IP Library Granted Patent US 10,843,510
Granted Patent B2
US 10,843,510 · App. 16/017,848 · Granted Nov 24, 2020

Pressure based wireless sensor and applications thereof

Inventors: Shahriar Rokhsaz (Austin, TX); Brian David Young (Austin, TX)
Assignee: RFMicron, Inc.
B60C23/00B60C23/0413B60C23/0474G06K7/10148G06K7/10297H02J50/00H04B5/0062H04L67/00H04B5/0012H04B5/0037H04L67/04H04L67/12H04W84/18
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Quick Facts
Patent No.
US 10,843,510
App. No.
16/017,848
Granted
Nov 24, 2020
Kind
B2
Abstract

A radio frequency identification (RFID) tag includes an antenna, an analog front end, a processing circuit, and memory. The analog front end includes a power circuit, a tuning circuit, a transmitter, and a receiver. The power circuit is operably coupled to convert a radio frequency (RF) signal into a power supply voltage. The tuning circuit, when enabled, adjusts an RF characteristic of the analog front end to tune power harvesting from the RF signal. The transmitter is operably coupled to transmit a response signal to the RFID reader via the antenna. The receiver is operably coupled to receive a command signal from the RFID reader, wherein the command signal is contained within a portion of the RF signal. The processing circuit is operable to interpret the command signal and generate the response signal.

Claims (49)

1. A radio frequency identification (RFID) tag comprises:

an antenna;

an analog front end operably coupled to the antenna, wherein the analog front end includes:

a power circuit operably coupled to convert a radio frequency (RF) signal received via the antenna from an RFID reader into one or more power supply voltages;

a tuning circuit operably coupled to the power circuit, wherein the tuning circuit, when enabled, selects one of a plurality of capacitance settings to adjust an RF characteristic of the analog front end to tune power harvesting from the RF signal;

a transmitter operably coupled to transmit a response signal to the RFID reader via the antenna; and

a receiver operably coupled to receive a command signal from the RFID reader, wherein the command signal is contained within a portion of the RF signal;

a processing circuit operably coupled to the analog front end, wherein the processing circuit is operable to:

interpret the command signal; and

generate the response signal to include an indication of the selected capacitance setting; and

memory operably coupled to the processing circuit operable to store the selected capacitance setting in the memory, wherein the selected capacitance is used while the RF signal is received by the RFID tag.

2. The RFID tag of claim 1 further comprises:

the RF signal includes a continuous wave component, wherein the command signal is modulated on the continuous wave component; and

when the continuous wave component is received without the command signal, the tuning circuit, when enabled, adjusts the RF characteristic of the analog front end to tune the power harvesting.

3. The RFID tag of claim 1 , wherein the tuning circuit is further operable to:

select each of the plurality of capacitance settings and determining a corresponding received signal strength indication (RSSI) of the RF signal to produce a plurality of RSSIs; and

select the capacitance setting of the plurality of capacitance settings corresponding a favorable RSSI of the plurality of RSSIs.

4. The RFID tag of claim 1 , wherein the plurality of capacitance settings comprises at least three capacitance settings.

5. The RFID tag of claim 1 , wherein the processing circuit comprises a state machine.

6. The RFID tag of claim 1 further comprises:

the memory storing information regarding an object that is affiliated with the RFID tag, wherein the object includes one of a box, a personal item, an automobile component, an article of manufacture, and an item in transit.

7. The RFID tag of claim 6 further comprises:

the processing circuit generates the response signal to include at least a portion of the information regarding the object.

8. An object tracking system comprises:

a plurality of radio frequency identification (RFID) tags affiliated with a plurality of objects, wherein a first RFID tag of the plurality of RFID tags is affiliated with a first object of the plurality of objects, wherein the first RFID tag includes:

an antenna;

an analog front end operably coupled to the antenna, wherein the analog front end includes:

a power circuit operably coupled to convert a radio frequency (RF) signal received via the antenna from an RFID reader into one or more power supply voltages;

a tuning circuit operably coupled to the power circuit, wherein the tuning circuit, when enabled, selects one of a plurality of capacitance settings to adjust an RF characteristic of the analog front end to tune power harvesting from the RF signal;

a transmitter operably coupled to transmit a response signal to the RFID reader via the antenna; and

a receiver operably coupled to receive a command signal from the RFID reader, wherein the command signal is contained within a portion of the RF signal;

a processing circuit operably coupled to the analog front end, wherein the processing circuit is operable to:

interpret the command signal; and

generate the response signal to include an indication of the selected capacitance setting; and

memory operably coupled to the processing circuit operable to store the selected capacitance setting in the memory, wherein the selected capacitance is used while the RF signal is received by the RFID tag.

9. The object tracking system of claim 8 further comprises:

the RFID reader.

10. The object tracking system of claim 8 further comprises:

the RF signal includes a continuous wave component, wherein the command signal is modulated on the continuous wave component; and

when the continuous wave component is received without the command signal, the tuning circuit, when enabled, adjusts the RF characteristic of the analog front end to tune the power harvesting.

11. The object tracking system of claim 8 , wherein the tuning circuit is further operable to:

select each of the plurality of capacitance settings and determining a corresponding received signal strength indication (RSSI) of the RF signal to produce a plurality of RSSIs; and

select the capacitance setting of the plurality of capacitance settings corresponding a favorable RSSI of the plurality of RSSIs.

12. The object tracking system of claim 8 , wherein the plurality of capacitance settings comprises at least three capacitance settings.

13. The object tracking system of claim 8 , wherein the processing circuit comprises a state machine.

14. The object tracking system of claim 8 further comprises:

the memory storing information regarding the first object that is affiliated with the first RFID tag, wherein the first object includes one of a box, a personal item, an automobile component, an article of manufacture, and an item in transit.

15. The object tracking system of claim 14 further comprises:

the processing circuit generates the response signal to include at least a portion of the information regarding the object.

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 Jun 25, 2018
From: ROKHSAZ, SHAHRIAR; YOUNG, BRIAN DAVID
To: RFMICRON, INC.
Reel/Frame 046428/0135 →
Continuity (45)
Continuation 15784484 · Oct 16, 2017
Continuation 15348365 · Nov 10, 2016
Continuation 16017848
Continuation In Part 15217816 · Jul 22, 2016
Continuation In Part 14150392 · Jan 8, 2014
Division 13209420 · Aug 14, 2011
Continuation In Part 12462331 · Aug 1, 2009
Division 11601085 · Nov 18, 2006
Continuation In Part 14256877 · Apr 18, 2014
Continuation In Part 15157723 · May 18, 2016
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 14869940 · Sep 29, 2015
Continuation In Part 12462331 · Aug 1, 2009
Division 11601085 · Nov 18, 2006
Continuation In Part 14869940 · Sep 29, 2015
Provisional Application 62196036 · Jul 23, 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
Provisional Application 61428170 · Dec 29, 2010
Provisional Application 62163143 · May 18, 2015
Provisional Application 61485732 · May 13, 2011
Provisional Application 61428170 · Dec 29, 2010
Provisional Application 61485732 · May 13, 2011
Provisional Application 61428170 · Dec 29, 2010
Provisional Application 61485732 · May 13, 2011
Provisional Application 62057186 · Sep 29, 2014
Provisional Application 62057187 · Sep 29, 2014
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