EP3973370A1

Load control device having a capacitive touch surface

Abstract

This record has no abstract on file.

EP3973370A1, drawing sheet 1
Sheet 1 of 24

Term

13.9 yearsto projected expiry

Projected expiry 27 August 2040, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

69 claims: 11 independent, 58 dependent

  1. 1
    Claims of equivalent WO 2021041733 A1 CLAIMS1. A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more capacitive touch pads located behind the actuation member and arranged adjacent to the touch sensitive surface, the touch sensitive device configured to detect touch actuations along the touch sensitive surface;and a control circuit configured to: determine that a change in position of touch actuations along the touch sensitive surface exceeds a threshold;generate an output signal using a first filtering technique, the output signal indicating a position of a touch actuation along the touch sensitive surface;and determine not to use the first filtering technique to generate the output signal when the change in positions of touch actuations exceeds the threshold;wherein the output signal is used to control an amount of power delivered to the one or more electrical loads based on the position of the touch actuation.
  2. 24
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface in response to the receiving capacitive touch pads;wherein the control circuit is further configured to use a filtering technique for the touch sensitive device for determining the position of the touch actuation along the touch sensitive surface, the control circuit configured to operate in an active touch mode when the touch actuation is detected and in an inactive touch mode when the touch actuation is not detected, and wherein the control circuit is configured to use the filtering technique with a first variable when the control circuit is in the active touch mode and use the filtering technique with a second variable when the control circuit is in the inactive touch mode.
  3. 33
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and arranged in a linear array adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface and provide an output signal in response to the detection of the point actuation;and a control circuit configured to: determine positions of a plurality of consecutive point actuations along the touch sensitive surface using a first signal;determine whether the positions of the plurality of consecutive point actuations are within a predetermined range or not within the predetermined range;and filter the first signal to generate a second signal;wherein the control circuit is configured to use the first signal to determine the position along the length of the touch sensitive surface of the touch actuation when the positions of at least one of the plurality of consecution point actuations are not within the predetermined range, and configured to use the second signal to determine the position of the touch actuation along the length of the touch sensitive surface when the positions of the plurality of consecution point actuations are within the predetermined range.
  4. 40
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and arranged in a linear array adjacent to the touch sensitive surface, the touch sensitive device configured to detect a point actuation along the touch sensitive surface and provide a signal to the control signal indicating the position of the point actuation;and a control circuit configured to: determine a minimum value and a maximum value for positions of a plurality of consecutive point actuations over a predetermined period of time;use a filtering technique for the signal with a longer response time to generate an output signal based on a determination that the minimum and maximum values are within a predefined range;and use a filtering technique for the signal with a shorter response time to generate the output signal based on a determination that the minimum value or the maximum value is outside of the predefined range;wherein the output signal is used to control the one or more electrical loads based on a position of the point actuation along the touch sensitive surface.
  5. 41
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and arranged in a linear array adjacent to the touch sensitive surface, the touch sensitive device configured to detect a point actuation along the touch sensitive surface and provide an output signal to the control circuit in response to the detection of the point actuation;and a control circuit configured to determine a position of the point actuation along the touch sensitive surface using the output signal;wherein the control circuit is configured to use a heavily-filtered version of the output signal when the positions of a plurality of consecutive point actuations are within a predetermined range, and configured to use an unfiltered or lightly-filtered version of the output signal when the position of at least one of the plurality of consecutive point actuations is outside of the predetermined range.
  6. 42
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface in response to the receiving capacitive touch pads, and use a filtering technique for the touch sensitive device for determining the position of the touch actuation along the touch sensitive surface;wherein the control circuit is further configured to place a receiving capacitive touch pad into an active state when the location of a touch actuation along the touch sensitive surface is adjacent the receiving capacitive touch pad;and wherein the control circuit is configured to use the filtering technique with a first variable when at least one of the receiving capacitive touch pads are in the active state, and configured to use the filtering technique with a second variable when none of the receiving capacitive touch pads are in the active state
  7. 47
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and arranged in a linear array adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface and provide an output signal to the control circuit in response to the detection of the touch actuation;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface using the output signal;wherein the control circuit is configured to perform a recalibration routine for the touch sensitive device, wherein during the recalibration routine the control circuit is configured to determine one or more parameter values for the touch sensitive device, configured the touch sensitive device with the new parameter values, and store the new parameters value into memory.
  8. 53
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface in response to the receiving capacitive touch pads;wherein the control circuit is configured to operate in an active touch mode when the touch actuation is detected and operate in an inactive touch mode when the touch actuation is not detected;and wherein the control circuit is configured to disable a recalibration routine when the control circuit is in the active touch mode, and enable the recalibration routine when the control circuit is in the inactive touch mode.
  9. 60
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising one or more receiving capacitive touch pads located behind the actuation member and adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface in response to the receiving capacitive touch pads;wherein the control circuit is configured to operate in an active touch mode when the touch actuation is detected and in an inactive touch mode when the touch actuation is not detected;wherein the control circuit is configured to enable a recalibration routine when the control circuit is in the inactive touch mode, and disable the recalibration routine when the control circuit is in the active touch mode;and wherein, when the control circuit is in active touch mode, the control circuit is configured to measure an internal temperature of the control device, determine one or more new parameter values for the touch sensitive device based on the internal temperature, and configure the touch sensitive device using the one or more new parameter values.
  10. 63
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising a plurality of receiving capacitive touch pads located behind the actuation member and arranged in a linear array adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface by detecting a change in capacitance of one or more of the receiving capacitive touch pads, and provide an output signal to the control circuit in response to the detection of the touch actuation;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface using the output signal;wherein the control circuit is configured to detect a change in the capacitances of a number of the receiving capacitive touch pads and ignore the touch actuation when the number of receiving capacitive touch pads having a change in their respective capacitance exceeds a threshold.
  11. 66
    A control device configured for use in a load control system to control one or more electrical loads external to the control device, the control device comprising:an actuation member having a front surface that defines a touch sensitive surface along at least a portion of the front surface;a touch sensitive device comprising four or more receiving capacitive touch pads located behind the actuation member and arranged adjacent to the touch sensitive surface, the touch sensitive device configured to detect a touch actuation along the touch sensitive surface and provide an output signal to the control circuit in response to the detection of the touch actuation;and a control circuit configured to determine a position of the touch actuation along the touch sensitive surface using the output signal when an indication of a capacitance of at least one of the receiving capacitive touch pads exceeds a lower threshold and when the indication of the capacitance of all of the receiving capacitive touch pads does not exceed an upper threshold;wherein the control circuit is configured to ignore touch actuations along the touch sensitive surface when the indication of the capacitance of one or more receiving capacitive touch pads exceeds the upper threshold.