IP Library › Granted Patent US 11,769,938
Granted Patent B2
US 11,769,938 · App. 16/454,939 · Granted Sep 26, 2023

RFID tags operating in the high frequency band

Inventor: Ian J. Forster (Chelsmford, GB)
Assignee: Avery Dennison Retail Information Services LLC
H01Q1/2225G06K19/07749H01Q7/00
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Quick Facts
Patent No.
US 11,769,938
App. No.
16/454,939
Granted
Sep 26, 2023
Kind
B2
Abstract

A high-field emission tolerant RFID tag device that may be secured to a product to be cooked, heated, reheated and/or thawed in a heating apparatus such as, but not limited to, a microwave oven and that does not need to be removed from the product before initiating the heating process. The RFID device is microwave safe and does not damage the product or food item to which it is attached during the microwave process, and may contain data to control the microwave process. The microwave safe RFID tag comprises a split ring (or shield) conductor formed on one side of a substrate (or dielectric), a coil antenna conductor formed on an opposite side of the substrate, and a RFID chip. The split ring conductor capacitively couples to the coil antenna conductor via the dielectric and a gap in the split ring conductor prevents arcing.

Claims (35)

1. A radio-frequency identification (RFID) tag tolerant of microwave emissions comprising:

a RFID chip;

an antenna conductor comprising an inductor, wherein the inductor comprises a center and an outer edge of the antenna conductor bridged together with a conductive trace;

a split ring conductor comprising a gap that does not cover the antenna conductor, and the gap does not interact with microwave emissions,

wherein a portion of the split ring conductor that covers the antenna conductor extends radially beyond both an inner edge and the center of the antenna conductor and the outer edge of the antenna conductor; and

a dielectric positioned between the antenna conductor and the split ring conductor.

2. The RFID tag of claim 1 , wherein the split ring conductor is capacitively coupled to the antenna conductor.

3. The RFID tag of claim 1 , wherein the split ring conductor is formed on a first side of the dielectric and the antenna conductor is formed on an opposite side of the dielectric.

4. The RFID tag of claim 1 , wherein the antenna conductor comprises a gap.

5. The RFID tag of claim 4 , wherein the RFID chip is positioned in the gap.

6. The RFID tag of claim 1 , wherein the split ring conductor covers a substantial portion of the antenna conductor.

7. The RFID tag of claim 1 , wherein the antenna conductor is configured as concentric coils.

8. The RFID tag of claim 1 , wherein a size of the gap is configured such that the coil in the gap will not interact with the microwave field.

9. The RFID tag of claim 1 , wherein the size of the gap is less than one tenth of a wavelength at a microwave frequency of the microwave emissions.

10. A radio-frequency identification (RFID) tag for use in a microwave emission field comprising:

an RFID chip;

a coil antenna conductor comprising an inductor, wherein the inductor comprises a center and an outer edge of the coil antenna conductor bridged together with a conductive trace;

a first split ring conductor;

a second split ring conductor,

wherein the first split ring conductor comprises a first gap and the second split ring conductor comprises a second gap,

wherein the first split ring conductor and the second split ring conductor each have a respective portion that covers the antenna conductor and extends radially beyond both an inner edge and the center of the coil antenna conductor and beyond the outer edge of the coil antenna conductor, and

wherein the first gap and the second gap allow the microwave current to flow through the coil antenna conductor.

11. The RFID tag of claim 10 , wherein the coil antenna conductor is positioned between the first and the second split ring conductors.

12. The RFID tag of claim 10 , wherein the coil antenna conductor is capacitively coupled to the first and the second split ring conductors.

13. The RFID tag of claim 10 , wherein the second split ring conductor is rotated opposite of the first split ring conductor such that the first gap does not align with the second gap.

14. The RFID tag of claim 10 , wherein said RFID chip is positioned in a gap in the coil antenna conductor.

15. A radio-frequency identification (RFID) tag for use in a microwave field comprising:

a RFID chip secured to a shielded strap;

a coil antenna conductor, wherein a center and an outer edge of the coil antenna conductor is bridged together with a conductive trace creating an inductor; and

a split ring conductor,

wherein a portion of the split ring conductor that covers the coil antenna conductor extends radially beyond both an inner edge and the center of the coil antenna conductor and the outer edge of the coil antenna conductor.

16. The RFID tag of claim 15 , wherein the RFID chip and the shielded strap are positioned on the coil antenna conductor.

17. The RFID tag of claim 16 , wherein the split ring conductor is positioned on top of the RFID chip and the shielded strap.

18. The RFID tag of claim 15 further comprising a resonant circuit.

19. The RFID tag of claim 15 wherein the split ring conductor is capacitively coupled to the coil antenna conductor.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ENTITY NAME FROM AVERY DENNISON RETAIL INFORMATION SERVICES, LLC (WITH A COMMA) TO AVERY DENNISON RETAIL INFORMATION SERVICES LLC (WITHOUT A COMMA) PREVIOUSLY RECORDED ON REEL 56739 FRAME 820. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 26, 2026
From: FORSTER, IAN J.
To: AVERY DENNISON RETAIL INFORMATION SERVICES LLC
Reel/Frame 074906/0847 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2021
From: FORSTER, IAN J.
To: AVERY DENNISON RETAIL INFORMATION SERVICES, LLC
Reel/Frame 056739/0820 →
Continuity (2)
Provisional Application 62690723 · Jun 27, 2018
Related Publication 20200006840A1 · Jan 2, 2020