IP Library Granted Patent US 9,697,455
Granted Patent B2
US 9,697,455 · App. 14/583,255 · Granted Jul 4, 2017

Using reactive coupling of a printed RFID chip on a strap to allow the printed material to be over-laminated with a barrier film against oxygen and moisture ingress

Inventor: Ian James Forster (Chelmsford/Essex, GB)
Assignee: AVERY DENNISON RETAIL INFORMATION SERVICES, LLC
G06K19/07722G06K19/07728G06K19/07752G06K19/07756G06K19/07773
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,697,455
App. No.
14/583,255
Granted
Jul 4, 2017
Kind
B2
Abstract

An RFID device using a printed electronic circuit (PEC) is disclosed. The PEC or electronic circuit which includes printed elements is coupled to a conductor structure, such as an antenna, by reactive means, such as an electric field, a magnetic field, or a combination of both. The RFID device comprises a base layer and a conductive layer (antenna structure) disposed over the base layer. A dielectric layer is then disposed over at least a portion of the conductive layer. A barrier layer is then disposed over the dielectric layer and fully covers the PEC to protect against oxygen and moisture ingress. Further, the PEC is typically attached to a carrier or strap to facilitate coupling between the antenna structure and PEC. In another embodiment, the barrier layer can be replaced with an adhesive layer that acts as both the barrier layer and the dielectric layer.

Claims (34)

1. A radio-frequency identification (RFID) device, comprising:

a base layer;

a conductive layer disposed over at least a portion of the base layer;

a dielectric layer disposed over at least a portion of the conductive layer;

a protective coating layer disposed over at least a portion of the dielectric layer; and

a printed electronic circuit (PEC) disposed over at least a portion of the protective coating layer, such that the protective coating layer fully covers the PEC to protect against oxygen and moisture ingress; and

at least two conductor pads disposed on at least a portion of the PEC, wherein the at least two conductor pads on the PEC are capacitively coupled to the conductive layer and the PEC is attached to a carrier or strap.

2. The RFID device of claim 1 , wherein the conductive layer is an antenna structure.

3. The RFID device of claim 2 , wherein the dielectric layer is a coupling adhesive that allows the PEC to be adhered and coupled to the antenna structure.

4. The RFID device of claim 3 , wherein the protective coating layer is a thin PET film.

5. The RFID device of claim 1 , wherein the device operates at a frequency of 13.56 MHz, high frequency (HF).

6. The RFID device of claim 1 , wherein the device operates at a frequency between 800-1,000 MHz, ultra-high frequency (UHF).

7. A radio-frequency identification (RFID) device, comprising:

a base layer;

a conductive layer comprising at least two conductor pads and being disposed over at least a portion of the base layer;

a dielectric layer that is a hot melt adhesive is disposed over at least a portion of the conductive layer; and

a printed electronic circuit (PEC) disposed over at least a portion of the dielectric layer, such that the dielectric layer fully covers the PEC to protect against oxygen and moisture ingress; and

at least two conductor pads disposed on at least a portion of the PEC, wherein the at least two conductor pads on the PEC are capacitively coupled to the at least two conductor pads on the conductive layer.

8. The RFID device of claim 7 , wherein the conductive layer is an antenna structure.

9. The RFID device of claim 7 , wherein the adhesive is coated onto the PEC as part of its manufacturing process.

10. The RFID device of claim 7 , wherein the PEC is attached to a carrier or strap.

11. The RFID device of claim 10 , wherein the device operates at a frequency of 13.56 MHz, high frequency (HF).

12. The RFID device of claim 10 , wherein the device operates at a frequency between 800-1,000 MHz, ultra-high frequency (UHF).

13. A radio-frequency identification (RFID) device, comprising:

a base layer;

an antenna disposed over at least a portion of the base layer;

an adhesive layer disposed over at least a portion of the antenna;

a barrier layer disposed over at least a portion of the adhesive layer; and

a printed electronic circuit (PEC) disposed over at least a portion of the barrier layer, such that the barrier layer fully covers the PEC to protect against oxygen and moisture ingress; and

at least two conductor pads disposed on at least a portion of the PEC, wherein the at least two conductor pads on the PEC are capacitively coupled to the antenna; and

wherein the PEC is attached to a carrier or strap and then coupled to the antenna via the adhesive layer.

14. The RFID device of claim 13 , wherein the device operates at a frequency of 13.56 MHz, high frequency (HF).

15. The RFID device of claim 13 , wherein the device operates at a frequency between 800-1,000 MHz, ultra-high frequency (UHF).

16. The RFID device of claim 13 , wherein the barrier layer is a thin PET film.

Assignments (2)
CHANGE OF CORPORATE ADDRESS Recorded Mar 18, 2026
From: AVERY DENNISON RETAIL INFORMATION SERVICES LLC
To: AVERY DENNISON RETAIL INFORMATION SERVICES LLC
Reel/Frame 075137/0885 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2017
From: FORSTER, IAN J.
To: AVERY DENNISON RETAIL INFORMATION SERVICES, LLC
Reel/Frame 042747/0761 →
Continuity (1)
Related Publication 20160189021A1 · Jun 30, 2016