IP Library Granted Patent US 8,505,827
Granted Patent B2
US 8,505,827 · App. 13/224,582 · Granted Aug 13, 2013

Microcircuit card including a luminous means

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Quick Facts
Patent No.
US 8,505,827
App. No.
13/224,582
Granted
Aug 13, 2013
Kind
B2
Abstract

The microcircuit card ( 10 ) comprising a body ( 12 ) delimiting an edge ( 14 ) of the card ( 10 ). The body ( 12 ) incorporates a luminous means ( 16 ) capable of illuminating at least partially the edge ( 14 ) of the card ( 10 ).

Claims (24)

1. A microcircuit card comprising a body delimiting an edge of the card, said card comprising:

a luminous means inside the card configured to illuminate at least partially said edge of the card, light emitted by the luminous means being transmitted in a thickness of the body up to said edge by way of a transmission region of the body made of a first material and surrounded at least partially by a second material different from the first material, the first and second materials constituting an optical waveguide for said light; and

first and second near-field communication antennas connected respectively to the microcircuit card and to the luminous means;

wherein the first near-field communication antenna is configured to supply power to the microcircuit card and the second near-field communication antenna is configured to supply power to the luminous means; and

wherein the body consists of a stack of layers, the transmission region constitutes one of the layers of the stack which is a central layer interleaved between at least two external layers made of the second material.

2. The card according to claim 1 , wherein the luminous means is arranged within the transmission region.

3. The card according to claim 2 , wherein the luminous means is optically concealed between first and second faces of the card.

4. The card according to claim 1 , further including:

a module comprising the microcircuit card and the luminous means, the body including a cavity for receiving the module.

5. The card according to claim 4 , wherein the cavity is made at least partially within a thickness of the transmission region so that the luminous means extends at least partially into the transmission region.

6. The card according to claim 4 , wherein the module comprises a substrate delimiting a first face designed to be visible and a second face designed to face the cavity, the second face bearing at least the luminous means.

7. The card according to claim 1 , further comprising:

a near-field communication antenna connected to the microcircuit card and to the luminous means;

wherein the near-field communication antenna is configured to supply power to the microcircuit card and the luminous means.

8. The card according to claim 4 , wherein the module incorporates at least a near-field communication antenna connected to the microcircuit or a near field communication antenna connected to the luminous means.

9. The card according to claim 1 , wherein the luminous means is directly connected to an external power supply contact operable to draw power via contact with an external contact type card reader, said contact extending over the card.

10. The card according to claim 1 , wherein the luminous means is controlled according to a communication state of the microcircuit card.

11. The card according to claim 10 , further including:

first and second luminous means controlled according to first and second communication states of the microcircuit card.

12. The card according to claim 1 , wherein the microcircuit card is one of a contactless, dual and contact type microcircuit card.

13. A microcircuit card comprising a body delimiting an edge of the card, said card comprising:

a luminous means inside the card configured to illuminate at least partially said edge of the card, light emitted by the luminous means being transmitted in a thickness of the body up to said edge by way of a transmission region of the body made of a first material and surrounded at least partially by a second material different from the first material, the first and second materials constituting an optical waveguide for said light; and

an external power supply contact directly connected to the luminous means and operable to draw power via contact with an external contact type card reader, said contact extending over the card;

wherein the body consists of a stack of layers, the transmission region constitutes one of the layers of the stack which is a central layer interleaved between at least two external layers made of the second material.

Assignments (2)
CHANGE OF NAME Recorded Dec 16, 2022
From: OBERTHUR TECHNOLOGIES
To: IDEMIA FRANCE
Reel/Frame 062140/0907 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2012
From: LE GARREC, LOIC; VERE, DENIS
To: OBERTHUR TECHNOLOGIES
Reel/Frame 028255/0369 →