CN205301660U - Optical/electrical composite optical fiber termination box - Google Patents

Optical/electrical composite optical fiber termination box Download PDF

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Publication number
CN205301660U
CN205301660U CN201521111514.0U CN201521111514U CN205301660U CN 205301660 U CN205301660 U CN 205301660U CN 201521111514 U CN201521111514 U CN 201521111514U CN 205301660 U CN205301660 U CN 205301660U
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China
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district
box body
optical
optical fiber
electric wire
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CN201521111514.0U
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Chinese (zh)
Inventor
李海涛
崔兵
欧荣辉
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Xiangjiang Technology Group Co ltd
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Xiangjiang Technology Co Ltd
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Abstract

The utility model relates to an optical/electrical composite optical fiber termination box, including box body and lid the glazed cable that distributes in the box body is opened and is shelled district, fused fiber splice district, distribution district, redundant tail optical fiber and coil district, tail optical fiber fixed area, electric wire and fix and draw the district, the one end of box body is provided with the optical cable and introduces the circle, and the other end is provided with the electric wire and draws forth circle and tail optical fiber fairlead. The utility model discloses each functional areas is distinguished obviously, and stable in structure with optoelectrical composite technique corollary equipment, reduces and synthesizes the construction cost, improves construction efficiency.

Description

A kind of electro-optical composite GPZ
Technical field
This utility model relates to fiber optic communication field, is a kind of electro-optical composite GPZ.
Background technology
Along with the development of 4G, a lot of transmission base stations are set up one after another, and in 4G communicates, remote power feeding is key point, along with the popularization and application of photoelectricity complex technique, provide strong support for remote power feeding. In traditional base station construction, local side machine room adopts photodetachment technology, and cable, optical cable are separately laid, and pipeline is many, it is loaded down with trivial details to construct, costly, and current situation end carries out photoelectricity complex technique, can lower comprehensive construction cost, improves construction efficiency.
Utility model content
Goal of the invention of the present utility model is in that: provide a kind of each functional areas to distinguish substantially for solving problem above, and Stability Analysis of Structures reduces comprehensive construction cost, improves the electro-optical composite GPZ of construction efficiency.
This utility model be employed technical scheme comprise that such:
A kind of electro-optical composite GPZ, including box body and lid, has optical cable baring district, fused fiber splice district, distribution district, redundancy tail fiber disc around district at described box distribution in vivo, the fixing draw-out area of tail optical fiber fixed area, electric wire; Being provided with optical cable in one end of described box body and introduce circle, the other end is provided with electric wire and draws circle and tail optical fiber fairlead.
Further, described optical cable baring district is mainly some optical cable colligation positions, and its optical cable on described box body introduces circle one end and arranges.
Further, described fused fiber splice district is mainly 12 core fusion joining disks, and described 12 core fusion joining disks are arranged below returning face plate, and described returning face plate side is by hinge turnover panel bearing on described box bottom; Described returning face plate level and described box bottom have certain distance.
Further, being fixed with magnet support module at described box bottom, be used for supporting described 12 core fusion joining disk and returning face plates, itself and described turnover panel bearing are in and are oppositely arranged.
Further, described distribution district is positioned at below described 12 core fusion joining disks, is mainly some binding posts.
Further, described redundancy tail fiber disc mainly include around district some fasten in box body binding bridge, around described 12 core fusion joining disks arrange cross coil.
Further, described tail optical fiber fixed area be mainly some side by side, the fixing seat of tail optical fiber that arranges of relatively described tail optical fiber fairlead, it closes on and is arranged on box body electric wire and draws circle and one end that tail optical fiber fairlead is arranged, and the fixing seat of described tail optical fiber keeps certain distance with box bottom.
Further, the fixing draw-out area of described electric wire includes wire binding position, and it closes on and is arranged on box body electric wire and draws circle and one end, corresponding described electric wire that tail optical fiber fairlead is arranged are drawn circle and arranged.
Further, described box bottom is additionally provided with box body earthing screw, is connected by box body earth lead, draw circle from described electric wire and draw ground connection.
Further, in box body, it is configured with optical cable ground post, closes on described optical cable baring district and arrange; Described optical cable ground post is made up of insulant and screw and is fixed on box bottom, for grafting optical cable strengthening core.
In sum, owing to adopting technique scheme, the beneficial effects of the utility model are:
The internal each functional areas of this utility model are distinguished substantially, Stability Analysis of Structures, easy to install and use, safety; For photoelectricity complex technique corollary equipment, reduction comprehensive construction cost, raising construction efficiency.
Accompanying drawing explanation
Fig. 1 is fusion joining disk rollover states overall structure axonometric chart of the present invention;
Fig. 2 is fusion joining disk horizontal state overall structure figure of the present invention;
Fig. 3 is present configuration top view;
Fig. 4 is this utility model internal optical fiber cabling schematic diagram;
Fig. 5 is this utility model internal circuit cabling schematic diagram.
Labelling in figure: 1 box body; 2 12 core fusion joining disks; 3 optical cable ground posts; 4 optical cable colligation positions; 5 screw of handle; 6 wire binding positions; 7 box body earthing screws; 8 magnet support modules; 9 binding posts; 10 hinges; 11 returning face plates; 12 turnover panel bearings; 13 tail optical fibers fix seat; 14 cross coil; 15 lids; 16 optical cables introduce circle; 17 wire lead-out hole; 18 tail optical fiber fairleads.
Detailed description of the invention
Below in conjunction with accompanying drawing, this utility model is described in further detail.
As shown in Fig. 1 ~ 3, a kind of electro-optical composite GPZ, including box body 1 and lid 15, both connect fixing by screw of handle 5; In described box body 1, distribution has optical cable baring district, fused fiber splice district, distribution district, redundancy tail fiber disc around district, draw-out area fixed by tail optical fiber fixed area, electric wire, and individual functional areas are distinguished substantially, Stability Analysis of Structures; Being provided with two optical cables in one end of described box body 1 and introduce circles 16, the other end is provided with an electric wire and draws circle 17 and two groups totally 24 tail optical fiber fairleads 18.
Described optical cable baring district is mainly two optical cable colligation positions 4, and with described box body 1 integrated molding, its described optical cable on described box body 1 introduces circle 16 one end, corresponding described optical cable introduces circle 16 setting; It is configured with two optical cable ground posts 3 in box body 1, closes on optical cable colligation position, described optical cable baring district 4 and arrange; Described optical cable ground post 3 is made up of insulant and screw and is fixed on box body 1 bottom surface, for grafting optical cable strengthening core.
Described fused fiber splice district is mainly 12 core fusion joining disks, and fusion joining disk radius of curvature, more than 37.5mm, is beneficial to fused fiber splice and takes inventory, and reduces fibre loss; Below described 12 core fusion joining disks, integrated setting has returning face plate 11, and described returning face plate side is hinged with the turnover panel bearing 12 being fixed on described box body 1 bottom surface fixing by hinge 10; There is certain distance described returning face plate 11 level and described box body 1 bottom surface; Being fixed with magnet support module 8 in described box body 1 bottom surface, be used for supporting described 12 core fusion joining disk and returning face plates, itself and described turnover panel bearing are in and are oppositely arranged. Fixing returning face plate 11 can be sucked, be also convenient for returning face plate 11 simultaneously and stir.
Described distribution district is positioned at below described 12 core fusion joining disks, is mainly 23 binding posts 9, for electric wire connection operation and fixing extraction.
Described redundancy tail fiber disc mainly includes some fastening and crosses coil in box body binding bridge, around what described 12 core fusion joining disks were arranged around district.
Described tail optical fiber fixed area be mainly two groups side by side, the fixing seat 13 of tail optical fiber that arranges of relatively described tail optical fiber fairlead 18, it closes on and is arranged on box body 1 electric wire and draws circle 17 and one end that tail optical fiber fairlead 18 is arranged, can fix tail optical fiber and prevent from box body tail optical fiber from being pullled by outside getting loose;And keep certain distance with box bottom, be in same level, convenient connection with 12 core fusion joining disks, be also convenient for lower floor's routing electric wires simultaneously.
The fixing draw-out area of described electric wire includes wire binding position 6, and it closes on and is arranged on box body electric wire and draws circle 17 and circle 17 setting drawn by one end, corresponding described electric wire that tail optical fiber fairlead 18 is arranged; With nylon cable tie traverse wire binding position 6 colligation power cable, it is prevented that in box body 1, electric wire is pullled by outside and got loose.
Described box body 1 bottom surface is welded with the box body earthing screw 7 of M6, is connected by box body earth lead, draw circle 17 extraction ground connection from described electric wire.
Adopt the structure that levels and ectonexine combine in box body 1, upper strata be fused fiber splice operation and tail optical fiber fixing is drawn, outer layer be redundancy tail fiber disc around, lower floor and internal layer are electric wire connection operation and fixing draw, well arranged, do not interfere with each other.
Optoelectronic composite cable introduces circle 16 access from box body one end optical cable and enters optical cable baring district, the optical cable strengthening core in optoelectronic composite cable and optical cable ground post 3 grafting, and the earth lead that earthing rod is drawn, below 12 core fusion joining disks 2, draws circle 17 extraction ground connection from electric wire; Optoelectronic composite cable fiber section enters 12 core fusion joining disks 2 and carries out fusing operation with tail optical fiber, and redundancy tail optical fiber part is coiled in redundancy tail fiber disc around district, draws tail optical fiber part and is fixed by the fixing seat 13 of tail optical fiber, picks out (such as Fig. 4) from box body 1 other end tail optical fiber fairlead 18; Optoelectronic composite cable Cord section, below 12 core fusion joining disks 2, is attached with external cable on binding post 9, and external cable, by way of the fixing draw-out area of electric wire, is drawn circle 17 by electric wire and picked out (such as Fig. 5).
The foregoing is only preferred embodiment of the present utility model; not in order to limit this utility model; all any amendment, equivalent replacement and improvement etc. made within spirit of the present utility model and principle, should be included within protection domain of the present utility model.

Claims (10)

1. an electro-optical composite GPZ, it is characterised in that: include box body and lid, have optical cable baring district, fused fiber splice district, distribution district, redundancy tail fiber disc around district at described box distribution in vivo, the fixing draw-out area of tail optical fiber fixed area, electric wire; Being provided with optical cable in one end of described box body and introduce circle, the other end is provided with electric wire and draws circle and tail optical fiber fairlead.
2. a kind of electro-optical composite GPZ according to claim 1, it is characterised in that: described optical cable baring district is mainly some optical cable colligation positions, and its optical cable on described box body introduces circle one end and arranges.
3. a kind of electro-optical composite GPZ according to claim 1, it is characterized in that: described fused fiber splice district is mainly 12 core fusion joining disks, described 12 core fusion joining disks are arranged below returning face plate, and described returning face plate side is by hinge turnover panel bearing on described box bottom; Described returning face plate level and described box bottom have certain distance.
4. a kind of electro-optical composite GPZ according to claim 3, it is characterised in that: being fixed with magnet support module at described box bottom, be used for supporting described 12 core fusion joining disk and returning face plates, itself and described turnover panel bearing are in and are oppositely arranged.
5. a kind of electro-optical composite GPZ according to claim 1, it is characterised in that: described distribution district is positioned at below described 12 core fusion joining disks, is mainly some binding posts.
6. a kind of electro-optical composite GPZ according to claim 1, it is characterised in that: described redundancy tail fiber disc mainly includes some fastening and crosses coil in box body binding bridge, around what described 12 core fusion joining disks were arranged around district.
7. a kind of electro-optical composite GPZ according to claim 1, it is characterized in that: described tail optical fiber fixed area be mainly some side by side, the fixing seat of tail optical fiber that arranges of relatively described tail optical fiber fairlead, it closes on and is arranged on box body electric wire and draws circle and one end that tail optical fiber fairlead is arranged, and the fixing seat of described tail optical fiber keeps certain distance with box bottom.
8. a kind of electro-optical composite GPZ according to claim 1, it is characterized in that: the fixing draw-out area of described electric wire includes wire binding position, it closes on and is arranged on box body electric wire and draws circle and one end, corresponding described electric wire that tail optical fiber fairlead is arranged are drawn circle and arranged.
9. a kind of electro-optical composite GPZ according to claim 1, it is characterised in that: on described box bottom, it is additionally provided with box body earthing screw, is connected by box body earth lead, draw circle from described electric wire and draw ground connection.
10. a kind of electro-optical composite GPZ according to claim 1, it is characterised in that: it is configured with optical cable ground post in box body, closes on described optical cable baring district and arrange; Described optical cable ground post is made up of insulant and screw and is fixed on box bottom, for grafting optical cable strengthening core.
CN201521111514.0U 2015-12-29 2015-12-29 Optical/electrical composite optical fiber termination box Active CN205301660U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521111514.0U CN205301660U (en) 2015-12-29 2015-12-29 Optical/electrical composite optical fiber termination box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521111514.0U CN205301660U (en) 2015-12-29 2015-12-29 Optical/electrical composite optical fiber termination box

Publications (1)

Publication Number Publication Date
CN205301660U true CN205301660U (en) 2016-06-08

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CN201521111514.0U Active CN205301660U (en) 2015-12-29 2015-12-29 Optical/electrical composite optical fiber termination box

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110192138A (en) * 2017-02-14 2019-08-30 华为技术有限公司 A kind of optical cable fusion connecting disk
CN112928717A (en) * 2021-02-05 2021-06-08 王世杰 Cable branching box for communication line equipment

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110192138A (en) * 2017-02-14 2019-08-30 华为技术有限公司 A kind of optical cable fusion connecting disk
CN110192138B (en) * 2017-02-14 2021-01-05 华为技术有限公司 Melting distribution plate
CN112928717A (en) * 2021-02-05 2021-06-08 王世杰 Cable branching box for communication line equipment
CN112928717B (en) * 2021-02-05 2022-07-19 浙江劳兰信息技术有限公司 Cable branching box for communication line equipment

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C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address

Address after: 212215 No. 580, Xing Lung Industrial Zone, Yangzhong City, Zhenjiang, Jiangsu.

Patentee after: Xiangjiang Technology (Group) Co.,Ltd.

Country or region after: China

Address before: 212215 No. 580, Xing Lung Industrial Zone, Yangzhong City, Zhenjiang, Jiangsu.

Patentee before: XIANGJIANG TECHNOLOGY Co.,Ltd.

Country or region before: China

CP03 Change of name, title or address