IP Library Granted Patent US 9,608,343
Granted Patent B2
US 9,608,343 · App. 14/303,745 · Granted Mar 28, 2017

Coaxial cable and connector with capacitive coupling

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Quick Facts
Patent No.
US 9,608,343
App. No.
14/303,745
Filed
Jun 13, 2014
Granted
Mar 28, 2017
Kind
B2
Art Unit
2842
USPC
439/578
Abstract

A coaxial connector junction includes first and second coaxial connectors. The first coaxial connector includes: a first central conductor extension; a first outer conductor extension spaced apart from and circumferentially surrounding the first central conductor extension; and a first dielectric spacer interposed between the first central conductor extension and the first outer conductor extension. The second coaxial connector includes: a second central conductor extension; a second outer conductor extension spaced apart from and circumferentially surrounding the second central conductor extension; and a second dielectric spacer interposed between the second central conductor extension and the second outer conductor extension. Each of the central conductor extensions and the outer conductor extensions has circular symmetry about the longitudinal axis, such that electrical properties of the engaged first and second coaxial connectors are substantially the same irrespective of the relative orientations of the first and second coaxial connectors about the longitudinal axis.

Claims (18)

1. A coaxial connector junction, comprising:

(a) a first coaxial connector, comprising:

a first central conductor extension;

a first outer conductor extension spaced apart from and circumferentially surrounding the first central conductor extension; and

a first dielectric spacer interposed between the first central conductor extension and the first outer conductor extension;

(b) a second coaxial connector that is repeatedly separable from the first coaxial connector, comprising:

a second central conductor extension, the second central conductor extension including a substantially cylindrical cavity therein;

a second outer conductor extension spaced apart from and circumferentially surrounding the second central conductor extension; and

a second dielectric spacer interposed between the second central conductor extension and the second outer conductor extension;

wherein as the first coaxial connector engages the second coaxial connector, the first outer conductor extension at least partially overlies the second outer conductor extension, and a capacitive element is formed between the first outer conductor extension and the second outer conductor extension by an air gap therebetween; and

wherein the connector junction further comprises a retaining member interposed between the first outer conductor extension and the second outer conductor extension, the retaining member configured to prevent relative movement of the first and second coaxial connectors under a bending load and thereby maintain the air gap between the first outer conductor extension and the second outer conductor extension.

2. The coaxial connector junction defined in claim 1 , wherein, in a relaxed state, the retaining member has a rectangular cross-section.

3. The coaxial connector junction defined in claim 2 , wherein the retaining member overlies a convex surface in the second outer conductor extension, the convex surface inducing an outer surface of the retaining member into a convex profile.

4. The coaxial connector junction defined in claim 1 , further comprising a sealing member interposed between the first outer conductor extension and the second outer conductor extension.

5. The coaxial connector junction defined in claim 1 , wherein the retaining member comprises an RF-absorbent material.

6. The coaxial connector junction defined in claim 1 , wherein the retaining member has a generally wedge-shaped profile.

7. The coaxial connector junction defined in claim 1 , wherein the first outer conductor extension has a beveled edge.

8. The coaxial connector junction defined in claim 1 , wherein the first central conductor extension has a post, and the second central conductor extension has a hollow cavity, and wherein, upon engagement, the post of the first central conductor extension is inserted into the cavity of the second central conductor extension such that a capacitive element is created between the first and second central conductor extensions by a gap between the first central conductor extension and the second central conductor extension.