IP Library Granted Patent US 9,713,155
Granted Patent B2
US 9,713,155 · App. 15/403,713 · Granted Jul 18, 2017

Radio with antenna array and multiple RF bands

Inventor: Kevin J. Negus (Philipsburg, MT)
Assignee: CBF NETWORKS, INC.
H04W72/0453H01Q1/246H01Q5/50H01Q25/005H04B7/04H04L1/0003H04L5/0048H04L5/14H04L25/03019H04W24/02H04W52/52H04L5/0007H04W76/046
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Quick Facts
Patent No.
US 9,713,155
App. No.
15/403,713
Granted
Jul 18, 2017
Kind
B2
Abstract

A intelligent backhaul radio is disclosed that is compact, light and low power for street level mounting, operates at 100 Mb/s or higher at ranges of 300 m or longer in obstructed LOS conditions with low latencies of 5 ms or less, can support PTP and PMP topologies, uses radio spectrum resources efficiently and does not require precise physical antenna alignment.

Claims (25)

1. A radio for exchanging one or more data interface streams with one or more other radios, said radio comprising:

a plurality of receive radio frequency (RF) chains, wherein at least a first subset of the plurality of receive RF chains is configured to convert from at least a respective one of a plurality of receive RF signals within at least a first receive frequency band to a respective one of a first plurality of receive chain output signals, and wherein at least a second subset of the plurality of receive RF chains is configured to convert from at least a respective one of a plurality of receive RF signals within at least a second receive frequency band to a respective one of a second plurality of receive chain output signals;

a plurality of transmit radio frequency (RF) chains, wherein at least a first subset of the plurality of transmit RF chains is configured to convert from at least a respective one of a first plurality of transmit chain input signals to a respective one of a plurality of transmit RF signals within a first transmit frequency band, and wherein at least a second subset of the plurality of transmit RF chains is configured to convert from at least a respective one of a second plurality of transmit chain input signals to a respective one of a plurality of transmit RF signals within a second transmit frequency band; and

a plurality of antenna elements, wherein at least a first subset of the plurality of antenna elements is configured to operate over at least both of the first transmit frequency band and the first receive frequency band and each antenna element of the first subset of the plurality of antenna elements is coupled or couplable to at least one of the first subset of the plurality of receive RF chains or coupled or couplable to at least one of the first subset of the plurality of transmit RF chains, and wherein at least a second subset of the plurality of antenna elements is configured to operate over at least both of the second transmit frequency band and the second receive frequency band and each antenna element of the second subset of the plurality of antenna elements is coupled or couplable to at least one of the second subset of the plurality of receive RF chains or coupled or couplable to at least one of the second subset of the plurality of transmit RF chains;

wherein the radio is configured to provide a base throughput capability using the first receive frequency band and the first transmit frequency band; and

wherein the radio is further configured to provide a surge throughput capability using the second receive frequency band and the second transmit frequency band.

2. The radio of claim 1 , wherein the first transmit frequency band is coincident with the first receive frequency band.

3. The radio of claim 1 , wherein a first frequency band comprises at least the first transmit frequency band and the first receive frequency band.

4. The radio of claim 3 , wherein the first frequency band is a licensed band.

5. The radio of claim 3 , wherein the first frequency band is either within a frequency range of between 2 GHz and 6 GHz or within a frequency range of above 10 GHz.

6. The radio of claim 1 , wherein the second transmit frequency band is coincident with the second receive frequency band.

7. The radio of claim 1 , wherein a second frequency band comprises at least the second transmit frequency band and the second receive frequency band.

8. The radio of claim 7 , wherein the second frequency band is an unlicensed band.

9. The radio of claim 7 , wherein the second frequency band is either within a frequency range of between 2 GHz and 6 GHz or within a frequency range of above 10 GHz.

10. The radio of claim 1 , wherein at least one antenna element of the plurality of antenna elements is a directive gain antenna element.

11. The radio of claim 1 , wherein at least one antenna element of the plurality of antenna elements is at least one of a patch antenna element, a dipole antenna element, or a slot antenna element.

12. The radio of claim 1 , wherein at least one antenna element of the plurality of antenna elements is coupled or couplable to at least one receive RF chain or transmit RF chain via either at least one RF switch or at least one duplexer filter.

13. The radio of claim 1 , wherein the radio is configured to use at least a Single-Carrier Frequency Domain Equalization (SC-FDE) modulation format.

14. The radio of claim 1 , wherein the radio is configured to use at least an Orthogonal Frequency Division Multiplexing (OFDM) modulation format.

15. The radio of claim 1 , wherein the radio is configured to transmit in the first transmit frequency band and receive in the first receive frequency band coincident in time for at least a period of time.

16. The radio of claim 1 , wherein the radio is configured to transmit in the second transmit frequency band and receive in the second receive frequency band coincident in time for at least a period of time.

17. The radio of claim 1 , wherein the surge throughput capability is higher than the base throughput capability.

18. The radio of claim 1 , wherein the risk of temporal interference outage for the surge throughput capability is higher than for the base throughput capability.

19. The radio of claim 1 , wherein at least one of the plurality of receive RF chains comprises at least a vector demodulator and two analog to digital converters that are configured to produce a respective one of a plurality of receive chain output signals, said respective one of the plurality of receive chain output signals comprised of digital baseband quadrature signals.

20. The radio of claim 1 , wherein at least one of the plurality of transmit RF chains comprises at least a vector modulator and two digital to analog converters that are configured to produce a respective one of the plurality of transmit RF signals from a respective one of a plurality of transmit chain input signals comprised of digital baseband quadrature signals.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2022
From: SKYLINE PARTNERS TECHNOLOGY LLC
To: COMS IP HOLDINGS, LLC
Reel/Frame 061070/0695 →
MERGER Recorded Jun 1, 2022
From: COMSOVEREIGN HOLDING CORP.
To: HELSON, AS MEMBERS' REP FBO THE FORMER MEMBERS OF SKYLINE PARTNERS TECHNOLOGY LLC, JOHN
Reel/Frame 061263/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2017
From: CBF NETWORKS, INC. (DBA FASTBACK NETWORKS)
To: FASTBACK (ASSIGNMENT FOR THE BENEFIT OF CREDITORS), LLC
Reel/Frame 042823/0594 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2017
From: FASTBACK (ASSIGNMENT FOR THE BENEFIT OF CREDITORS), LLC
To: SKYLINE PARTNERS TECHNOLOGY, LLC
Reel/Frame 042824/0713 →
RELEASE OF SECURITY INTEREST Recorded Jun 15, 2017
From: COMERICA BANK
To: SKYLINE PARTNERS TECHNOLOGY LLC
Reel/Frame 042825/0106 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2017
From: NEGUS, KEVIN J.
To: CBF NETWORKS, INC.
Reel/Frame 041290/0360 →
Continuity (8)
Continuation 15203658 · Jul 6, 2016
Continuation 14988578 · Jan 5, 2016
Continuation 14686674 · Apr 14, 2015
Continuation 14337744 · Jul 22, 2014
Continuation 13645472 · Oct 4, 2012
Continuation 13371366 · Feb 10, 2012
Continuation 13212036 · Aug 17, 2011
Related Publication 20170127421A1 · May 4, 2017