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Charging system incorporating bi-directional communication with implanted device

  • US 9,839,788 B2
  • Filed: 11/09/2016
  • Issued: 12/12/2017
  • Est. Priority Date: 01/06/2016
  • Status: Active Grant
First Claim
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1. A system for transferring power and communicating data between an external power transfer system (EPTS) and at least one body-implantable active device (BIAD) through a dermis layer, said system comprising:

  • an EPTS for being disposed external to a dermis layer of a body; and

    a BIAD for being disposed beneath the dermis layer of the body;

    the EPTS including;

    a transmit coil;

    a transmit coil driver circuit operable to drive the transmit coil with a resonant current at a resonant frequency, and further operable to modulate the resonant current responsive to a forward telemetry transmit data signal; and

    a back telemetry receive circuit coupled to the transmit coil, operable to generate on an output thereof, responsive to variations in transmit coil peak resonant current, a serial back telemetry receive data signal;

    the BIAD including;

    a receive coil tuned to the resonant frequency of the transmit coil and operable to inductively receive power therefrom when in proximity thereto;

    a power receiving circuit coupled to the receive coil and operable to deliver the received power to a power delivery circuit within the BIAD, and further operable, responsive to a serial back telemetry transmit data signal, to de-tune the receive coil and inhibit power transfer from the transmit coil to the receive coil and thereby decrease transmit coil loading and effect a corresponding change in the transmit coil peak resonant current; and

    a forward telemetry receive circuit coupled to the receive coil, operable to provide on an output thereof, responsive to variations in received power resulting from the modulated transmit coil resonant current, a forward telemetry receive data signal;

    wherein the power receiving circuit is further operable to de-tune the receive coil for a period of time much longer than a bit interval of the serial back telemetry transmit data signal when power transfer to the BIAD is not desired, and during such time, in order to transmit the serial back telemetry transmit data signal, operable to control receive coil tuning and de-tuning responsive to the serial back telemetry transmit data signal, then return the receive coil to a de-tuned state.

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