IP Library Granted Patent US 9,091,715
Granted Patent B2
US 9,091,715 · App. 13/776,099 · Granted Jul 28, 2015

Wearable device with capacitive sensor and method of operation therefor

Inventors: Rachid M Alameh (Crystal Lake, IL); Kenneth A Paitl (West Dundee, IL)
Assignee: Google Technology Holdings LLC
G01R27/2605H03K17/955H03K2217/94026
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Quick Facts
Patent No.
US 9,091,715
App. No.
13/776,099
Granted
Jul 28, 2015
Kind
B2
Abstract

A wearable device includes a capacitive sensor and capacitance sensing and calibration logic operative to determine that component drift for a capacitive sensor cannot be determined based on a capacitance sensed by the capacitive sensor. The capacitance sensing and calibration logic deactivates a drift calibration operation for the capacitive sensor while the capacitive sensor senses the capacitance. The capacitance sensing and calibration logic is further operative to determine that the capacitance sensed by the capacitive sensor is within a detection threshold that indicates that a conductive surface is within proximity of the capacitive sensor. The capacitance sensing and calibration logic can also determine that a wearable device, that includes the capacitive sensor, is in motion based on sensed intermittent changes in the capacitance. Various other methods of operation are disclosed.

Claims (29)

1. A method comprising:

responsive to determining, by a wearable computing device, that a capacitance sensed by a capacitive sensor of the wearable computing device is intermittently above a detection threshold:

determining, by the wearable computing device, that component drift for the capacitive sensor cannot be determined, wherein a capacitance value above the detection threshold indicates that a conductive surface is within a proximal distance of the capacitive sensor; and

while the capacitive sensor intermittently senses the capacitance above the detection threshold, deferring a drift calibration operation for the capacitive sensor.

2. The method of claim 1 , further comprising:

determining, by the wearable computing device, based on sensed intermittent changes in the capacitance, that the wearable computing device is in motion.

3. The method of claim 2 , further comprising:

responsive to determining, by the wearable computing device, that the capacitance sensed by the capacitive sensor meets a second threshold below the detection threshold, performing the drift calibration operation for the capacitive sensor.

4. The method of claim 2 , further comprising:

responsive to determining that the wearable device is in motion, providing a control signal to a component or an application of the wearable device.

5. The method of claim 1 , further comprising:

responsive to determining, by the wearable computing device, that the capacitance is below the detection threshold intermittently for a period of time, performing the drift calibration operation for the capacitive sensor.

6. The method of claim 1 , further comprising:

responsive to determining, by the wearable device, based on the capacitance sensed by the capacitive sensor, that the wearable computing device is in use, providing a control signal to a component or an application of the wearable computing device.

7. A wearable device comprising:

a capacitive sensor; and

capacitance sensing and calibration logic operatively coupled to the capacitive sensor, the capacitance sensing and calibration logic operative to, responsive to determining that a capacitance sensed by the capacitive sensor is intermittently above a detection threshold:

determine that component drift for the capacitive sensor cannot be determined, wherein a capacitance value above the detection threshold indicates that a conductive surface is within a proximal distance of the capacitive sensor; and

while the capacitive sensor intermittently senses the capacitance above the detection threshold, deactivate a drift calibration operation for the capacitive sensor.

8. The wearable device of claim 7 , wherein the capacitance sensing and calibration logic is further operative to:

determine, based on sensed intermittent changes in the capacitance, that the wearable device is in motion.

9. The wearable device of claim 8 , wherein the capacitance sensing and calibration logic is further operative to:

responsive to determining that the capacitance sensed by the capacitive sensor meets a second threshold below the detection threshold, perform the drift calibration operation for the capacitive sensor.

10. The wearable device of claim 7 , wherein the capacitance sensing and calibration logic is further operative to:

responsive to determining that the capacitance is below the detection threshold intermittently for a period of time, perform the drift calibration operation for the capacitive sensor.

11. The wearable device of claim 8 , wherein the capacitance sensing and calibration logic is further operative to:

responsive to determining that the device is in motion, provide a control signal to a component or an application of the wearable device.

12. The wearable device of claim 7 , wherein the capacitance sensing and calibration logic is further operative to:

responsive to determining, based on the capacitance sensed by the capacitive sensor, that the wearable device is in use, provide a control signal to a component or an application of the wearable device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2014
From: MOTOROLA MOBILITY LLC
To: GOOGLE TECHNOLOGY HOLDINGS LLC
Reel/Frame 034625/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2014
From: ALAMEH, RACHID M; PAITL, KENNETH A
To: MOTOROLA MOBILITY LLC
Reel/Frame 032615/0854 →
Continuity (1)
Related Publication 20140239982A1 · Aug 28, 2014