IP Library Granted Patent US 11,755,877
Granted Patent B2
US 11,755,877 · App. 17/153,517 · Granted Sep 12, 2023

Radio frequency identification (RFID) tag with deactivatable link

Inventors: Adam S. Bergman (Boca Raton, FL); Patrick O'Leary (Lansdale, PA); George H. West (Boca Raton, FL); Ryan D. Zelaya (Boca Raton, FL); Terry S. Will (Masrinette, WI); Steve E. Trivelpiece (Rancho Santa Margarita, CA); Thomas P. Solaski (Boca Raton, FL); Wing K. Ho (Boynton Beach, FL)
Assignee: Sensormatic Electronics, LLC
G06K19/07773
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Quick Facts
Patent No.
US 11,755,877
App. No.
17/153,517
Granted
Sep 12, 2023
Kind
B2
Abstract

An electronic article surveillance (“EAS”) tag for an EAS system, comprising an antenna, a radio frequency identification (“RFID”) chip configured to transmit and/or receive a wireless signal via the antenna; and a magnetically-actuatable switch configured to move between a first position and a second position. The switch is configured to electrically couple the RFID chip to the antenna in the first position. The switch is further configured to electrically decouple the RFID chip from the antenna in the second position.

Claims (34)

1. An electronic article surveillance (“EAS”) tag, comprising:

an antenna comprising a first antenna trace portion and a second antenna trace portion;

a radio frequency identification (“RFID”) chip configured to transmit and/or receive a wireless signal via the antenna; and

a magnetically-actuatable switch configured to move between a first position and a second position, wherein the switch is configured to electrically couple the RFID chip to the antenna in the first position, and wherein the switch is configured to electrically decouple the RFID chip from the antenna in the second position,

wherein the switch is disposed between the first antenna trace portion and the second antenna trace portion.

2. The EAS tag of claim 1 , wherein the switch comprises a magnetizable ferromagnetic element configured to move the switch between the first position and the second position based on a magnetization state of the magnetizable ferromagnetic element.

3. The EAS tag of claim 1 , wherein the switch comprises a magnetic shape memory alloy (“MSMA”) element configured to move the switch between the first position and the second position based on a magnetic field applied to the MSMA element.

4. The EAS tag of claim 1 , wherein the switch comprises a ferrofluid element configured to move the switch between the first position and the second position based on a magnetic field applied to the ferrofluid element.

5. The EAS tag of claim 1 , wherein the switch comprises a Reed switch, wherein the Reed switch comprises at least one of a control element and a switching element, the control element or the switching element comprising a magnetic bias.

6. The EAS tag of claim 1 , wherein at least a portion of the switch has a demagnetized state in the first position and a magnetized state in the second position.

7. The EAS tag of claim 1 , wherein:

the switch comprises a first cantilever member formed from a magnetically soft ferromagnetic material and a second cantilever member formed from at least a magnetically semi-hard ferromagnetic material;

the first cantilever member having a first end connected to the first antenna trace portion and an opposing second end;

the second cantilever member having a third end connected to the second antenna trace portion and an opposing fourth end;

the fourth end is movably connectable to the second end in a magnetized state of the second cantilever member to define the first position; and

the fourth end is movably spaced apart from the second end in a demagnetized state of the second cantilever member to define the second position.

8. The EAS tag of claim 1 , wherein:

the switch comprises a first cantilever member, a second cantilever member, and a magnetic ribbon member;

the first cantilever member and the second cantilever member are formed from a magnetically soft ferromagnetic material;

the magnetic ribbon member is formed from at least a magnetically semi-hard ferromagnetic material;

the first cantilever member having a first end connected to the first antenna trace portion and an opposing second end;

the second cantilever member having a third end connected to the second antenna trace portion and an opposing fourth end;

the fourth end is movably connectable to the second end in a magnetized state of the magnetic ribbon member to define the first position; and

the fourth end is movably spaced apart from the second end in a demagnetized state of the magnetic ribbon member to define the second position.

9. The EAS tag of claim 1 , wherein:

the switch comprises a cantilever member formed from a magnetic shape memory alloy (“MSMA”);

the cantilever member having a first end connected to the first antenna trace portion and an opposing second end;

the second end is movably connectable to the second antenna trace portion in a first magnetized state of the cantilever member to define the first position; and

the second end is movably spaced apart from the second antenna trace portion in a second magnetized state of the cantilever member to define the second position.

10. The EAS tag of claim 1 , wherein:

the switch comprises a cantilever member formed from a magnetic shape memory alloy (“MSMA”);

the cantilever member having a first end connected to the first antenna trace portion and an opposing second end;

the cantilever member elongates in a first magnetized state of the cantilever member to connect the second end to the second antenna trace portion to define the first position; and

the cantilever member retracts in a second magnetized state of the cantilever member to disconnect the second end from the second antenna trace portion to define the second position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2022
From: BERGMAN, ADAM S.; O'LEARY, PATRICK; WEST, GEORGE H.; ZELAYA, RYAN D.; WILL, TERRY S.; TRIVELPIECE, STEVE E.; SOLASKI, THOMAS P.; HO, WING K.
To: SENSORMATIC ELECTRONICS, LLC
Reel/Frame 059222/0483 →
Continuity (1)
Related Publication 20220230040A1 · Jul 21, 2022
Cited By (1)
US 12,242,913