IP Library Granted Patent US 11,874,505
Granted Patent B2
US 11,874,505 · App. 17/181,653 · Granted Jan 16, 2024

Fiber optic connectors and associated adapters

Inventors: Guanpeng Hu (Shanghai, CN); Yim Wong (Kowloon, HK); Kazuyoshi Takano (Tokyo, JP)
Assignee: Senko Advanced Components, Inc.
G02B6/3825G02B6/3849G02B6/3874G02B6/3891
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Quick Facts
Patent No.
US 11,874,505
App. No.
17/181,653
Granted
Jan 16, 2024
Kind
B2
Abstract

A fiber optic connector having a ferrule that forms an optical connection with another fiber optic connector. An outer housing supports the ferrule and has a front end portion and a longitudinal centerline axis. The front end portion includes a front end face with a portion of the ferrule being forward of the front end face. The front end portion includes a protector that is shaped and arranged to protect the ferrule. The protector is arranged so that the fiber optic connector and another fiber optic connector of identical construction can, starting in the same orientation, be mated together by rotating said other fiber optic connector 180° about an axis perpendicular to the longitudinal centerline axis, aligning the longitudinal centerline axes and moving the fiber optic connectors along the longitudinal centerline axes until the fiber optic connectors are mated to form the optical connection.

Claims (36)

1. A fiber optic connector comprising:

a ferrule configured to form an optical connection with another fiber optic connector; and

an outer housing supporting the ferrule, the outer housing having a rear end portion, a front end portion and a longitudinal centerline axis extend between the rear end portion and the front end portion, the front end portion including a front end face, at least a portion of the ferrule being forward of the front end face, the front end portion including one or more protectors projecting forward of the front end face of the outer housing, the one or more protectors being shaped and arranged to protect the portion of the ferrule that is forward of the front end face of the outer housing,

the one or more protectors being configured so that the fiber optic connector and another fiber optic connector of identical construction can, starting in the same orientation, be mated together to form the optical connection by rotating said other fiber optic connector 180° about an axis perpendicular to the longitudinal centerline axis, aligning the longitudinal centerline axes of the fiber optic connectors after said rotating, and moving the fiber optic connectors along the longitudinal centerline axes after said aligning until the fiber optic connectors are mated to form the optical connection;

wherein the one or more protectors include a first protector and a second protector, the first protector being arranged asymmetrically with respect to the second protector about a plane including the longitudinal centerline axis of the outer housing that does not intersect either of the first or second protectors;

wherein the first protector is offset a first distance from the longitudinal centerline axis and the second protector is offset a second distance from the longitudinal centerline axis, the second distance being different than the first distance.

2. The fiber optic connector of claim 1 , wherein the first and second protectors are offset in an x-direction and a y-direction from each other.

3. The fiber optic connector of claim 1 , wherein the one or more protectors include a third protector and a fourth protector, the third and fourth protectors being offset in an x-direction and a y-direction from each other and being offset the same distance from the longitudinal centerline axis.

4. The fiber optic connector of claim 1 , wherein each of the one or more protectors comprises a wall.

5. The fiber optic connector of claim 1 , wherein the front end portion of the outer housing defines one or more protector pockets configured to receive one or more protectors of said other fiber optic connector.

6. The fiber optic connector of claim 5 , wherein each protector pocket is sized, shaped and arranged to receive one of the one or more protectors of said other fiber optic connector.

7. The fiber optic connector of claim 6 , wherein the one or more protector pockets are forward of the front end face.

8. The fiber optic connector of claim 6 , wherein the one or more protector pockets are rearward of the front end face.

9. The fiber optic connector of claim 6 , wherein each protector pocket comprises a recess.

10. The fiber optic connector of claim 1 , wherein the ferrule is one of an MPO ferrule, an SC ferrule, or a LC ferrule.

11. The fiber optic connector of claim 1 , further comprising a coupling element configured to secure the fiber optic connector to a fiber optic adapter.

12. The fiber optic connector of claim 11 , wherein the coupling element comprises a coupling nut.

13. The fiber optic connector of claim 12 , wherein the coupling nut is a bayonet style coupling nut.

14. The fiber optic connector of claim 1 , in combination with a fiber optic adapter, the fiber optic adapter having a first port configured to receive the fiber optic connector and a second port opposite the first port configured to receive another fiber optic connector of different construction, the first and second ports arranged such that the fiber optic connector and said fiber optic connector of different construction form an optical connection when coupled to the fiber optic adapter.

15. The fiber optic connector of claim 1 , in combination with a fiber optic adapter, the fiber optic adapter having a first port configured to receive the fiber optic connector and a second port opposite the first port configured to receive said fiber optic connector of identical construction, the first and second ports arranged such that the fiber optic connector and said fiber optic connector of identical construction form an optical connection when coupled to the fiber optic adapter.

16. The fiber optic connector of claim 15 , wherein the fiber optic adapter includes an alignment guide configured to engage the outer housing of the fiber optic connector to orient the outer housing relative to the fiber optic adapter.

17. The fiber optic connector of claim 15 , wherein the fiber optic connector further comprises a polarity key configured to be coupled to the outer housing at one of a first polarity position or a second polarity position, wherein the fiber optic connector is configured to be coupled to the fiber optic adapter in a first polarity orientation or a second polarity orientation, wherein the polarity key prevents the fiber optic connector from being coupled to the fiber optic adapter in the second polarity orientation when the polarity key is in the first polarity position and the polarity key prevents the fiber optic connector from being coupled to the fiber optic adapter in the first polarity orientation when the polarity key is in the second polarity position.

18. The fiber optic connector of claim 15 , wherein the fiber optic adapter defines one or more windows size, shaped and arranged to receive one or more of the one or more protectors of the fiber optic connector when the fiber optic connector is coupled to the fiber optic adapter.

19. A fiber optic connector comprising:

a ferrule configured to form an optical connection with another fiber optic connector; and

an outer housing supporting the ferrule, the outer housing having a rear end portion, a front end portion and a longitudinal centerline axis extend between the rear end portion and the front end portion, the front end portion including a front end face, at least a portion of the ferrule being forward of the front end face, the front end portion including one or more protectors projecting forward of the front end face of the outer housing, the one or more protectors being shaped and arranged to protect the portion of the ferrule that is forward of the front end face of the outer housing,

the one or more protectors being configured so that the fiber optic connector and another fiber optic connector of identical construction can, starting in the same orientation, be mated together to form the optical connection by rotating said other fiber optic connector 180° about an axis perpendicular to the longitudinal centerline axis, aligning the longitudinal centerline axes of the fiber optic connectors after said rotating, and moving the fiber optic connectors along the longitudinal centerline axes after said aligning until the fiber optic connectors are mated to form the optical connection;

wherein the one or more protectors include a first protector and a second protector, the first protecting being arranged asymmetrically with respect to the second protector about a plane including the longitudinal centerline axis of the outer housing that does not intersect either of the first or second protectors;

wherein the one or more protectors include a third protector and a fourth protector, the third and fourth protectors being offset in an x-direction and a y-direction from each other and being offset the same distance from the longitudinal centerline axis.

20. A fiber optic assembly comprising:

a fiber optic connector including:

a ferrule configured to form an optical connection with another fiber optic connector; and

an outer housing supporting the ferrule, the outer housing having a rear end portion, a front end portion and a longitudinal centerline axis extend between the rear end portion and the front end portion, the front end portion including a front end face, at least a portion of the ferrule being forward of the front end face, the front end portion including one or more protectors projecting forward of the front end face of the outer housing, the one or more protectors being shaped and arranged to protect the portion of the ferrule that is forward of the front end face of the outer housing,

the one or more protectors being configured so that the fiber optic connector and another fiber optic connector of identical construction can, starting in the same orientation, be mated together to form the optical connection by rotating said other fiber optic connector 180° about an axis perpendicular to the longitudinal centerline axis, aligning the longitudinal centerline axes of the fiber optic connectors after said rotating, and moving the fiber optic connectors along the longitudinal centerline axes after said aligning until the fiber optic connectors are mated to form the optical connection; and

a fiber optic adapter having a first port configured to receive the fiber optic connector and a second port opposite the first port configured to receive said fiber optic connector of identical construction, the first and second ports arranged such that the fiber optic connector and said fiber optic connector of identical construction form an optical connection when coupled to the fiber optic adapter;

wherein the fiber optic connector further comprises a polarity key configured to be coupled to the outer housing at one of a first polarity position or a second polarity position, wherein the fiber optic connector is configured to be coupled to the fiber optic adapter in a first polarity orientation or a second polarity orientation, wherein the polarity key prevents the fiber optic connector from being coupled to the fiber optic adapter in the second polarity orientation when the polarity key is in the first polarity position and the polarity key prevents the fiber optic connector from being coupled to the fiber optic adapter in the first polarity orientation when the polarity key is in the second polarity position.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2023
From: WONG, YIM; TAKANO, KAZUYOSHI
To: SENKO ADVANCED COMPONENTS, INC.
Reel/Frame 065941/0827 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2023
From: HU, GUANPENG
To: SENKO ADVANCED COMPONENTS, INC.
Reel/Frame 065432/0991 →
Continuity (3)
Provisional Application 63056508 · Jul 24, 2020
Provisional Application 62979867 · Feb 21, 2020
Related Publication 20210263226A1 · Aug 26, 2021
Cited By (2)
US 12,704,687 US 12,717,090