IP Library › Granted Patent US 10,050,679
Granted Patent B2
US 10,050,679 · App. 15/426,396 · Granted Aug 14, 2018

Multi-mode transceiver arrangement

Inventors: Fabian Rivière (Cagny, FR); Jerome Brillant (Saint Germain la Blanche Herbe, FR); Sebastien Robert (Emieville, FR)
Assignee: NXP B.V.
H04B7/028H04W4/005H04W4/70
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Quick Facts
Patent No.
US 10,050,679
App. No.
15/426,396
Granted
Aug 14, 2018
Kind
B2
Abstract

A multi-mode transceiver arrangement configured to provide for transmission and reception of signalling of a plurality of wireless sensor network protocols, the transceiver comprising; a single transmission path and a plurality of parallel receive paths; said transmission path including a modulator element configured to modulate, at any one time, a signal for transmission in accordance with a particular one of the plurality of wireless standards and a frequency reference element configured to provide a reference frequency to generate signalling for the antenna at a predetermined frequency; said receive paths each configured to receive signalling over a different, predetermined frequency band and including a demodulator to provide a demodulated signal for processing by a controller configured to provide signals to the transmission path and receive signals from the demodulators for symbol recognition thereby enabling the multi-mode transceiver to communicate with a plurality of wireless sensor networks simultaneously.

Claims (69)

1. A multi-mode transceiver arrangement configured to provide for transmission and reception of signaling of a plurality of wireless network standards, the transceiver comprising:

a single transmission path and a plurality of parallel receive paths,

said transmission path and said receive paths configured to share a single antenna;

said transmission path including

a modulator element configured to modulate, at any one time, a signal for transmission in accordance with a particular one of the plurality of

wireless network standards and

a frequency reference element configured to provide a reference frequency to generate signaling for the antenna at a predetermined frequency in accordance with said particular one of the plurality wireless network standards;

said receive paths each configured to receive signaling over a different, predetermined frequency band and including

a demodulator to provide a demodulated signal for processing by a controller; and

said controller configured to provide signals to the transmission path for generation of signaling for transmission and configured to receive signals from the demodulator in each of the plurality of receive paths representative of

received signaling for symbol recognition thereby enabling the multi-mode transceiver to communicate with a plurality of wireless networks simultaneously; and

wherein at least two of the plurality of receive paths include

a common mixer element configured to extract a signal extending over the different predetermined frequency bands associated with those at least two receive paths and

a common analogue to digital converter configured to receive said extracted signal said analogue to digital convertor configured to provide a digital output to the plurality of demodulators,

each of the plurality of demodulators defining at least part of each of the at least two of the plurality of receive paths.

2. The multi-mode transceiver arrangement of claim 1 ,

wherein each of the receive paths include a frequency reference element configured to provide for extraction of the predetermined frequency band associated with each receive path.

3. The multi-mode transceiver arrangement of claim 2 ,

wherein the frequency reference element associated with one of the plurality of receive paths is provided by the frequency reference element of the transmission path.

4. The multi-mode transceiver arrangement of claim 1 ,

wherein the plurality of receive paths include a single frequency reference element and at least one receive path in the plurality of receive paths includes a frequency reference shift element configured to shift the frequency provided by the frequency reference element by an amount to provide for extraction of the predetermined frequency band associated with said at least one receive path.

5. The multi-mode transceiver arrangement of claim 4 , wherein

one of the plurality of receive paths is configured to receive a non-frequency-shifted reference frequency and

each remaining of the plurality of receive paths include a frequency reference shift element configured to shift the frequency provided by the frequency reference element by a different amount to provide for extraction of the predetermined frequency band associated with each of the remaining of the plurality of receive paths.

6. The multi-mode transceiver arrangement of claim 4 ,

wherein said frequency reference element of the transmission path provides said single frequency reference element of the plurality of receive paths.

7. The multi-mode transceiver arrangement of claim 1 , wherein

each of the plurality of receive paths includes a mixer element,

the mixer element configured to receive a different reference frequency for operating the mixer to receive the signaling over a different, predetermined frequency band.

8. The multi-mode transceiver arrangement of claim 1 ,

wherein all of the plurality of receive paths include

a common mixer element and a common analogue to digital converter and

individual demodulators configured to each provide a demodulated signal to said controller representative of the associated predetermined frequency band.

9. The multi-mode transceiver arrangement of claim 1 ,

wherein the plurality of receive paths include a common wideband analogue to digital convertor configured to provide a digital signal representative of signaling received across the frequency bands of the receive paths associated with the common wideband analogue to digital convertor.

10. The multi-mode transceiver arrangement of claim 1 , wherein

each of the plurality of receive paths include a digital down converter element prior to said demodulator and configured to extract a particular channel frequency for receipt by the controller,

the particular channel frequency associated with one or more of the plurality of wireless network standards.

11. The multi-mode transceiver arrangement of claim 1 ,

wherein the plurality of wireless network standards comprise two or more of:

Zigbee, Thread, Bluetooth, Bluetooth LE, WiFi or one of a plurality of protocols based on IEEE standard 802.15.4.

12. The multi-mode transceiver arrangement of claim 1 ,

wherein with the controller and/or electronic components present in the transmission and/or receive paths are configured to provide for packet arbitration comprising at least one or more of the following rules:

provide for simultaneous reception by any two or more of the plurality of receive paths outside a time period defined by use of the antenna by the transmission path;

provide for forbidding of the use of the transmission path during a time period defined by the reception of signaling at one or more of the receive paths;

provide for forbidding of the simultaneous transmission of signaling of two or more of the plurality of wireless network standards if there is overlap of carrier frequencies associated with said signaling of the two or more of the plurality of wireless network standards.

13. An electronic device including the multi-mode transceiver arrangement of claim 1 ,

the electronic device comprising any one of a router or hub of a wireless sensor network.

14. A wireless sensor network comprising a plurality of nodes wherein at least one of said nodes includes the multi-mode transceiver arrangement of claim 1 .

15. A multi-mode transceiver arrangement configured to provide for transmission and reception of signaling of a plurality of wireless network standards, the transceiver comprising;

a single transmission path and a plurality of parallel receive paths,

said transmission path and said receive paths configured to share a single antenna;

said transmission path including

a modulator element configured to modulate, at any one time, a signal for transmission in accordance with a particular one of the plurality of wireless network standards and

a frequency reference element configured to provide a reference frequency to generate signaling for the antenna at a predetermined frequency in accordance with said particular one of the plurality wireless network standards;

said receive paths each

configured to receive signaling over a different, predetermined frequency band and

including a demodulator to provide a demodulated signal for processing by a controller; and

said controller

configured to provide signals to the transmission path for generation of signaling for transmission and

configured to receive signals from the demodulator in each of the plurality of receive paths representative of received signaling for symbol recognition

thereby enabling the multi-mode transceiver to communicate with a plurality of wireless networks simultaneously; and

wherein each of the plurality of receive paths include a digital down converter element prior to said demodulator and configured to extract a particular channel frequency for receipt by the controller, the particular channel frequency associated with one or more of the plurality of wireless network standards.

16. The multi-mode transceiver arrangement of claim 15 ,

wherein the plurality of wireless network standards comprise two or more of:

Zigbee, Thread, Bluetooth, Bluetooth LE, WiFi or one of a plurality of protocols based on IEEE standard 802.15.4.

17. An electronic device including the multi-mode transceiver arrangement of claim 15 ,

the electronic device comprising any one of a router or hub of a wireless sensor network.

18. A wireless sensor network comprising a plurality of nodes wherein at least one of said nodes includes the multi-mode transceiver arrangement of claim 15 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2017
From: RIVIÈRE, FABIAN; BRILLANT, JEROME; ROBERT, SEBASTIEN
To: NXP B.V.
Reel/Frame 041193/0051 →
Priority Claims (1)
EP 16290044 · Feb 26, 2016 · regional
Continuity (1)
Related Publication 20170250737A1 · Aug 31, 2017
Cited By (2)
US 12,388,486 US 12,512,154