Reversible polarity MPO fiber optic connector
11662529 · 2023-05-30
Assignee
Inventors
- Paul Michael Good (New Holland, PA, US)
- William E. Ayres, III (Center Valley, PA, US)
- Greg Heffner (Ephrata, PA, US)
Cpc classification
G02B6/3831
PHYSICS
G02B6/3883
PHYSICS
G02B6/3882
PHYSICS
G02B6/3885
PHYSICS
International classification
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
1. A polarity changeable fiber optic assembly, comprising: at least two optical fiber segments; and at least two fiber optic connectors connecting the at least two optical fiber segments via an adapter therebetween, each fiber optic connector of the at least two fiber optic connectors including a first polarity key on one side of a housing of the fiber optic connector and a second polarity key on an opposite side of the housing, each of the two polarity keys movable within a passageway between a first active position and a second retracted position without disassembly of the at least two fiber optic connectors, wherein the at least two optical fiber segments are presented in a first polarity configuration when the first polarity key is in the first active position and the second polarity key is in the second retracted position, and wherein the first polarity configuration is changed to a second polarity configuration when the first polarity key is moved to the second retracted position and the second polarity key is moved to the first active position without disassembly of the at least two fiber optic connectors.
2. The polarity changeable fiber optic assembly of claim 1, wherein the first polarity configuration is a Method A configuration and the second polarity configuration is a Method B configuration.
3. The polarity changeable fiber optic assembly of claim 2, wherein the at least two fiber optic connectors are removable from the adapter when the first polarity configuration is to be changed to the second polarity configuration.
4. The polarity changeable fiber optic assembly of claim 1, wherein each of the at least two fiber optic connectors comprises a locking arrangement toward a front end of the housing such that the first polarity key and the second polarity key is operable without disassembly of each of the at least two fiber optic connector.
5. The polarity changeable fiber optic assembly of claim 1, wherein each of the first polarity key and the second polarity key is adjustable via a respective tab engaged with each ones of the first polarity key and the second polarity key, the tab accessible via an opening defined in the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention can be best understood through the following description and accompanying drawings, wherein:
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DETAILED DESCRIPTION
(12) In one embodiment of the present arrangement as shown in
(13) As a basic explanation the “key” sets the order for which the fibers in connector 10 are presented to an additional opposing connector 10. A key that is ‘active’ is one that is in position to engage with an adapter. If a key is said to be reversed then it means that the key on the opposite side of the connector (that being the one that was not previously ‘active’ is now ‘active’. If connectors of both regular and reversed active keys are compared, it would be found that the fibers in connector 10 are presented to an opposing connector in opposite order. The setting of the key 18 is what sets the polarity (arrangement of fibers from cable 12) for connector 10 from the perspective of an opposing connector.
(14) Thus, as shown in
(15) Applicants note that there are two keys 18A and 18B on connector 10 so that a fiber optic segment having two connectors 10 on either end may exhibit both A & B polarities options. When a user wants a fiber optic segment to be polarity A, the user simply sets the keys 18A on the tops of connectors 10 on both ends of the segment to the same setting, i.e. both keys 18A forward and active with both keys 18B retracted within housing 14) so that fibers exhibit the same presentation order on both sides of the fiber optic segment. To reverse to method B polarity, one of the keys such as a key 18A on one of the two connectors 10 is retracted into housing 14 and the other key 18B on that same connectors is pushed forward to active. This allows for the polarity of a single assembly or cable to be changed from A to B or B to A.
(16) When keys 18A or 18B are retracted, nothing physically changes with fibers 12 in connector 10. Rather, the only change with connector 10 is a flipping of the order fibers 12 are presented to opposing connectors because the active or forward key 18A/18B is switched from one side of connector 10 to the opposite side.
(17) It is noted that nothing is moving within housing 14. Fiber position number is always referenced by holding the key up and looking from left to right. By having two keys 18A/18B on opposing sides of connector 10 with the ability to activate one key or the other, this changes the definition of “up” for that connector. In other words with two movable keys 18A and 18B on connector 10 and the ability to easily change which key is active (used to determine which way is “up”) a user can reverse the order of the fibers presentation on a connector 10 on one end of an assembly only, switching the segment from a Method A to a Method B or vice-versa.
(18) Moreover, in the cut away example
(19) As shown in
(20) One exemplary arrangement for demonstrating the usefulness of connectors 10 is shown in
(21) Turning now to
(22) However using the present arrangement, assuming the connector for fiber segment three exiting location #2 was a connector 10 according to the present arrangement, connector 10 could simply be removed from the adapter 20 at location #2 have the appropriate key 18 retracted/moved forward, and reinserted into the adapter as shown in
(23) In another embodiment of the present invention as shown in the following
(24) As shown in
(25) In
(26) As an example of how the embodiment with retractable pins 50 supplements the usefulness of the reversible polarity of connector 10 using keys 18, Applicants note that standard equipment typically has pins in it, but some of the components in given channel (e.g. a 4 connector channel of patch cord, trunk, patch cord, trunk, patch cord etc. . . . ) will have pins and the rest will not since it is always required to mate a male to a female. So if a user were to add or subtract fiber segments/elements from the channel, even if the polarity can be changed, they may or may not end up with connectors with pin arrangements that can be mated together. By adding switchable guide pins this possible drawback can be overcome.
(27) While only certain features of the invention have been illustrated and described herein, many modifications, substitutions, changes or equivalents will now occur to those skilled in the art. It is therefore, to be understood that this application is intended to cover all such modifications and changes that fall within the true spirit of the invention.