IP Library › Granted Patent US 10,495,823
Granted Patent B2
US 10,495,823 · App. 15/800,883 · Granted Dec 3, 2019

Reversible polarity MPO fiber optic connector

Inventors: Paul Michael Good (New Holland, PA); William E. Ayres, III (Center Valley, PA); Greg Heffner (Ephrata, PA)
Assignee: US Conec Ltd.
G02B6/3831G02B6/3851G02B6/3883G02B6/3885G02B6/3882
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Quick Facts
Patent No.
US 10,495,823
App. No.
15/800,883
Filed
Nov 1, 2017
Granted
Dec 3, 2019
Kind
B2
Art Unit
2874
USPC
385/71
Abstract

A multi-fiber, fiber optic connector is provided having a housing having a first end for receiving a multi-fiber fiber optic cable and a second end having openings for the fibers from the cable. First and second keys for setting the polarity of the fibers within the connector located on opposing sides of the connector. The connector has either one of guide pins or guide pin receiving holes for guiding the connection with a second connector. The keys are movable between a first active position and a second retracted position, such that when one of the keys is in the first active position, the fibers are presented within the connector in a first polarity and when the second key is in the first active position, the fibers are presented within the connector in a second polarity reversed from the first polarity.

Claims (24)

1. A fiber optic connector with multiple optical fibers therein comprising:

an outer housing having a passageway extending between a first end and a second end;

first and second key slots and two separate first and second movable key structures within at least a portion of the passageway in the outer housing, where the first and second key slots each maintain a respective first and second movable key structure simultaneously, the first and second key slots and respective first and second movable key structures retained therein and being located on opposing sides of the fiber optic connector,

the first and second movable key structures being movable within the respective first and second key slots, but otherwise retained within and movable without opening the fiber optic connector, the first and second movable key structures being provided within the fiber optic connector are configured to set the polarity of the multiple optical fibers within the fiber optic connector; and

either one of guide pins or guide pin receiving holes for guiding a connection with a second fiber optic connector,

wherein the first and second key structures are movable within their respective first and second key slots between a forward active position where the movable key structure is moved out to an exposed portion of its respective key slot towards the second end of the fiber optic connector and a retracted position where the movable key structure is moved out of the exposed portion of its respective key slot into and towards the first end of the outer housing

such that when the first key structure is in the forward active position, the multiple optical fibers presented within the fiber optic connector are in a first polarity, and when the second key structure is in the forward active position, the multiple optical fibers are in a second polarity reversed from the first polarity.

2. The fiber optic connector according to claim 1 , wherein the first and second moveable key structures are structures that are movable between the forward active position and the retracted position by sliding within said first and second key slots respectively.

3. The fiber optic connector according to claim 2 , wherein when either one of the first and second movable key structures is in the forward active position within its key slot, and the other of the first or second movable key structures located on the opposite side of the connector is in the retracted position within its key slot, the first or second key structure in the retracted position is slid within inside at least a portion of the passageway in the outer housing.

4. The fiber optic connector according to claim 1 , wherein the first and second movable key structures are accessible through an opening in at least a portion of the outer housing such that said first and second movable keys can be moved between the forward active position and the retracted position without opening the fiber optic connector.

5. The fiber optic connector according to claim 1 , wherein the fiber optic connector has guide pins and the guide pins are configured to be movable to form guide pin openings.

6. The fiber optic connector according to claim 5 , wherein the guide pins are movable to form said guide pin openings via a tab that extends through an opening within at least a portion of the outer housing so that the guide pins are moved without opening the fiber optic connector.

7. The fiber optic connector according to claim 1 , wherein the forward active position is forward of the second end of the outer housing and the retracted position is between the first and second ends of the outer housing.

8. A fiber optic connector with multiple optical fibers therein comprising:

an outer housing having a passageway extending between a first end and a second end;

first and second key slots and two separate first and second movable key structures within at least a portion of the passageway in the outer housing, where the first and second key slots each maintain a respective first and second movable key structure simultaneously, the first and second key slots and respective first and second movable key structures retained therein and being located on opposing sides of the fiber optic connector; and

the first and second movable key structures being movable within the respective first and second key slots, but otherwise retained within and movable without opening the fiber optic connector, the first and second movable key structures being provided within the fiber optic connector,

wherein the first and second key structures are movable within their respective first and second key slots between a forward active position where the movable key structure is moved into an exposed portion of its respective key slot and a retracted position where the movable key structure is moved out of the exposed portion of its respective key slot and farther into the outer housing,

such that when the first key structure is in the forward active position, the multiple optical fibers that are within the fiber optic connector are in a first polarity, and when the second key structure is in the forward active position, the multiple optical fibers are in a second polarity reversed from the first polarity.

9. The fiber optic connector as claimed in claim 8 , further comprising either one of guide pins or guide pin receiving holes for guiding a connection with a second fiber optic connector.

10. A method for changing a polarity of a fiber optic connector having two polarity key structures on opposite sides of the fiber optic connector inside respective first and second key slots, a first key structure of the two polarity key structures being in a first position indicating a first polarity of the fiber optic connector and the second key structure of the two polarity key structures simultaneously being in a second position different from the first position, each of the first and the second key structures being movable into respective first and second positions within the respective first and second key slots, the method comprising:

moving the first key structure in the first position to the second position within the first slot; and

moving the second key structure in the second position to the first position within the second slot thereby changing the polarity of the fiber optic connector to a second polarity,

wherein said moving the first key structure and the second key structure is carried out without removing the first key structure and the second key structure from the fiber optic connector.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2019
From: NEXANS
To: US CONEC, LTD.
Reel/Frame 047918/0144 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2018
From: GOOD, PAUL MICHAEL; AYRES III, WILLIAM E.; HEFFNER, GREG
To: NEXANS
Reel/Frame 047764/0299 →
Continuity (2)
Continuation 14319132 · Jun 30, 2014
Related Publication 20180128987A1 · May 10, 2018
Cited By (8)
US 12,222,559 US 12,228,774 US 12,235,493 US 12,248,191 US 12,259,585 US 12,313,889 US 12,399,329 US 12,449,612