IP Library Granted Patent US 10,282,655
Granted Patent B2
US 10,282,655 · App. 15/650,994 · Granted May 7, 2019

Chip card module, chip card, chip card arrangement, method of forming a chip card module, and method of forming a chip card

Inventors: Frank Pueschner (Kelheim, DE); Siegfried Hoffner (Nesselwang, DE); Jens Pohl (Bernhardswald, DE)
Assignee: INFINEON TECHNOLOGIES AG
G06K19/07775G06K19/0723G06K19/0775G06K19/07747G06K19/07754H01L21/56H01L23/49855H01L24/13H01L24/16H01L24/29H01L24/32H01L24/73H01L24/81H01L24/83H01L2224/131H01L2224/1601H01L2224/16225H01L2224/2919H01L2224/32225H01L2224/73204H01L2224/73253H01L2924/15321
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Quick Facts
Patent No.
US 10,282,655
App. No.
15/650,994
Granted
May 7, 2019
Kind
B2
Abstract

A chip card module is provided. The chip card module may include a carrier having a first side and an opposite second side, a chip arranged over the carrier, the chip having a first chip contact, a first and a second antenna contact formed over the first side, a metal-free area formed over the first side between the first antenna contact and the second antenna contact, wherein the metal-free area extends between a first edge portion and a second edge portion of the carrier, and a first chip connection electrically connecting the first chip contact to the first antenna contact, wherein the first chip connection is at least partially arranged over the second side in a region opposite the metal-free area.

Claims (76)

1. A chip card module, comprising:

a carrier having a first side and an opposite second side;

a chip arranged over the carrier, the chip having a first chip contact;

a first and a second antenna contact formed over the first side;

a metal-free area formed over the first side between the first antenna contact and the second antenna contact, wherein the metal-free area extends between a first edge portion and a second edge portion of the carrier; and

a first chip connection electrically connecting the first chip contact to the first antenna contact, wherein the first chip connection is at least partially arranged over the second side in a region opposite the metal-free area.

2. The chip card module according to claim 1 ,

wherein the first and the second antenna contacts include through holes.

3. The chip card module according to claim 1 ,

wherein the metal-free area has a width of at least 1 mm.

4. The chip card module according to claim 1 ,

wherein the chip is arranged over the first side.

5. The chip card module according to claim 4 , wherein the chip is located between the first and the second antenna contact.

6. A chip card module arrangement, comprising:

a chip card module, wherein the chip card module comprises,

a carrier having a first side and an opposite second side;

a chip arranged over the carrier, the chip having a first chip contact;

a first and a second antenna contact formed over the first side;

a metal-free area formed over the first side between the first antenna contact and the second antenna contact, wherein the metal-free area extends between a first edge portion and a second edge portion of the carrier; and

a first chip connection electrically connecting the first chip contact to the first antenna contact,

wherein the first chip connection is at least partially arranged over the second side in a region opposite the metal-free area; and

an antenna;

wherein a portion of a first end of the antenna is electrically conductively connected to the first antenna contact, a portion of a second end of the antenna is electrically conductively connected to the second antenna contact, and windings of the antenna are arranged to extend along the metal-free area.

7. The chip card module arrangement of claim 6 ,

wherein an outer surface of the antenna is electrically conductive.

8. The chip card module arrangement of claim 6 ,

wherein the antenna is arranged as a single layer.

9. The chip card module arrangement of claim 6 ,

wherein the chip is arranged over the first side of the carrier between the first and the second antenna contact.

10. The chip card module arrangement of claim 9 ,

wherein the antenna comprising a coil comprising a plurality of windings, and

wherein a first end of the antenna is located outside of the coil and is connected to the first antenna contact, and

wherein the second end of the antenna is located inside the coil and is connected to the second antenna contact.

11. A chip card, comprising:

a chip card module arrangement, comprising

a chip card module, wherein the chip card module comprises,

a carrier having a first side and an opposite second side;

a chip arranged over the carrier, the chip having a first chip contact;

a first and a second antenna contact formed over the first side;

a metal-free area formed over the first side between the first antenna contact and the second antenna contact, wherein the metal-free area extends between a first edge portion and a second edge portion of the carrier; and

a first chip connection electrically connecting the first chip contact to the first antenna contact,

wherein the first chip connection is at least partially arranged over the second side in a region opposite the metal-free area; and

an antenna;

wherein a portion of a first end of the antenna is electrically conductively connected to the first antenna contact, a portion of a second end of the antenna is electrically conductively connected to the second antenna contact, and windings of the antenna are arranged to extend along the metal-free area; and

a card body;

wherein the chip card module arrangement is arranged over the card body.

12. The chip card of claim 11 ,

wherein the chip is arranged over the first side of the carrier between the first and the second antenna contact.

13. The chip card of claim 12 ,

wherein the antenna comprising a coil comprising a plurality of windings, and

wherein a first end of the antenna is located outside of the coil and is connected to the first antenna contact, and

wherein the second end of the antenna is located inside the coil and is connected to the second antenna contact.

14. A method of forming a chip card module, the method comprising:

arranging a chip having a first chip contact over a carrier having a first side and an opposite second side;

forming a first and a second antenna contact over the first side;

forming a metal-free area over the first side between the first antenna contact and the second antenna contact, wherein the metal-free area extends between a first edge portion and a second edge portion of the carrier; and

electrically connecting the first chip contact to the first antenna contact by a first chip connection,

wherein the first chip connection is at least partially arranged over the second side in a region opposite the metal-free area.

15. The method of claim 14 ,

wherein the chip is arranged over the first side of the carrier between the first and the second antenna contact.

16. A method of forming a chip card, comprising:

the method of forming a chip card module, the method comprising:

arranging a chip having a first chip contact over a carrier having a first side and an opposite second side;

forming a first and a second antenna contact over the first side;

forming a metal-free area over the first side between the first antenna contact and the second antenna contact, wherein the metal-free area extends between a first edge portion and a second edge portion of the carrier; and

electrically connecting the first chip contact to the first antenna contact by a first chip connection,

wherein the first chip connection is at least partially arranged over the second side in a region opposite the metal-free area;

arranging the chip card module and an antenna over a card body, such that windings of the antenna extend along the metal-free area;

electrically conductively connecting a portion of a first end of the antenna to the first antenna contact; and

electrically conductively connecting a portion of a second end of the antenna to the second antenna contact.

17. The method of forming a chip card according to claim 16 ,

wherein the arranging the antenna over the card body comprises partially embedding the antenna in a layer of the card body while arranging the portion of the first end of the antenna and/or the portion of the second end of the antenna on a surface of the layer.

18. The method of forming a chip card according to claim 16 ,

wherein the electrically conductively connecting the portion of the first end of the antenna to the first antenna contact and the electrically conductively connecting the portion of the second end of the antenna to the second antenna contact comprises soldering.

19. The method of claim 16 ,

wherein the chip is arranged over the first side of the carrier between the first and the second antenna contact.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2017
From: PUESCHNER, FRANK; HOFFNER, SIEGFRIED; POHL, JENS
To: INFINEON TECHNOLOGIES AG
Reel/Frame 043071/0915 →
Priority Claims (1)
DE 10 2016 114 199 · Aug 1, 2016 · national
Continuity (1)
Related Publication 20180032854A1 · Feb 1, 2018