Capacitance touch panel module and fabrication method thereof
US-9204539-B2 · Dec 1, 2015 · US
US2016294388A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016294388-A1 |
| Application number | US-201414777776-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 30, 2014 |
| Priority date | Apr 4, 2013 |
| Publication date | Oct 6, 2016 |
| Grant date | — |
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An input apparatus according to an embodiment of the present technology includes an operation member, an electrode substrate, and a first support. The operation member includes a plurality of key regions and is configured to be deformable. The electrode substrate includes a first capacitive element arranged opposed to each of the plurality of key regions and a second capacitive element arranged around the first capacitive element. The electrode substrate is capable of electrostatically detecting a change of a distance from each of the plurality of key regions. The first support includes a plurality of first structures and a first space. The plurality of first structures connect between the electrode substrate and the operation member. The first space is formed between the plurality of first structures and capable of changing the distance between each of the plurality of key regions and the electrode substrate according to an input operation.
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1 . An input apparatus, comprising: a deformable, sheet-like operation member including a plurality of key regions; an electrode substrate including a first capacitive element arranged opposed to each of the plurality of key regions, and a second capacitive element arranged around the first capacitive element, the electrode substrate being capable of electrostatically detecting a change of a distance from each of the plurality of key regions; and a first support including a plurality of first structures that connect between the electrode substrate and the operation member, and a first space that is formed between the plurality of first structures and capable of changing the distance between each of the plurality of key regions and the electrode substrate according to an input operation. 2 . The input apparatus according to claim 1 , wherein the first capacitive element is arranged opposed to a center portion of each of the plurality of key regions, and the second capacitive element is arranged opposed to a circumferential portion of each of the plurality of key regions. 3 . The input apparatus according to claim 1 , wherein the electrode substrate further includes a limitation layer that is provided between the second capacitive element and the operation member and partially limits a thickness of the first space. 4 . The input apparatus according to claim 1 , wherein the operation member further includes a conductor layer provided on a surface opposed to the electrode substrate. 5 . The input apparatus according to claim 1 , further comprising a base substrate that is provided opposed to the operation member while sandwiching the electrode substrate therebetween and includes a conductor layer on a surface opposed to the electrode substrate; and a second support including a plurality of second structures that connect between the electrode substrate and the base substrate and are respectively opposed to the plurality of first structures while sandwiching the electrode substrate therebetween, and a second space that is formed between the plurality of second structures and capable of changing the distance between the electrode substrate and the base substrate according to an input operation, wherein the first support further includes a plurality of third structures that connect between the electrode substrate and the operation member and are arranged in the first space. 6 . The input apparatus according to claim 1 , wherein the operation member further includes a coupling region that is supported by the plurality of first structures and couples the plurality of key regions to each other, and the coupling region is formed to have flexural rigidity lower than that of the plurality of key regions. 7 . The input apparatus according to claim 6 , wherein the plurality of key regions are formed to have a thickness larger than that of the coupling region. 8 . The input apparatus according to claim 1 , further comprising a control unit that is electrically connected to the electrode substrate and configured to generate information on an input operation with respect to each of the plurality of key regions on the basis of outputs of the first capacitive element and the second capacitive element. 9 . The input apparatus according to claim 8 , wherein the control unit is configured to output an input signal if an amount of capacitance change of the first capacitive element is above a first threshold and an amount of capacitance change of the second capacitive element is above a second threshold smaller than the first threshold. 10 . The input apparatus according to claim 8 , wherein the control unit is configured to output an input signal if a difference between an amount of capacitance change of the first capacitive element and an amount of capacitance change of the second capacitive element is above a predetermined threshold. 11 . The input apparatus according to claim 8 , wherein the control unit is configured to output an input signal if an amount of capacitance change of the first capacitive element is above a first predetermined value and a time rate of change of capacitance of the first capacitive element is above a second predetermined value. 12 . An electronic apparatus, comprising: a deformable sheet-like operation member including a plurality of key regions; an electrode substrate including a first capacitive element that is arranged opposed to each of the plurality of key regions, and a second capacitive element that is arranged around the first capacitive element, the electrode substrate being capable of electrostatically detecting the change of the distance from each of the plurality of key regions; a first support including a plurality of first structures that connect between the electrode substrate and the operation member, and a first space that is formed between the plurality of first structures and capable of changing a distance between each of the plurality of key regions and the electrode substrate according to an input operation; and a control unit that is electrically connected to the electrode substrate and configured to generate information on an input operation with respect to each of the plurality of key regions on the basis of outputs of the first capacitive element and the second capacitive element.
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