An emergency connection device for a spare part of a network converter and a terminal

The network converter automates cable insertion/removal and switch replacement, addressing slow manual processes to enhance network recovery efficiency and reduce downtime.

CN113727207BActive Publication Date: 2025-07-15深圳市富芯实业有限公司
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Patent Information

Application Number
CN202110971372.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-24
Publication Date
2025-07-15
Estimated Expiration
2041-08-24

AI Technical Summary

Technical Problem

The existing network switch is slow when replacing it, and requires manual plugging and unplugging of network terminals and power cords, which is low in automation, resulting in slow network re-entry speed.

Method used

An emergency connection device between the backup parts of the network converter and the terminals is designed, and the propulsion device and the traveling device are used to realize the synchronous plug-in and unplugging of the terminals and the power cord, combined with the temperature control device to dissipate heat, and the entire process is controlled through the control box.

Benefits of technology

It realizes rapid replacement and recovery of network switches, improves network re-connection speed, reduces manual operations, improves automation, and reduces the failure rate of network switches.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a network device, and in particular to an emergency connection device for network converter spare parts and wiring terminals. The technical problem of the present invention is to provide an emergency connection device for network converter spare parts and wiring terminals that can quickly replace network switches, synchronously plug and unplug network cables and power cables of network wiring terminals, and has a high degree of automation. The technical implementation scheme of the present invention is: an emergency connection device for network converter spare parts and wiring terminals, including a panel layer, the panel layer is a structure with openings on both sides, a support frame is provided on one side of the panel layer, and two sets of trap doors are provided on one side of the panel layer. The present invention adopts a propulsion device to drive the clamping frame on the wiring device to move, so that the network wiring terminals and power cables can be plugged and unplugged synchronously, and all connected network wiring terminals and power cables can be quickly connected and unplugged at one time, thereby improving the speed of network restoration.
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Description

Technical Field

[0001] The present invention relates to a network device, and in particular to an emergency connection device for a spare part of a network converter and a wiring terminal. Background Art

[0002] During the current use of network switches, the insertion and removal of the network cable and power cable of the network wiring terminal need to be performed manually, that is, each one needs to be inserted and removed manually, resulting in slow speed and low efficiency. When a network switch fails and causes a network interruption during the current use of the network switch, manual replacement is required, that is, the network cable and power cable of the network wiring terminal on the faulty network switch need to be separately pulled out and inserted onto a normal network switch, and the network cable and power cable of the network wiring terminal need to be reorganized, resulting in slow replacement speed and low efficiency, slow network restoration speed, and difficulty in carrying out subsequent work.

[0003] In view of this, an emergency connection device for a spare part of a network converter and a wiring terminal is designed, which can quickly replace a network switch, synchronously insert and remove the network cable and power cable of the network wiring terminal, and has a high degree of automation. Summary of the Invention

[0004] In order to overcome the disadvantages of slow speed and low efficiency, the need for manual insertion and removal of each network cable and power cable of the network wiring terminal, and low degree of automation when replacing a network switch at present, the technical problem of the present invention is to provide an emergency connection device for a spare part of a network converter and a wiring terminal, which can quickly replace a network switch, synchronously insert and remove the network cable and power cable of the network wiring terminal, and has a high degree of automation.

[0005] The technical implementation solution of the present invention is as follows: An emergency connection device for a spare part of a network converter and a terminal block, including a panel layer, the panel layer is structured with openings on both sides, a support frame is provided on one side of the panel layer, and two sets of trap doors are provided on one side of the panel layer, and the trap doors block the opening structure of the panel layer; a central board layer, the central board layer is arranged at a position of the panel layer away from the trap doors, and surrounding frames are provided on both sides of the central board layer, and a connecting frame is provided between one sides of the surrounding frames; a hanging board layer, the hanging board layer is arranged at a position of the central board layer away from the panel layer, and the position of the hanging board layer away from the central board layer is structured with hanging wall components; a propulsion device, the propulsion device is arranged on the support frame, and the propulsion device is used for propulsion and retraction work; a wiring device, the wiring device is arranged on the propulsion device, and the wiring device is used for fixing the terminal block part; a fixing frame, the fixing frame is arranged at a position of the central board layer between the surrounding frames; a guiding device, the guiding device is arranged at a position of the fixing frame on the central board layer, and the guiding device is used for position guiding; a loading device, the loading device is placed between the guiding devices, the number of the loading devices is two sets, the loading device is used for loading network switches, and the loading device cooperates with the guiding device; a traveling device, the traveling device is arranged at a position of the fixing frame on the surrounding frames, and the traveling device is used for driving the loading device to move, and the traveling device cooperates with the loading device.

[0006] More preferably, the propulsion device includes a first moving pair, the first moving pair is arranged on the support frame, and a first electric slide rail is arranged at a position of the support frame near the first moving pair; a propulsion frame, the propulsion frame is arranged between the first electric slide rail and the moving part of the first moving pair, and the wiring device is arranged on the propulsion frame.

[0007] More preferably, the wiring device includes a second moving pair, the second moving pairs are evenly distributed at a position of the propulsion frame away from the first electric slide rail, and elastic members are arranged on the second moving pairs; a clamping frame, the clamping frames are respectively arranged between the moving parts of two adjacent second moving pairs with opposite directions.

[0008] More preferably, the guiding device includes a fixing block, the fixing block is arranged at a position of the fixing frame on one side of the central board layer; a guiding track, the guiding track is arranged at a position of the fixing block on one side of the central board layer, and the guiding track is of an open type; a photoelectric switch, the photoelectric switch is arranged between a group of guiding tracks.

[0009] More preferably, the loading device includes a loading frame, the loading frame is arranged between the guiding tracks, two sets of guiding wheel groups are rotatably arranged on both sides of the loading frame, and the guiding wheel groups cooperate with the guiding tracks; a displacement block, the displacement blocks are arranged on both sides of the loading frame, and the displacement blocks cooperate with the traveling device.

[0010] More preferably, the traveling device includes a belt drive assembly, which is respectively arranged at the position of the fixed frame inside the surrounding frame, and the belt drive assembly is a conveyor belt; a traveling frame, which is evenly distributed on the belt drive assembly and has corresponding positions, and the traveling frame cooperates with the photoelectric switch and the displacement block; and a driving motor, which is arranged at the position of the connecting frame, and the output shaft of the driving motor is connected to the shaft connection of the belt drive assembly.

[0011] More preferably, a retraction device is also included, which includes a guide frame, which is arranged at the opening structure of the panel layer near the side of the connecting frame, and the guide frame is a structure with a roller group; a second electric slide rail, which is arranged on the guide frame, and a retraction frame is provided on the second electric slide rail moving part.

[0012] More preferably, a temperature control device is further included, which includes a mesh box, which is arranged on one side of the hanging board layer and on which a hair dryer is arranged; and an air outlet box, which is arranged on the other side of the hanging board layer.

[0013] More preferably, a control box is further included. A control box is arranged on the upper side of the panel layer. The control box includes a switching power supply, a DC-DC power supply module and a control module MCU. The DC-DC power supply module is connected to a main power switch through a line. The control module MCU and the DC-DC power supply module are electrically connected. A start switch and a descending switch are electrically connected on the control module MCU. A photoelectric sensor and a buzzer are connected to the control module MCU. A 24C02 circuit, a buzzer circuit and a 315M receiving module are connected to the control module MCU. A switching button is connected to the remote control. The first electric slide rail, the drive motor, the second electric slide rail and the hair dryer are all connected to the control module MCU through peripheral circuits.

[0014] Compared with the prior art, the present invention has the following advantages: 1. The present invention adopts a propulsion device to drive the clamping frame on the wiring device to move, so that the network terminal and the power cord can be plugged in and out synchronously, and all connected network terminal and power cord can be quickly connected and unplugged at one time, thereby improving the speed of network restoration.

[0015] 2. The present invention uses a traveling device to drive the loading frame to move, so that the network switch can be quickly replaced and the network can be quickly restored without manual replacement, further improving the speed of network restoration.

[0016] 3. The present invention uses a hair dryer to blow air into the space between the hanging board layer, the central board layer and the panel layer, thereby being able to dissipate heat and control the temperature of the network switch in a working state, thereby reducing the failure rate of the network switch. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1The first three-dimensional structure diagram of the present invention.

[0018] Figure 2 The second three-dimensional structure diagram of the present invention.

[0019] Figure 3 The third three-dimensional structure diagram of the present invention.

[0020] Figure 4 The fourth three-dimensional structure diagram of the present invention.

[0021] Figure 5 The fifth three-dimensional structure diagram of the present invention.

[0022] Figure 6 The sixth three-dimensional structure diagram of the present invention.

[0023] Figure 7 The first sectional three-dimensional structure diagram of the present invention.

[0024] Figure 8 The second sectional three-dimensional structure diagram of the present invention.

[0025] Figure 9 The third sectional three-dimensional structure diagram of the present invention.

[0026] Figure 10 The first three-dimensional structure diagram of the panel layer part of the present invention.

[0027] Figure 11 The second three-dimensional structure diagram of the panel layer part of the present invention.

[0028] Figure 12 The first three-dimensional structure diagram of the support frame part of the present invention.

[0029] Figure 13 The second three-dimensional structure diagram of the support frame part of the present invention.

[0030] Figure 14 The third three-dimensional structure diagram of the support frame part of the present invention.

[0031] Figure 15 The three-dimensional structure diagram of the wiring device part of the present invention.

[0032] Figure 16 The three-dimensional structure diagram of the retraction device part of the present invention.

[0033] Figure 17 The three-dimensional structure diagram of the central board layer part of the present invention.

[0034] Figure 18 The three-dimensional structure diagram of the loading device part of the present invention.

[0035] Figure 19 This is a schematic perspective view of the enclosure part of the present invention.

[0036] Figure 20 This is a schematic perspective view of the guiding device part of the present invention.

[0037] Figure 21 This is a schematic perspective view of the traveling device part of the present invention.

[0038] Figure 22 This is a partial schematic perspective view of the traveling device part of the present invention.

[0039] Figure 23 This is a partial schematic perspective view of the present invention.

[0040] Figure 24 This is a schematic perspective view of the temperature control device part of the present invention.

[0041] Figure 25 This is the circuit schematic diagram of the present invention.

[0042] Figure 26 This is the circuit block diagram of the present invention.

[0043] The meanings of the reference numerals in the figure: 1, panel layer; 2, support frame; 3, trap door; 4, central panel layer; 5, enclosure; 6, connecting frame; 7, hanging plate layer; 8, propulsion device; 9, wiring device; 10, fixing frame; 11, guiding device; 12, loading device; 13, traveling device; 81, first moving pair; 82, first electric slide rail; 83, propulsion frame; 91, second moving pair; 92, elastic member; 93, clamping frame; 111, fixing block; 112, guiding track; 113, photoelectric switch; 121, loading rack; 122, guiding wheel set; 123, displacement block; 131, belt drive assembly; 132, traveling frame; 133, drive motor; 14, retraction device; 141, guiding frame; 142, second electric slide rail; 143, retraction frame; 15, temperature control device; 151, wire mesh box; 152, hair dryer; 153, air outlet box; 16, control box. Detailed implementation manners

[0044] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0045] Embodiment 1

[0046] AsFigure 1-11 As shown, an emergency connection device for a spare part of a network converter and a terminal block, comprising a panel layer 1, a support frame 2, a trap door 3, a central board layer 4, an enclosing frame 5, a connecting frame 6, a hanging board layer 7, a propulsion device 8, a wiring device 9, a fixing frame 10, a guiding device 11, a loading device 12 and a traveling device 13, specifically:

[0047] In the middle of the front side of the panel layer 1, there is a support frame 2. The panel layer 1 has a structure with openings on both the upper and lower sides. Trap doors 3 are provided at the upper and lower positions of the front side of the panel layer 1, and the trap doors 3 respectively block the opening structures on the adjacent panel layer 1. A central board layer 4 is provided at the rear side of the panel layer 1. Enclosing frames 5 are provided on both the left and right sides of the central board layer 4. A connecting frame 6 is provided between the lower sides of the enclosing frames 5. A hanging board layer 7 is provided at the rear side of the central board layer 4, and the hanging board layer 7 has a structure with hanging wall components at the rear side. A propulsion device 8 is provided on the support frame 2, and the propulsion device 8 is used for propulsion and withdrawal operations. A wiring device 9 is provided on the propulsion device 8, and the wiring device 9 is used for fixing the terminal block part. Fixing frames 10 are evenly distributed on both the left and right sides of the central board layer 4. A guiding device 11 is provided between the inner sides of the fixing frames 10, and the guiding device 11 is used for position guiding. A loading device 12 is placed between the guiding devices 11, and the loading device 12 is used for loading network switches. The number of the loading devices 12 is two groups. The loading device 12 cooperates with the guiding device 11. A traveling device 13 is provided between the outer sides of the fixing frames 10, and the traveling device 13 is used for driving the loading device 12 to move. The traveling device 13 cooperates with the loading device 12, and the traveling device 13 is located inside the enclosing frame 5.

[0048] When the above embodiment is in operation, the network converter spare part and the emergency connection device of the terminal block can be hung on the wall through the wall hanging component structure of the hanging board layer 7, and then the network converter spare part and the emergency connection device of the terminal block can be powered on through the main power switch, and then the terminal block and its network cable and the power cable of the network switch can be installed and fixed through the wiring device 9; if the loading device 12 is unloaded and located at the upper and lower sides of the central board layer 4, the trap door 3 can be opened to take out the loading device 12 through the opening structure of the panel layer 1. If the loading device 12 is unloaded and located at the upper and lower sides of the central board layer 4, the trap door 3 can be opened to take out the loading device 12 through the opening structure of the panel layer 1. When the load plate 12 is empty and located in the middle of the central plate layer 4, the travel device 13 can be started by the descending switch on the control box 16, and the travel device 13 will start to work at this time, and the travel device 13 will drive the loading device 12 to move downward, so that the group of loading devices 12 runs to the lower position in the central plate layer 4, and then the group of loading devices 12 is taken out at the lower opening structure position of the panel layer 1. At this time, the travel device 13 triggers the guide device 11, and the guide device 11 will control the travel device 13 to stop working through the control box 16; after the loading device 12 is taken out, the network switch can be The loading device 12 is placed in the loading device 12, and the loading device 12 carrying the network switch is passed through the upper opening structure of the panel layer 1 to the guide device 11 again, so that the group of loading devices 12 cooperates with the traveling device 13, and the traveling device 13 is started again by the descending switch. When the traveling device 13 triggers the guide device 11 again, the traveling device 13 will stop working. At this time, the group of loading devices 12 is in the middle position of the central panel layer 4. At this time, the network switch wiring port on the loading device 12 corresponds to the fixed wiring terminal on the wiring device 9, and then the next loading device 12 is placed on the network switch. The device is connected to the guide device 11 and the travel device 13 through the upper opening structure of the panel layer 1. At this time, the lower layer of the central plate layer 4 is in an empty state; at this time, the emergency connection device of the network converter spare parts and the wiring terminal can be started through the start switch on the control box 16. At this time, the propulsion device 8 will start to work, and the propulsion device 8 will drive the wiring device 9 to move to the rear side, so that the wiring device 9 drives the wiring terminals and power cords fixed thereon to move to the rear side, so that the wiring terminals and power cords are inserted into the network switch located in the middle of the central plate layer 4. At this time, the network switch is in a working state;When the group of network switches suddenly fails and the network cannot be connected, the emergency connection device between the spare part of the network converter and the terminal block can be started again through the switching button on the remote control. At this time, the propulsion device 8 will start to work. The propulsion device 8 will drive the wiring device 9 to move forward, so that the terminal block and the power cord fixed on the wiring device 9 are pulled out of the network switch. After the forward movement of the propulsion device 8 is completed, the control box 16 will control the traveling device 13 to work again. The traveling device 13 will move to trigger the guiding device 11 next time, so that the loading device 12 and the network switch located in the middle position of the central board layer 4 before move, so that the group of loading device 12 and the network switch move downward to the lower layer position of the central board layer 4, and make the loading device 12 and the network switch located in the upper layer position of the central board layer 4 before move, so that the group of loading device 12 and the network switch move downward to the middle position of the central board layer 4. At this time, the control box 16 will control the propulsion device 8 to move backward again, so that the propulsion device 8 drives the terminal block and the power cord fixed on it to move backward, so that the terminal block and the power cord are inserted into the normal network switch again, thus completing the rapid replacement of the network switch, being able to quickly restore the network, without manual replacement, and without the need to separately plug and unplug the network cable and the power cord, improving the speed and efficiency; while when the switching button on the remote control is started, the buzzer in the control box 16 will be started to indicate that the personnel should timely remove the damaged network switch and supplement the normal network switch. The damaged network switch can be withdrawn from the lower layer of the central board layer 4 through the loading device 12, and the normal network switch can be replaced and placed back at the upper layer position of the central board layer 4 to cooperate with the traveling device 13.;

[0049] Embodiment 2

[0050] As Figure 12-26 shown, the propulsion device 8 includes a first moving pair 81, a first electric slide rail 82 and a propulsion frame 83, specifically:

[0051] A first moving pair 81 is provided on the upper side of the support frame 2. A first electric slide rail 82 is provided at a position on the support frame 2 near the first moving pair 81. A propulsion frame 83 is provided between the moving member of the first electric slide rail 82 and the upper side of the moving member of the first moving pair 81. The wiring device 9 is provided on the upper side of the propulsion frame 83.

[0052] When the above embodiment is in operation, after the start switch is started, the first electric slide rail 82 will drive its moving member to move backward, thus driving the propulsion frame 83 to move backward; after the switching button on the remote control is started, the first electric slide rail 82 will drive its moving member to move forward, thus driving the propulsion frame 83 to move forward. After pressing the switching button on the remote control to make the traveling device 13 run once, the first electric slide rail 82 will move backward again through the control of the control box 16.

[0053] The wiring device 9 includes a second moving pair 91, an elastic member 92 and a clamping frame 93, specifically:

[0054] A plurality of groups of second moving pairs 91 are evenly distributed on the upper side of the propulsion frame 83 . The second moving pairs 91 are each provided with an elastic member 92 . A clamping frame 93 is provided between the moving members of two adjacent groups of second moving pairs 91 in opposite directions.

[0055] When the above embodiment is in operation, the network cable and the power cord of the terminal block can be placed between the clamping frames 93 respectively, so that the clamping frames 93 can fix the network cable and the power cord of the terminal block through the elastic member 92. In this way, when the pushing frame 83 moves, the clamping frame 93 and the network cable and the power cord of the terminal block can be driven to move, so that the network cable and the power cord of the terminal block can be plugged in and out synchronously.

[0056] The guide device 11 includes a fixing block 111, a guide rail 112 and a photoelectric switch 113, specifically:

[0057] A fixing block 111 is disposed inside the fixing frame 10 , and a guide track 112 is disposed inside the fixing block 111 . The guide track 112 is open, and a photoelectric switch 113 is disposed at the middle of the left guide track 112 .

[0058] When the above embodiment is in operation, the loading device 12 can be placed from the upper front side of the guide rail 112, so that the loading device 12 is located between the guide rails 112, and the loading device 12 cooperates with the traveling device 13. When the traveling device 13 is working, the traveling device 13 will drive the loading device 12 to move downward through the guide rail 112. When the traveling device 13 moves to the position of the photoelectric switch 113, the photoelectric switch 113 will be triggered, and the photoelectric switch 113 will control the traveling device 13 to stop moving, so that the previously positioned The loading device 12 and the network switch at the middle position of the central plate layer 4 are moved, so that the group of loading devices 12 and the network switch are moved downward to the lower position of the central plate layer 4, and the loading device 12 and the network switch previously located at the upper position of the central plate layer 4 are moved, so that the group of loading devices 12 and the network switch are moved downward to the middle position of the central plate layer 4, and the loading device 12 located at the lower position of the central plate layer 4 will be disengaged from the guide track 112, so that the group of loading devices 12 can be taken out from the lower position of the central plate layer 4.

[0059] The loading device 12 includes a loading frame 121, a guide wheel set 122 and a displacement block 123, specifically:

[0060] There is a loading rack 121 between the guiding tracks 112. On both sides of the loading rack 121, two groups of guiding wheel sets 122 are rotatably arranged. The guiding wheel sets 122 cooperate with the guiding tracks 112. Below both sides of the loading rack 121, displacement blocks 123 are provided, and the displacement blocks 123 cooperate with the traveling device 13.

[0061] When the above-mentioned embodiment is in operation, the network switch can be placed in the loading rack 121, and the loading rack 121 is placed into the guiding track 112 through the guiding wheel sets 122, so that the displacement blocks 123 cooperate with the traveling device 13; when the traveling device 13 works, the traveling device 13 will drive the displacement blocks 123 to move, thereby driving the loading rack 121 to move, so that the guiding wheel sets 122 move in the guiding track 112. When a group of loading racks 121 is at the lower side position of the central plate layer 4, the guiding wheel sets 122 of this group of loading racks 121 are disengaged from the cooperation with the guiding track 112.

[0062] The traveling device 13 includes a belt drive assembly 131, a traveling frame 132 and a drive motor 133, specifically:

[0063] Belt drive assemblies 131 are provided on the outer sides of the fixed frames 10. The belt drive assemblies 131 are conveyor belts. The traveling frames 132 are evenly distributed on the surface sides of the belt drive assemblies 131. The traveling frames 132 cooperate with the photoelectric switches 113 and the displacement blocks 123. A drive motor 133 is provided in the connecting frame 6, and the output shaft of the drive motor 133 is connected to the shaft connection of the belt drive assembly 131.

[0064] When the above-mentioned embodiment is in operation, when the down switch and the switching button on the remote control are activated, the drive motor 133 will start to work. The drive motor 133 will drive the belt drive assembly 131 to rotate, thereby driving the traveling frame 132 to move downward, thereby driving the displacement blocks 123 to move downward, thereby driving the loading rack 121 to move downward. When the traveling frame 132 is between the photoelectric switches 113, the photoelectric switches 113 will be triggered, so as to control the drive motor 133 to stop working through the control box 16. At this time, the loading rack 121 has been in place; when loading and unloading the loading rack 121 from the upper and lower positions of the central plate layer 4, the loading rack 121 will extend into and out of the traveling frame 132 through the displacement blocks 123.

[0065] It further includes a retracting device 14. The retracting device 14 includes a guiding frame 141, a second electric slide rail 142 and a retracting frame 143, specifically:

[0066] A retracting device 14 is provided at the lower side opening structure of the panel layer 1. A guiding frame 141 is provided at the lower side opening structure of the panel layer 1. The guiding frame 141 is a structure with roller groups on both upper sides. A second electric slide rail 142 is provided on the upper side of the guiding frame 141, and a retracting frame 143 is provided on the moving part of the second electric slide rail 142.

[0067] When the above-mentioned embodiment is in operation, after the switching button on the remote control is pressed and the photoelectric switch 113 is triggered, the network switch in the fault state and its loading rack 121 will be at the lower position of the lower layer of the central board layer 4 and in front of the withdrawal rack 143. At this time, the control box 16 will control the second electric slide rail 142 to start, so as to drive the withdrawal rack 143 to move forward, so as to quickly withdraw the damaged network switch and its loading rack 121; after the moving part of the second electric slide rail 142 moves forward to the end point, the second electric slide rail 142 will reset.

[0068] It also includes a temperature control device 15, and the temperature control device 15 includes a net box 151, a hair dryer 152 and an air outlet box 153, specifically:

[0069] The temperature control device 15 is provided on the hanging plate layer 7. A net box 151 is provided on the upper side of the hanging plate layer 7. A hair dryer 152 is provided in the net box 151. An air outlet box 153 is provided in the middle of the hanging plate layer 7.

[0070] When the above-mentioned embodiment is in operation, after the start switch is started, the hair dryer 152 will start. The hair dryer 152 will blow air into the space between the hanging plate layer 7, the central board layer 4 and the panel layer 1, so as to dissipate heat and control the temperature of the network switch in the working state, and reduce the failure rate of the network switch.

[0071] It also includes a control box 16. The control box 16 is provided on the upper side of the panel layer 1. The control box 16 includes a switching power supply, a DC-DC power module and a control module MCU. A main power switch is connected to the DC-DC power module through a circuit. The control module MCU and the DC-DC power module are electrically connected. A start switch and a down switch are provided on the control module MCU in an electrically connected manner. A photoelectric sensor and a buzzer are connected to the control module MCU. A 24C02 circuit, a buzzer circuit and a 315M receiving module are connected to the control module MCU. A switching button is connected to the remote control. The first electric slide rail 82, the drive motor 133, the second electric slide rail 142 and the hair dryer 152 are all connected to the control module MCU through peripheral circuits.

[0072] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An emergency connection device for a spare part of a network converter and a terminal block, characterized in that It includes: A panel layer (1), the panel layer (1) has an opening structure on both sides, a support frame (2) is provided on one side of the panel layer (1), two groups of trapdoors (3) are provided on one side of the panel layer (1), and the trapdoors (3) block the opening structure of the panel layer (1); A central plate layer (4), the central plate layer (4) is arranged at a position of the panel layer (1) far from the trapdoors (3), surrounding frames (5) are provided on both sides of the central plate layer (4), and a connecting frame (6) is provided between one sides of the surrounding frames (5); A hanging plate layer (7), the hanging plate layer (7) is arranged at a position of the central plate layer (4) far from one side of the panel layer (1), and the position of the hanging plate layer (7) far from the central plate layer (4) is a structure with hanging wall components; A propulsion device (8), the propulsion device (8) is arranged on the support frame (2), and the propulsion device (8) is used for propulsion and retraction work; A wiring device (9), the wiring device (9) is arranged on the propulsion device (8), and the wiring device (9) is used for fixing the terminal part; A fixing frame (10), the fixing frame (10) is arranged at a position of the central plate layer (4) between the surrounding frames (5); A guiding device (11), the guiding device (11) is arranged at a position of the fixing frame (10) on the central plate layer (4), and the guiding device (11) is used for position guiding; A loading device (12), the loading device (12) is placed between the guiding devices (11), the number of the loading devices (12) is two groups, the loading device (12) is used for loading network switches, and the loading device (12) cooperates with the guiding device (11); A traveling device (13), the traveling device (13) is arranged at a position of the fixing frame (10) on the surrounding frame (5), the traveling device (13) is used for driving the loading device (12) to move, and the traveling device (13) cooperates with the loading device (12).

2. The emergency connection device for a network converter spare part and a terminal block according to claim 1, characterized in that, The propulsion device (8) includes: A first moving pair (81), the first moving pair (81) is arranged on the support frame (2), and a first electric slide rail (82) is arranged at a position of the support frame (2) near the first moving pair (81); A propulsion frame (83), the propulsion frame (83) is arranged between the moving part of the first electric slide rail (82) and the first moving pair (81), and the wiring device (9) is arranged on the propulsion frame (83).

3. An emergency connection device for a network converter spare part and a wiring terminal according to claim 2, characterized in that, The wiring device (9) includes: Second moving pairs (91), the second moving pairs (91) are evenly distributed at a position of the propulsion frame (83) far from the first electric slide rail (82), and elastic members (92) are arranged on the second moving pairs (91); Clamping frames (93), the clamping frames (93) are respectively arranged between the moving parts of two adjacent second moving pairs (91) with opposite directions.

4. An emergency connection device for a spare part of a network converter and a terminal block, characterized in that The guiding device (11) includes: Fixed blocks (111), the fixed blocks (111) are arranged at a position of the fixing frame (10) on one side of the central plate layer (4); Guiding tracks (112), the guiding tracks (112) are arranged at a position of the fixed blocks (111) on one side of the central plate layer (4), and the guiding tracks (112) are of an open type; Photoelectric switches (113), the photoelectric switches (113) are arranged between a group of guiding tracks (112).

5. An emergency connection device for a network converter spare part and a terminal block according to claim 4, characterized in that, The loading device (12) includes: A loading rack (121) is arranged between the guiding tracks (112). Two groups of guiding wheel sets (122) are rotatably arranged on both sides of the loading rack (121), and the guiding wheel sets (122) cooperate with the guiding tracks (112). Displacement blocks (123) are arranged on both sides of the loading rack (121), and the displacement blocks (123) cooperate with the traveling device (13).

6. An emergency connection device for a spare part of a network converter and a wiring terminal according to claim 5, characterized in that, The traveling device (13) includes: A belt drive assembly (131) is respectively arranged at the position of the fixed rack (10) inside the surrounding rack (5), and the belt drive assembly (131) is a conveyor belt. Traveling racks (132) are evenly distributed on the belt drive assembly (131) and are in corresponding positions. The traveling racks (132) cooperate with the photoelectric switch (113) and the displacement blocks (123). A driving motor (133) is arranged at the position of the connecting rack (6), and the output shaft of the driving motor (133) is connected to the shaft connection of the belt drive assembly (131).

7. An emergency connection device for a network converter spare part and a terminal block according to claim 6, characterized in that, It further includes a retracting device (14), and the retracting device (14) includes: A guiding rack (141) is arranged at the opening structure on the side of the panel layer (1) near the connecting rack (6). The guiding rack (141) is a structure with roller sets. A second electric slide rail (142) is arranged on the guiding rack (141), and a retracting rack (143) is arranged on the moving part of the second electric slide rail (142).

8. An emergency connection device for a network converter spare part and a terminal block according to claim 7, characterized in that, It further includes a temperature control device (15), and the temperature control device (15) includes: A mesh box (151) is arranged on one side of the hanging plate layer (7), and a hair dryer (152) is arranged on the mesh box (151). An air outlet box (153) is arranged on the other side of the hanging plate layer (7).

9. An emergency connection device for a spare part of a network converter and a terminal block, characterized in that, It further includes a control box (16). The control box (16) is arranged on the upper side of the panel layer (1). The control box (16) includes a switching power supply, a DC-DC power module, and a control module MCU. A main power switch is connected to the DC-DC power module through a circuit. The control module MCU and the DC-DC power module are electrically connected. A start switch and a down switch are electrically connected to the control module MCU. A photoelectric sensor and a buzzer are connected to the control module MCU. A 24C02 circuit, a buzzer circuit, and a 315M receiving module are connected to the control module MCU. A switching button is connected to the remote control. The first electric slide rail (82), the driving motor (133), the second electric slide rail (142), and the hair dryer (152) are all connected to the control module MCU through peripheral circuits.

Citation Information

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