The present application claims priority from Japanese application JP2012-004850 filed on Jan. 13, 2012, the content of which is hereby incorporated by reference into this application.
1. Field of the Invention
The present invention relates to a touch panel and a display device having the touch panel.
2. Description of the Related Art
There has been known a liquid crystal display device having a transparent substrate called “front window” on a liquid crystal display panel (JP 2010-78898 A). An opaque area (print section) is present in a peripheral area of the front window, and the peripheral area of a display area of the liquid crystal display panel is hidden by the print section.
In a liquid crystal display device (JP 2008-83491 A) having a touch panel as an interface, the front window is put on the touch panel. The touch panel and the front window are positioned on the basis of the respective contours thereof.
The peripheral area (area outside of an effective area where an input is conducted) of the touch panel is also narrowed according to the narrowed peripheral area of the liquid crystal display panel. For that reason, when the print section formed in the front window is positionally displaced, there arises such a problem that a metal line present in the peripheral area of the touch panel is observable from an opening area surrounded by the print section of the front window.
An object of the present invention is to provide a display device that can precisely position a touch panel and a cover substrate having a light transmission area.
(1) According to the present invention, there is provided a display device including: a display panel having a display area; a touch panel having a sensing enable area overlapping with the display area, and a peripheral area outside of the sensing enable area; and a cover substrate including a light transmission area overlapping with the display area and the sensing enable area, and a light shielding area surrounding the light transmission area, in which the touch panel has a transparent electrode and a metal layer that overlaps with the transparent electrode in the sensing enable area, and has a metal line in the peripheral area, and the transparent electrode is electrically connected to the metal line, and in which the light shielding area of the cover substrate covers the metal line of the touch panel and the metal layer formed in the sensing enable area. According to the present invention, because the metal layer overlaps with the transparent electrode, the metal layer can be used as a positioning mark.
(2) In the display device according to the item (1), the light shielding area of the cover substrate includes a first portion that overlaps with the peripheral area so as to cover the metal line of the touch panel, and a second portion that overlaps with a part of the sensing enable area so as to cover the transparent electrode and the metal layer, an edge of the first portion adjacent to the light transmission area is located adjacent to the metal line, and an edge of the second portion adjacent to the light transmission area is located adjacent to the metal layer. With this configuration, the first portion is positioned with the metal line as an alignment mark, and the second portion is positioned with the metal layer as the alignment mark so that the light shielding area of the cover substrate and the touch panel can be positioned. In particular, since the edge of the second portion in the light shielding area is located inside of the transparent electrode, the metal line cannot serve as the alignment mark, but the metal layer can be used as the alignment mark.
(3) In the display device according to the item (2), the light transmission area is square, the first portion of the light shielding area is adjacent to three sides of the light transmission area, and the second portion of the light shielding area is adjacent to a remaining side of the light transmission area except for the three sides.
(4) In the display device according to the item (2) or (3), the light shielding area is formed into a frame shape having an opening, the opening is displaced from a center of a contour of the light shielding area toward any direction, and the second portion is adjacent to the opening on a side opposite to the direction toward which the opening is displaced.
(5) In the display device according to any one of the items (1) to (4), the cover substrate is made of a light transmission material, and a light shielding film is formed in the light shielding area.
(6) In the display device according to any one of the items (2) to (4), the cover substrate has a mark indicative of a touch button in the second portion of the light shielding area so as to overlap with the transparent electrode.
(7) In the display device according to any one of the items (1) to (6), the transparent electrode includes a first electrode extending in a first direction, and a second electrode extending in a second direction orthogonal to the first direction, the first electrode includes a plurality of first pad parts which are aligned in the first direction, and first connection parts that are thinner than the respective first pad parts, and connect the adjacent first pad parts in the first direction, the second electrode includes a plurality of second pad parts which are aligned in the second direction, and second connection parts that are thinner than the respective second pad parts, and connect the adjacent second pad parts in the second direction, and the metal layer overlaps with the second pad parts so as to prevent from overlapping with the first electrode and the second connection parts.
(8) In the display device according to the item (7), the first pad parts, the second pad parts, and the second connection parts are formed in the same layer position, the first pad parts and the first connection parts are formed in different layer positions and electrically connected to each other, and the first connection parts and the second connection parts sterically intersect with each other through an insulating film.
(9) In the display device according to the item (7) or (8) , the second pad parts are larger in area than the first pad parts.
(10) In the display device according to the item (9), the second pad parts each have a width in the first direction larger than a width in the second direction, and the metal layer extends to be longer in the first direction.
(11) According to the present invention, there is provided a touch panel including: a cover substrate having a light transmission area and a light shielding area surrounding the light transmission area, in which the touch panel has a sensing enable area and a peripheral area surrounding the sensing enable area, a transparent electrode and a metal layer are formed in the sensing enable area, the transparent electrode includes a first electrode extending in a first direction and a second electrode extending in a second direction intersecting with the first direction, the metal layer overlaps with the transparent electrode, a metal line which is connected to the transparent electrode is formed in the peripheral area, and the cover substrate has the light transmission area arranged opposite to the sensing enable area of the touch panel, and the light shielding area arranged opposite to the peripheral area and the metal layer formed in the sensing enable area.
The display device includes a touch panel 22 (for example, touch panel of a capacitive coupling system) . A rectangular touch panel 22 is arranged to overlap with the rectangular display panel 10. The touch panel 22 and the display panel 10 are bonded together by an adhesive layer 24. Since the touch panel 22 is arranged on the display area 12 of the display panel 10, an entry can be conducted on an image of the display panel 10 by fingers. The touch panel 22 is electrically connected with a flexible wiring board 26. Also, for example, a sensing area of the touch panel 22 is formed to be larger than the display area 12 of the display device, and a contour of a cover substrate 58 is formed to be larger than a contour of the touch panel 22.
Each of the plurality of transparent electrodes 30 includes the first electrode 32 extending in a first direction X (horizontal direction in
Each of the plurality of transparent electrodes 30 includes the second electrode 38 extending in a second direction Y (vertical direction in
The first pad parts 34, the second pad parts 40, and the second connection parts 42 are formed in the same layer position. As illustrated in
As illustrated in
The second pad parts 40 extend to be longer in the first direction X than in the second direction Y, and the metal mark 46 extends in the longer direction. For that reason, since the metal mark 46 can be separated from a pair of the first pad parts 34 located on both sides of the second pad parts 40, the formation of a bypass capacitor can be avoided. Also, the width of the second pad parts 40 in the second direction Y is wider than the width of the first pad parts 34 in the second direction Y. Accordingly, the formation of the bypass capacitor can be surely avoided when the metal mark 46 overlaps with the second pad parts 40 as illustrated in
As illustrated in
As illustrated in
As indicated by a two-dot chain line in
As illustrated in
The light shielding area 62 of the cover substrate 58 includes a second portion 70 that overlaps with a part of the sensing enable area 28 so as to cover any transparent electrodes 30 and the metal mark 46. An edge of the second portion 70 adjacent to the light transmission area 60 is located adjacent to the metal mark 46. The second portion 70 of the light shielding area 62 is adjacent to one remaining side S2 except for the three sides S1 of the light transmission are 60. The second portion 70 is adjacent to the opening 66 on a side opposite to the direction along which the opening 66 is displaced from the center of the contour of the light shielding area 62.
The cover substrate 58 has a mark 72 indicative of a touch button in the second portion 70 of the light shielding area 62 so as to overlap with any transparent electrode 30 as illustrated in
According to this embodiment, the first portion 68 is positioned with the metal lines 54 as an alignment mark, and the second portion 70 is positioned with the metal mark 46 as an alignment mark, to thereby position the light shielding area 62 of the cover substrate 58 and the touch panel 22. The positioning is conducted by recognizing the metal lines 54 and the metal mark 46 on the light shielding film 64 while observing from the touch panel 22 side.
Since the edge of the second portion 70 in the light shielding area 62 is located inside of the transparent electrodes 30, the metal lines 54 cannot serve as the alignment mark, but the metal mark 46 can be used as the alignment mark.
In this embodiment, as illustrated in
When the display device is viewed from an observer side, the flexible wiring board 26 connected to the touch panel 22 is connected to the touch panel 22 on a side opposite to a side on which the flexible wiring substrate 20 is connected to the display panel 10. With this configuration, a contact of the flexible wiring board 26 connected to the touch panel 22 and the flexible wiring substrate 20 connected to the display panel 10 can be suppressed. When the flexible wiring board 26 connected to the touch panel 22 and the flexible wiring substrate 20 connected to the display panel 10 are connected to the same circuit board, the flexible wiring substrate 20 and the flexible wiring board 26 may be arranged on the same side as illustrated in
Even in the above case, the metal mark 46 formed of the metal layer overlaps with the transparent electrodes 30, and the metal mark 46 can be confirmed from an upper surface or a lower surface of the touch panel 22. This facilitates the positioning of the touch panel.
While there have been described what are at present considered to be certain embodiments of the invention, it will be understood that various modifications may be made thereto, and it is intended that the appended claims cover all such modifications as fall within the true spirit and scope of the invention.
Number | Date | Country | Kind |
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2012-004850 | Jan 2012 | JP | national |