IP Library › Granted Patent US 11,791,669
Granted Patent B2
US 11,791,669 · App. 17/717,702 · Granted Oct 17, 2023

Low cost communications demodulation for wireless power receiver system

Inventors: Alberto Peralta (Chicago, IL); Michael Katz (Glen Ellyn, IL); Md. Nazmul Alam (Lombard, IL)
Assignee: NuCurrent, Inc.
H02J50/80H02J50/12H04B5/0037H04L27/06H04B5/0081
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Quick Facts
Patent No.
US 11,791,669
App. No.
17/717,702
Granted
Oct 17, 2023
Kind
B2
Abstract

A wireless receiver system includes a receiver antenna, a sensor, a demodulation circuit, and a receiver controller. The sensor is configured to detect electrical information associated with AC wireless signals, the electrical information including, at least, a voltage of the AC wireless signals. The demodulation circuit is configured to receive the electrical information from the at least one sensor, detect a change in the electrical information, determine if the change in the electrical information meets or exceeds one of a rise threshold or a fall threshold, if the change exceeds one of the rise threshold or the fall threshold, generate an alert, and output a plurality of data alerts. The receiver controller is configured to receive the plurality of data alerts from the demodulation circuit, and decode the plurality of data alerts into the wireless data signals.

Claims (31)

1. A wireless receiver system comprising:

a computer peripheral comprising:

a receiver antenna configured to couple with at least one other antenna of at least one other system and receive alternating current (AC) signals from the at least one other antenna, the AC signals including power signals and data signals, the data signals generated by altering electrical characteristics of the AC signals at the at least one other system;

at least one sensor configured to detect electrical information associated with the electrical characteristics of the AC signals, the electrical information including one or more of a current of the AC signals, a voltage of the AC signals, a power level of the AC signals, or combinations thereof;

a demodulation circuit configured to (i) receive the electrical information from the at least one sensor, (ii) detect a change in the electrical information, (iii) determine if the change in the electrical information meets or exceeds one of a rise threshold or a fall threshold, (iv) if the change exceeds one of the rise threshold or the fall threshold, generate an alert, (v) and output a plurality of data alerts; and

a receiver controller configured to (i) receive the plurality of data alerts from the demodulation circuit, and (ii) decode the plurality of data alerts to receive the data signals.

2. The wireless receiver system of claim 1 , wherein the data signals are encoded by the at least one other system as amplitude shift keying (ASK) data signals.

3. The wireless receiver system of claim 1 , wherein the at least one other system encodes the data signals as high threshold and low threshold voltages of the AC signals.

4. The wireless receiver system of claim 3 , wherein the rise threshold is associated with the high threshold voltage and the fall threshold is associated with the low threshold voltage.

5. The wireless receiver system of claim 3 , wherein the data signals are encoded as pulse width encoded data signals.

6. The wireless receiver system of claim 1 , wherein the electrical information includes a voltage of the power signals, and

wherein the demodulation circuit includes a slope detector circuit configured to determine a voltage rate of change for the voltage of the power signals.

7. The wireless receiver system of claim 6 , wherein the demodulation circuit includes a comparator circuit configured to (i) receive the voltage rate of change, (ii) compare the voltage rate of change to a rising rate of change, and (iii) determine that the change in the electrical information meets or exceeds the rise threshold, if the voltage rate of change meets or exceeds the rising rate of change.

8. The wireless receiver system of claim 6 , wherein the demodulation circuit includes a comparator circuit configured to (i) receive the voltage rate of change, (ii) compare the voltage rate of change to a falling rate of change, and (iii) determine that the change in the electrical information meets or exceeds the fall threshold, if the voltage rate of change meets or exceeds the falling rate of change.

9. The wireless receiver system of claim 6 , wherein the demodulation circuit includes a comparator circuit configured to (i) receive the voltage rate of change, (ii) compare the voltage rate of change to a rising rate of change, (iii) determine that the change in the electrical information meets or exceeds the rise threshold, if the voltage rate of change meets or exceeds the rising rate of change, (iv) compare the voltage rate of change to a falling rate of change, and (v) determine that the change in the electrical information meets or exceeds the fall threshold, if the voltage rate of change meets or exceeds the falling rate of change.

10. The wireless receiver system of claim 9 , wherein the demodulation circuit includes a set/reset (SR) latch in operative communication with the comparator circuit.

11. The wireless receiver system of claim 1 , wherein the receiver antenna is configured to operate based on an operating frequency of about 6.78 MHz.

12. A wireless power transfer system configured to transfer alternating current (AC) signals, the AC signals including power signals and data signals, the system comprising:

a wireless transmission system including a transmission antenna, the wireless transmission system configured to alter electrical characteristics of the AC signals; and

a computer peripheral comprising:

a wireless receiver system comprising:

a receiver antenna configured to couple with the transmission antenna and receiver the AC signals from the wireless transmission signals;

at least one sensor configured to detect electrical information associated with the electrical characteristics of the AC signals, the electrical information including one or more of a current of the AC signals, a voltage of the AC signals, a power level of the AC signals, or combinations thereof;

a demodulation circuit configured to (i) receive the electrical information from the at least one sensor, (ii) detect a change in the electrical information, (iii) determine if the change in the electrical information meets or exceeds one of a rise threshold or a fall threshold, (iv) if the change exceeds one of the rise threshold or the fall threshold, generate an alert, (v) output a plurality of data alerts; and

a receiver controller configured to (i) receive the plurality of data alerts from the demodulation circuit, and (ii) decode the plurality of data alerts to receive the data signals.

13. The wireless power transfer system of claim 12 , wherein the data signals include a voltage of power transmitted by the wireless transmission system.

14. The wireless power transfer system of claim 12 , wherein the at least one sensor includes a current sensor.

15. The wireless power transfer system of claim 12 , wherein the transmission antenna and the receiver antenna are configured to operate based on an operating frequency of about 6.78 MHz.

16. The wireless power transfer system of claim 12 , wherein the wireless transmission system encodes the data signals as high threshold and low threshold voltages of the AC signals.

17. The wireless power transfer system of claim 16 , wherein the rise threshold is associated with the high threshold voltage and the fall threshold is associated with the low threshold voltage.

18. The wireless power transfer system of claim 17 , wherein the data signals are encoded as pulse width encoded data signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2022
From: PERALTA, ALBERTO; KATZ, MICHAEL; ALAM, MD. NAZMUL
To: NUCURRENT, INC.
Reel/Frame 061822/0089 →
Continuity (2)
Continuation 16938630 · Jul 24, 2020
Related Publication 20230063324A1 · Mar 2, 2023