IP Library Granted Patent US 8,130,166
Granted Patent B2
US 8,130,166 · App. 12/244,137 · Granted Mar 6, 2012

Coupling device for transponder and smart card with such device

Assignee: Assa Abloy AB
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Quick Facts
Patent No.
US 8,130,166
App. No.
12/244,137
Granted
Mar 6, 2012
Kind
B2
Abstract

A coupling device is formed by a continuous conductive path having a central section and two extremity sections, the central section forming at least a small spiral for inductive coupling with the transponder device, the extremities sections forming each one large spiral for inductive coupling with the reader device, wherein the small spiral shows a larger pitch than the ones of the large spirals, and wherein the two extremities of the continuous path are loose such that the coupling device forms an open circuit. The pitches of the large spirals are chosen such as that the interturn stray capacitances is important and that the large spirals have mainly a capacitive behavior. And the pitch of the small spiral is chosen such as that the interturn stray capacitances are negligible, and that the small spiral has mainly an inductive behavior.

Claims (15)

1. A coupling device for coupling a transponder device comprising a transponder antenna connected to a transponder chip with a reader device, the coupling device comprising:

a continuous conductive path having a central section and two external sections, the central section forming at least a small spiral configured to inductively couple the coupling device with the transponder device, the external sections each forming one large spiral configured to inductively couple the coupling device with the reader device, wherein the small spiral of the central section shows a larger pitch than the pitches of the large spirals of the external sections, and wherein two extremities of the continuous path are loose, such that the coupling device forms an open circuit.

2. A coupling device according claim 1 , wherein the pitches of the large spirals are chosen such as that the interturn stray capacitances are significant and that the large spirals have mainly a capacitive behaviour.

3. A coupling device according to claim 1 , wherein the pitch of the small spiral is chosen such as that the interturn stray capacitances are negligible, and that the small spiral has mainly an inductive behaviour.

4. A coupling device according to claim 1 , wherein the pitches of the two large spirals are approximately equal.

5. A coupling device according to claim 1 , wherein one of said large spirals is an outer spiral and the other of said large spirals is an inner spiral, the distance of separation between the internal turn of the outer large spiral and the external turn of the inner spiral is constant and approximately equal to the pitch of the large spirals.

6. A coupling device according to claim 1 , wherein the conductive path is made by a single continuous wire.

7. A coupling device according to claim 6 , wherein the wire is embedded on a surface of a substrate.

8. A coupling device according to claim 6 , wherein the pitches of the large spirals are approximately equivalent to a diameter of the wire.

9. A coupling device according to claim 1 , wherein the small spiral has approximately the same dimensions as the transponder antenna.

10. A smart card comprising:

a transponder device inductively coupled to a coupling device comprising a continuous conductive path having a central section and two external sections, the central section of the coupling device forming at least a small spiral configured to inductively couple the coupling device with the transponder device, the external sections of the coupling device each forming one large spiral and each being configured to inductively couple the coupling device with the reader device, wherein the small spiral of the central section shows a larger pitch than the pitches of the large spirals of the external sections, and wherein two extremities of the continuous path are loose, such that the coupling device forms an open circuit, wherein the coupling device has been formed on a core layer of the smart card.

11. A smart card according to claim 10 , wherein the transponder device is a dual interface module, with a transponder antenna mounted on the module.

12. A smart card according to claim 10 , wherein one of the large spirals has approximately the same dimensions as the smart card.

13. A smart card according to claim 10 , wherein a spiral resonator having approximately the same dimensions as one of the large spirals is placed in the card body in vertical proximity to one of the large spirals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2009
From: AYALA, STEPHANE; CARRE, LIONEL; CURTY, JARI-PASCAL
To: ASSA ABLOY AB
Reel/Frame 022342/0176 →
Priority Claims (1)
EP 07117825 · Oct 3, 2007 · regional
Continuity (1)
Related Publication 20090152362A1 · Jun 18, 2009