IP Library › Granted Patent US 12,431,005
Granted Patent B2
US 12,431,005 · App. 18/235,226 · Granted Sep 30, 2025

Programmable security system and method for protecting merchandise

Inventors: Christopher J. Fawcett (Charlotte, NC); Jeffrey A. Grant (Charlotte, NC)
Assignee: InVue Security Products Inc.
G08B25/008G07C9/00309G08B13/00G08B13/12G08B13/14G08B13/1445G08B13/1463G08B13/2402G08B13/2434G08B13/2465G08B13/2482G07C2009/00539
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Quick Facts
Patent No.
US 12,431,005
App. No.
18/235,226
Granted
Sep 30, 2025
Kind
B2
Abstract

A programmable security system and method for protecting an item of merchandise includes a programming station, a programmable key and a security system. The programming station generates a security code and communicates the security code to a memory of the programmable key. The programmable key initially communicates the security code to a memory of the security device and subsequently operates the security device upon a matching of the security code in the memory of the security device with the security code in the memory of the programmable key. The programmable key may also transfer power via electrical contacts or inductive transfer from an internal battery to the security device to operate a lock mechanism. The security code may be communicated by wireless infrared (IR) systems, electrical contacts or inductive transfer.

Claims (37)

1. A programmable security system for protecting merchandise comprising:

a programmable key having a wireless communication circuit, a memory for storing a security code, and a power source, wherein the programmable key comprises a housing enclosing the wireless communication circuit, the memory, and the power source; and

a security device having a memory for storing the security code, the security device further comprising a lock mechanism and a motor;

wherein the programmable key is configured to wirelessly communicate with the security device via the wireless communication circuit and to wirelessly transfer power from the power source to the security device by inducing an electrical current in the security device,

wherein the lock mechanism is configured to be operated by the motor using power transferred from the programmable key to the security device when the security code stored in the memory of the security device matches the security code stored in the memory of the programmable key,

wherein the programmable key comprises a magnetic core and a conductive wire forming a plurality of windings and electrically connected to the power source of the programmable key such that passing an electrical current through the conductive wire of the programmable key induces a magnetic field in the programmable key;

wherein the security device comprises a magnetic core and a conductive wire forming a plurality of windings such that the magnetic field in the programmable key induces an electrical current in the conductive wire of the security device; and

wherein the programmable key is adapted to transfer power from the programmable key to the security device via the magnetic field induced in the programmable key and the electrical current induced in the security device.

2. The programmable security system of claim 1 ,

wherein the programmable key comprises means for inducing a magnetic field and the security device comprises means for inducing an electrical current from the magnetic field; and

wherein the programmable key is adapted to transfer power from the programmable key to the security device via the magnetic field induced in the programmable key and the electrical current induced in the security device.

3. The programmable security system of claim 1 , further comprising a programming station configured to generate the security code and having a memory for storing the security code.

4. The programmable security system of claim 3 , wherein the programming station is configured to initially communicate the security code to the programmable key to be stored in the memory of the programmable key.

5. The programmable security system of claim 1 , wherein the security device is configured to communicate with the programmable key to receive the security code from the programmable key.

6. The programmable security system of claim 1 , wherein the programmable key is configured to transfer power inductively to the security device.

7. The programmable security system of claim 1 , wherein the programmable key is configured to communicate data and power with the security device via magnetic induction.

8. The programmable security system of claim 1 , wherein the security device does not have an internal power source.

9. The programmable security system of claim 1 , wherein the power source is a rechargeable battery.

10. The programmable security system of claim 1 , further comprising a charging station configured to charge the power source of the programmable key.

11. The programmable security system of claim 10 , wherein the charging station is configured to charge the power source of the programmable key inductively.

12. The programmable security system of claim 1 , wherein the housing comprises a transfer end configured to transfer power to the security device.

13. The programmable security system of claim 1 , wherein the programmable key is configured to communicate data with the security device using optical communication.

14. A method for protecting merchandise, comprising:

storing a security code in a memory of a programmable key, the programmable key having a wireless communication circuit and a power source, wherein the programmable key comprises a housing enclosing the wireless communication circuit, the memory, and the power source, wherein the programmable key further comprises a magnetic core and a conductive wire forming a plurality of windings and electrically connected to the power source of the programmable key such that passing an electrical current through the conductive wire of the programmable key induces a magnetic field in the programmable key;

storing the security code in a memory of a security device, the security device comprising a lock mechanism and a motor, wherein the security device further comprises a magnetic core and a conductive wire forming a plurality of windings such that the magnetic field in the programmable key induces an electrical current in the conductive wire of the security device;

wirelessly communicating between the programmable key and the security device;

determining whether the security code stored in the memory of the security device matches the security code stored in the memory of the programmable key;

wirelessly transferring power from a power source of the programmable key to the security device via the magnetic field induced in the programmable key and the electrical current induced in the security device; and

operating a lock mechanism by the motor using power transferred from the programmable key to the security device when the security code stored in the memory of the security device matches the security code stored in the memory of the programmable key.

15. The method of claim 14 , further comprising:

inducing a magnetic field in the programmable key; and

inducing an electrical current in the security device from the magnetic field,

wherein the wirelessly transferring comprises wirelessly transferring power from the programmable key to the security device via the magnetic field induced in the programmable key and the electrical current induced in the security device.

16. The method of claim 14 , further comprising generating the security code in a programming station and storing the security code in a memory of the programming station.

17. The method of claim 16 , further comprising communicating the security code from the memory of the programming station to the memory of a programmable key.

18. The method of claim 14 , further comprising wirelessly communicating the security code from the memory of the programmable key to the memory of a security device.

19. The method of claim 14 , wherein the transferring comprises transferring power inductively from the programmable key to the security device.

Continuity (9)
Continuation 17236479 · Apr 21, 2021
Continuation 16415447 · May 17, 2019
Continuation 15829275 · Dec 1, 2017
Continuation 15354557 · Nov 17, 2016
Continuation 14607542 · Jan 28, 2015
Continuation 14306761 · Jun 17, 2014
Continuation 14254210 · Apr 16, 2014
Continuation 13169968 · Jun 27, 2011
Related Publication 20230394952A1 · Dec 7, 2023
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