IP Library Granted Patent US 9,684,130
Granted Patent B2
US 9,684,130 · App. 14/115,459 · Granted Jun 20, 2017

Fiber optic connector with polarity change

Inventors: Anthony Veatch (Morris, CT); John A. Siemon (Woodbury, CT); Johnny Zheng (Jiangsu, CN); Alex Yao (Shanghai, CN); Scott Nagel (Trumbull, CT)
Assignee: THE SIEMON COMPANY
G02B6/2726G02B6/3831G02B6/3879G02B6/3825
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Quick Facts
Patent No.
US 9,684,130
App. No.
14/115,459
Filed
Mar 7, 2014
Granted
Jun 20, 2017
Kind
B2
Art Unit
2883
USPC
385/11
Abstract

A fiber optic connector includes a boot receiving an optical fiber; a connector body for receiving the optical fiber and terminating the optical fiber; and a latch coupled to the connector body, the latch for engaging an adapter for receiving the fiber optic connector, the latch repositionable relative to the connector body to enable polarity change of the fiber optic connector without changing a relative position of the connector body and the optical fiber.

Claims (74)

1. A fiber optic connector configured to mate with an adapter, the fiber optic connector comprising:

a boot configured to receive an optical fiber;

a connector body configured to receive the optical fiber and terminate the optical fiber;

a fiber holder configured to receive the connector body; and

a latch coupled to the connector body, the latch repositionable relative to the connector body to enable polarity change of the fiber optic connector without changing a relative position of the connector body and the optical fiber;

wherein the latch comprises a latch arm configured to engage the adapter;

wherein the boot is movable relative to the fiber holder;

wherein the boot and latch arm are coupled such that sliding of the boot relative to the fiber holder causes deflection of the latch arm.

2. The fiber optic connector of claim 1 wherein:

the latch arm extends towards the boot.

3. A fiber optic connector configured to mate with an adapter, the fiber optic connector comprising:

a boot configured to receive an optical fiber;

a connector body configured to receive the optical fiber and terminate the optical fiber; and

a latch coupled to the connector body, the latch repositionable relative to the connector body to enable polarity change of the fiber optic connector without changing a relative position of the connector body and the optical fiber;

wherein the latch comprises a latch arm configured to engage the adapter;

wherein the latch includes a collar configured to engage the connector body, the collar rotatable relative to the connector body.

4. The fiber optic connector of claim 3 wherein:

the connector body includes a cylindrical portion and the collar includes a cylindrical opening, the cylindrical opening positioned about the cylindrical portion.

5. The fiber optic connector of claim 4 wherein:

the cylindrical portion includes a nub and the cylindrical opening includes an opening configured to receive the nub to fix the orientation of the collar to the connector body.

6. A fiber optic connector configured to mate with an adapter, the fiber optic connector comprising:

a boot configured to receive an optical fiber;

a connector body configured to receive the optical fiber and terminate the optical fiber; and

a latch coupled to the connector body, the latch repositionable relative to the connector body to enable polarity change of the fiber optic connector without changing a relative position of the connector body and the optical fiber;

wherein the latch comprises a latch arm configured to engage the adapter;

the latch arm includes an opening at a distal end of the latch arm; and

the boot includes a hook positioned in the opening.

7. The fiber optic connector of claim 6 wherein:

the opening in the latch arm includes a cam surface;

the hook traveling over the cam surface to deflect the latch towards the connector body.

8. The fiber optic connector of claim 6 wherein:

the hook points towards the connector body.

9. The fiber optic connector of claim 1 wherein:

the latch arm extends away from the boot towards a mating end of the connector body.

10. The fiber optic connector of claim 9 further comprising:

a second connector body for receiving a second optical fiber and terminating the second optical fiber;

wherein the latch includes two arms, each arm positioned proximate to one of the connector body and the second connector body.

11. The fiber optic connector of claim 10 further comprising:

a ridge positioned between the two arms;

the boot including a nub that coacts with the ridge to deflect the arms towards the connector body and second connector body.

12. The fiber optic connector of claim 10 wherein:

the nub is mounted on a cover secured to the boot.

13. A fiber optic connector comprising:

a boot configured to receive an optical fiber;

a connector body configured to receive the optical fiber and terminate the optical fiber; and

a latch coupled to the connector body, the latch configured to engage an adapter for receiving the fiber optic connector, the latch positioned along a side of the connector body, the latch repositionable relative to the connector body to enable polarity change of the fiber optic connector without changing a relative position of the connector body and the optical fiber;

wherein the boot includes a window, a polarity indicator visible through the window to indicate a polarity of the fiber optic connector.

14. The fiber optic connector of claim 1 wherein:

the fiber holder is positioned at least partially in the boot.

15. The fiber optic connector of claim 14 wherein:

the boot includes a window;

a polarity indicator on the fiber holder being visible through the window to indicate a polarity of the fiber optic connector.

16. The fiber optic connector of claim 1 further comprising:

a polarity icon including polarity icon indicia, the polarity icon indicating a polarity of the fiber optic connector by a location of the polarity icon indicia.

17. The fiber optic connector of claim 16 wherein:

the polarity icon includes polarity icon indicia on both sides of the polarity icon.

18. The fiber optic connector of claim 16 wherein:

a portion of the boot is transparent, the polarity icon being viewable through the transparent portion.

19. The fiber optic connector of claim 18 wherein:

the transparent portion is a cover of the boot.

20. The fiber optic connector of claim 14 wherein:

the fiber holder includes at least one tab contacting the connector body to prevent rotation of the connector body.

21. The fiber optic connector of claim 14 wherein:

the fiber holder includes a channel configured to receive the connector body, the channel and the connector body shaped to prevent rotation of the connector.

22. A fiber optic connector configured to mate with an adapter, the fiber optic connector comprising:

a boot configured to receive an optical fiber;

a connector body having a ferrule configured to receive the optical fiber;

a fiber holder configured to receive the connector body; and

a latch coupled to the connector body, the latch repositionable relative to the ferrule to enable polarity change of the fiber optic connector without changing a position of the ferrule and the optical fiber;

wherein the latch comprises a latch arm configured to engage the adapter;

wherein the boot is movable relative to the fiber holder;

wherein the boot and latch arm are coupled such that sliding of the boot relative to the fiber holder causes deflection of the latch arm.

23. The fiber optic connector of claim 1 wherein the latch is repositionable relative to the connector body without rotation of the optical fiber.

24. The fiber optic connector of claim 22 wherein the latch is repositionable relative to the ferrule without rotation of the optical fiber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2014
From: VEATCH, ANTHONY; SIEMON, JOHN A.; ZHENG, JOHNNY; YAO, ALEX; NAGEL, SCOTT
To: THE SIEMON COMPANY
Reel/Frame 032180/0969 →
Continuity (3)
Provisional Application 61482265 · May 4, 2011
Provisional Application 61567726 · Dec 7, 2011
Related Publication 20140169727A1 · Jun 19, 2014