EP4073565A1 - Cover for a fiber optic ferrule and ferrule push - Google Patents
Cover for a fiber optic ferrule and ferrule pushInfo
- Publication number
- EP4073565A1 EP4073565A1 EP20842363.2A EP20842363A EP4073565A1 EP 4073565 A1 EP4073565 A1 EP 4073565A1 EP 20842363 A EP20842363 A EP 20842363A EP 4073565 A1 EP4073565 A1 EP 4073565A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- ferrule
- fiber optic
- push
- cover
- sleeve
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 239000000835 fiber Substances 0.000 title claims abstract description 128
- 239000013307 optical fiber Substances 0.000 claims description 22
- 239000000428 dust Substances 0.000 description 2
- 238000007526 fusion splicing Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 125000006850 spacer group Chemical group 0.000 description 1
- 238000011179 visual inspection Methods 0.000 description 1
Classifications
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/24—Coupling light guides
- G02B6/36—Mechanical coupling means
- G02B6/38—Mechanical coupling means having fibre to fibre mating means
- G02B6/3807—Dismountable connectors, i.e. comprising plugs
- G02B6/3833—Details of mounting fibres in ferrules; Assembly methods; Manufacture
- G02B6/3847—Details of mounting fibres in ferrules; Assembly methods; Manufacture with means preventing fibre end damage, e.g. recessed fibre surfaces
- G02B6/3849—Details of mounting fibres in ferrules; Assembly methods; Manufacture with means preventing fibre end damage, e.g. recessed fibre surfaces using mechanical protective elements, e.g. caps, hoods, sealing membranes
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/24—Coupling light guides
- G02B6/36—Mechanical coupling means
- G02B6/38—Mechanical coupling means having fibre to fibre mating means
- G02B6/3807—Dismountable connectors, i.e. comprising plugs
- G02B6/3869—Mounting ferrules to connector body, i.e. plugs
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/24—Coupling light guides
- G02B6/36—Mechanical coupling means
- G02B6/38—Mechanical coupling means having fibre to fibre mating means
- G02B6/3807—Dismountable connectors, i.e. comprising plugs
- G02B6/389—Dismountable connectors, i.e. comprising plugs characterised by the method of fastening connecting plugs and sockets, e.g. screw- or nut-lock, snap-in, bayonet type
- G02B6/3893—Push-pull type, e.g. snap-in, push-on
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/24—Coupling light guides
- G02B6/36—Mechanical coupling means
- G02B6/38—Mechanical coupling means having fibre to fibre mating means
- G02B6/3807—Dismountable connectors, i.e. comprising plugs
- G02B6/3897—Connectors fixed to housings, casing, frames or circuit boards
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/46—Processes or apparatus adapted for installing or repairing optical fibres or optical cables
- G02B6/50—Underground or underwater installation; Installation through tubing, conduits or ducts
- G02B6/54—Underground or underwater installation; Installation through tubing, conduits or ducts using mechanical means, e.g. pulling or pushing devices
- G02B6/545—Pulling eyes
Definitions
- a solution to avoiding the fusion-splicing includes using pre-terminated MT ferrules in a pulling grip (or “pulling sock”) attached to a jacketed cable between the two datacenter buildings.
- a pulling grip or “pulling sock” attached to a jacketed cable between the two datacenter buildings.
- a pulling grip is known in the art.
- the number of fiber optic ferrules inside the pulling grip will vary.
- one pulling grip may accommodate a total of 3456 fibers in 288 fiber optic ferrules (i.e., each ferrule having 12 fibers). These fiber optic ferrules are then pulled out of the pulling grip at a designated spot inside the second data center building.
- an MT-MPO adapter such as the one shown in U.S.
- Patent No. 7,296,935 owned by the Applicant, may be used to connect an MT ferrule directly to an MPO style connector.
- One concern with this approach is that a technician/user at the data center will need to handle a bare, terminated fiber optic ferrule. This increases the chances of damage to the ferrule, especially since there are hundreds of such fiber optic ferrules that need to be inserted into MT-MPO adapters.
- the pre-terminated fiber optic ferrule inside the pulling grip may still be prone to debris or dust as many such parts coexist in a limited space. Debris or dust may then scratch the fibers on the end face and/or cause optical signal attenuation. Further, the pin clamp, the ferrule push and the ferrule may come apart during handling inside the pulling grip. This separation may damage the fiber optic ferrule, the ferrule push, or the optical fibers. [0005] Thus, there is a need for a cover that keeps the faces of the pre-terminated fiber optic ferrule protected and covered within the pulling grip.
- the present invention is directed to a cover for a fiber optic ferrule and ferrule push that includes a sleeve extending lengthwise between opposed front and rear ends, said sleeve defining a lengthwise-extending opening that opens through the rear end for receiving at least a portion of the fiber optic fiber optic ferrule and the ferrule push, the sleeve having a top side and an opposing bottom side, and two side walls extending between the top side and the bottom side and along at least a portion of the sleeve, a cutout in each of the two side walls, the cutout extending from the rear end towards the front end, and a receiver in the top side engaged with the ferrule push.
- the receiver is engaged with a key of the ferrule push.
- the receiver is a depression in a top surface within the lengthwise-extending opening.
- the receiver is a window extending through the top side.
- the receiver has a forward facing surface to engage a rearward facing surface on the key.
- the fiber optic ferrule and the ferrule push maintain a spatial relationship within the lengthwise-extending opening of the sleeve.
- a fiber optic assembly that includes a ferrule push, a fiber optic ferrule positioned forward of the ferrule push within a pulling sock having a plurality of optical fibers supported by the ferrule, and a cover coupled to the fiber optic ferrule and the ferrule push and including a sleeve extending lengthwise between opposed front and rear ends, the sleeve defining a lengthwise-extending opening that opens through the rear end for receiving at least a portion of the fiber optic fiber optic ferrule and the ferrule push, the sleeve having a top side and an opposing bottom side, and two side walls extending between the top side and the bottom side and along at least a portion of the sleeve, wherein the fiber optic ferrule and the ferrule push are held together inside the pulling sock by the cover.
- a cover for a fiber optic ferrule and ferrule push that includes a sleeve extending lengthwise between opposed front and rear ends, said sleeve defining a lengthwise-extending opening that opens through the rear end for receiving at least a portion of the fiber optic fiber optic ferrule and the ferrule push, the sleeve having a top side and an opposing bottom side, and two side walls extending between the top side and the bottom side and along at least a portion of the sleeve, and a receiver in the top side to receive a projection associated with the ferrule push.
- FIG. 1 is a perspective view of one embodiment of a fiber optic assembly that includes a cover for a fiber optic ferrule and ferrule push according to the present invention
- FIG. 2 is an exploded view of the fiber optic assembly in Fig. 1 with a representative fiber optic ferrule, ferrule push, guide pins and optical fibers;
- FIG. 3 is an exploded, perspective view of the fiber optic ferrule and ferrule push in Fig. 2;
- Fig. 4 is a cross section of the fiber optic assembly in Fig. 1;
- FIG. 5 is a front left perspective view of the cover in Fig. 1 ;
- Fig. 6 is a rear left perspective view of the cover in Fig. 1 ;
- Fig. 7 is a top plan view of the fiber optic ferrule and ferrule push in Fig. 2 in a spatial relationship as occurs in the cover;
- Fig. 8 is a top plan view of the fiber optic assembly in Fig. 1;
- FIG. 9 is bottom left perspective view of the fiber optic assembly in Fig. 1 ;
- Fig. 10 is a cross section view of a second embodiment of fiber optic assembly according to the present invention.
- FIG. 11 is a perspective view of another embodiment of a cover for a fiber optic ferrule and ferrule push according to the present invention
- Fig. 12 is a perspective view of yet another embodiment of a cover for a fiber optic ferrule and ferrule push according to the present invention
- Fig. 13 is a top perspective view of the cover in Fig. 12;
- FIG. 14 is a perspective view of another embodiment of a cover for a fiber optic ferrule and ferrule push according to the present invention.
- Fig. 15 is a side elevation view of the cover in Fig. 14;
- Fig. 16 is a bottom view of the cover in Fig. 14.
- front or forward means that direction where the fiber optic connector and/or the ferrule would meet with another fiber optic connector or device
- rear or “rearward” is used to mean the direction from which the optical fibers enter into the fiber-optic ferrule, the fiber optic connector, or the ferrule push.
- Each of the components will therefore have a front and rear, and the two fronts or forward portions of the fiber optic ferrules would engage one another.
- front of the fiber optic assembly is on the left side of FIG. 1 and “forward” is to the left and out of the page.
- Rearward” or “rear” is that part of the fiber optic connector or cover that is on the right side of the page and “rearward” and “backward” is toward the right and into the page.
- FIG. 1-2, 4-6, and 8-9 One embodiment of a fiber optic assembly that includes a cover 10 for a fiber optic ferrule and ferrule push is illustrated in Figs. 1-2, 4-6, and 8-9.
- the cover 10 has a sleeve 12 that extends lengthwise between a front end 14 and a rear end 16.
- the sleeve 12 has a lengthwise-extending opening 18 that opens through the rear end 16 of the sleeve 12 for receiving at least a portion of a fiber optic ferrule and the ferrule push, described below.
- the combination of the cover 10 and the fiber optic ferrule and the ferrule push may be known as a fiber optic assembly 20.
- the sleeve 12 has a top side 24 and an opposing bottom side 26.
- the side walls 28,30 extend along at least a portion of the sleeve 12. While the side walls 28, 30 are illustrated as being the same length, they could have different lengths, may not reach all of the way to the front end 14 or the rear end 16. As illustrated there may be a cutout 32 in each of the two side walls 28, 30, the cutouts 32 preferably extending from the rear end 16 towards the front end 14.
- the lengthwise-extending opening 18 is formed and defined by the top side 24, the opposing bottom side 26, the two side walls 28,30, and by internal surfaces 36 thereof. See Fig. 6.
- the top side 24 has a receiver 40 to engage a portion of a ferrule push 102.
- the receiver 40 is an opening through the top side 24.
- the receiver 40’ may be a depression in the top side 24’ from the lengthwise-extending opening 118’. See Fig. 10.
- the receiver 40 (and 40’) has a forward facing surface 42 at a rearward end of the receiver. The forward facing surface 42 partially defines the receiver 40 (window).
- the receiver 40’ shown in FIG. 10 has a passageway, instead of a window, that is shaped to accommodate a portion of the ferrule push 102.
- the fiber optic ferrule 104 may be an MT ferrule, which is generally known in the art. It may also take a number of other configurations, such as illustrated in Figs. 2 and 3. However, the fiber optic ferrule 104 preferably has a main body 110 that includes a plurality of optical fiber support structures 112 (see also Fig. 4), which may be a plurality of micro holes, v-grooves, or the like. The optical fiber support structures 112 support and hold the optical fibers 114 inserted into the fiber optic ferrule 104.
- the main body 110 extends between a front end 120 and a rear end 122, the optical fibers 114 extending from a front face 124 of the front end 120 through a central opening in the main body 110 and exiting out the rear end 122.
- the rear end 122 of the main body 110 also has a rear face 128.
- the fiber optic ferrule 104 may also have guide pins 130 (see Fig. 2) and/or a guide pin clamp or spacer 132 disposed at the rear end 122. There may also be more than one central opening through the fiber optic ferrule 104. For example, there may be two or more rows of optical fibers 114, optical fiber support structures 112 in the fiber optic ferrule 104. See Figs. 2 and 3.
- the fiber optic ferrule push 102 also has a main body 150 that extends between a front end 152 and a rear end 154.
- the main body includes a central opening 156 that extends between the front end 152 and the rear end 154.
- the central opening 156 also receives the optical fibers 114 that are disposed in the fiber optic ferrule 104.
- the front end 152 of the main body 150 preferably has the same dimensions of the rear end 122 of the fiber optic ferrule 104. However, those dimensions of the main body 150 may be different from the fiber optic ferrule 104 as well.
- a height of the central opening 156 through which the ribbonized optical fibers 114 pass is preferably less than a width of the ribbon (in a transverse direction), at least at the front end 152, and possibly all throughout a length of the fiber optic ferrule push 114.
- Such a height prevents the fiber optic ferrule push 102 from being rotated relative to the ribbonized optical fibers 114 and fiber optic ferrule 104, for example, when inside a pulling grip, and even afterwards when the fiber optic ferrule 104 engages the fiber optic ferrule push 104.
- the fiber optic ferrule push 102 is generally longer than the fiber optic ferrule 104 (i.e., in a longitudinal direction parallel to the optical fibers 114).
- the fiber optic ferrule push 102 may be of similar length as the fiber optic ferrule 104. Regardless of the length thereof, the fiber optic ferrule push 102 has substantially the same footprint as the fiber optic ferrule 104.
- the term "footprint" as used in this disclosure refers to only height, only width, or both height and width of the component in question (e.g., fiber optic ferrule 104 and/or the fiber optic ferrule push 102) when viewed in a cross-sectional plane that is perpendicular to a longitudinal/lengthwise axis of the component.
- the fiber optic ferrule push 102 may protrude no further than or only slightly further than the footprint defined by the fiber optic ferrule 104 (specifically a flange/shoulder thereof).
- the footprint may, for example, be less than 10% larger than that defined by the fiber optic ferrule 104.
- the fiber optic ferrule push 102 includes a first alignment structure or projection 160 on a top surface 162 of the main body 150. It may also be referred to as a “key” to one of ordinary skill in the art.
- the first alignment structure 160 is illustrated as a raised portion in the figures, but also take on other configurations.
- the key 160 may take any shape or location on the fiber optic ferrule push 102. For example, the key 160 may also be on one of the side surfaces 166, which are on opposing sides of the top surface 162.
- a window 168 extending through the top surface 162 and is in communication with the central opening 156 that forms a passageway for the optical fibers 114. This window 168 allows for access and/or visual inspection by a user to the optical fibers 114.
- the fiber optic ferrule push 102 has at least one projection 180 or latch that extends from the main body 150 to engage a corresponding structure 182 in a housing 106 for the fiber optic ferrule 104 and the ferrule push 102.
- there are two such projections 180 but only one may be necessary to retain the fiber optic ferrule push 102 within the housing.
- the projections 180 take the form of cantilevered arms, that include a front chamfered surface 184 and a rear facing flat surface 186 to engage the housing.
- the ferrule push 102 has an alignment structure or key 160.
- the key 160 has a rearward facing surface 170.
- the cover 10 is made of a material that is somewhat flexible or bendable, at least at the rear end 116. Accordingly, as the ferrule push 102 and the fiber optic ferrule 104 are inserted into the sleeve 12, the key pushes against and bends the top side 24 and its internal surface 36. Once the ferrule push 102 and the fiber optic ferrule 104 are disposed within the lengthwise-extending opening 18, the key 160 will pop up and into the window 40.
- the engagement of the rearward facing surface 170 with the forward facing surface 42 prevents the ferrule push 102 and the fiber optic ferrule 102 from exiting the cover 10. If the ferrule push 102 is pulled on, those two surfaces will prevent the removal of the ferrule push 102.
- the cover 10 is also configured so as to keep the ferrule push 102 and the fiber optic ferrule 104 in a constant spatial relationship as illustrated in Fig. 7. That is, the ferrule push 102 will engage the rear end of the fiber optic ferrule 104. As such, when the fiber optic assembly 20 is disposed within the pulling grip, the ferrule push 102 and the fiber optic ferrule 102 will stay connected with one another.
- the lengthwise-extending opening 18 may be configured to match the structure of the ferrule push 102 and the fiber optic ferrule 104.
- the front end 120 of the fiber optic ferrule may engage a corresponding structure in the lengthwise-extending opening 18 to provide a stop point for the ferrule push 102 and the fiber optic ferrule 104. See again, FIG. 4.
- the cover 10 may also have openings at the front end 14 to receive the guide pins 130.
- the cutouts 32 each receive one of the projections or latches 180 on the ferrule push 102.
- the projections 180 extend outward of the sides of the ferrule push 102.
- the cutouts 32 therefore allow for the sleeve 10 to be as narrow as possible and still not have to worry about the projections 180 engaging the sleeve 10, thereby optimizing the space available inside the pulling sock for several such fiber optic assemblies 20.
- Fig. 11 illustrates another embodiment of a cover 210 for a fiber optic ferrule and ferrule push according to the present invention.
- the cover 210 is similar to the cover 10 and has the same general configuration and elements.
- One of the differences in cover 210 is that there are two receivers 40 and 240 to engage a portion of a ferrule push 102, rather than just the one receiver 40 in the top side 224.
- the two receivers 40 and 240 may be a depression in the top side from the lengthwise-extending opening.
- Each of the receivers 40, 240 has a forward facing surface, elements 42 and 242, respectively, at a rearward end of the receiver.
- the forward facing surfaces 42,242 partially define the receivers 40,240.
- Figs. 12 and 13 illustrate yet another embodiment of a cover 310 for a fiber optic ferrule 104 and ferrule push 102 according to the present invention.
- the cover 310 has a top side 324 and an opposing bottom side 326.
- the top side 324 and the bottom side 326 do not extend as far rearwardly as they do in the previous embodiments. Indeed, the top side 324 and the bottom side 326 stop prior to where the receivers were in those prior embodiments. In fact, there are no receivers in this embodiment, but rather cutouts as discussed below.
- the two side walls 328,330 extend between the top side 324 and the opposing bottom side 326 and rearwardly along at least a portion of the sleeve 312 and farther rearwardly than the top side 324 and the bottom side 326.
- the cutouts 332 preferably take the form of a hole or opening that has a rearward portion 338 to enclose the cutouts 332.
- the cutouts are to receive the projection 180 or latch that extends from the main body 150 of the ferrule push 102. In this case, it is the projection 180 engaging the cutout 332 that retains the fiber optic ferrule push 102 and the fiber optic ferrule 104 in the cover 310.
- Figs. 14-16 illustrate another embodiment of a cover 410 for a fiber optic ferrule 104 and ferrule push 102 according to the present invention.
- the cover 410 has a top side 424 and a shortened opposing bottom side 426.
- the bottom side 426 does not extend as far rearwardly as does the top side 424 or as it does in the previous embodiments (except for cover 310).
- the bottom side 426 does extend far enough to prevent the end face of the fiber optic ferrule 104 from becoming contaminated, however.
- the two side walls 428,430 extend between the top side 424 and a least a portion of the bottom side 426, but then the height of the side walls decreases the farther to rear of the cover 410.
- the top side 424 does have a receiver 440, which is illustrated as an opening through the top side 424, or alternatively it may also be a depression such as receiver 40’.
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Mechanical Coupling Of Light Guides (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US201962947966P | 2019-12-13 | 2019-12-13 | |
PCT/US2020/064652 WO2021119517A1 (en) | 2019-12-13 | 2020-12-11 | Cover for a fiber optic ferrule and ferrule push |
Publications (1)
Publication Number | Publication Date |
---|---|
EP4073565A1 true EP4073565A1 (en) | 2022-10-19 |
Family
ID=74186826
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP20842363.2A Pending EP4073565A1 (en) | 2019-12-13 | 2020-12-11 | Cover for a fiber optic ferrule and ferrule push |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP4073565A1 (en) |
CN (1) | CN114830001A (en) |
WO (1) | WO2021119517A1 (en) |
Family Cites Families (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6547449B1 (en) * | 1999-12-17 | 2003-04-15 | Corning Cable Systems Llc | Windowless, rectangular ferrule in a preassembled multifiber connector and associated assembly method |
US7296935B1 (en) | 2007-02-09 | 2007-11-20 | Us Conec, Ltd. | Ferrule adapter and ferrule adapter assembly |
US8052334B2 (en) * | 2008-02-21 | 2011-11-08 | US Conec, Ltd | Field installable ferrule and tool and method for installing optical fibers in the ferrule using the tool |
US9817194B2 (en) * | 2015-07-08 | 2017-11-14 | US Conec, Ltd | Fiber optic ferrule with rear holes to align a guide pin clamp with field changeable guide pins |
US10191227B2 (en) * | 2016-01-20 | 2019-01-29 | Alliance Fiber Optics Products, Inc. | Fiber optic connector with small profile, and cable assemblies, systems, and methods including the same |
WO2018119140A1 (en) * | 2016-12-21 | 2018-06-28 | Commscope Technologies Llc | Snap-on dust cap for fiber optic connector |
CN111512202B (en) * | 2017-12-19 | 2022-11-18 | 美国康涅克有限公司 | Miniature duplex connector with push-pull polar mechanism and carrier |
-
2020
- 2020-12-11 WO PCT/US2020/064652 patent/WO2021119517A1/en unknown
- 2020-12-11 CN CN202080086008.8A patent/CN114830001A/en active Pending
- 2020-12-11 EP EP20842363.2A patent/EP4073565A1/en active Pending
Also Published As
Publication number | Publication date |
---|---|
CN114830001A (en) | 2022-07-29 |
WO2021119517A1 (en) | 2021-06-17 |
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