WO2023184580A1 - 触控面板及触控显示装置 - Google Patents
触控面板及触控显示装置 Download PDFInfo
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- WO2023184580A1 WO2023184580A1 PCT/CN2022/086617 CN2022086617W WO2023184580A1 WO 2023184580 A1 WO2023184580 A1 WO 2023184580A1 CN 2022086617 W CN2022086617 W CN 2022086617W WO 2023184580 A1 WO2023184580 A1 WO 2023184580A1
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- Prior art keywords
- pattern
- touch
- width
- pattern electrodes
- electrode
- Prior art date
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- 239000000758 substrate Substances 0.000 claims abstract description 21
- 238000004519 manufacturing process Methods 0.000 abstract description 7
- 238000010586 diagram Methods 0.000 description 14
- 230000000694 effects Effects 0.000 description 11
- WABPQHHGFIMREM-FTXFMUIASA-N lead-202 Chemical compound [202Pb] WABPQHHGFIMREM-FTXFMUIASA-N 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 238000005516 engineering process Methods 0.000 description 3
- WABPQHHGFIMREM-AHCXROLUSA-N lead-203 Chemical compound [203Pb] WABPQHHGFIMREM-AHCXROLUSA-N 0.000 description 3
- 230000035945 sensitivity Effects 0.000 description 3
- 230000009286 beneficial effect Effects 0.000 description 2
- 238000002360 preparation method Methods 0.000 description 2
- 238000006467 substitution reaction Methods 0.000 description 2
- 238000004364 calculation method Methods 0.000 description 1
- 239000003990 capacitor Substances 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
Classifications
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/0412—Digitisers structurally integrated in a display
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/044—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means
- G06F3/0443—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means using a single layer of sensing electrodes
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/044—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means
- G06F3/0446—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means using a grid-like structure of electrodes in at least two directions, e.g. using row and column electrodes
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/044—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means
- G06F3/0448—Details of the electrode shape, e.g. for enhancing the detection of touches, for generating specific electric field shapes, for enhancing display quality
Definitions
- the present invention relates to the field of design and manufacturing of display panels, and in particular to a touch panel and a touch display device.
- Touch panels are used in various display fields because they can be operated directly on the screen by touch.
- touch panels projected capacitive touch screens are currently mainly used on the market, among which capacitive touch screens are mainly divided into self-capacitive and mutual capacitive touch screens.
- capacitive touch panels have electrode axes arranged along the horizontal and vertical directions. Each electrode axis has electrodes arranged in the same axis that are electrically connected to each other.
- a touch operation is performed on the display panel, a There are multiple touch points on the screen, and each touch point corresponds to an abscissa and an ordinate.
- the touch panel prepared in the prior art cannot properly identify the touch points when performing a touch operation on the touch panel, thereby affecting the touch accuracy and touch sensitivity of the display panel. , which is not conducive to improving the overall performance of the touch panel.
- embodiments of the present invention provide a touch panel and a touch display device to effectively improve the touch accuracy angle and unsatisfactory touch effect of the touch panel, and effectively improve the overall performance of the touch panel. performance.
- a first aspect of the embodiment of the present invention provides a touch panel, including:
- a touch electrode the touch electrode includes a plurality of pattern electrodes, the plurality of pattern electrodes are arranged in an array in a first direction and a second direction intersecting the first direction;
- the adjacent pattern electrodes among the plurality of pattern electrodes are arranged in a staggered manner in the first direction, and each pattern electrode among the plurality of pattern electrodes has a first width in the first direction, and in the It has a second width in two directions, and the second width is greater than the first width; wherein, there is an included angle between the first direction and the second direction, and the included angle is a right angle.
- a ratio of the second width of the pattern electrode in the second direction to the first width of the pattern electrode in the first direction is N:1, where , the N is an integer greater than 1.
- the second width of the pattern electrode in the second direction is twice the first width of the pattern electrode in the first direction.
- the plurality of pattern electrodes include a plurality of first pattern electrodes and a plurality of second pattern electrodes, and the plurality of first pattern electrodes and the plurality of second pattern electrodes are in the first are arranged alternately in the direction, wherein, in the first direction, at least one end portion of a first pattern electrode among the plurality of first pattern electrodes and a corresponding pattern electrode among the plurality of second pattern electrodes center line is even.
- the plurality of first pattern electrodes and the plurality of second pattern electrodes are alternately arranged at equal intervals.
- a second aspect of the embodiment of the present invention provides a touch panel, including:
- a touch electrode the touch electrode includes a plurality of pattern electrodes, the plurality of pattern electrodes are arranged in an array in a first direction and a second direction intersecting the first direction;
- the adjacent pattern electrodes among the plurality of pattern electrodes are arranged in a staggered manner in the first direction, and each pattern electrode among the plurality of pattern electrodes has a first width in the first direction, and in the It has a second width in two directions, and the second width is larger than the first width.
- a ratio of the second width of the pattern electrode in the second direction to the first width of the pattern electrode in the first direction is N:1, where , the N is an integer greater than 1.
- the second width of the pattern electrode in the second direction is twice the first width of the pattern electrode in the first direction.
- the plurality of pattern electrodes include a plurality of first pattern electrodes and a plurality of second pattern electrodes, and the plurality of first pattern electrodes and the plurality of second pattern electrodes are in the first are arranged alternately in the direction, wherein, in the first direction, at least one end portion of a first pattern electrode among the plurality of first pattern electrodes and a corresponding pattern electrode among the plurality of second pattern electrodes center line is even.
- the plurality of first pattern electrodes and the plurality of second pattern electrodes are alternately arranged at equal intervals.
- a spacing between adjacent first pattern electrodes among the plurality of first pattern electrodes is equal to a spacing between adjacent first pattern electrodes among the plurality of second pattern electrodes.
- the spacing between the second pattern electrodes is the same.
- a first width of each of the first pattern electrodes in the first direction is the same as a first width of each of the second pattern electrodes in the first direction.
- the corresponding second width of the first pattern electrode in the second direction is greater than the first width of the first pattern electrode in the first direction, and the second pattern electrode The second width in the second direction is greater than the first width of the second pattern electrode in the first direction.
- the display panel further includes a touch lead, and the touch lead is connected correspondingly to the pattern electrode.
- the display panel further includes a connection terminal, the connection terminal is provided on the pattern electrode, and the touch lead is electrically connected to the pattern electrode through the connection terminal.
- connection terminals provided on the pattern electrodes spaced apart are all located on the same straight line.
- the distance between adjacent touch leads is the same.
- the plurality of pattern electrodes include a plurality of third pattern electrodes and a plurality of fourth pattern electrodes, and the plurality of third pattern electrodes and the plurality of fourth pattern electrodes are in the first
- the plurality of third pattern electrodes and the plurality of fourth pattern electrodes are arranged alternately in the first direction, and the plurality of third pattern electrodes are arranged in an array in the direction and the second direction.
- a length of a third pattern electrode in the second direction is greater than a length of a fourth pattern electrode among the plurality of fourth pattern electrodes in the second direction.
- the length of the third pattern electrode in the second direction is greater than the length of the fourth pattern electrode in the second direction.
- a touch display device including:
- a touch panel the touch panel is arranged opposite to the display panel, the touch panel includes a touch area, and a plurality of touch electrodes are provided in the touch area;
- the touch panel includes:
- a touch electrode the touch electrode includes a plurality of pattern electrodes, the plurality of pattern electrodes are arranged in an array in a first direction and a second direction intersecting the first direction;
- the adjacent pattern electrodes among the plurality of pattern electrodes are arranged in a staggered manner in the first direction, and each pattern electrode among the plurality of pattern electrodes has a first width in the first direction, and in the It has a second width in two directions, and the second width is larger than the first width.
- Embodiments of the present invention provide a touch panel and a touch display device.
- the touch panel includes a base substrate and a touch electrode, wherein the touch electrode includes a plurality of pattern electrodes, the pattern electrodes are arranged in an array in a first direction and a second direction, and adjacent pattern electrodes are arranged in a staggered manner in the first direction.
- Cloth wherein the pattern electrode has a first width in a first direction and a second width in a second direction, and the corresponding second width of the pattern electrode in the second direction is greater than the corresponding second width of the pattern electrode in the first direction.
- the number of touch leads electrically connected to the pattern electrode in the display panel is reduced, thereby effectively improving the touch accuracy of the touch panel. touch effect, reduce production costs, and improve the overall performance of the touch panel.
- Figure 1 is a schematic structural diagram of a self-capacitive touch panel provided in the prior art
- Figure 2 is a schematic structural diagram of the touch electrode arrangement of the touch display panel provided in an embodiment of the present invention.
- Figure 3 is a schematic diagram of the arrangement of another pattern electrode provided in an embodiment of the present invention.
- Figure 4 is a schematic diagram of touch operations corresponding to the touch display panel provided by the embodiment of the present invention.
- Figure 5 is a schematic diagram of the equivalent circuit structure formed by touch pattern electrodes
- Figure 6 is a schematic structural diagram of a connection terminal provided by an embodiment of the present invention.
- FIG. 7 is a schematic diagram of the arrangement of touch electrodes in another touch display panel according to an embodiment of the present invention.
- FIG. 1 is a schematic structural diagram of a self-capacitive touch panel provided in the prior art.
- a plurality of touch electrodes 103 are usually arranged in an array on the base substrate.
- each touch electrode 103 is provided with a plurality of signal leads 101 and signal leads 102 in the row and column directions.
- signal leads X1, X2, X3, and X4 are provided in the row direction
- signal leads Y1, Y2, Y3, Y4, etc. are provided in the column direction.
- the touch panel in the prior art has When the coordinate values of multiple touch points are used, certain errors will occur, or there will be a large signal-to-noise ratio. At the same time, because the number of touch electrodes 103 provided in the display panel is large, the number of corresponding leads is also large. There are more driver chips connected to them, which leads to higher production costs. At the same time, there are also problems such as reduced touch accuracy of the panel and unsatisfactory touch effects.
- Embodiments of the present invention provide a touch panel and a touch display device to effectively improve the touch accuracy and touch effect of the touch display panel, and improve the overall performance of the touch display device.
- FIG. 2 is a schematic structural diagram of the touch electrode arrangement of the touch display panel provided in an embodiment of the present invention.
- the touch display panel includes a base substrate 200 and touch electrodes.
- the touch electrode is provided on the base substrate 200
- the touch electrode includes a plurality of touch pattern electrodes 201
- the plurality of pattern electrodes 201 are arranged in an array on the base substrate 200 .
- the pattern electrodes 201 are arranged in an array in the first direction and the second direction of the base substrate 200 .
- the first direction intersects the second direction, and there is an included angle between the first direction and the second direction.
- the first direction takes the direction corresponding to the rows of the base substrate 200 as an example, that is, the first direction is the horizontal X-axis direction
- the second direction takes the direction corresponding to the columns of the base substrate 200 as an example.
- the second direction is the vertical Y-axis direction for explanation.
- the angle between the first direction X and the second direction Y is a right angle.
- Other directions can also be used as examples, so that the angle between the first direction X and the second direction Y can be other values, which will not be described in detail here.
- the plurality of pattern electrodes 201 are arranged on the base substrate 200.
- the pattern electrodes 201 are arranged in a staggered manner.
- two adjacent pattern electrodes are pattern electrode 2011 and pattern electrode 2012 respectively.
- the pattern electrode 2011 and the pattern electrode 2012 are arranged in a staggered manner, that is, the top of the pattern electrode 2011 is not flush with the top of the adjacent pattern electrode 2012.
- the corresponding second width value of the pattern electrode 201 in the second direction Y is greater than the corresponding first width value of the pattern electrode 201 in the first direction X.
- the corresponding touch area of the pattern electrode 201 is increased.
- each pattern electrode in the first direction, has a first width, and in the second direction, each pattern electrode has a second width. As shown in FIG. 2 , they respectively correspond to the first width value a of the pattern electrode in the first direction and the second width value b in the second direction.
- the height of the pattern electrode 2011 in the Y-axis direction and its length in the X-axis direction can be set according to a certain ratio, that is, the first width and the second width corresponding to each pattern electrode 2011 can be set according to a certain ratio.
- the proportional relationship is set.
- the ratio between the second width corresponding to the pattern electrode in the second direction Y and its corresponding first width in the first direction X is N:1.
- N is a positive integer.
- the second width of the pattern electrode in the second direction Y is twice the corresponding first width in the first direction
- the number of touch leads corresponding to the pattern electrode ensures the touch accuracy and touch effect during touch.
- the ratio between the corresponding second width of the pattern electrode 201 in the second direction Y and its corresponding first width in the first direction X is 2:1, as an example for description.
- FIG. 3 is a schematic diagram of the arrangement of another pattern electrode provided in the embodiment of the present invention.
- the pattern electrodes arranged in two rows and two columns are taken as an example.
- the array is performed according to the arrangement form in FIG. 3 .
- the first pattern electrodes 301 and the second pattern electrodes 302 are alternately arranged in the first direction X, and the first pattern electrodes 301 and the second pattern electrodes 302 are respectively located in two adjacent columns.
- a plurality of first pattern electrodes 301 and a plurality of second pattern electrodes 302 are arranged in an array to finally form the touch electrode provided in the embodiment of the present application.
- At least one end of the first pattern electrode 301 is flush with the center line O1 of the second pattern electrode 302, and this end may be the first pattern electrode. 301 top or bottom.
- the distance between two adjacent first pattern electrodes 301 is D1.
- the spacing distance between the pattern electrodes 302 is D2.
- the corresponding second width of the first pattern electrode 301 in the second direction Y is greater than the first width of the first pattern electrode 301 in the first direction
- the second width is greater than the first width of the second pattern electrode 302 in the first direction X.
- each pattern electrode when each pattern electrode is provided, the shape of each pattern electrode may be the same.
- the shape of the pattern electrode is set to a rectangular, square, circular or other shape structure, in the embodiment of the present invention, a rectangle is taken as an example for description. At the same time, ensure that the area size of each pattern electrode is the same.
- FIG. 5 is a schematic diagram of an equivalent circuit structure formed by corresponding touch pattern electrodes in FIG. 4 . At the same time, combine the touch electrode arrangement structure in Figures 1-3.
- the touch object 400 performs a touch operation on the touch electrode
- the finger will come into contact with different touch pattern electrodes 201, and then the corresponding touch pattern will change.
- a capacitor is formed on the electrode 201, and the recognition unit determines the touch operation based on the formed capacitance size and the corresponding touch point, and accurately reports the touched area.
- the touch pattern electrodes are equivalent to touch points A, B and C, and F is the equivalent touch point of the finger.
- different equivalent capacitances will be formed between the finger and each electrode and between each electrode.
- equivalent capacitances CAB, CAC, and CBC will be formed between two adjacent pattern electrodes.
- Equivalent capacitances, such as CFA, CFB and CFC, will also be formed between the finger's equivalent touch point F and each pattern electrode.
- equivalent capacitances namely CFA, CFB and CFC
- CFA, CFB and CFC equivalent capacitances
- the size of each equivalent capacitance is based on its relative distance. Determine the size.
- the equivalent capacitance formed between the equivalent touch point F of the finger and each electrode, as well as between each electrode, is measured, and the capacitance between the touch finger and each touch pattern electrode is compared.
- the size of the equivalent capacitance can accurately obtain the position of the touch point, thereby effectively improving the touch accuracy and touch effect of the touch panel.
- the touch display panel further includes a plurality of touch leads 25 .
- each touch lead 25 is electrically connected to the pattern electrode 201 correspondingly.
- the first touch lead 202 and the second touch lead 203 are taken as an example for description.
- the first touch lead 202 and the second touch lead 203 are arranged in the second direction Y and are connected with each other.
- the two pattern electrodes 201 in the second direction are electrically connected correspondingly.
- each pattern electrode 201 also includes a connection terminal 204.
- the connection terminal 204 is electrically connected to the corresponding touch lead 25 .
- Various data signals are transmitted to the touch leads 25 through the connection terminals 204 .
- FIG. 6 is a schematic structural diagram of a connection terminal provided by an embodiment of the present invention.
- multiple touch leads 25 can be provided in the same column direction.
- the multiple touch leads 25 are arranged at equal intervals. In different columns, the intervals between the corresponding touch leads 25 are the same. .
- connection terminal A and one end of the pattern electrode is the same as the distance between the connection terminal B and one end of the pattern electrode. That is, the distance from the connection terminal A to the top of the pattern electrode 201 is the same as the distance from the connection terminal B to the top of the pattern electrode 201.
- each connection terminal provided on the two spaced apart pattern electrodes 201 is located at On the same straight line, this ensures that the connection terminals set in different columns have good consistency and reduces its impact on the touch accuracy during the touch process.
- connection terminals A, connection terminals B and connection terminals C when the above-mentioned connection terminals A, connection terminals B and connection terminals C are provided, the connection terminals A, connection terminals B and connection terminals C can be connected in pairs to form a connection line. The distance is the same, ensuring a higher touch effect.
- the second width of the pattern electrode 201 in the second direction is greater than its first width in the first direction, for a base substrate of a fixed size, in the second direction, The number of touch electrodes provided is reduced, and at the same time, the total number of touch leads provided on the substrate is also reduced, thereby effectively reducing the production cost of the touch display panel.
- FIG. 7 is a schematic diagram of the arrangement of touch electrodes in another touch display panel according to an embodiment of the present invention.
- the touch electrode includes a plurality of pattern electrodes 201 .
- the plurality of pattern electrodes 201 are arranged in an array in the first direction and the second direction.
- the pattern electrode 201 also includes a plurality of third pattern electrodes 601 and a plurality of fourth pattern electrodes 602, wherein the third pattern electrodes 601 and the fourth pattern electrodes 602 are arranged adjacently, and the third pattern electrodes 601 and the fourth pattern electrodes 602 are arranged adjacent to each other.
- a plurality of sub-pattern electrodes may be provided in the pattern electrode 602, and the plurality of sub-pattern electrodes are arranged in an array at intervals in the corresponding column direction.
- the corresponding second width of the third pattern electrode in the second direction is greater than the first width of the third pattern electrode in the first direction
- the third pattern electrode is in The second width in the second direction is greater than the second width of the fourth pattern electrode in the second direction. That is, at this time, the length of the third pattern electrode 601 is greater than the length of the fourth pattern electrode, and is arranged in such a way that the area of its corresponding pattern electrode is increased in a certain column direction, thereby improving its touch accuracy.
- the ratio of the second width of the third pattern electrode in the second direction to its first width in the first direction is 2:1, and in the embodiment of the present invention, the third pattern electrode The width in the first direction is the same as the width of the fourth pattern electrode in the first direction. At the same time, the width of the fourth pattern electrode in the first direction is the same as the length of the third pattern electrode in the second direction. That is, the fourth pattern electrode can be arranged in a square structure, or the third pattern electrode and the fourth pattern electrode can be arranged in a square structure. When the electrode is used, the first width of the third pattern electrode is made greater than the first width of the fourth pattern electrode, so as to further change its corresponding resistance value and achieve the purpose of improving touch control accuracy.
- the spacing distance between two adjacent sub-pattern electrodes can be the same, and the distance is smaller than the distance in the third pattern electrode. The distance between two adjacent sub-pattern electrodes.
- touch leads 25 and connection terminals 204 are also provided on the third pattern electrode 601 and the fourth pattern electrode 602 correspondingly.
- the connection terminal 204 may be disposed on the surface of the corresponding pattern electrode or on the side of the pattern electrode, which is specifically determined according to the shape and structure of the electrode. Specifically, in the third pattern electrode 601, its electrode area is larger than the electrode panel corresponding to the fourth pattern electrode. Therefore, when disposed, in two adjacent columns, the number of sub-pattern electrodes disposed in the third pattern electrode 601 is It is less than the number of sub-pattern electrodes provided in the fourth pattern electrode 602 .
- the number of touch leads 25 in the area corresponding to the third pattern electrode 601 is less than the number of touch leads 25 corresponding to the fourth pattern electrode 602.
- two touch leads 25 are electrically connected to two third pattern electrodes respectively, and four touch leads 25 are electrically connected to four fourth pattern electrodes respectively.
- connection terminals 204 corresponding to the third pattern electrode 601 when arranging the connection terminals 204 corresponding to the third pattern electrode 601, the distance between each connection terminal and the pattern electrode side can be set to be the same.
- the distance between each connection terminal and The distance on one side of the pattern electrode can also be set to be the same. This ensures that the connection terminals on the touch electrodes have good consistency.
- embodiments of the present invention also provide a touch display device.
- the touch display device includes a display panel and a touch panel.
- the display panel is arranged opposite to the touch panel.
- the touch panel is attached to the display panel.
- the touch panel includes a touch area, a plurality of touch electrodes are provided in the touch area, and the touch operation is implemented by touching the touch electrodes in the touch area.
- the touch panel is the touch panel provided in the embodiment of the present application. When a touch operation is performed on the touch display device, it has higher touch accuracy and better touch effect.
- the touch electrodes in the touch panel provided in the embodiment of the present invention are arranged according to the above electrode structure, thereby effectively improving the touch performance of the touch panel and effectively reducing the production cost of the touch device.
- touch panel and touch display device can be: OLED panels, mobile phones, computers, electronic paper, monitors, notebook computers, digital photo frames and other products or components with touch display functions.
- the specific type is not specified. limit.
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Abstract
本发明实施例提供一种触控面板及触控显示装置。包括衬底基板及触控电极,触控电极包括多个图案电极,相邻的图案电极在第一方向上错位排布,图案电极在第一方向上具有第一宽度,在第二方向上具有第二宽度,第二宽度大于第一宽度。通过改变图案电极排布形式,进而减小面板中的触控引线,提高面板的触控精度,并降低生产成本。
Description
本发明涉及显示面板的设计及制造领域,具体涉及一种触控面板及触控显示装置。
随着显示面板制备工艺等显示技术的发展,人们对显示面板及装置的性能及质量均提出了更高的要求。
触控面板因其可直接在屏幕上触控操作而被应用于各显示领域之中。对于触控面板而言,目前市场上主要是投射式电容触控屏,其中电容式触控屏主要分为自电容式和互电容式触控屏。一般电容式触控面板具有沿着横向和纵向方向上排列的电极轴,每个电极轴具有彼此电性连接的同一轴向排列的电极,当对显示面板进行触控操作时,会在触控屏上对应多个触控点,每个触控点对应一个横坐标和纵坐标。而现有技术中的触控面板在识别上述形成的触控点时,其对应的坐标值会出现一定的混乱而形成鬼点现象,同时,在大尺寸显示面板中,由于其对应的触控感应单元数量较多,其触控感应单元对应的读出引线数量也增多,在对触控点进行读取识别时,会存在较大的信噪比,进而降低了触控面板的触控灵敏度以及触控效果,不利于触控面板综合性能的提高。
因此需要对现有技术中的问题提出解决方法。
综上所述,现有技术中制备得到的触控面板,在对触控面板进行触控操作时,不能较好的对触控点进行识别,进而影响显示面板的触控精度以及触控灵敏度,不利于触控面板综合性能的提高。
为解决上述问题,本发明实施例提供一种触控面板及触控显示装置,以有效的改善触控面板触控精度角度,触控效果不理想的问题,并有效的提高触控面板的综合性能。
为解决上述技术问题,本发明实施例所提供的技术方法如下:
本发明实施例的第一方面,提供了一种触控面板,包括:
衬底基板;以及,
触控电极,所述触控电极包括多个图案电极,所述多个图案电极在第一方向上以及与所述第一方向相交的第二方向上阵列设置;
其中,所述多个图案电极中相邻的所述图案电极在所述第一方向上错位排布,所述多个图案电极中的每个图案电极在第一方向具有第一宽度,在第二方向上具有第二宽度,且所述第二宽度大于所述第一宽度;其中,所述第一方向与所述第二方向之间具有一夹角,所述夹角为直角。
根据本发明一实施例,所述图案电极在所述第二方向上的所述第二宽度与所述图案电极在所述第一方向上的所述第一宽度的比值为N:1,其中,所述N为大于1的整数。
根据本发明一实施例,所述图案电极在所述第二方向上的所述第二宽度为所述图案电极在所述第一方向上的第一宽度的2倍。
根据本发明一实施例,所述多个图案电极包括多个第一图案电极和多个第二图案电极,所述多个第一图案电极与多个所述第二图案电极在所述第一方向上交替设置,其中,在所述第一方向上,所述多个第一图案电极中的一个第一图案电极的至少一端部与对应的所述多个第二图案电极中的一个图案电极的中心线平齐。
根据本发明一实施例,在所述第一方向上,所述多个第一图案电极和所述多个第二图案电极等间距交替设置。
本发明实施例的第二方面,提供了一种触控面板,包括:
衬底基板;以及,
触控电极,所述触控电极包括多个图案电极,所述多个图案电极在第一方向上以及与所述第一方向相交的第二方向上阵列设置;
其中,所述多个图案电极中相邻的所述图案电极在所述第一方向上错位排布,所述多个图案电极中的每个图案电极在第一方向具有第一宽度,在第二方向上具有第二宽度,且所述第二宽度大于所述第一宽度。
根据本发明一实施例,所述图案电极在所述第二方向上的所述第二宽度与所述图案电极在所述第一方向上的所述第一宽度的比值为N:1,其中,所述N为大于1的整数。
根据本发明一实施例,所述图案电极在所述第二方向上的所述第二宽度为所述图案电极在所述第一方向上的第一宽度的2倍。
根据本发明一实施例,所述多个图案电极包括多个第一图案电极和多个第二图案电极,所述多个第一图案电极与多个所述第二图案电极在所述第一方向上交替设置,其中,在所述第一方向上,所述多个第一图案电极中的一个第一图案电极的至少一端部与对应的所述多个第二图案电极中的一个图案电极的中心线平齐。
根据本发明一实施例,在所述第一方向上,所述多个第一图案电极和所述多个第二图案电极等间距交替设置。
根据本发明一实施例,在所述第二方向上,所述多个第一图案电极中相邻的所述第一图案电极之间的间距与所述多个第二图案电极中相邻的所述第二图案电极之间的间距相同。
根据本发明一实施例,每个所述第一图案电极在所述第一方向上的第一宽度与每个所述第二图案电极在所述第一方向上的第一宽度相同。
根据本发明一实施例,所述第一图案电极在所述第二方向上对应的第二宽度大于所述第一图案电极在所述第一方向上的第一宽度,所述第二图案电极在所述第二方向上的第二宽度大于所述第二图案电极在所述第一方向上的第一宽度。
根据本发明一实施例,所述显示面板还包括触控引线,所述触控引线与所述图案电极对应连接。
根据本发明一实施例,所述显示面板还包括连接端子,所述连接端子设置在所述图案电极上,所述触控引线通过所述连接端子与所述图案电极电连接。
根据本发明一实施例,在所述第一方向上,相间隔的所述图案电极上设置的所述连接端子均位于同一直线上。
根据本发明一实施例,相邻的所述触控引线之间的距离相同。
根据本发明一实施例,所述多个图案电极包括多个第三图案电极以及多个第四图案电极,所述多个第三图案电极和所述多个第四图案电极在所述第一方向和所述第二方向上阵列排布,所述多个第三图案电极与所述多个第四图案电极在所述第一方向上交替设置,且所述多个第三图案电极中的一个第三图案电极在所述第二方向上的长度大于所述多个第四图案电极中的一个第四图案电极在所述第二方向上的长度。
根据本发明一实施例,所述第三图案电极在所述第二方向上的长度大于所述第四图案电极在所述第二方向上的长度。
根据本发明的第三方面,还提供一种触控显示装置,包括:
显示面板;以及,
触控面板,所述触控面板与所述显示面板相对设置,所述触控面板包括触控区域,且所述触控区域内设置有多个触控电极;
其中,所述触控面板包括:
衬底基板;以及,
触控电极,所述触控电极包括多个图案电极,所述多个图案电极在第一方向上以及与所述第一方向相交的第二方向上阵列设置;
其中,所述多个图案电极中相邻的所述图案电极在所述第一方向上错位排布,所述多个图案电极中的每个图案电极在第一方向具有第一宽度,在第二方向上具有第二宽度,且所述第二宽度大于所述第一宽度。
综上所述,本发明实施例的有益效果为:
本发明实施例提供一种触控面板及触控显示装置。触控面板包括衬底基板以及触控电极,其中,该触控电极包括多个图案电极,图案电极在第一方向和第二方向上阵列设置,相邻的图案电极在第一方向上错位排布,其中,该图案电极在第一方向上具有第一宽度,在第二方向上具有第二宽度,且图案电极在第二方向上对应的第二宽度大于图案电极在第一方向上对应的第一宽度。本发明实施例中,通过改变图案电极的第一宽度与第二宽度,进而减小显示面板中与该图案电极相电连接的触控引线数量,从而有效的提高触控面板的触控精度以及触控效果,并降低生产成本,提高触控面板的综合性能。
图1为现有技术中提供的自电容式触控面板的结构示意图;
图2为本发明实施例中提供的触控显示面板的触控电极排布平面结构示意图;
图3为本发明实施例中提供的另一图案电极的排布示意图;
图4为本发明实施例提供的触控显示面板对应的触控操作示意图;
图5为触控图案电极所形成的等效电路结构示意图;
图6为本发明实施例提供的连接端子的结构示意图;
图7为本发明实施例提供的又一触控显示面板内触控电极的排布示意图。
以下各实施例的说明是参考附加的图式,用以例示本揭示可用以实施的特定实施例。
随着显示面板制备技术的不断发展,人们对触控面板的各项性能以及触控效果均提出了更高的要求。希望制备得到的触控面板具有较高的触控灵敏度、触控精度以及较好的综合性能。
如图1中所示,图1为现有技术中提供的自电容式触控面板的结构示意图。在设置时,通常将多个触控电极103阵列的设置在衬底基板上,同时,每个触控电极103在行和列方向上分别对应设置有多条信号引线101、信号引线102。如在行方向上设置有信号引线X1、X2、X3以及X4等,在列方向上设置有信号引线Y1、Y2、Y3以及Y4等信号引线。当对显示面板进行触控时,对应的触控电极103上会感受到触控点,并生成触控点的坐标(Xn,Yn),而现有技术中的触控面板,由于在读取多个触控点的坐标值时,会出现一定的误差,或者存在较大的信噪比,同时,由于显示面板中设置的触控电极103的数量较多,因此其对应的引线数量也较多,与其连接的驱动芯片也较多,进而导致生产成本较高,同时,还会出现面板的触控精度降低,触控效果不理想等问题。
本发明实施例提供一种触控面板及触控显示装置,以有效的改善触控显示面板的触控精度以及触控效果,并提高触控显示装置的综合性能。
如图2所示,图2为本发明实施例中提供的触控显示面板的触控电极排布平面结构示意图。本发明实施例中,触控显示面板包括衬底基板200以及触控电极。具体的,触控电极设置在衬底基板200上,且该触控电极包括多个触控图案电极201,多个图案电极201阵列的设置在衬底基板200上。
优选的,在该衬底基板200上,图案电极201在衬底基板200的第一方向和第二方向上阵列排布。其中,本发明实施例中,第一方向与第二方向相交,且该第一方向和第二方向之间具有一夹角。具体的,以下实施例中,第一方向以衬底基板200的行对应的方向为例,即该第一方向为水平X轴方向,第二方向以衬底基板200的列对应的方向为例,即该第二方向为竖直Y轴方向为例进行说明。此时,第一方向X与第二方向Y之间的夹角为直角。还可以其他方向为例,使第一方向X与第二方向Y之间的夹角为其他数值,这里不再详细赘述。
本发明实施例中,在衬底基板200上排布有上述多个图案电极201,在第一方向X对应的行的方向上:在同一行中,图案电极201错位排布。具体的,如在某一行中,其相邻的两个图案电极分别为图案电极2011和图案电极2012。其中,图案电极2011和图案电极2012错位排布,即图案电极2011的顶部与相邻的图案电极2012的顶部不平齐。
同时,在排布各个图案电极201时,图案电极201在第二方向Y上对应的第二宽度的值大于图案电极201在第一方向X上对应的第一宽度的值。本申请实施例中,由于每个图案电极201在第二方向Y上的第二宽度值大于其在第一方向X上的第一宽度值,进而使得图案电极201对应的触控面积增大,当将较大触控面积的图案电极设置在阵列基板上时,其图案电极的数量会随之减少,对应的该阵列基板上设置的与每个图案电极电连接的触控引线也随之减少,当对其进行触控操作时,可有效的降低多条触控引线之间出现干扰,容易影响其对触控点位的读取的问题。
进一步的,在本申请实施例中,在该第一方向上,其每个图案电极具有第一宽度,在第二方向上,每个图案电极具有第二宽度。如图2中,其分别对应图案电极在第一方向上的第一宽度值a,以及在第二方向上的第二宽度值b。
本发明实施例中,图案电极2011在Y轴方向上的高度与其在X轴方向上的长度可按一定的比例设置,即每个图案电极2011对应的第一宽度和第二宽度大小可按照一定的比例关系进行设置。本申请实施例中,图案电极在第二方向Y上对应的第二宽度与其在第一方向X上对应的第一宽度之间的比值为N:1。其中,N为正整数,优选的,N大于等于2,如N=2、3、4......当该N=2时,图案电极在第二方向Y上的第二宽度为其在第一方向X上对应的第一宽度的两倍,此时,不仅能够提高该图案电极2011对应的触控面积,减少其排布的图案电极的数量,同时,还能在较好的控制图案电极对应的触控引线的数量,进而保证在进行触控时的触控精度及触控效果。
以下实施例中,以图案电极201在第二方向Y上对应的第二宽度与其在第一方向X上对应的第一宽度之间的比值为2:1,为例进行说明。
本发明实施例中,如图3所示,图3为本发明实施例中提供的另一图案电极的排布示意图。本实施例中,以两行两列排布的图案电极为例,当为多行多列时,按照图3中的排布形式进行阵列。
具体的,本发明实施例中,第一图案电极301和第二图案电极302在第一方向X上交替设置,且第一图案电极301和第二图案电极302分别位于相邻的两列中,多个第一图案电极301和多个第二图案电极302阵列排布最终形成本申请实施例中提供的触控电极。
其中,在设置上述第一图案电极301和第二图案电极302时,第一图案电极301的至少一端部与第二图案电极302的中心线O1相平齐,该端部可为第一图案电极301的顶部或者底部。
本申请实施例中,在设置多个第一图案电极301和多个第二图案电极302时,在第二方向Y上,多个第一图案电极301中相邻的两个第一图案电极之间的间距与多个第二图案电极302中相邻的两个第二图案电极之间的间距相同。此时,任意相邻两第一图案电极之间的间距与任意相邻的两第二图案电极之间的间距相同,当用手指对其进行触控时,能有效的减小手指与不同的图案电极之间所形成的等效电容值的差值,进而更准确的确定其触控点位,并保证触控精度。
具体的,在第一列方向X上,在第二方向Y上,相邻的两个第一图案电极301之间的间隔距离为D1,在第二列方向上,相邻的两个第二图案电极302之间的间隔距离为D2,本发明实施例在进行设置时,可使得对应的间隔距离D1与间隔距离D2相同,即D1=D2。
同时,在第一方向X上,在进行阵列排布多个图案电极时,相邻的两第一图案电极301与第二图案电极302之间的水平间隔距离可均相同,从而通过控制不同电极之间的间距,以有效的提高其触控精度。
具体的,该第一图案电极301在第二方向Y上对应的第二宽度大于第一图案电极301在第一方向X上的第一宽度,第二图案电极302在第二方向Y上的第二宽度大于第二图案电极302在第一方向X上的第一宽度。
进一步的,本发明实施例中,在设置各个图案电极时,各个图案电极的形状可均相同。如将图案电极的形状设置为矩形、方形、圆形等其他的形状结构,本发明实施例中,以矩形为例进行说明。同时,保证每个图案电极的面积大小均相同。
当各个图案电极的形状以及大小均相同时,其对应的各图案电极的电阻也相同,当对该触控显示面板进行触控操作时,如图4以及图5所示,图4为本发明实施例提供的触控显示面板对应的触控操作示意图。图5为图4中对应的各触控图案电极所形成的等效电路结构示意图。同时结合图1-图3中的触控电极排布结构。
详见图4,当触控物400对该触控电极进行触控操作时,如该触控物400为手指,手指会与不同的触控图案电极201相接触,进而在对应的触控图案电极201上形成电容,识别单元根据所形成的电容大小以及对应的触控点判断该触控操作,并准确的报出所触控的区域。
详见图5,当手指对其进行触控时,其触控图案电极上等效为触控点A、B以及为C,且F为手指等效的触控点。此时,手指与各电极之间以及各电极之间均会形成不同的等效电容,如相邻的两图案电极之间会等效形成等效电容CAB、CAC、CBC。而手指等效的触控点F与各图案电极之间也会形成各等效电容,如CFA、CFB以及CFC。
本发明实施例中,由于触控点B和触控点C均为同一列中的图案电极上所等效形成,当触控点B和触控点C之间的间距与触控点A与触控点B之间的间距不同时,存在CAB=CAC≠CBC。在对其各电容值进行读取时,当CFB>CFC时,可知B处读取的数大于C处的数值,对其进行计算可知,其对应的触控点位于A的上半部分,从而精确的得到触控显示面板的触控点。
优选的,当触控手指对触控图案电极进行触控时,其触控手指与各图案电极之间会形成等效电容,即CFA、CFB以及CFC,各等效电容的大小根据其相对距离的大小进行确定。当触控手指与各图案电极之间的距离均需相同时,上述各等效电容值相同。
进一步的,本发明实施例中通过测定手指所等效的触控点F与各电极之间,以及各电极之间形成的等效电容,并对比触控手指与各触控图案电极之间的等效电容的大小,以准确的获得触控点的位置,从而有效的提高了触控面板的触控精度及触控效果。
优选的,结合图1-图2,本发明实施例中,该触控显示面板还包括多条触控引线25。具体的,每条触控引线25对应的与图案电极201电连接。本发明实施例中,以第一触控引线202和第二触控引线203为例进行说明,其中,第一触控引线202和第二触控引线203设置在第二方向Y上,并与该第二方向上的两个图案电极201对应电连接。
具体的,在每个图案电极201上,还包括连接端子204。连接端子204与对应的触控引线25电连接。通过该连接端子204向触控引线25传送各种数据信号。本发明实施例中,如图6所示,图6为本发明实施例提供的连接端子的结构示意图。在设置各连接端子时,如连接端子A和连接端子B,此时,连接端子A的一端与图案电极电连接,连接端子A的另一端与第一触控引线202电连接,连接端子B的一端与图案电极电连接,连接端子B的另一端与第二触控引线203电连接。
本发明实施例中,在同一列方向上,可设置多条触控引线25,多条触控引线25等间距间隔设置,其不同列中,其对应的触控引线25之间的间隔均相同。
同时,连接端子A距离图案电极的一端的距离与连接端子B距离图案电极的一端的距离相同。即连接端子A到图案电极201的顶部的距离与连接端子B到图案电极201的顶部的距离相同,这样,在第一方向上,相间隔的两个图案电极201上设置的各连接端子均位于同一直线上,从而保证不同列中所设置的连接端子具有较好的一致性,以减小其在触控过程中对触控精度的影响。
进一步的,本申请实施例中,在设置上述各连接端子A、连接端子B以及连接端子C时,可使得的各连接端子A、连接端子B以及连接端子C两两所连接而成的连线距离相同,从而保证较高的触控效果。
本发明实施例中,由于图案电极201在第二方向上的第二宽度大于其在第一方向上的第一宽度,因此,对于固定尺寸大小的衬底基板而言,在第二方向上,其设置的触控电极数目变少,同时,使得该衬底基板上设置的总的触控引线的数量也随之减少,从而有效的降低了触控显示面板的生成成本。
如图7所示,图7为本发明实施例提供的又一触控显示面板内触控电极的排布示意图。结合图1中的排布结构,本发明实施例中,该触控电极中包括多个图案电极201。多个图案电极201在第一方向和第二方向上阵列排布。
其中,该图案电极201还包括多个第三图案电极601和多个第四图案电极602,其中,第三图案电极601和第四图案电极602相邻设置,且第三图案电极601和第四图案电极602内可对应设置多个子图案电极,多个子图案电极在对应的列方向上间隔阵列设置。
本发明实施例中,在设置第三图案电极601时,第三图案电极在第二方向上对应的第二宽度大于第三图案电极在第一方向上的第一宽度,且第三图案电极在第二方向上的第二宽度大于第四图案电极在第二方向上的第二宽度。即此时,第三图案电极601的长度大于第四图案电极的长度,这样排布,使得在某一列方向上,增大其对应的图案电极的面积,从而提高其触控精度。
优选的,在第二方向上,第三图案电极在第二方向上的第二宽度与其在第一方向上第一宽度值之比为2:1,且本发明实施例中,第三图案电极在第一方向上的宽度与第四图案电极在第一方向上的宽度相同。同时,第四图案电极在第一方向上的宽度与第三图案电极在第二方向上的长度相同,即第四图案电极可设置为正方形结构,或者,在设置第三图案电极和第四图案电极时,使第三图案电极的第一宽度大于第四图案电极的第一宽度,以进一步改变其对应的电阻值,并达到提高触控精度的目的。
进一步的,当第三图案电极601和第四图案电极602内均设置有多个子图案电极时,相邻的两个子图案电极之间的间隔距离可相同,且该距离小于第三图案电极内的相邻两子图案电极之间的间距。
同时,在第三图案电极601以及第四图案电极602上还对应设置有触控引线25以及连接端子204。连接端子204可设置在对应的图案电极的表面或者该图案电极的侧面处,具体根据电极的形状以及结构来进行确定。具体的,在第三图案电极601中,其电极面积大于第四图案电极对应的电极面板,因此,在设置时,在相邻两列中,第三图案电极601内设置的子图案电极的数量小于第四图案电极602内设置的子图案电极的数量。因此,第三图案电极601对应区域内的触控引线25的数量小于第四图案电极602对应的触控引线25的数量,通过对图案电极错位排布,并控制其对应的第一宽度和第二宽度值,以有效的提高显示面板的触控精度与效果。
如图7中所示,在该区域内,两条触控引线25分别与两个第三图案电极电连接,四条触控引线25分别与四个第四图案电极电连接。从而减小图案电极201的数量,并减小触控显示面板内的触控引线的数量,有效的降低了显示面板的生产成本。
进一步的,在设置第三图案电极601对应的连接端子204时,各连接端子到图案电极一侧的距离可设置为相同,在设置第四图案电极602对应的连接端子204时,各连接端子到图案电极一侧的距离也可设置为相同。从而保证触控电极上的连接端子具有较好的一致性。
同时,本发明实施例还提供一种触控显示装置,该触控显示装置包括显示面板及触控面板,该显示面板与触控面板相对设置,如该触控面板贴合在该显示面板上。其中,该触控面板包括触控区域,在该触控区域内设置有多个触控电极,通过对该触控区域内的触控电极进行触控,以实现触控操作。具体的,该触控面板为本申请实施例中提供的触控面板,当对该触控显示装置进行触控操作时,具有较高的触控精度以及较好的触控效果。本发明实施例中所提供的触控面板内的触控电极按照上述电极结构进行设置,从而有效的提高了触控面板的触控性能并有效的降低了触控装置的生产成本。
进一步的,该触控面板以及触控显示装置可为:OLED面板、手机、电脑、电子纸、显示器、笔记本电脑、数码相框等任何具有触控显示功能的产品或部件,其具体类型不做具体限制。
以上对本发明实施例所提供的一种触控面板以及触控显示装置进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的技术方案及其核心思想;本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例的技术方案的范围。
Claims (20)
- 一种触控面板,包括:衬底基板;以及,触控电极,所述触控电极包括多个图案电极,所述多个图案电极在第一方向上以及与所述第一方向相交的第二方向上阵列设置;其中,所述多个图案电极中相邻的所述图案电极在所述第一方向上错位排布,所述多个图案电极中的每个图案电极在第一方向具有第一宽度,在第二方向上具有第二宽度,且所述第二宽度大于所述第一宽度;其中,所述第一方向与所述第二方向之间具有一夹角,所述夹角为直角。
- 根据权利要求1所述的触控面板,其中所述图案电极在所述第二方向上的所述第二宽度与所述图案电极在所述第一方向上的所述第一宽度的比值为N:1,其中,所述N为大于1的整数。
- 根据权利要求2所述的触控面板,其中所述图案电极在所述第二方向上的所述第二宽度为所述图案电极在所述第一方向上的第一宽度的2倍。
- 根据权利要求1所述的触控面板,其中所述多个图案电极包括多个第一图案电极和多个第二图案电极,所述多个第一图案电极与所述多个第二图案电极在所述第一方向上交替设置,其中,在所述第一方向上,所述多个第一图案电极中的一个图案电极的至少一端部与对应的所述多个第二图案电极中的一个图案电极的中心线平齐。
- 根据权利要求4所述的触控面板,其中在所述第一方向上,所述多个第一图案电极和所述多个第二图案电极等间距交替设置。
- 一种触控面板,包括:衬底基板;以及,触控电极,所述触控电极包括多个图案电极,所述多个图案电极在第一方向上以及与所述第一方向相交的第二方向上阵列设置;其中,所述多个图案电极中相邻的所述图案电极在所述第一方向上错位排布,所述多个图案电极中的每个图案电极在第一方向具有第一宽度,在第二方向上具有第二宽度,且所述第二宽度大于所述第一宽度。
- 根据权利要求6所述的触控面板,其中所述图案电极在所述第二方向上的所述第二宽度与所述图案电极在所述第一方向上的所述第一宽度的比值为N:1,其中,所述N为大于1的整数。
- 根据权利要求7所述的触控面板,其中所述图案电极在所述第二方向上的所述第二宽度为所述图案电极在所述第一方向上的第一宽度的2倍。
- 根据权利要求6所述的触控面板,其中所述多个图案电极包括多个第一图案电极和多个第二图案电极,所述多个第一图案电极与所述多个第二图案电极在所述第一方向上交替设置,其中,在所述第一方向上,所述多个第一图案电极中的一个图案电极的至少一端部与对应的所述多个第二图案电极中的一个图案电极的中心线平齐。
- 根据权利要求9所述的触控面板,其中在所述第一方向上,所述多个第一图案电极和所述多个第二图案电极等间距交替设置。
- 根据权利要求10所述的触控面板,其中在所述第二方向上,所述多个第一图案电极中相邻的所述第一图案电极之间的间距与所述多个第二图案电极中相邻的所述第二图案电极之间的间距相同。
- 根据权利要求9所述的触控面板,其中每个所述第一图案电极在所述第一方向上的第一宽度与每个所述第二图案电极在所述第一方向上的第一宽度相同。
- 根据权利要求9所述的触控面板,其中所述第一图案电极在所述第二方向上对应的第二宽度大于所述第一图案电极在所述第一方向上的第一宽度,所述第二图案电极在所述第二方向上的第二宽度大于所述第二图案电极在所述第一方向上的第一宽度。
- 根据权利要求6所述的触控面板,其中所述触控面板还包括触控引线,所述触控引线与所述图案电极对应连接。
- 根据权利要求14所述的触控面板,其中所述触控面板还包括连接端子,所述连接端子设置在所述图案电极上,所述触控引线通过所述连接端子与所述图案电极电连接。
- 根据权利要求15所述的触控面板,其中在所述第一方向上,相间隔的所述图案电极上设置的所述连接端子均位于同一直线上。
- 根据权利要求8所述的触控面板,其特征在于,相邻的所述触控引线之间的间距相同。
- 根据权利要求6所述的触控面板,其中所述多个图案电极包括多个第三图案电极以及多个第四图案电极,所述多个第三图案电极和所述多个第四图案电极在所述第一方向和所述第二方向上阵列排布,所述多个第三图案电极与所述多个第四图案电极在所述第一方向上交替设置,且所述多个第三图案电极中的一个第三图案电极在所述第二方向上的第二宽度大于所述多个第四图案电极中的一个第四图案电极在所述第二方向上的第二宽度。
- 根据权利要求18所述的触控面板,其中所述第三图案电极在所述第二方向上的长度大于所述第四图案电极在所述第二方向上的长度。
- 一种触控显示装置,包括:显示面板;以及,触控面板,所述触控面板与所述显示面板相对设置,所述触控面板包括触控区域,且所述触控区域内设置有多个触控电极;其中,所述触控面板包括:衬底基板;以及,触控电极,所述触控电极包括多个图案电极,所述多个图案电极在第一方向上以及与所述第一方向相交的第二方向上阵列设置;其中,所述多个图案电极中相邻的所述图案电极在所述第一方向上错位排布,所述多个图案电极中的每个图案电极在第一方向具有第一宽度,在第二方向上具有第二宽度,且所述第二宽度大于所述第一宽度。
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