IP Library Granted Patent US 9,830,548
Granted Patent B2
US 9,830,548 · App. 15/643,962 · Granted Nov 28, 2017

Method and apparatus for detecting RF field strength

Inventors: Shahriar Rokhsaz (Austin, TX); Edwin de Angel (Austin, TX)
Assignee: RFMicron, Inc.
G06K19/0726H04B5/0062H04B17/318
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Quick Facts
Patent No.
US 9,830,548
App. No.
15/643,962
Granted
Nov 28, 2017
Kind
B2
Abstract

A radio frequency (RF) circuit comprises an antenna operably coupled to receive an RF signal, a power harvesting circuit operable to generate a first power source from the RF signal, a tank circuit coupled to the antenna and a tuning circuit. The tank circuit includes a selectively variable impedance and the tuning circuit is adapted to dynamically vary the selectively variable impedance of the tank circuit based on resonance of the RF circuit and frequency of the RF signal to substantially align the resonance of the RF circuit with the frequency of the RF signal. When the resonance of the RF circuit is substantially aligned with the frequency of the RF signal, the power harvesting circuit generates a second power source from the RF signal such that the second power source is greater than the first power source.

Claims (29)

1. A radio frequency (RF) circuit comprises:

an antenna operably coupled to receive an RF signal;

a power harvesting circuit operable to generate a first power source from the RF signal;

a tank circuit coupled to the antenna, wherein the tank circuit includes a selectively variable impedance; and

a tuning circuit operable to dynamically vary the selectively variable impedance of the tank circuit based on resonance of the RF circuit and frequency of the RF signal to substantially align the resonance of the RF circuit with the frequency of the RF signal, wherein, when the resonance of the RF circuit is substantially aligned with the frequency of the RF signal, the power harvesting circuit generates a second power source from the RF signal, wherein the second power source is greater than the first power source.

2. The RF circuit of claim 1 further comprises:

a processing module operable to generate a digital value representative of dynamic variance of the selectively variable impedance of the tank circuit;

memory operable coupled to the processing module; and

a transmitter section operable to transmit an outbound RF signal to a reader, wherein the outbound RF signal includes the digital value.

3. The RF circuit of claim 2 further comprises:

the antenna operable to receive a second RF signal, wherein the second RF signal has an adjusted transmit power with respect to the RF signal based on an interpretation of the digital value such that the second power source is at least one of a desired voltage level and a desired current level.

4. The RF circuit of claim 1 , wherein the tank circuit comprises:

an inductor; and

a variable capacitor coupled to the inductor, wherein the tuning circuit is operable to adjust capacitance of the variable capacitor such that a resonant frequency of the tank circuit substantially matches a frequency of the RF signal.

5. The RF circuit of claim 1 , wherein the power harvesting circuit comprises:

a regulator coupled to the tank circuit, wherein a current is induced in the tank circuit from the received RF signal, wherein the regulator is operable to extract a portion of the induced current to provide direct current (DC) operating power to the RF circuit.

6. The RF circuit of claim 1 further comprises:

a sensing circuit that includes:

the tank circuit having the selectively variable impedance;

the tuning circuit operable to dynamically vary the impedance of the tank circuit, and to develop a first quantized value representative of the impedance of the tank circuit; and

a detector circuit operable to develop a second quantized value as a function of a field strength of a received RF signal; and

memory, wherein the memory stores the first and second quantized values; and

a control circuit operable selectively to retrieve the first and second quantized values from the memory, wherein the retrieved first and second quantized values are used to sense changes to an environment to which the RF circuit is exposed.

7. The RF circuit of claim 6 , wherein the environment includes one or more of:

free space;

air;

liquids; and

metals.

8. The RF circuit of claim 1 , wherein the selectively variable impedance is set to an initial value.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Apr 29, 2021
From: KLDC PARTNERS LP; JDFWC, LTD.; LANEY, KIRK S; PAULOS HOLDINGS, LTD.; PAULOS, JOHN; ROKHSAZ, SHAHRIAR; MIRFAKHRAEI, SEYEDEH ZINAT; CARLO STRIPPOLI 2012 FAMILY TRUST; JACOBSSON, JACOB; KINGSLEY NOELLE INVESTMENTS, LLC; SUN FABER CAPITAL, LTD.; RICH POWER MANAGEMENT, LTD.; POLITTE CAPITAL GROUP, LLC
To: RFMICRON, INC.
Reel/Frame 056105/0455 →
SECURITY INTEREST Recorded Apr 10, 2020
From: RFMICRON, INC.
To: KLDC PARTNERS LP; JDFWC, LTD.; LANEY, KIRK S; PAULOS HOLDINGS, LTD.; PAULOS, JOHN; ROKHSAZ, SHAHRIAR; MIRFAKHRAEI, SEYEDEH ZINAT; CARLO STRIPPOLI 2012 FAMILY TRUST; JACOBSSON, JACOB; KINGSLEY NOELLE INVESTMENTS, LLC; SUN FABER CAPITAL, LTD.; RICH POWER MANAGEMENT, LTD.; POLITTE CAPITAL GROUP, LLC
Reel/Frame 052371/0082 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2017
From: ROKHSAZ, SHAHRIAR; DE ANGEL, EDWIN
To: RFMICRON, INC.
Reel/Frame 043123/0839 →
Continuity (7)
Continuation 14644471 · Mar 11, 2015
Continuation 13209425 · Aug 14, 2011
Continuation In Part 12462331 · Aug 1, 2009
Division 11601085 · Nov 18, 2006
Provisional Application 61428170 · Dec 29, 2010
Provisional Application 61485732 · May 13, 2011
Related Publication 20170308783A1 · Oct 26, 2017