IP Library Granted Patent US 7,538,656
Granted Patent B2
US 7,538,656 · App. 11/930,736 · Granted May 26, 2009

Radio frequency identification based sensor

Assignee: Terahop Networks, Inc.
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Quick Facts
Patent No.
US 7,538,656
App. No.
11/930,736
Granted
May 26, 2009
Kind
B2
Abstract

A radio frequency (RF) addressable sensor includes one or more sensor elements, a sensor interface having an analog to digital converter coupled to the one or more sensor elements, at least one antenna, an RF power and communications interface coupled to the at least one antenna and the sensor interface, a controller coupled to the RF power and communications interface and the sensor interface, and a memory coupled to the controller and the sensor interface, wherein the memory is configured to store a tag identification number. The RF addressable sensor communicates with a wireless device that is coupled to a communications network. The wireless device communicates with the RF addressable sensor to obtain sensor data for transmission over the communications network. The sensor interface includes a memory, which includes a sensor data table. The sensor data table includes sensor processing information.

Claims (96)

1. A radio frequency (RF) addressable sensor comprising:

one or more sensor elements;

a sensor interface having an analog to digital converter coupled to the one or more sensor elements;

at least one antenna;

an RF power and communications interface coupled to the at least one antenna and the sensor interface, the communications interface including a transmitter and a first receiver;

a controller coupled to the RF power and communications interface and the sensor interface; and

a memory coupled to the controller and the sensor interface, wherein the memory is configured to store a tag identification number;

wherein the RF addressable sensor communicates with a wireless device that is coupled to a communications network, the communication comprising common designation network communications;

wherein the wireless device communicates with the RF addressable sensor to obtain sensor data for transmission over the communications network;

wherein the sensor interface includes a memory, the memory including a sensor data table;

wherein the sensor data table includes sensor processing information; and

wherein the RF addressable sensor is capable of powering down to conserve energy and capable of powering up in response to an electronic signal, and further includes a second receiver that is configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein, representing a common designation in common designation network communications, the electronic signal in order to power up the RF addressable sensor, the second receiver being adapted to draw less current than the communications interface while awaiting receipt of and listening for a radio frequency transmission.

2. The RF addressable sensor of claim 1 , wherein the sensor processing information includes software for analyzing the sensor data.

3. A radio frequency (RF) addressable device comprising:

one or more sensors;

a sensor interface coupled to the one or more sensors;

at least one antenna;

an RF power and communications interface coupled to the at least one antenna and the sensor interface, the communications interface including a transmitter and a first receiver;

a digital processor coupled to the RF power and communications interface and the sensor interface; and

a memory coupled to the digital processor and the sensor interface, wherein the memory is configured to store a tag identification;

wherein the RF addressable device communicates with a wireless device that is coupled to a communications network; the communication comprising common designation network communication;

wherein the wireless device communicates with the RF addressable device to obtain sensor data for transmission over the communications network;

wherein the sensor interface includes a memory;

wherein the memory includes sensor processing information; and

wherein the RF addressable device is capable of powering down to conserve energy and capable of powering up in response to an electronic signal, and further includes a second receiver that is configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein, representing a common designation in common designation network communications, the electronic signal in order to power up the RF addressable device, the second receiver being adapted to draw less current than the communications interface while awaiting receipt of and listening for a radio frequency transmission.

4. The RF addressable device of claim 3 , wherein the sensor processing information includes programming for analyzing the sensor data.

5. A radio frequency (RF) addressable device comprising:

one or more sensor components;

a sensor interface coupled to the one or more sensor components;

at least one antenna;

an energy source and communications component coupled to the at least one antenna and the sensor interface, the communications component including a transmitter and a first receiver;

a digital processor coupled to the energy source and communications component and the sensor interface; and

a memory coupled to the digital processor and the sensor interface, wherein the memory is configured to store an identification;

wherein the RF addressable device communicates with a wireless device that is coupled to an external network; the communication comprising common designation network communications;

wherein the wireless device communicates with the RF addressable device to obtain sensor derived information for transmission over the external network;

wherein the memory includes sensor processing information; and

wherein the RF addressable device is capable of powering down to conserve energy and capable of powering up in response to an electronic signal, and further includes a second receiver that is configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein, representing a common designation in common designation network communications, the electronic signal in order to power up the RF addressable device, the second receiver being adapted to draw less current than the communications component while awaiting receipt of and listening for a radio frequency transmission.

6. The RF addressable device of claim 5 , wherein the sensor processing information includes programming for analyzing the sensor derived information.

7. A radio frequency (RF) addressable sensor network, comprising:

(a) one or more RF addressable sensors;

(b) one or more wireless sensor readers coupled to a communications network;

(c) one or more end user devices coupled to the communications network, wherein the one or more wireless sensor readers communicate with the one or more RF addressable sensors to obtain sensor data for transmission over the communications network, the communications comprising common designation network communications;

(d) a sensor network processor coupled to the communications network, wherein the sensor network processor comprises a geolocation processor and a sensor data processor; and

(e) wherein at least one of the wireless sensor readers is capable of powering down to conserve energy and capable of powering up in response to an electronic signal, and includes a first receiver, a first transmitter and a second receiver, the second receiver configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein representing a common designation in common designation network communications, the electronic signal in order to power up the at least one wireless sensor reader, the second receiver being adapted to draw less current than the first receiver while awaiting receipt of and listening for a radio frequency transmission.

8. A radio frequency (RF) addressable sensor network, comprising:

(a) one or more RF addressable sensors;

(b) one or more wireless two-way radio frequency data communications devices coupled to a communications network;

(c) one or more end user devices coupled to the communications network, wherein the one or more wireless two-way radio frequency data communications devices communicate with the one or more RF addressable sensors to obtain sensor data for transmission over the communications network, the communications comprising common designation network communications; and

(d) a sensor network processor coupled to the communications network, wherein the sensor network processor comprises a geolocation processor and a sensor data processor;

(e) wherein at least one of the wireless two-way radio frequency data communications devices is capable of powering down to conserve energy and capable of powering up in response to an electronic signal, and includes a first receiver, a first transmitter and a second receiver, the second receiver configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein representing a common designation in common designation network communications, the electronic signal in order to power up the at least one wireless two-way radio frequency data communications device, the second receiver being adapted to draw less current than the first receiver while awaiting receipt of and listening for a radio frequency transmission.

9. A radio frequency (RF) addressable sensor interface network, comprising:

(a) one or more RF addressable sensor interfaces;

(b) one or more wireless two-way radio frequency data communications devices coupled to an external network; and

(c) one or more end user devices coupled to the external network, wherein the one or more wireless two-way radio frequency data communications devices communicate with the one or more RF addressable sensor interfaces to obtain sensor derived information for transmission over the external network, the communications comprising common designation network communications; and

(d) a sensor network processor coupled to one of the wireless two-way radio frequency data communications devices, wherein the sensor network processor comprises a geolocation processor and a sensor data processor;

(e) wherein at least one of the wireless two-way radio frequency data communications devices is capable of powering down to conserve energy and capable of powering up in response to an electronic signal, and includes a first receiver, a first transmitter and a second receiver, the second receiver configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein representing a common designation in common designation network communications, the electronic signal in order to power up the at least one wireless two-way radio frequency data communications device, the second receiver being adapted to draw less current than the first receiver while awaiting receipt of and listening for a radio frequency transmission.

10. A radio frequency (RF) addressable sensor comprising:

one or more sensor elements;

a sensor interface having an analog to digital converter coupled to the one or more sensor elements;

at least one antenna;

an RF power and communications interface coupled to the at least one antenna and the sensor interface;

a controller coupled to the RF power and communications interface and the sensor interface; and

a memory coupled to the controller and the sensor interface, wherein the memory is configured to store a tag identification number;

wherein the RF addressable sensor communicates with a wireless device that is coupled to a communications network;

wherein the wireless device communicates with the RF addressable sensor to obtain sensor data for transmission over the communications network;

wherein the RF power and communications interface, memory and sensor interface are implemented in an integrated circuit;

wherein the RF addressable sensor is configured for common designation network communications;

wherein the RF addressable sensor is capable of powering down to conserve energy and capable of powering up in response to an electronic signal; and

wherein the RF addressable sensor comprises, (i) a transmitter and a first receiver, and (ii) a second receiver that is configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein representing a common designation in common designation network communications, the electronic signal in order to power up the RF addressable sensor, the second receiver being adapted to draw less current than the first receiver while awaiting receipt of and listening for a radio frequency transmission.

11. A radio frequency (RF) addressable device comprising:

one or more sensors;

a sensor interface coupled to the one or more sensors;

at least one antenna;

an RF power and communications interface coupled to the at least one antenna and the sensor interface;

a digital processor coupled to the RF power and communications interface and the sensor interface; and

a memory coupled to the digital processor and the sensor interface, wherein the memory is configured to store a tag identification;

wherein the RF addressable device communicates with a wireless device that is coupled to a communications network;

wherein the wireless device communicates with the RF addressable device to obtain sensor data for transmission over the communications network;

wherein at least one of the RF power and communications interface, memory and sensor interface are implemented in an integrated circuit;

wherein the RF addressable device is configured for common designation network communications;

wherein the RF addressable device is capable of powering down to conserve energy and capable of powering up in response to an electronic signal; and

wherein the RF addressable device comprises, (i) a transmitter and a first receiver, and (ii) a second receiver that is configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein representing a common designation in common designation network communications, the electronic signal in order to power up the RF addressable device, the second receiver being adapted to draw less current than the first receiver while awaiting receipt of and listening for a radio frequency transmission.

12. A radio frequency (RF) addressable device comprising:

one or more sensor components;

a sensor interface coupled to the one or more sensor components;

at least one antenna;

an energy source and communications component coupled to the at least one antenna and the sensor interface;

a digital processor coupled to the energy source and communications component and the sensor interface; and

a memory coupled to the digital processor and the sensor interface;

wherein the memory is configured to store an identification;

wherein the RF addressable device communicates with a wireless device that is coupled to an external network;

wherein the wireless device communicates with the RF addressable device to obtain sensor derived information for transmission over the external network;

wherein at least one of the energy source and communications component, memory and sensor interface are implemented in an integrated circuit;

wherein the RF addressable device is configured for common designation network communications;

wherein the RF addressable device is capable of powering down to conserve energy and capable of powering up in response to an electronic signal; and

wherein the RF addressable device comprises, (i) a transmitter and a first receiver, and (ii) a second receiver that is configured to screen a radio frequency transmission and provide, on the basis of specific data identified therein representing a common designation in common designation network communications, the electronic signal in order to power up the RF addressable device, the second receiver being adapted to draw less current than the first receiver while awaiting receipt of and listening for a radio frequency transmission.

Assignments (4)
CHANGE OF NAME Recorded Oct 2, 2017
From: GOOGLE INC.
To: GOOGLE LLC
Reel/Frame 044101/0610 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2012
From: KLJ CONSULTING LLC
To: GOOGLE INC.
Reel/Frame 028100/0701 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2011
From: TERAHOP NETWORKS, INC.
To: KLJ CONSULTING LLC
Reel/Frame 027422/0740 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2011
From: TWITCHELL, ROBERT W., JR.
To: TERAHOP NETWORKS, INC.
Reel/Frame 027238/0570 →
Continuity (27)
Continuation 1116154200 · Aug 8, 2005
Continuation In Part 1060403200 · Jun 23, 2003
Continuation In Part 1051433600 · Nov 12, 2004
Continuation In Part 1098788400 · Nov 12, 2004
Continuation In Part 1098796400 · Nov 12, 2004
Continuation In Part 0968128200 · Mar 13, 2001
Continuation In Part PCTUS014951300 · Dec 26, 2001
Continuation In Part 0968128200 · Mar 13, 2001
Continuation In Part PCTUS014951300 · Dec 26, 2001
Continuation In Part PCTUS031498700 · May 14, 2003
Continuation In Part 0968128200 · Mar 13, 2001
Continuation In Part PCTUS014951300 · Dec 26, 2001
Continuation In Part PCTUS031498700 · May 14, 2003
Provisional Application 6025763700 · Dec 22, 2000
Provisional Application 6025739800 · Dec 22, 2000
Provisional Application 6038019500 · May 14, 2002
Provisional Application 6038067000 · May 16, 2002
Provisional Application 6059523300 · Jun 16, 2005
Provisional Application 6064263200 · Jan 10, 2005
Provisional Application 6068707300 · Jun 3, 2005
Provisional Application 6068741500 · Jun 3, 2005
Provisional Application 6068873700 · Jun 8, 2005
Provisional Application 6069157400 · Jun 17, 2005
Provisional Application 6069171800 · Jun 17, 2005
Provisional Application 6069188400 · Jun 17, 2005
Provisional Application 6069615900 · Jul 1, 2005
Related Publication 20080143483A1 · Jun 19, 2008