1. Field of the Invention
The present invention generally relates to a touch panel, and more particularly, to a touch panel including a transparent conductive pattern and an optical compensation layer disposed on a camera hole.
2. Description of the Prior Art
Touch sensing technologies are well-developed in recent years. Many consumer electronics, such as mobile phones and tablet PCs, are integrated with touch sensing functions. These consumer electronics are also integrated with the camera function generally. Accordingly, a corresponding camera hole has to be disposed on a cover glass of a touch panel, and a camera unit may then receive outside light through the camera hole. Improvement in the light transmission ratio of the camera hole may be an approach to enhance the photo quality of the camera unit. Traditionally, an attached anti-reflection film is used to enhance the light transmission ratio. However, because the camera hole is generally pretty small (with diameter around 1.5 mm), it is not easy to attach the anti-reflection film on the camera hole. Accordingly, the related manufacturing time will be longer, and the manufacturing cost and yield will be influenced.
It is one of the objectives of the present invention to provide a touch panel. A transparent conductive pattern and an optical compensation layer are collocated on a hole of the touch panel so as to enhance the light transmission ratio of the hole.
To achieve the purposes described above, a preferred embodiment of the present invention provides a touch panel. The touch panel includes a substrate, a patterned decoration layer, a patterned transparent conductive layer and an optical compensation layer. The patterned decoration layer is disposed on the substrate so as to define an opening region and a hole on the substrate. The hole is disposed adjacently to a side of the opening region. The patterned transparent conductive layer is disposed on the substrate. The patterned transparent conductive layer includes a transparent conductive pattern. The transparent conductive pattern is disposed correspondingly to the hole, and the transparent conductive pattern completely covers the hole along a vertical projective direction perpendicular to the substrate. The optical compensation layer is disposed on the substrate, and the optical compensation layer covers the hole along the vertical projective direction.
In another embodiment of the present invention, the patterned transparent conductive layer further includes a plurality of touch electrodes disposed in the opening region.
In another embodiment of the present invention, the optical compensation layer further covers the opening region along the vertical projective direction.
In the present invention, the transparent conductive pattern disposed on the hole and the touch electrodes maybe made of identical material and formed at the same manufacturing step. Accordingly, the light transmission ratio of the hole in the touch panel of the present invention maybe enhanced without additional processes. In addition, the optical compensation layer disposed on the hole may also extend to cover the touch electrodes in the opening region so as to lower the visibility of the touch electrodes at the same time.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
To provide a better understanding of the present invention to the skilled users in the technology of the present invention, preferred embodiments will be detailed as follows. The preferred embodiments of the present invention are illustrated in the accompanying drawings with numbered elements to elaborate the contents and effects to be achieved.
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In this embodiment, the patterned transparent conductive layer 130 may include indium tin oxide (ITO), indium zinc oxide (IZO), aluminium zinc oxide (AZO) or other appropriate transparent conductive materials. The transparent conductive pattern 132 disposed on the hole R2 and the touch electrodes 131 are preferably made of identical material and formed at the same manufacturing step. It is worth noting that the transparent conductive pattern 132 may be connected to the touch electrodes 131 or not, according to different considerations. When the transparent conductive pattern 132 is electrically insulated from the touch electrodes 131, the transparent conductive pattern 132 is an electrically floating pattern preferably, but not limited thereto. In this embodiment, the patterned transparent conductive layer 130 is disposed between the substrate 110 and the optical compensation layer 140. The optical compensation layer 140 may preferably include a first compensation layer 141 and a second compensation layer 142 disposed in a stack configuration along the vertical projective direction Z, and the first compensation layer 141 is disposed between the patterned transparent conductive layer 130 and the second compensation layer 142, but not limited thereto. In other preferred embodiments of the present invention, a single layer optical compensation layer 140 or other kinds of multiple layered optical compensation layer 140 may be used to generate required optical compensation effects. In this embodiment, a refractive index of the first compensation layer 141 is preferably lower than a refractive index of the patterned transparent conductive layer 130 and a refractive index of the second compensation layer 142. The refractive index of the patterned transparent conductive layer 130 is preferably higher than a refractive index of the substrate 110. The first compensation layer 141 and the second compensation layer 142 may preferably include transparent insulation materials, such as silicon nitride, silicon oxide, silicon oxynitride, acrylic resin or other appropriate organic or inorganic transparent insulation materials. The light transmission ratio of the hole R2 may be enhanced by the allocation of the layers described above and the arrangement of their refraction indexes.
Please refer to Table 1 and
As shown in Table 1, compared to the light transmission ratio and the light reflection ratio of the samples of a single glass substrate and a glass substrate with only silicon oxide layer and silicon nitride layer disposed on, the light transmission ratio of the hole R2 in the touch panel of the present invention may be effectively enhanced by the allocation of the layers described above and the arrangement of their refraction indexes, and the light reflection ratio of the hole R2 in this embodiment may also be lowered. The light receiving condition of the light sensing device 190 may be improved accordingly.
In the present invention, the transparent conductive pattern 132 disposed on the hole R2 and the touch electrodes 131 are preferably made of identical material and formed at the same manufacturing step, and the light transmission ratio of the hole R2 maybe enhanced without additional process steps. On the other hand, apart from the improvement on the light transmission ratio of the hole R2 by the arrangement of the refractive index of each layer described above, the optical compensation layer 140 disposed on the hole R2 may further extend to cover the touch electrodes 131 in the opening region R1 so as to lower the visibility of the touch electrodes 131 and make it difficult to distinguish the touch electrodes 131. The visual quality of the touch panel maybe accordingly enhanced. In addition, the touch panel 101 may further include a strengthening layer 170 disposed between the patterned transparent conductive layer 130 and the substrate 110 for improving the ability of impact resistance of the substrate 110 and protecting the touch panel 101. The material of strengthening layer 170 may include an organic material, an inorganic material or a mixture of organic material and inorganic material. The organic material mentioned above may include a transparent organic material such as a polyurethane (PU) material, a polyimide (PI) material, an epoxy material, phenolic resin material, a polyester material, a silicone rubber material (such as polyisoprene rubber), a silicon material, rubber material or an organic mixture of the materials mentioned above. The inorganic material mentioned above may include titanium oxide (TiO2) , silicon oxide (SiO2), silicon nitride (SiNx), silicon oxynitride (SiOxNy) or other appropriate inorganic materials. The mixture of organic material and inorganic material mentioned above may include an acrylic material mixed with silica particles or aluminum oxide (Al2O3) particles. The mixture of the organic material and the inorganic material may have chemical bonding or not. For example, the strengthening layer 170 may include a thermosetting resin or a light-cured resin, such as positive photoresist or negative photoresist.
The following description will detail the different embodiments of the present invention. To simplify the description, identical components in each of the following embodiments are marked with identical symbols. For making it easier to understand the differences between the embodiments, the following description will detail the dissimilarities among different embodiments and the identical features will not be redundantly described.
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In the above embodiments, the patterned transparent conductive layer is disposed between the substrate and the optical compensation layer, or the optical compensation layer is disposed between the substrate and the patterned transparent conductive layer, but the present invention is not limited to this. In other embodiments of the present inventions, an optical compensation layer may also be disposed between the substrate and the patterned transparent conductive layer including the touch electrodes while another optical compensation layer is disposed on the patterned transparent conductive layer including the touch electrodes. Each of the optical compensation layers may be a single layer structure or a multiple layered structure so as to lower the visibility of the touch electrodes and improve the visual effect of the touch panel. The design of the optical compensation layer disposed on the patterned transparent conductive layer may be referred to the contents of the first preferred embodiment or the second preferred embodiment. The design of the optical compensation layer disposed between the substrate and the patterned transparent conductive layer may be referred to the contents of the third preferred embodiment or the fourth preferred embodiment. Additionally, the strengthening layer 170 may also be disposed between the optical compensation layer and the substrate for improving the ability of impact resistance of the substrate and protecting the touch panel.
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To summarize the above descriptions, in the touch panel of the present invention, the transparent conductive pattern and the optical compensation layer are collocated on the camera hole so as to enhance the light transmission ratio of the camera hole. In the present invention, the transparent conductive pattern disposed on the hole and the touch electrodes may be made of identical material and formed at the same manufacturing step. The light transmission ratio of the hole in the touch panel of the present invention may be enhanced without additional processes accordingly. In addition, the optical compensation layer disposed on the hole may also extend to cover the touch electrodes in the opening region so as to lower the visibility of the touch electrodes at the same time. The visual quality of the touch panel may be enhanced accordingly.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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102119200 | May 2013 | TW | national |