HYBRID CONNECTION SYSTEM USING FACTORY CONNECTORIZED PIGTAIL
20180011257 ยท 2018-01-11
Assignee
Inventors
- Michael Lawrence GURRERI (York, PA, US)
- Robert Charles FLAIG (Lancaster, PA, US)
- Dwight A. BRETZ (Hummelstown, PA, US)
- Eric Ryan CHAPPELL (Statesville, NC, US)
Cpc classification
G02B6/3885
PHYSICS
H01R13/5216
ELECTRICITY
H01R4/24
ELECTRICITY
H01R24/28
ELECTRICITY
G02B6/4293
PHYSICS
H01R13/5205
ELECTRICITY
H01R24/20
ELECTRICITY
International classification
H01R13/52
ELECTRICITY
H01R24/20
ELECTRICITY
H01R4/24
ELECTRICITY
Abstract
A hybrid optical and electrical connection system includes a connectorized pigtail and a closure. The connectorized pigtail includes: a) a stub cable including a jacket containing at least one optical fiber and at least two electrical conductors, the stub cable having opposite first and second ends; and b) a hybrid optical and electrical connector that is factory terminated at the first end of the stub cable. The closure mounts at the second end of the stub cable for enclosing optical and electrical connections between the second end of the stub cable and a field cable.
Claims
1. A hybrid optical and electrical connection system comprising; a connectorized pigtail including: a) a stub cable including a jacket containing at least one optical fiber and at least two electrical conductors, the stub cable having opposite first and second ends; and b) a hybrid optical and electrical connector that is factory terminated at the first end of the stub cable; and a closure that mounts at the second end of the stub cable for enclosing optical and electrical connections between the second end of the stub cable and a field cable.
2. The hybrid optical and electrical connection system of claim 1, wherein the connectorized pigtail has a length less than 50 centimeters.
3. The hybrid optical and electrical connection system of claim 1, wherein the connectorized pigtail has a length less than 40 centimeters.
4. The hybrid optical and electrical connection system of claim 1, wherein the connectorized pigtail has a length less than 30 centimeters.
5. The hybrid optical and electrical connection system of claim 1, wherein the closure has a length less than 10 centimeters.
6. The hybrid optical and electrical connection system of claim 1, wherein the closure includes a hinged cover.
7. The hybrid optical and electrical connection system of claim 1, wherein the closure includes first and second housing pieces that cooperate to defined an interior region for housing optical splices and electrical connections.
8. The hybrid optical and electrical connection system of claim 7, wherein first and second housing pieces are connected by a hinge.
9. The hybrid optical and electrical connection system of claim 1, wherein the closure is environmentally sealed.
10. The hybrid optical and electrical connection system of claim 9, wherein the closure is environmentally sealed by a gel.
11. The hybrid optical and electrical connection system of claim 1, wherein the stub cable includes at least two optical fibers, wherein the hybrid optical and electrical connector includes a multi-fiber ferrule that supports end portions of the optical fibers, and wherein the hybrid optical and electrical connector includes at least two electrical contacts electrically connected to the electrical conductors of the stub cable.
12. The hybrid optical and electrical connection system of claim 1, wherein the stub cable includes at least two optical fibers, wherein the hybrid optical and electrical connector includes at least two ferrules that support end portions of the optical fibers, and wherein the hybrid optical and electrical connector includes at least two electrical contacts electrically connected to the electrical conductors of the stub cable.
13. The hybrid optical and electrical connection system of claim 1, further comprising a tapered, flexible boot positioned at a juncture between the closure and the field cable.
14. The hybrid optical and electrical connection system of claim 1, wherein the optical fiber of the stub cabled to an optical fiber of the field cable by a splice within the closure.
15. The hybrid optical and electrical connection system of claim 14, wherein the splice is a mechanical splice or a fusion splice.
16. The hybrid optical and electrical connection system of claim 1, further comprising electrical terminals within the closure for electrically connecting the electrical conductors of the stub cable to electrical conductors of the field cable.
17. The hybrid optical and electrical connection system of claim 1, wherein the electrical terminals include insulation displacement connector terminals.
18. The hybrid optical and electrical connection system of claim 1, wherein the electrical conductors of the stub cable are coupled to electrical conductors of the field cable at butt splices within the closure.
19. The hybrid optical and electrical connection system of claim 1, wherein the hybrid optical and electrical connector includes a twist-to-lock fastening element for coupling the hybrid optical and electrical connector to a corresponding connector or adapter.
20. The hybrid optical and electrical connection system of claim 1, wherein the twist-to-lock element includes an internally threaded sleeve, an externally threaded nut or a bayonet-style coupling element.
21. The hybrid optical and electrical connection system of claim 11, wherein the electrical contacts include pins or sockets.
22. The hybrid optical and electrical connection system of claim 12, wherein the electrical contacts include pins or sockets.
23. The hybrid optical and electrical connection system of claim 1, wherein the hybrid optical and electrical connector is environmentally sealed when coupled to a corresponding connector or adapter.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007]
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
DETAILED DESCRIPTION
[0014]
[0015] In certain examples, the connectorized pigtail 22 is relatively short in length. For example, the connectorized pigtail 22 can have a length L1 that is less than 50 centimeters, or less than 40 centimeters, but less than 30 centimeters.
[0016]
[0017] In certain examples, the optical fibers 36 can be protected by loose or tight buffer layers. In still other examples, the plurality of optical fibers 36 can be positioned within a central buffer tube of the hybrid field cable 32. In the embodiment of
[0018] Still referring to
[0019]
[0020] Referring to
[0021] Still referring to
[0022] Still referring to
[0023] In certain examples, the hybrid connector 26 can be factory terminated to the hybrid stub cable 24, and the connectorized pigtail 22 can be field terminated to the hybrid field cable 30. The closure 28 can be configured to assist in field terminating the connectorized pigtail 22 to the field cable 30. In certain examples, closure 28 can be configured to house and protect splices between the optical fibers 36 of the hybrid field cable 30 and the optical fibers 46 of the stub cable 24. In certain examples, the optical splices can be fusion splices or mechanical splices. In certain examples, the closure 28 can also house and protect connections between the electrical conductors 40 of the hybrid field cable 30 and the electrical conductors 50 of the hybrid stub cable 24. In certain examples, electrical termination structures can be provided within the closure 28. For example, the closure 28 can include electrical connectors such as insulation displacement connectors 56 suitable for electrically connecting the electrical conductors 40 of the hybrid field cable 30 to the electrical conductors 50 of the stub cable 24. Referring to
[0024] In certain examples, the closure 28 is relatively small in size. For example, closure 28 can have a length L2 that is less than or equal to about 10 centimeters. Additionally, the closure 28 can be configured to provide easy access to the interior of the enclosure 28. For example, closure 28 can include a main body 64 and a cover 66. The cover 66 can be connected to the main body 64 by a hinge. By pivoting the cover 66 to an open position relative to the main body 64, an interior of the closure 28 can readily be accessed. In certain examples, the closure 28 is sealed when closed. For example, the closure 28 can include a sealing arrangement such as a gel seal 68 that environmentally seals the closure 28 when the closure 28 is closed.
[0025] In certain examples, the tensile reinforcing members 38 of the hybrid field cable 38 and the tensile reinforcing members 50 of the stub cable 24 can be anchored to the closure 28. For example, the closure can include one or more passages for receiving the tensile reinforcing members 38, 54. Adhesive or other structure can be used to anchor the tensile reinforcing members 38, 54 to the closure 28. In other examples, the tensile reinforcing members 38, 54 can be mechanically anchored to the closure 28 by means such as crimp sleeves, fasteners or other types of mechanical securement techniques.
[0026] Referring back to
[0027] In certain examples, the closure 28 can have features that allow the closure 28 to interface with other network elements. For example, the closure 28 can have a configuration adapted to fit into a corresponding holder.
[0028] The hybrid stub cable 24 includes a first end 86 and an opposite second end 82. The hybrid connector 26 is preferably factory terminated to the first end 80 of the hybrid stub cable 24. The second end 82 of the hybrid stub cable 24 is preferably field terminated to the hybrid field cable 30 with the assistance of the closure 28.
[0029] Referring to
[0030] The hybrid connector 26 can also include a fastening element 98 for securing the hybrid connector 26 to the mating adapter or connector. In certain examples, the fastening element 98 can include a twist-to-lock fastening element such as an internally threaded sleeve, and externally threaded nut or a bayonet-style coupling element. In certain examples, the hybrid connector 26 can be environmentally sealed when coupled to the mating connector or adapter.
[0031]
[0032] Various modifications and alterations of this disclosure will become apparent to those skilled in the art without departing from the scope and spirit of this disclosure, and it should be understood that the scope of this disclosure is not to be unduly limited to the illustrative examples set forth herein.