CN211263897U - Intelligent optical cable cross-connecting box - Google Patents

Intelligent optical cable cross-connecting box Download PDF

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Publication number
CN211263897U
CN211263897U CN202020110154.7U CN202020110154U CN211263897U CN 211263897 U CN211263897 U CN 211263897U CN 202020110154 U CN202020110154 U CN 202020110154U CN 211263897 U CN211263897 U CN 211263897U
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optical cable
sleeve
sliding
box
frame
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CN202020110154.7U
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Chinese (zh)
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李孝儿
蒋剑飞
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Hangzhou Zhongkai Telecommunication Equipment Co ltd
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Hangzhou Zhongkai Telecommunication Equipment Co ltd
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Abstract

The utility model discloses an intelligence optical cable distributing box, including handing-over box and optical divider, the inside of handing-over box is provided with the under casing, and the inside of under casing is provided with except that the wet room, except that the inside of wet room is provided with the diaphragm, and the inside small opening that is provided with of diaphragm, the frame is installed to the top of diaphragm, and the outer wall of frame is provided with the stainless steel filter screen, radiator fan is all installed to except that the left and right sides of wet room, and radiator fan keeps away from one side installation of removing the wet room and has the gas pocket. This intelligence optical cable distributing box is provided with the stainless steel filter screen, and when the inside of frame was flowed through to the gas, the drier can effectual absorption gas carry moist gas, can effectually avoid moist gas to the corruption of distributing box internal components, influence the precision of the operation of subassembly to and can effectual reduction maintain or change the cost or the time that consumes, thereby can effectual improvement handing-over box store the long-term of subassembly operation.

Description

Intelligent optical cable cross-connecting box
Technical Field
The utility model relates to an optical cable distributing box technical field specifically is an intelligent optical cable distributing box.
Background
The optical cable cross-connecting box is cross-connecting equipment for providing optical cable terminating and jumper connection for optical cables of a main layer and an optical cable of a wiring layer. After the optical cable is introduced into the optical cable cross-connecting box, after fixing, terminating and fiber distributing, the main layer optical cable and the wiring layer optical cable are communicated by using the jump fiber. The optical cable cross connecting box is mainly used for interface equipment at the cross joint of a main optical cable and a distribution optical cable in an optical cable access network. The structure of the optical cable cross-connecting box mainly comprises a box body, an internal metal workpiece, an optical fiber movable connector and spare accessories. According to different use occasions, the indoor type and the outdoor type can be divided, and the indoor type and the outdoor type can be installed on the ground, overhead and wall.
Present optical cable distributing box is in the use, humid gas is invaded easily to optical cable distributing box's inside, humid gas has certain corrosive action to the subassembly, and the subassembly receives the corruption, will influence the operation precision of subassembly, and the heat that optical cable distributing box's inside subassembly produced obtains not effectual volatilizing, produce the damage to the subassembly easily, and when the optical cable received the outside dynamics of dragging, the junction between optical cable and the optical cable distributing box produced the fracture easily, and the junction will suffer the damage, can not be fine satisfy people's user demand, to the above-mentioned condition, carry out technical innovation on current optical cable distributing box basis.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an intelligence optical cable distributing box, in order to solve present optical cable distributing box in the above-mentioned background art and in the use, humid gas is invaded easily to optical cable distributing box's inside, humid gas has certain corrosive action to the subassembly, and the subassembly receives the corruption, the operation precision that will influence the subassembly, and the heat that the inside subassembly of optical cable distributing box produced can not obtain effectual volatilizing, produce the damage to the subassembly easily, and when the optical cable received the outside dynamics of dragging, the junction between optical cable and the optical cable distributing box produced the fracture easily, and the junction will suffer the damage, can not be fine satisfies people's user demand problem.
In order to achieve the above object, the utility model provides a following technical scheme: an intelligent optical cable cross connecting cabinet comprises a cross connecting cabinet body and an optical splitter, wherein a bottom cabinet is arranged in the cross connecting cabinet body, and the inside of the bottom box is provided with a moisture removing chamber, the inside of the moisture removing chamber is provided with a transverse plate, the inside of the transverse plate is provided with a leak hole, a frame is arranged above the transverse plate, and the outer wall of the frame is provided with a stainless steel filter screen, the left side and the right side of the dehumidifying chamber are both provided with a cooling fan, and the side of the heat radiation fan far away from the moisture removing chamber is provided with an air hole, an optical cable lead-in grounding cabinet is arranged above the bottom box, and a wire bundling mechanism is arranged in the optical cable lead-in grounding cabinet, one side of the optical splitter is provided with a fiber storage device, and the optical splitter is positioned above the optical cable leading-in grounding cabinet, one side of the fiber storage device is provided with a fiber melting and distributing integrated module, and a signal acquisition controller is arranged above the fiber melting and distributing integrated module.
Preferably, remove and be connected between damp room and the diaphragm, and the inside evenly distributed of small opening along the diaphragm, remove and be connected between damp room and the frame, and be connected between frame and the stainless steel filter screen.
Preferably, the heat dissipation fan is connected with the cross-connecting box body, and the heat dissipation fan and the air holes are symmetrically distributed around the vertical center line of the cross-connecting box body.
Preferably, bunching mechanism is including connecting slide, column jacket, rubber sleeve, briquetting, stop screw, spout, slide bar and sliding sleeve, the inside of connecting the slide is provided with the column jacket, and the inside of column jacket is provided with the rubber sleeve, the briquetting is installed to the inside front end of rubber sleeve, and the front end of briquetting installs stop screw, connect the left and right sides of slide and all install the spout, and the inside of spout is provided with the sliding sleeve, the inside of sliding sleeve runs through there is the slide bar.
Preferably, connect between slide and the column jacket and be connected between column jacket and the rubber sleeve, the column jacket is connected between stop screw and the stop screw through stop screw, and column jacket and rubber sleeve all along the horizontal central line direction evenly distributed of connecting the slide.
Preferably, be connected between connection slide and the sliding sleeve, and the slide bar runs through in the inside of sliding sleeve to all distribute about the vertical central line symmetry of connecting the slide between spout and the slide bar.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model is provided with the stainless steel filter screen, when the gas flows through the inside of the frame, the drying agent can effectively absorb the humid gas carried by the gas, can effectively avoid the corrosion of the humid gas to the internal components of the cross-connecting box, influence the accuracy of the operation of the components, and can effectively reduce the cost or time consumed by maintenance or replacement, thereby effectively improving the long-term effect of the operation of the storage components of the cross-connecting box;
2. the utility model is provided with the heat radiation fan and the air holes, and can effectively flow the gas in the interior of the cross-connecting box body under the action of the heat radiation fan, so that the gas can effectively provide cooling treatment for the assembly, the high temperature accumulation generated by the operation of the assembly is avoided, and the symmetrical distribution of the air holes can effectively keep the circulation of the gas, thereby effectively improving the cooling effect of the gas on the assembly;
3. the utility model is provided with a wire bundling mechanism, the height of the connecting sliding plate is moved along the central axis direction of the sliding rod through the sliding sleeve until the connecting sliding plate is adjusted to a proper position, so that the connecting sliding plate can effectively adapt to the introduction of the optical cable into the inner space of the grounding cabinet, the symmetrical distribution of the sliding chute and the sliding rod can effectively avoid the connecting sliding plate from deflecting, so that the connecting sliding plate can be stably adjusted, the rubber sleeve can effectively separate the optical cable from the column sleeve, the optical cable can be effectively prevented from being excessively worn, the optical cable is prevented from being damaged, the optical cable can be effectively and independently placed through the uniform distribution of the column sleeve, different storage positions can be effectively provided for the optical cable, the optical cable can be effectively prevented from being wound, the optical cable can be effectively provided with proper arrangement, the convenience for maintaining the optical cable can be effectively provided, and the pressing block, the position that can effectual restriction optical cable avoids the optical cable to receive to drag the interior subassembly junction that breaks away from the handing-over box to can the effectual performance of pulling of improvement optical cable, can effectually keep the stability of optical cable connection.
Drawings
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is a schematic side view of the present invention;
fig. 3 is a schematic top view of the inside of the cross-connecting box of the present invention;
fig. 4 is a schematic top view of the column jacket of the present invention;
fig. 5 is a schematic view of a part a of the enlarged structure of fig. 1 according to the present invention.
In the figure: 1. handing over the box body; 2. a bottom box; 3. a moisture removal chamber; 4. a transverse plate; 5. a leak hole; 6. a frame; 7. a stainless steel filter screen; 8. a heat radiation fan; 9. air holes; 10. the optical cable is led into the grounding cabinet; 11. a wire bundling mechanism; 1101. connecting a sliding plate; 1102. a column sleeve; 1103. a rubber sleeve; 1104. briquetting; 1105. a limit screw; 1106. a chute; 1107. a slide bar; 1108. a sliding sleeve; 12. an optical splitter; 13. a fiber storage device; 14. a fused fiber and wiring integrated module; 15. a signal acquisition controller.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: an intelligent optical cable cross-connecting box comprises a cross-connecting box body 1 and an optical splitter 12, wherein a bottom box 2 is arranged inside the cross-connecting box body 1, a dehumidifying chamber 3 is arranged inside the bottom box 2, a transverse plate 4 is arranged inside the dehumidifying chamber 3, a leak hole 5 is arranged inside the transverse plate 4, a frame 6 is arranged above the transverse plate 4, a stainless steel filter screen 7 is arranged on the outer wall of the frame 6, the dehumidifying chamber 3 is connected with the transverse plate 4, the leak holes 5 are uniformly distributed along the inside of the transverse plate 4, the dehumidifying chamber 3 is connected with the frame 6, the frame 6 is connected with the stainless steel filter screen 7, a user can place a drying agent into the frame 6, the reticular structure of the stainless steel filter screen 7 can effectively ensure the flowing of gas, when the gas flows through the inside of the frame 6, the drying agent can effectively absorb the humid gas carried by the gas, and can effectively avoid the corrosion of the humid gas to the internal components of the cross-connecting box, the accuracy of the operation of the components is influenced, the cost or time consumed by maintenance or replacement can be effectively reduced, so that the long-term operation of the storage components of the transfer box body 1 can be effectively improved, the drain holes 5 can effectively guide water into the lower part of the transverse plate 4 to store water flow, centralized treatment can be realized, and the utilization efficiency of the drying agent can be effectively improved;
the left side and the right side of the dehumidifying chamber 3 are respectively provided with a heat radiation fan 8, one side of the heat radiation fan 8 far away from the dehumidifying chamber 3 is provided with an air hole 9, the heat radiation fan 8 is connected with the handover box body 1, the heat radiation fan 8 and the air hole 9 are symmetrically distributed about the vertical central line of the handover box body 1, under the action of the heat radiation fan 8, gas can effectively flow in the handover box body 1, so that the gas can effectively provide cooling treatment for the assembly, high-temperature accumulation generated by the operation of the assembly is avoided, the symmetric distribution of the air holes 9 can effectively keep the circulation of the gas, so that the cooling effect of the gas on the assembly can be effectively improved, an optical cable introducing grounding cabinet 10 is arranged above the bottom box 2, a wire bundling mechanism 11 is arranged in the optical cable introducing grounding cabinet 10, the wire bundling mechanism 11 comprises a connecting sliding plate 1101, a column sleeve 1102, a rubber sleeve 1103, a, A limit screw 1105, a sliding chute 1106, a sliding rod 1107 and a sliding sleeve 1108, wherein a column sleeve 1102 is arranged inside the connecting sliding plate 1101, a rubber sleeve 1103 is arranged inside the column sleeve 1102, a pressing block 1104 is arranged at the front end inside the rubber sleeve 1103, the limit screw 1105 is arranged at the front end of the pressing block 1104, the sliding chutes 1106 are arranged on the left side and the right side of the connecting sliding plate 1101, the sliding sleeve 1108 is arranged inside the sliding chute 1106, the sliding rod 1107 penetrates through the inside of the sliding sleeve 1108, the connecting sliding plate 1101 is connected with the column sleeve 1102, the column sleeve 1102 is connected with the rubber sleeve 1103, the column sleeve 1102 is connected with the limit screw 1105 through the limit screw 1105, the column sleeve 1102 and the rubber sleeve 1103 are uniformly distributed along the horizontal central line direction of the connecting sliding plate 1101, a user can penetrate an optical cable into the column sleeve 1102, at the moment, the rubber sleeve 1103 can effectively separate the optical cable from the column sleeve 1102, and can, the optical cable is damaged, the optical cable can be effectively and independently separated and placed by the uniform distribution of the column sleeves 1102, different storage positions can be effectively provided for the optical cable, the optical cable is prevented from being wound, proper arrangement can be effectively provided for the optical cable, the convenience of maintaining the optical cable can be effectively provided, and a user can apply rotating force to the limiting screw 1105 to enable the limiting screw 1105 to push the pressing block 1104 to move, the pressing block 1104 and the optical cable are in mutual contact, the pressing force of the pressing block 1104 can be effectively applied to the optical cable, the position of the optical cable can be effectively limited, the optical cable is prevented from being pulled to be separated from the connection position of the internal components of the cross-connection box body 1, the anti-pulling performance of the optical cable can be effectively improved, and the;
the connecting sliding plate 1101 is connected with the sliding sleeve 1108, and the sliding rod 1107 penetrates through the inner part of the sliding sleeve 1108, and the sliding grooves 1106 and the sliding rods 1107 are symmetrically distributed about the vertical center line of the connection sliding plate 1101, the user can move the height of the connection sliding plate 1101 along the central axis direction of the sliding rods 1107 through the sliding sleeves 1108 until the connection sliding plate 1101 is adjusted to a proper position, so that the connection slide 1101 can effectively accommodate the introduction of the optical cable into the inner space of the grounding cabinet 10, while the symmetrical distribution of the sliding grooves 1106 and the sliding rods 1107 can effectively avoid the deflection of the connecting sliding plate 1101, so that the connection sliding plate 1101 can be stably adjusted, one side of the optical splitter 12 is provided with the fiber storage device 13, and the optical splitter 12 is positioned above the cable leading-in grounding cabinet 10, one side of the fiber storage device 13 is provided with a fiber melting and distributing integrated module 14, and a signal acquisition controller 15 is arranged above the fiber melting and distributing integrated module 14.
The working principle is as follows: when the intelligent optical cable cross-connecting box is used, firstly, a user can move the height of the connecting sliding plate 1101 along the central axis direction of the sliding rod 1107 through the sliding sleeve 1108 until the connecting sliding plate 1101 is adjusted to a proper position;
secondly, the user can insert the optical cable into the interior of the post sleeve 1102, and at this time, the rubber sleeve 1103 can effectively separate the optical cable from the post sleeve 1102, the column sleeve 1102 can effectively provide different storage positions for the optical cables, the optical cables can be placed separately, the optical cables are prevented from being wound with each other, proper arrangement is provided for the optical cables, then, the user can apply a rotational force to the limit screw 1105, so that the limit screw 1105 pushes the pressing block 1104 to move, the pressing block 1104 and the optical cable are contacted with each other, so that the pressing block 1104 can effectively apply pressing force to the optical cable, can effectively limit the position of the optical cable, the user can then place the desiccant inside the frame 6, while the mesh structure of the stainless steel screen 7 effectively ensures the flow of gas, which, when flowing through the inside of the frame 6, the drying agent can effectively absorb the humid gas carried by the gas and can effectively avoid the corrosion of the humid gas to the internal components of the transfer box body 1;
finally, start radiator fan 8 for radiator fan 8 can be effectual with gaseous inside flow in handing-over box 1, makes gaseous can be effectual for the subassembly provides the cooling and handles.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides an intelligence optical cable distributing box, includes distributing box (1) and optical divider (12), its characterized in that: the inside of the cross-connecting box body (1) is provided with a bottom box (2), the inside of the bottom box (2) is provided with a moisture removing chamber (3), the inside of the moisture removing chamber (3) is provided with a transverse plate (4), the inside of the transverse plate (4) is provided with a leakage hole (5), a frame (6) is installed above the transverse plate (4), the outer wall of the frame (6) is provided with a stainless steel filter screen (7), the left side and the right side of the moisture removing chamber (3) are both provided with cooling fans (8), one side of each cooling fan (8) far away from the moisture removing chamber (3) is provided with an air hole (9), the top of the bottom box (2) is provided with an optical cable introduction grounding cabinet (10), the inside of the optical cable introduction grounding cabinet (10) is provided with a wiring mechanism (11), one side of the optical branching device (12) is provided with a fiber storage device (13), and the optical branching device (12) is positioned above the optical, one side of the fiber storage device (13) is provided with a fiber melting and distributing integrated module (14), and a signal acquisition controller (15) is arranged above the fiber melting and distributing integrated module (14).
2. The intelligent optical cable cross-connecting cabinet of claim 1, wherein: remove and be connected between moisture chamber (3) and diaphragm (4), and inside evenly distributed along diaphragm (4) of small opening (5), remove and be connected between moisture chamber (3) and frame (6), and be connected between frame (6) and stainless steel filter screen (7).
3. The intelligent optical cable cross-connecting cabinet of claim 1, wherein: the heat radiation fan (8) is connected with the cross-connecting box body (1), and the heat radiation fan (8) and the air holes (9) are symmetrically distributed relative to the vertical central line of the cross-connecting box body (1).
4. The intelligent optical cable cross-connecting cabinet of claim 1, wherein: wire bundling mechanism (11) is including connecting slide (1101), post cover (1102), rubber sleeve (1103), briquetting (1104), stop screw (1105), spout (1106), slide bar (1107) and sliding sleeve (1108), the inside of connecting slide (1101) is provided with post cover (1102), and the inside of post cover (1102) is provided with rubber sleeve (1103), briquetting (1104) are installed to the inside front end of rubber sleeve (1103), and stop screw (1105) are installed to the front end of briquetting (1104), spout (1106) are all installed to the left and right sides of connecting slide (1101), and the inside of spout (1106) is provided with sliding sleeve (1108), sliding rod (1107) has been run through to the inside of sliding sleeve (1108).
5. The intelligent optical cable cross-connecting cabinet of claim 4, wherein: the connecting sliding plate (1101) is connected with the column sleeve (1102), the column sleeve (1102) is connected with the rubber sleeve (1103), the column sleeve (1102) is connected with the limiting screw (1105) through the limiting screw (1105), and the column sleeve (1102) and the rubber sleeve (1103) are uniformly distributed along the horizontal center line direction of the connecting sliding plate (1101).
6. The intelligent optical cable cross-connecting cabinet of claim 4, wherein: the connecting sliding plate (1101) is connected with the sliding sleeve (1108), the sliding rod (1107) penetrates through the inside of the sliding sleeve (1108), and the sliding groove (1106) and the sliding rod (1107) are symmetrically distributed about the vertical central line of the connecting sliding plate (1101).
CN202020110154.7U 2020-01-18 2020-01-18 Intelligent optical cable cross-connecting box Active CN211263897U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020110154.7U CN211263897U (en) 2020-01-18 2020-01-18 Intelligent optical cable cross-connecting box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020110154.7U CN211263897U (en) 2020-01-18 2020-01-18 Intelligent optical cable cross-connecting box

Publications (1)

Publication Number Publication Date
CN211263897U true CN211263897U (en) 2020-08-14

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112859270A (en) * 2021-01-20 2021-05-28 江苏金卓能技术有限公司 Optical cross-connecting box body for communication
CN117687163A (en) * 2024-02-02 2024-03-12 杭州富阳天泰通信器材有限公司 Radiating assembly for outdoor optical cable cross connecting cabinet

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112859270A (en) * 2021-01-20 2021-05-28 江苏金卓能技术有限公司 Optical cross-connecting box body for communication
CN117687163A (en) * 2024-02-02 2024-03-12 杭州富阳天泰通信器材有限公司 Radiating assembly for outdoor optical cable cross connecting cabinet
CN117687163B (en) * 2024-02-02 2024-05-28 杭州富阳天泰通信器材有限公司 Radiating assembly for outdoor optical cable cross connecting cabinet

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