IP Library Granted Patent US 8,563,861
Granted Patent B2
US 8,563,861 · App. 12/974,765 · Granted Oct 22, 2013

Friction weld inner conductor cap and interconnection method

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Quick Facts
Patent No.
US 8,563,861
App. No.
12/974,765
Filed
Dec 21, 2010
Granted
Oct 22, 2013
Kind
B2
Art Unit
2847
USPC
174/82
Abstract

An inner conductor cap, with a connector end and a cable end, is provided with an inner conductor socket at the cable end and an inner conductor interface at the connector end. The inner conductor socket may be dimensioned to mate with a prepared end of an inner conductor of a coaxial cable. At least one material gap may be provided between a sidewall of the inner conductor socket and an outer diameter surface of the prepared end when the inner conductor cap is mated with the prepared end. A rotation key may be provided for rotating the inner conductor cap.

Claims (11)

1. An inner conductor cap with a connector end and a cable end for coupling with a prepared end of an inner conductor of a coaxial cable, the inner conductor cap comprising: an inner conductor interface at the connector end; an inner conductor socket open to the cable end; the prepared end is provided with a diameter less than a diameter of the inner conductor; the inner conductor socket provided with a conical sidewall, the conical sidewall provided with a diameter decreasing toward the connector end, and a cylindrical sidewall at a connector end of the inner conductor socket; the conical sidewall dimensioned to mate with a conical portion of the prepared end; whereby a material gap is formed between the cylindrical sidewall of the inner conductor socket and the conical portion of the prepared end when the inner conductor cap is mated with the prepared end; and a rotation key for rotating the inner conductor cap.

2. The inner conductor cap of claim 1 , wherein the material gap is annular.

3. The inner conductor cap of claim 1 , wherein a cylindrical portion of the prepared end is proximate a prepared end base dimensioned to mate with a base portion of the conical sidewall; a conical portion of the prepared end is proximate a leading end of the prepared end dimensioned to mate with the conical sidewall at a connector end side of the conical sidewall; and the material gap is formed between the base portion, the cylindrical portion and a shoulder of the inner conductor.

4. The inner conductor cap of claim 1 , further including a cylindrical sidewall at a connector end of the inner conductor socket; a cylindrical portion of the prepared end is proximate a prepared end base dimensioned to mate with a base portion of the conical sidewall; the conical portion of the prepared end is proximate a leading end of the prepared end dimensioned to mate with the conical sidewall at a connector end side of the conical sidewall and the cylindrical sidewall; a second material gap is formed between the base portion, the cylindrical portion, and a shoulder of the inner conductor.

5. The inner conductor cap of claim 1 , wherein the inner conductor interface is a female socket.

6. The inner conductor cap of claim 5 , wherein the female socket is a spring basket.

7. The inner conductor cap of claim 5 , wherein the rotation key is within the female socket.

8. The inner conductor cap of claim 5 , wherein the rotation key is an annular protrusion extending radially from an outer surface of the inner conductor cap proximate the cable end of the female socket.

9. The inner conductor cap of claim 1 , wherein the inner conductor interface is a male protrusion extending axially toward the connector end.

10. The inner conductor cap of claim 9 , wherein the rotation key is a plurality of facets on an outer surface of the male protrusion.

11. The inner conductor cap of claim 9 , wherein the rotation key is an annular protrusion extending radially from an outer surface of the inner conductor cap proximate a cable end of the male protrusion.