IP Library Granted Patent US 10,409,010
Granted Patent B2
US 10,409,010 · App. 15/846,595 · Granted Sep 10, 2019

Connectors for fiber optic cables

Inventors: Daniel Edward Hrncir (Arden, NC); Robert Judson Burns (Hendersonville, NC); David Aaron Metcalf (Black Mountain, NC)
Assignee: EATON CORPORATION
G02B6/3897G02B6/38G02B6/381G02B6/3881G02B6/423
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Quick Facts
Patent No.
US 10,409,010
App. No.
15/846,595
Granted
Sep 10, 2019
Kind
B2
Abstract

An apparatus includes first and second components. A track supports one of the components for movement toward the other of the components. A first connector is mounted on the first component. The first connector retains an end portion of a first fiber optic cable, and has a first alignment portion. A second connector retains an end portion of a second fiber optic cable, and has a second alignment portion. The second alignment portion guides the second fiber optic cable radially into coaxial alignment with the first fiber optic cable upon movement of the first alignment portion against the second alignment portion. A floating mount device supports the second connector on the second component for guided movement radially relative to the second component upon movement of the first alignment portion against the second alignment portion.

Claims (33)

1. An apparatus comprising: first and second components;

a track supporting one of the components for movement toward the other of the components;

a first connector mounted on the first component, the first connector being configured to retain an end portion of a first fiber optic cable and having a first alignment portion;

a second connector configured to retain an end portion of a second fiber optic cable, the second connector having a second alignment portion configured to guide the second fiber optic cable radially into coaxial alignment with the first fiber optic cable upon movement of the first alignment portion against the second alignment portion; and

a floating mount device supporting the second connector on the second component for guided movement radially relative to the second component upon movement of the first alignment portion against the second alignment portion.

2. An apparatus as defined in claim 1 wherein the floating mount device includes a shaft that projects through the second connector.

3. An apparatus as defined in claim 2 wherein the shaft projects into an aperture in the second connector, and the aperture is oversized relative to the shaft to provide clearance through which the second connector is movable radially relative to the shaft.

4. An apparatus as defined in claim 3 wherein the shaft is fixed to the second component.

5. An apparatus as defined in claim 2 wherein the shaft is mounted on the second component for movement radially relative to the second component, and is fixed to the second connector.

6. An apparatus as defined in claim 1 wherein the first connector is fixed to the first component.

7. An apparatus as defined in claim 1 wherein the second component includes a frame, a spring, and a bracket supported on the frame for movement against a bias of the spring, and the second connector is mounted on the bracket for movement with the bracket relative to the frame.

8. An apparatus as defined in claim 1 wherein the first and second components are switchgear components.

9. An apparatus as defined in claim 8 wherein the second component defines a cell, and the track supports the first component for movement into and out of the cell.

10. An apparatus comprising: first and second components;

a track supporting one of the components for movement toward the other of the components;

a first connector mounted on the first component, the first connector being configured to retain an end portion of a first fiber optic cable and having a first alignment portion; and

a second connector configured to retain an end portion of a second fiber optic cable, the second connector having a second alignment portion configured to guide the second fiber optic cable radially into coaxial alignment with the first fiber optic cable upon movement of the first alignment portion against the second alignment portion;

wherein the second component includes a frame, a spring, and a bracket supported on the frame for movement against a bias of the spring, and the second connector is mounted on the bracket for movement with the bracket relative to the frame.

11. An apparatus as defined in claim 10 further comprising a floating mount device supporting the second connector on the bracket for guided movement radially relative to the second component upon movement of the first alignment portion against the second alignment portion.

12. An apparatus as defined in claim 11 wherein the floating mount device includes a shaft that projects through the second connector.

13. An apparatus as defined in claim 12 wherein the shaft projects into an aperture in the second connector, and the aperture is oversized relative to the shaft to provide clearance through which the second connector is movable radially relative to the shaft.

14. An apparatus as defined in claim 13 wherein the shaft is fixed to the second component.

15. An apparatus as defined in claim 12 wherein the shaft is mounted on the second component for movement radially relative to the component, and is fixed to the second connector.

16. An apparatus as defined in claim 10 wherein the first connector is fixed to the first component.

17. An apparatus as defined in claim 10 wherein the second component includes a frame, a spring, and a bracket supported on the frame for movement against a bias of the spring, and the second connector is mounted on the bracket for movement with the bracket relative to the frame.

18. An apparatus as defined in claim 10 wherein the first and second components are switchgear components.

19. An apparatus comprising:

first and second switchgear components including a cell and draw out device; a track supporting the draw out device for movement into and out of the cell;

a first connector mounted on the first switchgear component, the first connector being configured to retain an end portion of a first fiber optic cable and having a first alignment portion;

a second connector configured to retain an end portion of a second fiber optic cable, the second connector having a second alignment portion configured to guide the second fiber optic cable radially into coaxial alignment with the first fiber optic cable upon movement of the first alignment portion against the second alignment portion; and

a floating mount device supporting the second connector on the second switchgear component for guided movement radially relative to the second switchgear component upon movement of the first alignment portion against the second alignment portion;

wherein the second switchgear component includes a frame, a spring, and a bracket supported on the frame for movement against a bias of the spring, and the second connector is mounted on the bracket for movement with the bracket relative to the frame.

20. An apparatus as defined in claim 19 wherein the first connector is fixed to the first switchgear component.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2019
From: EATON CORPORATION
To: EATON INTELLIGENT POWER LIMITED
Reel/Frame 048855/0626 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2017
From: HRNCIR, DANIEL EDWARD; BURNS, ROBERT JUDSON; METCALF, DAVID AARON
To: EATON CORPORATION
Reel/Frame 044432/0529 →
Continuity (2)
Continuation In Part 15403562 · Jan 11, 2017
Related Publication 20180196206A1 · Jul 12, 2018