CN206193735U - Touch substrate and display device - Google Patents
Touch substrate and display device Download PDFInfo
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- CN206193735U CN206193735U CN201621280041.1U CN201621280041U CN206193735U CN 206193735 U CN206193735 U CN 206193735U CN 201621280041 U CN201621280041 U CN 201621280041U CN 206193735 U CN206193735 U CN 206193735U
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- cabling
- touch
- sub
- base plate
- control electrode
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Abstract
The utility model provides a touch substrate and display device relates to touch -control technical field, can reduce the risk of touch panel metal wiring disconnection, improves the yield of product. This touch substrate includes the substrate, the substrate includes the touch -control district and walks the line district, the touch -control district is provided with the touch -control structure, the touch -control structure is including the mutual insulating just first touch -control electrode and the second touch -control electrode of cross arrangement, walk line district be provided with with first touch -control electric connection walk the line and with second touch -control electric connection walks the line, at least one walk the solenoid and draw together that the line is walked to the first son of range upon range of setting and the line is walked to second, it still includes the insulating layer to walk the line district, the insulating layer sets up first son walk the line with second is walked between the line, same walk the line first son walk the line with the line is walked through setting up to second a plurality of fretworks district electricity on the insulating layer is connected.
Description
Technical field
The utility model is related to technical field of touch control, more particularly to a kind of touch base plate and display device.
Background technology
In recent years, with the handling lifting of electronic equipment and the development of electronic technology, touch screen technology is in mobile phone, flat
Have in the electronic equipments such as plate, notebook computer and be widely applied.The development of touching technique occurs in that resistance, electric capacity, electromagnetism etc.
Different technique directions;Capacitance plate has turned into main product by cheap cost and excellent Consumer's Experience.
Integrated touch-control (One Glass Solution, abbreviation OGS) technology refers to be formed in the Touch Zone of cover-plate glass
Touch-control structure, the cabling for driving touch-control structure is formed in cabling area.Cover-plate glass plays defencive function and touch controllable function simultaneously
Double action.
Because cabling area space is limited, the cabling dense distribution in cabling area is arranged on, when there is particulate in environment, easily
Cause the disconnection of cabling.Especially as the development of narrow frame so that be arranged on the more crypto set of the cabling arrangement in cabling area, thus
The probability that cabling disconnection occurs is higher, so as to have a strong impact on the yield of product.
Utility model content
Embodiment of the present utility model provides a kind of contact panel and display device, it is possible to decrease the risk that cabling disconnects, and carries
The yield of high product.
To reach above-mentioned purpose, embodiment of the present utility model is adopted the following technical scheme that:
On the one hand, there is provided a kind of touch base plate, including substrate, the substrate includes Touch Zone and cabling area;The touch-control
Area is provided with touch-control structure, and the touch-control structure includes mutually insulated and the first touch control electrode arranged in a crossed manner and the second touch-control electricity
Pole;The cabling area is provided with the cabling that is electrically connected with first touch control electrode and is electrically connected with the second touch control electrode
Cabling;Cabling described at least one includes the first sub- cabling and the second sub- cabling that are stacked;The cabling area also includes exhausted
Edge layer, the insulating barrier is arranged between the described first sub- cabling and the second sub- cabling, cabling described in same it is described
First sub- cabling and the second sub- cabling are electrically connected by the multiple vacancy sections being arranged on the insulating barrier.
Preferably, adjacent row is staggered along the vacancy section that the direction of routing is set.
Preferably, first touch control electrode is electrically connected in the region intersected with the second touch control electrode by putting up a bridge;
The bridging is isolated with the second touch control electrode by collets.
It is further preferred that the first sub- cabling is electrically conducting transparent cabling, and pass through one with the second touch control electrode
Secondary patterning processes are formed.
Preferably, the insulating barrier is first armor coated;The collets are armor coated with described first to be passed through
One time patterning processes are formed.
Preferably, the described second sub- cabling is formed with the bridging by a patterning processes.
It is further preferred that the material of the bridging and the described second sub- cabling is metal material.
It is further preferred that the touch base plate also includes being arranged on the Touch Zone and the cabling area, and positioned at institute
State the silicon oxynitride layer of touch-control structure and the cabling away from the substrate side.
Preferably, the touch base plate also includes being arranged on the cabling area, and positioned at the cabling away from the substrate
The second of side is armor coated.
On the other hand, there is provided a kind of display device, including display panel, and it is arranged on the display panel light emission side
Touch base plate, the touch base plate is above-mentioned touch base plate.
The utility model embodiment provides a kind of touch base plate and display device, and bag is set to by by the cabling in cabling area
The double-layer structure of the first sub- cabling and the second sub- cabling is included, and the first sub- cabling passes through to be arranged between with the second sub- cabling
Insulating barrier the connection of multiple vacancy sections, when can work as that disconnecting occurs in a certain sub- cabling in the first sub- cabling or the second sub- cabling,
The electric signal on the sub- cabling of disconnection is set to be transmitted by another sub- cabling, so as to can effectively reduce cabling disconnect to product
The influence that yield brings.
Brief description of the drawings
In order to illustrate more clearly of the utility model embodiment or technical scheme of the prior art, below will be to embodiment
Or the accompanying drawing to be used needed for description of the prior art is briefly described, it should be apparent that, drawings in the following description are only
It is some embodiments of the present utility model, for those of ordinary skill in the art, is not paying the premise of creative work
Under, other accompanying drawings can also be obtained according to these accompanying drawings.
A kind of schematic top plan view one of touch base plate that Fig. 1 is provided for the utility model embodiment;
Fig. 2 be Fig. 1 in AA ' to generalized section;
The schematic diagram one of vacancy section is set on a kind of insulating barrier that Fig. 3 (a) is provided for the utility model embodiment;
The schematic diagram two of vacancy section is set on a kind of insulating barrier that Fig. 3 (b) is provided for the utility model embodiment;
The schematic diagram three of vacancy section is set on a kind of insulating barrier that Fig. 4 (a) is provided for the utility model embodiment;
The schematic diagram four of vacancy section is set on a kind of insulating barrier that Fig. 4 (b) is provided for the utility model embodiment;
Fig. 5 be Fig. 1 in BB ' to generalized section;
A kind of schematic top plan view two of touch base plate that Fig. 6 is provided for the utility model embodiment;
Fig. 7 be Fig. 6 in CC ' to generalized section;
A kind of schematic top plan view three of touch base plate that Fig. 8 is provided for the utility model embodiment;
Fig. 9 be Fig. 8 in DD ' to generalized section.
Reference:
10- substrates;100- Touch Zones;110- touch-control structures;The touch control electrodes of 111- first;112- second touch control electrodes;
200- cablings area;210- cablings;The sub- cablings of 211- first;The sub- cablings of 212- second;220- insulating barriers;221- vacancy sections;230-
Light shield layer;300- collets;400- puts up a bridge;500- silicon oxynitride layers;600- second is armor coated.
Specific embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the utility model embodiment is carried out
Clearly and completely describe, it is clear that described embodiment is only a part of embodiment of the utility model, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment for being obtained, belongs to the scope of the utility model protection.
The utility model embodiment provides a kind of touch base plate, and as Figure 1-Figure 2, including substrate 10, substrate 10 includes
Touch Zone 100 and cabling area 200;Touch Zone 100 is provided with touch-control structure 110, and touch-control structure 110 includes mutually insulated and intersection
The first touch control electrode 111 and second touch control electrode 112 for setting;Cabling area 200 is provided with and is electrically connected with the first touch control electrode 111
Cabling 210 and the cabling 210 that is electrically connected with second touch control electrode 112;At least one cabling 210 includes be stacked first
The sub- cabling 212 of sub- cabling 211 and second;Cabling area 200 also includes insulating barrier 220, and insulating barrier 220 is arranged on the first sub- cabling
211 and second between sub- cabling 212, and the first sub- cabling 211 of same cabling 210 and the second sub- cabling 212 are by being arranged on
Multiple vacancy sections 221 on insulating barrier 220 electrically connect.
Wherein, as shown in Fig. 2 cabling area 200 can also include light shield layer 230, the cabling 210 and insulating barrier 220 set
Put on light shield layer 230.Light shield layer 230 can be black light shield layer or white light shield layer.
It should be noted that first, the concrete structure to touch-control structure 110 is not defined, as long as touch-control work(can be realized
Can.Touch-control structure 110 is only to illustrate in Fig. 1.
Second, Touch Zone 100 is when the touch base plate is applied in display device, for the region that picture shows,
Cabling area 200 is located at the periphery of Touch Zone 100.
3rd, the first sub- cabling 211 and the second sub- cabling 212 are stacked, and can be that the first sub- cabling 211 is located at second
The top of sub- cabling 212, or the second sub- cabling 212 is located at the top of the first sub- cabling 211.
Wherein, the material of the first sub- cabling 211 is transparent conductive material or metal material;The material of the second sub- cabling 212
It is transparent conductive material or metal material.
On this basis, the material of the first sub- cabling 211 and the second sub- cabling 212 can be with identical, it is also possible to different, herein
It is not specifically limited.
4th, the structure to insulating barrier 220 is not defined, as long as the first sub- cabling in can making every cabling 210
211 and second sub- cabling 212 can be transferred through multiple vacancy sections 221 electrical connection.
Example, such as shown in Fig. 3 (a) and Fig. 3 (b), insulating barrier 220 can be set with flood, on this basis, be walked along every
The direction of line 210, sets multiple vacancy sections 221, so that the first sub- cabling 211 and the second sub- cabling 212 in every cabling 210
(not identifying the second sub- cabling 212 in Fig. 3 (a) and Fig. 3 (b)) can be transferred through multiple vacancy sections 221 and electrically connect.
Or, as shown in Fig. 4 (a) and Fig. 4 (b), insulating barrier 220 is divided into multiple insulation strips, each insulation strip with one
The correspondence of cabling 210;The insulation strip passes through multiple vacancy sections 221 and is broken as some, and the first son in every cabling 210 is walked
The sub- cabling 212 (not identifying the second sub- cabling 212 in Fig. 4 (a) and Fig. 4 (b)) of line 211 and second is broken as by by insulation strip
The vacancy section 221 of some electrically connects.
Wherein, shape of the utility model embodiment not to vacancy section 221 is defined, for example, can be via, or its
His shape, as long as the first sub- cabling 211 and the second sub- cabling 212 can be made to be contacted in vacancy section 221 and electrically connected.
The utility model embodiment provides a kind of touch base plate, is set to include the by by the cabling 210 in cabling area 200
The double-layer structure of one sub- cabling 211 and the second sub- cabling 212, and the first sub- cabling 211 with the second sub- cabling 212 by being arranged on
Multiple vacancy sections 221 of insulating barrier 220 between the two connect, and can work as certain in the first sub- sub- cabling 212 of cabling 211 or the second
When disconnecting occurs in one sub- cabling, the electric signal on the sub- cabling of disconnection is set to be transmitted by another sub- cabling, so as to can have
Effect reduces cabling and disconnects the influence brought to product yield.
Preferably, as shown in Fig. 3 (a) and Fig. 4 (a), the staggered row of vacancy section 221 that adjacent row is set along the direction of cabling 210
Cloth.
It is at least adjacent with the row vacancy section 221 i.e. for the row vacancy section 221 arranged along certain direction of cabling 210
Another row vacancy section 221 it is staggered.
It should be noted that adjacent row is staggered along the vacancy section 221 that the direction of cabling 210 is set, not merely limit
In two adjacent rows along staggered, or adjacent multiple rows of along cabling 210 in the vacancy section 221 that the direction of cabling 210 is set
The vacancy section 221 that direction is set is staggered.
In view of when vacancy section 221 is set in the way of Fig. 3 (b) and Fig. 4 (b), may make when particle size is larger
Particulate is located at along at least two vacancy sections 221 arranged on the direction of cabling 210, so as to cause at least two cablings simultaneously
Sub- cabling in 210 is disconnected herein, and adjacent row is staggered along the vacancy section 221 that the direction of cabling 210 is set, can
Avoid because particle size is big, and the sub- cabling for also resulting in above-mentioned at least two cablings 210 is disconnected.
Preferably, as shown in figure 1, the first touch control electrode 111 passes through to put up a bridge in the region intersected with second touch control electrode 112
400 electrical connections;Bridging 400 is isolated with second touch control electrode 112 by collets 300.
That is, collets 300 are arranged between bridging 400 and second touch control electrode 112.
Wherein, the material of part and second touch control electrode 112 of first touch control electrode 111 in addition to bridging 400 is transparent
Conductive material, such as ITO (tin indium oxide), IZO (indium-zinc oxide) etc..First touch control electrode 111 can be by multiple rhombuses
Electrode is connected and composed, multiple bar shaped sub-electrodes are connected and composed, multiple cross sub-electrodes are connected and composed or multiple snowflake type electricity
Pole connects and composes;Second touch control electrode 112 can be connected and composed by multiple rhombus sub-electrodes, multiple bar shaped sub-electrode connection structures
Into, multiple cross sub-electrode is connected and composed or multiple snowflake type sub-electrodes are connected and composed.Fig. 1 is with the first touch control electrode 111
Connected and composed by multiple rhombus sub-electrodes with second touch control electrode 112 and illustrated.
It should be noted that the position to 400 relative second touch control electrodes 112 of putting up a bridge is not defined, putting up a bridge 400 can be with
Between second touch control electrode 112 and substrate 10, it is also possible to be arranged on second touch control electrode 112 away from the side of substrate 10.
The utility model embodiment is by the first touch control electrode 111 in intersection region by 400 electrical connections, bridging 400 of putting up a bridge
Isolated by collets 300 with second touch control electrode 112 and obtain touch-control structure 110, technical maturity, touch-control better performances.
It is further preferred that as shown in figure 5, the first sub- cabling 211 is electrically conducting transparent cabling, and and second touch control electrode
112 are formed by a patterning processes.
Certainly, the part in addition to bridging 400 of the first touch control electrode 111 also passes through a structure with second touch control electrode 112
Figure technique is formed.
The utility model embodiment is in the formation touch control electrode 111 of second touch control electrode 112 and first in addition to bridging 400
While part, the first sub- cabling 211 is formed, the increase of patterning processes number of times can be avoided, reduce preparation cost.
Preferably, as shown in figure 5, insulating barrier 220 is first armor coated (Over Coating, abbreviation OC);Insulation
Block 300 is armor coated with first to be formed by a patterning processes.
Preferably, as shown in figure 5, the second sub- cabling 212 is formed with bridging 400 by a patterning processes.
The utility model embodiment forms first armor coated by while collets 300 are formed, and is taken in formation
The second sub- cabling 212 is formed while bridge 400, the increase of patterning processes number of times can be avoided, reduce preparation cost.
Because the resistance of metal material is smaller relative to transparent conductive material, it is preferred, therefore, that of bridging 400 and second
The material of cabling 212 is metal material.
When putting up a bridge 400 for metal material, fuzzy taking is had when touch base plate is applied to display device, on display screen
The image of bridge 400, in order to reduce the imaging degree of bridging 400 on display screen, it is preferred that as shown in Figure 6 and Figure 7, the touch-control base
Plate also includes being arranged on Touch Zone 100 and cabling area 200, and positioned at the touch-control structure 110 and the cabling 210 away from institute
State the silicon oxynitride layer 500 of the side of substrate 10.
Wherein, the thickness of silicon oxynitride layer 500 can be
Preferably, as illustrated in figs. 8-9, the touch base plate also includes being arranged on cabling area 200, and positioned at cabling 210
Away from the second armor coated 600 of the side of substrate 10.
So, when silicon oxynitride layer 500 is not provided with, by second armor coated 600, can be to the cabling of metal material
Protected, it is to avoid influenceed to cause metal routing corrosion by ambient humidity.
Based on foregoing description, touch base plate can be prepared by 4 patterning processes.I.e.:By a patterning processes shape
Into light shield layer 230;By patterning processes formed second touch control electrode 112, the first touch control electrode 111 except putting up a bridge in addition to 400
Part and the first sub- cabling 211;Insulating barrier 220 and collets 300 are formed by a patterning processes;By a structure
Figure technique forms the sub- cabling 212 of bridging 400 and second.
On this basis, silicon oxynitride layer 500 can be also formed, it need not use patterning processes.
Certainly, touch base plate can also be prepared by 5 patterning processes.I.e.:Shading is formed by a patterning processes
Layer 230;By patterning processes formed second touch control electrode 112, the first touch control electrode 111 except the part in addition to 400 of putting up a bridge,
And the first sub- cabling 211;Insulating barrier 220 and collets 300 are formed by a patterning processes;By a patterning processes shape
Into the bridging 400 of transparent conductive material;By a second sub- cabling 212 of patterning processes formation metal material.
Additionally, touch base plate can also be prepared by 6 patterning processes.I.e.:On the basis of above-mentioned 5 patterning processes,
It is armor coated in the formation the 3rd of cabling area 200 by a patterning processes before light shield layer 230 is formed.3rd coating is protected
Sheath can play invigoration effect to substrate glass.
On the basis of above-mentioned 4,5,6 patterning processes, also second can be formed by a patterning processes armor coated
600。
The utility model embodiment also provides a kind of display device, including display panel, and is arranged on the display surface
The touch base plate of plate light emission side, the touch base plate is above-mentioned touch base plate.
Wherein, display panel and touch base plate can be connected by OCR (Optical Clear Resin, Optical transparent adhesive).
The utility model embodiment provides a kind of display device, is set by by the cabling 210 in the cabling area 200 of touch base plate
It is set to the double-layer structure including the first sub- cabling 211 and the second sub- cabling 212, and the first sub- cabling 211 and the second sub- cabling 212
Connected by multiple vacancy sections 221 of the insulating barrier 220 being arranged between, the first sub- cabling 211 or the second son can be worked as
When disconnecting occurs in a certain sub- cabling in cabling 212, the electric signal on the sub- cabling of disconnection is set to be passed by another sub- cabling
Pass, so that can effectively reduce cabling disconnects the influence brought to product yield.
Preferably, the display panel is liquid crystal display panel or organic electroluminescent LED display panel.
When display panel is liquid crystal display panel, it includes array base palte, to box substrate and be disposed there between
Liquid crystal layer.Wherein, array base palte can include TFT (Thin Film Transistor, thin film transistor (TFT)), the leakage with TFT
The pixel electrode of pole electrical connection;Public electrode can also further be included.Black matrix and color film can be included to box substrate.This
Place, color film can be arranged on on box substrate, may also be arranged on array base palte;Public electrode can be arranged on array base palte
On, may also be arranged on on box substrate.
When display panel is organic electroluminescent LED (Organic Light Emitting Diode, abbreviation OLED)
During display panel, it includes array base palte and package substrate.Wherein, array base palte can include TFT, and the drain electrode with TFT is electrically connected
Anode, negative electrode and the organic material functional layer between anode and negative electrode for connecing.
The above, specific embodiment only of the present utility model, but protection domain of the present utility model do not limit to
In this, any one skilled in the art can readily occur in change in the technical scope that the utility model is disclosed
Or replace, should all cover within protection domain of the present utility model.Therefore, protection domain of the present utility model should be with the power
The protection domain that profit is required is defined.
Claims (10)
1. a kind of touch base plate, including substrate, the substrate includes Touch Zone and cabling area;The Touch Zone is provided with touch-control knot
Structure, the touch-control structure includes mutually insulated and the first touch control electrode and second touch control electrode arranged in a crossed manner;The cabling area
It is provided with the cabling electrically connected with first touch control electrode and the cabling electrically connected with the second touch control electrode;Its feature exists
In cabling described at least one includes the first sub- cabling and the second sub- cabling that are stacked;
The cabling area also includes insulating barrier, the insulating barrier be arranged on the described first sub- cabling and the second sub- cabling it
Between, the described first sub- cabling of cabling described in same and the second sub- cabling are by the multiple that is arranged on the insulating barrier
Vacancy section electrically connects.
2. touch base plate according to claim 1, it is characterised in that adjacent row along the direction of routing set described in engrave
Dead zone is staggered.
3. touch base plate according to claim 1, it is characterised in that first touch control electrode with second touch-control
The region of electrode crossing is electrically connected by putting up a bridge;The bridging is isolated with the second touch control electrode by collets.
4. touch base plate according to claim 3, it is characterised in that the first sub- cabling is electrically conducting transparent cabling, and
Formed by a patterning processes with the second touch control electrode.
5. touch base plate according to claim 3, it is characterised in that the insulating barrier is first armor coated;It is described
Collets are armor coated with described first to be formed by a patterning processes.
6. touch base plate according to claim 3, it is characterised in that the second sub- cabling is put up a bridge by once with described
Patterning processes are formed.
7. touch base plate according to claim 6, it is characterised in that the material of the bridging and the second sub- cabling is
Metal material.
8. touch base plate according to claim 7, it is characterised in that also including being arranged on the Touch Zone and the cabling
Area, and positioned at the touch-control structure and the cabling away from the substrate side silicon oxynitride layer.
9. touch base plate according to claim 1, it is characterised in that also including being arranged on the cabling area, and positioned at institute
Cabling is stated away from the substrate side second is armor coated.
10. a kind of display device, including display panel, and the touch base plate of the display panel light emission side is arranged on, it is special
Levy and be, the touch base plate is the touch base plate described in claim any one of 1-9.
Priority Applications (1)
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CN201621280041.1U CN206193735U (en) | 2016-11-22 | 2016-11-22 | Touch substrate and display device |
Applications Claiming Priority (1)
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CN201621280041.1U CN206193735U (en) | 2016-11-22 | 2016-11-22 | Touch substrate and display device |
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108958542A (en) * | 2018-06-28 | 2018-12-07 | 京东方科技集团股份有限公司 | Display device, touch panel and its manufacturing method |
CN109143637A (en) * | 2017-06-16 | 2019-01-04 | 京东方科技集团股份有限公司 | Manufacturing method, panel and the display device of panel |
WO2019041929A1 (en) * | 2017-08-29 | 2019-03-07 | 京东方科技集团股份有限公司 | Touch control substrate and method for manufacturing same, and touch control device |
CN110471568A (en) * | 2019-08-15 | 2019-11-19 | 京东方科技集团股份有限公司 | Touch-control structure, touch control display apparatus and preparation method thereof |
CN111625143A (en) * | 2020-05-26 | 2020-09-04 | 京东方科技集团股份有限公司 | Touch substrate and manufacturing method thereof |
CN113110757A (en) * | 2021-04-16 | 2021-07-13 | 京东方科技集团股份有限公司 | Touch display panel and touch display device |
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2016
- 2016-11-22 CN CN201621280041.1U patent/CN206193735U/en active Active
Cited By (12)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109143637A (en) * | 2017-06-16 | 2019-01-04 | 京东方科技集团股份有限公司 | Manufacturing method, panel and the display device of panel |
US11237666B2 (en) | 2017-06-16 | 2022-02-01 | Boe Technology Group Co., Ltd. | Fabrication method of panel, panel and display device |
WO2019041929A1 (en) * | 2017-08-29 | 2019-03-07 | 京东方科技集团股份有限公司 | Touch control substrate and method for manufacturing same, and touch control device |
US10891009B2 (en) | 2017-08-29 | 2021-01-12 | Boe Technology Group Co., Ltd. | Touch substrate, method for manufacturing the same, and touch control device |
CN108958542A (en) * | 2018-06-28 | 2018-12-07 | 京东方科技集团股份有限公司 | Display device, touch panel and its manufacturing method |
CN108958542B (en) * | 2018-06-28 | 2021-08-20 | 京东方科技集团股份有限公司 | Display device, touch panel and manufacturing method thereof |
CN110471568A (en) * | 2019-08-15 | 2019-11-19 | 京东方科技集团股份有限公司 | Touch-control structure, touch control display apparatus and preparation method thereof |
CN111625143A (en) * | 2020-05-26 | 2020-09-04 | 京东方科技集团股份有限公司 | Touch substrate and manufacturing method thereof |
CN111625143B (en) * | 2020-05-26 | 2024-04-12 | 京东方科技集团股份有限公司 | Touch substrate and manufacturing method thereof |
CN113110757A (en) * | 2021-04-16 | 2021-07-13 | 京东方科技集团股份有限公司 | Touch display panel and touch display device |
CN113110757B (en) * | 2021-04-16 | 2024-06-18 | 京东方科技集团股份有限公司 | Touch display panel and touch display device |
CN113778262A (en) * | 2021-09-13 | 2021-12-10 | 京东方科技集团股份有限公司 | A touch substrate and a touch display device |
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