FIBER OPTIC CONNECTION ASSEMBLY
A fiber optic connection assembly for fiber to the home, comprising: a fan-out member; a multi-fiber optical cable having a first end introduced into the fan-out member and a second end extending out of the fan-out member; a multi-fiber optic connector connected to the second end of the multi-fiber optical cable; a plurality of single-fiber optical cables each having a first end introduced into the fan-out member and spliced with a respective one of fibers of the multi-fiber optical cable and a second end extending out of the fan-out member; and a plurality of single-fiber optic connectors connected to the second ends of the single-fiber optical cables, respectively; a plurality of first fiber optic adapters mated with the plurality of single-fiber optic connectors, respectively; and a plurality of outer shields each constructed to receive the connector and the adapter of a respective single-fiber optical cable therein, wherein the outer shield is hermetically fitted on the connector and the adapter of the respective single-fiber optical cable to form a sealed inner chamber so as to prevent moisture or water from entering into the inner chamber.
This application claims the benefit of Chinese Patent Application No. 201310117198.7 filed on Apr. 7, 2013 and Chinese Patent Application No. 201320169165.2 filed on Apr. 7, 2013 in the State Intellectual Property Office of China, the whole disclosure of which is incorporated herein by reference.
BACKGROUND OF THE INVENTION1. Field of the Invention
The present invention relates to a fiber optic connection assembly, more particularly, relates to a fiber optic connection assembly for fiber to the home (FTTH).
2. Description of the Related Art
In a conventional technology of fiber to the home (FTTH), a fiber optic connection box is commonly used to couple fibers of a multi-fiber optical cable to respective fibers of single-fiber optical cables of a user side. For example,
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The present invention has been made to overcome or alleviate at least one aspect of the above mentioned disadvantages.
Accordingly, it is an object of the present invention to provide a fiber optic connection assembly having a small volume and adapted to be used in a narrow workspace.
According to an aspect of the present invention, there is provided a fiber optic connection assembly for fiber to the home, comprising: a fan-out member; a multi-fiber optical cable having a first end introduced into the fan-out member and a second end extending out of the fan-out member; a multi-fiber optic connector connected to the second end of the multi-fiber optical cable; a plurality of single-fiber optical cables each having a first end introduced into the fan-out member and a second end extending out of the fan-out member; and a plurality of single-fiber optic connectors connected to the second ends of the single-fiber optical cables, respectively; a plurality of first fiber optic adapters mated with the plurality of single-fiber optic connectors, respectively; and a plurality of outer shields each constructed to receive the connector and the adapter of a respective single-fiber optical cable therein, wherein the outer shield is hermetically fitted on the connector and the adapter of the respective single-fiber optical cable to form a sealed inner chamber so as to prevent moisture or water from entering into the inner chamber.
The above and other features of the present invention will become more apparent by describing in detail exemplary embodiments thereof with reference to the accompanying drawings, in which:
Exemplary embodiments of the present disclosure will be described hereinafter in detail with reference to the attached drawings, wherein the like reference numerals refer to the like elements. The present disclosure may, however, be embodied in many different forms and should not be construed as being limited to the embodiment set forth herein; rather, these embodiments are provided so that the present disclosure will be thorough and complete, and will fully convey the concept of the disclosure to those skilled in the art.
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Please be noted that the present invention is not limited to the illustrated embodiments, the number and the arrangement of the single-fiber optical cables 200 may be freely adjusted as necessary.
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In an exemplary embodiment of the present invention, the single-fiber optic connectors of the fiber optic connection assembly and the mating single-fiber optic connector (not shown) from the user side are hermetically fitted in the first fiber optic adapters 2000.
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In the illustrated embodiments, the multi-fiber optical cable 100 and the single-fiber optical cables 200 are hermetically fitted in the fan-out member 300. Hereafter, it will describe the sealing manners of the multi-fiber optical cable 100 and the single-fiber optical cables 200 in detail according to several embodiments.
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Although several exemplary embodiments of the fan-out member have been shown and described with reference to
Hereafter, it will describe in detail a seal configuration for sealing the single-fiber optic connector 1000 and the adapter 2000 of each single-fiber optical cable 200 with reference to
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In an exemplary embodiment, the fiber optic connector 1000 may comprise LC connector or other type of connector.
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In an exemplary embodiment of the present invention, when it needs to couple the fiber optic connector 1000 with a mating fiber optic connector (not shown), the seal cap 2200 may be removed, and the mating fiber optic connector may be inserted into the port of the fiber optic adapter 2000. In this way, the fiber optic connector 1000 is coupled with the mating fiber optic connector.
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In an exemplary embodiment of the present invention, the inner tube 1200 may be made of metal.
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In an exemplary embodiment of the present invention, an outer surface of the first end 1310 of the outer tube 1300 is knurled to enhance a friction engagement force with the crimp tube 1500 and reliably hold the Kevlar elements of the optical cable 200 on the outer tube 1300.
In the above various embodiments of the present invention, the outer shield 3000 provides a simple and reliable seal structure, and the fiber optic connection seal assembly may reach a classification of waterproof IP68. Furthermore, once the outer shield 3000 is screwed onto the fiber optic adapter 2000, the fiber optic connector 1000 is reliably positioned in the outer shield 3000 and cannot be pulled out of the outer shield 3000 under the external force, therefore, the seal performance of the assembly is independent of the external force exerted on the optical cable 200. Moreover, the outer shield 3000 can limit a movement of the outer tube 1300 on which Kevlar elements of the optical cable 200 are crimped so as to prevent the external force exerted on the optical cable 200 from being transferred to the ferrule of the fiber optic connector 1000, therefore, the optical performance of the fiber optic connector 1000 is not affected by the external force.
It should be appreciated for those skilled in this art that the above embodiments are intended to be illustrated, and not restrictive. For example, many modifications may be made to the above embodiments by those skilled in this art, and various features described in different embodiments may be freely combined with each other without conflicting in configuration or principle, so that more kinds of fiber optic connection assembly can be achieved with overcoming the technical problem of the present invention.
Although several exemplary embodiments have been shown and described, it would be appreciated by those skilled in the art that various changes or modifications may be made in these embodiments without departing from the principles and spirit of the disclosure, the scope of which is defined in the claims and their equivalents.
As used herein, an element recited in the singular and proceeded with the word “a” or “an” should be understood as not excluding plural of said elements or steps, unless such exclusion is explicitly stated. Furthermore, references to “one embodiment” of the present invention are not intended to be interpreted as excluding the existence of additional embodiments that also incorporate the recited features. Moreover, unless explicitly stated to the contrary, embodiments “comprising” or “having” an element or a plurality of elements having a particular property may include additional such elements not having that property.
Claims
1. A fiber optic connection assembly for fiber to the home, comprising:
- a fan-out member;
- a multi-fiber optical cable having a first end introduced into the fan-out member and a second end extending out of the fan-out member;
- a multi-fiber optic connector connected to the second end of the multi-fiber optical cable;
- a plurality of single-fiber optical cables each having a first end introduced into the fan-out member and a second end extending out of the fan-out member;
- a plurality of single-fiber optic connectors connected to the second ends of the single-fiber optical cables, respectively;
- a plurality of first fiber optic adapters mated with the plurality of single-fiber optic connectors, respectively; and
- a plurality of outer shields each constructed to receive the connector and the adapter of a respective single-fiber optical cable therein,
- wherein the outer shield is hermetically fitted on the connector and the adapter of the respective single-fiber optical cable to form a sealed inner chamber so as to prevent moisture or water from entering into the inner chamber.
2. The fiber optic connection assembly according to claim 1,
- wherein the outer shield has a first end screwed onto a housing of the fiber optic adapter;
- wherein a first elastic seal ring is interposed between an inner flange surface of the first end of the outer shield and an outer flange surface of the housing of the fiber optic adapter; and
- when the outer shield is screwed onto the housing of fiber optic adapter, the first elastic seal ring is axially pressed between the inner flange surface of the outer shield and the outer flange surface of the fiber optic adapter to seal an interface between the outer shield and the fiber optic adapter.
3. The fiber optic connection assembly according to claim 1,
- wherein the fiber optic connector comprises an outer tube having a groove formed in an outer wall of the outer tube, and a second elastic seal ring is received in the groove;
- wherein the outer shield is formed with an radial protrusion on an inner wall of the outer shield at a second end of the outer shield; and
- when the outer shield is screwed onto the housing of fiber optic adapter, the second elastic seal ring is radially pressed in the groove by the an inner peripheral surface of the radial protrusion to seal an interface between the outer shield and the fiber optic connector.
4. The fiber optic connection assembly according to claim 3,
- wherein the fiber optic adapter comprises a seal cap screwed into a port of the housing of the fiber optic adapter opposite to the fiber optic connector;
- wherein a third elastic seal ring is interposed between an outer peripheral surface of the seal cap and an inner peripheral surface of the housing of the fiber optic adapter; and
- when the seal cap is screwed into the port of fiber optic adapter, the third elastic seal ring is radially pressed between the outer peripheral surface of the seal cap and the inner peripheral surface of the fiber optic adapter to seal an interface between the seal cap and the fiber optic adapter.
5. The fiber optic connection assembly according to claim 4,
- wherein the fiber optic connector comprises a shrinkable tube having a first end firmly attached on a first end of the outer tube and a second end firmly attached on the optical cable to seal an interface between the fiber optic connector and the optical cable.
6. The fiber optic connection assembly according to claim 5,
- wherein the radial protrusion of the outer shield has a slope for guiding the second elastic seal ring to the inner peripheral surface of the radial protrusion.
7. The fiber optic connection assembly according to claim 6,
- wherein the fiber optic connector further comprises an inner tube passing through the outer tube and having a first end inserted into a housing of the fiber optic connector; and
- wherein a buffer spring is interposed between an outer flange on an outer wall of a second end of the inner tube and an inner flange on an inner wall of the second end of the outer tube.
8. The fiber optic connection assembly according to claim 7,
- wherein a slot is formed in the outer wall of the inner tube, and a block ring is received in the slot; and
- wherein the outer tube is formed with an radial outer protrusion at the second end of the outer tube, and the radial outer protrusion is limited between an radial inner protrusion of the outer shield and the block ring to prevent the outer tube and the buffer spring from being disengaged from the inner tube.
9. The fiber optic connection assembly according to claim 8,
- wherein the fiber optic connector further comprises a crimp tube for crimping Kevlar elements of the optical cable on the first end of the outer tube to prevent an external force exerted on the optical cable from being transferred to a ferrule of the fiber optic connector.
10. The fiber optic connection assembly according to claim 9,
- wherein an outer surface of the first end of the outer tube is knurled to enhance a friction engagement force with the crimp tube.
11. The fiber optic connection assembly according to claim 1,
- wherein the multi-fiber optical cable and the single-fiber optical cables are introduced into the fan-out member from a same side or different sides of the fan-out member.
12. The fiber optic connection assembly according to claim 1,
- wherein the single-fiber optical cables have different lengths extending out the fan-out member.
13. The fiber optic connection assembly according to claim 1,
- wherein the single-fiber optical cables are divided into a plurality of groups, and each group of single-fiber optical cables have a same length extending out the fan-out member; and
- wherein different groups of single-fiber optical cables have a same length or different lengths extending out the fan-out member.
14. The fiber optic connection assembly according to claim 13,
- wherein the single-fiber optic connectors of the same one group of single-fiber optical cables are arranged in the same layer; and
- wherein the single-fiber optic connectors of different groups of single-fiber optical cables are arranged in different layers.
15. The fiber optic connection assembly according to claim 1,
- wherein there is not provided any fiber optic connector or fiber optic adapter for coupling with a fiber optic connector of a user side in the fan-out member.
16. The fiber optic connection assembly according to claim 1,
- wherein the single-fiber optic connector is configured to be a sealed type of optic connector.
17. The fiber optic connection assembly according to claim 16, further comprising:
- a second fiber optic adapter mated with the multi-fiber optic connector.
18. The fiber optic connection assembly according to claim 17,
- the single-fiber optic connectors and the mating single-fiber optic connectors are hermetically fitted in the first fiber optic adapters.
19. The fiber optic connection assembly according to claim 18, wherein,
- before the mating single-fiber optic connector of the user side is fitted into a respective port of the first fiber optic adapter, the respective port is provisionally sealed by a sealing cap.
20. The fiber optic connection assembly according to claim 1,
- wherein the multi-fiber optical cable and the single-fiber optical cables are hermetically fitted in the fan-out member.
21. The fiber optic connection assembly according to claim 20,
- wherein the multi-fiber optical cable and the single-fiber optical cables are hermetically fitted in the fan-out member by pressing a sealing gel block.
22. The fiber optic connection assembly according to claim 21, wherein the fan-out member comprising:
- a housing;
- a tray received in the housing and constructed to store and manage the redundant fibers of the multi-fiber optical cable;
- a first pressing plate hermetically fitted in the housing by a sealing ring; and
- a second pressing plate disposed at a side of the first pressing plate opposite to the housing,
- wherein the sealing gel block is received in an inner space defined by the first and second pressing plates,
- wherein the first end of the multi-fiber optical cable passes through the second pressing plate, the sealing gel block and the first pressing plate and extends into the housing,
- wherein the first end of the single-fiber optical cable passes through a hole in the second pressing plate and is received in a hole in the sealing gel block,
- wherein the housing, the sealing gel block and the second pressing plate are assembled together by bolts, so that the sealing gel block and the sealing ring can be pressed by screwing the bolts, and that the multi-fiber optical cable and the single-fiber optical cable can be hermetically fitted in the fan-out member.
23. The fiber optic connection assembly according to claim 22,
- wherein the multi-fiber optical cable is fixed to the first pressing plate to transfer an external force exerted on the multi-fiber optical cable to the housing rather than the fibers of the multi-fiber optical cable; and
- wherein a crimp ring is crimped on the first end of the single-fiber optical cable, and the crimp ring has a diameter larger than that of the hole formed in the second pressing plate to prevent the single-fiber optical cable from being disengaged from the second pressing plate and transfer an external force exerted on the single-fiber optical cable to the housing rather than the fiber of the single-fiber optical cable.
24. The fiber optic connection assembly according to claim 20,
- wherein the multi-fiber optical cable and the single-fiber optical cable are hermetically fitted in the fan-out member by filling a sealing gel into the fan-out member.
25. The fiber optic connection assembly according to claim 24, wherein the fan-out member comprising:
- a housing having a chamber therein; and
- an end plate fitted in a port of the housing,
- wherein the first end of the single-fiber optical cable passes through a hole in the end plate and extends into the chamber,
- wherein the first end of the multi-fiber optical cable extends into the chamber of the housing, and
- wherein the sealing gel is filled into the chamber of the housing, so that the multi-fiber optical cable and the single-fiber optical cable are hermetically fitted in the fan-out member.
26. The fiber optic connection assembly according to claim 25,
- wherein the multi-fiber optical cable is fixed to the housing to transfer an external force exerted on the multi-fiber optical cable to the housing rather than the fibers of the multi-fiber optical cable; and
- wherein a crimp ring is crimped on the first end of the single-fiber optical cable, and the crimp ring has a diameter larger than that of the hole in the end plate to prevent the single-fiber optical cable from being disengaged from the end plate and transfer an external force exerted on the single-fiber optical cable to the housing rather than the fiber of the single-fiber optical cable.
27. The fiber optic connection assembly according to claim 26, wherein the fan-out member further comprising:
- a tray received in the chamber of the housing and constructed to store and manage the redundant fibers of the multi-fiber optical cable.
28. The fiber optic connection assembly according to claim 26,
- wherein Kevlar elements of the multi-fiber optical cable are directly joined to the crimp ring of the single-fiber optical cables by the sealing gel.
29. The fiber optic connection assembly according to claim, wherein the fan-out member further comprising:
- an elastic tail sleeve sleeved on the multi-fiber optical cable and/or the single-fiber optical cables and connected to the housing or the end plate to protect the multi-fiber optical cable and/or the single-fiber optical cables from being damaged by a lateral force.
30. The fiber optic connection assembly according to claim 1,
- wherein the plurality of single-fiber optical cables each has a fiber spliced with a respective one of the plurality of fibers of the multi-fiber optical cable in the fan-out member.
31. The fiber optic connection assembly according to claim 1,
- wherein a splitter is disposed in the fan-out member to separate the multi-fiber optical cable into a plurality of fibers.
32. The fiber optic connection assembly according to claim 31,
- wherein the plurality of fibers of the multi-fiber optical cable each runs through a respective one of the single-fiber optical cables and is terminated at the single-fiber optic connector on the respective one of the single-fiber optical cables.
Type: Application
Filed: Mar 27, 2014
Publication Date: Feb 11, 2016
Inventors: Zhengbin WANG (Shanghai), Wenyong FAN (Shanghai), Jianfeng JIN (Shanghai), Xin TIAN (Shanghai), Liming WANG (Shanghai)
Application Number: 14/782,934