CN203773511U - Touch panel and touch device with touch panel - Google Patents

Touch panel and touch device with touch panel Download PDF

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Publication number
CN203773511U
CN203773511U CN201420189100.9U CN201420189100U CN203773511U CN 203773511 U CN203773511 U CN 203773511U CN 201420189100 U CN201420189100 U CN 201420189100U CN 203773511 U CN203773511 U CN 203773511U
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CN
China
Prior art keywords
layer
substrate
reflecting layer
contactor control
shielding layer
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Expired - Fee Related
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CN201420189100.9U
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Chinese (zh)
Inventor
黄俊荣
王盈富
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TPK Touch Solutions Inc
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TPK Touch Solutions Inc
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Priority to CN201420189100.9U priority Critical patent/CN203773511U/en
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Abstract

The utility model relates to the technical field of touch and discloses a touch panel. The touch panel comprises a base plate, a shielding layer and a first anti-reflection layer, wherein the shielding layer is located on the surface of the base plate; the shielding layer comprises a photographing window; part of the shielding layer is hollowly defined on the surface of the base plate and the anti-reflection layer is located in the photographing window. According to the touch panel provided by the utility model, the production cost is reduced and the production yield is increased.

Description

Contact panel and the contactor control device with this contact panel
Technical field
The utility model relates to touch technology, particularly contact panel and the contactor control device with this contact panel.
Background technology
Contact panel (touch panel) or Touch Screen (touch screen) are widely used in electronic installation gradually, particularly Portable or portable electric device, for example personal digital assistant (PDA) or mobile phone.In current contact panel, some panel is for increasing the sharpness of antireflection ability and raising vision, can plate one deck anti-reflective film on its glass baseplate surface (touch control operation surface), use and reduce the reflection of glass baseplate surface and increase light by the penetrance of glass substrate.In addition, with regard to be provided with shooting hole contact panel with regard to, image definition when this anti-reflective film also contributes to improve Extraction of Image.Yet along with the evolution of electronic installation and contact panel, the demand of high image definition also constantly promotes.How configuring anti-reflective film is a problem of contact panel industry to improve image definition.
Utility model content
In view of this, the purpose of this utility model is effectively to configure anti-reflective film, to improve image definition.Embodiment of the present utility model provides a kind of touch-control contact panel, comprises a substrate, a shielding layer and one first anti-reflecting layer.Shielding layer is positioned at the surface of substrate, and shielding layer comprises a camera window, and camera window is defined in the surface of substrate by part shielding layer hollow out, and the first anti-reflecting layer is positioned at camera window.
In embodiment of the present utility model, shielding layer is divided into a touch area and an outer peripheral areas around touch area by substrate, and within shielding layer and camera window be positioned at outer peripheral areas.
In embodiment of the present utility model, the first anti-reflecting layer is more covered in the surface of part shielding layer.
In embodiment of the present utility model, the first anti-reflecting layer is defined in camera window.
In embodiment of the present utility model, separately comprise one second anti-reflecting layer between substrate and shielding layer.
In embodiment of the present utility model, shielding layer and the first anti-reflecting layer are positioned on the second anti-reflecting layer.
In embodiment of the present utility model, substrate has a first surface and a second surface, first surface and second surface are positioned at the opposition side of substrate, and the second anti-reflecting layer is positioned at the second surface of substrate, separately comprise one the 3rd anti-reflecting layer and are positioned on the first surface of substrate.
In embodiment of the present utility model, separately comprise a functional layer and be positioned on the 3rd anti-reflecting layer, one of them or its combination that wherein functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer.
In embodiment of the present utility model, substrate has a first surface and a second surface, and first surface and second surface are positioned at the opposition side of substrate, and shielding layer and camera window are positioned at the second surface of substrate, wherein, separately comprising one second anti-reflecting layer is positioned on the first surface of substrate.
In embodiment of the present utility model, separately comprise a functional layer and be positioned on the second anti-reflecting layer.One of them that functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer or its combination.
Embodiment of the present utility model separately provides a kind of contactor control device, comprises a substrate, a display module, a shielding layer and one first anti-reflecting layer.Shielding layer is positioned at the surface of substrate, and shielding layer comprises a camera window, is defined in the surface of substrate by part shielding layer hollow out.Display module has an Extraction of Image element of the camera window of corresponding to, and the first anti-reflecting layer is positioned at camera window.
In embodiment of the present utility model, shielding layer is divided into a touch area and an outer peripheral areas around touch area by substrate, and within shielding layer and camera window be positioned at outer peripheral areas.
In embodiment of the present utility model, the first anti-reflecting layer is more covered in the surface of part shielding layer.
In embodiment of the present utility model, separately comprise one second anti-reflecting layer between substrate and shielding layer.
In embodiment of the present utility model, shielding layer and the first anti-reflecting layer are positioned on the second anti-reflecting layer.
In embodiment of the present utility model, substrate has a first surface and a second surface, and first surface and second surface are positioned at the opposition side of substrate, and the second anti-reflecting layer is positioned at the second surface of substrate.Separately comprising one the 3rd anti-reflecting layer is positioned on the first surface of substrate.
In embodiment of the present utility model, separately comprise a functional layer and be positioned on the 3rd anti-reflecting layer.One of them that functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer or its combination.
In embodiment of the present utility model, substrate has a first surface and a second surface, and first surface and second surface are positioned at the opposition side of substrate, and shielding layer and camera window are positioned at the second surface of substrate.Separately comprising one second anti-reflecting layer is positioned on the first surface of substrate.
In embodiment of the present utility model, separately comprise a functional layer and be positioned on the second anti-reflecting layer, one of them or its combination that wherein functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer.In embodiment of the present utility model, separately comprise an intermediary substrate between shielding layer and display module.
In embodiment of the present utility model, the first anti-reflecting layer being arranged in camera window contributes to improve light by the light transmittance of camera window, for example, the light transmittance of script approximately 90 ± 2% is promoted to approximately 94 ± 2%.Sharpness when in addition, the first anti-reflecting layer also contributes to improve Extraction of Image element extraction image.Again, the first anti-reflecting layer can be limited in the scope of camera window, thereby the first anti-reflecting layer is accounted for compared with small size, contributes to reduce production costs and improves production yield.
Technology contents of the present utility model and technical characterstic have disclosed as above, yet the utility model the technical staff in the technical field should be appreciated that, within not deviating from the disclosure spirit and scope that claims define, teaching of the present utility model and disclose and can do all replacements and modification.For example, the structure that the many elements that above disclose can be different is implemented or is replaced with the structure of other identical function, or adopts its combination.
In addition, the interest field of this case is not limited to device, element or the structure of the specific embodiment disclosing above.The utility model the technical staff in the technical field should be appreciated that, based on the utility model teaching and announcement device, element or structure, no matter existed now or developer in the future, it carries out in the identical mode of essence the function that essence is identical with this case embodiment announcement person, and reach the result that essence is identical, also can be used in the disclosure.Therefore, claim is in order to contain such device, element or structure.
Accompanying drawing explanation
Before of the present utility model, take off summary and be below described in detail in while following each accompanying drawing to read when being easier to understand.For reaching illustration purpose of the present utility model, in each accompanying drawing, figure is painted with preferably each specific embodiment of existing genus.Yet the utility model is not limited to painted accurate row and puts mode and apparatus, this point should be understood.
Figure 1A is depicted as according to an embodiment of the present utility model, the schematic top plan view of contact panel;
Figure 1B is depicted as according to an embodiment of the present utility model, and the contactor control device that comprises Figure 1A contact panel is along the diagrammatic cross-section of AA direction in Figure 1A;
Fig. 1 C is depicted as according to another embodiment of the present utility model, and the contactor control device that comprises Figure 1A contact panel is along the diagrammatic cross-section of AA direction in Figure 1A;
Figure 2 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device;
Figure 3 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device;
Figure 4 shows that according to an embodiment more of the present utility model, the diagrammatic cross-section of contactor control device;
Figure 5 shows that according to an embodiment of the present utility model, the diagrammatic cross-section of contactor control device;
Figure 6 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device;
Figure 7 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device; And
Figure 8 shows that according to an embodiment more of the present utility model, the diagrammatic cross-section of contactor control device.
Wherein, description of reference numerals is as follows:
10 contact panels
11 substrates
12 shielding layers
14 camera window
15 first anti-reflecting layers
18 display modules
20 contact panels
25 second anti-reflecting layers
30 contact panels
35 second anti-reflecting layers
36 functional layers
40 contact panels
45 the 3rd anti-reflecting layers
50 contact panels
51 intermediary substrates
60 contact panels
70 contact panels
80 contact panels
100 contactor control devices
101 first surfaces
102 second surfaces
111 touch areas
112 outer peripheral areas
185 Extraction of Image elements
200 contactor control devices
300 contactor control devices
400 contactor control devices
500 contactor control devices
600 contactor control devices
700 contactor control devices
800 contactor control devices
Embodiment
Figure 1A is depicted as according to an embodiment of the present utility model, the schematic top plan view of contact panel 10.Figure 1B is depicted as according to an embodiment of the present utility model, and the contactor control device 100 that comprises Figure 1A contact panel 10 is along the diagrammatic cross-section of AA direction in Figure 1A.Referring to Figure 1A and Figure 1B, contactor control device 100 comprises contact panel 10 and a display module 18.Contact panel 10 comprises a substrate 11, a shielding layer 12, a camera window 14 and one first anti-reflecting layer 15.Wherein, shielding layer 12 is arranged at the surface of substrate 11, and by substrate 11 its be divided into a touch area 111 and around touch area 111 outer peripheral areas 112.Shielding layer 12 is also defined as camera window 14 by surface periphery region 112 hollow outs of part substrate 11, as the window of Extraction of Image.In touch area 111, be provided with touch-control sensing electrode layer (not being illustrated in figure), in order to the touch position on sensing contact panel 10 or track.In addition, be also provided with signal wiring (not being illustrated in figure) in outer peripheral areas 112, it is electrically connected touch-control sensing electrode layer.
Display module 18 has an Extraction of Image element 185 of camera window of corresponding to 14, for example, be charge coupled cell (charge-coupled device; CCD), CMOS (Complementary Metal Oxide Semiconductor) CMOS active pixel sensor (CMOS active pixel sensor) or infrared ray sensor (infrared sensor).
In an embodiment of the present utility model, substrate 11 can be a rigid transparent substrates or a bendable transparent substrates, and its material can be selected from the transparent materials such as glass, acryl (PMMA), Polyvinylchloride (PVC), polypropylene (PP), polyethylene terephthalate (PET), PEN (PEN), polycarbonate (PC), polystyrene (PS).
Substrate 11 has a first surface 101 and a second surface 102, and first surface 101 and second surface 102 are positioned at the opposition side of substrate 11.The interface that first surface 101 is touched as contactor control device 100 users, and for example in the touch area on second surface 102 111, be provided with touch-control sensing electrode layer, with sensing user, touch relevant touch position or the track in first surface 101.Touch-control sensing electrode layer comprises the first axial electrode and the second axial electrode.The material of electrode can comprise various transparent conductive materials, for example, and tin indium oxide (indium tin oxide; ITO), indium zinc oxide (indium zinc oxide; IZO), cadmium tin (cadmium tin oxide; CTO), aluminum zinc oxide (aluminum zinc oxide; AZO), indium oxide zinc-tin (indium tin zinc oxide; ITZO), zinc paste (zinc oxide), cadmium oxide (cadmium oxide), hafnia (hafnium oxide; HfO), indium oxide gallium zinc (indium gallium zinc oxide; InGaZnO), indium oxide gallium zinc-magnesium (indium gallium zinc magnesium oxide; InGaZnMgO), indium oxide gallium magnesium (indium gallium magnesium oxide; InGaMgO) or indium oxide gallium aluminium (indium gallium aluminum oxide; InGaAlO).In one embodiment, the material of electrode can comprise opaque conductive material, for example, and the metal grill being formed by metal material (Metal Mesh).
Within shielding layer 12 is positioned at the outer peripheral areas 112 of substrate 11 second surfaces 102.Shielding layer 12 adopts opaque material to make conventionally, to cover for example signal wiring of element outside touch area 111.In an embodiment of the present utility model, the material of shielding layer 12 can be selected from the film of black light resistance material, black resin, black ink, antiradar reflectivity or have the similar material of other colors.
Within camera window 14 is defined in the outer peripheral areas 112 of second surface 102 of substrate 11 by these shielding layer 12 hollow outs of part.In detail, the part covering without shielding layer 12 in part outer peripheral areas 112 is defined as to camera window 14.The position of camera window 14 corresponds to Extraction of Image element 185, to see through camera window 14 in order to do Extraction of Image element 185, extracts image.
The first 15 of anti-reflecting layers are positioned at camera window 14.In an embodiment of the present utility model, an anti-reflective film is attached to interior first anti-reflecting layer 15 that forms of camera window 14.In another embodiment of the present utility model, with spraying or the mode of sputter in interior formation the first anti-reflecting layer 15 of camera window 14.Being provided with of the first anti-reflecting layer 15 helps improve light by the light transmittance of camera window 14, to meet the requirement of 185 pairs of light transmittances of Extraction of Image element.In an embodiment of the present utility model, the material of the first anti-reflecting layer 15 can be selected from chromium (Cr) or fluoride for example Teflon glue and calcium fluoride (CaF 2).
In the present embodiment, shielding layer 12 contacts with the first anti-reflecting layer 15 and is positioned on the second surface 102 of substrate 10.Again, in an embodiment of the present utility model, the first anti-reflecting layer 15 is defined between camera window 14 and this part shielding layer.Through this configuration, because the area of the first anti-reflecting layer 15 is less, only need to be limited in the scope of camera window 14, contribute to reduce production costs and improve production yield.
In another embodiment of the present utility model, as shown in Figure 1 C, the first anti-reflecting layer 15 is more covered in the surface of part shielding layer 12.Through this configuration, the first anti-reflecting layer 15 can more complete covering camera window 14, contributes to improve the light transmittance of camera window 14 integral body.
In embodiment of the present utility model, display module 18 can comprise liquid crystal display (liquid crystal display; LCD) panel, electroluminescence (electroluminescent; EL) for example Organic Light Emitting Diode (OLED) display panel, electricity soak (electrowetting) display panel, electrophoresis (electrophoretic) display panel or other various types of emissive type display panels, non-emissive type display panel, rigid display panel or flexible type display panel to display panel.In addition, display module 18 can utilize an adhesion layer (not being illustrated in figure) to be binded with contact panel 10.For example, this adhesion layer is used a shaped as frame glue or mouthful word glue, and it is only arranged on the outer peripheral areas 112 between display module 18 and contact panel 10.Only, in other alternate embodiment, adhesion layer also can be a complete glue-line.Adhesion layer can comprise optical cement (Optical Clear Resin; OCR) or optics adhesive tape (Optical Clear Adhesive; OCA).Again, optical cement can be glue or optically transparent special double faced adhesive tape.
Figure 2 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device 200.Please refer to Fig. 2, the element of contactor control device 200 and structure are analogous to the contactor control device 100 shown in Figure 1B, and only the contact panel 20 of contactor control device 200 separately comprises one second anti-reflecting layer 25 between substrate 11 and shielding layer 12.In the present embodiment, shielding layer 12 contacts with the first anti-reflecting layer 15 and is positioned on the second anti-reflecting layer 25.The light that helps improve the light transmittance of substrate 11 and reduce substrate 11 that is provided with of the second anti-reflecting layer 25 reflects.In an embodiment of the present utility model, the material of the second anti-reflecting layer 25 can be selected from chromium (Cr) or fluoride for example Teflon glue and calcium fluoride (CaF 2).
Figure 3 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device 300.Please refer to Fig. 3, the element of contactor control device 300 and structure are analogous to the contactor control device 100 shown in Figure 1B, and only the contact panel 30 of contactor control device 300 separately comprises on the first surface 101 that one second anti-reflecting layer 35 is positioned at substrate 11.The light that helps improve the light transmittance of substrate 11 and reduce substrate 11 that is provided with of the second anti-reflecting layer 35 reflects.In an embodiment of the present utility model, the material of the second anti-reflecting layer 35 can be selected from chromium (Cr) or fluoride for example Teflon glue and calcium fluoride (CaF 2).
Again, the contact panel 30 of contactor control device 300 separately comprises a functional layer 36 and is positioned on the second anti-reflecting layer 35.Functional layer 36 can comprise but be not limited to an explosion-proof layer (anti-split; AS), an anti-glare layer (anti-glare; AG), a hardened layer (hard coat; HC) and an anti-fingerprint layer (anti-fingerprint; AF) one of them or its combination.
When functional layer 36 is during as explosion-proof purposes, the material of functional layer 36 is optional from polymethylmethacrylate (PMMA), trimerization cellulose acetate (TAC), polyester (PET), polypropylene (PP), poly-alkyl (COP) or make with described combination of materials.
When functional layer 36 is during as anti-dazzle purposes, the material of functional layer 36 can be selected from silicon dioxide.The mist degree of this anti-glare film (haze) is approximately between 1%~2%, in order to scattered beam and prevent that the phenomenon of Newton ring from producing.
When functional layer 36 is as sclerosis during purposes, the material of functional layer 36 is optional from photoresist or silicon dioxide (SiO 2), make skin hardness for example higher than 2H, penetrance for example higher than 91 ﹪, warpage for example not higher than 10mm.
When functional layer 36 is during as anti-fingerprint purposes, the material of functional layer 36 can be selected from macromolecule membrane, metal-oxide film or Nano sol film.
Figure 4 shows that according to an embodiment more of the present utility model, the diagrammatic cross-section of contactor control device 400.Please refer to Fig. 4, the element of contactor control device 400 and structure are analogous to the contactor control device 200 shown in Fig. 2, and only the contact panel 40 of contactor control device 400 separately comprises one the 3rd anti-reflecting layer 45 and is positioned on the first surface 101 of substrate 11.And the second anti-reflecting layer 25 is positioned on the second surface 102 of substrate 11.The light that helps improve the light transmittance of substrate 11 and reduce substrate 11 that is provided with of the 3rd anti-reflecting layer 45 reflects.In an embodiment of the present utility model, the material of the 3rd anti-reflecting layer 45 can be selected from chromium (Cr) or fluoride for example Teflon glue and calcium fluoride (CaF 2).
Again, the contact panel 40 of contactor control device 400 separately comprises a functional layer 36 and is positioned on the 3rd anti-reflecting layer 45.Functional layer 36 can comprise but be not limited to an explosion-proof layer (anti-split; AS), an anti-glare layer (anti-glare; AG), a hardened layer (hard coat; HC) and an anti-fingerprint layer (anti-fingerprint; AF) one of them or its combination.
Figure 5 shows that according to an embodiment of the present utility model, the diagrammatic cross-section of contactor control device 500.Please refer to Fig. 5, the element of contactor control device 500 and structure are analogous to the contactor control device 100 shown in Figure 1B, and only the contact panel 50 of contactor control device 500 separately comprises an intermediary substrate 51 between shielding layer 12 and display module 18.The material type of intermediary substrate 51 is same as the material of substrate 11.In addition, intermediary substrate 51 can utilize an adhesion layer (not being illustrated in figure) to be binded with substrate 11.Again, intermediary substrate 51 can utilize another adhesion layer (not being illustrated in figure) to be binded with display module 18.The structure of adhesion layer and material are as described in embodiment above, in this another superfluous chatting.
Being provided with of intermediary substrate 51 helps to make the configuration variation of the electrode of touch-control sensing electrode layer, to do different utilizations in order to do contactor control device 500.For example, the first axial electrode of touch-control sensing electrode layer can be arranged on substrate 11, and the second axial electrode is arranged on intermediary substrate 51.Again for example, the first axial electrode of touch-control sensing electrode layer can be arranged at intermediary substrate 51 near the surface of substrate 11, and the second axial electrode is arranged at intermediary substrate 51 near the surface of display module 18.
Figure 6 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device 600.Please refer to Fig. 6, the element of contactor control device 600 and structure are analogous to the contactor control device 200 shown in Fig. 2, and only the contact panel 60 of contactor control device 600 separately comprises an intermediary substrate 51 between shielding layer 12 and display module 18.The function of intermediary substrate 51 is as described in embodiment above, in this another superfluous chatting.
Figure 7 shows that according to another embodiment of the present utility model, the diagrammatic cross-section of contactor control device 700.Please refer to Fig. 7, the element of contactor control device 700 and structure are analogous to the contactor control device 300 shown in Fig. 3, and only the contact panel 70 of contactor control device 700 separately comprises an intermediary substrate 51 between shielding layer 12 and display module 18.
Figure 8 shows that according to an embodiment more of the present utility model, the diagrammatic cross-section of contactor control device 800.Please refer to Fig. 8, the element of contactor control device 800 and structure are analogous to the contactor control device 400 shown in Fig. 4, and only the contact panel 80 of contactor control device 800 separately comprises an intermediary substrate 51 between shielding layer 12 and display module 18.
In embodiment of the present utility model, the first anti-reflecting layer 15 being arranged in camera window 14 contributes to improve light by the light transmittance of camera window 14, for example, the light transmittance of script approximately 90 ± 2% is promoted to approximately 94 ± 2%.Sharpness when in addition, the first anti-reflecting layer 15 also contributes to improve Extraction of Image element 185 extraction image.Again, the first anti-reflecting layer 15, because area is less, only needs to be limited in the scope of camera window 14, contributes to reduce production costs and improves production yield.
Technology contents of the present disclosure and technical characterstic have disclosed as above, yet disclosure the technical staff in the technical field should be appreciated that, within not deviating from the disclosure spirit and scope that claims define, teaching of the present disclosure and disclose and can do all replacements and modification.For example, the structure that the many elements that above disclose can be different is implemented or is replaced with the structure of other identical function, or adopts the combination of above-mentioned two kinds of modes.
In addition, the interest field of this case is not limited to device, element or the structure of the specific embodiment disclosing above.Disclosure the technical staff in the technical field should be appreciated that, based on disclosure teaching and announcement device, element or structure, no matter existed now or developer in the future, it carries out in the identical mode of essence the function that essence is identical with this case embodiment announcement person, and reach the result that essence is identical, also can be used in the disclosure.Therefore, following claim is in order to contain such device, element or structure.

Claims (20)

1. a contact panel, is characterized in that, comprises:
One substrate;
One shielding layer, is positioned on this substrate, and wherein this shielding layer comprises a camera window, is defined in the surface of this substrate by this shielding layer hollow out of part; And
One first anti-reflecting layer, is positioned at this camera window.
2. contact panel according to claim 1, is characterized in that, wherein this shielding layer is divided into a touch area and an outer peripheral areas around this touch area by this substrate, and within this shielding layer and this camera window be positioned at this outer peripheral areas.
3. contact panel according to claim 1, is characterized in that, wherein this first anti-reflecting layer is more covered in the surface of this shielding layer of part.
4. contact panel according to claim 1, is characterized in that, wherein this first anti-reflecting layer is defined in this camera window.
5. contact panel according to claim 1, is characterized in that, separately comprises one second anti-reflecting layer between this substrate and this shielding layer.
6. contact panel according to claim 5, is characterized in that, wherein this shielding layer and this first anti-reflecting layer are positioned on this second anti-reflecting layer.
7. contact panel according to claim 5, it is characterized in that, wherein this substrate has a first surface and a second surface, this first surface and this second surface are positioned at the opposition side of this substrate, and this second anti-reflecting layer is positioned at the second surface of this substrate, wherein, separately comprising one the 3rd anti-reflecting layer is positioned on the first surface of this substrate.
8. contact panel according to claim 7, is characterized in that, separately comprises a functional layer and is positioned on the 3rd anti-reflecting layer, one of them or its combination that wherein this functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer.
9. contact panel according to claim 1, it is characterized in that, wherein this substrate has a first surface and a second surface, this first surface and this second surface are positioned at the opposition side of this substrate, and this shielding layer and this camera window are positioned at the second surface of this substrate, wherein, separately comprising one second anti-reflecting layer is positioned on the first surface of this substrate.
10. contact panel according to claim 9, is characterized in that, separately comprises a functional layer and is positioned on this second anti-reflecting layer, one of them or its combination that wherein this functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer.
11. 1 kinds of contactor control devices, is characterized in that, comprise:
One substrate;
One shielding layer, is positioned at the surface of this substrate, and wherein this shielding layer comprises a camera window, is defined in the surface of this substrate by this shielding layer hollow out of part;
One display module, has an Extraction of Image element that corresponds to this camera window; And
One first anti-reflecting layer, is positioned at this camera window.
12. contactor control devices according to claim 11, is characterized in that, wherein this shielding layer is divided into a touch area and an outer peripheral areas around this touch area by this substrate, and within this shielding layer and this camera window be positioned at this outer peripheral areas.
13. contactor control devices according to claim 11, is characterized in that, wherein this first anti-reflecting layer is more covered in the surface of this shielding layer of part.
14. contactor control devices according to claim 11, is characterized in that, separately comprise one second anti-reflecting layer between this substrate and this shielding layer.
15. contactor control devices according to claim 14, is characterized in that, wherein this shielding layer and this first anti-reflecting layer are positioned on this second anti-reflecting layer.
16. contactor control devices according to claim 14, it is characterized in that, wherein this substrate has a first surface and a second surface, this first surface and this second surface are positioned at the opposition side of this substrate, and this second anti-reflecting layer is positioned at the second surface of this substrate, wherein, separately comprising one the 3rd anti-reflecting layer is positioned on the first surface of this substrate.
17. contactor control devices according to claim 16, is characterized in that, separately comprise a functional layer and are positioned on the 3rd anti-reflecting layer, one or its combination wherein that wherein this functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer.
18. contactor control devices according to claim 11, it is characterized in that, wherein this substrate has a first surface and a second surface, this first surface and this second surface are positioned at the opposition side of this substrate, and this shielding layer and this camera window are positioned at the second surface of this substrate, wherein, separately comprising one second anti-reflecting layer is positioned on the first surface of this substrate.
19. contactor control devices according to claim 18, is characterized in that, separately comprise a functional layer and are positioned on this second anti-reflecting layer, one of them or its combination that wherein this functional layer comprises an explosion-proof layer, an anti-glare layer, a hardened layer and an anti-fingerprint layer.
20. contactor control devices according to claim 11, is characterized in that, separately comprise an intermediary substrate between this shielding layer and this display module.
CN201420189100.9U 2014-04-17 2014-04-17 Touch panel and touch device with touch panel Expired - Fee Related CN203773511U (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105022511A (en) * 2014-04-17 2015-11-04 宸鸿光电科技股份有限公司 Touch panel and touch device with same
US20170068287A1 (en) * 2015-09-09 2017-03-09 Lg Display Co., Ltd. Display device
CN109407895A (en) * 2018-12-26 2019-03-01 业成科技(成都)有限公司 Bendable touch control component structure
CN109809706A (en) * 2019-03-27 2019-05-28 深圳创维-Rgb电子有限公司 The preparation method of 3D glass television base, TV and 3D glass television base
US20220171097A1 (en) * 2018-11-19 2022-06-02 Beijing Xiaomi Mobile Software Co., Ltd. Mobile terminal

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105022511A (en) * 2014-04-17 2015-11-04 宸鸿光电科技股份有限公司 Touch panel and touch device with same
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