Device and method for localized force sensing
First Claim
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1. An input device for an electronic system, comprising:
- an input surface;
a sensor layer comprising a plurality of transmitter electrodes and a plurality of touch receiver electrodes;
a stiffener layer;
a z-sensor layer above the stiffener layer and comprising;
a plurality of force receiver electrodes; and
a plurality of circular apertures interposed among the plurality of force receiver electrodes; and
a deformable layer disposed between the sensor layer and the z-sensor layer, the deformable layer comprising;
a plurality of circular raised features on the top of the deformable layer, aligned with and facing away from the plurality of circular apertures; and
a plurality of flat regions located below the circular raised features and on the bottom of the deformable layer,wherein the plurality of flat regions deflect into the plurality of apertures in response to a force applied to the input surface.
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Abstract
A device and method for operating a capacitive input device configured to sense input objects and their applied force in a sensing region includes a pliable component having an input surface and a first substrate including a first plurality of sensor electrodes. The device also includes a support substrate spaced apart from the pliable component; a second substrate having a second plurality of sensor electrodes and a plurality of apertures; and a spacing layer disposed between the pliable component and the support substrate and having a plurality of raised features aligned with and facing away from the apertures of the second substrate.
61 Citations
14 Claims
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1. An input device for an electronic system, comprising:
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an input surface; a sensor layer comprising a plurality of transmitter electrodes and a plurality of touch receiver electrodes; a stiffener layer; a z-sensor layer above the stiffener layer and comprising; a plurality of force receiver electrodes; and a plurality of circular apertures interposed among the plurality of force receiver electrodes; and a deformable layer disposed between the sensor layer and the z-sensor layer, the deformable layer comprising; a plurality of circular raised features on the top of the deformable layer, aligned with and facing away from the plurality of circular apertures; and a plurality of flat regions located below the circular raised features and on the bottom of the deformable layer, wherein the plurality of flat regions deflect into the plurality of apertures in response to a force applied to the input surface. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A processing system for use with an input device, the processing system configured to:
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determine a first type of resulting signal from a plurality of touch receiver electrodes in the input device; and determine a second type of resulting signal from a plurality of force receiver electrodes in the input device, wherein the first type of resulting signal comprises effects of input objects proximate an input surface of the input device, and further wherein the second type of resulting signal comprises effects of a force applied to the input surface, wherein the processing system is coupled to the plurality of touch receiver electrodes, the plurality of force receiver electrodes, and a plurality of transmitter electrodes in the input device, and wherein the input device comprises a sensor layer comprising the plurality of touch receiver electrodes and the plurality of transmitter electrodes, wherein the input device further comprises a stiffener layer, and a z-sensor layer above the stiffener layer and comprising; the plurality of force receiver electrodes; and a plurality of circular apertures interposed among the plurality of force receiver electrodes, wherein the input device further comprises a deformable layer disposed between the sensor layer and the z-sensor layer and comprising; a plurality of circular raised features on the top of the deformable layer, aligned with and facing away from the plurality of circular apertures; and a plurality of flat regions located below the circular raised features on the bottom of the deformable layer, and wherein the plurality of flat regions deflect into the plurality of circular apertures in response to the force applied to the input surface. - View Dependent Claims (9, 10, 11)
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12. An input device, comprising:
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a pliable input surface; a sensor layer comprising a plurality of transmitter electrodes and a plurality of touch receiver electrodes; a stiffener layer; a z-sensor layer above the stiffener layer and comprising; a plurality of force receiver electrodes; and a plurality of circular apertures interposed among the plurality of force receiver electrodes; a deformable layer disposed between the sensor layer and the z-sensor layer and comprising; a plurality of circular raised features on the top of the deformable layer, aligned with and facing away from the plurality of circular apertures; and a plurality of flat regions located below the circular raised features on the bottom of the deformable layer, wherein the plurality of flat regions deflect into the plurality of circular apertures in response to the force applied to the input surface; and a processing system communicatively coupled to the plurality of touch receiver electrodes, the plurality of transmitter electrodes, and the plurality of force receiver electrodes, the processing system configured to determine a first type of resulting signal from the plurality of touch receiver electrodes, and a second type of resulting signal from the plurality of force receiver electrodes, wherein the first type of resulting signal comprises effects of input objects proximate the input surface, and the second type of resulting signal comprises effects of the force applied to the input surface. - View Dependent Claims (13, 14)
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Specification