IP Library Granted Patent US 7,479,889
Granted Patent B2
US 7,479,889 · App. 11/417,712 · Granted Jan 20, 2009

Locator system

Assignees: Ronald S. Kazdin; Thomas J. Radu
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Quick Facts
Patent No.
US 7,479,889
App. No.
11/417,712
Granted
Jan 20, 2009
Kind
B2
Abstract

A locator system for locating a person, animal or mobile object for use with a cellular network, the locator system including a fob containing a GSM transceiver for communication with the cellular network, a GPS unit for indicating the location of a person, animal or object being searched for, a baseband processor for controlling electronic modules in the fob and an RF beacon for transmitting strong ID signals in pulse form for indicating the direction and location of the fob. The system can operate with a call center to which communications are made by a guardian seeking assistance in finding the lost person, animal or object, which in turn communicates with the cellular network to send signals to activate the fob and which receive signals from the fob. Mobile or handheld tracking units pick up GPS and RF beacon signals to find the fob. The locator system can be used in combination with a residential locating system.

Claims (45)

1. A fob for use with a cellular network and a global positioning system, said fob comprising:

a cellular network transceiver for establishing a telecommunications link with the cellular network;

a global positioning system receiver for generating an output of GPS location coordinates of said global positioning system;

an independent radio frequency tracking beacon transmitter actuable for transmitting ID/data radio frequency signals, said independent radio frequency tracking beacon transmitter being independent from said cellular network transceiver, and said ID/data radio frequency signals having an identification code for identifying said independent radio frequency tracking beacon transmitter; and

a protocol processor for electrically controlling said global positioning system, receiver, said cellular network transceiver and said independent radio frequency tracking beacon transmitter, and said protocol processor sending control signals to said independent radio frequency tracking beacon transmitter to cause said independent radio frequency tracking beacon transmitter to transmit ID/data radio frequency signals for detection by one or more tracking unit(s).

2. A fob according to claim 1 wherein said independent radio frequency tracking beacon transmitter includes a radio frequency power amplifier for increasing the power output of said independent radio frequency tracking beacon transmitter when said radio frequency transmitter is transmitting signals to be detected for locating said independent radio frequency beacon transmitter.

3. A fob according to claim 2 wherein said independent radio frequency tracking beacon transmitter incorporates a frequency-hopping sequential spread-spectrum protocol.

4. A fob according to claim 2 , and where the independent radio frequency tracking beacon transmitter transmits a low duty cycle, pulsed, ID/data tracking signal.

5. A fob according to claim 1 wherein said independent radio frequency tracking beacon transmitter transmits ID/data radio frequency signals having a predetermined number of bytes selected to provide each independent radio frequency tracking beacon transmitter with a unique identity code.

6. A fob according to claim 5 wherein each independent radio frequency tracking beacon transmitter transmits an ID/data radio frequency signal having at least one identity byte.

7. A fob according to claim 5 wherein each independent radio frequency tracking beacon transmitter transmits an ID/data radio frequency signal having at least one byte indicative of the status of some electronic component of at least one of the circuitry including said independent radio frequency tracking beacon transmitter, said global positioning system and said baseband processor.

8. A fob according to claim 1 wherein said protocol processor sends signals for activating said global positioning system to generate an output indicating the newest or the last-known GPS location coordinates of said global positioning signal in response to signals received by said cellular network transceiver from the cellular network.

9. A fob according to claim 1 wherein said protocol processor sends signals for activating said independent radio frequency tracking beacon transmitter in response to the absence of signals from the cellular network for a predetermined period of time.

10. A fob according to claim 1 for further use with an electronic apparatus having a wire defining a periphery of a containment area and a generator to apply an electronic signal to the wire, the wire transmitting a first radio frequency signal, said fob further comprising:

a periphery wire detector circuit for detecting a first radio frequency signal from the periphery wire and for generating wire detector signals to said protocol processor to activate said independent radio frequency tracking beacon transmitter.

11. A fob according to claim 1 for further use with an electronic apparatus having a wire defining a periphery of a containment area and a generator to apply an electronic signal to the wire, the wire transmitting a first radio frequency signal, said fob further comprising:

a periphery wire detector circuit for detecting a first radio frequency signal from the periphery wire and for generating wire detector signals to said protocol processor to activate said independent radio frequency tracking beacon transmitter and said cellular network transceiver, for detection by one or more tracking units and to send signals reflective of the wire detector signals to the cellular network, respectively.

12. A fob according to claim 1 and further comprising a motion detector circuit for generating a motion-stationary signal to said protocol processor for activating said independent radio frequency tracking beacon transmitter in response to a lack of motion of said fob for a predetermined period of time.

13. A fob according to claim 1 and further comprising circuitry for generating signals indicating a fob voltage level to said protocol processor for activating said independent radio frequency tracking beacon transmitter in response to a predetermined fob voltage level.

14. A fob according to claim 1 and further comprising a motion detector circuit for generating a motion-stationary signal to said protocol processor for activating said independent radio frequency tracking beacon transmitter and cellular network transceiver in response to a lack of motion of said fob for a predetermined period of time, to send signals reflective of the lack of motion of said fob, for detection by one or more tracking units and to the cellular network, respectively.

15. A fob according to claim 1 and further including:

monitoring and specific status code generating circuitry to monitor characteristics and generate specific status codes to said protocol processor for a group consisting of at least one of proximity to a periphery wire, absence of fob motion, absence of radio frequency signal for a predetermined period of time and the voltage level of the fob;

said protocol processor being responsive to said monitoring and specific status code generating circuitry for activating said independent radio frequency tracking beacon transmitter to transmit the respective status codes; and

a residential control unit transceiver operatively connected to said independent radio frequency tracking beacon transmitter for receiving and indicating the respective status codes.

16. A fob according to claim 1 and further including:

monitoring and specific status code generating circuitry to monitor characteristics and generate specific status codes to said protocol processor for a group consisting of at least one of proximity to a periphery wire, absence of fob motion, absence of radio frequency signal for a predetermined period of time and the voltage level of the fob;

said protocol processor being responsive to said monitoring and specific status code generating circuitry for activating said network cellular transceiver to transmit said respective status codes to the cellular network.

17. A fob for use with a cellular network, said fob comprising:

a cellular network transceiver for establishing a telecommunications link with the cellular network;

an independent radio frequency tracking beacon transmitter actuable for transmitting ID/data radio frequency signals, said independent radio frequency tracking beacon transmitter being independent from said cellular network transceiver, and said ID/data radio frequency signals having a tracking code for identifying said independent radio frequency tracking beacon transmitter; and

a protocol processor for electrically controlling said independent radio frequency tracking beacon transmitter, said protocol processor sending control signals to said independent radio frequency tracking beacon transmitter to cause said independent radio frequency tracking beacon transmitter to transmit ID/data radio frequency signals for detection by a tracking unit.

18. A fob according to claim 17 wherein said independent radio frequency tracking beacon transmitter includes a radio frequency power amplifier for increasing the power output of said independent radio frequency tracking beacon transmitter when said independent radio frequency tracking beacon transmitter is transmitting signals to be detected for locating said independent radio frequency tracking beacon transmitter.

19. A fob according to claim 18 wherein said independent radio frequency tracking beacon transmitter incorporates a frequency-hopping sequential spread-spectrum protocol.

20. A fob according to claim 18 , and where the independent radio frequency tracking beacon transmitter transmits a low duty cycle, pulsed, ID/data tracking signal.

21. A fob according to claim 17 wherein said independent radio frequency tracking beacon transmitter transmits ID/data radio frequency signals having a predetermined number of bytes selected to provide each independent radio frequency tracking beacon transmitter with a unique identity code.

22. A fob according to claim 21 wherein each independent radio frequency tracking beacon transmitter transmits an ID/data radio frequency signal having at least one identity byte.

23. A fob according to claim 22 wherein each independent radio frequency tracking beacon transmitter transmits an ID/data radio frequency signal having at least one byte indicative of the status of some electronic component of at least one of the circuitry including said independent radio frequency tracking beacon transmitter and said baseband processor.

24. A fob according to claim 17 wherein said protocol processor sends signals for activating said independent radio frequency tracking beacon transmitter in response to the absence of signals from the cellular network for a predetermined period of time.

25. A fob according to claim 17 for further use with an electronic apparatus having a wire defining a periphery of a containment area and a generator to apply an electronic signal to the wire, the wire transmitting a first radio frequency signal, said fob further comprising:

a periphery wire detector circuit for detecting a first radio frequency signal from the periphery wire, and for generating wire detector signals to said protocol processor to activate said independent radio frequency tracking beacon transmitter.

26. A fob according to claim 17 for further use with an electronic apparatus having a wire defining a periphery of a containment area and a generator to apply an electronic signal to the wire, the wire transmitting a first radio frequency signal, said fob further comprising:

a periphery wire detector circuit for detecting a first radio frequency signal from the periphery wire and for generating wire detector signals to said protocol processor to activate said independent radio frequency tracking beacon transmitter and to said cellular network transceiver, for detection by one or more tracking units and to send signals reflective of the wire detector signals to the cellular network, respectively.

27. A fob according to claim 17 and further comprising a motion detector circuit for generating a motion-stationary signal to said protocol processor for activating said independent radio frequency tracking beacon transmitter in response to a lack of motion of said fob for a predetermined period of time.

28. A fob according to claim 17 and further comprising a motion detector circuit for generating a motion-stationary signal to said protocol processor for activating said cellular network transceiver in response to a lack of motion of said fob for a predetermined period of time, to send signals reflective of the lack of motion of said fob to the cellular network.

29. A fob according to claim 17 and further comprising circuitry for generating signals indicating a fob voltage level to said protocol processor for activating said independent radio frequency tracking beacon transmitter in response to a predetermined fob voltage level.

Assignments (3)
PATENT ASSIGNMENT AND SECURITY AGREEMENT Recorded Jul 21, 2010
From: GUARDIAN ZONE TECHNOLOGIES, INC.
To: RADU, THOMAS
Reel/Frame 024723/0097 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2006
From: GUARDIAN ZONE TECHNOLOGIES, INC.
To: KAZDIN, RONALD S.; RADU, THOMAS J.
Reel/Frame 018303/0481 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2006
From: KAZDIN, RONALD S.; RADU, THOMAS J.
To: GUARDIAN ZONE TECHNOLOGIES, INC.
Reel/Frame 017871/0513 →
Continuity (2)
Continuation In Part 1067645200 · Oct 2, 2003
Related Publication 20070013526A1 · Jan 18, 2007