IP Library › Granted Patent US 10,261,279
Granted Patent B1
US 10,261,279 · App. 15/782,476 · Granted Apr 16, 2019

System and method for distributing high fiber count optical cable to network racks

Inventors: Craig Steven Potter (Cary, NC); Daniel Brian Hangebrauck (Garner, NC); Daniel Frederick Oberklein (Cary, NC); Patrick Stephen VanVickle (Apex, NC)
Assignee: Sumitomo Electric Lightwave Corp.
G02B6/4446G02B6/4452G02B6/4472
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Quick Facts
Patent No.
US 10,261,279
App. No.
15/782,476
Granted
Apr 16, 2019
Kind
B1
Abstract

A rack-level breakout box, system, and method for distributing high-fiber count optical fiber cables to one or more network racks. External routing of incoming and outgoing cables around the rack is kept neat and orderly, with one large cable serving a fully populated rack and, optionally, multiple racks. A flexible mounting configuration is further provided.

Claims (75)

1. A breakout box for distributing one or more optical fiber cables to modules within a rack, the breakout box comprising:

a base section comprising:

at least first and second side walls attached to a rear wall;

at least one first opening in the first side wall; and

a plurality of second openings in the second side wall;

a cover that is removably attached to the base section;

one or more mounting arms attaching the base section to the rack; and

threaded ferrules disposed on and/or at least partially within one or more of the plurality of first and/or second openings,

wherein each optical fiber cables has a plurality of fibers and is accepted into one of the first openings, and

wherein the plurality of fibers are separated into a plurality of fiber bundles within the breakout box, and at least some of the plurality of fiber bundles pass out of one or more of the first and/or second openings.

2. The breakout box of claim 1 , wherein the first side wall is arranged on an opposite side of the rear wall relative to the second side wall.

3. The breakout box of claim 1 , wherein the threaded ferrules are configured to receive the optical fiber cable or one of the plurality of fiber bundles therethrough.

4. The breakout box of claim 2 , further comprising one or more protective sleeves for covering one or more of the plurality of fiber bundles.

5. The breakout box of claim 1 , wherein the plurality of first openings comprises three openings, and wherein the plurality of second openings comprises eight openings.

6. The breakout box of claim 1 , wherein the breakout box is disposed entirely within the rack in an upper region of the rack, above the modules within the rack.

7. The breakout box of claim 1 , further comprising a ground wire that is configured to be connected to the base section and to a ground lug on the network rack.

8. The breakout box of claim 1 , further comprising a plug or protective insert that is disposed on and/or in, at least partially, one or more of the first and/or second openings.

9. The breakout box of claim 1 , wherein at least one of the plurality of first openings receives an optical fiber cable with 6,912 optical fibers therein.

10. The breakout box of claim 1 , wherein the optical fiber cable is separated into the plurality of fiber bundles inside the breakout box, and wherein each of the plurality of fiber bundles comprises 864 optical fibers.

11. The breakout box of claim 1 , wherein each mounting arm comprises:

an L-shaped angle bracket; and

an at least substantially longitudinal section,

wherein the longitudinal section is detachable from the angle bracket.

12. The breakout box of claim 1 , wherein each mounting arm comprises an L-shaped angle bracket that is configured to attach the base section directly to the network rack.

13. A breakout box system for distributing a plurality of fiber bundles, each of which have a plurality of optical fibers that are separated from an optical fiber cable, to modules within a plurality of racks, the system comprising:

at least a first and second breakout box, each breakout box comprising:

a base section comprising:

at least first and second side walls attached to a rear wall;

a plurality of first openings formed in the first side wall; and

a plurality of second openings formed in the second side wall,

a cover that is removably attached to the base section; and

one or more mounting arms that are each configured to attach the base section to a respective one of the plurality of racks; and

an optical fiber cable,

wherein the optical fiber cable is received by one of the plurality of first openings of the first breakout box and separated into a plurality of fiber bundles and a secondary optical fiber cable comprising at least a portion of the optical fiber cable,

wherein the secondary optical fiber cable extends from inside the first breakout box through another of the plurality of first openings of the first breakout box and is received by one of the plurality of first openings of the second breakout box,

wherein the secondary optical fiber cable is separated into one or more secondary fiber bundles, and

wherein at least one of the plurality of fiber bundles extends through one or more of the plurality of second openings in the first breakout box and at least one of the one or more secondary fiber bundles extends through one or more of the plurality of second openings in the second breakout box.

14. The breakout box system of claim 13 , wherein the first and the second breakout boxes are mounted on first and second racks of the plurality of racks.

15. The breakout box of claim 13 , wherein the plurality of first openings consists of three openings and the plurality of second openings consists of eight openings.

16. The breakout box system of claim 13 , wherein the optical fiber cable comprises 6,912 optical fibers and the secondary optical fiber cable comprises a portion less than all of the 6,912 optical fibers of the optical fiber cable.

17. The breakout box system of claim 13 , wherein each breakout box is disposed in an upper region of a network rack.

18. The breakout box system of claim 13 , further comprising one or more protective sleeves for covering one or more of the plurality of fiber bundles and/or at least one of the one or more secondary fiber bundles.

19. A method of routing optical fibers to modules within one or more racks, the method comprising:

providing a first breakout box, wherein the first breakout box comprises:

a base section comprising:

at least first and second side walls attached to a rear wall;

at least one first opening formed in the first side wall; and

a plurality of second openings formed in the second side wall,

a cover that is removably attached to the base section; and

one or more mounting arms that are each configured to attach the base section to a first rack of the one or more racks;

mounting the base section to the first rack via the one or more mounting arms;

arranging threaded ferrules on or at least partially within one or more of the first openings and/or one or more of the plurality of second openings;

feeding an optical fiber cable through one of the first openings;

separating optical fibers from the optical fiber cable into one or more fiber bundles;

passing each of the one or more fiber bundles through a respective one of the plurality of second openings;

tightening at least one of the ferrules to secure, relative to the first breakout box, the optical fiber cable and/or at least one of the one or more fiber bundles; and

attaching the cover to the base section.

20. The method of claim 19 , wherein the one or more racks comprises a second rack, the method comprising:

forming a secondary optical fiber cable from a portion of the optical fiber cable inside the first breakout box;

feeding the secondary optical fiber cable through another of the plurality of first openings in the first breakout box prior to attaching the cover of the first breakout box;

providing a second breakout box, wherein the second breakout box comprises:

a base section comprising:

at least first and second side walls attached to a rear wall;

at least one first opening formed in the first side wall; and

a plurality of second openings formed in the second side wall,

a cover that is removably attached to the base section; and

one or more mounting arms that are each configured to attach the base section to the second rack;

mounting the second breakout box to the second rack via the one or more mounting arms of the second breakout box;

arranging threaded ferrules on or at least partially within one or more of the first openings and/or one or more of the plurality of second openings of the second breakout box;

feeding the secondary optical fiber cable through one of the first openings of the second breakout box;

separating optical fibers from the secondary optical fiber cable into one or more secondary fiber bundles;

passing each of the one or more secondary fiber bundles through a respective one of the plurality of second openings of the second breakout box;

tightening at least one of the ferrules to secure, relative to the second breakout box, the secondary optical fiber cable and/or at least one of the one or more secondary fiber bundles; and

attaching the cover to the base section of the second breakout box.

21. The method of claim 20 , comprising applying a protective sleeve to the optical fiber cable, the one or more fiber bundles, the secondary optical fiber cable, and/or the secondary optical fiber cable, respectively, prior to passing through the pluralities of first and/or second openings of the first and/or second breakout boxes, respectively.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2017
From: POTTER, CRAIG STEVEN; HANGEBRAUCK, DANIEL BRIAN; OBERKLEIN, DANIEL FREDERICK; VANVICKLE, PATRICK STEPHEN
To: SUMITOMO ELECTRIC LIGHTWAVE CORP.
Reel/Frame 043905/0600 →
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