This application claims the benefit of Taiwan application Serial No. 97124949, filed Jul. 2, 2008, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The invention relates in general to a conductive structure and a touch panel using the same, and more particularly to a conductive structure providing a linear electric field and a touch panel using the same.
2. Description of the Related Art
Along with the advance in technology, the application of touch panels has gained great popularity. The operating theory of the touch panel is as follows. When the touch panel is touched by a stylus or a user's finger, the electric field generated by the electrode pattern of the touch panel generates a signal in response to the position of touch. As the touch panel determines the position of touch according to the signal, the design of the electrode pattern of the touch panel is crucial to whether the touch panel can precisely determine the position of touch.
Generally speaking, the better the linear performance that the electric field generated by the electrode pattern shows, the more precisely the touch panel determines the position of touch. Besides, the size of the electrode pattern affects the size of the available sensing region of the touch panel as the electrode pattern and available the sensing region are located at the same surface. In other words, when the size of the electrode pattern increases, the size of the available sensing region of the touch panel decreases. Thus, despite the linear performance of the electric field can be improved by adding more rows of electrode patterns, the added rows of electrode patterns reduce the size of the available sensing region of the touch panel and increase the manufacturing cost and time correspondingly.
Accordingly, how to provide a touch panel capable of improving the linear performance of the electric field to increase the sensing precision without increasing the manufacturing cost and time has become an imminent issue.
The invention is directed to a conductive structure and a touch panel using the same. The design of the conductive structure improves the linear performance of the electric field generated by the conductive structure, such that the touch panel is able to determine the position of touch with higher precision. Besides, the touch panel of the invention further reduces manufacturing cost and time.
According to a first aspect of the present invention, a conductive structure for being disposed on a substrate of a touch panel is provided. The conductive structure includes several first lateral structures, several pattern structures and several second lateral structures. The first lateral structures are disposed separately and around the edges of the substrate. The pattern structures are disposed separately and around the edges of the substrate. The pattern structures are located at the inner sides of the first lateral structures. Each pattern structure has a -shaped portion, a first lateral portion and a second lateral portion. An opening of the -shaped portion faces at least one of the first lateral structures located at the outer side of the -shaped portion. The first lateral portion and the second lateral portion extend transversely from the two ends of the -shaped portion toward the directions opposite to the location of the -shaped portion, respectively. The second lateral structures are disposed alternately with the -shaped portions of the pattern structures and located at the inner side of at least one of the first lateral portion and the second lateral portion.
According to a second aspect of the present invention, a touch panel including a substrate, a conductive layer and a conductive structure is provided. The conductive layer is disposed on the first substrate. The conductive structure is disposed on the conductive layer. The conductive structure includes several first lateral structures, several pattern structures and several second lateral structures. The first lateral structures are disposed separately and around the edges of the first substrate. The pattern structures are disposed separately and around the edges of the first substrate. The pattern structures are located at the inner sides of the first lateral structures. Each pattern structure has a -shaped portion, a first lateral portion and a second lateral portion. An opening of the -shaped portion faces at least one of the first lateral structures located at the outer side of the -shaped portion. The first lateral portion and the second lateral portion extend transversely from the two ends of the -shaped portion toward the directions opposite to the location of the -shaped portion, respectively. The second lateral structures are disposed alternately with the -shaped portions of the pattern structures and located at the inner side of at least one of the first lateral portion and the second lateral portion.
The invention will become apparent from the following detailed description of the preferred but non-limiting embodiments. The following description is made with reference to the accompanying drawings.
Referring to
Also, referring to
The conductive structure 150 includes several first lateral structures 151, several pattern structures 153 and several second lateral structures 155. The first lateral structures 151 and the pattern structures 153 are disposed separately and around the edges of the substrate 110. The pattern structures 153 are located at the inner sides of the first lateral structures 151.
Each pattern structure 153 has a -shaped portion 153a, a first lateral portion 153b1 and a second lateral portion 153b2. An opening of 153a1 of the -shaped portion 153a faces at least one of the first lateral structures 151 located at the outer side of the -shaped portion 153a. The first lateral portion 153b1 and the second lateral portion 153b2 extend transversely from the two ends of the -shaped portion 153a toward the directions opposite to the location of the -shaped portion 153a, respectively.
The second lateral structures 155 are disposed alternately with the -shaped portion 153a of the pattern structures 153 and located at the inner side of at least one of the first lateral portion 153b1 and the second lateral portion 153b2.
By inputting a voltage to the conductive structure 150 of the touch panel 100, the conductive structure 150 correspondingly generates an electric field at the conductive layer 130. The generated electric field is uniformly distributed as the design of the first lateral structures 151. Besides, the cooperation of the second lateral structures 155 and the pattern structures 153 makes the value of the voltage of the electric field decrease from the inputted end to the end where on voltage is applied to. Thus, the electric field of the touch panel 100 has excellent linear performance, such that the touch panel 100 is able to precisely determine the position of touch.
The touch panel 100 of the present embodiment of the invention is further elaborated below. As shown in
As the first lateral structures 151, the pattern structures 153 and the second lateral structures 155 are disposed around the edges of the substrate 110 having the four sides 111, 113, 115 and 117, the first lateral structures 151, the pattern structures 153 and the second lateral structures 155 are disposed at the four sides 111, 113, 115 and 117. The disposition relationship and the the shape design of the first lateral structures 151, the pattern structures 153 and the second lateral structures 155 are exemplified by those located at the side 111.
As indicated in
Besides, as indicated in
With regard to the disposition relationship between the first lateral structures 151, the pattern structures 153 and the second lateral structures 155 of the conductive structure 150, the midpoint P1 of the interval d2 is located in the extending direction of the central axis of the longer side of the second lateral structures 155. Besides, the first lateral structures 151 are mutually spaced out an interval d3. The midpoint P2 of the interval d3 is located in the extending direction of the central axis of the longer side of the lateral portion 153b2. Besides, as indicated in
The design of the conductive structure 150 located at the side 111 is disclosed above. The design of the conductive structure 150 located at the sides 113, 115 and 117 is similar to that of the conductive structure 150 located at the side 111 and is not repeated here. Preferably, at least two first conductive structures 151 are located at each of the sides 111, 113, 115 and 117.
In the present embodiment of the invention, the intervals d1 located at the sides 111 and 115 is the same with the intervals d1 located at the sides 113 and 117, and the intervals d2 located at the sides 111 and 115 is the same with the intervals d2 located at the sides 113 and 117. However, the invention is not limited to the above exemplification. That is, the intervals d1 located at the sides 111 and 115 can differ from the intervals d1 located at the sides 113 and 117, and the intervals d2 located at the sides 111 and 115 can differ from the intervals d2 located at the sides 113 and 117.
Referring to
According to the conductive structure and the touch panel using the same disclosed in the above embodiments of the invention, the linear performance of the generated electric field is improved as a result of the design of the conductive structure, such that the touch panel of the present embodiment of the invention is able to precisely determine the position of touch. In contrast, the overall size of the conductive structure of the present embodiment of the invention is smaller than the overall size of the multi-row conductive structure. When the conductive structure of the present embodiment of the invention and the multi-row conductive structure are respectively disposed on the same touch panel, the touch panel disposed with the conductive structure of the present embodiment of the invention has the larger available sensing region. Thus, the touch panel of the present embodiment of the invention is convenient for the user to operate and meet the user's size requirement of the available sensing region. Moreover, the overall size of the conductive structure of the present embodiment of the invention is smaller to correspondingly reduce manufacturing cost and time.
While the invention has been described by way of example and in terms of a preferred embodiment, it is to be understood that the invention is 10 not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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97124949 | Jul 2008 | TW | national |