IP Library Granted Patent US 10,389,027
Granted Patent B2
US 10,389,027 · App. 15/982,519 · Granted Aug 20, 2019

Method and apparatus for sensing environmental parameters using wireless sensor(s)

Inventors: Shahriar Rokhsaz (Austin, TX); Brian David Young (Austin, TX); Ahmed Younis (San Antonio, TX)
Assignee: RF Micron, Inc.
H01Q7/005G06K7/10148G06K7/10336G06K19/0717G06K19/0723H01Q1/2216H01Q1/2225H01Q1/2291H01Q1/36H01Q1/38H01Q9/0407H01Q9/285H01Q13/106H04B5/0062H04B5/0081H03H7/40H04W4/70
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Quick Facts
Patent No.
US 10,389,027
App. No.
15/982,519
Granted
Aug 20, 2019
Kind
B2
Abstract

A method includes varying, by a tuning module of a passive radio RFID sensor, a reactive component impedance coupled to the tuning module and an antenna of the passive RFID sensor in order to change a system impedance. The method further includes producing an impedance value representative of the reactive component's impedance. The method further includes storing, by a memory module of the passive RFID sensor, the impedance value, identification information corresponding to the antenna, and a timestamp corresponding to the impedance value. The method further includes communicating, by a wireless communication module of the passive RFID sensor, the impedance value, the identification information, and the timestamp to an RFID reader. When the impedance value, the identification information, and the timestamp indicate an unfavorable environmental condition, the method further includes generating, by the RFID reader, an alarm signal.

Claims (29)

1. A method comprises:

varying, by a tuning module of a passive radio frequency identification (RFID) sensor, a reactive component impedance coupled to the tuning module and an antenna of the passive RFID sensor in order to change a system impedance, wherein the system impedance includes the antenna impedance and the reactive component's impedance, and wherein the antenna impedance is operable to vary within an environment in which the antenna is placed;

producing, by the tuning module, an impedance value representative of the reactive component's impedance;

storing, by a memory module of the passive RFID sensor, the impedance value representative of the reactive component's impedance, identification information corresponding to the antenna, and a timestamp corresponding to the impedance value;

communicating, by a wireless communication module of the passive RFID sensor, the impedance value, the identification information, and the timestamp to an RFID reader, wherein the RFID reader is operable to determine at least one environmental condition from the impedance value; and

when the impedance value, the identification information, and the timestamp indicate an unfavorable environmental condition:

generating, by the RFID reader, an alarm signal.

2. The method of claim 1 , wherein the reactive component impedance includes one or more of: a variable capacitor, a variable inductor, and a variable resistor.

3. The method of claim 1 , wherein the reactive component impedance comprises a varactor driven by an analog signal from the tuning module, the analog signal enabling a continuous reactive component impedance response.

4. The method of claim 1 , wherein the antenna impedance changes with one or more of pressure, temperature, humidity, wetness, and proximity.

5. The method of claim 1 , wherein the varying the reactive component impedance comprises:

varying, by the tuning module, the reactive component impedance to adjust resonant frequency of the passive RFID sensor to substantially match a carrier frequency of a radio frequency (RF) signal received by the antenna.

6. The method of claim 1 , wherein the identification information comprises a unique identification number associated with at least one of: the antenna and the passive RFID sensor.

7. A radio frequency identification (RFID) system comprises:

a passive RFID sensor, wherein the passive RFID sensor comprises:

at least one antenna operable to vary within an environment in which the at least one antenna is placed, wherein each at least one antenna has an antenna impedance; a tuning module coupled to the at least one antenna, wherein the tuning module is operable to:

vary a reactive component impedance coupled to the at least one antenna in order to change a system impedance, wherein the system impedance includes the antenna impedance and the reactive component's impedance; and

produce an impedance value representative of the reactive component's impedance; and

a memory module operable to store the impedance value representative of the reactive component's impedance, identification information corresponding to the at least one antenna, and a timestamp corresponding to the impedance value; and

a wireless communication module operable to communicate the impedance value, the identification information, and the timestamp to an RFID reader; and

the RFID reader, wherein the RFID reader is operable to:

determine at least one environmental condition from the impedance value; and

when the impedance value, the identification information, and the timestamp indicate an unfavorable environmental condition, produce an alarm signal.

8. The RFID system of claim 7 , wherein the reactive component impedance includes one or more of: a variable capacitor, a variable inductor, and a variable resistor.

9. The RFID system of claim 7 , wherein the reactive component impedance comprises a varactor driven by an analog signal from the tuning module, the analog signal enabling a continuous reactive component impedance response.

10. The RFID system of claim 7 , wherein the antenna impedance changes with one or more of pressure, temperature, humidity, wetness, and proximity.

11. The RFID system of claim 7 , wherein the tuning module is operable to vary the reactive component impedance by:

varying the reactive component impedance to adjust resonant frequency of the passive RFID sensor to substantially match a carrier frequency a radio frequency (RF) signal received by the at least one antenna.

12. The RFID system of claim 7 , wherein the identification information comprises a unique identification number associated with at least one of: the at least one antenna and the passive RFID sensor.

Assignments (7)
SECURITY INTEREST Recorded Jan 21, 2026
From: RFMICRON, INC.
To: PAULOS, JOHN; OSTRANDER, DARYL; SAUNDERS OSTRANDER, ROYCE ROBIN; LANEY, KIRK S.; LFHHC HIGH MESA INVESTMENT GROUP; ROKHSAZ, SHAHRIAR; JACOBSSON, JACOB
Reel/Frame 074460/0911 →
SECURITY INTEREST Recorded Jan 21, 2026
From: RFMICRON, INC.
To: PAULOS, JOHN; OSTRANDER, DARYL; SAUNDERS OSTRANDER, ROYCE ROBIN; LANEY, KIRK S.; LFHHC HIGH MESA INVESTMENT GROUP; ROKHSAZ, SHAHRIAR; JACOBSSON, JACOB
Reel/Frame 074460/0921 →
SECURITY INTEREST Recorded Jan 16, 2026
From: RFMICRON, INC.
To: PAULOS, JOHN; OSTRANDER, DARYL; SAUNDERS OSTRANDER, ROYCE ROBIN; LANEY, KIRK S.; LFHHC HIGH MESA INVESTMENT GROUP; ROKHSAZ, SHAHRIAR
Reel/Frame 074394/0219 →
SECURITY INTEREST Recorded Jan 16, 2026
From: RFMICRON, INC.
To: PAULOS, JOHN; OSTRANDER, DARYL; SAUNDERS OSTRANDER, ROYCE ROBIN
Reel/Frame 074394/0229 →
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 May 21, 2018
From: ROKHSAZ, SHAHRIAR; YOUNG, BRIAN DAVID; YOUNIS, AHMED
To: RFMICRON, INC.
Reel/Frame 045863/0164 →
Continuity (28)
Continuation 14727523 · Jun 1, 2015
Continuation In Part 14256877 · Apr 18, 2014
Continuation In Part 13209420 · Aug 14, 2011
Continuation In Part 12462331 · Aug 1, 2009
Division 11601085 · Nov 18, 2006
Continuation In Part 13209425 · Aug 14, 2011
Continuation In Part 12462331 · Aug 1, 2009
Division 11601085 · Nov 18, 2006
Continuation In Part 13467925 · May 9, 2012
Continuation In Part 13209425 · Aug 14, 2011
Continuation In Part 12462331 · Aug 1, 2009
Division 11601085 · Nov 18, 2006
Provisional Application 62004941 · May 30, 2014
Provisional Application 62004943 · May 30, 2014
Provisional Application 62011116 · Jun 12, 2014
Provisional Application 62131414 · Mar 11, 2015
Provisional Application 61428170 · Dec 29, 2010
Provisional Application 61485732 · May 13, 2011
Provisional Application 61814241 · Apr 20, 2013
Provisional Application 61833150 · Jun 10, 2013
Provisional Application 61833167 · Jun 10, 2013
Provisional Application 61833265 · Jun 10, 2013
Provisional Application 61871167 · Aug 28, 2013
Provisional Application 61875599 · Sep 9, 2013
Provisional Application 61896102 · Oct 27, 2013
Provisional Application 61929017 · Jan 18, 2014
Provisional Application 61934935 · Feb 3, 2014
Related Publication 20180351257A1 · Dec 6, 2018