaskets; Spacers; Sealing of cells
    • G02F1/13394Gaskets; Spacers; Sealing of cells spacers regularly patterned on the cell subtrate, e.g. walls, pillars
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL 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
    • G02F1/00Devices 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
    • G02F1/01Devices 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 
    • G02F1/13Devices 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
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1335Structural association of cells with optical devices, e.g. polarisers or reflectors
    • G02F1/133509Filters, e.g. light shielding masks
    • G02F1/133512Light shielding layers, e.g. black matrix

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Mathematical Physics (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Liquid Crystal (AREA)

Abstract

The application discloses a liquid crystal display (LCD) panel, comprising an array substrate, a color film substrate arranged opposite to the array substrate, and a spacing pillar array formed between the array substrate and the color film substrate, wherein the spacing pillar array comprises a plurality of spacing pillars; each spacing pillar comprises a bottom surface and a top surface which are parallel to each other; each top surface comprises a first plane and a second plane, and the distances h1 between the first planes and the bottom surfaces are greater than the distances h2 between the second planes and the bottom surfaces. According to the scheme of the embodiments of the application, functions of a main spacing pillar and auxiliary spacing pillars can be realized at the same time by arranging the spacing pillars with height difference. Furthermore, the main spacing pillar and the auxiliary spacing pillars are integrated into a whole, so that the number of the spacing pillars needed to be arranged is reduced, and a phenomenon of dark state light leakage caused by adverse alignment is further reduced.

Description

Display panels
Technical field
The disclosure relates generally to Display Technique field, particularly relates to a kind of display panels.
Background technology
Display panels generally includes array base palte, color membrane substrates and is formed at therebetween Liquid crystal layer.Liquid crystal layer is avoided to be subject in order to form support between array base palte and color membrane substrates To extruding, multiple spacer generally can be set between array base palte and color membrane substrates.
As it is shown in figure 1, be in existing display panels, the schematic structure of color membrane substrates Figure.Specifically, color membrane substrates is formed with colored filter and for splitting colorized optical filtering Sheet is to form the black matrix" 15 of the pixel cell of multiple array arrangements.Such as, colored filter Redness (R) optical filter, green (G) optical filter and blue (B) optical filter can be included, So, R, G, B optical filter can be split to form red pixel by black matrix" 15 Unit 11, green pixel cell 12 and blue pixel cells 13.In Fig. 1, identical filling sample The pixel cell of formula represents the pixel cell of same color.Additionally, be also formed with on color membrane substrates Multiple spacers 14.
A portion spacer that spacer array is comprised is master space post, and another part It it is auxiliary spacer.Wherein, master space post can have higher height, and auxiliary spacer has Less height.After the array base palte and color membrane substrates para-position laminating of display panels, main Spacer can contact with array base palte, and has certain between auxiliary spacer and array base palte Gap.
When display panels is extruded by external force, master space post can ensure that display panels In electronic device will not be the most impaired, auxiliary spacer then can be further ensured that LCD The box thickness of plate changes in a less scope, it is to avoid box thickness is abnormal.
Spacer 14 such as can be formed on each row of black matrix" 15, and spacer 14 Shape such as can round table-like for shown in Fig. 2.As in figure 2 it is shown, spacer 14 includes phase The most parallel upper surface 141 and lower surface 142, upper surface 141 and lower surface 142 are circle Shape.
Additionally, the dark-state light leak caused in order to avoid display panels orientation is bad, spacer 14 is the most non-conterminous with green pixel cell 12.
But, along with improving constantly of display floater resolution, black between adjacent pixel unit The width of colour moment battle array 15 is more and more narrow.Such as, when resolution more than 400PPI (Pixel per Inch, Per inch pixel count) time, the width of black matrix" is about 4~5 μm.And in order to ensure liquid crystal Display floater is not damaged by when being extruded by external force and box thickness is the most homogeneous, master space post and auxiliary between The quantity of spacer post is the most more.So, in high PPI display panels, The position of the bad dark-state light leak caused of spacer post (including master space post and auxiliary spacer) place's orientation The most more.
On the other hand, due in high PPI display panels, the narrower width of black matrix", The bad dark-state light leak caused of orientation will be distributed in pixel cell more, cause display floater Dark-state is the darkest.
Additionally, due to being shaped as of spacer 14 is round table-like, when display panels is by the external world During pressure effect, spacer 14 is easily slipped on array base palte in the via of insulating barrier, thus Cause the box thickness extruding colour cast or display panels abnormal.
Summary of the invention
In view of drawbacks described above of the prior art or deficiency, it is desirable to provide a kind of display panels, To solving technical problem present in prior art.
First aspect, the embodiment of the present application provides a kind of display panels, including: array Color membrane substrates that substrate and array base palte are oppositely arranged and be formed at array base palte and color film base Spacer array between plate;Wherein: spacer array includes multiple spacer;Each spacer Including the bottom surface being parallel to each other and end face;End face includes the first plane and the second plane, and first Distance h between plane and bottom surface1More than distance h between the second plane and bottom surface2
According to the scheme of the embodiment of the present application, be there is by setting the spacer of difference in height, permissible Realize master space post and the function of auxiliary spacer simultaneously.Additionally, due to by master space post and auxiliary between Spacer post becomes one, and decreases the quantity of the spacer needing setting, thus alleviates orientation The bad dark-state light leakage phenomena caused.
Additionally, in certain embodiments, it is shaped such that spacer by arranging spacer bottom surface Along black matrix" line direction the first width more than along along black matrix" line direction adjacent any two Distance between via, during so that display panels receives ambient pressure effect, interval Post will not fall in via, it is to avoid the extruding colour cast of display panels and box thickness are abnormal.
Accompanying drawing explanation
The detailed description that non-limiting example is made made with reference to the following drawings by reading, Other features, purpose and advantage will become more apparent upon:
Fig. 1 shows in existing display panels, the schematic diagram of color membrane substrates;
Fig. 2 shows in existing display panels, the schematic diagram of spacer;
Fig. 3 shows in the display panels of the application, showing of an embodiment of spacer Meaning property structure chart;
Fig. 4 shows in the display panels of the application, the black square being positioned on color membrane substrates Battle array, the schematic diagram of relative position relation between colored filter and spacer array;
Fig. 5 shows in the array base palte in the display panels of the application, pixel electrode, Schematic between public electrode and the insulating barrier via between pixel electrode and public electrode Relative position relation schematic diagram;
It is relative that Fig. 6 shows between two vias that spacer is adjacent with at black matrix" line direction Position relationship schematic diagram;
Fig. 7 A~Fig. 7 F shows the schematic diagram of the bottom shape of the spacer of the application.
Detailed description of the invention
With embodiment, the application is described in further detail below in conjunction with the accompanying drawings.It is appreciated that , specific embodiment described herein is used only for explaining related invention, rather than to this Bright restriction.It also should be noted that, for the ease of describe, accompanying drawing illustrate only with The part that invention is relevant.
It should be noted that in the case of not conflicting, the embodiment in the application and embodiment In feature can be mutually combined.Describe this below with reference to the accompanying drawings and in conjunction with the embodiments in detail Application.
The display panels of the application, is oppositely arranged including array base palte and array base palte Color membrane substrates and the spacer array being formed between array base palte and color membrane substrates.Wherein, Spacer array includes multiple spacer.
Shown in Figure 3, in the display panels of the application, an enforcement of spacer The schematic diagram of example.
As it is shown on figure 3, spacer includes bottom surface 310 and the end face 320 being parallel to each other.
End face 320 includes the first plane 321 and the second plane 322.And first plane 321 with Distance h between bottom surface 3101More than distance h between the second plane 322 and bottom surface 3102
Here, owing to first plane the 321, second plane 322 is all parallel with bottom surface 310, Thus, distance h between the first plane 321 and bottom surface 3101For being perpendicular to the first plane 321 With in the vertical line of bottom surface 310, between intersection point and the intersection point of bottom surface 310 of the first plane 321 Distance.
Similarly, distance h between the second plane 322 and bottom surface 3102Flat for being perpendicular to second In the vertical line of face 322 and bottom surface 310, the intersection point of the second plane 322 and the intersection point of bottom surface 310 Between distance.
So, it is divided into two planes not waited (i.e. due to the end face 320 of spacer First plane 321 and the second plane 322), it is integrated with master space post and auxiliary interval in prior art Post.Both display panels can have been avoided without damage when being extruded by external force, can ensure that again The box of display panels is thick.In other words, a spacer of the present embodiment, can substitute A master space post and an auxiliary spacer in prior art, so that spacer is at color film base On plate, occupied area is less, so decrease that spacer position causes because orientation is bad dark State light leakage phenomena, promotes the dark-state display effect of display panels.
Fig. 4 shows in the display panels of the present embodiment, and be formed on color membrane substrates is black Relative position relation between colour moment battle array, colored filter and spacer.
As shown in Figure 4, black matrix" include multiple black matrix" row 410 and with each black square The black matrix" row 420 that battle array row intersects.Each black matrix" row 410 and each black matrix" row 420 Separate colored filter to form the display pixel 430 of multiple array arrangements.
Here, it should be noted that the display panels of the present embodiment can comprise multiple There is the colored filter of different colours.So, under liquid crystal molecule is at electric field action partially When turning, the light through each display pixel 430 can present different colors.
Additionally, as shown in Figure 4, black matrix" to black matrix" is just covering each spacer 440 Projection.In other words, each spacer 440 is entirely located in black square to the orthographic projection of black matrix" In battle array.So, spacer 440 is not located in the region of any one display pixel 430, Thus also the transmitance in each display pixel 430 will not be produced negative impact.
Alternatively, in the display panels of the present embodiment, the bottom surface of spacer can be axle pair Claim figure, and wherein axis of symmetry of bottom surface is parallel to the direction of black matrix" row.
First width of bottom surface is more than the second width of bottom surface, and wherein, the first width is bottom surface Along being parallel to the width maximum in direction of black matrix" row, the second width be bottom surface along parallel Width maximum in the direction of black matrix" row.So, even if display panels by The narrower width of black matrix" row in black matrix" is caused, due to spacer bottom surface in high PPI The first width extended along black matrix" row can arrange bigger, correspondingly, and spacer bottom surface Can have bigger area so that spacer is more stable to the support of display panels, Reliably.
In the display panels of the application, array base palte also includes being formed at the first conductor layer Pixel electrode array, each pixel electrode in pixel electrode array lays respectively in each display pixel. Array base palte also includes the public electrode being formed at the second conductor layer and is formed at the first conductor layer And the insulating barrier that second between conductor layer.Multiple one a pair with pixel electrode is offered on insulating barrier The via answered, so that each pixel electrode forms conduction electric field respectively with public electrode.
As it is shown in figure 5, be in the display panels of the application, the picture being positioned on array base palte Element electrode 510, public electrode 520 and between pixel electrode 510, public electrode 520 The relative position relation schematic diagram of insulating barrier 530.
Array base palte include thin film transistor (TFT), the pixel electrode 510 being positioned at each display pixel, Public electrode 520 and be formed at the insulating barrier between pixel electrode 510 and public electrode 520 530.Thin film transistor (TFT) includes the grid 540 being formed at the first metal layer and is formed at the second gold medal Belong to the source of layer, drain electrode 550.Additionally, array base palte also include being formed at multi-strip scanning line and The data wire intersected with multi-strip scanning line.Scan line such as can be with the grid of thin film transistor (TFT) 540 are arranged with layer, and data wire can be arranged with layer with the source-drain electrode 550 of thin film transistor (TFT).
The grid 540 of thin film transistor (TFT) is connected with scan line, and the drain electrode of thin film transistor (TFT) and number Connect according to line.When the scanning signal of scan line makes thin film transistor (TFT) open, thin film transistor (TFT) Source, drain electrode connection, thus by the data signal transmission that applies on data wire to pixel electrode 510.So, the liquid crystal molecule in the liquid crystal layer between array base palte and color membrane substrates Correspondingly deflect under the electric field action formed between pixel electrode 510 and public electrode 520, Thus show predetermined picture.
Additionally, as it is shown in figure 5, in order to make pixel electrode 510 and the source of thin film transistor (TFT), leakage Source electrode in electrode 550 or drain electrode electrical connection, insulating barrier 530 can be offered a via 531, Similarly, the insulating barrier 560 between public electrode 520 and the second metal level also can offer one Via 561, so, pixel electrode 510 can be with the source electrode of thin film transistor (TFT) or drain electrode Electrical connection.
As shown in Figure 6, it illustrates spacer 630 and along the adjacent mistake of black matrix" line direction Relative position relation between hole 610 and via 620.
In Fig. 6, via 610 and via 620 are respectively provided with geometric center O and O ', and geometry Center O and geometric center O ' between distance be d.
Additionally, it is spacer 630 that spacer 630 has the 3rd width c, the 3rd width c End face is at the width maximum in the direction of black matrix" row.
As shown in Figure 6, the 3rd width c is more than distance d between via 610 and via 620. So, when display panels is extruded by external force, spacer 630 is difficult to clamp-on arbitrarily In one via, and then display panels is made to remain to keep relative stability when being extruded by external force Box thick, and then ensure good display effect.
See shown in Fig. 7 A~Fig. 7 D, for the schematic diagram of bottom shape of the spacer of the application. It should be noted that Fig. 7 A~Fig. 7 being only intended to illustrate property of D illustrate and can be used for realizing The bottom shape of the spacer in the display panels of the application, rather than limit the application Display panels in the bottom shape of spacer.
Such as, as shown in Figure 7 A, in the display panels of the present embodiment, spacer array The spacer that bottom surface is round rectangle 710 can be included, and the long limit of round rectangle 710 is permissible It is parallel to the direction of black matrix" row.
Or, as shown in Figure 7 B, in the display panels of the present embodiment, spacer array The spacer that bottom surface is oval 720 can be included, and the longer axis parallel of ellipse 720 is in black The direction of color row matrix.
Or, as seen in figure 7 c, in the display panels of the present embodiment, spacer array The spacer that bottom surface is rhombus 730, wherein, a wherein diagonal angle of rhombus 730 can be included Line is parallel to the direction of black matrix" row.
Or, in the display panels of the present embodiment, it is also possible to include having by least two The spacer of the bottom surface that the spirte of congruence is spliced to form.As shown in Fig. 7 D~Fig. 7 F.
Wherein, Fig. 7 D schematically shows by two congruent circle 741,742 splicing shapes The bottom surface 740 become.Fig. 7 E schematically shows the ellipse 751,752 congruent by two The bottom surface 750 being spliced to form, here, the major axis of oval 751 and oval 752 is such as The direction of black matrix" row can be parallel to.Fig. 7 F shows the isosceles trapezoid congruent by two 761, the bottom surface 760 that 762 are spliced to form.Wherein, the base of two isosceles trapezoids 761,762 is spelled Connect and extend along the direction being parallel to black matrix" row.
In addition it should be noted that in the display panels of the application, the bottom surface of spacer and The end face of spacer can be of similar shape, so that spacer is in manufacturing process, Making can be etched only with the mask plate of a kind of pattern.
Alternatively, in the spacer in the display panels of the application, the first plane separation bottom surface High h1High h with the second plane separation bottom surface2Can meet following relation:
0.4μm≤h1-h2≤0.6μm。
So, spacer the most both can play between the master of existing display panels The effect of spacer post, can play again the effect of auxiliary spacer in existing display panels, enter Sending out of the water ripple phenomenon that one step ensures that the box of display panels is thick and prevents pressed by external force from causing Raw.
Additionally, the display panels of the application also includes both alignment layers and liquid crystal layer.Liquid crystal layer shape Become between array base palte and color membrane substrates, and liquid crystal layer includes negative liquid crystal.Joining of both alignment layers To the direction being oriented parallel to black matrix" row.
So, in process of alignment, the orientation not good general caused due to the occupy-place of spacer Fully fall in black matrix" row, without entering in pixel region, thus avoid orientation The bad dark-state light leakage phenomena caused.Further, spacer can be arranged on LCD On black matrix" row adjacent with random color pixel region in plate, and the highest without avoiding having The pixel region of brightness.
Furthermore, it is necessary to explanation, in the spacer in the display panels of the application, top The first plane and the second plane in face can have multiple relative position relation.Such as, first Plane and the second plane can arrange along the direction of black matrix" row, or, the first plane and the Two planes can also be along the direction arrangement of black matrix" row.Or, the first plane and/or second flat Face can include many sub-planes, and the connecting method of each sub-plane can also be arbitrary, only Want the first plane, the second plane parallel with bottom surface respectively, and the distance of the first plane separation bottom surface is big In the distance of the second plane separation bottom surface, then within being contemplated as falling within the protection domain of the application.
It will be appreciated by those skilled in the art that invention scope involved in the application, do not limit In the technical scheme of the particular combination of above-mentioned technical characteristic, also should contain simultaneously without departing from In the case of described inventive concept, above-mentioned technical characteristic or its equivalent feature carry out combination in any And other technical scheme formed.Such as features described above and (but not limited to) disclosed herein The technical characteristic with similar functions is replaced mutually and the technical scheme that formed.

Claims (11)

1. a display panels, is oppositely arranged with described array base palte including array base palte Color membrane substrates and the spacer battle array that is formed between described array base palte and described color membrane substrates Row;
It is characterized in that:
Described spacer array includes multiple spacer;
Each described spacer includes bottom surface and the end face being parallel to each other;
Described end face includes the first plane and the second plane, and described first plane and described bottom surface Between distance h1More than distance h between described second plane and described bottom surface2
Display panels the most according to claim 1, it is characterised in that: described color film Black matrix" and colored filter it is formed with on substrate;
Described black matrix" includes multiple black matrix" row and intersects with each described black matrix" row Black matrix" row;
Described in each described black matrix" row and each described black matrix" column split, colored filter is with shape Become the display pixel of multiple array arrangement;
Wherein, described black matrix" covers the orthographic projection to described black matrix" of each described spacer.
Display panels the most according to claim 2, it is characterised in that:
Described bottom surface is zhou duicheng tuxing, and the axis of symmetry of described bottom surface is parallel to described black matrix" The direction of row;
First width of described bottom surface is more than the second width of described bottom surface, wherein, described first Width is the width maximum along the direction being parallel to described black matrix" row of described bottom surface, institute State the width along the direction being parallel to described black matrix" row that the second width is described bottom surface maximum Value.
Display panels the most according to claim 3, it is characterised in that:
Described array base palte includes public electrode, multiple pixel electrode and is positioned at described common electrical Insulating barrier between pole and the plurality of pixel electrode;
Multiple and the plurality of pixel electrode via one to one is offered on described insulating barrier, So that each described pixel electrode forms electric field with described public electrode respectively;
Wherein, the 3rd width c of described spacer and described via are along being parallel to described black square The direction of battle array row adjacent any two described in distance d between via meet:
C > d;
Wherein, described 3rd width is that the end face of described spacer is in the direction of black matrix" row Width maximum, described along the direction of black matrix" row adjacent any two described between via Distance d be described along the direction of black matrix" row adjacent any two described in the geometric center of via Between distance.
Display panels the most according to claim 1, it is characterised in that described first Distance h between plane and described bottom surface1And between described second plane and described bottom surface away from From h2Meet:
0.4μm≤h1-h2≤0.6μm。
6. according to the display panels described in claim 1-5 any one, it is characterised in that:
Described spacer array includes the spacer that bottom surface is round rectangle;
Wherein, the long limit of described round rectangle is parallel to the direction of described black matrix" row.
7. according to the display panels described according to claim 1-5 any one, its feature It is:
Described spacer array includes that bottom surface is oval spacer;
Wherein, the longer axis parallel of described ellipse is in the direction of described black matrix" row.
8. according to the display panels described according to claim 1-5 any one, its feature It is:
Described spacer array includes the spacer that bottom surface is rhombus;
Wherein, wherein diagonal of described rhombus is parallel to the direction of described black matrix" row.
9. according to the display panels described according to claim 1-5 any one, its feature It is:
Described spacer array includes the spacer that bottom surface is the first figure;
Wherein, described first figure is spliced to form by the spirte of at least two congruence.
Display panels the most according to claim 9, it is characterised in that described son Figure include following any one:
Circle, oval and isosceles trapezoid.
11. exist according to the display panels described in claim 2-5 any one, its feature In:
Described display panels also includes both alignment layers and liquid crystal layer;
Wherein, described liquid crystal layer is formed between described array base palte and described color membrane substrates, and Described liquid crystal layer includes negative liquid crystal;
The alignment direction of described both alignment layers is parallel to the direction of described black matrix" row.
CN201610409989.0A 2016-06-12 2016-06-12 Liquid crystal display (LCD) panel Pending CN105842932A (en)

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CN110427931A (en) * 2019-07-31 2019-11-08 厦门天马微电子有限公司 A kind of array substrate and display device
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CN110427931A (en) * 2019-07-31 2019-11-08 厦门天马微电子有限公司 A kind of array substrate and display device
CN110427931B (en) * 2019-07-31 2022-04-12 厦门天马微电子有限公司 Array substrate and display device
CN114236916A (en) * 2021-11-15 2022-03-25 滁州惠科光电科技有限公司 Display panel and display device

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