IP Library › Granted Patent US 10,418,760
Granted Patent B2
US 10,418,760 · App. 15/697,444 · Granted Sep 17, 2019

Coaxial cable connector having an outer conductor engager

Inventor: Harold John Watkins (Chittenango, NY)
Assignee: PPC BROADBAND, INC.
H01R24/38H01R9/0527H01R13/501H01R13/582H01R24/40
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Quick Facts
Patent No.
US 10,418,760
App. No.
15/697,444
Granted
Sep 17, 2019
Kind
B2
Abstract

A connector for a coaxial cable includes a coupler configured to engage another coaxial cable connector. The connector further includes a body disposed at least partially within the coupler. The connector further includes an outer conductor engager made of a conductive material disposed within the body and the coupler. The connector further includes a biasing element on an interior of the body. During a coupling of the connector to the coaxial cable: a connector end of the outer conductor engager moves axially relative to the body, the outer conductor engager is compressed by the biasing element, and an interior of the outer conductor engager is inwardly compressed against an outer conductor of the coaxial cable.

Claims (57)

1. A connector for a coaxial cable, comprising:

a coupler portion configured to engage an interface port;

a body portion configured to be disposed at least partially within the coupler portion; and

an outer conductor engager portion made of a conductive material disposed within the body portion,

wherein the body portion is configured to move axially relative to a connector end of the outer conductor engager portion, and

wherein an interior surface of the body portion is configured to compress the outer conductor engager portion when the body portion is moved axially relative to the connector end of the outer conductor engager portion such that an interior surface of the outer conductor engager portion is compressed radially inward against an outer conductor of the coaxial cable.

2. A connector for a coaxial cable, comprising:

a coupler portion configured to engage an interface port;

a housing portion having a forward end configured to be disposed at least partially within the coupler portion; and

an outer conductor engager portion made of a conductive material disposed within the housing portion,

wherein the housing portion includes a rearward end configured to receive the coaxial cable,

wherein the housing portion is configured to move axially relative to the outer conductor engager portion, and

wherein an interior surface of the housing portion is configured to compress the outer conductor engager portion when the housing portion is moved axially relative to the outer conductor engager portion such that an interior surface of the outer conductor engager portion is compressed radially inward against an outer conductor of the coaxial cable.

3. The connector of claim 2 , wherein the outer conductor engager portion is configured to remain axially stationary relative to the coupler portion when the housing portion moves relative to the outer conductor engager portion.

4. The connector of claim 2 , wherein the housing portion comprises:

a forward body portion configured to be received by a reward end of the coupler portion;

a rearward body portion coupled with the forward body portion,

wherein the coupler portion is configured to rotate relative to the forward body portion,

wherein the rearward body portion is configured to slide axially relative to the forward body portion, and

wherein an interior surface of the rearward body portion is configured to compress the outer conductor engager portion when the housing portion is moved axially relative to the outer conductor engager portion such that an interior surface of the outer conductor engager portion is compressed radially inward against an outer conductor of the coaxial cable.

5. The connector of claim 4 , wherein the outer conductor engager portion includes resilient fingers that are configured to be compressed radially inward against an outer conductor of the coaxial cable when an interior surface of the rearward body portion compresses the outer conductor engager portion.

6. The connector of claim 5 , further comprising:

a compression sleeve disposed at a rearward end of the rearward body portion,

wherein the compression sleeve is configured to move the rearward body portion axially forward relative to the forward body portion to compress the resilient fingers radially inward against the outer conductor of the coaxial cable.

7. The connector of claim 6 , wherein the compression sleeve is configured to move axially forward relative to the rearward body portion, after the resilient fingers are compressed radially inward against the outer conductor of the cable, so as to compress the rearward end of the rearward body portion against the coaxial cable.

8. The connector of claim 2 , wherein the coupler portion is configured to rotate relative to the housing portion.

9. The connector of claim 2 , wherein the outer conductor engager portion includes resilient fingers that are configured to be compressed radially inward against an outer conductor of the coaxial cable when the housing portion is moved axially relative to the outer conductor engager portion.

10. The connector of claim 9 , further comprising:

a compression sleeve disposed at a rearward end of the housing portion,

wherein the compression sleeve is configured to move the housing portion axially forward relative to the outer conductor engager portion to compress the resilient fingers radially inward against the outer conductor of the coaxial cable.

11. The connector of claim 10 , wherein the compression sleeve is configured to move axially forward relative to the housing portion, after the resilient fingers are compressed radially inward against the outer conductor of the cable, so as to compress the rearward end of the housing portion against the coaxial cable.

12. The connector of claim 2 , further comprising a terminal pin configured to receive a center conductor of the coaxial cable,

wherein the terminal pin is configured to extend through the coupler portion and to be connected to the interface port.

13. The connector of claim 12 , further comprising an isolator configured to electrically isolate the terminal pin from the coupler portion.

14. The connector of claim 12 , further comprising an isolator configured to electrically isolate the center conductor from the outer conductor engager portion.

15. The connector of claim 2 , wherein the coupler portion, the housing portion, and the outer conductor engager portion are separate structures that are coupled to one another.

16. A connector for a coaxial cable, comprising:

a coupler portion configured to engage an interface port;

a housing portion having a forward end configured to be disposed at least partially within the coupler portion; and

an outer conductor engager portion made of a conductive material disposed within the housing portion,

wherein the housing portion includes a rearward end configured to receive the coaxial cable,

wherein the housing portion is configured to move axially relative to the outer conductor engager portion,

wherein an interior surface of the housing portion is configured to compress the outer conductor engager portion when the housing portion is moved axially relative to the outer conductor engager portion such that an interior surface of the outer conductor engager portion is compressed radially inward against an outer conductor of the coaxial cable,

wherein the outer conductor engager portion is configured to remain axially stationary relative to the coupler portion when the housing portion moves relative to the outer conductor engager portion,

wherein a forward body portion of the housing portion is configured to be received by a reward end of the coupler portion and a rearward body portion is configured to be coupled with the forward body portion,

wherein the coupler portion is configured to rotate relative to the forward body portion,

wherein the rearward body portion is configured to slide axially relative to the forward body portion,

wherein an interior surface of the rearward body portion is configured to compress the outer conductor engager portion when the housing portion is moved axially relative to the outer conductor engager portion such that an interior surface of the outer conductor engager portion is compressed radially inward against an outer conductor of the coaxial cable,

wherein the outer conductor engager portion includes resilient fingers that are configured to be compressed radially inward against an outer conductor of the coaxial cable when an interior surface of the rearward body portion compresses the outer conductor engager portion,

wherein a compression sleeve is configured to be disposed at a rearward end of the rearward body portion,

wherein the compression sleeve is configured to move the rearward body portion axially forward relative to the forward body portion to compress the resilient fingers radially inward against the outer conductor of the coaxial cable, and

wherein the compression sleeve is configured to move axially forward relative to the rearward body portion, after the resilient fingers are compressed radially inward against the outer conductor of the cable, so as to compress the rearward end of the rearward body portion against the coaxial cable.

17. The connector of claim 16 , wherein the coupler portion, the forward body portion, the rearward body portion, and the outer conductor engager portion are separate structures that are coupled to one another.

18. The connector of claim 16 , further comprising a terminal pin configured to receive a center conductor of the coaxial cable,

wherein the terminal pin is configured to extend through the coupler portion and to be connected to the interface port.

19. The connector of claim 18 , further comprising an isolator configured to electrically isolate the terminal pin from the coupler portion.

20. The connector of claim 18 , further comprising an isolator configured to electrically isolate the center conductor from the outer conductor engager portion.

Continuity (5)
Continuation In Part 15652029 · Jul 17, 2017
Continuation 15178062 · Jun 9, 2016
Provisional Application 62173906 · Jun 10, 2015
Provisional Application 62254171 · Nov 11, 2015
Related Publication 20180083395A1 · Mar 22, 2018
Cited By (1)
US 12,278,451