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Micro-controller-based electronic switch using a proximity detector to facilitate hands-free control of an AC device

  • US 7,973,589 B2
  • Filed: 07/10/2009
  • Issued: 07/05/2011
  • Est. Priority Date: 07/10/2009
  • Status: Active Grant
First Claim
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1. An electronic switch for selective control over power to be applied to an AC device from an AC power source through an AC power line comprising:

  • a pair of terminals configured to connect to the AC power line in series between the AC power source and the AC device without any additional connection of the electronic switch to an external ground;

    a triac coupled between the pair of terminals to form a conductive connection therebetween when triggered by a gate pulse and retain said conductive connection between the terminals until a current level through the triac drops below a minimum level required to maintain conductivity of the triac;

    a rectifier coupled to the terminals to generate a rectified DC voltage at an output of the rectifier when the pair of terminals are connected to the AC power line;

    a switching arrangement coupled to the output of the rectifier;

    a primary storage element coupled to the switching arrangement to build a charge in the primary storage element when the switching arrangement is in a conductive state between the rectifier output and the primary storage element;

    a micro-controller coupled to the primary storage element to draw current from the charge thereof for powering of the micro-controller, linked to triac to effect triggering thereof, coupled to the terminals of the triac to monitor conditions thereacross, and coupled to the switching arrangement to effect control thereof; and

    a proximity detector coupled to the micro-controller to send an object-detected signal thereto when the proximity detector detects presence of an object proximate the detector to change a mode of the electronic switch between an ON mode in which the AC device is to be powered and an OFF mode in which the AC device is not to be powered;

    wherein the microcontroller is configured to execute one or more routines which, when executed, cause the microcontroller to;

    control change of the switching arrangement into and out of its conductive state for selective recharging of the primary storage element after drawing of current therefrom, effect an initial triggering the triac after each time an AC voltage of the AC power line crosses through zero between AC half cycles when the electronic switch is in the ON mode, not effect the initial triggering of the triac after each time the AC voltage crosses through zero between AC half cycles when the electronic switch is in the OFF mode, monitor the conditions across the terminals of the triac and, while the switch is in the ON mode, effect an additional triggering of the triac within each AC half cycle in response to any reading of the monitored conditions after the initial triggering that is indicative of a drop in the current level through the triac to a value below the minimum level required to maintain the conductivity of the triac.

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