IP Library Granted Patent US 11,953,739
Granted Patent B2
US 11,953,739 · App. 17/046,956 · Granted Apr 9, 2024

Alignment structure for a fiber optic ferrule and mechanical-optical interface

Inventors: Daniel D. Kurtz (Huntersville, NC); Darrell R. Childers (Hickory, NC); Brent D. Henley (Newton, NC)
Assignee: US Conec Ltd.
G02B6/423G02B6/3825G02B6/3839G02B6/3853G02B6/3881G02B6/4292
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Quick Facts
Patent No.
US 11,953,739
App. No.
17/046,956
Granted
Apr 9, 2024
Kind
B2
Abstract

A new fiber optic ferrule has an alignment structure on a surface through which light passes. The alignment structure is preferably in the shape of a dog bone, allowing the alignment structure to align the fiber optic ferrule in a receptacle while reducing the influence of temperature on the alignment.

Claims (31)

1. A fiber optic ferrule comprising:

a main body having a plurality of optical fiber receiving members therein, each of the plurality of optical fiber receiving members configured to receive an optical fiber therein;

a surface on the main body in optical alignment with the plurality of optical fiber receiving members; and

an alignment structure extending from the surface outward away from the main body, the alignment structure having a first portion extending between two second portions along the surface, the second portions being on opposite sides of the first portion, wherein the second portions are generally round and the first portion is generally rectangular.

2. The fiber optic ferrule according to claim 1 , further comprising a light transmission window through which light passes, the light transmission window being disposed within the first portion of the alignment structure.

3. The fiber optic ferrule according to claim 1 , further comprising a plurality of lenses, each of the plurality of lenses being in optical alignment with one of the plurality of optical fiber receiving members.

4. The fiber optic ferrule according to claim 3 , wherein each of the plurality of lenses is disposed in the alignment structure.

5. The fiber optic ferrule according to claim 1 , wherein the surface lies in a plane that is generally parallel to a longitudinal axis through the plurality of optical fiber receiving members.

6. The fiber optic ferrule according to claim 1 , wherein the surface lies in a plane that is generally perpendicular to a longitudinal axis through the plurality of optical fiber receiving members.

7. The fiber optic ferrule according to claim 1 , wherein the alignment structure is integrally formed with the main body of the fiber optic ferrule.

8. The fiber optic ferrule according to claim 1 , wherein the alignment structure is not formed integrally with the main body of the fiber optic ferrule.

9. The fiber optic ferrule according to claim 3 , wherein the alignment structure mates with an optical component to position the plurality of lenses with respect to the optical component.

10. The fiber optic ferrule according to claim 9 , wherein the optical component has a plurality of lenses disposed therein, the alignment structure of fiber optic ferrule aligning the plurality of lenses in the fiber optic ferrule to the plurality of lenses in the optical component.

11. The fiber optic ferrule according to claim 1 , wherein the second portions have a diameter and the first portion has a width, the diameter of the second portions being at least 30% larger than the width.

12. A combination of a fiber optic ferrule and an optical component comprising:

a fiber optic ferrule comprising:

a main body having a plurality of optical fiber receiving members therein, each of the plurality of optical fiber receiving members configured to receive an optical fiber therein;

a surface on the main body in optical alignment with the plurality of optical fiber receiving members; and

a first alignment structure having a first portion extending between two second portions, the second portions being on opposite sides of the first portion and the first portion has at least one straight edge and the second portion has at least one round edge; and

an optical component having an engagement surface to engage a portion of the surface of the main body and a second alignment structure having a center portion extending between two outside portions, the outside portions being on opposite sides of the center portion,

wherein one of the first and second alignment structures extend outward and the other of the first and second alignment structures extend inwardly.

13. The fiber optic ferrule according to claim 12 , wherein the second portions are generally round and the first portion is generally rectangular.

14. The combination of a fiber optic ferrule and an optical component according to claim 12 , wherein the second alignment structure is an opening in the optical component and the first alignment structure extends from the surface of the fiber optic ferrule, the center portion is a rectangular center portion to receive the first portion therein and the two outside portion are circular and receive therein a respective one of the two second portions.

15. The combination of a fiber optic ferrule and an optical component according to claim 14 , wherein there is a first gap between the center portion and the first portion having a first width and a second gap between the two outside portions and the second portions having a second width.

16. The combination of a fiber optic ferrule and an optical component according to claim 15 , wherein the first width of the first gap is larger than the second width of the second gap.

17. The combination of a fiber optic ferrule and an optical component according to claim 16 , wherein the first width of the first gap is twice as large as the second gap.

18. The combination of a fiber optic ferrule and an optical component according to claim 12 , wherein the first alignment structure is a recess in the surface of the fiber optic ferrule and the second alignment structure extends from the engagement surface, the first portion is a rectangular center portion to receive the center portion therein and the two second portions are circular and receive a respective one of the two second portions.

19. A fiber optic ferrule comprising:

a main body having a plurality of optical fiber receiving members therein, each of the plurality of optical fiber receiving members configured to receive an optical fiber therein;

a surface on the main body in optical alignment with the plurality of optical fiber receiving members; and

an alignment structure extending from the surface inward into the main body, the alignment structure having a first portion extending along the surface between two second portions, the second portions being on opposite sides of the first portion, wherein the alignment structure is configured to fit with a corresponding mating alignment structure of an optical transceiver component, the corresponding mating alignment structure having a similar configuration as the alignment structure of the fiber-optic ferrule.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2021
From: CHILDERS, DARRELL R.; KURTZ, DANIEL D.; HENLEY, BRENT D.
To: US CONEC, LTD.
Reel/Frame 057719/0964 →
Continuity (2)
Provisional Application 62656894 · Apr 12, 2018
Related Publication 20210149127A1 · May 20, 2021
Cited By (1)
US 12,326,601