TWM494960U - Device substrate and touch display panel - Google Patents
Device substrate and touch display panel Download PDFInfo
- Publication number
- TWM494960U TWM494960U TW103209617U TW103209617U TWM494960U TW M494960 U TWM494960 U TW M494960U TW 103209617 U TW103209617 U TW 103209617U TW 103209617 U TW103209617 U TW 103209617U TW M494960 U TWM494960 U TW M494960U
- Authority
- TW
- Taiwan
- Prior art keywords
- substrate
- electrode
- layer
- conductor
- portions
- Prior art date
Links
Landscapes
- Devices For Indicating Variable Information By Combining Individual Elements (AREA)
- Position Input By Displaying (AREA)
Abstract
Description
本新型創作是有關於一種元件基板,且特別是有關於一種具有導體網格層的元件基板。The present invention relates to an element substrate, and more particularly to an element substrate having a conductor mesh layer.
一般而言,電容式觸控面板大致上可包括外貼式(added-on type)與整合式(in/on-cell type)兩種。外貼式的電容式觸控面板通常是先將觸控構件先製作於一基板上以形成一觸控面板,再將此觸控面板貼附於顯示器的外表面上,因此,外貼式觸控面板會具有一定的厚度。另外,常見的一種整合式觸控面板,是將觸控構件直接製作於顯示器的元件基板上,因此十分有利於顯示器的薄形化與輕量化。In general, a capacitive touch panel can generally include both an additive-on type and an in/on-cell type. The externally mounted capacitive touch panel is usually formed by first forming a touch member on a substrate to form a touch panel, and then attaching the touch panel to the outer surface of the display. The control panel will have a certain thickness. In addition, a common integrated touch panel is that the touch member is directly fabricated on the component substrate of the display, which is advantageous for thinning and weight reduction of the display.
整合式觸控面板的製作過程中,通常會以透明導電材料,如銦錫氧化物(ITO)作為觸控電極的材料。如此一來,可以提供良好的視覺效果,使用者不易觀察到觸控電極的存在。然而,銦錫氧化物伴隨著阻抗值較大的缺點,因此有可能造成觸控面板的觸控靈敏度不高的情形。In the manufacturing process of the integrated touch panel, a transparent conductive material such as indium tin oxide (ITO) is usually used as the material of the touch electrode. In this way, a good visual effect can be provided, and the user can hardly observe the presence of the touch electrode. However, indium tin oxide is accompanied by a disadvantage of a large impedance value, and thus there is a possibility that the touch sensitivity of the touch panel is not high.
本新型創作提供一種元件基板,其包括由導體網格層所構成的導體構件,因此可提供良好的導電率。The present invention provides an element substrate comprising a conductor member composed of a conductor mesh layer, thereby providing good electrical conductivity.
本新型創作的元件基板包括一基板以及一導體構件。基板具有彼此相對的一第一側以及一第二側。導體構件設置於第二側上,且導體構件的至少一部分由一導體網格層構成。The component substrate created by the present invention comprises a substrate and a conductor member. The substrate has a first side and a second side opposite to each other. The conductor member is disposed on the second side, and at least a portion of the conductor member is comprised of a conductor mesh layer.
本新型創作的元件基板包括一基板以及一導體構件。基板具有彼此相對的一第一側以及一第二側。導體構件設置於第二側上,其中導體構件由多條導體線所構成,且導體線的線寬介於0.08~500微米。The component substrate created by the present invention comprises a substrate and a conductor member. The substrate has a first side and a second side opposite to each other. The conductor member is disposed on the second side, wherein the conductor member is composed of a plurality of conductor lines, and the line width of the conductor line is between 0.08 and 500 microns.
本新型創作的觸控顯示面板包括一元件基板、一對向基板以及一顯示介質層。元件基板包括一基板以及一導體構件。基板具有彼此相對的一第一側以及一第二側。導體構件設置於第二側上,且導體構件的至少一部分由一導體網格層構成。對向基板與元件基板對向設置。顯示介質層設置於元件基板以及對向基板之間。The touch display panel of the present invention comprises an element substrate, a pair of substrates and a display medium layer. The component substrate includes a substrate and a conductor member. The substrate has a first side and a second side opposite to each other. The conductor member is disposed on the second side, and at least a portion of the conductor member is comprised of a conductor mesh layer. The opposite substrate is disposed opposite to the element substrate. The display medium layer is disposed between the element substrate and the opposite substrate.
本新型創作的觸控顯示面板包括一元件基板、一對向基板以及一顯示介質層。元件基板包括一基板以及一導體構件。基板具有彼此相對的一第一側以及一第二側。導體構件設置於第二側上,其中導體構件由多條導體線所構成,且各導體線的線寬介於0.08~20微米。對向基板與元件基板對向設置。顯示介質層設置 於元件基板以及對向基板之間。The touch display panel of the present invention comprises an element substrate, a pair of substrates and a display medium layer. The component substrate includes a substrate and a conductor member. The substrate has a first side and a second side opposite to each other. The conductor member is disposed on the second side, wherein the conductor member is composed of a plurality of conductor lines, and the line width of each conductor line is between 0.08 and 20 microns. The opposite substrate is disposed opposite to the element substrate. Display media layer settings Between the element substrate and the opposite substrate.
基於上述,本新型創作的元件基板的導體構件的至少一部分由導體網格層所構成。此導體網格層可藉由低溫度製程所形成。此外,導體網格層可提供良好的導電率以使元件基板具有好的觸控反應速度。Based on the above, at least a part of the conductor member of the element substrate of the present invention is composed of a conductor mesh layer. This conductor mesh layer can be formed by a low temperature process. In addition, the conductor mesh layer provides good electrical conductivity to provide a good touch response speed for the component substrate.
為讓本新型創作的上述特徵和優點能更明顯易懂,下文特舉實施例,並配合所附圖式作詳細說明如下。The above described features and advantages of the present invention will become more apparent and understood from the following description.
10、10a、10b、10c、10d‧‧‧觸控顯示面板10, 10a, 10b, 10c, 10d‧‧‧ touch display panel
20、20a、20b‧‧‧顯示面板20, 20a, 20b‧‧‧ display panel
100、100a、100b、100c、100d、100e、100f、100g‧‧‧元件基板100, 100a, 100b, 100c, 100d, 100e, 100f, 100g‧‧‧ element substrate
102‧‧‧第一基板102‧‧‧First substrate
104‧‧‧顯示區104‧‧‧ display area
106‧‧‧周邊區106‧‧‧The surrounding area
102a‧‧‧第一側102a‧‧‧ first side
102b‧‧‧第二側102b‧‧‧ second side
110‧‧‧彩色濾光層110‧‧‧Color filter layer
112、114、116‧‧‧彩色濾光圖案112, 114, 116‧‧‧ color filter pattern
120‧‧‧導體構件120‧‧‧Conductor components
121‧‧‧導體網格層121‧‧‧Conductor mesh layer
121a‧‧‧第一導體網格子層121a‧‧‧First conductor grid sublayer
121b‧‧‧第二導體網格子層121b‧‧‧Second conductor grid sublayer
121c‧‧‧導體線121c‧‧‧ conductor wire
122‧‧‧第一電極結構122‧‧‧First electrode structure
122a‧‧‧第一連接部122a‧‧‧First connection
122b‧‧‧第一電極部122b‧‧‧First electrode
124‧‧‧第二電極結構124‧‧‧Second electrode structure
124a‧‧‧第二連接部124a‧‧‧Second connection
124b‧‧‧第二電極部124b‧‧‧second electrode
126‧‧‧絕緣圖案126‧‧‧Insulation pattern
128‧‧‧擬置圖案128‧‧‧ proposed pattern
130‧‧‧黑矩陣層130‧‧‧Black matrix layer
140、140a、140b‧‧‧絕緣層140, 140a, 140b‧‧‧ insulation
150‧‧‧共用電極層150‧‧‧Common electrode layer
160‧‧‧周邊走線160‧‧‧ perimeter wiring
170‧‧‧絕緣層170‧‧‧Insulation
180‧‧‧絕緣層180‧‧‧Insulation
200‧‧‧對向基板200‧‧‧ opposite substrate
202‧‧‧第二基板202‧‧‧second substrate
210‧‧‧電極210‧‧‧ electrodes
210a‧‧‧第一電極210a‧‧‧first electrode
210b‧‧‧第二電極210b‧‧‧second electrode
210c‧‧‧第三電極210c‧‧‧ third electrode
210d‧‧‧第四電極210d‧‧‧fourth electrode
300‧‧‧顯示介質層300‧‧‧Display media layer
302‧‧‧液晶分子302‧‧‧liquid crystal molecules
410‧‧‧第一偏光片410‧‧‧First polarizer
420‧‧‧第二偏光片420‧‧‧Second polarizer
500‧‧‧裝飾結構500‧‧‧Decorative structure
902‧‧‧透光區902‧‧‧Light transmission area
904‧‧‧周邊區904‧‧‧The surrounding area
906‧‧‧飾邊層906‧‧‧Edge layer
908‧‧‧裝飾層908‧‧‧decorative layer
908A‧‧‧第一裝飾層908A‧‧‧First decorative layer
908B‧‧‧第二裝飾層908B‧‧‧Second decorative layer
908C‧‧‧底裝飾層908C‧‧‧ bottom decorative layer
910‧‧‧緩衝層910‧‧‧buffer layer
912‧‧‧遮光層912‧‧‧Lighting layer
914‧‧‧外框層914‧‧‧Outer frame
A-A’、B-B’‧‧‧剖線A-A’, B-B’‧‧‧ cut line
CG‧‧‧覆蓋板CG‧‧‧covering board
C1‧‧‧第一連接部C1‧‧‧First Connection
C2‧‧‧第二連接部C2‧‧‧Second connection
d1、d2、d3、d4、d5‧‧‧方向D1, d2, d3, d4, d5‧‧ direction
E、Eh、Ef‧‧‧電場E, Eh, Ef‧‧‧ electric field
EP‧‧‧電極對EP‧‧‧electrode pair
E1‧‧‧第一電極部E1‧‧‧First electrode section
E2‧‧‧第二電極部E2‧‧‧Second electrode
H‧‧‧開口H‧‧‧ openings
M、N、O、P、Q、R‧‧‧區域M, N, O, P, Q, R‧‧‧ areas
S‧‧‧透明覆蓋板S‧‧‧Transparent cover plate
V1‧‧‧第一電位V1‧‧‧ first potential
V2‧‧‧第一電位V2‧‧‧ first potential
W1、W2‧‧‧寬度W1, W2‧‧‧ width
圖1A為本新型創作一實施例之觸控顯示面板的剖面示意圖。FIG. 1A is a cross-sectional view of a touch display panel according to an embodiment of the present invention.
圖1B為本新型創作一實施例之觸控顯示面板的剖面示意圖。FIG. 1B is a schematic cross-sectional view of a touch display panel according to an embodiment of the present invention.
圖1C為本新型創作一實施例之觸控顯示面板的剖面示意圖。1C is a cross-sectional view of a touch display panel according to an embodiment of the present invention.
圖1D為本新型創作一實施例之觸控顯示面板的剖面示意圖。FIG. 1D is a schematic cross-sectional view of a touch display panel according to an embodiment of the present invention.
圖1E繪示了本新型創作之一實施例之觸控顯示面板之周邊結構的示意圖。FIG. 1E is a schematic diagram showing a peripheral structure of a touch display panel according to an embodiment of the present invention.
圖2A為本實施例之導體構件的上視示意圖。2A is a top plan view of the conductor member of the embodiment.
圖2B為圖2A之區域M的放大示意圖。2B is an enlarged schematic view of a region M of FIG. 2A.
圖2C繪示沿圖2A中剖線A-A’以及圖2B中的剖線B-B’的剖面示意圖。Fig. 2C is a schematic cross-sectional view taken along line A-A' in Fig. 2A and line B-B' in Fig. 2B.
圖2D為本新型創作另一實施例之元件基板的部分剖面示意圖。2D is a partial cross-sectional view showing the component substrate of another embodiment of the present invention.
圖2E為本新型創作另一實施例之元件基板的部分剖面示意圖。2E is a partial cross-sectional view showing the component substrate of another embodiment of the present invention.
圖2F為本新型創作另一實施例之元件基板的部分剖面示意圖。2F is a partial cross-sectional view showing the element substrate of another embodiment of the present invention.
圖3A為本新型創作另一實施例的元件基板的上視示意圖。3A is a top plan view showing a component substrate of another embodiment of the present invention.
圖3B為圖3A的區域N的放大示意圖。FIG. 3B is an enlarged schematic view of a region N of FIG. 3A.
圖3C為本新型創作另一實施例的元件基板的局部放大示意圖。FIG. 3C is a partially enlarged schematic view showing the element substrate of another embodiment of the present invention.
圖4A為本新型創作另一實施例的元件基板的上視示意圖。4A is a top plan view showing a component substrate of another embodiment of the present invention.
圖4B為圖4A的區域O的放大示意圖。4B is an enlarged schematic view of a region O of FIG. 4A.
圖5A為本新型創作另一實施例的觸控顯示面板的剖面示意圖。FIG. 5A is a schematic cross-sectional view of a touch display panel according to another embodiment of the present invention.
圖5B為本新型創作另一實施例的觸控顯示面板的剖面示意圖。FIG. 5B is a schematic cross-sectional view of a touch display panel according to another embodiment of the present invention.
圖6為圖5的實施例的導體構件的俯視示意圖。Figure 6 is a top plan view of the conductor member of the embodiment of Figure 5.
圖7A與圖7B為圖6的區域P的放大示意圖。7A and 7B are enlarged schematic views of a region P of Fig. 6.
圖8為本新型創作另一實施例的觸控顯示面板的剖面示意圖。FIG. 8 is a cross-sectional view showing a touch display panel according to another embodiment of the present invention.
圖9為圖8的實施例的區域R的放大示意圖。Figure 9 is an enlarged schematic view of a region R of the embodiment of Figure 8.
圖10為圖5的實施例的區域P的放大示意圖。Figure 10 is an enlarged schematic view of a region P of the embodiment of Figure 5.
圖1A為本新型創作一實施例之觸控顯示面板的剖面示意圖。請參照圖1A,觸控顯示面板10包括一元件基板100、一對向基板200以及一顯示介質層300,其中對向基板200與元件基板100對向設置,且顯示介質層300位於元件基板100與對向基板200之間。FIG. 1A is a cross-sectional view of a touch display panel according to an embodiment of the present invention. Referring to FIG. 1A , the touch display panel 10 includes an element substrate 100 , a pair of substrates 200 , and a display medium layer 300 . The opposite substrate 200 is disposed opposite to the element substrate 100 , and the display medium layer 300 is located on the element substrate 100 . Between the opposing substrate 200.
元件基板100包括一第一基板102、一彩色濾光層110、一導體構件120、一黑矩陣層130、一絕緣層140以及一共用電極層150。第一基板102可以是彩色濾光基板,其具有一第一側102a以及與第一側102a相對的一第二側102b,其中第二側102b是靠近使用者進行觸控操作之一側。導體構件120位於第二側102b與一覆蓋板CG之間,其中覆蓋板CG與導體構件120之間可利用一黏膠層(未繪示)進行貼合。彩色濾光層110設置於第一側102a上。彩色濾光層110包括多個第一彩色濾光圖案112、多個第二彩色濾光圖案114以及多個第三彩色濾光圖案116。在此,僅分別繪示一個第一彩色濾光圖案112、一個第二彩色濾光圖案114以及一個第三彩色濾光圖案116為例說明。或者,在另一實施例中,也可以選擇不於觸控顯示面板10中設置彩色濾光層110。The component substrate 100 includes a first substrate 102, a color filter layer 110, a conductor member 120, a black matrix layer 130, an insulating layer 140, and a common electrode layer 150. The first substrate 102 can be a color filter substrate having a first side 102a and a second side 102b opposite to the first side 102a, wherein the second side 102b is adjacent to one side of the touch operation by the user. The conductor member 120 is located between the second side 102b and a cover plate CG. The cover plate CG and the conductor member 120 can be adhered by an adhesive layer (not shown). The color filter layer 110 is disposed on the first side 102a. The color filter layer 110 includes a plurality of first color filter patterns 112, a plurality of second color filter patterns 114, and a plurality of third color filter patterns 116. Here, only one first color filter pattern 112, one second color filter pattern 114, and one third color filter pattern 116 are illustrated as an example. Alternatively, in another embodiment, the color filter layer 110 may not be disposed in the touch display panel 10.
黑矩陣層130設置於第一側102a上且具有多個開口,其中彩色濾光層110的多個彩色濾光圖案分別設置於該些開口中。絕緣層140覆蓋彩色濾光層110以及黑矩陣層130,絕緣層140可以是一個平坦化層,另外實際設計上也可以省略絕緣層140的設 置(未繪示)。共用電極層150設置於絕緣層140上,亦可以設置於彩色濾光層110上,且共用電極層150覆蓋彩色濾光層110。導體構件120設置於第二側102b上,其中導體構件120的至少一部分由導體網格層121(繪示於圖2B中)構成。導體構件120例如是觸控元件層,因此元件基板100上可同時具有觸控功能。The black matrix layer 130 is disposed on the first side 102a and has a plurality of openings, wherein the plurality of color filter patterns of the color filter layer 110 are respectively disposed in the openings. The insulating layer 140 covers the color filter layer 110 and the black matrix layer 130. The insulating layer 140 may be a planarization layer. In addition, the design of the insulating layer 140 may be omitted in actual design. Set (not shown). The common electrode layer 150 is disposed on the insulating layer 140 , and may be disposed on the color filter layer 110 , and the common electrode layer 150 covers the color filter layer 110 . The conductor member 120 is disposed on the second side 102b, wherein at least a portion of the conductor member 120 is comprised of a conductor mesh layer 121 (shown in Figure 2B). The conductor member 120 is, for example, a touch element layer, so that the element substrate 100 can simultaneously have a touch function.
進一步來說,隨著觸控面板的尺寸越大,為了得到結晶性更佳且導電率更高的銦錫氧化物薄膜,將需要以更高溫的製程來製作觸控電極。不過,高溫的製作過程極可能會導致元件基板上的彩色濾光圖案的色度值產生偏移,進而影響顯示器的顯示品質。在本實施例中,由於導體構件120的至少一部分由導體網格層121(繪示於圖2B中)構成,其中導體網格層121的材料例如是金屬材料。由於金屬材料可以低溫度鍍膜的方式形成,因此在完成導體網格層121的製作後,不易使彩色濾光層110的彩色濾光圖案的色度值產生偏移。此外,導體網格層121更可提供觸控顯示面板10具有高感應能力以及快速的反應速度。上述金屬材料例如是金、銀、銅、鋁、鉬或上述材料任意組合所堆疊而成的堆疊材料層(如鉬/鋁/鉬堆疊材料層)。Further, as the size of the touch panel is larger, in order to obtain an indium tin oxide film having better crystallinity and higher conductivity, it is necessary to fabricate the touch electrode in a higher temperature process. However, the high-temperature manufacturing process is likely to cause the chromaticity value of the color filter pattern on the element substrate to shift, thereby affecting the display quality of the display. In the present embodiment, since at least a portion of the conductor member 120 is constituted by the conductor mesh layer 121 (shown in FIG. 2B), the material of the conductor mesh layer 121 is, for example, a metal material. Since the metal material can be formed by low-temperature coating, after the fabrication of the conductor mesh layer 121 is completed, it is difficult to shift the chromaticity value of the color filter pattern of the color filter layer 110. In addition, the conductor mesh layer 121 further provides the touch display panel 10 with high sensing capability and fast response speed. The above metal material is, for example, a layer of a stacked material (such as a layer of molybdenum/aluminum/molybdenum stacking material) in which gold, silver, copper, aluminum, molybdenum or any combination of the above materials is stacked.
對向基板200例如是一畫素陣列基板,其可包括一第二基板202以及設置於第二基板202上的一畫素陣列層(未繪示)。畫素陣列層包括多個陣列排列的畫素結構,該些畫素結構中例如包括多個電晶體陣列,其中圖1A更示意地繪示出數個畫素結構中的 數個電極210,其例如是畫素結構中的畫素電極。關於畫素結構的構件及設計為本領域之技術人員所熟知,於此不多加描述。在一實施例中,設置於第一基板102上的彩色濾光層110也可以選擇性地設置於第二基板202上,以形成COA(color filter on array)畫素結構。The opposite substrate 200 is, for example, a pixel array substrate, which may include a second substrate 202 and a pixel array layer (not shown) disposed on the second substrate 202. The pixel array layer includes a plurality of arrayed pixel structures, for example, including a plurality of transistor arrays, wherein FIG. 1A schematically shows a plurality of pixel structures. A plurality of electrodes 210, which are, for example, pixel electrodes in a pixel structure. The components and designs of the pixel structure are well known to those skilled in the art and will not be described here. In an embodiment, the color filter layer 110 disposed on the first substrate 102 may also be selectively disposed on the second substrate 202 to form a COA (color filter on array) pixel structure.
顯示介質層300例如是液晶顯示介質層、電濕潤顯示介質層、電泳顯示介質層、電致發光顯示介質層或其他適當的顯示介質層。換言之,本新型創作不限定顯示介質層的種類。本實施例的顯示介質層300為液晶分子層,而觸控顯示面板10為觸控液晶顯示面板。Display medium layer 300 is, for example, a liquid crystal display medium layer, an electrowetting display medium layer, an electrophoretic display medium layer, an electroluminescent display medium layer, or other suitable display medium layer. In other words, the novel creation does not limit the type of display medium layer. The display medium layer 300 of the present embodiment is a liquid crystal molecular layer, and the touch display panel 10 is a touch liquid crystal display panel.
具體而言,對向基板200上的電極210具有一第一電位V1,而元件基板100上的共用電極層150具有一第二電位V2,其中第一電位V1不同於第二電位V2,因此電極210與共用電極層150之間會形成一垂直電場E,且此電場E可驅動液晶分子302以進行畫面的顯示。本實施例之液晶分子302的驅動模式例如是扭轉向列式(Twisted Nematic,TN)驅動模式。在其他實施例中,液晶分子302的驅動模式也可以是垂直排列式(Vertical Alignment,VA)驅動模式。另外,如顯示介質層300為液晶顯示介質層,其相對兩側可以設置有配向層(未繪示),以作為液晶顯示介質層配向之用,由於配向層為習知的液晶顯示裝置的構件,於此不多贅述。Specifically, the electrode 210 on the opposite substrate 200 has a first potential V1, and the common electrode layer 150 on the element substrate 100 has a second potential V2, wherein the first potential V1 is different from the second potential V2, so the electrode A vertical electric field E is formed between the 210 and the common electrode layer 150, and the electric field E can drive the liquid crystal molecules 302 to display the picture. The driving mode of the liquid crystal molecules 302 of the present embodiment is, for example, a twisted nematic (TN) driving mode. In other embodiments, the driving mode of the liquid crystal molecules 302 may also be a Vertical Alignment (VA) driving mode. In addition, if the display medium layer 300 is a liquid crystal display medium layer, opposite sides thereof may be provided with an alignment layer (not shown) for alignment of the liquid crystal display medium layer, since the alignment layer is a member of a conventional liquid crystal display device. I won't go into details here.
當觸控顯示面板10運作之時,共用電極層150可作為導 體構件120與電極210之間的電磁屏蔽層(electro-magnetic shielding layer)。換言之,當導體構件120執行觸控功能時,共用電極層150可以減少導體構件120受到電極210訊號干擾的機率。若共用電極150具有直流電訊號時,其可直接作為電磁屏蔽層。若共用電極150具有交流電訊號時,可將顯示與觸控功能透過分時多工的方式來驅動。舉例而言,當觸控顯示面板10執行觸控功能時,共用電極層150不施加交流電訊號。當觸控顯示面板10執行顯示功能時,導體構件120不執行觸控功能。When the touch display panel 10 is in operation, the common electrode layer 150 can serve as a guide An electro-magnetic shielding layer between the body member 120 and the electrode 210. In other words, when the conductor member 120 performs the touch function, the common electrode layer 150 can reduce the probability that the conductor member 120 is interfered by the electrode 210 signal. If the common electrode 150 has a direct current signal, it can directly function as an electromagnetic shielding layer. If the common electrode 150 has an alternating current signal, the display and touch functions can be driven by means of time division multiplexing. For example, when the touch display panel 10 performs the touch function, the common electrode layer 150 does not apply an alternating current signal. When the touch display panel 10 performs the display function, the conductor member 120 does not perform the touch function.
在另一實施例中,觸控顯示面板10的液晶分子302的驅動模式也可以是共平面轉換式(In-Plane Switching,IPS),如圖1B所示。其中,對向基板200上設置有一第一電極210a以及一第二電極210b,第一電極210a以及第二電極210b分別提供一第一電位V1以及一第二電位V2,其中第一電位V1不同於第二電位V2。據此,第一電極210a與第二電極210b之間可形成一水平電場Eh。此水平電場Eh可用以驅動液晶分子302。In another embodiment, the driving mode of the liquid crystal molecules 302 of the touch display panel 10 may also be an In-Plane Switching (IPS), as shown in FIG. 1B. A first electrode 210a and a second electrode 210b are disposed on the opposite substrate 200. The first electrode 210a and the second electrode 210b respectively provide a first potential V1 and a second potential V2, wherein the first potential V1 is different from The second potential V2. Accordingly, a horizontal electric field Eh can be formed between the first electrode 210a and the second electrode 210b. This horizontal electric field Eh can be used to drive the liquid crystal molecules 302.
在另一實施例中,觸控顯示面板10的液晶分子302的驅動模式也可以是邊際場切換式(Fringe Field Switching,FFS),如圖1C所示。其中,對向基板200上設置有一第三電極210c以及一第四電極210d,第三電極210c以及第四電極210d分別提供一第一電位V1以及一第二電位V2,其中第一電位V1不同於第二電位V2。據此,第三電極210c以及第四電極210d之間可形成一邊緣 電場Ef。此邊緣電場Ef可用以驅動液晶分子302。In another embodiment, the driving mode of the liquid crystal molecules 302 of the touch display panel 10 may also be Fringe Field Switching (FFS), as shown in FIG. 1C. A third electrode 210c and a fourth electrode 210d are disposed on the opposite substrate 200. The third electrode 210c and the fourth electrode 210d respectively provide a first potential V1 and a second potential V2, wherein the first potential V1 is different from the first potential V1. The second potential V2. Accordingly, an edge can be formed between the third electrode 210c and the fourth electrode 210d. Electric field Ef. This fringe electric field Ef can be used to drive the liquid crystal molecules 302.
在圖1B以及圖1C的實施例中,黑矩陣層130例如為導體。因此黑矩陣層130可進一步作為導體構件120與電極210之間的電磁屏蔽層。絕緣層140可以是一個平坦化層,另外實際設計上也可以省略絕緣層140的設置(未繪示)。再者,如顯示介質層300為液晶顯示介質層,其相對兩側可以設置有配向層(未繪示),以作為液晶顯示介質層配向之用,由於配向層為習知的液晶顯示裝置的構件,於此不多贅述。In the embodiment of FIGS. 1B and 1C, the black matrix layer 130 is, for example, a conductor. The black matrix layer 130 can thus further serve as an electromagnetic shielding layer between the conductor member 120 and the electrode 210. The insulating layer 140 may be a planarization layer. In addition, the arrangement of the insulating layer 140 (not shown) may be omitted in actual design. In addition, if the display medium layer 300 is a liquid crystal display medium layer, an opposite layer (not shown) may be disposed on the opposite sides thereof for use as a liquid crystal display medium layer alignment, since the alignment layer is a conventional liquid crystal display device. The components are not described here.
圖1D為本新型創作一實施例之觸控顯示面板的剖面示意圖。請參照圖1D,觸控顯示面板10a和圖1A的觸控顯示面板10相似,其不同之處說明如下。觸控顯示面板10a的顯示介質層300可以是電致發光顯示介質層,例如有機發光二極體顯示介質層。顯示介質層300包括多個發光材料圖案300a。可藉由顯示介質層300的材料設計,以使觸控顯示面板10a實現彩色顯示的功能。舉例而言,顯示介質層300的發光材料圖案300a可以是由紅色、藍色、綠色、其他顏色或上述顏色的任意組合的電致發光材料所構成。元件基板100包括第一基板102以及導體構件120。第一基板102具有一第一側102a以及與第一側102a相對的一第二側102b,其中第二側102b是靠近使用者進行觸控操作之一側。第一基板102例如是觸控顯示面板10a的封裝蓋板,其可用以保護內部的元件。在本實施例中,觸控顯示面板10a不設置彩色濾光 層。但本新型創作不限於此。在他實施例中,觸控顯示面板10a也可藉由彩色濾光層搭配白光的顯示介質層300的設計來實現彩色顯示的功能。FIG. 1D is a schematic cross-sectional view of a touch display panel according to an embodiment of the present invention. Referring to FIG. 1D, the touch display panel 10a is similar to the touch display panel 10 of FIG. 1A, and the differences are described below. The display medium layer 300 of the touch display panel 10a may be an electroluminescent display medium layer, such as an organic light emitting diode display medium layer. The display medium layer 300 includes a plurality of luminescent material patterns 300a. The material design of the display medium layer 300 can be used to enable the touch display panel 10a to realize the function of color display. For example, the luminescent material pattern 300a of the display medium layer 300 may be composed of an electroluminescent material of red, blue, green, other colors, or any combination of the above colors. The element substrate 100 includes a first substrate 102 and a conductor member 120. The first substrate 102 has a first side 102a and a second side 102b opposite to the first side 102a, wherein the second side 102b is adjacent to one side of the touch operation by the user. The first substrate 102 is, for example, a package cover of the touch display panel 10a, which can be used to protect internal components. In this embodiment, the touch display panel 10a is not provided with color filtering. Floor. However, this novel creation is not limited to this. In other embodiments, the touch display panel 10a can also implement the function of color display by designing the color filter layer and the display medium layer 300 of white light.
對向基板200包括一第二基板202、至少一電源線PL以及多個發光單元,每一個發光單元包括第一電極210c以及第二電極210d。第一電極210c透過絕緣層140a的開口與電源線PL電性連接。發光材料圖案300a形成在第一電極210c上且位於絕緣層140b的開口中。第二電極210d至少形成在發光材料圖案300a上,以構成一個發光單元。The opposite substrate 200 includes a second substrate 202, at least one power line PL, and a plurality of light emitting units, each of which includes a first electrode 210c and a second electrode 210d. The first electrode 210c is electrically connected to the power line PL through the opening of the insulating layer 140a. The luminescent material pattern 300a is formed on the first electrode 210c and in the opening of the insulating layer 140b. The second electrode 210d is formed at least on the luminescent material pattern 300a to constitute one illuminating unit.
在上述圖1A至圖1D的實施例中,第一基板102例如是顯示器的元件基板,且圖1A至圖1D的實施例的觸控顯示面板可以更包括覆蓋板CG,其可以設置於第一基板102遠離對向基板200的一側。但本新型創作不限於此。在其他實施例中,上述第一基板102可為彩色濾光基板、畫素陣列基板、有機發光顯示器之封裝蓋板或其他顯示器中所使用之基板。覆蓋板CG可以是透明覆蓋板,其係具有85%以上的透光度,透明覆蓋板可包括玻璃覆蓋板、塑膠覆蓋板或其他具有高機械強度材質所形成具有保護(例如防刮)、覆蓋或是美化其對應裝置之覆蓋板,透明覆蓋板的厚度可介於0.2~2mm。透明覆蓋板可為平面形狀或曲面形狀,或前述之組合,例如為2.5D玻璃,但並不以此為限。另外,也可以選擇在透明覆蓋板面向使用者進行操作之一側設置一防污鍍膜 (Anti-Smudge Coating)。In the embodiment of FIG. 1A to FIG. 1D, the first substrate 102 is, for example, an element substrate of the display, and the touch display panel of the embodiment of FIGS. 1A to 1D may further include a cover plate CG, which may be disposed at the first The substrate 102 is away from the side of the opposite substrate 200. However, this novel creation is not limited to this. In other embodiments, the first substrate 102 may be a color filter substrate, a pixel array substrate, a package cover of an organic light emitting display, or a substrate used in other displays. The cover plate CG may be a transparent cover plate having a transmittance of 85% or more, and the transparent cover plate may include a glass cover plate, a plastic cover plate or other materials with high mechanical strength to form protection (for example, scratch resistance) and cover. Or beautify the cover plate of its corresponding device, the thickness of the transparent cover plate can be between 0.2 and 2 mm. The transparent cover plate may be a planar shape or a curved shape, or a combination of the foregoing, such as 2.5D glass, but is not limited thereto. In addition, it is also possible to provide an anti-fouling coating on one side of the transparent cover plate facing the user. (Anti-Smudge Coating).
另外,也可在透明覆蓋板周圍設置一裝飾層,裝飾層可以是黑色油墨或光阻,也可以選擇彩色的裝飾層。請參考圖1E。圖1E繪示了本新型創作之一實施例之觸控顯示面板之周邊結構的示意圖。如圖1E所示,本實施例之觸控顯示面板10a具有一透光區902(亦可稱為顯示區)以及一周邊區904設置於透光區902之至少一側。在透光區902內可設置前述各實施例之觸控元件,在此不再贅述。觸控顯示面板10a包括一透明覆蓋板S、一飾邊層906、一裝飾層908、一緩衝層910、一遮光層912以及一外框層914。透明覆蓋板S的透光度在85%以上均在此範疇內,透明覆蓋板S可包括玻璃覆蓋板、塑膠覆蓋板或其他具有高機械強度材質所形成具有保護(例如防刮)、覆蓋或是美化其對應裝置(例如顯示器)之覆蓋板,透明覆蓋板S的厚度可介於0.2-2mm。透明覆蓋板S可為平面形狀或曲面形狀,或前述之組合,例如為2.5D或3D形狀的強化玻璃,但並不以此為限。另外,也可以選擇在透明覆蓋板S面向使用者進行操作之一側設置一防污鍍膜(Anti-Smudge Coating)。飾邊層906設置於周邊區904靠近透光區902的邊緣,且飾邊層906可以包含油墨材料或是光阻材料。裝飾層908可選擇性地為一複合層,例如包括一第一裝飾層908A與一第二裝飾層908B由下而上依序堆疊於基板S上。本實施例之第二裝飾層908B之圖形範圍大於第一裝飾層908A之圖形範圍,因此第二裝飾層 908B包覆了第一裝飾層908A之側邊。此外,裝飾層908更包括一底裝飾層908C設於第一裝飾層908A之下側,其中底裝飾層908C之圖形範圍係大於第一裝飾層908A與第二裝飾層908B之圖形範圍,且底裝飾層908C於接近透光區902之內側邊係較第一裝飾層908A和第二裝飾層908B之內側邊更接近透光區902。在另一實施例中,也可以選擇性省略掉第二裝飾層908B。在本實施例中,第一裝飾層908A、第二裝飾層908B與底裝飾層908C皆由同色系之彩色油墨或光阻材料所構成,但不以此為限,例如其中二層同顏色,剩餘的一層是另一種顏色,另外,裝飾層908也可以使用單層光阻。緩衝層910係設置於裝飾層908之上,全面覆蓋基板S之表面且包覆了裝飾層908。緩衝層910較佳由透明絕緣材料所構成,其材料舉例為氧化矽、氮化矽、二氧化鈦、氧化鈮、油墨材料及光阻材料之至少其中一者,且緩衝層910的堆疊結構可以依光學需求而為單層或多層之堆疊結構,例如為上述材料之其中兩者以上之多層堆疊。遮光層912可以是油墨材料或是光阻材料,且其覆蓋至少部分緩衝層910與裝飾層908,並且緩衝層912係位於遮光層910與裝飾層908之間。外框層914設於周邊區904之外側,外框層914係部分覆蓋遮光層912、緩衝層910以及裝飾層908,其中外框層914可為複合層,包括第一外框層914A與第二外框層914B,兩者之材料較佳不相同,或是分別為不同色系之材料層。遮光層912與第二外框層914B可具有深色系或暗色 系顏色,可以遮蔽後方的電子元件,而裝飾層908與第一外框層914A可具有淺色系顏色以使觸控顯示面板10a具有較明亮的外觀,但不以此為限。再者,遮光層912的光學密度(Optical Density,OD)值高於裝飾層908的光學密度值,較佳地,裝飾層908的光學密度值可小於2.5。上述裝飾層的堆疊方式與層數不限於本實施例圖示所揭示的架構,可視設計需求而有不同的堆疊架構。In addition, a decorative layer may be disposed around the transparent cover plate, and the decorative layer may be black ink or photoresist, or a colored decorative layer may be selected. Please refer to Figure 1E. FIG. 1E is a schematic diagram showing a peripheral structure of a touch display panel according to an embodiment of the present invention. As shown in FIG. 1E , the touch display panel 10 a of the present embodiment has a light transmitting region 902 (also referred to as a display region) and a peripheral region 904 disposed on at least one side of the light transmitting region 902 . The touch elements of the foregoing embodiments may be disposed in the light-transmitting region 902, and details are not described herein again. The touch display panel 10a includes a transparent cover S, a trim layer 906, a decorative layer 908, a buffer layer 910, a light shielding layer 912, and an outer frame layer 914. The transparent cover plate S has a transmittance of more than 85% in this category, and the transparent cover plate S may include a glass cover plate, a plastic cover plate or other materials with high mechanical strength to form protection (for example, scratch resistance), covering or It is a cover plate that beautifies its corresponding device (such as a display), and the thickness of the transparent cover plate S can be between 0.2 and 2 mm. The transparent cover plate S may be a planar shape or a curved shape, or a combination of the foregoing, such as a tempered glass of 2.5D or 3D shape, but is not limited thereto. Alternatively, an anti-smudge coating may be provided on one side of the operation of the transparent cover sheet S facing the user. The trim layer 906 is disposed adjacent to the edge of the light transmissive region 902 in the peripheral region 904, and the trim layer 906 may comprise an ink material or a photoresist material. The decorative layer 908 can be selectively a composite layer, for example, including a first decorative layer 908A and a second decorative layer 908B stacked on the substrate S from bottom to top. The graphic range of the second decorative layer 908B of this embodiment is larger than the graphic range of the first decorative layer 908A, and thus the second decorative layer 908B covers the sides of the first decorative layer 908A. In addition, the decorative layer 908 further includes a bottom decorative layer 908C disposed on the lower side of the first decorative layer 908A, wherein the graphic range of the bottom decorative layer 908C is greater than the graphic range of the first decorative layer 908A and the second decorative layer 908B, and the bottom The inner side of the decorative layer 908C near the light transmitting region 902 is closer to the light transmitting region 902 than the inner side of the first decorative layer 908A and the second decorative layer 908B. In another embodiment, the second decorative layer 908B may also be optionally omitted. In this embodiment, the first decorative layer 908A, the second decorative layer 908B, and the bottom decorative layer 908C are all composed of color inks or photoresist materials of the same color, but not limited thereto, for example, two layers of the same color, The remaining layer is another color, and in addition, the decorative layer 908 can also use a single layer of photoresist. The buffer layer 910 is disposed on the decorative layer 908 to completely cover the surface of the substrate S and is covered with the decorative layer 908. The buffer layer 910 is preferably made of a transparent insulating material, and the material thereof is at least one of yttrium oxide, tantalum nitride, titanium oxide, hafnium oxide, ink material and photoresist material, and the stack structure of the buffer layer 910 can be optically A single layer or a plurality of stacked structures are required, for example, a multilayer stack of two or more of the above materials. The light shielding layer 912 may be an ink material or a photoresist material, and covers at least a portion of the buffer layer 910 and the decorative layer 908, and the buffer layer 912 is located between the light shielding layer 910 and the decorative layer 908. The outer frame layer 914 is disposed on the outer side of the peripheral region 904, and the outer frame layer 914 partially covers the light shielding layer 912, the buffer layer 910 and the decorative layer 908, wherein the outer frame layer 914 can be a composite layer, including the first outer frame layer 914A and the first The second outer frame layer 914B is preferably different in material or different material layers. The light shielding layer 912 and the second outer frame layer 914B may have a dark color or a dark color The color of the backlight can be used to shield the rear electronic components, and the decorative layer 908 and the first outer frame layer 914A can have a light color to make the touch display panel 10a have a brighter appearance, but not limited thereto. Moreover, the optical density (OD) value of the light shielding layer 912 is higher than the optical density value of the decorative layer 908. Preferably, the decorative layer 908 may have an optical density value of less than 2.5. The stacking manner and the number of layers of the above decorative layer are not limited to the architecture disclosed in the embodiment of the present embodiment, and have different stacking structures for visual design requirements.
以下將針對導體構件120的結構作進一步的說明。圖2A為本實施例之導體構件120的上視示意圖,圖2B為圖2A之區域M的放大示意圖。請同時參照圖2A與圖2B,第一基板102具有一顯示區104以及一周邊區106。導體構件120設置於顯示區104中。導體構件120包括多個第一電極結構122以及多個第二電極結構124。第一電極結構122沿一第一方向d1延伸。第一電極結構122包括多個第一連接部122a以及多個第一電極部122b,其中任兩個相鄰的第一電極部122b由其中一個第一連接部122a連接。因此這些第一連接部122a與這些第一電極部122b交替串接成其中一條第一電極結構122。第二電極結構124沿一第二方向d2延伸。第二電極結構124包括多個第二連接部124a以及多個第二電極部124b,其中任兩個相鄰的第二電極部124b由其中一個第二連接部124a連接。因此這些第二連接部124a與這些第二電極部124b交替串接成其中一條第二電極結構124。在本實施例中,這些第一電極部122b以及這些第二電極部124b由導體網格層121 所構成。須說明的是,圖2B中的虛線所畫分出的各區域僅示意地畫出第一電極部122b以及第二電極部124b的分佈位置,並非用以限定第一電極部122b以及第二電極部124b的實際佈局形狀。於此,第一電極結構122可以是驅動電極,以接收一驅動訊號;第二電極結構124可以是感測接收電極,藉由偵測驅動電極與感測接收電極之間的互電容變化與否,供一與感測接收電極連接的外部控制器(未繪示)進行觸控與否的偵測。The structure of the conductor member 120 will be further described below. 2A is a top view of the conductor member 120 of the present embodiment, and FIG. 2B is an enlarged schematic view of a region M of FIG. 2A. Referring to FIG. 2A and FIG. 2B simultaneously, the first substrate 102 has a display area 104 and a peripheral area 106. The conductor member 120 is disposed in the display area 104. The conductor member 120 includes a plurality of first electrode structures 122 and a plurality of second electrode structures 124. The first electrode structure 122 extends along a first direction d1. The first electrode structure 122 includes a plurality of first connecting portions 122a and a plurality of first electrode portions 122b, wherein any two adjacent first electrode portions 122b are connected by one of the first connecting portions 122a. Therefore, the first connecting portions 122a and the first electrode portions 122b are alternately connected in series to form one of the first electrode structures 122. The second electrode structure 124 extends along a second direction d2. The second electrode structure 124 includes a plurality of second connecting portions 124a and a plurality of second electrode portions 124b, wherein any two adjacent second electrode portions 124b are connected by one of the second connecting portions 124a. Therefore, the second connecting portions 124a and the second electrode portions 124b are alternately connected in series to form one of the second electrode structures 124. In the embodiment, the first electrode portions 122b and the second electrode portions 124b are formed by the conductor mesh layer 121. Composition. It should be noted that the regions drawn by the broken lines in FIG. 2B only schematically show the distribution positions of the first electrode portion 122b and the second electrode portion 124b, and are not intended to define the first electrode portion 122b and the second electrode. The actual layout shape of the portion 124b. Here, the first electrode structure 122 may be a driving electrode to receive a driving signal; the second electrode structure 124 may be a sensing receiving electrode, by detecting a change in mutual capacitance between the driving electrode and the sensing receiving electrode. For detecting whether the touch is detected by an external controller (not shown) connected to the sensing receiving electrode.
具體而言,導體網格層121包括多條導體線121c,其中導體線121c的線寬介於0.08~500微米。在其他實施例,各導體線121c的線寬為0.08~20微米,較佳為0.1~10微米,更佳為0.5~10微米。如此一來,可進一步減少使用者觀察到導體構件120的機率,以提升視覺效果。導體線121c的材料例如是金屬材料。且上述金屬材料例如是金、銀、銅、鋁、鉬或上述材料任意組合所堆疊而成的堆疊材料層,例如由鉬-鋁-鉬三層的堆疊結構。在本實施例中,導體網格層121的網格形狀例如是邊緣彎曲的六邊型,其是由六條導體線121c所構成,其中各導體線121c的形狀為彎曲型。但本新型創作不限定導體網格層121的網格形狀。在其他實施例中,各導體線121c的形狀可為直線型,以使導體網格層121的網格形狀為邊緣平直的六邊型。此外,導體網格層121的網格形狀也可以是任意多邊形或是其他不規則形狀。如此一來,在觸控顯示面板顯示時可以避免產生莫瑞效應(Moire effect)以具有較 佳的顯示品質。Specifically, the conductor mesh layer 121 includes a plurality of conductor lines 121c, wherein the conductor lines 121c have a line width of 0.08 to 500 μm. In other embodiments, each conductor line 121c has a line width of 0.08 to 20 μm, preferably 0.1 to 10 μm, more preferably 0.5 to 10 μm. In this way, the probability of the user observing the conductor member 120 can be further reduced to enhance the visual effect. The material of the conductor wire 121c is, for example, a metal material. And the above metal material is, for example, a stacked material layer in which gold, silver, copper, aluminum, molybdenum or any combination of the above materials is stacked, for example, a stacked structure of three layers of molybdenum-aluminum-molybdenum. In the present embodiment, the mesh shape of the conductor mesh layer 121 is, for example, a hexagonal shape in which the edge is curved, which is constituted by six conductor wires 121c, wherein the shape of each conductor wire 121c is curved. However, the novel creation does not limit the mesh shape of the conductor mesh layer 121. In other embodiments, the shape of each of the conductor lines 121c may be a straight line such that the mesh shape of the conductor mesh layer 121 is a hexagonal shape with a flat edge. In addition, the mesh shape of the conductor mesh layer 121 may also be an arbitrary polygon or other irregular shape. In this way, the Moire effect can be avoided when the touch display panel is displayed to have a comparison. Good display quality.
圖2C繪示沿圖2A中剖線A-A’以及圖2B中的剖線B-B’的剖面示意圖。請同時參照圖2A、圖2B以及圖2C,第一連接部122a例如是直接設置於第一基板102上,其中第一連接部122a不屬於導體網格層121的一部分。元件基板100更包括多個絕緣圖案126,每一個絕緣圖案126覆蓋其中一個第一連接部122a的部分區域。具體而言,絕緣圖案126會暴露出第一連接部122a的兩端。第二電極結構124的一部分設置於絕緣圖案126上。與第一連接部122a相鄰的兩個第一電極部122b會覆蓋第一連接部122a的兩端而與其電性連接。在本實施例中,第一電極部122b、第二電極部124b以及第二連接部124a都是由導體網格層121所構成。此外,元件基板100更包括多個擬置圖案128,設置於相鄰的第一電極部122b與第二電極部124b之間,以填補第一電極部122b與第二電極部124b之間的空隙,藉此改善視覺效果。擬置圖案128可以由導體網格層121的一部分所構成。Fig. 2C is a schematic cross-sectional view taken along line A-A' in Fig. 2A and line B-B' in Fig. 2B. Referring to FIG. 2A, FIG. 2B and FIG. 2C simultaneously, the first connecting portion 122a is directly disposed on the first substrate 102, for example, wherein the first connecting portion 122a does not belong to a part of the conductor mesh layer 121. The element substrate 100 further includes a plurality of insulating patterns 126, each of which covers a partial region of one of the first connecting portions 122a. Specifically, the insulating pattern 126 exposes both ends of the first connecting portion 122a. A portion of the second electrode structure 124 is disposed on the insulating pattern 126. The two first electrode portions 122b adjacent to the first connecting portion 122a cover both ends of the first connecting portion 122a to be electrically connected thereto. In the present embodiment, the first electrode portion 122b, the second electrode portion 124b, and the second connecting portion 124a are each composed of the conductor mesh layer 121. In addition, the element substrate 100 further includes a plurality of dummy patterns 128 disposed between the adjacent first electrode portions 122b and the second electrode portions 124b to fill the gap between the first electrode portions 122b and the second electrode portions 124b. To improve the visual effect. The dummy pattern 128 may be composed of a portion of the conductor mesh layer 121.
在本實施例中,第一電極結構122以及第二電極結構124的材料例如是金屬材料。元件基板100更包括多個設置於第一基板102上的周邊走線160,且周邊走線160設置於周邊區106中。周邊走線160與導體網格層121屬於同一膜層。換言之,周邊走線160的材料例如是金屬材料,因此其可以與第一電極部122b、第二電極部124b以及第二連接部124a同時製作,如圖2C所示。 在另一實施例中,第一連接部122a的材料例如是透明導電材料,第一電極部122b、第二電極部124b以及第二連接部124a的材料例如是金屬材料。周邊走線160的材料例如是金屬材料,因此其可以與第一電極部122b、第二電極部124b以及第二連接部124a同時製作而屬於同一膜層,且不與第一連接部122a同時製作,其結構與圖2C所示的實施例相同。In the present embodiment, the material of the first electrode structure 122 and the second electrode structure 124 is, for example, a metal material. The component substrate 100 further includes a plurality of peripheral traces 160 disposed on the first substrate 102 , and the peripheral traces 160 are disposed in the peripheral region 106 . The peripheral traces 160 and the conductor mesh layer 121 belong to the same film layer. In other words, the material of the peripheral trace 160 is, for example, a metal material, so that it can be fabricated simultaneously with the first electrode portion 122b, the second electrode portion 124b, and the second connection portion 124a, as shown in FIG. 2C. In another embodiment, the material of the first connecting portion 122a is, for example, a transparent conductive material, and the material of the first electrode portion 122b, the second electrode portion 124b, and the second connecting portion 124a is, for example, a metal material. The material of the peripheral trace 160 is, for example, a metal material, so that it can be formed simultaneously with the first electrode portion 122b, the second electrode portion 124b, and the second connection portion 124a, and belongs to the same film layer, and is not simultaneously formed with the first connection portion 122a. The structure is the same as that of the embodiment shown in Fig. 2C.
在另一實施例的元件基板100a中,當第一連接部122a為金屬材料時,周邊走線160也可以選擇與第一連接部122a同時製作,如圖2D。In the element substrate 100a of another embodiment, when the first connecting portion 122a is made of a metal material, the peripheral wiring 160 may also be selectively fabricated simultaneously with the first connecting portion 122a, as shown in FIG. 2D.
圖2E為本新型創作另一實施例之元件基板的部分剖面示意圖,其上視示意圖與圖2A以及圖2B相似。請同時參照圖2A、圖2B以及圖2E,在元件基板100b中,導體網格層121例如是直接設置於第一基板102上。換言之,第一電極部122b、第二電極部124b以及第二連接部124a直接設置於第一基板102上。每一個絕緣圖案126覆蓋其中一個第二電極結構124的一部分,且每一個第一連接部122a設置於對應的絕緣圖案126上。在本實施例中,第一電極結構122以及第二電極結構124的材料例如是金屬材料,且周邊走線160的材料例如是金屬材料。周邊走線160與導體網格層121屬於同一膜層。換言之,周邊走線160例如是與第一電極部122b、第二電極部124b以及第二連接部124a同時製作而屬於同一膜層,如圖2E所示。在另一實施例中,第一連接部 122a的材料例如是透明導電材料,第一電極部122b、第二電極部124b以及第二連接部124a的材料例如是金屬材料。周邊走線160的材料例如是金屬材料,因此其可以與第一電極部122b、第二電極部124b以及第二連接部124a同時製作而屬於同一膜層,且不與第一連接部122a同時製作,其結構與圖2E所示的實施例相同。2E is a partial cross-sectional view showing the component substrate of another embodiment of the present invention, and its top view is similar to FIG. 2A and FIG. 2B. Referring to FIG. 2A, FIG. 2B and FIG. 2E simultaneously, in the element substrate 100b, the conductor mesh layer 121 is directly disposed on the first substrate 102, for example. In other words, the first electrode portion 122b, the second electrode portion 124b, and the second connection portion 124a are directly disposed on the first substrate 102. Each of the insulating patterns 126 covers a portion of one of the second electrode structures 124, and each of the first connecting portions 122a is disposed on the corresponding insulating pattern 126. In the present embodiment, the material of the first electrode structure 122 and the second electrode structure 124 is, for example, a metal material, and the material of the peripheral trace 160 is, for example, a metal material. The peripheral traces 160 and the conductor mesh layer 121 belong to the same film layer. In other words, the peripheral trace 160 is formed simultaneously with the first electrode portion 122b, the second electrode portion 124b, and the second connection portion 124a, and belongs to the same film layer, as shown in FIG. 2E. In another embodiment, the first connection The material of 122a is, for example, a transparent conductive material, and the material of the first electrode portion 122b, the second electrode portion 124b, and the second connecting portion 124a is, for example, a metal material. The material of the peripheral trace 160 is, for example, a metal material, so that it can be formed simultaneously with the first electrode portion 122b, the second electrode portion 124b, and the second connection portion 124a, and belongs to the same film layer, and is not simultaneously formed with the first connection portion 122a. The structure is the same as that of the embodiment shown in Fig. 2E.
在另一實施例的元件基板100c中,當第一連接部122a為金屬材料時,周邊走線160也可以選擇與第一連接部122a同時製作,如圖2F所示。In the element substrate 100c of another embodiment, when the first connecting portion 122a is made of a metal material, the peripheral wiring 160 may also be selectively fabricated simultaneously with the first connecting portion 122a, as shown in FIG. 2F.
圖3A為本新型創作另一實施例的元件基板的上視示意圖。圖3B為圖3A的區域N的放大示意圖。請同時參照圖3A以及圖3B,在本實施例中,導體構件120整體由導體網格121(繪示於圖3B中)所構成。導體構件120包括多個第一電極結構122以及多個第二電極結構124,於此,第一電極結構122可以是驅動電極,以接收一驅動訊號;第二電極結構124可以是感測接收電極,藉由偵測驅動電極與感測接收電極之間的互電容變化與否,供一與感測接收電極連接的外部控制器(未繪示)進行觸控與否的偵測。第一電極結構122包括一第一連接部122a以及多個第一電極部122b,其中第一連接部122a沿一第三方向d3延伸,這些第一電極部122b彼此分離且與122a第一連接部連接。第二電極結構124包括一第二連接部124a以及多個第二電極部124b,其中第二連接部124a沿第三方向d3延伸,這些第二電極部124b彼此分離 且與第二連接部124a連接。一個第一電極結構122中的多個第一電極部122b與對應的至少一個第二電極結構124的多個第二電極部124b沿第三方向d3交替排列。在本實施例中,一個第一電極結構122中的多個第一電極部122b與三個第二電極結構124的多個第二電極部124b沿第三方向d3交替排列。在其他實施例中,導體構件120也可以不由導體網格層121所構成,如圖3C所示。換言之,導體構件120可由多條導體線121c所構成,其中第一連接部122a、第一電極部122b、第二連接部122b以及第二電極部124b例如是各自由一條導體線121c構成。在本實施例中,導體線121c的線寬介於0.08~500微米,在其他實施例,各導體線121c的線寬為0.08~20微米,較佳為0.1~10微米,更佳為0.5~10微米。3A is a top plan view showing a component substrate of another embodiment of the present invention. FIG. 3B is an enlarged schematic view of a region N of FIG. 3A. Referring to FIG. 3A and FIG. 3B simultaneously, in the present embodiment, the conductor member 120 is entirely composed of a conductor mesh 121 (shown in FIG. 3B). The conductor member 120 includes a plurality of first electrode structures 122 and a plurality of second electrode structures 124. Here, the first electrode structure 122 may be a driving electrode to receive a driving signal; the second electrode structure 124 may be a sensing receiving electrode. By detecting the change of mutual capacitance between the driving electrode and the sensing receiving electrode, an external controller (not shown) connected to the sensing receiving electrode performs touch detection. The first electrode structure 122 includes a first connecting portion 122a and a plurality of first electrode portions 122b, wherein the first connecting portion 122a extends along a third direction d3, and the first electrode portions 122b are separated from each other and the first connecting portion with the 122a connection. The second electrode structure 124 includes a second connecting portion 124a and a plurality of second electrode portions 124b, wherein the second connecting portion 124a extends in the third direction d3, and the second electrode portions 124b are separated from each other And connected to the second connecting portion 124a. The plurality of first electrode portions 122b in one of the first electrode structures 122 and the plurality of second electrode portions 124b of the corresponding at least one second electrode structure 124 are alternately arranged in the third direction d3. In the present embodiment, the plurality of first electrode portions 122b in one first electrode structure 122 and the plurality of second electrode portions 124b of the three second electrode structures 124 are alternately arranged in the third direction d3. In other embodiments, the conductor member 120 may also not be comprised of the conductor mesh layer 121, as shown in FIG. 3C. In other words, the conductor member 120 may be constituted by a plurality of conductor lines 121c, wherein the first connection portion 122a, the first electrode portion 122b, the second connection portion 122b, and the second electrode portion 124b are each constituted by, for example, one conductor line 121c. In this embodiment, the line width of the conductor line 121c is between 0.08 and 500 microns. In other embodiments, the line width of each of the conductor lines 121c is 0.08-20 microns, preferably 0.1-10 microns, more preferably 0.5~. 10 microns.
請再參照圖3A以及圖3B,元件基板100d更包括多個設置於第一基板102上的周邊走線160。周邊走線160連接至第一電極結構122與第二電極結構124的其中一者。周邊走線160、第一電極結構122以及第二電極結構124可同時製作而屬於同一膜層。Referring to FIG. 3A and FIG. 3B again, the element substrate 100d further includes a plurality of peripheral traces 160 disposed on the first substrate 102. The perimeter trace 160 is coupled to one of the first electrode structure 122 and the second electrode structure 124. The peripheral traces 160, the first electrode structure 122, and the second electrode structure 124 can be fabricated simultaneously and belong to the same film layer.
在本實施例中,由於導體構件120整體由導體網格層121構成,其中導體網格層121的材料例如是金屬材料。由於金屬材料可以低溫度鍍膜的方式形成,因此在完成導體網格層121的製作後,不易使彩色濾光層110的彩色濾光圖案的色度值產生偏移。此外,導體網格層121更可提供顯示面板有高感應能力以及快速的反應速度。In the present embodiment, since the conductor member 120 is entirely constituted by the conductor mesh layer 121, the material of the conductor mesh layer 121 is, for example, a metal material. Since the metal material can be formed by low-temperature coating, after the fabrication of the conductor mesh layer 121 is completed, it is difficult to shift the chromaticity value of the color filter pattern of the color filter layer 110. In addition, the conductor mesh layer 121 can provide a display panel with high sensing capability and a fast response speed.
圖4A為本新型創作另一實施例的元件基板的上視示意圖。圖4B為圖4A的區域O的放大示意圖。請同時參照圖4A以及圖4B,在本實施例中,導體構件120整體由導體網格層121所構成。導體構件120包括多個第一電極結構122以及多個第二電極結構124。第一電極結構122的寬度W1沿一第四方向d4逐漸減少。第二電極結構124的寬度W2沿第四方向d4逐漸增加。其中一個第一電極結構122對應地與其中一個第二電極結構124形成一電極對EP,且電極對EP的寬度總和沿第四方向d4維持一致,電極對EP沿第五方向d5排列。4A is a top plan view showing a component substrate of another embodiment of the present invention. 4B is an enlarged schematic view of a region O of FIG. 4A. Referring to FIG. 4A and FIG. 4B simultaneously, in the present embodiment, the conductor member 120 is entirely composed of the conductor mesh layer 121. The conductor member 120 includes a plurality of first electrode structures 122 and a plurality of second electrode structures 124. The width W1 of the first electrode structure 122 gradually decreases in a fourth direction d4. The width W2 of the second electrode structure 124 gradually increases in the fourth direction d4. One of the first electrode structures 122 correspondingly forms an electrode pair EP with one of the second electrode structures 124, and the sum of the widths of the electrode pairs EP is maintained in the fourth direction d4, and the electrode pairs EP are arranged in the fifth direction d5.
在本實施例中,元件基板100e更包括多個設置於第一基板102上的周邊走線160,周邊走線160連接至第一電極結構122與第二電極結構124的其中一者。周邊走線160、第一電極結構122以及第二電極結構124可同時製作而屬於同一膜層。In this embodiment, the element substrate 100e further includes a plurality of peripheral traces 160 disposed on the first substrate 102, and the peripheral traces 160 are connected to one of the first electrode structure 122 and the second electrode structure 124. The peripheral traces 160, the first electrode structure 122, and the second electrode structure 124 can be fabricated simultaneously and belong to the same film layer.
在本實施例中,由於導體構件120整體由導體網格層121構成,其中導體網格層121的材料例如是金屬材料。由於金屬材料可以低溫度鍍膜的方式形成,因此在完成導體網格層121的製作後,不易使彩色濾光層110的彩色濾光圖案的色度值產生偏移。此外,導體網格層121更可提供觸控顯示面板10具有高感應能力以及快速的反應速度。In the present embodiment, since the conductor member 120 is entirely constituted by the conductor mesh layer 121, the material of the conductor mesh layer 121 is, for example, a metal material. Since the metal material can be formed by low-temperature coating, after the fabrication of the conductor mesh layer 121 is completed, it is difficult to shift the chromaticity value of the color filter pattern of the color filter layer 110. In addition, the conductor mesh layer 121 further provides the touch display panel 10 with high sensing capability and fast response speed.
圖5A為本新型創作另一實施例的觸控顯示面板的剖面示意圖。請參照圖5A,觸控顯示面板10b包括一覆蓋板CG、一 顯示面板20、一導體構件120以及一顯示面板20。導體構件120設置於覆蓋板CG與顯示面板20之間,其中導體構件120可以製作在顯示面板20上。導體構件120包括第一電極結構122以及第二電極結構124。導電構件120例如是觸控元件,其中第一電極結構122與第二電極結構124的其中一者例如是感測接收電極而另一者例如是驅動電極,驅動電極可以接收一驅動訊號,藉由偵測驅動電極與感測接收電極之間的互電容變化與否,供一與感測接收電極連接的外部控制器(未繪示)進行觸控與否的偵測。不過,第一電極結構122與第二電極結構124並不限定以上述方式進行觸控感測。舉例而言,第一電極結構122與第二電極結構124可以獨立地進行觸控感測操作。如此一來,第一電極結構122與第二電極結構124可以各自兼具感測接收電極與驅動電極的功能以發出感測訊號以及接收驅動訊號。在此,本文中所謂的電極結構都可以依照上述方式進行觸控感測操作而實現互容式觸控感測或是自容式觸控感測。另外,導電構件120的結構僅為舉例說明,有關第一電極結構122以及第二電極結構124的詳細內容可參考前述實施例,本實施例並不限定導電構件120的種類。在圖5A中,導體構件120可以形成在顯示面板20的彩色濾光基板(未繪示)或主動元件陣列基板(未繪示)上。FIG. 5A is a schematic cross-sectional view of a touch display panel according to another embodiment of the present invention. Referring to FIG. 5A, the touch display panel 10b includes a cover board CG, a The display panel 20, a conductor member 120, and a display panel 20. The conductor member 120 is disposed between the cover panel CG and the display panel 20, wherein the conductor member 120 may be fabricated on the display panel 20. The conductor member 120 includes a first electrode structure 122 and a second electrode structure 124. The conductive member 120 is, for example, a touch element, wherein one of the first electrode structure 122 and the second electrode structure 124 is, for example, a sensing receiving electrode and the other is, for example, a driving electrode, and the driving electrode can receive a driving signal. The mutual capacitance change between the driving electrode and the sensing receiving electrode is detected, and an external controller (not shown) connected to the sensing receiving electrode is used for detecting the touch. However, the first electrode structure 122 and the second electrode structure 124 are not limited to touch sensing in the above manner. For example, the first electrode structure 122 and the second electrode structure 124 can perform touch sensing operations independently. In this way, the first electrode structure 122 and the second electrode structure 124 can each have the functions of sensing the receiving electrode and the driving electrode to emit a sensing signal and receive the driving signal. Herein, the electrode structure in the present invention can perform mutual touch sensing or self-capacitive touch sensing by performing a touch sensing operation according to the above manner. In addition, the structure of the conductive member 120 is merely an example. For details of the first electrode structure 122 and the second electrode structure 124, refer to the foregoing embodiments, and the embodiment does not limit the kind of the conductive member 120. In FIG. 5A, the conductor member 120 may be formed on a color filter substrate (not shown) of the display panel 20 or an active device array substrate (not shown).
在本實施例中,顯示面板20可以依照顯示介質種類的不同而包括液晶顯示面板(liquid crystal display panel,LCD panel)、 有機發光二極體顯示面板(organic light-emitting diode display,OLED display)、電濕潤顯示面板(electrowetting display panel,EWD panel)、電泳顯示面板(electrophoresis display panel)、電漿顯示面板(plasma display panel,PDP)或場發射顯示面板(field emission display panel)等等。本新型創作並不限定顯示面板20的種類。In this embodiment, the display panel 20 may include a liquid crystal display panel (LCD panel) according to the type of the display medium. An organic light-emitting diode display (OLED display), an electrowetting display panel (EWD panel), an electrophoresis display panel, and a plasma display panel (plasma display panel, PDP) or field emission display panel and the like. The novel creation does not limit the type of display panel 20.
圖5B為本新型創作另一實施例的觸控顯示面板的剖面示意圖。請參照圖5B,觸控顯示面板10c包括一覆蓋板CG、一導體構件120以及一顯示面板20a。顯示面板20a例如是液晶顯示面板,因此觸控顯示面板10c可以更包括一第一偏光片410以及一第二偏光片420。具體而言,導體構件120設置於顯示面板20a上且為覆蓋板CG所覆蓋保護。可視設計需求於覆蓋板CG上設置一裝飾結構500。第一偏光片410與第二偏光片420設置於顯示面板20a的相對兩側。具體而言,顯示面板20a包括一第一基板102以及一第二基板202,其中第一基板102例如是彩色濾光基板,而第二基板202例如是主動元件陣列基板。但本新型創作不限於此,在其他實施例中,也可以是第一基板102為主動元件陣列基板,而第二基板202為彩色濾光基板。或者,第二基板202也可以是彩色濾光層設置於主動元件陣列基板上的COA(color filter on array)基板。導體構件120可設置於第一基板102上而形成一觸控面板。顯示介質層300位於第一基板102與第二基板202之間。FIG. 5B is a schematic cross-sectional view of a touch display panel according to another embodiment of the present invention. Referring to FIG. 5B, the touch display panel 10c includes a cover plate CG, a conductor member 120, and a display panel 20a. The display panel 20a is, for example, a liquid crystal display panel. Therefore, the touch display panel 10c may further include a first polarizer 410 and a second polarizer 420. Specifically, the conductor member 120 is disposed on the display panel 20a and protected by the cover plate CG. A decorative structure 500 is placed on the cover panel CG for visual design requirements. The first polarizer 410 and the second polarizer 420 are disposed on opposite sides of the display panel 20a. Specifically, the display panel 20a includes a first substrate 102 and a second substrate 202, wherein the first substrate 102 is, for example, a color filter substrate, and the second substrate 202 is, for example, an active device array substrate. However, the novel creation is not limited thereto. In other embodiments, the first substrate 102 may be an active device array substrate, and the second substrate 202 may be a color filter substrate. Alternatively, the second substrate 202 may be a COA (color filter on array) substrate with a color filter layer disposed on the active device array substrate. The conductor member 120 can be disposed on the first substrate 102 to form a touch panel. The display medium layer 300 is located between the first substrate 102 and the second substrate 202.
在本實施例中,覆蓋板CG設置於第一基板102相對遠離第二基板202的一側。第一偏光片410設置於覆蓋板CG與第一基板102之間。第二偏光片420設置於第二基板202相對遠離第一基板102的一側,其中第二基板202位於顯示介質層300與第二偏光片420之間。覆蓋板CG可包括玻璃覆蓋板、塑膠覆蓋板或其他具有高機械強度材質所形成具有保護(例如防刮)、覆蓋或是美化其對應裝置之覆蓋板,覆蓋板CG的厚度可介於0.2~2mm。覆蓋板CG可為平面形狀或曲面形狀,或前述之組合,例如為2.5D玻璃,但並不以此為限,覆蓋板CG係具有85%以上的透光度。另外,也可以選擇在透明覆蓋板面向使用者進行操作之一側設置一防污鍍膜(Anti-Smudge Coating)。In the embodiment, the cover plate CG is disposed on a side of the first substrate 102 that is relatively far from the second substrate 202. The first polarizer 410 is disposed between the cover plate CG and the first substrate 102. The second polarizer 420 is disposed on a side of the second substrate 202 that is relatively away from the first substrate 102 , wherein the second substrate 202 is located between the display medium layer 300 and the second polarizer 420 . The cover plate CG may include a glass cover plate, a plastic cover plate or other cover plate having a high mechanical strength material to protect (for example, scratch-proof), cover or beautify the corresponding device. The thickness of the cover plate CG may be between 0.2~ 2mm. The cover plate CG may be a planar shape or a curved shape, or a combination thereof, such as 2.5D glass, but not limited thereto, and the cover plate CG has a transmittance of 85% or more. Alternatively, an anti-smudge coating may be provided on one side of the transparent cover sheet facing the user.
在本實施例中,觸控顯示面板10c包括裝飾結構500,其設置於周邊區中以遮蔽不欲被使用者所觀看到的光線或是構件(例如周邊走線)。此外,裝飾結構500也可以設計成具有特定的圖樣,以提供觸控顯示面板10c具有良好的外觀。關於裝飾結構500的相關內容,可參考圖1E所示的周邊結構,但不限於此。In this embodiment, the touch display panel 10c includes a decorative structure 500 disposed in the peripheral area to shield light or components (such as peripheral traces) that are not to be viewed by the user. In addition, the decorative structure 500 can also be designed to have a specific pattern to provide the touch display panel 10c with a good appearance. Regarding the related content of the decorative structure 500, reference may be made to the peripheral structure shown in FIG. 1E, but is not limited thereto.
以另一角度而言,第一基板102與導體構件120例如是構成一元件基板100f。第一基板102具有彼此相對的一第一側102a以及一第二側102b,其中第一側102a為第一基板102相對靠近第二基板202的一側,第二側102b為第一基板102相對遠離第二基板202的一側,且第二側102b例如是朝向使用者之一側。在本實 施例中,顯示介質層300例如是液晶分子層(如圖1A至圖1C的實施例所示),而且元件基板100f包括彩色濾光層而為一彩色濾光基板。但本新型創作不限於此,在其他實施例中,顯示介質層300例如是有機發光二極體顯示介質層(如圖1D的實施例所示),而且元件基板100f也可以不包括彩色濾光層而為一封裝蓋板。In another aspect, the first substrate 102 and the conductor member 120 constitute, for example, an element substrate 100f. The first substrate 102 has a first side 102a and a second side 102b opposite to each other, wherein the first side 102a is a side of the first substrate 102 relatively close to the second substrate 202, and the second side 102b is a first substrate 102 The side away from the second substrate 202, and the second side 102b is, for example, toward one side of the user. In this reality In the embodiment, the display medium layer 300 is, for example, a liquid crystal molecular layer (as shown in the embodiment of FIGS. 1A to 1C), and the element substrate 100f includes a color filter layer to be a color filter substrate. However, the novel creation is not limited thereto. In other embodiments, the display medium layer 300 is, for example, an organic light emitting diode display medium layer (as shown in the embodiment of FIG. 1D), and the element substrate 100f may not include color filter. The layer is a package cover.
根據本實施例,導體構件120設置於第一基板102的第二側102b上,其中導體構件120例如是觸控元件。據此,觸控顯示面板10c可視為一表嵌式觸控顯示面板(on cell touch display panel)。圖6為圖5B的實施例的導體構件120的俯視示意圖。請同時參照圖5B以及圖6,在本實施例中,導體網格層121包括一第一導體網格子層121a以及一第二導體網格子網121b,其中第一導體網格子層121a與第二導體網格子層121b由一絕緣層170分隔,絕緣層170的材質可為高分子材料例如樹脂。然而,本新型創作不限於此,在其他實施例中,絕緣層170亦可為其他適當材料。且絕緣層170的厚度介於0.1微米~20微米,較佳為1微米~10微米。導體構件120包括多個第一電極結構122以及多個第二電極結構124。第一電極結構122沿著一第一方向d1延伸,第二電極結構124沿著一第二方向d2延伸,其中第一電極結構122整體由第一導體網格子層121a所構成,第二電極結構124整體由第二導體網格子層121b所構成。在本實施例中,第一導體網格子層121a以及第二導體網格子層121b的材料包括金屬材料。上述金屬材料 例如是金、銀、銅、鋁、鉬或上述材料任意組合所堆疊而成的堆疊材料層(如鉬/鋁/鉬堆疊層)。由於金屬材料可以低溫度鍍膜的方式形成,因此在完成導體網格層的製作後,不易使彩色濾光層的彩色濾光圖案的色度值產生偏移。此外,導體網格層更可提供觸控顯示面板10b具有高感應能力以及快速的反應速度。According to the embodiment, the conductor member 120 is disposed on the second side 102b of the first substrate 102, wherein the conductor member 120 is, for example, a touch element. Accordingly, the touch display panel 10c can be regarded as an on cell touch display panel. Figure 6 is a top plan view of the conductor member 120 of the embodiment of Figure 5B. Referring to FIG. 5B and FIG. 6 simultaneously, in the embodiment, the conductor mesh layer 121 includes a first conductor mesh sub-layer 121a and a second conductor mesh sub-layer 121b, wherein the first conductor mesh sub-layer 121a and the second The conductor mesh sub-layer 121b is separated by an insulating layer 170, and the material of the insulating layer 170 may be a polymer material such as a resin. However, the novel creation is not limited thereto, and in other embodiments, the insulating layer 170 may be other suitable materials. The insulating layer 170 has a thickness of 0.1 μm to 20 μm, preferably 1 μm to 10 μm. The conductor member 120 includes a plurality of first electrode structures 122 and a plurality of second electrode structures 124. The first electrode structure 122 extends along a first direction d1, and the second electrode structure 124 extends along a second direction d2, wherein the first electrode structure 122 is entirely composed of the first conductor mesh sub-layer 121a, and the second electrode structure The entirety 124 is composed of a second conductor mesh sub-layer 121b. In the present embodiment, the material of the first conductor mesh sub-layer 121a and the second conductor mesh sub-layer 121b includes a metal material. The above metal material For example, gold, silver, copper, aluminum, molybdenum or a stacked material layer (such as a molybdenum/aluminum/molybdenum stacked layer) stacked in any combination of the above materials. Since the metal material can be formed by low-temperature coating, it is difficult to shift the chromaticity value of the color filter pattern of the color filter layer after the fabrication of the conductor mesh layer is completed. In addition, the conductor mesh layer further provides the touch display panel 10b with high sensing capability and fast response speed.
圖7A為圖6的區域Q的放大示意圖,請參照圖6及圖7A,第一導體網格子層121a以及第二導體網格子層121b例如是由多條導體線121c所構成,其中各導體線121c的線寬介於0.08~500微米。在其他實施例,各導體線121c的線寬為0.08~20微米,較佳為0.1~10微米,更佳為0.5~10微米。此外,第一導體網格子層121a以及第二導體網格子層121b各自具有多個開口H,且這些開口H的面積不完全一致。第一導體網格子層121a與第二導體網格子層121b可由金屬奈米線(metal nanowires)所製成,例如是銀奈米線,如圖7A所示。換言之,第一導體網格子層121a以及第二導體網格子層121b可以具有不規則的形狀。此外,第一導體網格子層121a以及第二導體網格子層121b也可以是金屬網格(metal mesh),如圖7B所示。但本新型創作不限於此,在其他實施例中,導體構件120也可以具有規則形狀,例如是邊緣平直的正多邊形或是邊緣為曲線的多邊形,本新型創作不限於此。如此一來,在觸控顯示面板10c顯示時可以避免產生莫瑞效應(Moire effect)以使觸控顯示面板10c具有較佳的顯示品質。7A is an enlarged schematic view of a region Q of FIG. 6. Referring to FIG. 6 and FIG. 7A, the first conductor mesh sub-layer 121a and the second conductor mesh sub-layer 121b are composed of, for example, a plurality of conductor lines 121c, wherein each conductor line The line width of 121c is between 0.08 and 500 microns. In other embodiments, each conductor line 121c has a line width of 0.08 to 20 μm, preferably 0.1 to 10 μm, more preferably 0.5 to 10 μm. Further, the first conductor mesh sub-layer 121a and the second conductor mesh sub-layer 121b each have a plurality of openings H, and the areas of the openings H are not completely uniform. The first conductor mesh sub-layer 121a and the second conductor mesh sub-layer 121b may be made of metal nanowires, such as a silver nanowire, as shown in FIG. 7A. In other words, the first conductor mesh sub-layer 121a and the second conductor mesh sub-layer 121b may have an irregular shape. Further, the first conductor mesh sub-layer 121a and the second conductor mesh sub-layer 121b may also be metal meshes as shown in FIG. 7B. However, the novel creation is not limited thereto. In other embodiments, the conductor member 120 may also have a regular shape, such as a regular polygon having a straight edge or a polygon having a curved edge. The novel creation is not limited thereto. In this way, the Moire effect can be avoided when the touch display panel 10c is displayed to make the touch display panel 10c have better display quality.
請同時參照圖5B與圖6,元件基板100f包括絕緣層170,其中絕緣層170全面覆蓋第一電極結構122,且第二電極結構124設置於絕緣層170上。由於第一電極結構122和第二電極結構124之間設置有絕緣層170,因此兩者分別設置於不同層別,故第一電極結構122與第二電極結構124的重疊之處可以不需設置連接架橋。第一電極結構122的第一電極部E1與第一連接部C1可以同時製作而為連續膜層,第二電極結構124的第二電極部E2與第二連接部C2可以同時製作而為連續膜層。Referring to FIG. 5B and FIG. 6 simultaneously, the element substrate 100f includes an insulating layer 170, wherein the insulating layer 170 completely covers the first electrode structure 122, and the second electrode structure 124 is disposed on the insulating layer 170. Since the insulating layer 170 is disposed between the first electrode structure 122 and the second electrode structure 124, the two are respectively disposed on different layers, so the overlap between the first electrode structure 122 and the second electrode structure 124 may not need to be set. Connect the bridge. The first electrode portion E1 of the first electrode structure 122 and the first connection portion C1 can be simultaneously formed as a continuous film layer, and the second electrode portion E2 and the second connection portion C2 of the second electrode structure 124 can be simultaneously formed as a continuous film. Floor.
此外,可形成一絕緣層180覆蓋第二電極結構124以保護第二電極結構124。第二電極結構124位於絕緣層170與絕緣層180之間。於此,第一電極結構122可以是驅動電極,以接收一驅動訊號;第二電極結構124可以是感測接收電極,藉由偵測驅動電極與感測接收電極之間的互電容變化與否,供一與感測接收電極連接的外部控制器(未繪示)進行觸控與否的偵測。絕緣層180的材質可為高分子材料或樹脂或其組合的有機絕緣材質。然而,本發明不限於此,在其他實施例中,絕緣層180亦可為其他適當材料,例如氧化矽(SiO2 )、氮化矽(SiNx )或兩者組成的複合層等無機絕緣材質。且若絕緣層180為有機絕緣材質的厚度介於0.5微米~20微米,較佳為1微米~10微米。又若絕緣層180為無機絕緣材質的厚度介於10奈米~100奈米。絕緣層180厚度可以小於或等於絕緣層170的厚度。In addition, an insulating layer 180 may be formed to cover the second electrode structure 124 to protect the second electrode structure 124. The second electrode structure 124 is located between the insulating layer 170 and the insulating layer 180. Here, the first electrode structure 122 may be a driving electrode to receive a driving signal; the second electrode structure 124 may be a sensing receiving electrode, by detecting a change in mutual capacitance between the driving electrode and the sensing receiving electrode. For detecting whether the touch is detected by an external controller (not shown) connected to the sensing receiving electrode. The material of the insulating layer 180 may be an organic insulating material of a polymer material or a resin or a combination thereof. However, the present invention is not limited thereto. In other embodiments, the insulating layer 180 may also be other suitable materials, such as yttrium oxide (SiO 2 ), tantalum nitride (SiN x ), or a composite layer composed of both. . And if the insulating layer 180 is made of an organic insulating material, the thickness is between 0.5 micrometers and 20 micrometers, preferably between 1 micrometer and 10 micrometers. Moreover, if the insulating layer 180 is made of an inorganic insulating material, the thickness is between 10 nm and 100 nm. The thickness of the insulating layer 180 may be less than or equal to the thickness of the insulating layer 170.
請參照圖5B,就製程的角度而言,可先將第一基板102以及第二基板202對立組合,其中第一基板102上可先形成一黑矩陣層以及一彩色濾光層,第二基板202上可先形成一主動元件陣列層(未繪示)。將液晶分子注入第一基板102與第二基板202之間後,可選擇性地薄化第一基板102以及第二基板202。接著,於第一基板102的第二側102b上形成第一電極結構122,其中第一電極部E1以及第一連接部C1整體皆由第一導體網格子層121a形成而可一起製作且屬於同一膜層。形成絕緣層170以全面覆蓋所有的第一電極結構122,其中絕緣層170可使用低溫絕緣材料並以低溫製程來形成,因此不易影響彩色濾光層的色度值。再來,於絕緣層170上形成第二電極結構124,其中第二電極部E2以及第二連接部C2整體皆由第二導體網格子層121b形成而可一起製作且屬於同一膜層。最後,可形成一絕緣層180以全面覆蓋所有的第二電極結構124,其中絕緣層180的材料例如是二氧化矽(SiO2 )或是前述的有機材質。Referring to FIG. 5B, in terms of a process, the first substrate 102 and the second substrate 202 may be oppositely combined. The first substrate 102 may first form a black matrix layer and a color filter layer, and the second substrate. An active device array layer (not shown) may be formed on the 202. After the liquid crystal molecules are injected between the first substrate 102 and the second substrate 202, the first substrate 102 and the second substrate 202 can be selectively thinned. Next, a first electrode structure 122 is formed on the second side 102b of the first substrate 102, wherein the first electrode portion E1 and the first connection portion C1 are integrally formed by the first conductor mesh sub-layer 121a and can be fabricated together and belong to the same Membrane layer. The insulating layer 170 is formed to cover all of the first electrode structures 122 in a comprehensive manner, wherein the insulating layer 170 can be formed using a low-temperature insulating material and in a low-temperature process, and thus it is difficult to affect the chromaticity value of the color filter layer. Then, a second electrode structure 124 is formed on the insulating layer 170. The second electrode portion E2 and the second connecting portion C2 are integrally formed by the second conductor mesh sub-layer 121b and can be fabricated together and belong to the same film layer. Finally, an insulating layer 180 may be formed to cover all of the second electrode structures 124 in a comprehensive manner, wherein the material of the insulating layer 180 is, for example, cerium oxide (SiO 2 ) or the aforementioned organic material.
圖8為本新型創作另一實施例的觸控顯示面板的剖面示意圖。請參照圖5以及圖8,圖8的觸控顯示面板10d與圖5的觸控顯示面板10c的結構相似,其不同之處說明如下。在觸控顯示面板10d中,導體構件120位於顯示面板20b的第一基板102的內側。換言之,導體構件120位於基板102的第一側102a。據此,觸控顯示面板10d可視為一內嵌式觸控顯示面板(in cell touch display panel)。在一實施例中,第一基板102上可選擇性地設置彩色濾光層(未繪示)。絕緣層140覆蓋彩色濾光層。第一電極結構122設置於彩色濾光層上,絕緣層170全面覆蓋第一電極結構122,第二電極結構124設置於絕緣層170上。另外,元件基板100g可更包括一絕緣層180以全面覆蓋第二電極結構124。於此,第二電極結構124可以是驅動電極,以接收一驅動訊號;第一電極結構122可以是感測接收電極,藉由偵測驅動電極與感測接收電極之間的互電容變化與否,供一與感測接收電極連接的外部控制器(未繪示)進行觸控與否的偵測。FIG. 8 is a cross-sectional view showing a touch display panel according to another embodiment of the present invention. Referring to FIG. 5 and FIG. 8 , the touch display panel 10 d of FIG. 8 is similar in structure to the touch display panel 10 c of FIG. 5 , and the differences are described below. In the touch display panel 10d, the conductor member 120 is located inside the first substrate 102 of the display panel 20b. In other words, the conductor member 120 is located on the first side 102a of the substrate 102. Accordingly, the touch display panel 10d can be regarded as an in-cell touch display panel (in cell touch). Display panel). In an embodiment, a color filter layer (not shown) may be selectively disposed on the first substrate 102. The insulating layer 140 covers the color filter layer. The first electrode structure 122 is disposed on the color filter layer, the insulating layer 170 completely covers the first electrode structure 122, and the second electrode structure 124 is disposed on the insulating layer 170. In addition, the element substrate 100g may further include an insulating layer 180 to completely cover the second electrode structure 124. The second electrode structure 124 can be a driving electrode to receive a driving signal; the first electrode structure 122 can be a sensing receiving electrode, by detecting a mutual capacitance change between the driving electrode and the sensing receiving electrode. For detecting whether the touch is detected by an external controller (not shown) connected to the sensing receiving electrode.
請參照圖8,就製程的角度而言,可選擇性地先於第一基板102上形成如圖1A至圖1C所示的一黑矩陣層130以及一彩色濾光層110後,再形成如圖1A至圖1C所示的一絕緣層140。接著,選擇性地薄化第一基板102後,於絕緣層140上形成第一電極結構122。接著,形成一絕緣層170以全面覆蓋第一電極結構122後,於絕緣層170上形成第二電極結構124。然後,可形成一絕緣層180以全面覆蓋所有的第二電極結構124。絕緣層170以及絕緣層180的材質以及厚度可參考前述實施例。Referring to FIG. 8 , a black matrix layer 130 and a color filter layer 110 as shown in FIGS. 1A to 1C can be selectively formed on the first substrate 102 in terms of a process, and then formed as follows. An insulating layer 140 is shown in FIGS. 1A to 1C. Next, after the first substrate 102 is selectively thinned, the first electrode structure 122 is formed on the insulating layer 140. Next, after forming an insulating layer 170 to completely cover the first electrode structure 122, the second electrode structure 124 is formed on the insulating layer 170. An insulating layer 180 can then be formed to completely cover all of the second electrode structures 124. The materials and thicknesses of the insulating layer 170 and the insulating layer 180 can be referred to the foregoing embodiments.
在本實施例中,由於導體構件120整體由導體網格層構成,其中導體網格層的材料例如是金屬材料。上述金屬材料例如是金、銀、銅、鋁、鉬或上述材料任意組合所堆疊而成的堆疊材料層(如鉬/鋁/鉬堆疊層)。由於金屬材料可以低溫度鍍膜的方式形 成,因此在完成導體網格層的製作後,不易使彩色濾光層110的彩色濾光圖案的色度值產生偏移。此外,導體網格層更可提供觸控顯示面板10c具有高感應能力以及快速的反應速度。In the present embodiment, since the conductor member 120 is entirely composed of a conductor mesh layer, the material of the conductor mesh layer is, for example, a metal material. The above metal material is, for example, a stacked material layer (such as a molybdenum/aluminum/molybdenum stacked layer) in which gold, silver, copper, aluminum, molybdenum or any combination of the above materials is stacked. Because metal materials can be formed by low temperature coating Therefore, after the fabrication of the conductor mesh layer is completed, it is difficult to shift the chromaticity value of the color filter pattern of the color filter layer 110. In addition, the conductor mesh layer further provides the touch display panel 10c with high sensing capability and fast response speed.
具體而言,本實施例的第一電極結構122與第二電極結構124例如是由金屬材料堆疊層所構成。圖9為圖8的實施例的區域R的放大示意圖。請參照圖8和圖9,第一電極結構122與第二電極結構124分別包括一第一層L1、一第二層L2以及一第三層L3,其中第一層L1的材料為鉬鈮合金(molybdenum-niobium alloy),第二層L2的材料為鋁鈮合金(aluminum-neodymium alloy),第三層L3的材料為鉬鈮合金(molybdenum-niobium alloy)。此外,第一電極結構122與第二電極結構124更可包括一第四層L4,第四層L4的材料為金屬氧化物,例如為氧化鉬(MoOx )。第四層L4覆蓋第一層L1。由於金屬材料具有反射光線的性質,因此可能會讓使用者在觀看觸控顯示面板10c時,看到第一電極結構122與第二電極結構124的存在而影響視覺效果。據此,本新型創作藉由第四層L4的金屬氧化物層的設置,可以降低使用者觀看到第一電極結構122與第二電極結構124的可能性,進而改善視覺效果。Specifically, the first electrode structure 122 and the second electrode structure 124 of the present embodiment are composed of, for example, a stacked metal material layer. Figure 9 is an enlarged schematic view of a region R of the embodiment of Figure 8. Referring to FIG. 8 and FIG. 9, the first electrode structure 122 and the second electrode structure 124 respectively include a first layer L1, a second layer L2, and a third layer L3, wherein the material of the first layer L1 is a molybdenum-niobium alloy. (molybdenum-niobium alloy), the material of the second layer L2 is aluminum-neodymium alloy, and the material of the third layer L3 is molybdenum-niobium alloy. In addition, the first electrode structure 122 and the second electrode structure 124 may further include a fourth layer L4, and the material of the fourth layer L4 is a metal oxide, such as molybdenum oxide (MoO x ). The fourth layer L4 covers the first layer L1. Since the metal material has the property of reflecting light, the user may see the presence of the first electrode structure 122 and the second electrode structure 124 when viewing the touch display panel 10c to affect the visual effect. Accordingly, the novel creation can reduce the possibility of the user viewing the first electrode structure 122 and the second electrode structure 124 by the arrangement of the metal oxide layer of the fourth layer L4, thereby improving the visual effect.
此外,圖5B所示的實施例也可以具有類似設計。圖10為圖5B的實施例的區域P的放大示意圖。請參照圖5B和圖10,第一電極結構122與第二電極結構124分別包括一第一層L1、一 第二層L2以及一第三層L3,其中第一層L1的材料為鉬鈮合金(molybdenum-niobium alloy),第二層L2的材料為鋁鈮合金(aluminum-neodymium alloy),第三層L3的材料為鉬鈮合金(molybdenum-niobium alloy)。此外,第一電極結構122與第二電極結構124更可包括一第四層L4,第四層L4的材料為金屬氧化物,例如為氧化鉬(MoOx )。第四層L4覆蓋第三層L3。由於金屬材料具有反射光線的性質,因此可能會讓使用者在觀看觸控顯示面板10b時,看到第一電極結構122與第二電極結構124的存在而影響視覺效果。據此,本新型創作藉由第四層L4的金屬氧化物層的設置,可以降低使用者觀看到第一電極結構122與第二電極結構124的可能性,進而改善視覺效果。Moreover, the embodiment shown in Figure 5B can also have a similar design. Figure 10 is an enlarged schematic view of a region P of the embodiment of Figure 5B. Referring to FIG. 5B and FIG. 10, the first electrode structure 122 and the second electrode structure 124 respectively include a first layer L1, a second layer L2, and a third layer L3, wherein the material of the first layer L1 is a molybdenum-niobium alloy. (molybdenum-niobium alloy), the material of the second layer L2 is aluminum-neodymium alloy, and the material of the third layer L3 is molybdenum-niobium alloy. In addition, the first electrode structure 122 and the second electrode structure 124 may further include a fourth layer L4, and the material of the fourth layer L4 is a metal oxide, such as molybdenum oxide (MoO x ). The fourth layer L4 covers the third layer L3. Since the metal material has the property of reflecting light, the user may see the presence of the first electrode structure 122 and the second electrode structure 124 when viewing the touch display panel 10b to affect the visual effect. Accordingly, the novel creation can reduce the possibility of the user viewing the first electrode structure 122 and the second electrode structure 124 by the arrangement of the metal oxide layer of the fourth layer L4, thereby improving the visual effect.
綜上所述,本新型創作的元件基板的導體構件的至少一部分由導體網格層所構成。導體網格層可藉由低溫度製程所形成,因此當先製作完彩色濾光層再製作導體構件時,不易影響到元件基板上的彩色濾光層的色度值。再者,當導體網格層例如是由導電性良好的金屬材料製成時,可進一步使元件基板具有好的觸控反應速度。In summary, at least a part of the conductor member of the element substrate of the present invention is composed of a conductor mesh layer. The conductor mesh layer can be formed by a low temperature process. Therefore, when the color filter layer is first formed and the conductor member is fabricated, the chromaticity value of the color filter layer on the element substrate is not easily affected. Furthermore, when the conductor mesh layer is made of, for example, a metal material having good conductivity, the element substrate can be further provided with a good touch reaction speed.
雖然本新型創作已以實施例揭露如上,然其並非用以限定本新型創作,任何所屬技術領域中具有通常知識者,在不脫離本新型創作的精神和範圍內,當可作些許的更動與潤飾,故本新型創作的保護範圍當視後附的申請專利範圍所界定者為準。Although the present invention has been disclosed in the above embodiments, it is not intended to limit the novel creation, and any person skilled in the art can make some changes without departing from the spirit and scope of the novel creation. Retouching, the scope of protection of this new creation is subject to the definition of the scope of the patent application attached.
10‧‧‧顯示面板10‧‧‧ display panel
100‧‧‧元件基板100‧‧‧ element substrate
102‧‧‧第一基板102‧‧‧First substrate
102a‧‧‧第一側102a‧‧‧ first side
102b‧‧‧第二側102b‧‧‧ second side
110‧‧‧彩色濾光層110‧‧‧Color filter layer
112、114、116‧‧‧彩色濾光圖案112, 114, 116‧‧‧ color filter pattern
120‧‧‧導體構件120‧‧‧Conductor components
130‧‧‧黑矩陣層130‧‧‧Black matrix layer
140‧‧‧絕緣層140‧‧‧Insulation
150‧‧‧共用電極層150‧‧‧Common electrode layer
200‧‧‧對向基板200‧‧‧ opposite substrate
202‧‧‧第二基板202‧‧‧second substrate
210‧‧‧電極210‧‧‧ electrodes
300‧‧‧顯示介質層300‧‧‧Display media layer
302‧‧‧液晶分子302‧‧‧liquid crystal molecules
CG‧‧‧覆蓋板CG‧‧‧covering board
E‧‧‧電場E‧‧‧ electric field
V1‧‧‧第一電位V1‧‧‧ first potential
V2‧‧‧第二電位V2‧‧‧second potential
Claims (52)
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW103209617U TWM494960U (en) | 2013-12-20 | 2014-05-30 | Device substrate and touch display panel |
CN201410364650.4A CN104731423A (en) | 2013-12-20 | 2014-07-29 | Element substrate |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW102224158 | 2013-12-20 | ||
TW103209617U TWM494960U (en) | 2013-12-20 | 2014-05-30 | Device substrate and touch display panel |
Publications (1)
Publication Number | Publication Date |
---|---|
TWM494960U true TWM494960U (en) | 2015-02-01 |
Family
ID=53017270
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
TW103209617U TWM494960U (en) | 2013-12-20 | 2014-05-30 | Device substrate and touch display panel |
Country Status (2)
Country | Link |
---|---|
CN (1) | CN104731423A (en) |
TW (1) | TWM494960U (en) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI576735B (en) * | 2015-06-08 | 2017-04-01 | 群創光電股份有限公司 | Touch display panel and test method thereof |
US9710120B2 (en) | 2015-04-22 | 2017-07-18 | Industrial Technology Research Insitute | Sensing apparatus |
TWI595389B (en) * | 2015-05-08 | 2017-08-11 | 業成光電(深圳)有限公司 | Touch display device and color filter substrate |
TWI607364B (en) * | 2016-09-22 | 2017-12-01 | 友達光電股份有限公司 | Touch display panel and driving method thereof |
US9946406B2 (en) | 2015-04-22 | 2018-04-17 | Industrial Technology Research Institute | Optical film with touch function |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104898913B (en) * | 2015-06-29 | 2018-05-01 | 深圳市华星光电技术有限公司 | Mutual capacitance touch-control display panel and preparation method thereof |
JP6612075B2 (en) | 2015-07-23 | 2019-11-27 | 株式会社ジャパンディスプレイ | Display device, input device, and method of manufacturing display device |
CN107153483B (en) | 2017-05-09 | 2019-12-03 | 京东方科技集团股份有限公司 | A kind of touch-control display module, display device and its driving method |
WO2019065967A1 (en) * | 2017-09-29 | 2019-04-04 | 株式会社ジャパンディスプレイ | Fingerprint detector and display device |
CN111739926B (en) * | 2020-08-17 | 2020-11-20 | 京东方科技集团股份有限公司 | Display panel and display device |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9244568B2 (en) * | 2008-11-15 | 2016-01-26 | Atmel Corporation | Touch screen sensor |
EP2666077B1 (en) * | 2011-01-19 | 2019-04-17 | LG Innotek Co., Ltd. | Transparent touch panel |
CN103105990B (en) * | 2013-01-25 | 2016-08-31 | 深圳市汇顶科技股份有限公司 | Individual layer capacitive touch screen and touch control terminal |
CN103440065B (en) * | 2013-07-31 | 2016-07-06 | 南昌欧菲光科技有限公司 | Touch control component |
-
2014
- 2014-05-30 TW TW103209617U patent/TWM494960U/en not_active IP Right Cessation
- 2014-07-29 CN CN201410364650.4A patent/CN104731423A/en active Pending
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9710120B2 (en) | 2015-04-22 | 2017-07-18 | Industrial Technology Research Insitute | Sensing apparatus |
US9946406B2 (en) | 2015-04-22 | 2018-04-17 | Industrial Technology Research Institute | Optical film with touch function |
TWI595389B (en) * | 2015-05-08 | 2017-08-11 | 業成光電(深圳)有限公司 | Touch display device and color filter substrate |
TWI576735B (en) * | 2015-06-08 | 2017-04-01 | 群創光電股份有限公司 | Touch display panel and test method thereof |
TWI607364B (en) * | 2016-09-22 | 2017-12-01 | 友達光電股份有限公司 | Touch display panel and driving method thereof |
Also Published As
Publication number | Publication date |
---|---|
CN104731423A (en) | 2015-06-24 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
TWM494960U (en) | Device substrate and touch display panel | |
JP7154323B2 (en) | Display device | |
KR101625176B1 (en) | Color Filter Substrate for Display Device with Integrated Touch Screen and Method for Fabricating The Same | |
KR101351415B1 (en) | Touch Panel and Liquid Crystal Display Device including Touch Panel | |
CN108630727B (en) | Organic light emitting diode display device | |
JP2019032811A (en) | Display device including input detection unit | |
US11402943B2 (en) | Input sensing unit and display device including the same | |
US9891764B2 (en) | Touch screen panel | |
KR20100095400A (en) | Capacitive touch panel | |
KR20110135196A (en) | Touch panel integrated liquid crystal display and manufacturing method thereof | |
TW201324003A (en) | Touch display panel | |
CN103049119A (en) | Touch device and touch display device | |
US9292140B2 (en) | Touch panel | |
CN107003768A (en) | Display device with position input function | |
CN101887904A (en) | Organic light emitting diode display integrated with touch screen | |
WO2020224039A1 (en) | Touch panel | |
CN105549780B (en) | Touch panel and manufacturing method thereof | |
CN204390204U (en) | Input media | |
KR102678327B1 (en) | Touch display apparatus | |
TW201610773A (en) | Touch panel | |
JP2016133535A (en) | Touch panel integral type color filter substrate, display device using the same, and information input image display device using display device | |
KR20150131610A (en) | Touch panel | |
KR102547399B1 (en) | Display device | |
KR101926515B1 (en) | Touch Screen | |
CN220108618U (en) | Display device |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
MM4K | Annulment or lapse of a utility model due to non-payment of fees |