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Normalizing capacitive sensing measurements to reduce effects of low ground mass and noise

  • US 10,540,035 B2
  • Filed: 06/30/2016
  • Issued: 01/21/2020
  • Est. Priority Date: 06/30/2016
  • Status: Active Grant
First Claim
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1. An input device, comprising:

  • a plurality of sensor electrodes arranged in rows and columns in a sensing region of the input device, wherein each row and column comprises at least three sensor electrodes; and

    a processing system coupled to the plurality of sensor electrodes, the processing system configured to;

    drive a first plurality of capacitive sensing signals in parallel onto a first group of the plurality of sensor electrodes;

    generate a first plurality of capacitive measurements corresponding to the first group of the plurality of sensor electrodes in response to driving the first plurality of capacitive sensing signals;

    normalize a first capacitive measurement corresponding to one of the plurality of sensor electrodes in the first group using a combination of the first plurality of capacitive measurements; and

    determine a location of an input object at least partially based on at least one of;

    a comparison of the normalized first capacitive measurement and a detection threshold, wherein the normalized first capacitive measurement is adjusted at least partially based on a number of non-zero capacitive measurements in the first plurality of capacitive measurements generated in response to driving the first plurality of capacitive sensing signals; and

    a comparison of the normalized first capacitive measurement and the detection threshold, wherein the detection threshold is adjusted at least partially based on at least a portion of the first plurality of capacitive measurements generated in response to driving the first plurality of capacitive sensing signals.

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