IP Library Granted Patent US 10,446,983
Granted Patent B2
US 10,446,983 · App. 16/050,726 · Granted Oct 15, 2019

Connector having a grounding member

Inventors: Mary Krenceski (Troy, NY); Roger Mathews (Syracuse, NY); Noah P. Montena (Syracuse, NY)
Assignee: PPC BROADBAND, INC.
H01R13/658H01R9/0512H01R9/0521H01R9/0524H01R13/5202H01R13/5219H01R13/622H01R13/6596H01R24/40H01R13/6584H01R13/65802H01R2103/00Y10T29/49174Y10T29/49204
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Quick Facts
Patent No.
US 10,446,983
App. No.
16/050,726
Granted
Oct 15, 2019
Kind
B2
Abstract

A grounding member for maintaining a ground path in a cable connector includes, in one embodiment, an inner core configured to flex when a force is applied to the grounding member during operation of the connector. The grounding member further includes an outer conductive coating applied to the inner core. The outer conductive coating is configured to flex from a first state to a second state when a force is applied to the grounding member, so as to maintain a conductive path through the connector when the outer conductive coating flexes between the first and second states during operation of the connector.

Claims (26)

1. A connector comprising:

a body portion having a central bore and a first grounding member contact surface;

a post portion disposed within the central bore and having an outwardly projecting flange at one end configured to produce a first portion of a mating interface, the post portion having tubular sleeve at the other end configured to mechanically and electrically engage the prepared end of a coaxial cable;

a conductive coupling portion having an engagement surface at a first end configured to mechanically and electrically engage an interface port, a lip at a second end configured to produce a second portion of the mating interface, the first and second portions sliding along the mating interface to rotate about an elongate axis of the cable connector, and a second grounding member contact surface opposing the first grounding member contact surface; and

a conductive grounding portion comprising a compliant ring disposed between the first and second grounding member contact surfaces, the conductive grounding portion configured to produce an electrical path between the body portion and the conductive coupling portion.

2. The connector of claim 1 , wherein the first and second grounding member contact surfaces move axially relative to each other and slide over a surface of the conductive grounding portion as the coupling portion and the body portion move apart when the engagement surface of the coupling portion loosens relative to the interface port.

3. The connector of claim 1 , wherein the first grounding member contact surface of the body portion is an outwardly facing cylindrical surface and the second grounding member contact surface of the coupling portion is an inwardly facing cylindrical surface.

4. The connector of claim 3 , wherein the outwardly facing cylindrical surface rotationally slides over a surface of the grounding portion as the engagement surface of the coupling portion is tightened over the interface port.

5. The connector of claim 1 , wherein the first and second grounding member contact surfaces produce a first RF cavity disposed radially outboard of the mating interface.

6. The connector of claim 1 , wherein the compliant ring comprises an elastomeric ring loaded with a conductive particulate.

7. The connector of claim 1 , wherein the compliant ring comprises an elastomer ring having a flexible core and a conductive outer coating.

8. The connector of claim 5 , wherein the first RF cavity is disposed to one side of the mating interface and comprises a first compliant ring and wherein the coupling portion produces a second RF cavity disposed to the other side of the mating interface.

9. A connector for coupling a prepared end of a coaxial cable to an interface port, the connector comprising:

a body portion having a central bore and a first grounding member contact surface;

a post portion disposed within the central bore and configured to mechanically and electrically engage the prepared end of the coaxial cable;

a conductive coupling portion having an engagement surface at a first end configured to mechanically and electrically engage an interface port, and a second grounding member contact surface opposing the first grounding member contact surface; and

a conductive grounding portion configured to produce an electrical path between the body portion and the conductive coupling portion when the engagement surface of the coupling portion loosens relative to the interface port.

10. The connector of claim 9 , wherein the post portion has an outwardly projecting flange at one end configured to produce a first portion of a mating interface, wherein the coupling portion includes a lip at a second end configured to produce a second portion of the mating interface, the first and second portions sliding along the mating interface to rotate about an elongate axis of the cable connector.

11. The connector of claim 9 , wherein the conductive grounding portion comprising a compliant ring disposed between the first and second grounding member contact surfaces.

12. The connector of claim 9 , wherein the first and second grounding member contact surfaces move axially relative to each other and slide over a surface of the conductive grounding portion as the coupling portion and the body portion move apart when the engagement surface of the coupling portion loosens relative to the interface port.

13. The connector of claim 9 , wherein the first grounding member contact surface of the body portion is an outwardly facing cylindrical surface and the second grounding member contact surface of the coupling portion is an inwardly facing cylindrical surface.

14. The connector of claim 13 , wherein the outwardly facing cylindrical surface rotationally slides over a surface of the grounding portion as the engagement surface of the coupling portion is tightened over the interface port.

15. The connector of claim 10 , wherein the first and second grounding member contact surfaces produce a first RF cavity disposed radially outboard of the mating interface.

16. The connector of claim 11 , wherein the compliant ring comprises an elastomeric ring loaded with a conductive particulate.

17. The connector of claim 11 , wherein the compliant ring comprises an elastomer ring having a flexible core and a conductive outer coating.

18. The connector of claim 15 , wherein the first RF cavity is disposed to one side of the mating interface and comprises a first compliant ring and wherein the coupling portion produces a second RF cavity disposed to the other side of the mating interface.

Continuity (9)
Continuation 15431018 · Feb 13, 2017
Continuation 15094451 · Apr 8, 2016
Continuation 13448937 · Apr 17, 2012
Continuation 13118617 · May 31, 2011
Continuation In Part 12418103 · Apr 3, 2009
Continuation In Part 12941709 · Nov 8, 2010
Continuation 12397087 · Mar 3, 2009
Continuation 10997218 · Nov 24, 2004
Related Publication 20190103710A1 · Apr 4, 2019
Cited By (6)
US 12,218,462 US 12,300,920 US 12,300,936 US 12,341,301 US 12,341,302 US 12,463,371