Intelligent layered wiring system of photoelectric composite communication cable

Through innovative snap-fit ​​and fixing structures, the problem of cumbersome cable bracket bolt fixing operations in existing optoelectronic composite communication cable wiring systems has been solved, enabling rapid installation of switches and efficient cable fixing, thereby improving assembly efficiency and heat dissipation performance.

CN120896073AInactive Publication Date: 2025-11-04JIANGSU YONGQI ELECTRICAL GROUP CO LTD
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Patent Information

Application Number
CN202511097382.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2025-11-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In existing layered cabling systems for optoelectronic composite communication cables, the installation of cable brackets using bolts is cumbersome and inefficient.

Method used

The system employs an elliptical disc, knob, mounting plate, sliding rod, push plate, and return spring. Rotating the knob drives the elliptical disc to rotate, which in turn pushes the plate to slide, enabling rapid fixing of the inner sleeve post and cable clamp. Using a fixed frame, sliding rod, fork, and return spring, moving the fork moves the locking post, facilitating rapid installation of the switch. Combined with a servo motor-driven air guide structure and cooling fan, heat dissipation efficiency is improved.

Benefits of technology

It enables rapid installation of switches and efficient cable fixing, improving assembly efficiency, and enhances the system's heat dissipation performance through airflow structure and cooling fan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent layered wiring system of a photoelectric composite communication cable, which comprises a cabinet body and a cabinet door, the cabinet body is connected with the cabinet door through a hinge, two supporting columns are fixedly connected in the cabinet body, one side of each supporting column is provided with a first clamping groove, each supporting column is provided with a plurality of clamping structures, and the clamping structures are connected with the cabinet door through a hinge. And a clamping block is arranged in each first clamping groove. According to the device, a moving plate, a second clamping column, a second reset spring and the like are arranged, under elastic reset of the second reset spring, a pushing plate is pushed to move, one side of the pushing plate is made to be attached to the short end of an oval disc, and the pushing plate drives the moving plate to move again through a second sliding rod; and the second clamping columns on the movable plate are clamped into the corresponding second clamping holes, the inner sleeve columns are fixed, and therefore the supporting rods and the cable clamps on the inner sleeve columns are rapidly fixed, assembly is not needed through bolts, and the assembly efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of layered wiring, in particular to an intelligent layered wiring system of an optical-electric composite communication cable. BACKGROUND

[0002] The intelligent layered wiring system of the optical-electric composite communication cable is an innovative system combining the optical-electric composite cable with the intelligent wiring technology, and realizes efficient, flexible and intelligent information transmission and management. When layered wiring, the cable is positioned through the cable support, so that the maintenance personnel can quickly find the communication cable with problems.

[0003] However, in the existing equipment, most of the cable supports are fixedly installed through bolts, and the operation is relatively cumbersome and the assembly efficiency is low. Therefore, the intelligent layered wiring system of the optical-electric composite communication cable is provided. SUMMARY

[0004] The application aims to solve the problems in the prior art and provides an intelligent layered wiring system of an optical-electric composite communication cable.

[0005] In order to achieve the above-mentioned purpose, the application adopts the following technical scheme: an intelligent layered wiring system of an optical-electric composite communication cable, comprising a cabinet body and a cabinet door, the cabinet body and the cabinet door are connected through a hinge, two support columns are fixedly connected in the cabinet body, a first clamping groove is formed in one side of each support column, a plurality of clamping structures are arranged on each support column, a clamping block is arranged in each first clamping groove, a first clamping hole is formed in one side of each clamping block, two clamping blocks at the same horizontal level are fixedly connected on the opposite side of the installation frame, an exchange is fixedly connected in the installation frame through a bolt, a connecting block is fixedly connected at the bottom of each installation frame, a connecting structure is arranged on each connecting block, a second clamping groove is formed in one side of each connecting block, an inner sleeve column is slidably connected in each second clamping groove, a second clamping hole is formed in the side away from each inner sleeve column, a wind guide frame is fixedly connected at the inner top of the cabinet body, a fixed plate is fixedly connected on one side of the wind guide frame, and a wind guide structure is arranged on the fixed plate.

[0006] The connecting structure comprises an oval disc rotatably connected at the bottom of the connecting block, and the bottom of the oval disc is fixedly connected with a knob. The knob is rotated to drive the oval disc to rotate.

[0007] Further description of the above technical scheme is as follows:

[0008] The bottom of the connecting block is fixedly connected with two mounting plates, one side of each mounting plate is slidably connected with two second sliding rods, the ends of the two second sliding rods on the same side are fixedly connected with a push plate, the other ends are fixedly connected with a moving plate, the opposite sides of the two push plates are in close contact with the outer wall of the oval disc, one side of each moving plate is fixedly connected with a second clamping column, each second clamping column is slidably connected to the corresponding side of the connecting block and matched with the corresponding clamping hole, a second reset spring is arranged on each second sliding rod, one end of each second reset spring is fixedly connected with one side of the corresponding mounting plate, and the other end is fixedly connected with one side of the corresponding push plate; under the elastic reset of the second reset spring, the push plate is moved, and one side of the push plate is in close contact with the short end of the oval disc; the push plate moves the moving plate again through the second sliding rod, the second clamping column on the moving plate is clamped into the corresponding second clamping hole, and the inner sleeve column is fixed, so that the support rod and the cable clamp on the inner sleeve column are quickly fixed.

[0009] As a further description of the above technical solution:

[0010] The clamping structure comprises a fixed frame fixedly connected to one side of the support column, a first sliding rod slidably connected to one side of the fixed frame, a first clamping column fixedly connected to one end of the first sliding rod, the first clamping column slidably connected to one side of the support column and matched with the corresponding first clamping hole, a first reset spring arranged on the first sliding rod, one end of the first reset spring fixedly connected to one side of the inside of the fixed frame, and the other end fixedly connected to one side of the first clamping column, the other end of the first sliding rod rotatably connected with a fork, one side of the fork in close contact with one side of the outside of the fixed frame, the fork moved, the fork moved the first sliding rod, the first sliding rod moved the first clamping column, the first clamping column retracted, the fork moved again, under the elastic reset of the first reset spring, the first clamping column clamped into the corresponding first clamping hole, the clamping block fixed, and the staff quickly installed the switch in the cabinet.

[0011] As a further description of the above technical solution:

[0012] The air guide structure comprises a rotating shaft rotatably connected to one side of the fixed plate, a rotating disc fixedly connected to one end of the rotating shaft, a poking column fixedly connected to one side of the rotating disc, the other side of the fixed plate fixedly connected with a servo motor, the output shaft of the servo motor fixedly connected with the other end of the rotating shaft, the servo motor drives the rotating shaft to rotate, the rotating shaft drives the rotating disc to rotate, and the rotating disc drives the poking column to rotate.

[0013] As a further description of the above technical solution:

[0014] The inside of the air guide frame is rotationally connected with a plurality of rotating rods, each of which is fixedly connected with an air guide plate, one end of each of the rotating rods penetrates through one side of the air guide frame and is fixedly connected with a strip-shaped plate, one side of a plurality of the strip-shaped plates is rotationally connected with a pushing column, one end of the pushing column is fixedly connected with a poking rod, a moving groove is formed in one side of the poking rod, the inside of the moving groove is slidably connected with a poking column, the poking column moves the poking rod through the moving groove, the poking rod moves one end of a plurality of the strip-shaped plates through the pushing column, the other end of the plurality of the strip-shaped plates drives the corresponding rotating rods to rotate, the rotating rods drive the corresponding air guide plates to reciprocatingly rotate in a semicircle, and the blowing air flow is guided to be uniformly dispersed.

[0015] As a further description of the above technical solution:

[0016] The upper surface of the cabinet body is fixedly connected with an air bellow, the bottom of the air bellow is in communication with the upper surface of the cabinet body, a plurality of filter holes are formed in the upper surface of the air bellow, a cross plate is fixedly connected in the inside of the air bellow, and a heat dissipation fan is fixedly connected to the bottom of the cross plate. The heat dissipation fan in the inside of the air bellow blows air to dissipate heat in the inside of the cabinet body.

[0017] As a further description of the above technical solution:

[0018] One side of the cabinet door is fixedly installed with a display panel, one side of the inside of the cabinet body is fixedly installed with a PLC control module, and the PLC control module is electrically connected with the display panel and a plurality of switches. When a communication cable fails, the switch feeds back a signal of the failed communication cable to the PLC control module, the display panel displays the specific position of the failed communication cable through the PLC control module, so that maintenance personnel can quickly find and timely repair and handle.

[0019] As a further description of the above technical solution:

[0020] The cabinet body is provided with wire holes and a plurality of heat dissipation grooves on the opposite sides thereof, a rubber sleeve is fixedly connected in the inside of each of the wire holes, and a frame is fixedly connected to each of the opposite sides of the cabinet body. A sliding groove is formed in the opposite sides of the inside of each of the frames, and a filter plate is slidably connected in the two sliding grooves on the same frame. When the filter plate is blocked, it can be directly pulled out upward, so that maintenance personnel can clean the dust and impurities on the filter plate, thereby avoiding affecting the heat dissipation effect of the cabinet body due to blockage.

[0021] As a further description of the above technical solution:

[0022] Four bases are fixedly connected to the bottom of the cabinet body, and an anti-skid pad is fixedly connected to the bottom of each of the bases. The anti-skid pad increases the friction with the ground, thereby improving the stability of the cabinet body.

[0023] As a further description of the above technical solutions:

[0024] The upper surface of each inner sleeve column is fixedly connected with a support rod, and the upper surface of each support rod is fixedly connected with a plurality of cable clamps.

[0025] The present application has the following advantages:

[0026] 1. Compared with the prior art, the intelligent layered wiring system of the photoelectric composite communication cable comprises an oval disc, a knob, a mounting plate, a second sliding rod, a push plate, a moving plate, a second clamping column and a second reset spring, etc. The knob is rotated to drive the oval disc to rotate, the two long ends of the oval disc push the two push plates away from each other, the push plates push the second sliding rod to slide on the corresponding mounting plate and compress the second reset spring, the other end of the second sliding rod pushes the corresponding moving plate to move, the moving plate drives the corresponding second clamping column to move, then the inner sleeve column is inserted into the second clamping slot on the corresponding connecting block, and then the knob is loosened. Under the elastic reset of the second reset spring, the push plate moves and the one side of the push plate is attached to the short end of the oval disc, the push plate moves the moving plate again through the second sliding rod, the second clamping column on the moving plate is clamped into the corresponding second clamping hole, and the inner sleeve column is fixed, so that the support rod and the cable clamp on the inner sleeve column are quickly fixed without the need for assembly by bolts, and the assembly efficiency is improved.

[0027] 2. Compared with the prior art, the intelligent layered wiring system of the photoelectric composite communication cable comprises a fixed frame, a first sliding rod, a first clamping column, a fork and a first reset spring, etc. The fork is actuated to drive the first sliding rod to move, the first sliding rod drives the first clamping column to move, the first clamping column is retracted, and the first reset spring is compressed. Then the mounting frame is placed in the cabinet, and the clamping blocks on both sides of the mounting frame are clamped into the corresponding first clamping slots, and then the fork is actuated again. Under the elastic reset of the first reset spring, the first clamping column is clamped into the corresponding first clamping hole, and the clamping block is fixed, so that the worker can quickly install the switch in the cabinet, and the assembly efficiency is further improved. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 A perspective view of the intelligent layered wiring system of the photoelectric composite communication cable is provided.

[0029] Figure 2 A cross-sectional view of the intelligent layered wiring system of the photoelectric composite communication cable is provided.

[0030] Figure 3 A support column schematic diagram of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0031] Figure 4 An installation frame schematic diagram of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0032] Figure 5 A connection structure schematic diagram of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0033] Figure 6 A connection structure exploded view of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0034] Figure 7 A clamping structure schematic diagram of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0035] Figure 8 A clamping structure exploded view of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0036] Figure 9 A bellows cross-sectional view of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0037] Figure 10 A guide structure schematic diagram of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0038] Figure 11 A guide structure exploded view of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0039] Figure 12 A cabinet schematic diagram of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application;

[0040] Figure 13 A frame and filter plate exploded view of an intelligent layered wiring system of an optical and electrical composite communication cable according to the present application.

[0041] Legend:

[0042] 1, cabinet; 2, cabinet door; 3, support column; 4, first clamping groove; 5, clamping structure; 501, fixed frame; 502, first sliding rod; 503, first clamping column; 504, yoke; 505, first return spring; 6, clamping block; 7, mounting frame; 8, switch; 9, connecting block; 10, inner sleeve column; 11, support rod; 12, cable clamp; 13, connecting structure; 131, oval disc; 132, knob; 133, mounting plate; 134, second sliding rod; 135, push plate; 136, moving plate; 137, second clamping column; 138, second return spring; 14, air guide frame; 15, fixed plate; 16, air guide structure; 161, servo motor; 162, rotating disc; 163, actuating column; 164, rotating rod; 165, air guide plate; 166, strip plate; 167, push column; 168, actuating rod; 17, air bellow; 18, cross plate; 19, heat dissipation fan; 20, rubber sleeve; 21, base; 22, frame; 23, filter plate; 24, PLC control module; 25, heat dissipation groove; 26, display panel. DETAILED DESCRIPTION

[0043] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0044] REFERENCE Figures 1 to 13The application provides an intelligent layered wiring system of an optical-electric composite communication cable, which comprises a cabinet body 1 and a cabinet door 2, a display panel 26 is fixedly installed on one side of the cabinet door 2, the cabinet body 1 is connected with the cabinet door 2 through a hinge, four bases 21 are fixedly connected to the bottom of the cabinet body 1, an antiskid pad is fixedly connected to the bottom of each base 21, two support columns 3 are fixedly connected to the inside of the cabinet body 1, a first clamping groove 4 is formed in one side of each support column 3, a plurality of clamping structures 5 are arranged on each support column 3, a clamping block 6 is formed in each first clamping groove 4, a first clamping hole is formed in one side of each clamping block 6, an installation frame 7 is fixedly connected to the opposite side of two clamping blocks 6 located at the same horizontal plane, an exchange 8 is fixedly connected to the inside of each installation frame 7 through bolts, a connecting block 9 is fixedly connected to the bottom of each installation frame 7, a connecting structure 13 is arranged on each connecting block 9, a second clamping groove is formed in one side of each connecting block 9, an inner sleeve column 10 is slidably connected in each second clamping groove, a support rod 11 is fixedly connected to the upper surface of each inner sleeve column 10, a plurality of cable clamps 12 are fixedly connected to the upper surface of each support rod 11, one end of a communication cable is respectively plugged into a corresponding socket of the exchange 8 through a plug, and the communication cable is clamped into a corresponding cable clamp 12, a second clamping hole is formed in the side of each inner sleeve column 10 away from the other, an air guide frame 14 is fixedly connected to the inner top of the cabinet body 1, a fixed plate 15 is fixedly connected to one side of the air guide frame 14, an air guide structure 16 is arranged on the fixed plate 15, an air bellow 17 is fixedly connected to the upper surface of the cabinet body 1, the bottom of the air bellow 17 is in communication with the upper surface of the cabinet body 1, a plurality of filter holes are formed in the upper surface of the air bellow 17, a cross plate 18 is fixedly connected to the inside of the air bellow 17, a heat dissipation fan 19 is fixedly connected to the bottom of the cross plate 18, a PLC control module 24 is fixedly installed on one side of the inside of the cabinet body 1, the PLC control module 24 is electrically connected with the display panel 26 and the plurality of exchanges 8, one end of the communication cable is respectively plugged into a corresponding socket of the exchange 8 through a plug, and the communication cable is clamped into a corresponding cable clamp 12, a wire hole and a plurality of heat dissipation grooves 25 are formed in the side of the cabinet body 1 away from the other, a rubber sleeve 20 is fixedly connected to the inside of each wire hole, a frame 22 is fixedly connected to the side of the cabinet body 1 away from the other, a sliding groove is formed in the opposite side of the inside of each frame 22, a filter plate 23 is slidably connected in the two sliding grooves on the same frame 22, one end of the communication cable is respectively plugged into a corresponding socket of the exchange 8 through a plug, and the communication cable is clamped into a corresponding cable clamp 12, and the communication cable is fixed;

[0045] In order to realize the purpose of connection, the connecting structure 13 includes an oval disc 131 rotatably connected at the bottom of the connecting block 9, the bottom of the oval disc 131 is fixedly connected with a knob 132, the bottom of the connecting block 9 is fixedly connected with two mounting plates 133, each mounting plate 133 is slidably connected with two second sliding rods 134 at one side, the two second sliding rods 134 at the same side are fixedly connected with a push plate 135 at one end, and are fixedly connected with a moving plate 136 at the other end, the opposite sides of the two push plates 135 are fitted with the outer wall of the oval disc 131, one side of each moving plate 136 is fixedly connected with a second clamping column 137, each second clamping column 137 is slidably connected at the corresponding side of the connecting block 9 and is matched with the corresponding clamping hole, each second sliding rod 134 is sleeved with a second reset spring 138, one end of each second reset spring 138 is fixedly connected with the corresponding mounting plate 133, and the other end is fixedly connected with the corresponding push plate 135, the fork 504 is actuated, the first sliding rod 502 is driven to move, the first sliding rod 502 drives the first clamping column 503 to move, the first clamping column 503 is retracted, and the first reset spring 505 is compressed, then the mounting frame 7 is placed in the cabinet 1, the clamping blocks 6 on both sides of the mounting frame 7 are clamped into the corresponding first clamping grooves 4, then the fork 504 is actuated again, under the elastic reset of the first reset spring 505, the first clamping column 503 is clamped into the corresponding first clamping hole, the clamping block 6 is fixed, the workers can quickly install the switch 8 in the cabinet 1, and the assembly efficiency is further improved;

[0046] In order to realize the purpose of clamping, the clamping structure 5 comprises a fixed frame 501 fixedly connected to one side of the support column 3, one side of the fixed frame 501 penetratingly and slidably connected with a first sliding rod 502, one end of the first sliding rod 502 fixedly connected with a first clamping column 503, the first clamping column 503 penetratingly and slidably connected to one side of the support column 3 and matched with the corresponding first clamping hole, a first return spring 505 sleeved on the first sliding rod 502, one end of the first return spring 505 fixedly connected with the inside of the fixed frame 501, the other end fixedly connected with one side of the first clamping column 503, the other end of the first sliding rod 502 rotatably connected with a yoke 504, one side of the yoke 504 abutting with the outside of the fixed frame 501, the yoke 504 driven to move the first sliding rod 502, the first sliding rod 502 driven to move the first clamping column 503, the first clamping column 503 retracted and the first return spring 505 compressed, then the mounting frame 7 is placed into the cabinet body 1, the clamping blocks 6 on both sides of the mounting frame 7 are clamped into the corresponding first clamping grooves 4 respectively, then the yoke 504 is actuated again, under the elastic return of the first return spring 505, the first clamping column 503 is pushed into the corresponding first clamping hole, the clamping block 6 is fixed, the workers can quickly install the switch 8 in the cabinet body 1, further improving the assembly efficiency.

[0047] In order to realize the purpose of guiding wind, the air guiding structure 16 comprises a rotating shaft rotatably connected to one side of the fixed plate 15, one end of the rotating shaft fixedly connected with a rotating disc 162, one side of the rotating disc 162 fixedly connected with a actuating column 163, the other side of the fixed plate 15 fixedly connected with a servo motor 161, the output shaft of the servo motor 161 fixedly connected with the other end of the rotating shaft, a plurality of rotating rods 164 rotatably connected in the inside of the air guiding frame 14, a guiding plate 165 fixedly connected with each of the rotating rods 164, one end of each of the rotating rods 164 penetratingly and fixedly connected with a strip plate 166, one side of the plurality of strip plates 166 commonly rotatably connected with a pushing column 167, one end of the pushing column 167 fixedly connected with a actuating rod 168, one side of the actuating rod 168 provided with a moving slot, the inside of the moving slot slidably connected with the actuating column 163, when the heat dissipation fan 19 in the air bellow 17 blows air for heat dissipation, the servo motor 161 drives the rotating shaft to rotate, the rotating shaft drives the rotating disc 162 to rotate, the rotating disc 162 drives the actuating column 163 to rotate, the actuating column 163 drives the actuating rod 168 to move through the moving slot, the actuating rod 168 drives the plurality of strip plates 166 through the pushing column 167, one end of the plurality of strip plates 166 moves, the other end of the plurality of strip plates 166 drives the corresponding rotating rod 164 to rotate, the rotating rod 164 drives the corresponding guiding plate 165 to rotate in a semicircle reciprocatingly, the blown air flow is guided, the air flow is uniformly dispersed, the heat dissipation efficiency in the cabinet body 1 is improved.

[0048] The working principle is that first, the switch 8 is fixedly connected in the corresponding mounting frame 7 through bolts, then the knob 132 is rotated, the knob 132 drives the rotation of the oval disc 131, the two long ends of the oval disc 131 push the two push plates 135 away from each other, the push plate 135 pushes the second sliding rod 134 to slide on the corresponding mounting plate 133 and compresses the second reset spring 138, so that the other end of the second sliding rod 134 pushes the corresponding moving plate 136 to move, the moving plate 136 drives the corresponding second clamping column 137 to move, then the inner sleeve column 10 is inserted into the second clamping groove on the corresponding connecting block 9, then the knob 132 is loosened, under the elastic reset of the second reset spring 138, the push plate 135 moves and the side of the push plate 135 is attached to the short end of the oval disc 131, the push plate 135 again drives the moving plate 136 to move through the second sliding rod 134, so that the second clamping column 137 on the moving plate 136 is clamped into the corresponding second clamping hole, and the inner sleeve column 10 is fixed, so that the support rod 11 and the cable clamp 12 on the inner sleeve column 10 are quickly fixed without assembling through bolts, the assembly efficiency is improved, after assembly is completed, the fork 504 is actuated, the fork 504 drives the first sliding rod 502 to move, the first sliding rod 502 drives the first clamping column 503 to move, so that the first clamping column 503 is retracted and the first reset spring 505 is compressed, then the mounting frame 7 is placed into the cabinet body 1, so that the clamping blocks 6 on both sides of the mounting frame 7 are clamped into the corresponding first clamping grooves 4, then the fork 504 is actuated again, under the elastic reset of the first reset spring 505, the first clamping column 503 is clamped into the corresponding first clamping hole, the clamping block 6 is fixed, the switch 8 is quickly installed in the cabinet body 1, the assembly efficiency is further improved, then the communication cable is inserted into the cabinet body 1 from the rubber sleeve 20, then one end of the communication cable is inserted into the corresponding socket of the switch 8 through the plug, and the communication cable is clamped into the corresponding cable clamp 12, the communication cable is fixed, when the communication cable fails, the switch 8 feeds back the communication cable signal to the PLC control module 24, the specific position of the faulty communication cable is displayed on the display panel 26 controlled by the PLC control module 24, so that the maintenance personnel can quickly find and timely repair and handle, when the cooling fan 19 in the air bellow 17 blows and cools, the servo motor 161 drives the rotating shaft to rotate, the rotating shaft drives the rotating disc 162 to rotate, the rotating disc 162 drives the actuating column 163 to rotate, the actuating column 163 drives the actuating rod 168 to move through the moving groove, the actuating rod 168 drives the plurality of strip plates 166 through the pushing column 167, so that one end of the plurality of strip plates 166 moves, the other end of the plurality of strip plates 166 drives the corresponding rotating rod 164 to rotate, the rotating rod 164 drives the corresponding air deflector 165 to rotate in a semicircle, the airflow is guided, the airflow is uniformly dispersed, the cooling efficiency in the cabinet body 1 is improved, the heat in the cabinet body 1 is discharged through the plurality of cooling grooves 25 and the filter plate 23,By the obstruction of the filter plate 23, prevent external dust and other impurities, through a plurality of heat dissipation slot 25 into the inside of the cabinet 1, when the filter plate 23 is blocked, can be directly extracted upward, the maintenance personnel clean the dust and other impurities on the surface, avoid the influence of the cabinet 1 because of the blockage of heat dissipation effect.

[0049] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for the purpose of limiting the present application, although in the foregoing detailed description of the present application with reference to the foregoing examples, for those skilled in the art, it still can be modified, or the equivalent replacement of part of the technical features of the technical solutions described in the foregoing embodiments, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. An intelligent hierarchical cabling system for optoelectronic composite communication cables, comprising a cabinet (1) and a cabinet door (2), characterized in that: The cabinet body (1) and the cabinet door (2) are connected by hinges. Two support columns (3) are fixedly connected inside the cabinet body (1). Each support column (3) has a first snap-fit ​​groove (4) on one side. Each support column (3) has multiple snap-fit ​​structures (5). Each first snap-fit ​​groove (4) has a snap-fit ​​block (6). Each snap-fit ​​block (6) has a first snap-fit ​​hole on one side. The two snap-fit ​​blocks (6) at the same level are fixedly connected to the opposite side of a mounting frame (7). Each mounting frame (7) is fixedly connected to the inside by bolts. The switch (8) has a connecting block (9) fixedly connected to the bottom of each mounting frame (7), and a connecting structure (13) is provided on each connecting block (9). A second snap-fit ​​groove is opened on one side of each connecting block (9), and an inner sleeve column (10) is slidably connected in each second snap-fit ​​groove. A second snap-fit ​​hole is opened on the side of each inner sleeve column (10) that is far away from each other. An air guide frame (14) is fixedly connected to the inner top of the cabinet (1). A fixing plate (15) is fixedly connected to one side of the air guide frame (14), and an air guide structure (16) is provided on the fixing plate (15). The connection structure (13) includes an elliptical disk (131) rotatably connected to the bottom of the connection block (9), and a knob (132) is fixedly connected to the bottom of the elliptical disk (131).

2. The intelligent layered cabling system for optoelectronic composite communication cables according to claim 1, characterized in that: Two mounting plates (133) are fixedly connected to the bottom of the connecting block (9). Two second sliding rods (134) are slidably connected to one side of each mounting plate (133). One end of the two second sliding rods (134) on the same side is fixedly connected to a push plate (135), and the other end is fixedly connected to a moving plate (136). The opposite sides of the two push plates (135) are in contact with the outer wall of the elliptical disk (131). A second snap-fit ​​post (137) is fixedly connected to one side of each moving plate (136). Each second snap-fit ​​post (137) is slidably connected to the corresponding side of the connecting block (9) and is adapted to the corresponding snap-fit ​​hole. A second return spring (138) is sleeved on each second sliding rod (134). One end of each second return spring (138) is fixedly connected to one side of the corresponding mounting plate (133), and the other end is fixedly connected to one side of the corresponding push plate (135).

3. The intelligent layered cabling system for optoelectronic composite communication cables according to claim 1, characterized in that: The snap-fit ​​structure (5) includes a fixed frame (501) fixedly connected to one side of the support column (3). A first sliding rod (502) is slidably connected through one side of the fixed frame (501). A first snap-fit ​​post (503) is fixedly connected to one end of the first sliding rod (502). The first snap-fit ​​post (503) is slidably connected through one side of the support column (3) and is adapted to the corresponding first snap-fit ​​hole. A first return spring (505) is sleeved on the first sliding rod (502). One end of the first return spring (505) is fixedly connected to the inner side of the fixed frame (501), and the other end is fixedly connected to one side of the first snap-fit ​​post (503). A fork (504) is rotatably connected to the other end of the first sliding rod (502). One side of the fork (504) is in contact with the outer side of the fixed frame (501).

4. The intelligent layered cabling system for an optoelectronic composite communication cable according to claim 1, characterized in that: The air guide structure (16) includes a rotating shaft rotatably connected to one side of the fixed plate (15). One end of the rotating shaft is fixedly connected to a rotating disk (162). One side of the rotating disk (162) is fixedly connected to a toggle post (163). The other side of the fixed plate (15) is fixedly connected to a servo motor (161). The output shaft of the servo motor (161) is fixedly connected to the other end of the rotating shaft.

5. The intelligent layered cabling system for an optoelectronic composite communication cable according to claim 4, characterized in that: The air guide frame (14) is rotatably connected to a plurality of rotating rods (164). Each rotating rod (164) is fixedly connected to an air guide plate (165). One end of each rotating rod (164) passes through one side of the air guide frame (14) and is fixedly connected to a strip plate (166). One side of the plurality of strip plates (166) is rotatably connected to a push column (167). One end of the push column (167) is fixedly connected to a toggle rod (168). A moving groove is provided on one side of the toggle rod (168), and the interior of the moving groove is slidably connected to the toggle column (163).

6. The intelligent layered cabling system for an optoelectronic composite communication cable according to claim 1, characterized in that: A bellows (17) is fixedly connected to the upper surface of the cabinet (1). The bottom of the bellows (17) is connected to the upper surface of the cabinet (1). Multiple filter holes are opened on the upper surface of the bellows (17). A cross plate (18) is fixedly connected inside the bellows (17). A cooling fan (19) is fixedly connected to the bottom of the cross plate (18).

7. The intelligent hierarchical cabling system for an optoelectronic composite communication cable according to claim 1, characterized in that: A display panel (26) is fixedly installed on one side of the cabinet door (2), and a PLC control module (24) is fixedly installed on one side of the inside of the cabinet (1). The PLC control module (24) is electrically connected to the display panel (26) and multiple switches (8).

8. The intelligent hierarchical cabling system for optoelectronic composite communication cables according to claim 1, characterized in that: The cabinet (1) has wire holes and multiple heat dissipation slots (25) on the opposite side. Each wire hole is fixedly connected to a rubber sleeve (20). Each cabinet (1) has a frame (22) fixedly connected to the opposite side. Each frame (22) has a sliding groove on the opposite side inside. A filter plate (23) is slidably connected in two sliding grooves on the same frame (22).

9. The intelligent layered cabling system for an optoelectronic composite communication cable according to claim 1, characterized in that: The bottom of the cabinet (1) is fixedly connected to four bases (21), and each base (21) is fixedly connected to an anti-slip pad.

10. The intelligent hierarchical cabling system for an optoelectronic composite communication cable according to claim 1, characterized in that: Each inner sleeve column (10) has a support rod (11) fixedly connected to its upper surface, and each support rod (11) has multiple cable clamps (12) fixedly connected to its upper surface.