TWM514045U - Touch panel - Google Patents

Touch panel Download PDF

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Publication number
TWM514045U
TWM514045U TW104207798U TW104207798U TWM514045U TW M514045 U TWM514045 U TW M514045U TW 104207798 U TW104207798 U TW 104207798U TW 104207798 U TW104207798 U TW 104207798U TW M514045 U TWM514045 U TW M514045U
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Taiwan
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refractive index
sensing electrode
optical compensation
touch panel
compensation film
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TW104207798U
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Chinese (zh)
Inventor
I-Chung Hsu
Kuo-Shu Hsu
chun-yong Zhang
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Tpk Touch Solutions Xiamen Inc
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Publication of TWM514045U publication Critical patent/TWM514045U/en

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Abstract

A touch panel includes a substrate, a sensing electrode layer and a first optical compensation layer. The first optical compensation layer includes a first material having a high absorption at the wavelength from about 300 nanometers to about 400 nanometers. The first optical compensation layer is disposed on a side of the sensing electrode layer. The first optical compensation layer and the sensing electrode layer form an optical match.

Description

觸控面板Touch panel

本創作是關於一種觸控面板,且特別是有關於一種具有光學補償膜的觸控面板。The present invention relates to a touch panel, and more particularly to a touch panel having an optical compensation film.

隨著智慧型手機等智慧型產品的發展,顯示器搭配觸控面板已漸漸成為主流。為了使使用者在智慧型產品上觀查資訊並進行觸碰感應的同時,具有更佳的視覺體驗,觸控面板除了本身具有之觸控感測功能之外,還需要具有均勻的光學特性。With the development of smart products such as smart phones, monitors with touch panels have gradually become mainstream. In order to enable users to view information and make touch sensing on smart products, and having a better visual experience, the touch panel needs to have uniform optical characteristics in addition to the touch sensing function itself.

目前的觸控面板已發展出單層感測電極結構。此種單層感測電極結構之觸控面板雖輕薄但感測電極層為一蝕刻圖案,在蝕刻區域與非蝕刻區域間會因對光的反應不同而造成從觸控面板的外觀看會產生色差的光學問題。部份單層感測電極式觸控面板設計有光學補償膜以解決此色差光學問題,但傳統的光學補償膜容易因為紫外光照射而使光學補償膜產生其他問題,例如導電。Current touch panels have developed a single layer sensing electrode structure. The touch panel of the single-layer sensing electrode structure is light and thin, but the sensing electrode layer is an etched pattern, and the external view of the touch panel may be generated due to the difference in response to light between the etched area and the non-etched area. The optical problem of chromatic aberration. Some single-layer sensing electrode type touch panels are designed with an optical compensation film to solve this chromatic aberration optical problem, but the conventional optical compensation film is liable to cause other problems such as conduction due to ultraviolet light irradiation.

本創作之一實施方式提供一種抗紫外光並可解決色差的光學問題的觸控面板,透過設計光學補償膜的吸收光波段,可以避免紫外光照射所衍伸的問題。One embodiment of the present invention provides a touch panel that is resistant to ultraviolet light and can solve the optical problem of chromatic aberration. By designing the absorption band of the optical compensation film, the problem of ultraviolet light irradiation can be avoided.

本創作之一態樣提供一種觸控面板,包含:一基板;一感測電極層,設置於基板上;以及一第一光學補償膜,設置於該感測電極層之一側,與該感測電極層形成光學匹配,該第一光學補償膜包含一第一吸收材料,該第一吸收材料在波長300奈米至400奈米之間具有高吸收率。An aspect of the present invention provides a touch panel comprising: a substrate; a sensing electrode layer disposed on the substrate; and a first optical compensation film disposed on one side of the sensing electrode layer The electrode layer forms an optical match, and the first optical compensation film comprises a first absorbing material having a high absorption rate between 300 nm and 400 nm.

本創作之一或多個實施方式中,該第一光學補償膜包含至少一第一折射率層和數量對等的至少一第二折射率層;其中該第二折射率層包含該第一吸收材料;且該第一折射率層的折射率相對低於該第二折射率層的折射率。In one or more embodiments of the present invention, the first optical compensation film includes at least one first refractive index layer and an equal number of at least one second refractive index layer; wherein the second refractive index layer includes the first absorption a material; and the refractive index of the first refractive index layer is relatively lower than the refractive index of the second refractive index layer.

本創作之一或多個實施方式中,該至少一第一折射率層和該至少一第二折射率層,是以遠離該感測電極層的方向,先低折再高折地交錯堆疊於該感測電極層之一側。In one or more embodiments of the present invention, the at least one first refractive index layer and the at least one second refractive index layer are stacked at a low angle and then folded at a high angle in a direction away from the sensing electrode layer. One side of the sensing electrode layer.

本創作之一或多個實施方式中,該第一吸收材料為氮化矽、氮氧化矽或其組合。In one or more embodiments of the present invention, the first absorbing material is tantalum nitride, lanthanum oxynitride or a combination thereof.

本創作之一或多個實施方式中,該第一折射率層的材料是氧化矽、氟化鎂或其組合。In one or more embodiments of the present invention, the material of the first refractive index layer is cerium oxide, magnesium fluoride or a combination thereof.

本創作之一或多個實施方式中,該第一折射率層之折射率為1.3至1.55,該第二折射率層之折射率為1.6至2.5。In one or more embodiments of the present invention, the first refractive index layer has a refractive index of 1.3 to 1.55, and the second refractive index layer has a refractive index of 1.6 to 2.5.

本創作之一或多個實施方式中,該第一折射率層之厚度為10奈米至50奈米,該第二折射率層之厚度為5奈米至20奈米。In one or more embodiments of the present invention, the first refractive index layer has a thickness of 10 nm to 50 nm, and the second refractive index layer has a thickness of 5 nm to 20 nm.

本創作之一或多個實施方式中,該第一光學補償膜設置於感測電極層與基板之間。In one or more embodiments of the present invention, the first optical compensation film is disposed between the sensing electrode layer and the substrate.

本創作之一或多個實施方式中,該第一光學補償膜設置於感測電極層相對於基板之另一側。In one or more embodiments of the present invention, the first optical compensation film is disposed on the other side of the sensing electrode layer relative to the substrate.

本創作之一或多個實施方式中,觸控面板更包含一鈍化層,該鈍化層設置於該第一光學補償膜相對該感測電極層之一側。In one or more embodiments of the present invention, the touch panel further includes a passivation layer disposed on a side of the first optical compensation film opposite to the sensing electrode layer.

本創作之一或多個實施方式中,該第一光學補償膜直接接觸該感測電極層。In one or more embodiments of the present invention, the first optical compensation film directly contacts the sensing electrode layer.

本創作之一或多個實施方式中,觸控面板更包含一平坦層,該平坦層設置於該第一光學補償膜與該感測電極層之間。In one or more embodiments of the present invention, the touch panel further includes a flat layer disposed between the first optical compensation film and the sensing electrode layer.

本創作之一或多個實施方式中,觸控面板更包含一第二光學補償膜,設置於該感測電極層相對於第一光學補償膜之另一側,該第二光學補償膜及該第一光學補償膜搭配並與該感測電極層形成光學匹配;其中該第二光學補償膜包含一第二吸收材料,該第二吸收材料在波長300奈米至400奈米之間具有高吸收率。In one or more embodiments of the present invention, the touch panel further includes a second optical compensation film disposed on the other side of the sensing electrode layer relative to the first optical compensation film, the second optical compensation film and the The first optical compensation film is matched and optically matched with the sensing electrode layer; wherein the second optical compensation film comprises a second absorbing material having a high absorption between 300 nm and 400 nm. rate.

本創作之一或多個實施方式中,該第二光學補償膜包含至少一第三折射率層和數量對等的至少一第四折射率層;其中該第四折射率層包含該第一吸收材料;且該第三折射率層的折射率相對低於該第四折射率層的折射率。In one or more embodiments of the present invention, the second optical compensation film includes at least a third refractive index layer and a plurality of equivalent at least one fourth refractive index layer; wherein the fourth refractive index layer includes the first absorption a material; and the third refractive index layer has a refractive index relatively lower than a refractive index of the fourth refractive index layer.

本創作之一或多個實施方式中,該至少一第三折射率層和該至少一第四折射率層,是以遠離該感測電極層的方向,先低折再高折地交錯堆疊於該感測電極層之一側。In one or more embodiments of the present invention, the at least one third refractive index layer and the at least one fourth refractive index layer are stacked in a direction away from the sensing electrode layer, first low-folded and then high-folded. One side of the sensing electrode layer.

本創作之一或多個實施方式中,第二吸收材料為氮化矽、氮氧化矽或其組合。In one or more embodiments of the present invention, the second absorbing material is tantalum nitride, lanthanum oxynitride or a combination thereof.

本創作之一或多個實施方式中,觸控面板更包含一蓋板,貼合於該感測電極層相對於該基板之一側。In one or more embodiments of the present invention, the touch panel further includes a cover plate attached to one side of the sensing electrode layer relative to the substrate.

本創作之一或多個實施方式中,基板為一硬質蓋板。In one or more embodiments of the present invention, the substrate is a rigid cover.

本創作之一或多個實施方式中,觸控面板更包含一遮蔽元件,該遮蔽元件設置於該基板與該感測電極層之間的周邊,該遮蔽元件用以定義該觸控面板之一可視區與一非可視區。In one or more embodiments of the present invention, the touch panel further includes a shielding component disposed at a periphery between the substrate and the sensing electrode layer, the shielding component defining one of the touch panels A viewable area and a non-visible area.

本創作之一或多個實施方式中,當該第一光學補償膜設置於該基板與該感測電極層之間,該第一光學補償膜位於該蓋板與該遮蔽元件之間。In one or more embodiments of the present invention, when the first optical compensation film is disposed between the substrate and the sensing electrode layer, the first optical compensation film is located between the cover plate and the shielding member.

100‧‧‧觸控面板100‧‧‧ touch panel

102‧‧‧基板102‧‧‧Substrate

110‧‧‧感測電極層110‧‧‧Sensing electrode layer

112‧‧‧電極圖案層112‧‧‧electrode pattern layer

112X‧‧‧第一電極112X‧‧‧first electrode

112XA‧‧‧第一導電單元112XA‧‧‧First Conductive Unit

112XB‧‧‧第一連接線112XB‧‧‧first cable

112Y‧‧‧第二電極112Y‧‧‧Second electrode

114‧‧‧絕緣塊114‧‧‧Insulation block

116‧‧‧連接線116‧‧‧Connecting line

120‧‧‧第一光學補償膜120‧‧‧First optical compensation film

122‧‧‧第一折射率層122‧‧‧First refractive index layer

124‧‧‧第二折射率層124‧‧‧Second refractive index layer

130‧‧‧第二光學補償膜130‧‧‧Second optical compensation film

132‧‧‧第三折射率層132‧‧‧ Third refractive index layer

134‧‧‧第四折射率層134‧‧‧fourth refractive index layer

140‧‧‧蓋板140‧‧‧ cover

150‧‧‧遮蔽元件150‧‧‧shading components

240‧‧‧光學膠層240‧‧‧Optical adhesive layer

V‧‧‧可視區V‧‧‧visible area

IV‧‧‧非可視區IV‧‧‧Invisible area

X‧‧‧第一軸向X‧‧‧first axial direction

Y‧‧‧第二軸向Y‧‧‧second axial

第1A圖為根據本創作之一實施方式之觸控面板之剖面圖。FIG. 1A is a cross-sectional view of a touch panel according to an embodiment of the present invention.

第1B圖為根據本創作之另一實施方式之觸控面板之剖面圖。FIG. 1B is a cross-sectional view of a touch panel according to another embodiment of the present creation.

第2A圖為第1A圖之觸控面板之部份感測電極層之局部上視圖。FIG. 2A is a partial top view of a portion of the sensing electrode layer of the touch panel of FIG. 1A.

第2B圖為第2A圖之觸控面板沿I-I段剖面之感測電極層之局部剖面圖。2B is a partial cross-sectional view of the sensing electrode layer along the I-I section of the touch panel of FIG. 2A.

第3圖為根據本創作之又一實施方式之觸控面板之剖面圖。3 is a cross-sectional view of a touch panel according to still another embodiment of the present creation.

第4圖為根據本創作之再一實施方式之觸控面板之剖面圖。4 is a cross-sectional view of a touch panel according to still another embodiment of the present invention.

第5圖為根據本創作之另一實施方式之觸控面板之剖面圖。FIG. 5 is a cross-sectional view of a touch panel according to another embodiment of the present invention.

以下將以圖式揭露本創作之多個實施方式,為明確說明起見,許多實務上的細節將在以下敘述中一併說明。然而,應瞭解到,這些實務上的細節不應用以限制本創作。也就是說,在本創作部分實施方式中,這些實務上的細節是非必要的。此外,為簡化圖式起見,一些習知慣用的結構與元件在圖式中將以簡單示意的方式為之。In the following, various embodiments of the present invention are disclosed in the drawings, and for the sake of clarity, many practical details will be described in the following description. However, it should be understood that these practical details are not applied to limit the creation. That is to say, in the implementation part of this creation, these practical details are not necessary. In addition, some of the conventional structures and elements are shown in the drawings in a simplified manner.

本創作之圖中所繪示之多個元件僅用以示意說明本創作之多個實施方式,不應以其相對寬度或相對厚度等限制本創作之範圍。The various elements illustrated in the drawings are merely illustrative of the various embodiments of the present invention and are not intended to limit the scope of the present invention by its relative width or relative thickness.

參照第1A圖,第1A圖為根據本創作之一實施方式之觸控面板100之剖面圖。本創作之一態樣提供一種觸控面板100,包含基板102、感測電極層110以及第一光學補償膜120。感測電極層110設置於基板102上,第一光學補償膜120設置於感測電極層110之一側,於本實施方式中,第一光學補償膜120設置於感測電極層110與基板102之間。以與感測電極層110形成光學匹配。第一光學補償膜120包含一第一吸收材料,該第一吸收材料在波長300奈米至400奈米之間具有高吸收率。Referring to FIG. 1A, FIG. 1A is a cross-sectional view of a touch panel 100 according to an embodiment of the present invention. One aspect of the present invention provides a touch panel 100 including a substrate 102, a sensing electrode layer 110, and a first optical compensation film 120. The sensing electrode layer 110 is disposed on the substrate 102, and the first optical compensation film 120 is disposed on one side of the sensing electrode layer 110. In the embodiment, the first optical compensation film 120 is disposed on the sensing electrode layer 110 and the substrate 102. between. An optical match is formed with the sensing electrode layer 110. The first optical compensation film 120 includes a first absorbing material having a high absorption rate between 300 nm and 400 nm.

詳細而言,第一光學補償膜120包含至少一第一折射率層122以及數量對等的至少一第二折射率層124, 其中第二折射率層124包含該第一吸收材料;且第一折射率層122的折射率相對低於第二折射率層124的折射率。第一折射率層122和第二折射率層124是以遠離感測電極層110的方向,先低折再高折地交錯堆疊於感測電極層110之一側。In detail, the first optical compensation film 120 includes at least one first refractive index layer 122 and an equal number of at least one second refractive index layer 124, The second refractive index layer 124 includes the first absorbing material; and the refractive index of the first refractive index layer 122 is relatively lower than the refractive index of the second refractive index layer 124. The first refractive index layer 122 and the second refractive index layer 124 are stacked on the side of the sensing electrode layer 110 in a direction away from the sensing electrode layer 110, first low-folded and then high-folded.

於本創作之一或多個實施方式中,基板102可以是硬質基板或軟性基板,用以承載感測電極層110。基板102可由透明材料所形成,例如玻璃、聚碳酸脂、聚對苯二甲酸乙二脂、聚甲基丙烯酸甲脂、聚碸或環烯共聚物等。In one or more embodiments of the present invention, the substrate 102 may be a rigid substrate or a flexible substrate for carrying the sensing electrode layer 110. The substrate 102 may be formed of a transparent material such as glass, polycarbonate, polyethylene terephthalate, polymethyl methacrylate, polyfluorene or a cyclic olefin copolymer, and the like.

於本實施方式中,配置第一折射率層122與第二折射率層124的數量分別為2個,而於本創作的其他實施方式中,第一折射率層122的數量也可以為1、3層甚至更多,而第二折射率層124的數量與第一折射率層122的數量對應相等。In the present embodiment, the number of the first refractive index layer 122 and the second refractive index layer 124 is two, respectively. In other embodiments of the present invention, the number of the first refractive index layers 122 may also be 1. Three or more layers, and the number of the second refractive index layers 124 is equal to the number of the first refractive index layers 122.

於本實施方式中,第一光學補償膜120直接設置於感測電極層110之上,即其中之一第一折射率層122直接接觸感測電極層110。於本創作的其他實施方式中,第一光學補償膜120可以為間接地設置於感測電極層110之上,例如,觸控面板100更包含一平坦層(圖未示)設置於第一光學補償膜120與感測電極層110之間,以起到使感測電極層110表面平整或保護感測電極層110的作用。In the embodiment, the first optical compensation film 120 is directly disposed on the sensing electrode layer 110 , that is, one of the first refractive index layers 122 directly contacts the sensing electrode layer 110 . In other embodiments of the present invention, the first optical compensation film 120 may be disposed indirectly on the sensing electrode layer 110. For example, the touch panel 100 further includes a flat layer (not shown) disposed on the first optical The compensation film 120 and the sensing electrode layer 110 function to smooth the surface of the sensing electrode layer 110 or protect the sensing electrode layer 110.

第1B圖為根據本創作之另一實施方式之觸控面板100之剖面圖。本實施方式大致與第1A圖之實施方式相同,其差異在於:第1A圖的第一光學補償膜120是設置於感 測電極層110與基板102之間,而第1B圖的第一光學補償膜120是設置於感測電極層110相對於基板102之另一側。此外,於本創作的其他實施方式中,當第一光學補償膜120設置於感測電極層110相對於基板102之另一側時,觸控面板100更可包含一鈍化層(圖未示),位於第一光學補償膜120相對於感測電極層110之另一側。FIG. 1B is a cross-sectional view of the touch panel 100 according to another embodiment of the present invention. This embodiment is substantially the same as the embodiment of FIG. 1A, and the difference is that the first optical compensation film 120 of FIG. 1A is provided in a sense The first optical compensation film 120 of FIG. 1B is disposed on the other side of the sensing electrode layer 110 with respect to the substrate 102. In addition, in the other embodiments of the present invention, when the first optical compensation film 120 is disposed on the other side of the sensing electrode layer 110 relative to the substrate 102, the touch panel 100 may further include a passivation layer (not shown). Located on the other side of the first optical compensation film 120 with respect to the sensing electrode layer 110.

本創作之一或多個實施方式中,第一光學補償膜120之第一吸收材料可以是氮化矽(Si3 N4 )或氮氧化矽(SiON)或其組合。換句話說,第二折射率層124的材料可以是氮化矽(Si3 N4 )或氮氧化矽(SiON)或其組合。另一方面,於本實施方式中,第一折射率層122的材料可以是氧化矽(SiO2 )或氟化鎂(MgF2 )或其組合。In one or more embodiments of the present invention, the first absorbing material of the first optical compensation film 120 may be tantalum nitride (Si 3 N 4 ) or cerium oxynitride (SiON) or a combination thereof. In other words, the material of the second refractive index layer 124 may be tantalum nitride (Si 3 N 4 ) or hafnium oxynitride (SiON) or a combination thereof. On the other hand, in the present embodiment, the material of the first refractive index layer 122 may be cerium oxide (SiO 2 ) or magnesium fluoride (MgF 2 ) or a combination thereof.

本創作之一或多個實施方式中,第一折射率層122之折射率為1.3至1.55,第二折射率層124之折射率為1.6至2.5。本創作之一或多個實施方式中,第一折射率層122之厚度為10奈米至50奈米,第二折射率層124之厚度為5奈米至20奈米。In one or more embodiments of the present invention, the first refractive index layer 122 has a refractive index of 1.3 to 1.55, and the second refractive index layer 124 has a refractive index of 1.6 to 2.5. In one or more embodiments of the present invention, the first refractive index layer 122 has a thickness of 10 nm to 50 nm, and the second refractive index layer 124 has a thickness of 5 nm to 20 nm.

於本創作之一或多個實施方式中,感測電極層110具有多種電極配置方式,用以感測手指的觸碰位置,感測電極層110可由多個層疊結構組成,本創作實施例僅以單層感應電極結構的觸控面板結構為例,可以理解的是,在具有多層感應電極結構的觸控面板,同樣可以採用本創作的技術方案解決光學匹配問題。In one or more embodiments of the present invention, the sensing electrode layer 110 has various electrode configurations for sensing the touch position of the finger, and the sensing electrode layer 110 may be composed of a plurality of stacked structures. Taking the touch panel structure of the single-layer sensing electrode structure as an example, it can be understood that in the touch panel having the multi-layer sensing electrode structure, the technical solution of the present invention can also be used to solve the optical matching problem.

同時參照第2A圖與第2B圖,第2A圖為第1A圖之觸控面板100之部份感測電極層110之局部上視圖。第2B圖為第2A圖之觸控面板沿I-I段剖面之感測電極層之局部剖面圖。感測電極層110可包含電極圖案層112、絕緣塊114以及連接線116。電極圖案層112包含多條沿第一軸向X排列的第一電極112X及多條沿第二軸向Y排列的第二電極112Y。於本實施方式中,第一軸向X與第二軸向Y互相垂直。每一第一電極112X包含多個第一導電單元112XA及多個第一連接線112XB,其中第一軸向X上之相鄰兩個第一導電單元112XA透過第一連接線112XB相連並電性連接。第二軸向Y上之相鄰兩個第二電極112Y透過連接線116相連並電性連接。Referring to FIGS. 2A and 2B, FIG. 2A is a partial top view of a portion of the sensing electrode layer 110 of the touch panel 100 of FIG. 1A. 2B is a partial cross-sectional view of the sensing electrode layer along the I-I section of the touch panel of FIG. 2A. The sensing electrode layer 110 may include an electrode pattern layer 112, an insulating block 114, and a connection line 116. The electrode pattern layer 112 includes a plurality of first electrodes 112X arranged along the first axis X and a plurality of second electrodes 112Y arranged along the second axis Y. In the present embodiment, the first axial direction X and the second axial direction Y are perpendicular to each other. Each of the first electrodes 112X includes a plurality of first conductive units 112XA and a plurality of first connection lines 112XB, wherein adjacent two first conductive units 112XA in the first axial direction are connected through the first connection line 112XB and electrically connection. The two adjacent second electrodes 112Y in the second axial direction Y are connected and electrically connected through the connecting line 116.

於本實施方式中,絕緣塊114設置於電極圖案層112與連接線116之間,以使連接線116跨接電極圖案層112。於本創作之部份實施方式中,第一連接線112XB及連接線116互相交錯,即第一連接線112XB及連接線116的投影相交錯,絕緣塊114設置在交錯的第一連接線112XB與連接線116之間,以使第一電極112X及第二電極112Y之間電性隔絕。In the present embodiment, the insulating block 114 is disposed between the electrode pattern layer 112 and the connection line 116 such that the connection line 116 bridges the electrode pattern layer 112. In some implementations of the present invention, the first connecting line 112XB and the connecting line 116 are interlaced with each other, that is, the projections of the first connecting line 112XB and the connecting line 116 are staggered, and the insulating block 114 is disposed on the staggered first connecting line 112XB and Between the wires 116, the first electrode 112X and the second electrode 112Y are electrically isolated from each other.

於本創作之一或多個實施方式中,在感測電極層110的製造過程中,可以先於第一光學補償膜120(參照第1A圖)或基板102(參照第1B圖)上形成電極圖案層112(即第一導電單元112XA、第一連接線112XB以及第二電極112Y),再形成絕緣塊114,之後再形成連接線116跨接第 二電極112Y。於本創作之另一實施方式中,也可以先於第一光學補償膜120或基板102上形成連接線116,再形成絕緣塊114,之後再形成電極圖案層112(即第一導電單元112XA、第一連接線112XB以及第二電極112Y)。In one or more embodiments of the present invention, in the manufacturing process of the sensing electrode layer 110, an electrode may be formed on the first optical compensation film 120 (refer to FIG. 1A) or the substrate 102 (refer to FIG. 1B). The pattern layer 112 (ie, the first conductive unit 112XA, the first connection line 112XB, and the second electrode 112Y) is further formed into an insulating block 114, and then the connection line 116 is bridged. Two electrodes 112Y. In another embodiment of the present invention, the connection line 116 may be formed on the first optical compensation film 120 or the substrate 102, and then the insulating block 114 may be formed, and then the electrode pattern layer 112 (ie, the first conductive unit 112XA, The first connection line 112XB and the second electrode 112Y).

於此,電極圖案層112、絕緣塊114、連接線116可由透明材料所組成。舉例而言,電極圖案層112可由透明導電材料(如氧化銦錫(Indium tin oxide;ITO))經過蝕刻而形成,而連接線116亦可由氧化銦錫所形成。或者,連接線116也可以由金屬製作而成。在實際應用中,連接線116可以與觸控面板100之周邊線路同步製作而成。感測電極層110可以依據實際敏感度、電路等需求而設計,不應以在此所示之電路配置而限制本創作之範圍。Here, the electrode pattern layer 112, the insulating block 114, and the connecting line 116 may be composed of a transparent material. For example, the electrode pattern layer 112 may be formed by etching a transparent conductive material such as Indium Tin Oxide (ITO), and the connection line 116 may also be formed of indium tin oxide. Alternatively, the connecting line 116 can also be made of metal. In practical applications, the connection line 116 can be fabricated in synchronization with the peripheral lines of the touch panel 100. The sensing electrode layer 110 can be designed according to actual sensitivity, circuitry, etc., and should not limit the scope of the present invention with the circuit configuration shown herein.

再回到第1A圖,本創作之一或多個實施方式中,整個觸控面板接收一入射光之後,第一光學補償膜可以調和入射光經過觸控面板各層(如感測電極層等)所形成的反射光之色調。如此一來,第一光學補償膜120得以補償感測電極層110中因圖案化製程而導致的反射率差異,佈設有電極圖案層112、絕緣塊114、連接線116(參照第2A圖)的區域與沒有佈設電極圖案層112、絕緣塊114、連接線116(參照第2A圖)的區域在高低波段波長的光線下的反射率差值較小,藉以有效地調整觸控面板100面對外部光源所反射出的反射光色調接近自然光,而不會偏藍或偏黃。Returning to FIG. 1A , in one or more embodiments of the present invention, after the entire touch panel receives an incident light, the first optical compensation film can modulate the incident light through each layer of the touch panel (eg, the sensing electrode layer, etc.). The hue of the reflected light formed. As a result, the first optical compensation film 120 compensates for the difference in reflectance caused by the patterning process in the sensing electrode layer 110, and the electrode pattern layer 112, the insulating block 114, and the connecting line 116 (see FIG. 2A) are disposed. The difference in reflectance between the region and the region where the electrode pattern layer 112, the insulating block 114, and the connection line 116 (see FIG. 2A) are not disposed in the light of the high and low wavelengths is small, thereby effectively adjusting the touch panel 100 to face the outside. The reflected light reflected by the light source is close to natural light without being bluish or yellowish.

此外,傳統用以進行光學補償的材料(例如氧化鈮、氧化鈦)具有較小的能隙,容易受到紫外光照射而電子 躍遷,進而該些材料導電。本創作之一或多個實施方式中,藉由設置第一光學補償膜120具有吸收材料,此吸收材料會將吸收的光能轉化為熱能釋出。如此一來,藉由配置經過第一光學補償膜120的紫外光將會被吸收而為熱能釋出,可以防止第一光學補償膜120內的吸收材料或其他材料受到紫外光照射而激發電子躍遷,進而避免第一光學補償膜120導電。In addition, materials conventionally used for optical compensation (such as yttria, titanium oxide) have a small energy gap and are easily exposed to ultraviolet light and electrons. The transitions, and then the materials are electrically conductive. In one or more embodiments of the present invention, by providing the first optical compensation film 120 with an absorbing material, the absorbing material converts the absorbed light energy into thermal energy. In this way, by disposing the ultraviolet light passing through the first optical compensation film 120 to be absorbed and released for thermal energy, the absorption material or other materials in the first optical compensation film 120 can be prevented from being irradiated by ultraviolet light to excite the electronic transition. Further, the first optical compensation film 120 is prevented from being electrically conductive.

如此一來,由於第一光學補償膜120之層疊設計得以補償感測電極層110中因圖案化製程而導致的反射率差異,且第一光學補償膜120具有可吸收紫外光波段的材料以避免受到紫外光波段照射而產生導電等問題,因此,本實施方式可同時提升觸控面板100之可靠度與光學品質。In this way, since the laminated design of the first optical compensation film 120 compensates for the difference in reflectance in the sensing electrode layer 110 due to the patterning process, the first optical compensation film 120 has a material that can absorb the ultraviolet light band to avoid The problem that the ultraviolet light band is irradiated to generate electricity and the like can improve the reliability and optical quality of the touch panel 100 at the same time.

參照第3圖,第3圖為根據本創作之另一實施方式之觸控面板100之剖面圖。本實施方式與第1A圖之實施方式相似,差別在於:本實施方式之觸控面板100更包含第二光學補償膜130,第二光學補償膜130設置於感測電極層110相對第一光學補償膜120之另一側,換言之,本實施方式的第一光學補償膜120及第二光學補償膜130是設置於感測電極層110的相對兩側。具體來講,本實施方式的第一光學補償膜120設置於感測電極層110之上,而第二光學補償膜130設置於感測電極層110之下。Referring to FIG. 3, FIG. 3 is a cross-sectional view of a touch panel 100 according to another embodiment of the present invention. The embodiment is similar to the embodiment of FIG. 1A . The difference is that the touch panel 100 of the present embodiment further includes a second optical compensation film 130 , and the second optical compensation film 130 is disposed on the sensing electrode layer 110 relative to the first optical compensation. The other side of the film 120, in other words, the first optical compensation film 120 and the second optical compensation film 130 of the present embodiment are disposed on opposite sides of the sensing electrode layer 110. Specifically, the first optical compensation film 120 of the present embodiment is disposed above the sensing electrode layer 110 , and the second optical compensation film 130 is disposed under the sensing electrode layer 110 .

詳細而言,第二光學補償膜130亦包含至少一第三折射率層132以及數量對等的至少一第四折射率層134,其中第四折射率層134包含第二吸收材料;且第三折 射率層132的折射率相對低於第四折射率層134的折射率。第三折射率層132和第四折射率層134是以遠離感測電極層110的方向,先低折再高折地交錯堆疊於感測電極層110上。In detail, the second optical compensation film 130 also includes at least a third refractive index layer 132 and an equal number of at least one fourth refractive index layer 134, wherein the fourth refractive index layer 134 includes a second absorption material; and a third fold The refractive index of the luminosity layer 132 is relatively lower than the refractive index of the fourth refractive index layer 134. The third refractive index layer 132 and the fourth refractive index layer 134 are stacked on the sensing electrode layer 110 in a direction away from the sensing electrode layer 110, first low-folded and then high-folded.

第二光學補償膜130及第一光學補償膜120搭配並與感測電極層110形成光學匹配。於此,配置第三折射率層132的數量可分別為1、2、3層甚至更多,而第四折射率層134的數量與第三折射率層132的數量對應相對。需注意的是,第一光學補償膜120與第二光學補償膜130之疊構可以相同或不同。第二光學補償膜130可直接或間接地設置於感測電極層110之上。The second optical compensation film 130 and the first optical compensation film 120 are matched and optically matched with the sensing electrode layer 110. Here, the number of the third refractive index layers 132 may be 1, 2, 3 or even more, respectively, and the number of the fourth refractive index layers 134 is opposite to the number of the third refractive index layers 132. It should be noted that the stack of the first optical compensation film 120 and the second optical compensation film 130 may be the same or different. The second optical compensation film 130 may be disposed directly or indirectly over the sensing electrode layer 110.

與前述之第一折射率層122與第二折射率層124相似地,第二光學補償膜130之第二吸收材料可以是氮化矽(Si3 N4 )或氮氧化矽(SiON)或其組合,也就是第四折射率層134的材料可以是氮化矽(Si3 N4 )或氮氧化矽(SiON)或其組合。另一方面,於本實施方式中,第三折射率層132的材料可以是氧化矽(SiO2 )或氟化鎂(MgF2 )或其組合。需注意的是,第一光學補償膜120與第二光學補償膜130之材料可以相同或不同。Similar to the foregoing first refractive index layer 122 and second refractive index layer 124, the second absorbing material of the second optical compensation film 130 may be tantalum nitride (Si 3 N 4 ) or cerium oxynitride (SiON) or The combination, that is, the material of the fourth refractive index layer 134 may be tantalum nitride (Si 3 N 4 ) or bismuth oxynitride (SiON) or a combination thereof. On the other hand, in the present embodiment, the material of the third refractive index layer 132 may be cerium oxide (SiO 2 ) or magnesium fluoride (MgF 2 ) or a combination thereof. It should be noted that the materials of the first optical compensation film 120 and the second optical compensation film 130 may be the same or different.

與前述之第一折射率層122與第二折射率層124相似地,本創作之一或多個實施方式中,第三折射率層132之折射率為1.3至1.55,第四折射率層134之折射率為1.6至2.5。第三折射率層132之厚度為10奈米至50奈米,第四折射率層134之厚度為5奈米至20奈米。Similar to the foregoing first refractive index layer 122 and second refractive index layer 124, in one or more embodiments of the present invention, the third refractive index layer 132 has a refractive index of 1.3 to 1.55, and the fourth refractive index layer 134 The refractive index is from 1.6 to 2.5. The third refractive index layer 132 has a thickness of 10 nm to 50 nm, and the fourth refractive index layer 134 has a thickness of 5 nm to 20 nm.

需補充說明的是,感測電極層110的厚度往往會依據實際設計需求來決定,例如在大尺寸觸控面板上,感測電極層110的厚度相對就需設計較厚以符合較低線阻的需求。如此一來,這將使得圖案化感測電極層110所造成的蝕刻線更為明顯可視。於本實施方式中,在感測電極層110兩側均配置光學補償層,可進一步使蝕刻線不易可見。It should be noted that the thickness of the sensing electrode layer 110 is often determined according to actual design requirements. For example, on a large-sized touch panel, the thickness of the sensing electrode layer 110 needs to be relatively thick to conform to the lower line resistance. Demand. As such, this will make the etched lines caused by the patterned sensing electrode layer 110 more visible. In the present embodiment, an optical compensation layer is disposed on both sides of the sensing electrode layer 110, so that the etching line can be further made invisible.

如同前述,本創作之一或多個實施方式中,第一光學補償膜120與第二光學補償膜130搭配與觸控面板100形成光學匹配。在整個觸控面板100接收一入射光之後,第一光學補償膜120搭配第二光學補償膜130,可以調和入射光經過觸控面板100各層(如感測電極層等)所形成的反射光之色調。As described above, in one or more embodiments of the present invention, the first optical compensation film 120 and the second optical compensation film 130 are optically matched with the touch panel 100. After the entire touch panel 100 receives an incident light, the first optical compensation film 120 is matched with the second optical compensation film 130 to modulate the reflected light formed by the incident light passing through various layers of the touch panel 100 (such as the sensing electrode layer). tone.

如此一來,如同第1A圖之實施方式,由於第一光學補償膜120與第二光學補償膜130之層疊設計得以補償感測電極層110中因圖案化製程而導致的反射率差異,且第一光學補償膜120與第二光學補償膜130具有可吸收紫外光波段的材料以避免受到紫外光波段照射而產生導電等問題,因此,本實施方式可同時提升觸控面板100之可靠度與光學品質。In this way, as in the embodiment of FIG. 1A, the laminated design of the first optical compensation film 120 and the second optical compensation film 130 compensates for the difference in reflectance caused by the patterning process in the sensing electrode layer 110, and The optical compensation film 120 and the second optical compensation film 130 have a material that can absorb the ultraviolet light band to avoid the problem of being electrically exposed to the ultraviolet light band. Therefore, the present embodiment can simultaneously improve the reliability and optics of the touch panel 100. quality.

參照第4圖,第4圖為根據本創作之又一實施方式之觸控面板100之剖面圖。本實施方式中,基板102可以是強化蓋板,基板102相對於感測電極層110之一側直接供使用者使用,基板102除了用以承載感測電極層110之外,更可以提供堅硬的保護作用。本實施方式大致與第1A圖之 實施方式相同,其差異還在於:觸控面板100更包含遮蔽元件150。遮蔽元件150設置於基板102與感測電極層110之間的周邊,遮蔽元件150用以定義觸控面板100之可視區V與非可視區IV。如此一來,遮蔽元件150可用以遮蔽觸控面板100的周邊電路,防止周邊電路反射光線而影響到影像品質。遮蔽元件150可由不透光材料所形成,例如黑色油墨。於本創作之一或多個實施方式中,第一光學補償膜120可位於遮蔽元件150與基板102之間,以使可視區V在不作用的情況下,其不透光程度與非可視區IV相近。Referring to FIG. 4, FIG. 4 is a cross-sectional view of a touch panel 100 according to still another embodiment of the present invention. In this embodiment, the substrate 102 may be a reinforced cover plate, and the substrate 102 is directly used by the user with respect to one side of the sensing electrode layer 110. The substrate 102 can provide a hard surface in addition to the sensing electrode layer 110. Protective effects. This embodiment is roughly the same as FIG. 1A. The embodiment is the same, and the difference is that the touch panel 100 further includes the shielding member 150. The shielding component 150 is disposed at a periphery between the substrate 102 and the sensing electrode layer 110. The shielding component 150 is used to define the visible area V and the non-visible area IV of the touch panel 100. In this way, the shielding component 150 can be used to shield the peripheral circuit of the touch panel 100 to prevent the peripheral circuitry from reflecting light and affecting image quality. The shielding element 150 can be formed from an opaque material, such as a black ink. In one or more embodiments of the present invention, the first optical compensation film 120 may be located between the shielding member 150 and the substrate 102 such that the visible region V does not function, and the opaque and non-visible regions thereof IV is similar.

如前所述,於本實施方式中,可以選擇性地設置第一光學補償膜120於基板102與感測電極層110之間或感測電極層110相對於基板102之另一側,亦可設置同時設置第一光學補償膜120和第二光學補償膜130於感測電極層110之兩側。As described above, in the present embodiment, the first optical compensation film 120 may be selectively disposed between the substrate 102 and the sensing electrode layer 110 or the sensing electrode layer 110 may be opposite to the other side of the substrate 102. The first optical compensation film 120 and the second optical compensation film 130 are disposed on both sides of the sensing electrode layer 110.

如前所述,藉由設置第一光學補償膜120或第二光學補償膜130,可以減少可視區V內因電極圖案層112、絕緣塊114、連接線116(參照第2A圖)所致的不均勻反射光線,且由於第一光學補償膜120與第二光學補償膜130具有可吸收紫外光的材料,因此第一光學補償膜120與第二光學補償膜130不易因紫外光照射而導電,因而提升觸控面板100之可靠度與光學品質。As described above, by providing the first optical compensation film 120 or the second optical compensation film 130, it is possible to reduce the cause of the electrode pattern layer 112, the insulating block 114, and the connection line 116 (see FIG. 2A) in the visible region V. The light is uniformly reflected, and since the first optical compensation film 120 and the second optical compensation film 130 have a material that can absorb ultraviolet light, the first optical compensation film 120 and the second optical compensation film 130 are not easily electrically conductive by ultraviolet light irradiation, and thus Improve the reliability and optical quality of the touch panel 100.

參照第5圖,第5圖為根據本創作之又一實施方式之觸控面板100之剖面圖。本實施方式與第1A圖之實施方式相似,差別在於:本實施方式中,觸控面板100可包含蓋 板140。而蓋板140是通過一光學膠層240貼合於感測電極層110相對於基板102之另一側,而形成較為堅固的觸控面板100。於部份實施方式中,基板102可以由軟性材料所形成,而具有較為輕薄的厚度,並依賴與其貼合的蓋板140維持結構強度。於部份實施方式中,基板102可以是強化基板,並與蓋板140貼合後增強整體結構強度。Referring to FIG. 5, FIG. 5 is a cross-sectional view of a touch panel 100 according to still another embodiment of the present invention. The embodiment is similar to the embodiment of FIG. 1A . The difference is that in the embodiment, the touch panel 100 can include a cover. Board 140. The cover 140 is attached to the other side of the sensing electrode layer 110 relative to the substrate 102 through an optical adhesive layer 240 to form a relatively strong touch panel 100. In some embodiments, the substrate 102 can be formed of a soft material having a relatively thin thickness and relying on the cover plate 140 to which it is attached to maintain structural strength. In some embodiments, the substrate 102 can be a reinforced substrate and adhere to the cover plate 140 to enhance the overall structural strength.

需注意的是,於本實施方式中,同樣可以選擇性地設置第一光學補償膜120於基板102與感測電極層110之間或感測電極層110相對於基板102之另一側,亦可設置同時設置第一光學補償膜120和第二光學補償膜130於感測電極層110之兩側。It should be noted that, in this embodiment, the first optical compensation film 120 may be selectively disposed between the substrate 102 and the sensing electrode layer 110 or the sensing electrode layer 110 is opposite to the other side of the substrate 102. The first optical compensation film 120 and the second optical compensation film 130 may be disposed on both sides of the sensing electrode layer 110 at the same time.

雖然本實施方式並未設置遮蔽元件(參照第4圖),但不應以此限制本創作之範圍。本實施方式之蓋板140上亦可設計有相關的遮蔽結構,以遮蔽周邊電路的反光。Although the shielding element is not provided in the present embodiment (refer to FIG. 4), the scope of the present invention should not be limited thereby. The cover plate 140 of the present embodiment may also be provided with an associated shielding structure to shield the reflection of the peripheral circuits.

綜上所述,本創作之一實施方式提供一種抗紫外光並可解決色差的光學問題的觸控面板,配合感測電極層之光學特性而設計製作光學補償層,並設計此光學補償層可將紫外光轉換熱能釋出,可以避免紫外光照射所衍伸的問題,以提升觸控面板之影像品質與可靠度。In summary, one embodiment of the present invention provides a touch panel that is resistant to ultraviolet light and can solve the optical problem of chromatic aberration. The optical compensation layer is designed and matched with the optical characteristics of the sensing electrode layer, and the optical compensation layer can be designed. The release of ultraviolet light conversion heat energy can avoid the problem of ultraviolet light irradiation, so as to improve the image quality and reliability of the touch panel.

雖然本創作已以多種實施方式揭露如上,然其並非用以限定本創作,任何熟習此技藝者,在不脫離本創作之精神和範圍內,當可作各種之更動與潤飾,因此本創作之保護範圍當視後附之申請專利範圍所界定者為準。Although the present invention has been disclosed in various embodiments, it is not intended to limit the present invention, and anyone skilled in the art can make various changes and refinements without departing from the spirit and scope of the present invention. The scope of protection is subject to the definition of the scope of the patent application attached.

100‧‧‧觸控面板100‧‧‧ touch panel

102‧‧‧基板102‧‧‧Substrate

110‧‧‧感測電極層110‧‧‧Sensing electrode layer

120‧‧‧第一光學補償膜120‧‧‧First optical compensation film

122‧‧‧第一折射率層122‧‧‧First refractive index layer

124‧‧‧第二折射率層124‧‧‧Second refractive index layer

Claims (17)

一種觸控面板,包含:一基板;一感測電極層,設置於基板上;以及一第一光學補償膜,設置於該感測電極層之一側,與該感測電極層形成光學匹配,該第一光學補償膜包含一第一吸收材料,該第一吸收材料在波長300奈米至400奈米之間具有高吸收率。 A touch panel includes: a substrate; a sensing electrode layer disposed on the substrate; and a first optical compensation film disposed on one side of the sensing electrode layer to form an optical match with the sensing electrode layer, The first optical compensation film comprises a first absorbing material having a high absorption rate between 300 nm and 400 nm. 如請求項1所述之觸控面板,該第一光學補償膜包含至少一第一折射率層和數量對等的至少一第二折射率層;其中該第二折射率層包含該第一吸收材料;且該第一折射率層的折射率相對低於該第二折射率層的折射率。 The touch panel of claim 1, wherein the first optical compensation film comprises at least a first refractive index layer and an amount of at least one second refractive index layer; wherein the second refractive index layer comprises the first absorption a material; and the refractive index of the first refractive index layer is relatively lower than the refractive index of the second refractive index layer. 如請求項2所述之觸控面板,其中該至少一第一折射率層和該至少一第二折射率層,是以遠離該感測電極層的方向,先低折再高折地交錯堆疊於該感測電極層之一側。 The touch panel of claim 2, wherein the at least one first refractive index layer and the at least one second refractive index layer are stacked in a direction away from the sensing electrode layer, first low-folded and then high-folded. On one side of the sensing electrode layer. 如請求項2所述之觸控面板,其中該第一折射率層之折射率為1.3至1.55,該第二折射率層之折射率為1.6至2.5。 The touch panel of claim 2, wherein the first refractive index layer has a refractive index of 1.3 to 1.55, and the second refractive index layer has a refractive index of 1.6 to 2.5. 如請求項2所述之觸控面板,其中該第一折射率層之厚度為10奈米至50奈米,該第二折射率層之厚度為5奈米至20奈米。 The touch panel of claim 2, wherein the first refractive index layer has a thickness of 10 nm to 50 nm, and the second refractive index layer has a thickness of 5 nm to 20 nm. 如請求項1至5任一所述之觸控面板,其中該第一光學補償膜設置於感測電極層與基板之間。 The touch panel of any one of claims 1 to 5, wherein the first optical compensation film is disposed between the sensing electrode layer and the substrate. 如請求項1至5任一所述之觸控面板,其中該第一光學補償膜設置於感測電極層相對於基板之另一側。 The touch panel of any of claims 1 to 5, wherein the first optical compensation film is disposed on the other side of the sensing electrode layer relative to the substrate. 如請求項7所述之觸控面板,更包含一鈍化層,該鈍化層設置於該第一光學補償膜相對該感測電極層之一側。 The touch panel of claim 7, further comprising a passivation layer disposed on a side of the first optical compensation film opposite to the sensing electrode layer. 如請求項1所述之觸控面板,其中該第一光學補償膜直接接觸該感測電極層。 The touch panel of claim 1, wherein the first optical compensation film directly contacts the sensing electrode layer. 如請求項1所述之觸控面板,更包含一平坦層,該平坦層設置於該第一光學補償膜與該感測電極層之間。 The touch panel of claim 1, further comprising a flat layer disposed between the first optical compensation film and the sensing electrode layer. 如請求項1所述之觸控面板,更包含一第二光學補償膜,設置於該感測電極層相對於第一光學補償膜之另一側,該第二光學補償膜及該第一光學補償膜搭 配並與該感測電極層形成光學匹配;其中該第二光學補償膜包含一第二吸收材料,該第二吸收材料在波長300奈米至400奈米之間具有高吸收率。 The touch panel of claim 1, further comprising a second optical compensation film disposed on the other side of the sensing electrode layer relative to the first optical compensation film, the second optical compensation film and the first optical Compensation film And forming an optical matching with the sensing electrode layer; wherein the second optical compensation film comprises a second absorbing material having a high absorption rate between 300 nm and 400 nm. 如請求項11所述之觸控面板,該第二光學補償膜包含至少一第三折射率層和數量對等的至少一第四折射率層;其中該第四折射率層包含該第二吸收材料;且該第三折射率層的折射率相對低於該第四折射率層的折射率。 The touch panel of claim 11, the second optical compensation film comprising at least a third refractive index layer and an equal number of at least one fourth refractive index layer; wherein the fourth refractive index layer comprises the second absorption a material; and the third refractive index layer has a refractive index relatively lower than a refractive index of the fourth refractive index layer. 如請求項12所述之觸控面板,其中該至少一第三折射率層和該至少一第四折射率層,是以遠離該感測電極層的方向,先低折再高折地交錯堆疊於該感測電極層之一側。 The touch panel of claim 12, wherein the at least one third refractive index layer and the at least one fourth refractive index layer are stacked in a direction away from the sensing electrode layer, first low-folded and then high-folded. On one side of the sensing electrode layer. 如請求項1或11所述之觸控面板,更包含一蓋板,貼合於該感測電極層相對於該基板之一側。 The touch panel of claim 1 or 11, further comprising a cover plate attached to one side of the sensing electrode layer relative to the substrate. 如請求項1或11所述之觸控面板,其中該基板為一硬質蓋板。 The touch panel of claim 1 or 11, wherein the substrate is a hard cover. 如請求項15所述之觸控面板,更包含一遮蔽元件,該遮蔽元件設置於該基板與該感測電極層之間的周邊,該遮蔽元件用以定義該觸控面板之一可視區與一非可視區。 The touch panel of claim 15 further comprising a shielding component disposed at a periphery between the substrate and the sensing electrode layer, the shielding component defining a visible area of the touch panel A non-visible area. 如請求項16所述之觸控面板,其中當該第一光學補償膜設置於該基板與該感測電極層之間,該第一光學補償膜位於該基板與該遮蔽元件之間。 The touch panel of claim 16, wherein the first optical compensation film is disposed between the substrate and the sensing electrode layer, and the first optical compensation film is located between the substrate and the shielding member.
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