TWI569193B - Touch panel - Google Patents
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- TWI569193B TWI569193B TW103130776A TW103130776A TWI569193B TW I569193 B TWI569193 B TW I569193B TW 103130776 A TW103130776 A TW 103130776A TW 103130776 A TW103130776 A TW 103130776A TW I569193 B TWI569193 B TW I569193B
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Description
本揭露內容提出一種可摺疊的觸控面板。 The present disclosure proposes a foldable touch panel.
在一般軟性觸控面板的應用下,觸控面板有可能因為長時間的彎曲或摺疊,而導致觸控面板中配置於摺疊部份的電極結構受到破壞,造成觸控面板整體感測到的電阻值增加。並且,若觸控面板的電極結構的電阻值上升達到一定數值的情況下,更嚴重的會導致觸控訊號無法順利傳遞與接收,而造成觸控面板的功能失效。因此,如何使軟性觸控面板在多次彎曲或摺疊的使用下,提高其耐用度以及穩定性,實為亟待解決的課題之一。 In the application of the general soft touch panel, the touch panel may be damaged or folded for a long time, and the electrode structure disposed in the folded portion of the touch panel is damaged, resulting in the overall sensed resistance of the touch panel. The value increases. Moreover, if the resistance value of the electrode structure of the touch panel rises to a certain value, the touch signal may not be smoothly transmitted and received, and the function of the touch panel may be invalid. Therefore, how to improve the durability and stability of the flexible touch panel under the use of multiple bending or folding is one of the urgent problems to be solved.
本揭露提供一種可摺疊的觸控面板,包括一基板、多條第一電極、多條第二電極、多條第三電極以及多條第四電極。基板包括一第一觸控區、一第二觸控區以及一第一觸控摺疊區,第一觸控摺疊區設置於第一觸控區與第二觸控區之間。多條第一電極以及多條第二電極配置於基板上的第一觸控區,第一電極以及第二電極彼此相交,且第一電極由第一觸控區延伸至第一觸控摺疊區。多條第三電極以及多條第四電極配置於基板上 的第二觸控區,第三電極以及第四電極彼此相交,且第三電極由第二觸控區延伸至第一觸控摺疊區。第一電極與第三電極彼此無相交,且觸控面板的任一邊長、與第一觸控摺疊區與第二觸控區之間的距離的比值為介於9.5至95之間。 The present disclosure provides a foldable touch panel including a substrate, a plurality of first electrodes, a plurality of second electrodes, a plurality of third electrodes, and a plurality of fourth electrodes. The substrate includes a first touch area, a second touch area, and a first touch fold area. The first touch fold area is disposed between the first touch area and the second touch area. The first electrode and the plurality of second electrodes are disposed on the first touch area on the substrate, the first electrode and the second electrode intersect each other, and the first electrode extends from the first touch area to the first touch fold area . a plurality of third electrodes and a plurality of fourth electrodes are disposed on the substrate The second touch area, the third electrode and the fourth electrode intersect each other, and the third electrode extends from the second touch area to the first touch fold area. The first electrode and the third electrode do not intersect each other, and the ratio of the length of either side of the touch panel to the distance between the first touch fold region and the second touch region is between 9.5 and 95.
為讓本揭露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 be more apparent from the following description.
A、D‧‧‧距離 A, D‧‧‧ distance
G‧‧‧間距 G‧‧‧ spacing
I-I’‧‧‧剖線 I-I’‧‧‧ cut line
10a、10b、10c、10d、10e、10f、10g、10h、10i、10j、10k‧‧‧觸控面板 10a, 10b, 10c, 10d, 10e, 10f, 10g, 10h, 10i, 10j, 10k‧‧‧ touch panel
20a、20b、20c、20d、20e、20f、20g、20h、20i‧‧‧觸控顯示裝置 20a, 20b, 20c, 20d, 20e, 20f, 20g, 20h, 20i‧‧‧ touch display device
30a、30b、30c、30d、30e、30f、30g、30h、30i、30j、30k、30l‧‧‧雙面觸控顯示裝置 30a, 30b, 30c, 30d, 30e, 30f, 30g, 30h, 30i, 30j, 30k, 30l ‧ ‧ double-sided touch display device
100‧‧‧基板 100‧‧‧Substrate
110、110’‧‧‧第一觸控區 110, 110'‧‧‧ first touch area
111‧‧‧第一電極 111‧‧‧First electrode
111a‧‧‧第一子電極 111a‧‧‧First subelectrode
111b‧‧‧第二子電極 111b‧‧‧Second subelectrode
112‧‧‧第二電極 112‧‧‧second electrode
113、123‧‧‧絕緣襯墊 113, 123‧‧‧Insulation liner
120、120’‧‧‧第二觸控區 120, 120'‧‧‧Second touch area
121‧‧‧第三電極 121‧‧‧ third electrode
121a‧‧‧第三子電極 121a‧‧‧ third subelectrode
121b‧‧‧第四子電極 121b‧‧‧fourth subelectrode
122‧‧‧第四電極 122‧‧‧fourth electrode
130、130’‧‧‧第一觸控摺疊區 130, 130'‧‧‧ first touch folding area
131‧‧‧第一補償電極 131‧‧‧First compensation electrode
131a‧‧‧第一補償子電極 131a‧‧‧First compensator electrode
131b‧‧‧第二補償子電極 131b‧‧‧Second compensator electrode
132‧‧‧第二補償電極 132‧‧‧Second compensation electrode
132a‧‧‧第三補償子電極 132a‧‧‧third compensator electrode
132b‧‧‧第四補償子電極 132b‧‧‧fourth compensator electrode
133‧‧‧電性連結區 133‧‧‧Electrical connection area
134‧‧‧非電性連結區 134‧‧‧Non-electrical connection zone
140‧‧‧第三觸控區 140‧‧‧The third touch area
141‧‧‧第五電極 141‧‧‧ fifth electrode
142‧‧‧第六電極 142‧‧‧ sixth electrode
150‧‧‧第二觸控摺疊區 150‧‧‧Second touch folding area
160‧‧‧第四觸控區 160‧‧‧The fourth touch area
161‧‧‧第七電極 161‧‧‧ seventh electrode
162‧‧‧第八電極 162‧‧‧ eighth electrode
170‧‧‧第三觸控摺疊區 170‧‧‧The third touch folding area
200‧‧‧顯示面板 200‧‧‧ display panel
210‧‧‧第一顯示面板 210‧‧‧First display panel
220‧‧‧第二顯示面板 220‧‧‧Second display panel
300‧‧‧絕緣單元 300‧‧‧Insulation unit
310‧‧‧第一絕緣單元 310‧‧‧First insulation unit
320‧‧‧第二絕緣單元 320‧‧‧Second insulation unit
330‧‧‧第三絕緣單元 330‧‧‧3rd insulation unit
340‧‧‧第四絕緣單元 340‧‧‧fourth insulation unit
圖1A為本揭露之觸控面板未摺疊示意圖。 FIG. 1A is a schematic view showing the unfolded touch panel of the present disclosure.
圖1B為本揭露之觸控面板摺疊示意圖。 FIG. 1B is a schematic view showing the folding of the touch panel of the present disclosure.
圖1C為本揭露之觸控面板摺疊剖視圖。 1C is a cross-sectional view of the touch panel of the present disclosure.
圖2A為本揭露一實施例之觸控面板的示意圖。 2A is a schematic diagram of a touch panel according to an embodiment of the present disclosure.
圖2B是圖2A之觸控面板的局部放大圖。 2B is a partial enlarged view of the touch panel of FIG. 2A.
圖2C是圖2A之觸控面板沿剖線I-I’之剖視圖。 2C is a cross-sectional view of the touch panel of FIG. 2A taken along line I-I'.
圖3A為本揭露另一實施例之觸控面板的示意圖。 FIG. 3A is a schematic diagram of a touch panel according to another embodiment of the disclosure.
圖3B是圖3A之觸控面板的局部放大圖。 FIG. 3B is a partial enlarged view of the touch panel of FIG. 3A.
圖3C是圖3A之觸控面板沿剖線I-I’之剖視圖。 3C is a cross-sectional view of the touch panel of FIG. 3A taken along line I-I'.
圖4A為本揭露又一實施例之觸控面板的示意圖。 FIG. 4A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure.
圖4B是圖4A之觸控面板的局部放大圖。 4B is a partial enlarged view of the touch panel of FIG. 4A.
圖4C是圖4A之觸控面板沿剖線I-I’之剖視圖。 4C is a cross-sectional view of the touch panel of FIG. 4A taken along line I-I'.
圖5A為本揭露再一實施例之觸控面板的示意圖。 FIG. 5A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure.
圖5B是圖5A之觸控面板的局部放大圖。 FIG. 5B is a partial enlarged view of the touch panel of FIG. 5A.
圖5C是圖5A之觸控面板沿剖線I-I’之剖視圖。 Figure 5C is a cross-sectional view of the touch panel of Figure 5A taken along line I-I'.
圖6A為本揭露另一實施例之觸控面板的示意圖。 FIG. 6A is a schematic diagram of a touch panel according to another embodiment of the disclosure.
圖6B是圖6A之觸控面板的局部放大圖。 FIG. 6B is a partial enlarged view of the touch panel of FIG. 6A.
圖6C是圖6A之觸控面板沿剖線I-I’之剖視圖。 Figure 6C is a cross-sectional view of the touch panel of Figure 6A taken along line I-I'.
圖7A為本揭露又一實施例之觸控面板的示意圖。 FIG. 7A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure.
圖7B是圖7A之觸控面板的局部放大圖。 FIG. 7B is a partial enlarged view of the touch panel of FIG. 7A.
圖7C是圖7A之觸控面板沿剖線I-I’之剖視圖。 Figure 7C is a cross-sectional view of the touch panel of Figure 7A taken along line I-I'.
圖8A為本揭露再一實施例之觸控面板的示意圖。 FIG. 8A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure.
圖8B是圖8A之觸控面板的局部放大圖。 FIG. 8B is a partial enlarged view of the touch panel of FIG. 8A.
圖8C是圖8A之觸控面板沿剖線I-I’之剖視圖。 Figure 8C is a cross-sectional view of the touch panel of Figure 8A taken along line I-I'.
圖9至圖12為本揭露之觸控面板的觸控區配置示意圖。 9 to FIG. 12 are schematic diagrams showing the configuration of a touch area of a touch panel according to the present disclosure.
圖13A至圖13D為本揭露之觸控面板的觸控摺疊區配置示意圖。 13A to FIG. 13D are schematic diagrams showing the configuration of a touch folding area of the touch panel of the present disclosure.
圖14A至圖14I為本揭露之觸控顯示裝置之可能剖視圖。 14A to 14I are schematic cross-sectional views of the touch display device of the present disclosure.
圖15A至圖15L為本揭露之雙面觸控顯示裝置之可能剖視圖。 15A to 15L are schematic cross-sectional views of the double-sided touch display device of the present disclosure.
圖1A為本揭露之觸控面板未摺疊示意圖、圖1B為本揭露之觸控面板摺疊示意圖,圖1C為本揭露之觸控面板摺疊剖視圖。一般而言,在使用觸控面板10a時,觸控面板10a可依圖1A所示以未摺疊的情況使用,其中第一觸控摺疊區130位於第一觸控區110與第二觸控區120之間;另一方面,在使用觸控面板10a時,觸控面板10a亦可依圖1B所示以摺疊的 情況使用,其中第一觸控摺疊區130呈現摺疊的狀態;進一步而言,觸控面板10a更可摺疊至如圖1C所示。由此,本揭露之觸控面板10a,主要提出在第一觸控摺疊區130中的各種電極設計,例如採用無橋接式的電極設計,所謂無橋接式的電極設計是指不同的電極彼此無相交,因此無需設置絕緣襯墊於不同的電極間作為電性絕緣,也就是說,同一條電極並無需於與絕緣襯墊交疊的部分以橋接的方式連接。據此可使觸控面板10a於第一觸控摺疊區130中的電極在長時間的彎曲或摺疊的使用下,其電極結構可能較不易遭受破壞;其中,無橋接式的電極設計可利用第一觸控摺疊區130兩側的第一觸控區110與第二觸控區120中的電極延伸配置而成,例如第一觸控區110與第二觸控區120彼此電極為交錯方式設計,由此可加強於第一觸控摺疊區130中的觸控感測效果;再者,於第一觸控摺疊區130中的電極可採用延展性較高之導電材料製作,如此一來,可使觸控面板10a於第一觸控摺疊區130中的電極可在長時間的彎曲或摺疊的使用下,其中電極結構可能較不易遭受破壞。以下,將以各種實施例具體舉例說明。 1A is a schematic view showing the unfolded touch panel of the present disclosure, FIG. 1B is a schematic cross-sectional view of the touch panel of the present disclosure, and FIG. 1C is a cross-sectional view of the touch panel of the present disclosure. In general, when the touch panel 10a is used, the touch panel 10a can be used in an unfolded manner as shown in FIG. 1A, wherein the first touch folding area 130 is located in the first touch area 110 and the second touch area. 120; on the other hand, when the touch panel 10a is used, the touch panel 10a can also be folded as shown in FIG. 1B. The situation is used, wherein the first touch folding area 130 assumes a folded state; further, the touch panel 10a is more foldable as shown in FIG. 1C. Therefore, the touch panel 10a of the present disclosure mainly proposes various electrode designs in the first touch fold region 130, for example, using a bridgeless electrode design, and the so-called bridgeless electrode design means that different electrodes are not connected to each other. Intersecting, therefore, it is not necessary to provide an insulating spacer as electrical insulation between the different electrodes, that is, the same electrode does not need to be connected in a bridging manner at a portion overlapping the insulating spacer. Therefore, the electrode structure of the touch panel 10a in the first touch fold region 130 may be less susceptible to damage under the use of a long time bending or folding; wherein the bridgeless electrode design can utilize the first The electrodes in the first touch area 110 and the second touch area 120 are disposed in an interlaced manner. For example, the electrodes of the first touch area 110 and the second touch area 120 are alternately arranged. Therefore, the touch sensing effect in the first touch folding area 130 can be enhanced; further, the electrodes in the first touch folding area 130 can be made of a conductive material having higher ductility, so that The electrodes of the touch panel 10a in the first touch fold region 130 can be used under long-term bending or folding, wherein the electrode structure may be less susceptible to damage. Hereinafter, specific examples will be exemplified in various embodiments.
圖2A為本揭露一實施例之觸控面板的示意圖。圖2B是圖2A之觸控面板的局部放大圖。圖2C是圖2A之觸控面板沿剖線I-I’之剖視圖。請參考圖2A、圖2B以及圖2C,本實施例之觸控面板10a包括一基板100、多條第一電極111、多條第二電極112、多條第三電極121以及多條第四電極122。 2A is a schematic diagram of a touch panel according to an embodiment of the present disclosure. 2B is a partial enlarged view of the touch panel of FIG. 2A. 2C is a cross-sectional view of the touch panel of FIG. 2A taken along line I-I'. Referring to FIG. 2A, FIG. 2B and FIG. 2C, the touch panel 10a of the present embodiment includes a substrate 100, a plurality of first electrodes 111, a plurality of second electrodes 112, a plurality of third electrodes 121, and a plurality of fourth electrodes. 122.
詳細來說,基板100包括一第一觸控區110、一第二觸控區120以及一第一觸控摺疊區130,第一觸控摺疊區130設置於第一觸控區110與第二觸控區120之間。多條第一電極111以及多條第二電極112配置於基板 100上的第一觸控區110,第一電極111以及第二電極112彼此相交。多條第三電極121以及多條第四電極122配置於基板100上的第二觸控區120,第三電極121以及第四電極122彼此相交。其中,第一觸控區110與第二觸控區120之間的距離D為介於3.14公厘至47.1公厘之間,且觸控面板10a的其中一邊長介於40公厘至300公厘之間,另一邊長介於30公厘至225公厘之間。據此,觸控面板10a的任一邊長、與第一觸控區110與第二觸控區120之間的距離D的比值為介於9.5至95之間。 In detail, the substrate 100 includes a first touch area 110, a second touch area 120, and a first touch fold area 130. The first touch fold area 130 is disposed on the first touch area 110 and the second touch area. Between the touch areas 120. The plurality of first electrodes 111 and the plurality of second electrodes 112 are disposed on the substrate The first touch region 110 on the 100, the first electrode 111 and the second electrode 112 intersect each other. The plurality of third electrodes 121 and the plurality of fourth electrodes 122 are disposed on the second touch region 120 on the substrate 100, and the third electrode 121 and the fourth electrode 122 intersect each other. The distance D between the first touch area 110 and the second touch area 120 is between 3.14 mm and 47.1 mm, and one side of the touch panel 10a is between 40 mm and 300 mm long. The other side is between 30 mm and 225 mm long. Accordingly, the ratio of the length of either side of the touch panel 10a to the distance D between the first touch area 110 and the second touch area 120 is between 9.5 and 95.
在本實施例中,觸控面板10a中的第一電極111更由第一觸控區110延伸至第一觸控摺疊區130,第三電極121更由第二觸控區120延伸至第一觸控摺疊區130,且第一電極111與第三電極121彼此無相交;例如,第一電極111與第三電極121於第一觸控摺疊區130彼此交錯設置。藉由第一電極111與第三電極121於第一觸控摺疊區130彼此交錯的設置,可改變第一電極111與第三電極121的互容之電容值,進而使第一電極111以及第三電極121可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 In this embodiment, the first electrode 111 of the touch panel 10a extends from the first touch area 110 to the first touch fold area 130, and the third electrode 121 extends from the second touch area 120 to the first The first electrode 111 and the third electrode 121 are not intersected with each other. For example, the first electrode 111 and the third electrode 121 are staggered with each other in the first touch fold region 130. The capacitance between the first electrode 111 and the third electrode 121 can be changed by the arrangement in which the first electrode 111 and the third electrode 121 are staggered with each other in the first touch folding region 130, thereby making the first electrode 111 and the first electrode The three electrodes 121 can have a good capacitance matching effect for good touch sensing purposes.
在此需說明的是,第一觸控摺疊區130也可包括至少一非觸控區。換句話說,第一電極111以及第三電極121可依觸控區域的使用需求,選擇性的於第一觸控摺疊區130中作局部的電極配置。以下為方便描述,以第一觸控摺疊區130中皆為觸控區的配置圖式說明,但並不用以限定本揭露。 It should be noted that the first touch folding area 130 may also include at least one non-touch area. In other words, the first electrode 111 and the third electrode 121 can be selectively used in the first touch fold region 130 as a partial electrode configuration according to the use requirements of the touch region. The following is a description of the configuration of the first touch folding area 130, which is a touch area, but is not intended to limit the disclosure.
進一步而言,在本實施例中,觸控面板10a的各第一電極111於第一觸控摺疊區130更包含至少一第一子電極111a,各第一子電極111a由 第一電極111往相鄰之第三電極121方向延伸。並且,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,第三子電極121a由第三電極121往相鄰之第一電極111方向延伸。其中,第一子電極111a與第三子電極121a彼此無相交;例如,第一子電極111a與第三子電極121a於第一觸控摺疊區130彼此交錯設置。藉由第一子電極111a與第三子電極121a於第一觸控摺疊區130彼此交錯的設置,可改變第一電極111與第三電極121的互容之電容值,進而使第一電極111與第三電極121可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in this embodiment, each of the first electrodes 111 of the touch panel 10a further includes at least one first sub-electrode 111a, and each of the first sub-electrodes 111a is The first electrode 111 extends in the direction of the adjacent third electrode 121. The third electrode 121 further includes at least one third sub-electrode 121a in the first touch fold region 130, and the third sub-electrode 121a extends from the third electrode 121 toward the adjacent first electrode 111. The first sub-electrode 111a and the third sub-electrode 121a do not intersect each other. For example, the first sub-electrode 111a and the third sub-electrode 121a are staggered with each other in the first touch fold region 130. The capacitance values of the mutual capacitances of the first electrode 111 and the third electrode 121 can be changed by the arrangement in which the first sub-electrode 111a and the third sub-electrode 121a are staggered with each other in the first touch folding region 130, thereby making the first electrode 111 The third electrode 121 can have a good capacitance matching effect for good touch sensing purposes.
除此之外,上述之彼此相交的第一電極111與第二電極112之間、以及彼此相交的第三電極121以及第四電極122之間更包含有一絕緣襯墊113、123,絕緣襯墊113、123可作為第一電極111與第二電極112之間的電性絕緣之用途,以及第三電極121以及第四電極122之間的電性絕緣之用途,後續將省略不再贅述。 In addition, the insulating layer 113, 123 is further included between the first electrode 111 and the second electrode 112 and the third electrode 121 and the fourth electrode 122 intersecting each other. 113, 123 can be used as the electrical insulation between the first electrode 111 and the second electrode 112, and the electrical insulation between the third electrode 121 and the fourth electrode 122, and will not be described again.
需說明的是,如圖2A、圖2B以及圖2C中所示的所有電極之形狀以及數量僅為說明用途,並不用以限定本揭露;電極可以為條狀電極的串列或為菱形狀電極的串列,且子電極的形狀可以為條狀、三邊形或者是其他任意的多邊形。再者,如圖2A、圖2B以及圖2C中所示的第一觸控區110與第二觸控區120的大小以及形狀僅為說明用途,並不用以限定本揭露;第一觸控區110與第二觸控區120的大小可以為相同或不同,且第一觸控區110與第二觸控區120的形狀可以為矩形、三邊形或者是其他任意的多邊形。以下為方便描述,將以所有電極以及所有子電極皆為條狀、觸控區的形狀皆為矩形之示意圖來舉例說明。 It should be noted that the shapes and the numbers of all the electrodes shown in FIG. 2A, FIG. 2B and FIG. 2C are for illustrative purposes only and are not intended to limit the disclosure; the electrodes may be a series of strip electrodes or a diamond shaped electrode. The string is arranged, and the shape of the sub-electrode may be a strip, a triangle, or any other polygon. The size and shape of the first touch area 110 and the second touch area 120 as shown in FIG. 2A, FIG. 2B and FIG. 2C are for illustrative purposes only, and are not intended to limit the disclosure; the first touch area The size of the first touch area 110 and the second touch area 120 may be rectangular, triangular, or any other polygonal shape. Hereinafter, for convenience of description, a schematic diagram in which all electrodes and all sub-electrodes are strip-shaped and the shape of the touch area is rectangular will be exemplified.
在本實施例中,設置於第一觸控摺疊區130中的電極,可選自由金屬網格(mesh)層、奈米導電材料層、透明導電氧化(TCO)層、高分子導電層及其組合所組成之族群。例如:奈米導電材料層可包括奈米碳管(CNT)以及奈米銀線(Agnws),透明導電氧化層可包括氧化銦錫(ITO)、摻鋁氧化鋅(AZO)、氧化鋅(ZnO)、摻鎵氧化鋅(GZO)、氧化銦(ln2O3)、氧化銦鋅(IZO)、二氧化鈦(TiO2)、摻氟氧化錫(FTO)、二氧化錫(SnO2)、氧化鎘(CdO),高分子導電層可包括聚二氧乙基噻吩/聚苯乙烯磺酸(PEDOT:PSS)。如此一來,無論使用單層材料或複數層材料作為電極,因所使用的材料皆具有良好延展性之特性,由此可有助於觸控面板在多次的彎曲或摺疊使用下,第一觸控摺疊區130中的電極結構可較不易受到破壞,進而使其具有較佳的耐用度;並且,當使用複數層材料作為電極時,還可有效降低電極的阻抗,以達到良好的觸控感測之效果。 In this embodiment, the electrodes disposed in the first touch fold region 130 are optionally free of a metal mesh layer, a nano conductive material layer, a transparent conductive oxide (TCO) layer, a polymer conductive layer, and The group formed by the combination. For example, the nano conductive material layer may include carbon nanotubes (CNT) and nano silver wires (Agnws), and the transparent conductive oxide layer may include indium tin oxide (ITO), aluminum-doped zinc oxide (AZO), and zinc oxide (ZnO). , gallium-doped zinc oxide (GZO), indium oxide (ln 2 O 3 ), indium zinc oxide (IZO), titanium dioxide (TiO2), fluorine-doped tin oxide (FTO), tin dioxide (SnO 2 ), cadmium oxide ( CdO), the polymer conductive layer may include polydioxyethylthiophene/polystyrenesulfonic acid (PEDOT:PSS). In this way, whether a single layer material or a plurality of layers of material is used as the electrode, since the materials used have good ductility characteristics, the touch panel can be used for multiple times of bending or folding, first. The electrode structure in the touch folding area 130 can be less damaged, so that it has better durability; and when a plurality of layers of material are used as electrodes, the impedance of the electrode can be effectively reduced to achieve good touch. The effect of sensing.
基於上述,本實施例的觸控面板10a中,彼此相交的第一電極111與第二電極112是分別配置在基板100上的第一觸控區110,彼此相交的第三電極121與第四電極122是配置在基板100上的第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10a即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。另一方面,第一電極111與第三電極121更分別由第一觸控區110以及第二觸控區120延伸至第一觸控摺疊區130,並且在第一觸控摺疊區130彼此交錯設置;據此,觸控面板10a在第一觸控摺疊區130中即使無彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121與第四電極122的配置,仍可具有良好的觸控感測之效果。更進一 步來說,觸控面板10a的各第一電極111於第一觸控摺疊區130更包含至少一第一子電極111a,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,且第一子電極111a與第三子電極121a於第一觸控摺疊區130彼此交錯設置;由此可使觸控面板10a更具有良好的觸控感測之效果,進而提高其觸控感測之穩定性。 In the touch panel 10a of the present embodiment, the first electrode 111 and the second electrode 112 intersecting each other are the first touch regions 110 respectively disposed on the substrate 100, and the third electrodes 121 and fourth intersecting each other. The electrode 122 is a second touch area 120 disposed on the substrate 100. In other words, the first touch fold area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10a is bent even a plurality of times or When folded, the electrode structure can be less susceptible to damage, thereby making it more durable. On the other hand, the first electrode 111 and the third electrode 121 extend from the first touch area 110 and the second touch area 120 to the first touch fold area 130, respectively, and are interlaced with each other in the first touch fold area 130. According to the configuration, the touch panel 10a is disposed in the first touch fold region 130 even without the first electrode 111 and the second electrode 112 intersecting each other, and the third electrode 121 and the fourth electrode 122 intersecting each other. Can have a good touch sensing effect. Further one For example, each of the first electrodes 111 of the touch panel 10a further includes at least one first sub-electrode 111a, and each of the third electrodes 121 further includes at least one of the first touch folds 130. The third sub-electrode 121a and the first sub-electrode 111a and the third sub-electrode 121a are alternately arranged with each other in the first touch folding area 130; thereby, the touch panel 10a can have a better touch sensing effect, thereby improving The stability of its touch sensing.
圖3A為本揭露另一實施例之觸控面板的示意圖。圖3B是圖3A之觸控面板的局部放大圖。圖3C是圖3A之觸控面板沿剖線I-I’之剖視圖。請參考圖3A、圖3B以及圖3C,在本實施例中,觸控面板10b與觸控面板10a相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10b與觸控面板10a的主要差別在於,觸控面板10b更包括一第一補償電極131。第一補償電極131配置於第一觸控摺疊區130中,且介於第一電極111與第三電極121之間。 FIG. 3A is a schematic diagram of a touch panel according to another embodiment of the disclosure. FIG. 3B is a partial enlarged view of the touch panel of FIG. 3A. 3C is a cross-sectional view of the touch panel of FIG. 3A taken along line I-I'. Referring to FIG. 3A, FIG. 3B and FIG. 3C, in the present embodiment, the touch panel 10b is similar to the touch panel 10a, and similar components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10b and the touch panel 10a is that the touch panel 10b further includes a first compensation electrode 131. The first compensation electrode 131 is disposed in the first touch fold region 130 and is interposed between the first electrode 111 and the third electrode 121 .
在本實施例中,觸控面板10b中的第一補償電極131更包含多條第一補償子電極131a,一部分的第一補償子電極131a由第一補償電極131往第一觸控區110方向延伸,且介於相鄰的第一電極111之間;另一部分第一補償子電極131a由第一補償電極131往第二觸控區120方向延伸,且介於相鄰的第三電極121之間。換句話說,各第一補償子電極131a分別與第一電極111以及第三電極121彼此交錯配置。藉由第一電極111、第三電極121以及第一補償子電極131a於第一觸控摺疊區130彼此交錯的設置,可改變第一電極111、第三電極121以及第一補償子電極131a的互容之電容值,進而使第一電極111、第三電極121以及第一補償子電極131a可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 In this embodiment, the first compensation electrode 131 in the touch panel 10b further includes a plurality of first compensation sub-electrodes 131a, and a portion of the first compensation sub-electrodes 131a are directed from the first compensation electrode 131 to the first touch area 110. And extending between the adjacent first electrodes 111; the other portion of the first compensation sub-electrodes 131a extending from the first compensation electrode 131 toward the second touch region 120 and interposed between the adjacent third electrodes 121 between. In other words, each of the first compensating sub-electrodes 131a is alternately arranged with the first electrode 111 and the third electrode 121, respectively. The first electrode 111, the third electrode 121, and the first compensation sub-electrode 131a are alternately arranged with each other, and the first electrode 111, the third electrode 121, and the first compensation sub-electrode 131a can be changed. The capacitance values of the mutual capacitances further enable the first electrode 111, the third electrode 121, and the first compensation sub-electrode 131a to have a good capacitance matching effect for good touch sensing purposes.
進一步而言,在本實施例中,觸控面板10b的各第一電極111於第一觸控摺疊區130更包含至少一第一子電極111a,一部份第一補償子電極131a介於第一子電極111a與第一電極111之間。並且,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,另一部份第一補償子電極131a介於第三子電極121a與第三電極121之間。換句話說,各第一補償子電極131a分別與第一電極111以及第一子電極111a彼此交錯配置,或與第三電極121以及第三子電極121a彼此交錯配置。藉由第一電極111、第一子電極111a、第三電極121、第三子電極121a以及第一補償子電極131a於第一觸控摺疊區130彼此交錯的設置,可更為使第一電極111、第三電極121以及第一補償子電極131a可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in this embodiment, each of the first electrodes 111 of the touch panel 10b further includes at least one first sub-electrode 111a, and a portion of the first compensating sub-electrode 131a is interposed. A sub-electrode 111a is interposed between the first electrode 111 and the first electrode 111. The third electrode 121 further includes at least one third sub-electrode 121a in the first touch fold region 130, and the other portion of the first compensator electrode 131a is interposed between the third sub-electrode 121a and the third electrode 121. In other words, each of the first compensating sub-electrodes 131a is alternately arranged with the first electrode 111 and the first sub-electrode 111a, or is alternately arranged with the third electrode 121 and the third sub-electrode 121a. The first electrode 111, the first sub-electrode 111a, the third electrode 121, the third sub-electrode 121a, and the first compensating sub-electrode 131a are interdigitated with each other in the first touch folding region 130, so that the first electrode can be further 111. The third electrode 121 and the first compensation sub-electrode 131a can have good capacitance matching effects for good touch sensing purposes.
如此一來,本實施例的觸控面板10b中,彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121與第四電極122是分別配置在基板100上的第一觸控區110以及第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10b即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。另一方面,第一補償電極131更包含多條第一補償子電極131a,各第一補償子電極131a分別與第一電極111以及第三電極121彼此交錯配置;據此,觸控面板10b在第一觸控摺疊區130中藉由第一電極111、第三電極121以及第一補償子電極131a於第一觸控摺疊區130彼此交錯的設置,可達到良好的觸控感測之效果。更進一步來說,觸控面板10b的各第一電極111於第一觸控摺疊區130更包含至少一第一子電極111a,各第三 電極121於第一觸控摺疊區130更包含至少一第三子電極121a,且各第一補償子電極131a與第一電極111以及第一子電極111a彼此交錯配置,或與第三電極121以及第三子電極121a彼此交錯配置;由此可使觸控面板10b更具有良好的觸控感測之效果,進而提高其觸控感測之穩定性。 In this manner, in the touch panel 10b of the present embodiment, the first electrode 111 and the second electrode 112 that intersect each other, and the third electrode 121 and the fourth electrode 122 that intersect each other are first disposed on the substrate 100, respectively. The touch area 110 and the second touch area 120, in other words, the first touch folding area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10b is used even after multiple bending or folding. The electrode structure can be less susceptible to damage, thereby providing better durability. On the other hand, the first compensation electrode 131 further includes a plurality of first compensation sub-electrodes 131a, and each of the first compensation sub-electrodes 131a is alternately arranged with the first electrode 111 and the third electrode 121; accordingly, the touch panel 10b is In the first touch fold region 130, the first touch electrodes 111, the third electrodes 121, and the first compensation sub-electrodes 131a are interlaced with each other in the first touch fold region 130, so that a good touch sensing effect can be achieved. Further, each of the first electrodes 111 of the touch panel 10b further includes at least one first sub-electrode 111a, and each third The electrode 121 further includes at least one third sub-electrode 121a in the first touch fold region 130, and each of the first compensating sub-electrodes 131a and the first electrode 111 and the first sub-electrode 111a are alternately arranged with each other, or with the third electrode 121 and The third sub-electrodes 121a are alternately arranged with each other; thus, the touch panel 10b can have a better touch sensing effect, thereby improving the stability of the touch sensing.
圖4A為本揭露又一實施例之觸控面板的示意圖。圖4B是圖4A之觸控面板的局部放大圖。圖4C是圖4A之觸控面板沿剖線I-I’之剖視圖。請參考圖4A、圖4B以及圖4C,在本實施例中,觸控面板10c與觸控面板10b相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10c與觸控面板10b的主要差別在於,觸控面板10c更包括多條第二補償子電極131b,一部分的第二補償子電極131b由第一補償子電極131a往第一子電極111a與第一電極111之間方向延伸,且介於相鄰的第一電極111與第一子電極111a之間;另一部分第二補償子電極131b由第一補償子電極131a往第三子電極121a與第三電極121之間方向延伸,且介於相鄰的第三電極121與第三子電極121a之間。 FIG. 4A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure. 4B is a partial enlarged view of the touch panel of FIG. 4A. 4C is a cross-sectional view of the touch panel of FIG. 4A taken along line I-I'. Referring to FIG. 4A, FIG. 4B and FIG. 4C, in the present embodiment, the touch panel 10c is similar to the touch panel 10b, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the touch panel 10c and the touch panel 10b is that the touch panel 10c further includes a plurality of second compensation sub-electrodes 131b, and a portion of the second compensation sub-electrodes 131b are from the first compensation sub-electrode 131a to the first sub-electrode. 111a extends between the first electrode 111 and between the adjacent first electrode 111 and the first sub-electrode 111a; the other portion of the second compensating sub-electrode 131b passes from the first compensating sub-electrode 131a to the third sub-electrode The direction between the 121a and the third electrode 121 extends between the adjacent third electrode 121 and the third sub-electrode 121a.
進一步而言,在本實施例中,觸控面板10c中的各第一電極111於第一觸控摺疊區130更包含多條第二子電極111b,一部分第二子電極111b由第一電極111往相鄰的第一補償子電極131a方向延伸,另一部分第二子電極111b由第一子電極111a往相鄰的第一補償子電極131a方向延伸;各第三電極121於第一觸控摺疊區130更包含多條第四子電極121b,一部分第四子電極121b由第二電極112往相鄰的第一補償子電極131a方向延伸,另一部分第四子電極121b由第三子電極121a往相鄰的第一補償子電極131a方向延伸;例如,各第二子電極111b與各第二補償子電極131b彼此 交錯設置,各第四子電極121b與各第二補償子電極131b彼此交錯設置。藉由各第二子電極111b、各第四子電極121b與各第二補償子電極131b於第一觸控摺疊區130彼此交錯的設置,可改變第一電極111、第三電極121以及第一補償電極131的互容之電容值,進而使第一電極111、第三電極121以及第一補償電極131可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in the embodiment, each of the first electrodes 111 of the touch panel 10c further includes a plurality of second sub-electrodes 111b, and a portion of the second sub-electrodes 111b are formed by the first electrodes 111. The first sub-electrode 111b extends from the first sub-electrode 111a toward the adjacent first compensating sub-electrode 131a; the third electrode 121 is folded in the first touch. The region 130 further includes a plurality of fourth sub-electrodes 121b, and a portion of the fourth sub-electrodes 121b extend from the second electrode 112 toward the adjacent first compensating sub-electrode 131a, and the other portion of the fourth sub-electrode 121b is moved from the third sub-electrode 121a. Adjacent first compensating sub-electrodes 131a extend in direction; for example, each of the second sub-electrodes 111b and each of the second compensating sub-electrodes 131b are mutually Interleaved, each of the fourth sub-electrodes 121b and each of the second compensating sub-electrodes 131b are alternately arranged. The first electrode 111, the third electrode 121, and the first electrode can be changed by the arrangement in which the second sub-electrodes 111b, the fourth sub-electrodes 121b, and the second compensating sub-electrodes 131b are interlaced with each other in the first touch folding region 130. The capacitance values of the mutual capacitance of the compensation electrode 131 can further enable the first electrode 111, the third electrode 121, and the first compensation electrode 131 to have a good capacitance matching effect, so as to achieve good touch sensing.
本實施例的觸控面板10c中,彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121以及第四電極122是分別配置在基板100上的第一觸控區110以及第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10c即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。更進一步來說,觸控面板10c更包括多條第二補償子電極131b,各第一電極111於第一觸控摺疊區130更包含多條第二子電極111b,且各第三電極121於第一觸控摺疊區130更包含多條第四子電極121b;其中,各第二子電極111b與各第二補償子電極131b彼此交錯設置,各第四子電極121b與各第二補償子電極131b彼此交錯設置。如此一來,觸控面板10c在第一觸控摺疊區130中藉由各第二子電極111b與各第二補償子電極131b之間、以及各第四子電極121b與各第二補償子電極131b之間彼此交錯的設置,可達到良好的觸控感測之效果,且提高其觸控感測之穩定性。 In the touch panel 10c of the present embodiment, the first electrode 111 and the second electrode 112 intersecting each other, and the third electrode 121 and the fourth electrode 122 intersecting each other are the first touch regions 110 respectively disposed on the substrate 100. And the second touch area 120, in other words, the first touch fold area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10c can be compared with the electrode structure even when used for multiple times of bending or folding. It is not easily damaged, which in turn makes it more durable. Further, the touch panel 10c further includes a plurality of second compensation sub-electrodes 131b. Each of the first electrodes 111 further includes a plurality of second sub-electrodes 111b in the first touch-folding region 130, and each of the third electrodes 121 is The first touch folding area 130 further includes a plurality of fourth sub-electrodes 121b; wherein each of the second sub-electrodes 111b and each of the second compensating sub-electrodes 131b are alternately arranged with each other, and each of the fourth sub-electrodes 121b and each of the second compensating sub-electrodes The 131b are staggered with each other. In this manner, the touch panel 10c is disposed between the second sub-electrodes 111b and the second compensating sub-electrodes 131b, and the fourth sub-electrodes 121b and the second compensating sub-electrodes in the first touch folding region 130. The interlaced settings between the 131bs can achieve a good touch sensing effect and improve the stability of the touch sensing.
圖5A為本揭露再一實施例之觸控面板的示意圖。圖5B是圖5A之觸控面板的局部放大圖。圖5C是圖5A之觸控面板沿剖線I-I’之剖視圖。請參考圖5A、圖5B以及圖5C,在本實施例中,觸控面板10d與觸控面板 10b相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10d與觸控面板10b的主要差別在於,觸控面板10d更包括一第二補償電極132。第二補償電極132配置於第一觸控摺疊區130中,且介於第一補償電極131與第三電極121之間。 FIG. 5A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure. FIG. 5B is a partial enlarged view of the touch panel of FIG. 5A. Figure 5C is a cross-sectional view of the touch panel of Figure 5A taken along line I-I'. Referring to FIG. 5A , FIG. 5B and FIG. 5C , in the embodiment, the touch panel 10 d and the touch panel 10b is similar, and the same components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10d and the touch panel 10b is that the touch panel 10d further includes a second compensation electrode 132. The second compensation electrode 132 is disposed in the first touch fold region 130 and between the first compensation electrode 131 and the third electrode 121 .
第一補償電極131與第二補償電極132之間的距離A可介於0.01公厘至5公厘之間。藉由第一補償電極131與第二補償電極132間的距離A中無任何的電極設置,由此可使觸控面板10d在多次的彎曲或摺疊使用下,第一觸控摺疊區130中的電極結構可能較不易破壞,進而使其具有較佳的耐用度。 The distance A between the first compensation electrode 131 and the second compensation electrode 132 may be between 0.01 mm and 5 mm. By the absence of any electrode arrangement in the distance A between the first compensation electrode 131 and the second compensation electrode 132, the touch panel 10d can be used in the first touch folding area 130 in a plurality of bending or folding applications. The electrode structure may be less susceptible to damage, thereby providing better durability.
在本實施例中,觸控面板10d中的第一補償電極131更包含多條第一補償子電極131a,第一補償子電極131a由第一補償電極131往第一觸控區110方向延伸,且介於相鄰的第一電極111之間;第二補償電極132更包含多條第三補償子電極132a,第三補償子電極132a由第二補償電極132往第二觸控區120方向延伸,且介於相鄰的第三電極121之間。換句話說,各第一補償子電極131a與第一電極111彼此交錯配置,各第三補償子電極132a與第三電極121彼此交錯配置。藉由第一補償子電極131a與第一電極111彼此交錯的設置、第三補償子電極132a與第三電極121彼此交錯的設置,可改變第一電極111、第三電極121、第一補償子電極131a以及第三補償子電極132a的互容之電容值,進而使第一電極111、第三電極121、第一補償子電極131a以及第三補償子電極132a可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 In the present embodiment, the first compensation electrode 131 of the touch panel 10d further includes a plurality of first compensation sub-electrodes 131a, and the first compensation sub-electrode 131a extends from the first compensation electrode 131 toward the first touch area 110. The second compensation electrode 132 further includes a plurality of third compensation sub-electrodes 132a, and the third compensation sub-electrode 132a extends from the second compensation electrode 132 toward the second touch area 120. And between the adjacent third electrodes 121. In other words, each of the first compensating sub-electrodes 131a and the first electrodes 111 are alternately arranged, and each of the third compensating sub-electrodes 132a and the third electrodes 121 are alternately arranged. The first electrode 111, the third electrode 121, and the first compensator can be changed by the arrangement in which the first compensating sub-electrode 131a and the first electrode 111 are staggered with each other, and the third compensating sub-electrode 132a and the third electrode 121 are staggered with each other. The mutual capacitance values of the electrodes 131a and the third compensation sub-electrodes 132a further enable the first electrode 111, the third electrode 121, the first compensation sub-electrode 131a, and the third compensation sub-electrode 132a to have a good capacitance matching effect. Achieve good touch sensing purposes.
進一步而言,在本實施例中,觸控面板10d的各第一電極111於 第一觸控摺疊區130更包含至少一第一子電極111a,各第一補償子電極131a介於第一子電極111a與第一電極111之間。並且,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,各第三補償子電極132a介於第三子電極121a與第三電極121之間。換句話說,各第一補償子電極131a分別與第一電極111以及第一子電極111a彼此交錯配置,各第三補償子電極132a分別與第三電極121以及第三子電極121a彼此交錯配置。藉由各第一補償子電極131a分別與第一電極111以及第一子電極111a之間、各第三補償子電極132a分別與第三電極121以及第三子電極121a之間彼此交錯的設配置,可使第一電極111、第三電極121、第一補償電極131以及第二補償電極132具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in this embodiment, each of the first electrodes 111 of the touch panel 10d is The first touch folding area 130 further includes at least one first sub-electrode 111a, and each of the first compensating sub-electrodes 131a is interposed between the first sub-electrode 111a and the first electrode 111. Each of the third electrodes 121 further includes at least one third sub-electrode 121a, and each of the third compensating sub-electrodes 132a is interposed between the third sub-electrode 121a and the third electrode 121. In other words, each of the first compensating sub-electrodes 131a is alternately arranged with the first electrode 111 and the first sub-electrode 111a, and each of the third compensating sub-electrodes 132a is alternately arranged with the third electrode 121 and the third sub-electrode 121a. Arrangement between the first compensation sub-electrode 131a and the first electrode 111 and the first sub-electrode 111a, and each of the third compensation sub-electrodes 132a and the third electrode 121 and the third sub-electrode 121a The first electrode 111, the third electrode 121, the first compensation electrode 131, and the second compensation electrode 132 can have good capacitance matching effects for good touch sensing purposes.
如此一來,本實施例的觸控面板10d中,彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121以及第四電極122是分別配置在基板100上的第一觸控區110以及第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10d即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。並且,藉由第一補償電極131與第二補償電極132間的距離A中無任何的電極設置,由此可使觸控面板10d在多次的彎曲或摺疊使用下,第一觸控摺疊區130中的電極結構可能較不易破壞,進而使其具有較佳的耐用度。另一方面,第一補償電極131更包含多條第一補償子電極131a,第二補償電極132更包含多條第三補償子電極132a,各第一補償子電極131a與第一電極111彼此交錯配置,各第三補償子電極132a與第三電極121彼此交錯配置;據此,觸控面板10d在第一觸控摺疊區130中藉由各第一補 償子電極131a與第一電極111之間、各第三補償子電極132a與第三電極121之間彼此交錯的設置,可達到良好的觸控感測之效果。更進一步來說,觸控面板10d的各第一電極111於第一觸控摺疊區130更包含至少一第一子電極111a,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,且各第一補償子電極131a分別與第一電極111以及第一子電極111a彼此交錯配置,各第三補償子電極132a分別與第三電極121以及第三子電極121a彼此交錯配置;由此可使觸控面板10d更具有良好的觸控感測之效果,進而提高其觸控感測之穩定性。 In this manner, in the touch panel 10d of the present embodiment, the first electrode 111 and the second electrode 112 that intersect each other, and the third electrode 121 and the fourth electrode 122 that intersect each other are first disposed on the substrate 100, respectively. The touch area 110 and the second touch area 120, in other words, the first touch folding area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10d is used even under multiple bending or folding. The electrode structure can be less susceptible to damage, thereby providing better durability. Moreover, by the absence of any electrode arrangement in the distance A between the first compensation electrode 131 and the second compensation electrode 132, the touch panel 10d can be used in multiple bending or folding, the first touch folding area. The electrode structure in 130 may be less susceptible to damage, thereby providing better durability. On the other hand, the first compensation electrode 131 further includes a plurality of first compensation sub-electrodes 131a, and the second compensation electrode 132 further includes a plurality of third compensation sub-electrodes 132a, and each of the first compensation sub-electrodes 131a and the first electrodes 111 are interlaced with each other. The third compensation sub-electrode 132a and the third electrode 121 are alternately arranged with each other; accordingly, the touch panel 10d is supplemented by the first compensation in the first touch folding area 130. The arrangement between the sub-electrode 131a and the first electrode 111 and the third compensating sub-electrode 132a and the third electrode 121 are staggered with each other, so that a good touch sensing effect can be achieved. Further, each of the first electrodes 111 of the touch panel 10d further includes at least one first sub-electrode 111a, and each of the third electrodes 121 further includes at least one of the first touch folds 130. The third sub-electrode 121a, and each of the first compensating sub-electrodes 131a are alternately arranged with the first electrode 111 and the first sub-electrode 111a, and each of the third compensating sub-electrodes 132a and the third electrode 121 and the third sub-electrode 121a are respectively connected to each other. The staggered configuration can thereby make the touch panel 10d have a better touch sensing effect, thereby improving the stability of the touch sensing.
圖6A為本揭露另一實施例之觸控面板的示意圖。圖6B是圖6A之觸控面板的局部放大圖。圖6C是圖6A之觸控面板沿剖線I-I’之剖視圖。請參考圖6A、圖6B以及圖6C,在本實施例中,觸控面板10e與觸控面板10d相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10e與觸控面板10d的主要差別在於,觸控面板10e更包括多條第二補償子電極131b以及多條第四補償子電極132b,第二補償子電極131b由第一補償子電極131a往第一子電極111a與第一電極111方向延伸,且介於相鄰的第一子電極111a與第一電極111之間;第四補償子電極132b由第三補償子電極132a往第三子電極121a與第三電極121方向延伸,且介於相鄰的第三子電極121a與第三電極121之間。 FIG. 6A is a schematic diagram of a touch panel according to another embodiment of the disclosure. FIG. 6B is a partial enlarged view of the touch panel of FIG. 6A. Figure 6C is a cross-sectional view of the touch panel of Figure 6A taken along line I-I'. Referring to FIG. 6A, FIG. 6B and FIG. 6C, in the present embodiment, the touch panel 10e is similar to the touch panel 10d, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the touch panel 10e and the touch panel 10d is that the touch panel 10e further includes a plurality of second compensation sub-electrodes 131b and a plurality of fourth compensation sub-electrodes 132b, and the second compensation sub-electrode 131b is composed of the first compensator. The electrode 131a extends in the direction of the first sub-electrode 111a and the first electrode 111, and is interposed between the adjacent first sub-electrode 111a and the first electrode 111; the fourth compensating sub-electrode 132b is advanced from the third compensating sub-electrode 132a The three sub-electrodes 121a extend in the direction of the third electrode 121 and are interposed between the adjacent third sub-electrodes 121a and the third electrodes 121.
進一步而言,在本實施例中,觸控面板10e中的各第一電極111於第一觸控摺疊區130更包含多條第二子電極111b,一部分第二子電極111b由第一電極111往相鄰的第一補償子電極131a方向延伸,另一部分第二子電極111b由第一子電極111a往相鄰的第一補償子電極131a方向延伸;各 第三電極121於第一觸控摺疊區130更包含多條第四子電極121b,一部分第四子電極121b由第三電極121往相鄰的第三補償子電極132a方向延伸,另一部分第四子電極121b由第三子電極121a往相鄰的第三補償子電極132a方向延伸;例如,各第二子電極111b與各第二補償子電極131b彼此交錯設置,各第四子電極121b與各第四補償子電極132b彼此交錯設置,可改變第一電極111、第三電極121、第一補償電極131以及第二補償電極132的互容之電容值,進而使第一電極111、第三電極121、第一補償電極131以及第二補償電極132可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in the embodiment, each of the first electrodes 111 of the touch panel 10e further includes a plurality of second sub-electrodes 111b in the first touch fold region 130, and a portion of the second sub-electrodes 111b are configured by the first electrodes 111. The second sub-electrode 111b extends from the first sub-electrode 111a toward the adjacent first compensating sub-electrode 131a; The third electrode 121 further includes a plurality of fourth sub-electrodes 121b in the first touch fold region 130, and a portion of the fourth sub-electrodes 121b extends from the third electrode 121 toward the adjacent third compensating sub-electrode 132a, and the other portion is fourth. The sub-electrode 121b extends from the third sub-electrode 121a toward the adjacent third compensating sub-electrode 132a; for example, each of the second sub-electrodes 111b and each of the second compensating sub-electrodes 131b are alternately arranged with each other, and each of the fourth sub-electrodes 121b and each The fourth compensating sub-electrodes 132b are alternately arranged with each other, and the capacitance values of the mutual capacitances of the first electrode 111, the third electrode 121, the first compensating electrode 131, and the second compensating electrode 132 can be changed, thereby further making the first electrode 111 and the third electrode 121. The first compensation electrode 131 and the second compensation electrode 132 can have good capacitance matching effects for good touch sensing purposes.
本實施例的觸控面板10e中,彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121以及第四電極122是分別配置在基板100上的第一觸控區110以及第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10e即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。更進一步來說,觸控面板10e更包括多條第二補償子電極131b,各第一電極111於第一觸控摺疊區130更包含多條第二子電極111b,且各第三電極121於第一觸控摺疊區130更包含多條第四子電極121b;其中,各第二子電極111b與各第二補償子電極131b彼此交錯設置,各第四子電極121b與各第二補償子電極131b彼此交錯設置。如此一來,觸控面板10e在第一觸控摺疊區130中藉由各第二子電極111b與各第二補償子電極131b之間、以及各第四子電極121b與各第二補償子電極131b之間彼此交錯的設置,可達到良好的觸控感測之效果,且提高其觸控感測之穩定性。 In the touch panel 10e of the present embodiment, the first electrode 111 and the second electrode 112 intersecting each other, and the third electrode 121 and the fourth electrode 122 intersecting each other are the first touch regions 110 respectively disposed on the substrate 100. And the second touch area 120, in other words, the first touch folding area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10e can be compared with the electrode structure even when used for multiple bending or folding. It is not easily damaged, which in turn makes it more durable. Further, the touch panel 10e further includes a plurality of second compensation sub-electrodes 131b, each of the first electrodes 111 further includes a plurality of second sub-electrodes 111b in the first touch-folding region 130, and each of the third electrodes 121 is The first touch folding area 130 further includes a plurality of fourth sub-electrodes 121b; wherein each of the second sub-electrodes 111b and each of the second compensating sub-electrodes 131b are alternately arranged with each other, and each of the fourth sub-electrodes 121b and each of the second compensating sub-electrodes The 131b are staggered with each other. In this manner, the touch panel 10e is disposed between the second sub-electrode 111b and each of the second compensating sub-electrodes 131b, and each of the fourth sub-electrodes 121b and each of the second compensating sub-electrodes in the first touch folding region 130. The interlaced settings between the 131bs can achieve a good touch sensing effect and improve the stability of the touch sensing.
圖7A為本揭露又一實施例之觸控面板的示意圖。圖7B是圖7A之觸控面板的局部放大圖。圖7C是圖7A之觸控面板沿剖線I-I’之剖視圖。請參考圖7A、圖7B以及圖7C,在本實施例中,觸控面板10f與觸控面板10d相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10f與觸控面板10d的主要差別在於,觸控面板10f為包括多條第一補償電極131以及多條第二補償電極132,第一補償電極131以及多條第二補償電極132配置於第一觸控摺疊區130中,介於第一電極111與第三電極121之間,且各第一補償電極131彼此電性獨立,各第二補償電極132彼此電性獨立。 FIG. 7A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure. FIG. 7B is a partial enlarged view of the touch panel of FIG. 7A. Figure 7C is a cross-sectional view of the touch panel of Figure 7A taken along line I-I'. Referring to FIG. 7A, FIG. 7B and FIG. 7C, in the present embodiment, the touch panel 10f is similar to the touch panel 10d, and similar components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10f and the touch panel 10d is that the touch panel 10f includes a plurality of first compensation electrodes 131 and a plurality of second compensation electrodes 132, a first compensation electrode 131 and a plurality of second compensation electrodes 132. The first compensation electrode 131 is electrically independent of each other, and each of the second compensation electrodes 132 is electrically independent of each other.
在本實施例中,觸控面板10f中的各第一補償電極131更包至少一第一補償子電極131a,第一補償子電極131a由第一補償電極131往第一觸控區110方向延伸,且介於相鄰的第一電極111之間;各二補償電極132更包含至少一第三補償子電極132a,第三補償子電極132a由第二補償電極132往第二觸控區120方向延伸,且介於相鄰的第三電極121之間。換句話說,各第一補償子電極131a與第一電極111彼此交錯配置,各第三補償子電極132a與第三電極121彼此交錯配置。藉由第一補償子電極131a與第一電極111彼此交錯的設置、第三補償子電極132a與第三電極121彼此交錯的設置,可改變第一電極111、第三電極121、第一補償子電極131a以及第三補償子電極132a的互容之電容值,進而使第一電極111、第三電極121、第一補償子電極131a以及第三補償子電極132a可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 In this embodiment, each of the first compensation electrodes 131 in the touch panel 10f further includes at least one first compensation sub-electrode 131a, and the first compensation sub-electrode 131a extends from the first compensation electrode 131 toward the first touch area 110. And between the adjacent first electrodes 111; each of the two compensation electrodes 132 further includes at least one third compensation sub-electrode 132a, and the third compensation sub-electrode 132a is directed by the second compensation electrode 132 toward the second touch area 120. Extending and interposed between adjacent third electrodes 121. In other words, each of the first compensating sub-electrodes 131a and the first electrodes 111 are alternately arranged, and each of the third compensating sub-electrodes 132a and the third electrodes 121 are alternately arranged. The first electrode 111, the third electrode 121, and the first compensator can be changed by the arrangement in which the first compensating sub-electrode 131a and the first electrode 111 are staggered with each other, and the third compensating sub-electrode 132a and the third electrode 121 are staggered with each other. The mutual capacitance values of the electrodes 131a and the third compensation sub-electrodes 132a further enable the first electrode 111, the third electrode 121, the first compensation sub-electrode 131a, and the third compensation sub-electrode 132a to have a good capacitance matching effect. Achieve good touch sensing purposes.
進一步而言,在本實施例中,觸控面板10f的各第一電極111於 第一觸控摺疊區130更包含至少一第一子電極111a,各第一補償子電極131a介於第一子電極111a與第一電極111之間。並且,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,各第三補償子電極132a介於第三子電極121a與第三電極121之間。換句話說,各第一補償子電極131a分別與第一電極111以及第一子電極111a彼此交錯配置,各第三補償子電極132a分別與第三電極121以及第三子電極121a彼此交錯配置。藉由各第一補償子電極131a分別與第一電極111以及第一子電極111a之間、各第三補償子電極132a分別與第三電極121以及第三子電極121a之間彼此交錯的設配置,可使第一電極111、第三電極121、第一補償電極131以及第二補償電極132具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in this embodiment, each of the first electrodes 111 of the touch panel 10f is The first touch folding area 130 further includes at least one first sub-electrode 111a, and each of the first compensating sub-electrodes 131a is interposed between the first sub-electrode 111a and the first electrode 111. Each of the third electrodes 121 further includes at least one third sub-electrode 121a, and each of the third compensating sub-electrodes 132a is interposed between the third sub-electrode 121a and the third electrode 121. In other words, each of the first compensating sub-electrodes 131a is alternately arranged with the first electrode 111 and the first sub-electrode 111a, and each of the third compensating sub-electrodes 132a is alternately arranged with the third electrode 121 and the third sub-electrode 121a. Arrangement between the first compensation sub-electrode 131a and the first electrode 111 and the first sub-electrode 111a, and each of the third compensation sub-electrodes 132a and the third electrode 121 and the third sub-electrode 121a The first electrode 111, the third electrode 121, the first compensation electrode 131, and the second compensation electrode 132 can have good capacitance matching effects for good touch sensing purposes.
如此一來,本實施例的觸控面板10f中,彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121以及第四電極122是分別配置在基板100上的第一觸控區110以及第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10f即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。並且,藉由第一補償電極131與第二補償電極132間的距離A中無任何的電極設置,由此可使觸控面板10f在多次的彎曲或摺疊使用下,第一觸控摺疊區130中的電極結構可能較不易破壞,進而使其具有較佳的耐用度。另一方面,第一補償電極131更包含至少一第一補償子電極131a,第二補償電極132包含至少一第三補償子電極132a,第一補償子電極131a與第一電極111彼此交錯配置,第三補償子電極132a與第三電極121彼此交錯配置;據此,觸控面板10f在第一觸控摺疊區130中藉由各第一補償子電 極131a與第一電極111之間、各第三補償子電極132a與第三電極121之間彼此交錯的設置,可達到良好的觸控感測之效果。更進一步來說,觸控面板10f的各第一電極111於第一觸控摺疊區130更包含至少一第一子電極111a,各第三電極121於第一觸控摺疊區130更包含至少一第三子電極121a,且各第一補償子電極131a分別與第一電極111以及第一子電極111a彼此交錯配置,各第三補償子電極132a分別與第三電極121以及第三子電極121a彼此交錯配置;由此可使觸控面板10f更具有良好的觸控感測之效果,進而提高其觸控感測之穩定性。 In this manner, in the touch panel 10f of the present embodiment, the first electrode 111 and the second electrode 112 that intersect each other, and the third electrode 121 and the fourth electrode 122 that intersect each other are first disposed on the substrate 100, respectively. The touch area 110 and the second touch area 120, in other words, the first touch fold area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10f is used even after multiple bending or folding. The electrode structure can be less susceptible to damage, thereby providing better durability. Moreover, by the absence of any electrode arrangement in the distance A between the first compensation electrode 131 and the second compensation electrode 132, the touch panel 10f can be used in multiple bending or folding, the first touch folding area. The electrode structure in 130 may be less susceptible to damage, thereby providing better durability. On the other hand, the first compensation electrode 131 further includes at least one first compensation sub-electrode 131a, and the second compensation electrode 132 includes at least one third compensation sub-electrode 132a. The first compensation sub-electrode 131a and the first electrode 111 are alternately arranged with each other. The third compensation sub-electrode 132a and the third electrode 121 are alternately arranged with each other; accordingly, the touch panel 10f is electrically charged by the first compensator in the first touch folding area 130. The arrangement between the pole 131a and the first electrode 111 and the third compensation sub-electrode 132a and the third electrode 121 are staggered with each other, so that a good touch sensing effect can be achieved. Further, each of the first electrodes 111 of the touch panel 10f further includes at least one first sub-electrode 111a, and each of the third electrodes 121 further includes at least one of the first touch folds 130. The third sub-electrode 121a, and each of the first compensating sub-electrodes 131a are alternately arranged with the first electrode 111 and the first sub-electrode 111a, and each of the third compensating sub-electrodes 132a and the third electrode 121 and the third sub-electrode 121a are respectively connected to each other. The staggered configuration can thereby make the touch panel 10f have a better touch sensing effect, thereby improving the stability of the touch sensing.
圖8A為本揭露再一實施例之觸控面板的示意圖。圖8B是圖8A之觸控面板的局部放大圖。圖8C是圖8A之觸控面板沿剖線I-I’之剖視圖。請參考圖8A、圖8B以及圖8C,在本實施例中,觸控面板10g與觸控面板10f相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10g與觸控面板10f的主要差別在於,觸控面板10g更包括多條第二補償子電極131b以及多條第四補償子電極132b,第二補償子電極131b由第一補償子電極131a往第一子電極111a與第一電極111方向延伸,且介於相鄰的第一子電極111a與第一電極111之間;第四補償子電極132b由第三補償子電極132a往第三子電極121a與第三電極121方向延伸,且介於相鄰的第三子電極121a與第三電極121之間。 FIG. 8A is a schematic diagram of a touch panel according to still another embodiment of the present disclosure. FIG. 8B is a partial enlarged view of the touch panel of FIG. 8A. Figure 8C is a cross-sectional view of the touch panel of Figure 8A taken along line I-I'. Referring to FIG. 8A, FIG. 8B and FIG. 8C, in the present embodiment, the touch panel 10g is similar to the touch panel 10f, and similar components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10g and the touch panel 10f is that the touch panel 10g further includes a plurality of second compensation sub-electrodes 131b and a plurality of fourth compensation sub-electrodes 132b, and the second compensation sub-electrode 131b is composed of the first compensator. The electrode 131a extends in the direction of the first sub-electrode 111a and the first electrode 111, and is interposed between the adjacent first sub-electrode 111a and the first electrode 111; the fourth compensating sub-electrode 132b is advanced from the third compensating sub-electrode 132a The three sub-electrodes 121a extend in the direction of the third electrode 121 and are interposed between the adjacent third sub-electrodes 121a and the third electrodes 121.
進一步而言,在本實施例中,觸控面板10g中的各第一電極111於第一觸控摺疊區130更包含多條第二子電極111b,一部分第二子電極111b由第一電極111往相鄰的第一補償子電極131a方向延伸,另一部分第二子電極111b由第一子電極111a往相鄰的第一補償子電極131a方向延伸;各 第三電極121於第一觸控摺疊區130更包含多條第四子電極121b,一部分第四子電極121b由第三電極121往相鄰的第三補償子電極132a方向延伸,另一部分第四子電極121b由第三子電極121a往相鄰的第三補償子電極132a方向延伸;例如,各第二子電極111b與各第二補償子電極131b彼此交錯設置,各第四子電極121b與各第四補償子電極132b彼此交錯設置,如此可改變第一電極111、第三電極121、第一補償電極131以及第二補償電極132的互容之電容值,進而使第一電極111、第三電極121、第一補償電極131以及第二補償電極132可具有良好的電容匹配效果,以達到良好的觸控感測之目的。 Further, in the embodiment, each of the first electrodes 111 of the touch panel 10g further includes a plurality of second sub-electrodes 111b, and a portion of the second sub-electrodes 111b are formed by the first electrodes 111. The second sub-electrode 111b extends from the first sub-electrode 111a toward the adjacent first compensating sub-electrode 131a; The third electrode 121 further includes a plurality of fourth sub-electrodes 121b in the first touch fold region 130, and a portion of the fourth sub-electrodes 121b extends from the third electrode 121 toward the adjacent third compensating sub-electrode 132a, and the other portion is fourth. The sub-electrode 121b extends from the third sub-electrode 121a toward the adjacent third compensating sub-electrode 132a; for example, each of the second sub-electrodes 111b and each of the second compensating sub-electrodes 131b are alternately arranged with each other, and each of the fourth sub-electrodes 121b and each The fourth compensating sub-electrodes 132b are alternately arranged with each other, so that the capacitance values of the mutual capacitances of the first electrode 111, the third electrode 121, the first compensating electrode 131, and the second compensating electrode 132 can be changed, thereby making the first electrode 111 and the third electrode The electrode 121, the first compensation electrode 131 and the second compensation electrode 132 can have a good capacitance matching effect for good touch sensing purposes.
本實施例的觸控面板10g中,彼此相交的第一電極111與第二電極112、以及彼此相交的第三電極121以及第四電極122是分別配置在基板100上的第一觸控區110以及第二觸控區120,換句話說,第一觸控摺疊區130中並無彼此相交的電極結構;由此,觸控面板10g即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。更進一步來說,觸控面板10g更包括多條第二補償子電極131b,各第一電極111於第一觸控摺疊區130更包含多條第二子電極111b,且各第三電極121於第一觸控摺疊區130更包含多條第四子電極121b;其中,各第二子電極111b與各第二補償子電極131b彼此交錯設置,各第四子電極121b與各第四補償子電極132b彼此交錯設置。如此一來,觸控面板10g在第一觸控摺疊區130中藉由各第二子電極111b與各第二補償子電極131b之間、以及各第四子電極121b與各第四補償子電極132b之間彼此交錯的設置,可達到良好的觸控感測之效果,且提高其觸控感測之穩定性。 In the touch panel 10g of the present embodiment, the first electrode 111 and the second electrode 112 that intersect each other, and the third electrode 121 and the fourth electrode 122 that intersect each other are the first touch regions 110 respectively disposed on the substrate 100. And the second touch area 120, in other words, the first touch fold area 130 does not have an electrode structure that intersects each other; thus, the touch panel 10g can be compared with the electrode structure even when used for multiple times of bending or folding. It is not easily damaged, which in turn makes it more durable. Further, the touch panel 10g further includes a plurality of second compensation sub-electrodes 131b, each of the first electrodes 111 further includes a plurality of second sub-electrodes 111b in the first touch-folding region 130, and each of the third electrodes 121 is The first touch folding area 130 further includes a plurality of fourth sub-electrodes 121b; wherein each of the second sub-electrodes 111b and each of the second compensating sub-electrodes 131b are alternately arranged with each other, and each of the fourth sub-electrodes 121b and each of the fourth compensating sub-electrodes 132b are staggered with each other. In this manner, the touch panel 10g is disposed between the second sub-electrode 111b and each of the second compensating sub-electrodes 131b, and each of the fourth sub-electrodes 121b and each of the fourth compensating sub-electrodes in the first touch folding region 130. The interlaced arrangement between the 132bs can achieve a good touch sensing effect and improve the stability of the touch sensing.
圖9至圖12為本揭露之觸控面板的觸控區配置示意圖。請先參考圖9,在本實施例中,觸控面板10h與前述之觸控面板10a至10g其中任一相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。在此為方便描述,將以觸控面板10a的電極配置方式配合圖式說明,但並不用以限制本揭露。而觸控面板10h與觸控面板10a的主要差別在於,觸控面板10h更包括一第三觸控區140以及一第二觸控摺疊區150,第二觸控摺疊區150設置於第二觸控區120與第三觸控區140之間;其中多條第五電極141以及多條第六電極142配置於基板100上的第三觸控區140,第五電極141以及第六電極142彼此相交,且第五電極141由第三觸控區140延伸至第二觸控摺疊區150,並且,第三電極121由第二觸控區120延伸至第二觸控摺疊區150,第三電極121與第五電極141彼此無相交,且觸控面板10h的任一邊長、與第二觸控區120與第三觸控區140之間的距離D的比值為介於9.5至95之間。 9 to FIG. 12 are schematic diagrams showing the configuration of a touch area of a touch panel according to the present disclosure. Referring to FIG. 9 , in the present embodiment, the touch panel 10 h is similar to any of the touch panels 10 a to 10 g described above, and the like components are denoted by the same reference numerals and have similar functions, and the description is omitted. For convenience of description, the electrode arrangement of the touch panel 10a will be described in conjunction with the drawings, but is not intended to limit the disclosure. The main difference between the touch panel 10h and the touch panel 10a is that the touch panel 10h further includes a third touch area 140 and a second touch fold area 150. The second touch fold area 150 is disposed on the second touch. Between the control area 120 and the third touch area 140; the plurality of fifth electrodes 141 and the plurality of sixth electrodes 142 are disposed on the third touch area 140 on the substrate 100, and the fifth electrode 141 and the sixth electrode 142 are mutually connected to each other. The third electrode 141 extends from the third touch area 140 to the second touch fold area 150, and the third electrode 121 extends from the second touch area 120 to the second touch fold area 150, and the third electrode The ratio of the length of either side of the touch panel 10h to the distance D between the second touch area 120 and the third touch area 140 is between 9.5 and 95.
如此一來,本實施例的觸控面板10h中,第一觸控摺疊區130以及第二觸控摺疊區150中並無彼此相交的電極結構;由此,觸控面板10h即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。並且,藉由多觸控摺疊區的設置,可有效的改善觸控面板使用上的便利性。 In this manner, in the touch panel 10h of the present embodiment, the first touch fold region 130 and the second touch fold region 150 do not have electrode structures that intersect each other; thus, the touch panel 10h is even multiple times. When bent or folded, the electrode structure can be less susceptible to damage, thereby making it more durable. Moreover, the convenience of using the touch panel can be effectively improved by the setting of the multi-touch folding area.
接著,請參考圖10,在本實施例中,觸控面板10i與前述之觸控面板10h相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10i與觸控面板10h的主要差別在於,觸控面板10i更包括一第四觸控區160以及一第三觸控摺疊區170,第三觸控摺疊區170 設置於第三觸控區140與第四觸控區160之間;其中,多條第七電極161以及多條第八電極162配置於基板100上的第四觸控區160,第七電極161以及第八電極162彼此相交,並且,第七電極161由第四觸控區160延伸至第三觸控摺疊區170,第五電極141由第三觸控區140延伸至第三觸控摺疊區170,第五電極141與第七電極161彼此無相交,且觸控面板10i的任一邊長、與第三觸控區140與第四觸控區160之間的距離D的比值為介於9.5至95之間。 Next, referring to FIG. 10, in the present embodiment, the touch panel 10i is similar to the touch panel 10h described above, and the like components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10i and the touch panel 10h is that the touch panel 10i further includes a fourth touch area 160 and a third touch fold area 170, and the third touch fold area 170 The fourth touch region 140 and the plurality of eighth electrodes 162 are disposed on the fourth touch region 160 on the substrate 100, and the seventh electrode 161 is disposed between the third touch region 140 and the fourth touch region 160. And the eighth electrode 162 intersects with each other, and the seventh electrode 161 extends from the fourth touch area 160 to the third touch folding area 170, and the fifth electrode 141 extends from the third touch area 140 to the third touch folding area. 170, the fifth electrode 141 and the seventh electrode 161 do not intersect each other, and the ratio of the length of either side of the touch panel 10i to the distance D between the third touch area 140 and the fourth touch area 160 is 9.5. Between 95.
如此一來,本實施例的觸控面板10i中,第一觸控摺疊區130、第二觸控摺疊區150以及第三觸控摺疊區170中並無彼此相交的電極結構;由此,觸控面板10i即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。並且,藉由多觸控摺疊區的設置,可有效的改善觸控面板使用上的便利性。 As a result, in the touch panel 10i of the present embodiment, the first touch fold region 130, the second touch fold region 150, and the third touch fold region 170 do not have electrode structures that intersect each other; Even when the control panel 10i is used for multiple bending or folding, the electrode structure can be less damaged, thereby making it more durable. Moreover, the convenience of using the touch panel can be effectively improved by the setting of the multi-touch folding area.
請參考圖11,在本實施例中,觸控面板10j與前述之觸控面板10a相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10j與觸控面板10a的主要差別在於,觸控面板10j更包括一第三觸控區140以及一第二觸控摺疊區150,第二觸控摺疊區150與第一觸控摺疊區130相交,且第二觸控摺疊區150設置於第二觸控區120與第三觸控區140之間;其中,多條第五電極141以及多條第六電極142,配置於基板100上的第三觸控區140,第五電極141以及第六電極142彼此相交,且第五電極141由第三觸控區140延伸至第一觸控摺疊區130,第六電極142由第三觸控區140延伸至第二觸控摺疊區150,第四電極122由第二觸控區120延伸至第二觸控摺疊區150,並且,第四電極122與第六電極142彼此 無相交,第一電極111與第五電極141彼此無相交,且觸控面板10j的任一邊長、與第二觸控區120與第三觸控區140之間的距離D的比值為介於9.5至95之間。 Referring to FIG. 11, in the present embodiment, the touch panel 10j is similar to the touch panel 10a described above, and the like components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10j and the touch panel 10a is that the touch panel 10j further includes a third touch area 140 and a second touch fold area 150, and the second touch fold area 150 and the first touch. The folding area 130 is intersected, and the second touch folding area 150 is disposed between the second touch area 120 and the third touch area 140. The plurality of fifth electrodes 141 and the plurality of sixth electrodes 142 are disposed on the substrate. The third touch area 140 on the 100, the fifth electrode 141 and the sixth electrode 142 intersect each other, and the fifth electrode 141 extends from the third touch area 140 to the first touch fold area 130, and the sixth electrode 142 is The third touch area 140 extends to the second touch fold area 150, the fourth electrode 122 extends from the second touch area 120 to the second touch fold area 150, and the fourth electrode 122 and the sixth electrode 142 are mutually connected to each other. The first electrode 111 and the fifth electrode 141 do not intersect each other, and the ratio of the length of either side of the touch panel 10j to the distance D between the second touch area 120 and the third touch area 140 is between Between 9.5 and 95.
如此一來,本實施例的觸控面板10j中,第一觸控摺疊區130以及第二觸控摺疊區150中並無彼此相交的電極結構;由此,觸控面板10j即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。並且,藉由多觸控摺疊區的設置,可有效的改善觸控面板使用上的便利性。 In this manner, in the touch panel 10j of the embodiment, the first touch folding area 130 and the second touch folding area 150 do not have electrode structures that intersect each other; thus, the touch panel 10j is even in multiple times. When bent or folded, the electrode structure can be less susceptible to damage, thereby making it more durable. Moreover, the convenience of using the touch panel can be effectively improved by the setting of the multi-touch folding area.
請參考圖12,在本實施例中,觸控面板10k與前述之觸控面板10j相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控面板10k與觸控面板10j的主要差別在於,觸控面板10k更包括一第四觸控區160以及一第三觸控摺疊區170,第三觸控摺疊區170與第一觸控摺疊區130相交,且第三觸控摺疊區170設置於第一觸控區110與第四觸控區160之間;其中,多條第七電極161以及多條第八電極162配置於基板100上的第四觸控區160,第七電極161以及第八電極162彼此相交,且第七電極161由第四觸控區160延伸至第一觸控摺疊區130,第八電極162由第四觸控區160延伸至第三觸控摺疊區170,第二電極112由第一觸控區110延伸至第三觸控摺疊區170,並且,第二電極112與第八電極162彼此無相交,第五電極141與第七電極161彼此無相交,且觸控面板10k的任一邊長、與第一觸控區110與第四觸控區160之間的距離D的比值為介於9.5至95之間。 Referring to FIG. 12, in the present embodiment, the touch panel 10k is similar to the touch panel 10j described above, and similar components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch panel 10k and the touch panel 10j is that the touch panel 10k further includes a fourth touch area 160 and a third touch fold area 170, and the third touch fold area 170 and the first touch. The folding area 130 is disposed, and the third touch folding area 170 is disposed between the first touch area 110 and the fourth touch area 160. The plurality of seventh electrodes 161 and the plurality of eighth electrodes 162 are disposed on the substrate 100. The fourth touch area 160, the seventh electrode 161 and the eighth electrode 162 intersect each other, and the seventh electrode 161 extends from the fourth touch area 160 to the first touch fold area 130, and the eighth electrode 162 is fourth. The touch area 160 extends to the third touch fold area 170, the second electrode 112 extends from the first touch area 110 to the third touch fold area 170, and the second electrode 112 and the eighth electrode 162 do not intersect each other. The fifth electrode 141 and the seventh electrode 161 do not intersect each other, and the ratio of the length of either side of the touch panel 10k to the distance D between the first touch area 110 and the fourth touch area 160 is between 9.5 and 95. between.
如此一來,本實施例的觸控面板10k中,第一觸控摺疊區130、 第二觸控摺疊區150以及第三觸控摺疊區170中並無彼此相交的電極結構;由此,觸控面板10k即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。並且,藉由多觸控摺疊區的設置,可有效的改善觸控面板使用上的便利性。 In this manner, in the touch panel 10k of the embodiment, the first touch folding area 130, The second touch folding area 150 and the third touch folding area 170 do not have electrode structures that intersect each other; thus, the touch panel 10k can be less susceptible to damage even when used for multiple bending or folding. In turn, it has better durability. Moreover, the convenience of using the touch panel can be effectively improved by the setting of the multi-touch folding area.
除上述之外,本揭露的觸控面板的第一觸控摺疊區130可區分為電性連結區133以及非電性連結區134。具體而言,圖13A至圖13D為本揭露之觸控面板的觸控摺疊區配置示意圖。請參考圖13A,在本實施例中,第一觸控摺疊區130包括一個電性連結區133以及一個非電性連結區134,且非電性連結區134位於第一觸控摺疊區130的其中一邊緣區域。請參考圖13B,在本實施例中,第一觸控摺疊區130包括一個電性連結區133以及兩個非電性連結區134,且兩個非電性連結區134分別位於第一觸控摺疊區130的兩邊緣區域。請參考圖13C,在本實施例中,第一觸控摺疊區130包括兩個電性連結區133以及一個非電性連結區134,且兩個電性連結區133分別位於第一觸控摺疊區130的兩個邊緣區域。請參考圖13D,在本實施例中,第一觸控摺疊區130包括三個電性連結區133以及兩個非電性連結區134,且各電性連結區133與各非電性連結區134分別交替配置,且其中兩個電性連結區133位於第一觸控摺疊區130的兩個邊緣區域。 In addition to the above, the first touch fold region 130 of the touch panel of the present disclosure can be divided into an electrical connection region 133 and a non-electrical connection region 134. Specifically, FIG. 13A to FIG. 13D are schematic diagrams showing the configuration of a touch folding area of the touch panel of the present disclosure. Referring to FIG. 13A , in the embodiment, the first touch fold region 130 includes an electrical connection region 133 and a non-electrical connection region 134 , and the non-electrical connection region 134 is located in the first touch fold region 130 . One of the edge areas. Referring to FIG. 13B, in the embodiment, the first touch folding area 130 includes an electrical connection area 133 and two non-electrical connection areas 134, and the two non-electrical connection areas 134 are respectively located on the first touch. The two edge regions of the folding zone 130. Referring to FIG. 13C , in the embodiment, the first touch fold region 130 includes two electrical connection regions 133 and one non-electrical connection region 134 , and the two electrical connection regions 133 are respectively located on the first touch fold. Two edge regions of zone 130. Referring to FIG. 13D , in the embodiment, the first touch fold region 130 includes three electrical connection regions 133 and two non-electrical connection regions 134 , and each of the electrical connection regions 133 and each non-electrical connection region The 134 are alternately disposed, and two of the electrical connection regions 133 are located at two edge regions of the first touch fold region 130.
另一方面,本揭露的觸控面板更可與顯示面板搭配,以形成觸控顯示裝置,以下為方便描述,將依圖1A之觸控面板搭配顯示面板舉例說明。圖14A至圖14I為本揭露之觸控顯示裝置之可能剖視圖,請先參考圖14A,在本實施例中,第一觸控區110、第二觸控區120以及第一觸控摺疊區130對應於相同一顯示面板200疊置,如此一來,即可形成觸控顯示裝 置20a。請參考圖14B,在本實施例中,顯示面板可區分為第一顯示面板210以及第二顯示面板220,其中第一顯示面板210對應第一觸控區110疊置,第二顯示面板220對應於第二觸控區120疊置,在第一顯示面板210以及第二顯示面板220之間具有一間距G,間距G大致對應於第一觸控摺疊區130,如此一來,即可形成觸控顯示裝置20b。請參考圖14C,在本實施例中,觸控顯示裝置20c與觸控顯示裝置20b相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20c與觸控顯示裝置20b的主要差別在於,觸控顯示裝置20c在第一顯示面板210以及第二顯示面板220之間更配置有一絕緣單元300,絕緣單元300對應於第一觸控摺疊區130疊置,且絕緣單元300與第一顯示面板210以及第二顯示面板220相連,絕緣單元300可做為支撐第一顯示面板210以及第二顯示面板220之用途。請參考圖14D,在本實施例中,觸控顯示裝置20d與觸控顯示裝置20b相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20d與觸控顯示裝置20b主要的差別在於,觸控顯示裝置20d的絕緣單元可區分為第一絕緣單元310以及第二絕緣單元320,第一顯示面板210對應於第一觸控區110疊置、第一絕緣單元310對應於第一觸控摺疊區130以及第二觸控區120疊置,第一顯示面板210與第一絕緣單元310彼此相連;再者,第二顯示面板220對應於第二觸控區120疊置、第二絕緣單元320對應於第一觸控摺疊區130以及第一觸控區110疊置,第二顯示面板220與第二絕緣單元320彼此相連。第一顯示面板210配置於第一觸控區110與第二絕緣單元320之間、第一絕緣單元310配置於第二絕緣單元320與第一觸控摺疊區130之間、且第一絕緣 單元310配置於第二觸控區120與第二顯示面板220之間。請參考圖14E,在本實施例中,觸控顯示裝置20e與觸控顯示裝置20d相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20e與觸控顯示裝置20d主要的差別在於觸控顯示裝置20e的第一顯示面板210對應於第一觸控區110以及第一觸控摺疊區130疊置,且第一絕緣單元310對應於第二觸控區120疊置,第一顯示面板210與第一絕緣單元310彼此相連;再者,第二顯示面板220對應於第二觸控區120以及第一觸控摺疊區130疊置,且第二絕緣單元320對應於第一觸控區110疊置,第二顯示面板220與第二絕緣單元320彼此相連,且第一顯示面板210配置於第一觸控區110與第二絕緣單元320之間、第一顯示面板210配置於第一觸控摺疊區130與第二顯示面板220之間、且第一絕緣單元310配置於第二觸控區120與第二顯示面板220之間。請參考圖14F,在本實施例中,觸控顯示裝置20f與觸控顯示裝置20d相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20f與觸控顯示裝置20d主要的差別在於觸控顯示裝置20f的第一顯示面板210對應於第一觸控區110以及一部份的第一觸控摺疊區130疊置,且第一絕緣單元310對應於第二觸控區120以及另一部份的第一觸控摺疊區130疊置,第一顯示面板210與第一絕緣單元310彼此相連;再者,第二顯示面板220對應於第二觸控區120以及一部份的第一觸控摺疊區130疊置,且第二絕緣單元320對應於第一觸控區110以及另一部份的第一觸控摺疊區130疊置,第二顯示面板220與第二絕緣單元320彼此相連,且第一顯示面板210配置於第一觸控區110與第二絕緣單元320之間、第一顯示面板210配置於一部份第一 觸控摺疊區130與第二絕緣單元320之間、第一絕緣單元310配置於第二觸控區120與第二顯示面板220之間、且第一絕緣單元310配置於另一部份的第一觸控摺疊區130與第二顯示面板220之間。請參考圖14G,在本實施例中,觸控顯示裝置20g與觸控顯示裝置20d相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20g與觸控顯示裝置20d主要的差別在於觸控顯示裝置20g更包括一第三絕緣單元330,第三絕緣單元330對應於第一觸控區110、第一觸控摺疊區130以及第二觸控區120疊置,第三絕緣單元330疊置於第一觸控區110與第一顯示面板210之間、第三絕緣單元330疊置於第一觸控摺疊區130與第一絕緣單元310之間、且第三絕緣單元330疊置於第二觸控區120與第一絕緣單元310之間。請參考圖14H,在本實施例中,觸控顯示裝置20h與觸控顯示裝置20e相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20h與觸控顯示裝置20e主要的差別在於觸控顯示裝置20h更包括一第三絕緣單元330,第三絕緣單元330對應於第一觸控區110、第一觸控摺疊區130以及第二觸控區120疊置,第三絕緣單元330疊置於第一觸控區110與第一顯示面板210之間、第三絕緣單元330疊置於第一觸控摺疊區130與第一顯示面板210之間、且第三絕緣單元330疊置於第二觸控區120與第一絕緣單元310之間。請參考圖14I,在本實施例中,觸控顯示裝置20i與觸控顯示裝置20f相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而觸控顯示裝置20i與觸控顯示裝置20f主要的差別在於觸控顯示裝置20i更包括一第三絕緣單元330,第三絕緣單元330對應於第一觸控區110、第一觸控摺疊區130以 及第二觸控區120疊置,第三絕緣單元330疊置於第一觸控區110與第一顯示面板210之間、第三絕緣單元330疊置於一部份的第一觸控摺疊區130與第一顯示面板210之間、第三絕緣單元330疊置於另一部份的第一觸控摺疊區130與第一絕緣單元310之間、且第三絕緣單元330疊置於第二觸控區120與第一絕緣單元310之間。 On the other hand, the touch panel of the present disclosure can be combined with the display panel to form a touch display device. For convenience of description, the touch panel according to FIG. 1A is exemplified with the display panel. 14A to FIG. 14I are schematic cross-sectional views of the touch display device of the present disclosure. Referring to FIG. 14A, in the embodiment, the first touch area 110, the second touch area 120, and the first touch folding area 130 are used. Corresponding to the same display panel 200 stacked, so that the touch display device can be formed Set 20a. Referring to FIG. 14B , in the embodiment, the display panel can be divided into a first display panel 210 and a second display panel 220 , wherein the first display panel 210 is overlapped with the first touch area 110 , and the second display panel 220 is corresponding to the first display panel 210 . The second touch area 120 is stacked, and has a spacing G between the first display panel 210 and the second display panel 220. The spacing G substantially corresponds to the first touch folding area 130, so that the touch can be formed. The display device 20b is controlled. Referring to FIG. 14C, in the present embodiment, the touch display device 20c is similar to the touch display device 20b, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the touch display device 20c and the touch display device 20b is that the touch display device 20c is further provided with an insulating unit 300 between the first display panel 210 and the second display panel 220, and the insulating unit 300 corresponds to the first The touch folding area 130 is stacked, and the insulating unit 300 is connected to the first display panel 210 and the second display panel 220. The insulating unit 300 can be used for supporting the first display panel 210 and the second display panel 220. Referring to FIG. 14D, in the present embodiment, the touch display device 20d is similar to the touch display device 20b, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the touch display device 20d and the touch display device 20b is that the insulating unit of the touch display device 20d can be divided into a first insulating unit 310 and a second insulating unit 320, and the first display panel 210 corresponds to the first touch. The control area 110 is stacked, the first insulating unit 310 is overlapped with the first touch folding area 130 and the second touch area 120, and the first display panel 210 and the first insulating unit 310 are connected to each other; The second display unit 220 and the second touch unit 320 are connected to each other. The second display unit 220 and the second touch unit 320 are connected to each other. The second display unit 220 and the second touch unit 320 are connected to each other. . The first display panel 210 is disposed between the first touch area 110 and the second insulating unit 320, and the first insulating unit 310 is disposed between the second insulating unit 320 and the first touch folding area 130, and is first insulated. The unit 310 is disposed between the second touch area 120 and the second display panel 220. Referring to FIG. 14E, in the present embodiment, the touch display device 20e is similar to the touch display device 20d, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The first difference between the touch display device 20e and the touch display device 20d is that the first display panel 210 of the touch display device 20e overlaps the first touch region 110 and the first touch fold region 130, and the first insulation is The first display panel 210 and the first insulating unit 310 are connected to each other. The second display panel 220 corresponds to the second touch area 120 and the first touch folding area. The first display unit 210 is disposed on the first touch area 110 and the second display unit 220 is connected to the first touch area 110. The first insulative unit 310 is disposed between the first touch panel 130 and the second display panel 220, and the first insulating unit 310 is disposed on the second touch panel 120 and the second display panel. Between 220. Referring to FIG. 14F, in the present embodiment, the touch display device 20f is similar to the touch display device 20d, and similar components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch display device 20f and the touch display device 20d is that the first display panel 210 of the touch display device 20f overlaps the first touch region 110 and a portion of the first touch fold region 130. The first insulating unit 310 is overlapped with the second touch area 120 and the other part of the first touch folding area 130. The first display panel 210 and the first insulating unit 310 are connected to each other. The panel 220 is disposed corresponding to the second touch area 120 and a portion of the first touch fold area 130, and the second insulating unit 320 corresponds to the first touch area 110 and another part of the first touch fold. The first display panel 210 is disposed between the first touch panel 110 and the second insulating unit 320, and the first display panel 210 is disposed on the first display panel 210. The first display panel 210 is disposed between the first touch panel 110 and the second insulating unit 320. Part first Between the touch folding area 130 and the second insulating unit 320, the first insulating unit 310 is disposed between the second touch area 120 and the second display panel 220, and the first insulating unit 310 is disposed in another part A touch folding area 130 is interposed between the second display panel 220. Referring to FIG. 14G, in the present embodiment, the touch display device 20g is similar to the touch display device 20d, and similar components are denoted by the same reference numerals, and have similar functions, and the description is omitted. The main difference between the touch display device 20g and the touch display device 20d is that the touch display device 20g further includes a third insulating unit 330, and the third insulating unit 330 corresponds to the first touch area 110 and the first touch folding area. 130 and the second touch area 120 are stacked, the third insulating unit 330 is stacked between the first touch area 110 and the first display panel 210, and the third insulating unit 330 is stacked on the first touch folding area 130. The first insulating unit 310 is disposed between the second touch area 120 and the first insulating unit 310. Referring to FIG. 14H, in the present embodiment, the touch display device 20h is similar to the touch display device 20e, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the touch display device 20h and the touch display device 20e is that the touch display device 20h further includes a third insulating unit 330. The third insulating unit 330 corresponds to the first touch area 110 and the first touch folding area. 130 and the second touch area 120 are stacked, the third insulating unit 330 is stacked between the first touch area 110 and the first display panel 210, and the third insulating unit 330 is stacked on the first touch folding area 130. The first display panel 210 is disposed between the second touch region 120 and the first insulating unit 310. Referring to FIG. 14I, in the present embodiment, the touch display device 20i is similar to the touch display device 20f, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the touch display device 20i and the touch display device 20f is that the touch display device 20i further includes a third insulating unit 330. The third insulating unit 330 corresponds to the first touch area 110 and the first touch folding area. 130 to And the second touch area 120 is stacked, the third insulating unit 330 is stacked between the first touch area 110 and the first display panel 210, and the third insulating unit 330 is stacked on a part of the first touch folding Between the region 130 and the first display panel 210, the third insulating unit 330 is stacked between the first touch folding region 130 and the first insulating unit 310 of another portion, and the third insulating unit 330 is stacked. The touch area 120 is between the touch panel 120 and the first insulating unit 310.
進一步而言,本揭露的觸控面板更可與雙面顯示的顯示面板搭配,以形成雙面觸控顯示裝置。圖15A至圖15L為本揭露之雙面觸控顯示裝置之可能剖視圖,其中圖15A至圖15I分別與圖14A至14I類似,其類似的構件以相同的標號表示,且具有類似的功能,在此不再贅述。而圖15A至圖15I中的雙面觸控顯示裝置30a至30i分別與圖14A至14I中的觸控顯示裝置20a至20i主要的差別在於,雙面觸控顯示裝置30a至30i更包括另一組觸控面板,另一組觸控面板可區分為第一觸控區110’、第二觸控區120’以及第一觸控摺疊區130’,第一觸控區110與第一觸控區110’彼此對應配置、第二觸控區120與第二觸控區120’彼此對應配置、且第一觸控摺疊區130與第一觸控摺疊區130’彼此對應配置,且兩組觸控面板分別配置於顯示面板的相對兩側。此外,請參考圖15J,在本實施例中,雙面觸控顯示裝置30j與雙面觸控顯示裝置30g相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而雙面觸控顯示裝置30j與雙面觸控顯示裝置30g差別在於雙面觸控顯示裝置30j更包括一第四絕緣單元340,第四絕緣單元340對應於第一觸控區110’、第一觸控摺疊區130’以及第二觸控區120’疊置,第四絕緣單元340疊置於第一觸控區110’與第二絕緣單元320之間、第四絕緣單元340疊置於第一觸控摺疊區130’與第二絕緣單元320 之間、且第四絕緣單元340疊置於第二觸控區120’與第二顯示面板220之間。請參考圖15K,在本實施例中,雙面觸控顯示裝置30k與雙面觸控顯示裝置30h相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而雙面觸控顯示裝置30k與雙面觸控顯示裝置30h主要的差別在於雙面觸控顯示裝置30k更包括一第四絕緣單元340,第四絕緣單元340對應於第一觸控區110’、第一觸控摺疊區130’以及第二觸控區120’疊置,第四絕緣單元340疊置於第一觸控區110’與第二絕緣單元320之間、第四絕緣單元340疊置於第一觸控摺疊區130’與第二顯示面板220之間、且第四絕緣單元340疊置於第二觸控區120’與第二顯示面板220之間。請參考圖15L,在本實施例中,雙面觸控顯示裝置30l與雙面觸控顯示裝置30i相似,其類似的構件以相同的標號表示,且具有類似的功能,並省略描述。而雙面觸控顯示裝置30l與雙面觸控顯示裝置30i主要的差別在於觸控顯示裝置30l更包括一第四絕緣單元340,第四絕緣單元340對應於第一觸控區110’、第一觸控摺疊區130’以及第二觸控區120’疊置,第四絕緣單元340疊置於第一觸控區110’與第二絕緣單元320之間、第四絕緣單元340疊置於一部份的第一觸控摺疊區130’與第二絕緣單元320之間、第四絕緣單元340疊置於另一部份的第一觸控摺疊區130’與第二顯示面板220之間、且第四絕緣單元340疊置於第二觸控區120’與第二顯示面板220之間。 Further, the touch panel of the present disclosure can be further matched with the display panel of the double-sided display to form a double-sided touch display device. 15A to 15L are cross-sectional views of the double-sided touch display device of the present disclosure, wherein FIGS. 15A to 15I are similar to FIGS. 14A to 14I, respectively, and like components are denoted by the same reference numerals and have similar functions. This will not be repeated here. The main difference between the double-sided touch display devices 30a to 30i in FIGS. 15A to 15I and the touch display devices 20a to 20i in FIGS. 14A to 14I is that the double-sided touch display devices 30a to 30i further include another The touch panel can be divided into a first touch area 110 ′, a second touch area 120 ′, and a first touch fold area 130 ′, the first touch area 110 and the first touch area. The regions 110 ′ are configured to correspond to each other, the second touch region 120 and the second touch region 120 ′ are disposed corresponding to each other, and the first touch folding region 130 and the first touch folding region 130 ′ are configured corresponding to each other, and the two groups are touched. The control panels are respectively disposed on opposite sides of the display panel. In addition, referring to FIG. 15J, in the present embodiment, the double-sided touch display device 30j is similar to the double-sided touch display device 30g, and the similar members are denoted by the same reference numerals and have similar functions, and the description is omitted. The difference between the double-sided touch display device 30j and the double-sided touch display device 30g is that the double-sided touch display device 30j further includes a fourth insulating unit 340, and the fourth insulating unit 340 corresponds to the first touch area 110', A touch folding area 130 ′ and a second touch area 120 ′ are stacked, and the fourth insulating unit 340 is stacked between the first touch area 110 ′ and the second insulating unit 320 , and the fourth insulating unit 340 is stacked. The first touch folding area 130 ′ and the second insulation unit 320 The fourth insulating unit 340 is disposed between the second touch area 120' and the second display panel 220. Referring to FIG. 15K, in the present embodiment, the double-sided touch display device 30k is similar to the double-sided touch display device 30h, and similar components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the double-sided touch display device 30k and the double-sided touch display device 30h is that the double-sided touch display device 30k further includes a fourth insulating unit 340, and the fourth insulating unit 340 corresponds to the first touch area 110'. The first touch folding area 130 ′ and the second touch area 120 ′ are stacked, and the fourth insulating unit 340 is stacked between the first touch area 110 ′ and the second insulating unit 320 , and the fourth insulating unit 340 is stacked. The fourth insulating unit 340 is disposed between the first touch folding area 130 ′ and the second display panel 220 , and the fourth insulating unit 340 is disposed between the second touch area 120 ′ and the second display panel 220 . Referring to FIG. 15L, in the present embodiment, the double-sided touch display device 30l is similar to the double-sided touch display device 30i, and the like components are denoted by the same reference numerals and have similar functions, and the description is omitted. The main difference between the double-sided touch display device 301 and the double-sided touch display device 30i is that the touch display device 301 further includes a fourth insulating unit 340, and the fourth insulating unit 340 corresponds to the first touch area 110'. A touch folding area 130 ′ and a second touch area 120 ′ are stacked, and the fourth insulating unit 340 is stacked between the first touch area 110 ′ and the second insulating unit 320 , and the fourth insulating unit 340 is stacked. A portion of the first touch fold region 130 ′ and the second insulating unit 320 and the fourth insulating unit 340 are stacked between the other portion of the first touch fold region 130 ′ and the second display panel 220 . The fourth insulating unit 340 is stacked between the second touch area 120 ′ and the second display panel 220 .
綜上所述,本揭露的觸控面板中,在觸控摺疊區中並無彼此相交的電極結構;由此,觸控面板即使在多次的彎曲或摺疊使用下,電極結構可較不易受破壞,進而使其具有較佳的耐用度。更進一步來說,觸控面板於觸控摺疊區中更包括多條補償電極、以及子電極彼此之間交錯的設置, 如此一來,可達到良好的觸控感測之效果,且提高其觸控感測之穩定性。並且,觸控面板於觸控摺疊區中藉由多條補償電極間無任何的電極設置,由此可使觸控面板在多次的彎曲或摺疊使用下,在觸控摺疊區中的電極結構可能較不易破壞,進而使其具有較佳的耐用度。除此之外,本揭露更提出多個觸控摺疊區的設置,可有效的改善觸控面板使用上的便利性。 In summary, in the touch panel of the present disclosure, there is no electrode structure that intersects each other in the touch folding area; thus, the electrode structure can be less susceptible to the touch structure even when used for multiple bending or folding. Destruction, which in turn makes it more durable. Further, the touch panel further includes a plurality of compensation electrodes and a setting in which the sub-electrodes are interlaced with each other in the touch folding area. In this way, a good touch sensing effect can be achieved, and the stability of the touch sensing is improved. Moreover, the touch panel has no electrode arrangement between the plurality of compensation electrodes in the touch folding area, thereby making the electrode structure of the touch panel in the touch folding area under multiple bending or folding use. It may be less susceptible to damage, which in turn makes it more durable. In addition, the disclosure further provides a plurality of touch folding area settings, which can effectively improve the convenience of using the touch panel.
雖然本揭露已以實施例揭露如上,然其並非用以限定本揭露,任何所屬技術領域中具有通常知識者,在不脫離本揭露的精神和範圍內,當可作些許的更動與潤飾,故本揭露保護範圍當視後附的申請專利範圍所界定者為準。 The present disclosure has been disclosed in the above embodiments, but it is not intended to limit the disclosure, and any person skilled in the art can make some changes and refinements without departing from the spirit and scope of the disclosure. The scope of the disclosure is to be determined by the scope of the appended claims.
D‧‧‧距離 D‧‧‧Distance
I-I’‧‧‧剖線 I-I’‧‧‧ cut line
10a‧‧‧觸控面板 10a‧‧‧Touch panel
100‧‧‧基板 100‧‧‧Substrate
110‧‧‧第一觸控區 110‧‧‧First touch area
111‧‧‧第一電極 111‧‧‧First electrode
112‧‧‧第二電極 112‧‧‧second electrode
113、123‧‧‧絕緣襯墊 113, 123‧‧‧Insulation liner
120‧‧‧第二觸控區 120‧‧‧Second touch area
121‧‧‧第三電極 121‧‧‧ third electrode
122‧‧‧第四電極 122‧‧‧fourth electrode
130‧‧‧第一觸控摺疊區 130‧‧‧First touch folding area
Claims (26)
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TW103130776A TWI569193B (en) | 2014-02-27 | 2014-09-05 | Touch panel |
CN201410558312.4A CN104881161B (en) | 2014-02-27 | 2014-10-20 | Touch panel |
US14/526,551 US9372509B2 (en) | 2014-02-27 | 2014-10-29 | Touch panel |
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US201461945141P | 2014-02-27 | 2014-02-27 | |
TW103127073 | 2014-08-07 | ||
TW103130776A TWI569193B (en) | 2014-02-27 | 2014-09-05 | Touch panel |
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Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TW200903309A (en) * | 2007-03-30 | 2009-01-16 | Fujitsu Component Ltd | Touch panel |
US20120162099A1 (en) * | 2010-12-24 | 2012-06-28 | Samsung Electro-Mechanics Co., Ltd. | Touch screen |
TW201310302A (en) * | 2011-08-31 | 2013-03-01 | Polyic Gmbh & Co Kg | Plastic film and touch sensor |
TW201316207A (en) * | 2011-10-04 | 2013-04-16 | Wistron Corp | Touch device, touch system and touch method |
US20130342439A1 (en) * | 2012-06-22 | 2013-12-26 | Jun-Ho Kwack | Flexible display apparatus |
-
2014
- 2014-09-05 TW TW103130776A patent/TWI569193B/en active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TW200903309A (en) * | 2007-03-30 | 2009-01-16 | Fujitsu Component Ltd | Touch panel |
US20120162099A1 (en) * | 2010-12-24 | 2012-06-28 | Samsung Electro-Mechanics Co., Ltd. | Touch screen |
TW201310302A (en) * | 2011-08-31 | 2013-03-01 | Polyic Gmbh & Co Kg | Plastic film and touch sensor |
TW201316207A (en) * | 2011-10-04 | 2013-04-16 | Wistron Corp | Touch device, touch system and touch method |
US20130342439A1 (en) * | 2012-06-22 | 2013-12-26 | Jun-Ho Kwack | Flexible display apparatus |
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