1. Field of the Invention
The present invention relates generally to the field of touch devices, and more particularly to touch display devices with out-cell touch devices and out-cell touch devices.
2. Description of the Prior Art
Touch panels have been widely used in various external input devices of electronic equipment. In recent years, with the flourishing development of the consumer electronics, there are many display devices in combination with touch sensing functions, such as mobile phones, GPS navigator system, tablet PCs, personal digital assistants (PDA), and laptop PC. In these consumer electronics, out-cell touch panels, in which touch panels are adhered to display panels, are widely used in current global touch panel industry.
Although the above-mentioned device is widely used in large-size out-cell touch display devices, it still has some drawbacks needing to be overcome. For example, in order to avoid the fracture of the touch device 14 during an adhesion process or operation, the thickness T of the cover 22 is often greater than a certain value, such as greater than 4 mm. However, when the cover 22 becomes thicker, the touch sensing element 20 becomes less sensitive to a touch from the exterior of the cover 22. On the other hand, the reduction in the thickness T of the cover 22 may lead to the decrease in the mechanical strength of the touch device 14, which causes the fracture of the display device 12 during the corresponding assembling process.
Therefore, there is still a need to provide touch display devices with robust mechanical strength and high sensitivity so as to overcome above-mentioned drawbacks.
To this end, the present invention provides several embodiments in order to solve the problems of the conventional techniques.
According to one embodiment of the present invention, a touch display device is provided. The touch display device includes a display device and a touch device disposed on the display device. The touch device includes a cover, a dummy structure and a touch sensing element. The touch sensing element is disposed between the cover and the dummy structure in a way that one surface of the touch sensing element is completely covered by the dummy structure.
According to another embodiment of the present invention, a touch device is provided. The touch device includes a cover, a dummy structure and a touch sensing element. The touch sensing element is disposed between the cover and the dummy structure in a way that one surface of the touch sensing element is completely covered by the dummy structure. The dummy structure further includes an adhesion surface adhered to a display device.
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 art, preferred embodiments are 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. It should be noted that all the figures are diagrammatic. Relative dimensions and proportions of parts of the drawings have been shown exaggerated or reduced in size, for the sake of clarity and convenience in the drawings. The actual dimensions and proportions of parts of the drawings may be modified in accordance with the specific requirements.
Furthermore, the touch device 114 may include a cover 122, a dummy structure 124 and a touch sensing element 120. The touch sensing element 120, which is used to perform touch sensing function, may be disposed between the cover 122 and the dummy structure 124. The cover 122 may include an external surface 122a, used to receive a touch pressure from the exterior, and an inner surface 122b disposed opposite to the external surface 122a, on which the touch sensing element 120 is directly disposed. Additionally, the cover 122 may also be used to avoid the touch sensing element 120 from directly contacting the external environment and to enhance the entire mechanical strength of the touch device 114. The dummy structure 124 is disposed between the touch sensing element 120 and the display device 112, and its cover surface 124b may completely cover one surface of the touch sensing element 120. Preferably, the area of the dummy structure 124 may be substantially equal to that of the cover 122. That is to say, portions of the dummy structure 124 may be disposed outside the viewing region R1 and therefore cover the peripheral region R2. The dummy structure 124 may also be used to avoid the touch sensing element 120 from directly contacting the external environment and to enhance the entire mechanical strength of the touch device 114. Additionally, in order to enhance the anti-glare or anti-reflection abilities of the touch device 114, additional single-layered or multi-layered optical layers 126, such as anti-reflection layers and/or anti-glare layers, may be optionally disposed on one surface or both surfaces of the dummy structure 124, such as an adhesion surface of the dummy structure 124. In addition, a device layer, such as a layer including photodetection devices, photovoltaic devices and/or trace lines, may be disposed on these surfaces. Light with image information emitted from the display device is preferably not absorbed by the optical layer 126 and/or the device layer in the viewing region R1.
For a capacitive touch sensing element 120, the thickness T1 of the cover 122 often affects the capacitance between its external surface 122a and the touch sensing element 120. Specifically, the touch sensitivity of the touch device 114 is inversely proportional to the thickness T1 of the cover 122. In this case, for example, when the thickness T1 of the cover 122 becomes thinner, the touch sensitivity of the touch device 114 becomes higher, and vice versa. Therefore, one feature of the present embodiment is that the dummy structure 124 is disposed in the touch device 114 in a way that the touch sensing element 120 is disposed between the cover 122 and the dummy structure 124. Referring to
For the capacitive touch sensing element 120 shown in
The aforementioned trace lines 120e, the first axis electrodes 120X, the second axis electrodes 120Y, the first sub-electrodes X1, the first connecting wire X2, the second sub-electrodes Y1 and the second connecting wire Y2 are preferably made of transparent conductive materials, such as indium tin oxide (ITO), indium zinc oxide (IZO), aluminum zinc oxide (AZO), a metallic material or another suitable conductive material. The aforementioned metallic material for example may include at least one of aluminum, copper, silver, chromium, titanium, molybdenum, a composite layer of the aforementioned materials, or an alloy of at least one of the aforementioned materials, but not limited thereto; and the aforementioned touch the first axis electrodes 120X and the second axis electrodes 120Y may include a mesh shape, such as metal mesh shape. The aforementioned conductive materials may include conductive particles, carbon nanotube or silver nanowire, but not limited thereto.
The following description details a second embodiment of a touch display device and a touch display device according to the present invention. To simplify the description, the following description will detail the dissimilarities among those embodiments and the variant embodiments, and the identical features will not be redundantly described. For the sake of brevity and clarity, the identical components in each of the following embodiments are marked with identical symbols.
Similarly, the proportion of the thickness T1 of the cover 122 to the thickness T2 of the dummy structure 124 is not limited to a certain value. Preferably, the thickness T1 of the cover 122 is less than or equal to the thickness T2 of the dummy structure 124, and the thickness T1 of the cover 122 is between 0.2 mm to 2 mm, but not limited thereto. Additionally, additional single-layered or multi-layered optical layers, such as anti-reflection layers and/or anti-glare layers, may be optionally disposed on one inner surface of the dummy substrate 134a and 134b or on at least one surface of the dummy structure 134. In addition, a device layer, such as a photodetection device, a photovoltaic device and/or trace lines, may be disposed on these surfaces. Preferably, light with image information, which is emitted from the display device, may not be absorbed by the optical layer and/or the device layer in the viewing region R1. Apart from the structure of the dummy structure 134, which includes two dummy substrates 134a and 134b and one adhesion layer 134c, the rest of the parts of the ouch display device 100′ and touch device 114′ disclosed in this embodiment, such as characteristics and positions of other parts, and material properties are almost similar to those described in the first embodiment. For the sake of brevity, these similar configurations and properties are therefore not disclosed in detail.
To sum up, the dummy structure disposed in the touch device is provided in the embodiments of the present invention. When comparing the touch devices of the present invention and conventional touch devices under an equal mechanical strength, due to the thinned thickness of the cover, the touch devices of the present invention can provide better touch sensitivity without lowering the entire mechanical strength of the touch devices. In this way, the touch devices may have robust mechanical strength and may not be fractured easily during the corresponding adhesion process or operation.
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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201410584339.3 | Oct 2014 | CN | national |