IP Library Granted Patent US 8,496,495
Granted Patent B2
US 8,496,495 · App. 12/800,899 · Granted Jul 30, 2013

Coaxial connector with coupling spring

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Quick Facts
Patent No.
US 8,496,495
App. No.
12/800,899
Granted
Jul 30, 2013
Kind
B2
Abstract

The device includes an inner conductor, a dielectric material, an outer conductor, a coupling spring, and a sliding sleeve. The dielectric material surrounds the inner conductor. The outer conductor surrounds the dielectric material. The sliding sleeve is slidably attached to the outer conductor. The coupling spring is attached to the outer conductor. The coupling spring includes a plurality of beam tines. Each beam tine includes a lever tine. An adjacent pair of beam tines is separated by a slot where the slot has a root. A first distance is defined from the root to an edge of the beam tine. A second length is defined from the root to a distal end of the lever tine. The first length is greater than the second length.

Claims (17)

1. An electrical connector device comprising:

a tubular coupling spring having a plurality of beam tines, and wherein each beam tine includes an aperture and a lever tine, a portion of the lever tine existing and extending inwardly from the aperture, and wherein an adjacent pair of beam tines is separated by a slot where the slot includes a root, and wherein a first length is defined from the root to an end of the coupling spring nearest the beam tine, a second length is defined from the root to a distal end of the lever tine, and wherein the first length is greater than the second length, and wherein the distal end of the lever tine is more near an axis of symmetry of the coupling spring than is the end of the coupling spring; and

a sliding sleeve having an extending inward edge associated with the coupling spring, where the sliding sleeve can slide relative to the coupling spring.

2. The electrical connector device according to claim 1 wherein the extending inward edge of the sliding sleeve is more near the axis of symmetry of the coupling spring than is the end of the coupling spring nearest the beam tine.

3. The electrical connector device according to claim 2 wherein, when the sliding sleeve is slid towards the coupling sleeve, the extending inward edge of the sliding sleeve engages a location adjacent to the end of the coupling spring, and wherein, when the sliding sleeve is still further slid toward the coupling spring, the extending inward edge of the sliding sleeve engages the beam tines of the coupling spring so as to deflect the beam tines in a direction away from the axis of symmetry of the coupling spring.

4. The electrical connector device according to claim 3 wherein the coupling spring is made of beryllium copper.

5. An electrical connector device comprising:

an inner conductor;

a dielectric material surrounding the inner conductor;

an outer conductor surrounding the dielectric material;

a tubular coupling spring attached to the outer conductor, the coupling spring having a plurality of beam tines, and wherein each beam tine includes an aperture and a lever tine, a portion of the lever tine existing and extending inwardly from the aperture, and wherein an adjacent pair of beam tines is separated by a slot where the slot includes a root, and wherein a first length is defined from the root to an end of the coupling spring nearest the beam tine, a second length is defined from the root to a distal end of the lever tine, and wherein the first length is greater than the second length, and wherein the distal end of the lever tine is more near an axis of symmetry of the coupling spring than is the end of the coupling spring; and

a sliding sleeve slidably attached to the outer conductor, the sliding sleeve includes an extending inward edge associated with the coupling spring.

6. The electrical connector device according to claim 5 wherein the outer conductor includes a front outer housing and a rear outer housing.

7. The electrical connector device according to claim 6 wherein the coupling spring is attached to the outer conductor by a press fit between the front outer housing and the rear outer housing.

8. The electrical connector device according to claim 7 wherein the sliding sleeve is attached to the outer conductor by being slidably attached to the rear outer housing of the outer conductor.

9. The electrical connector device according to claim 8 wherein the coupling spring is made of beryllium copper.

10. The electrical connector device according to claim 9 wherein the extending inward edge of the sliding sleeve is more near the axis of symmetry of the coupling spring than is the end of the coupling spring nearest the beam tine.

Assignments (3)
SECURITY INTEREST Recorded Feb 1, 2022
From: CINCH CONNECTIVITY SOLUTIONS INC. (F/K/A EMERSON NETWORK POWER CONNECTIVITY SOLUTIONS, INC.
To: KEYBANK NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 058849/0411 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Aug 4, 2014
From: EMERSON NETWORK POWER CONNECTIVITY SOLUTIONS, INC.
To: KEYBANK NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 033464/0426 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2010
From: KARI, THOMAS
To: EMERSON NETWORK POWER CONNECTIVITY SOLUTIONS, INC.
Reel/Frame 024491/0004 →