IP Library Granted Patent US 8,594,566
Granted Patent B2
US 8,594,566 · App. 13/344,917 · Granted Nov 26, 2013

Mobile wireless communications device with NFC coupling circuit and related methods

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Quick Facts
Patent No.
US 8,594,566
App. No.
13/344,917
Granted
Nov 26, 2013
Kind
B2
Abstract

A mobile wireless communications device may include a housing, a wireless transceiver carried by the housing, a processor carried by the housing and coupled to the wireless transceiver, and an NFC IC carried by the housing and coupled to the processor. The mobile wireless communications device may also include an NFC antenna carried by the housing, and a coupling circuit between the NFC IC and the NFC antenna. The coupling circuit may include a capacitive network including capacitors coupled in series with each other and in parallel with the NFC antenna, a transmit branch coupled between the NFC IC and a first node between a first pair of capacitors, and a receive branch coupled between the NFC IC and the first node between the first pair of capacitors.

Claims (45)

1. A mobile wireless communications device comprising:

a housing;

a wireless transceiver carried by said housing;

a processor carried by said housing and coupled to said wireless transceiver;

a near field communication (NFC) integrated circuit (IC) carried by said housing and coupled to said processor;

an NFC antenna carried by said housing; and

a coupling circuit between said NFC IC and said NFC antenna comprising

a capacitive network comprising a plurality of capacitors coupled in series with each other and in parallel with said NFC antenna,

a transmit branch coupled between said NFC IC and a first node between a first pair of capacitors of said plurality thereof, and

a receive branch coupled between said NFC IC and the first node between the first pair of capacitors of said plurality thereof.

2. The mobile wireless communications device of claim 1 wherein said coupling circuit further comprises at least one tuning branch coupled between said NFC IC and a second node between a second pair of capacitors of said plurality thereof.

3. The mobile wireless communications device of claim 2 wherein said at least one tuning branch comprises a pair thereof.

4. The mobile wireless communications device of claim 3 wherein said pair of tuning branches comprises a first tuning branch comprising a first capacitor, and a second tuning branch comprising a second capacitor, and a diode coupled thereto.

5. The mobile wireless communications device of claim 1 wherein said NFC transmit branch comprises an inductor and a capacitor coupled thereto.

6. The mobile wireless communications device of claim 5 wherein said NFC transmit branch further comprises another capacitor coupled at a node between said inductor and said capacitor and a voltage reference.

7. The mobile wireless communications device of claim 1 wherein said NFC receive branch comprises a resistor and a capacitor coupled thereto.

8. The mobile wireless communications device of claim 1 wherein said NFC IC is configured to cooperate with said processor to operate in an IC card emulation mode or a reader/writer mode.

9. The mobile wireless communications device of claim 1 wherein said wireless transceiver comprises a cellular transceiver.

10. A mobile wireless communications device comprising:

a housing;

a wireless transceiver carried by said housing;

a processor carried by said housing and coupled to said wireless transceiver;

a near field communication (NFC) integrated circuit (IC) carried by said housing and coupled to said processor, said NFC IC configured to cooperate with said processor for operation in an IC card emulation mode or a reader/writer mode;

an NFC antenna carried by said housing; and

a coupling circuit between said NFC IC and said NFC antenna comprising

a capacitive network comprising a plurality of capacitors coupled in series with each other and in parallel with said NFC antenna,

a transmit branch coupled between said NFC IC and a first node between a first pair of capacitors of said plurality thereof,

a receive branch coupled between said NFC IC and the first node between the first pair of capacitors of said plurality thereof, and

at least one tuning branch coupled between said NFC IC and a second node between a second pair of capacitors of said plurality thereof.

11. The mobile wireless communications device of claim 10 wherein said at least one tuning branch comprises a pair thereof.

12. The mobile wireless communications device of claim 11 wherein said pair of tuning branches comprises a first tuning branch comprising a first capacitor, and a second tuning branch comprising a second capacitor, and a diode coupled thereto.

13. The mobile wireless communications device of claim 10 wherein said NFC transmit branch comprises an inductor and a capacitor coupled thereto.

14. The mobile wireless communications device of claim 13 wherein said NFC transmit branch further comprises another capacitor coupled at a node between said inductor and said capacitor and a voltage reference.

15. The mobile wireless communications device of claim 10 wherein said NFC receive branch comprises a resistor and a capacitor coupled thereto.

16. The mobile wireless communications device of claim 10 wherein said wireless transceiver comprises a cellular transceiver.

17. A method for making a mobile wireless communications device comprising a wireless transceiver, a processor coupled to the wireless transceiver, a near field communication (NFC) integrated circuit (IC), and an NFC antenna, the method comprising:

coupling a coupling circuit between the NFC IC and the NFC antenna, the coupling circuit comprising

a capacitive network comprising a plurality of capacitors coupled in series with each other and in parallel with the NFC antenna,

a transmit branch coupled between the NFC IC and a first node between a first pair of capacitors of the plurality thereof, and

a receive branch coupled between the NFC IC and the first node between the first pair of capacitors of the plurality thereof.

18. The method of claim 17 wherein the coupling circuit further comprises at least one tuning branch coupled between the NFC IC and a second node between a second pair of capacitors of the plurality thereof.

19. The method of claim 18 wherein the at least one tuning branch comprises a pair thereof.

20. The method of claim 19 wherein the pair of tuning branches comprises a first tuning branch comprising a first capacitor, and a second tuning branch comprising a second capacitor, and a diode coupled thereto.

21. The method of claim 17 wherein the NFC transmit branch comprises an inductor and a capacitor coupled thereto.

22. The method of claim 21 wherein the NFC transmit branch further comprises another capacitor coupled at a node between the inductor and the capacitor and a voltage reference.

Assignments (4)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 19, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064271/0199 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064104/0103 →
CHANGE OF NAME Recorded Sep 30, 2013
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 031315/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2012
From: ZHU, LIZHONG; ZHU, LIBO
To: RESEARCH IN MOTION LIMITED
Reel/Frame 027925/0187 →