Device for detecting user input with force sensor in stem thereof
There is provided a force sensor including a substrate and a polymer material layer. The substrate has a circuit layout that includes a first electrode and a second electrode configured to form a capacitor therebetween. The polymer material layer covers at least on a space between the first electrode and the second electrode, and is used to change capacitance of the capacitor while being pressed. The force sensor is arranged inside a stem of an earphone for detecting the user input.
1 . A device for detecting user input, comprising:
a stem, having an inner surface surrounding an inner space; and
a force sensor, attached to one side, which is a plane surface, of the inner surface, and comprising:
a substrate, laid with a drive electrode and a sensing electrode on a first surface thereof; and
a polymer material layer, different from the substrate, and covering on the drive electrode and the sensing electrode,
wherein the inner space is configured to contain a hard element which is configured to compress the polymer material layer when the stem is pressed, and
the force sensor is configured to detect a force pressing on the stem according to a dielectric constant change of the polymer material layer instead of a distance change between the drive electrode and the sensing electrode.
2 . The device as claimed in claim 1 , wherein the rest of the inner surface other than said one side is a curved surface.
3 . The device as claimed in claim 1 , wherein the hard element is a battery, and one side of the battery is configured to press on a second surface, opposite to the first surface, of the substrate.
4 . The device as claimed in claim 1 , wherein the hard element is a microphone, and one side of the microphone is configured to press on a second surface, opposite to the first surface, of the substrate.
5 . The device as claimed in claim 1 , further comprising a bump arranged between the polymer material layer and said one side of the inner surface.
6 . The device as claimed in claim 1 , wherein
the force sensor further comprises an adhesive layer configured to adhere the polymer material layer to the first surface of the substrate, and
the adhesive layer is arranged at an edge area of the polymer material layer.
7 . The device as claimed in claim 6 , wherein the substrate is further laid with a metal layer on the first surface thereof configured to be adhered with the adhesive layer.
8 . The device as claimed in claim 6 , wherein
the polymer material layer is repeatedly attachable and detachable with the first surface of the substrate via the adhesive layer, and
the polymer material layer further covers on a space between the drive electrode and the sensing electrode.
9 . The device as claimed in claim 6 , wherein
the force sensor further comprises a carrying layer attached to a surface of the polymer material layer not facing the substrate, and
an area of the carrying layer is larger than the polymer material layer.
10 . The device as claimed in claim 9 , wherein the adhesive layer is arranged on the carrying layer.
11 . A device for detecting user input, comprising:
a stem, having an inner surface surrounding an inner space; and
a force sensor, attached to one side, which is a plane surface, of the inner surface, and comprising:
a substrate, laid with a drive line and a sensing line on a first surface thereof;
a drive electrode, electrically connected to the drive line;
a sensing electrode, electrically connected to the sensing line; and
a polymer material layer, different from the substrate, and arranged between the drive electrode and the sensing electrode,
wherein the inner space is configured to contain a hard element which is configured to compress the polymer material layer when the stem is pressed, and
the force sensor is configured to detect a force pressing on the stem according to a dielectric constant change of the polymer material layer instead of a distance change between the drive electrode and the sensing electrode.
12 . The device as claimed in claim 11 , wherein the rest of the inner surface other than said one side is a curved surface.
13 . The device as claimed in claim 11 , wherein the hard element is a battery, and one side of the battery is configured to press on a second surface, opposite to the first surface, of the substrate.
14 . The device as claimed in claim 11 , wherein the hard element is a microphone, and one side of the microphone is configured to press on a second surface, opposite to the first surface, of the substrate.
15 . The device as claimed in claim 11 , further comprising a bump arranged between the sensing electrode and said one side of the inner surface.
16 . The device as claimed in claim 11 , further comprising a conductive adhesive layer configured to adhere the drive electrode to the drive line, and to adhere the sensing electrode to the sensing line.
17 . The device as claimed in claim 16 , wherein the conductive adhesive layer is a double sided conductive tape, conductive glue or an anisotropic conductive film.
18 . The device as claimed in claim 11 , wherein the drive electrode is formed by a conductive adhesive layer.
19 . The device as claimed in claim 11 , further comprising a separation wall between the substrate and the hard element.
20 . A device for detecting user input, comprising:
a stem, having an inner surface surrounding an inner space; and
a force sensor, attached to one side, which is a plane surface, of the inner surface, and comprising:
a substrate; and
a polymer material layer, different from the substrate, and attached to one side of the substrate and having a changeable dielectric constant upon being pressed,
wherein the inner space is configured to contain a mass block which is configured to compress an opposite side of the one side of the force sensor when the stem is pressed, and
the force sensor is configured to detect a force pressing on the stem according to a dielectric constant change of the polymer material layer.