IP Library Granted Patent US 7,261,581
Granted Patent B2
US 7,261,581 · App. 10/725,695 · Granted Aug 28, 2007

Coaxial connector and method

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Quick Facts
Patent No.
US 7,261,581
App. No.
10/725,695
Granted
Aug 28, 2007
Kind
B2
Abstract

Disclosed is a coaxial connector consisting of a back nut, outer and inner terminals, and an insulator. The back nut is made of a single tubular piece and does not enclose any further parts. In connecting a coaxial cable to the connector, the cable is inserted through the back nut, and a portion of the outer conductor at the end of the cable is flared and shaped along a tapered clamping face of the back nut. The back nut is then axially displaced, as by threading the back nut over the outer terminal, to clamp the flared end of the outer conductor of the coaxial cable between the outer terminal of the connector and the back nut thereof.

Claims (30)

1. A coaxial connector for attachment to a coaxial cable, the coaxial cable including an outer conductor, the outer conductor of the coaxial cable having a predetermined outer diameter, and the outer conductor of the coaxial cable having an inner surface and an opposing outer surface, the coaxial connector comprising:

an outer terminal having front and back opposing ends, the back end of said outer terminal including a first angled contact face integral with said outer terminal; and

a back nut releasably attachable to the back end of said outer terminal and extending around the back end of said outer terminal, and axially displaceable with respect to said outer terminal, the back nut including a second angled contact face integral with said back nut, the back nut including an internal bore extending therethrough for allowing passage of the coaxial cable therethrough, at least a portion of the internal bore having a predetermined internal diameter commensurate with the predetermined outer diameter of the cuter conductor of the coaxial cable,

wherein said first angled contact face and said second angled contact face form a clamping site therebetween, said clamping site being tightened as said back nut is axially displaced with respect to said outer terminal, wherein said first angled contact face has a length that is shorter than said predetermined internal diameter, and wherein said second angled contact face has a length that is shorter than said predetermined internal diameter, said first angled contact face directly engaging the inner surface of the outer conductor of the coaxial cable, and said second angled contact face directly engaging the outer surface of the outer conductor of the coaxial cable, and

wherein the coaxial cable includes an inner conductor having an outer surface, and wherein the coaxial connector includes an inner terminal adapted to engage the outer surface of the inner conductor of the coaxial cable.

2. The connector of claim 1 wherein a mechanical connection between said cable and said connector is established via said clamping site.

3. The connector of claim 1 , wherein the outer conductor of said cable is either corrugated or smooth.

4. The connector of claim 1 wherein the connector further comprises an insulator disposed between the inner terminal and the outer terminal, and wherein the inner terminal, the outer terminal, the insulator and the end portion of the cable define an air space therebetween.

5. A coaxial connector for attachment to a coaxial cable including an outer conductor, the outer conductor of the coaxial cable having a predetermined outer diameter and the outer conductor of the coaxial cable having an inner surface and an opposing outer surface, the coaxial connector comprising:

an outer terminal having front and back opposing ends, the back end of said outer terminal including a first angled contact face integral with said outer terminal;

a back nut releasably attachable to the back end of said outer terminal and extending around the back end of said outer terminal, and axially displaceable with respect to said outer terminal, the back nut including a second angled contact face integral with said back nut, the back nut including an internal bore extending therethrough for allowing passage of the coaxial cable therethrough, at least a portion of the internal bore having a predetermined internal diameter commensurate with the predetermined outer diameter of the outer conductor of the coaxial cable; and

said first and second angled contact faces forming an angled gap therebetween for clamping a portion of the outer conductor of the coaxial cable therebetween, wherein said gap decreases as said back nut is axially displaced towards said outer terminal, and increases as said back nut is axially displaced away from said outer terminal, and wherein said first angled contact face has a length that is shorter than said predetermined internal diameter, and wherein said second angled contact face has a length that is shorter than said predetermined internal diameter, said first angled contact face directly engaging the inner surface of the outer conductor of the coaxial cable, and second angled contact face directly engaging the outer surface of the outer conductor of the coaxial cable,

wherein the coaxial cable includes an inner conductor having an outer surface, and wherein the coaxial connector includes an inner terminal adapted to engage the outer surface of the inner conductor of the coaxial cable.

6. The method of claim 5 wherein the connector further comprises an insulator disposed between the inner terminal and the outer terminal, and wherein the inner terminal, the outer terminal, the insulator and the cable define an air space therebetween.

7. A method of attaching a coaxial connector to an end of a coaxial cable, the coaxial connector including a removable back nut, a center conductor and an outer body, the outer body comprising an integral clamping surface, the coaxial cable including an inner conductor, a dielectric surrounding the inner conductor, an outer conductor surrounding the dielectric, and a jacket surrounding the outer conductor, the jacket having an outer diameter, the outer conductor having opposing inner and outer surfaces, said method comprising the steps of:

a. preparing the end of the coaxial cable by:

i. removing a portion of the dielectric, outer conductor, and jacket from the inner conductor to expose a portion of the inner conductor extending beyond the end of the outer conductor;

ii. removing a portion of the jacket from the outer conductor to expose a portion of the outer surface of the outer conductor; and

iii. removing a portion of the dielectric from within the end of the outer conductor to expose a portion of the inner surface of the outer conductor;

b. inserting the prepared end portion of the coaxial cable through a back nut of the coaxial connector;

c. flaring an end portion of said outer conductor to provide a flared portion having a length smaller than the outer diameter of the jacket;

d. engaging the exposed inner conductor of the coaxial cable with the center conductor of the coaxial connector;

e. placing the clamping surface of the outer body in close proximity to the flared portion of the outer conductor of the coaxial cable; and

f. securing the back nut of the coaxial connector to the outer body of the coaxial connector to clamp the flared portion of the outer conductor of the coaxial cable between the clamping surface and the back nut of the coaxial connector, wherein the back nut comprises an integral second clamping surface, and wherein said step of securing the back nut of the coaxial connector to the outer body of the coaxial connector clammps the flared portion of the outer conductor of the coaxial cable between the clamping surface of the outer body and the second clamping surface of the back nut.

8. The method recited by claim 7 wherein said step of securing the back nut to the outer body includes the step of axially displacing the back nut, and the flared portion of the outer conductor of the coaxial cable, toward said outer body.

9. The method recited by claim 7 wherein:

a. the back nut includes a threaded surface;

b. the outer body includes a threaded surface adapted to mate with the threaded surface of the back nut; and

c. the step of securing the back nut to the outer body includes the step of engaging the threaded surface of the back nut with the threaded surface of the outer body and rotating the back nut relative to the outer body to tighten the back nut onto the outer body.

10. The method of claim 7 wherein the connector further comprises an insulator disposed between the center conductor and the outer body, and wherein the center conductor, the outer body, the insulator and the end of the cable define an air space therebetween.

Assignments (5)
CORRECTIVE ASSIGNMENT TO CORRECT THE PROPERTY LISTED IN THE ORIGINAL COVER SHEET PREVIOUSLY RECORDED AT REEL: 036687 FRAME: 0562. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 27, 2021
From: CORNING GILBERT, INC.
To: CORNING OPTICAL COMMUNICATIONS RF LLC
Reel/Frame 058300/0843 →
CHANGE OF NAME Recorded Aug 31, 2021
From: CORNING OPTICAL COMMUNICATIONS APS
To: AMPHENOL CABELCON APS
Reel/Frame 057390/0700 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: CORNING OPTICAL COMMUNICATIONS RF LLC
To: CORNING OPTICAL COMMUNICATIONS APS
Reel/Frame 057143/0470 →
CHANGE OF NAME Recorded Sep 25, 2015
From: CORNING GILBERT, INC.
To: CORNING OPTICAL COMMUNICATIONS RF LLC
Reel/Frame 036687/0562 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2004
From: HENNINGSEN, JIMMY
To: CORNING GILBERT INC.
Reel/Frame 015275/0996 →