IP Library › Granted Patent US 10,171,883
Granted Patent B2
US 10,171,883 · App. 15/196,095 · Granted Jan 1, 2019

Directional MoCA filter

Inventors: Yan Li (Syracuse, NY); Erdogan Alkan (Fayetteville, NY)
Assignee: PPC BROADBAND, INC.
H04N21/6168H04N7/108H04N21/6118
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Quick Facts
Patent No.
US 10,171,883
App. No.
15/196,095
Granted
Jan 1, 2019
Kind
B2
Abstract

The present disclosure is directed a directional Multimedia over Coax Alliance (MoCA) filter. The MoCA filter can include a first port and a second port. Additionally, the MoCA filter can include a bidirectional path and a unidirectional path in parallel between the first port and the second port. Further, the unidirectional path can include an active isolator or a passive isolator.

Claims (88)

1. A Multimedia over Coaxial Alliance (MoCA) filter comprising:

a first port;

a second port;

a unidirectional path between the first port and the second port, wherein the unidirectional path communicates at least a portion of a cable television (CATV) signal from the first port to the second port and prevents a MoCA signal from being communicated from the second port to the first port, and wherein the unidirectional path comprises:

a first band-pass filter device;

a second band-pass filter device; and

an isolator positioned between the first and second band-pass filter devices; and

a bidirectional path between the first port and the second port, wherein the bidirectional path communicates at least a portion of the CATV signal from the first port to the second port, wherein the unidirectional and bidirectional paths are in parallel, and wherein a frequency range of the CATV signal at least partially overlaps with a frequency range of the MoCA signal.

2. The MoCA filter of claim 1 , wherein:

the first port is an external port configured to receive the CATV signal provided to a premises; and

the second port is an internal port configured to receive the MoCA signal from the premises.

3. The MoCA filter of claim 2 , wherein:

the bidirectional path communicates a portion of the CATV signal below a predetermined frequency from the first port to the second port.

4. The MoCA filter of claim 2 , wherein:

the unidirectional path communicates the CATV signal between a predetermined frequency range from the first port to the second port; and

the unidirectional path rejects or terminates communication of the MoCA signal below the predetermined frequency from the second port to the first port.

5. The MoCA filter of claim 1 , wherein the bidirectional path comprises one or more low-pass filter devices.

6. The MoCA filter of claim 1 , wherein the isolator comprises an active device.

7. The MoCA filter of claim 6 , wherein the active device comprises an amplifier.

8. The MoCA filter of claim 1 , wherein the isolator comprises a passive device.

9. The MoCA filter of claim 8 , wherein the passive device comprises a circulator.

10. A Multimedia over Coaxial Alliance (MoCA) filter comprising:

a first port;

a second port;

a unidirectional path between the first port and the second port, wherein the unidirectional path communicates at least a portion of a cable television (CATV) signal from the first port to the second port and prevents a MoCA signal from being communicated from the second port to the first port; and

a bidirectional path between the first port and the second port, wherein the bidirectional path communicates at least a portion of the CATV signal from the first port to the second port, wherein the unidirectional and bidirectional paths are in parallel, and wherein a frequency range of the CATV signal at least partially overlaps with a frequency range of the MoCA signal,

wherein:

the unidirectional path comprises:

a first band-pass filter device;

a second band-pass filter device;

an isolator positioned between the first and second band-pass filter devices; and

a three-node circulator;

a first node of the circulator receives a portion of the CATV signal from the unidirectional path;

a second node of the circulator receives the portion of the CATV signal from the first node;

the second node of the circulator receives a portion of the MoCA signal from the unidirectional path;

a third node of the circulator receives the portion of the MoCA signal from the second node; and

the third node is tied to ground potential through a resistor.

11. The MoCA filter of claim 10 , wherein the first node receives the CATV signal from a cable television provider.

12. The MoCA filter of claim 10 , wherein the second node receives the MoCA signal from a premises.

13. The MoCA filter of claim 3 , wherein the predetermined frequency is about 1194 MHz.

14. The MoCA filter of claim 3 , wherein the predetermined frequency is about 1002 MHz.

15. The MoCA filter of claim 4 , wherein the predetermined frequency range is from about 1002 MHz to about 1225 MHz.

16. The MoCA filter of claim 4 , wherein the predetermined frequency range is from about 1002 MHz to about 1218 MHz.

17. A Multimedia over Coaxial Alliance (MoCA) filter comprising:

a first port;

a second port;

a unidirectional path between the first port and the second port, wherein the unidirectional path communicates at least a portion of a cable television (CATV) signal from the first port to the second port and prevents a MoCA signal from being communicated from the second port to the first port; and

a bidirectional path between the first port and the second port, wherein the bidirectional path communicates at least a portion of the CATV signal from the first port to the second port, wherein the unidirectional and bidirectional paths are in parallel, and wherein a frequency range of the CATV signal at least partially overlaps with a frequency range of the MoCA signal,

wherein:

the bidirectional path includes a first low-pass filter device serially connected to a second low-pass filter device;

the unidirectional path includes a first band-pass filter device, a second band-pass filter device, and a passive isolator serially connected to and positioned between the first and second band-pass filter devices;

the passive isolator device comprises a circulator;

a first node of the circulator receives the CATV signal;

a second node of the circulator isolates the MoCA signal from the first port; and

a third node of the circulator is terminated.

18. A filter device comprising:

a first port electrically configured to receive a first signal provided to a premises and to split the first signal between a bidirectional path and a unidirectional path;

a second port electrically configured to receive a second signal from the premises and to split the second signal between the bidirectional path and the unidirectional path, and

wherein:

the bidirectional path and the unidirectional path are connected in parallel between the split of the first port and the split of the second port,

the unidirectional path comprises:

a first band-pass filter device;

a second band-pass filter device; and

an isolator between the first and second band-pass filter devices,

the isolator is configured to permit communication of the first signal from the split of the first port to the split of the second port, and to reject communication of the second signal from the split of the second port to the split of the first port; and

a frequency range of the first signal at least partially overlaps with a frequency range of the second signal.

19. The filter device of claim 18 , wherein:

the bidirectional path communicates a portion of the first signal below a predetermined frequency from the first port to the second port.

20. The filter of claim 18 , wherein the isolator comprises a passive device.

21. The filter of claim 18 , wherein:

the first signal has a first bandwidth;

the second signal has a second bandwidth that overlaps with the first bandwidth and a third bandwidth higher than the first bandwidth;

the bidirectional path is configured to pass the second bandwidth and reject the third bandwidth; and

the unidirectional path is configured to pass a portion of the first bandwidth.

22. The filter of claim 21 , wherein the bidirectional path is configured to reject the portion of the first bandwidth overlapping the third bandwidth.

23. The filter of claim 21 , wherein:

the first bandwidth is less than or equal to about 1218 MHz; and

the third bandwidth is greater than or equal to about 1125 MHz.

24. A Multimedia over Coaxial Alliance (MoCA) filter comprising:

a first port;

a second port;

a unidirectional path between the first port and the second port, wherein the unidirectional path communicates at least a portion of a cable television (CATV) signal from the first port to the second port and prevents a MoCA signal from being communicated from the second port to the first port, wherein the unidirectional path comprises:

a first band-pass filter device;

a second band-pass filter device; and

an isolator positioned between the first and second band-pass filter devices; and

a bidirectional path between the first port and the second port, wherein the bidirectional path communicates at least a portion of the CATV signal from the first port to the second port, wherein the unidirectional and bidirectional paths are in parallel, wherein a frequency range of the CATV signal is from about 5 MHz to about 1218 MHz, and wherein a frequency range of the MoCA signal is from about 1125 MHz to about 1675 MHz.

25. The MoCA filter of claim 24 , wherein the first band-pass filter device, the second band-pass filter device, or both are configured to communicate at least a portion of the CATV signal between 1002 MHz and 1218 MHz from the first port to the second port.

26. The MoCA filter of claim 25 , wherein the bidirectional path comprises a low-pass filter device configured to communicate at least a portion of the CATV signal less than about 1002 MHz from the first port to the second port and at least a portion of the MoCA signal less than about 1002 MHz from the second port to the first port.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2018
From: LI, YAN; ALKAN, ERDOGAN
To: PPC BROADBAND, INC.
Reel/Frame 046679/0398 →
Continuity (2)
Provisional Application 62188916 · Jul 6, 2015
Related Publication 20170013320A1 · Jan 12, 2017