CA2836588C

A dual mode wireless communications device

Abstract

A wireless communications device includes a battery, a processing section coupled to the battery, and an RF interface. The battery is configured to provide power to operate the wireless communications device in a first mode of operation. The processing section is configured to operate on battery power in the first mode of operation. The RF interface is configured to receive an RF signal and generate operating power for the wireless communication device from the RF signal in a second mode of operation. The wireless communications device is configured to detect available RF power and enter the second mode of operation from the first mode of operation.

CA2836588C, drawing sheet 1
Sheet 1 of 19

Term

Projected expiry 30 May 2032.

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

40 claims: 4 independent, 36 dependent

  1. 1
    CA 02836588 2015-08-20 Claims:1. A wireless device comprising: a radio-frequency (RF) interface configured to receive an RF signal and configured to provide an output data signal derived from the RF signal;logic circuitry configured to receive the output data signal and provide an output analog signal based on the output data signal;power circuitry coupled to the RF interface and configured to provide DC operating power derived from the RF signal to the RF interface and the logic circuitry;a first impedance matching transformer comprising a plurality of switches configurable to adjust a turns ratio of the first transformer and having an input coupled to the logic circuitry and having an output, wherein the first transformer is configured to receive the output analog signal from the logic circuitry and convert the output analog signal to a converted output analog signal having a lower voltage and a higher current than the output analog signal;and a first transducer coupled to the output of the first impedance matching transformer and configured to receive the converted output analog signal from the first transformer output and produce an output audio signal based on the output analog signal.
  2. 11
    A wireless communication system comprising:a wireless device comprising: a radiofrequency (RF) interface configured to receive an RF signai and configured to provide an output data signal derived from the RF signal;logic circuitry configured to receive the output data signal and provide an output analog signal based on the output data signal;power circuitry coupled to the RF interface and configured to provide DC operating power derived from the RF signal to the RF interface and the logic circuitry;a first impedance matching transformer comprising a plurality of switches configurable to adjust a turns ratio of the first transformer and having an input coupled to the logic circuitry and having an output, wherein the first transformer is configured to receive the output analog signal from the logic circuitry and convert the output analog signal to a converted output analog signal having a lower voltage and a higher current than the output analog signal;and a first transducer coupled to the output of the first impedance matching transformer and configured to receive the converted output analog signal from the first transformer output and produce an output audio signal based on the #11290671 CA 02836588 2015-08-20 output analog signal;and a base station having at least one network connection and an RF transceiver, wherein: the RF transceiver is configured to generate the RF signal and receive backscatter communication from the wireless device;and the wireless device is configured to communicate data to the base station using backscatter communication.
  3. 21
    A method comprising:by a radio-frequency (RF) interface of a wireless device, receiving an RF signal and providing an output data signal derived from the RF signal;by logic circuitry of the wireless device, receiving the output data signal and providing an output analog signal based on the output data signal;by power circuitry of the wireless device, providing DC operating power derived from the RF signal to the RF interface and the logic circuitry;by a first impedance matching transformer of the wireless device, the first transformer comprising a plurality of switches configurable to adjust a turns ratio of the first transformer, receiving the output analog signal from the logic circuitry and converting the output analog signal to a converted output analog signal having a lower voltage and a higher current than the output analog signal;and by a first transducer of the wireless device, receiving the converted output analog signal from the first transformer and producing an output audio signal based on the output analog signal.
  4. 31
    A method comprising:by a base station, generating a radio-frequency (RF) signal;by an RF interface of a wireless device, receiving the RF signal and providing an output data signal derived from the RF signal;by logic circuitry of the wireless device, receiving the output data signal and providing an output analog signal based on the output data signal;by power circuitry of the wireless device, providing DC operating power derived from the RF signal to the RF interface and the logic circuitry;by a first impedance '/11299671 CA 02836588 2015-08-20 matching transformer of the wireless device, the first transformer comprising a plurality of switches configurable to adjust a turns ratio of the first transformer, receiving the output analog signal from the logic circuitry and converting the output analog signal to a converted output analog signal having a lower voltage and a higher current than the output analog signal;by a first transducer of the wireless device, receiving the converted output analog signal from the first transformer and producing an output audio signal based on the output analog signal;by the wireless device, communicating data to the base station using backscatter communication;and by the base station, receiving the backscatter communication from the wireless device.