Line management device with strong and weak current separation structure
By introducing fixing, separating, and rewinding mechanisms into the line management device, the problems of disordered high and low voltage cables and difficulty in adjusting cable lengths are solved, enabling safe separation of cables and flexible length adjustment, thus improving the device's flexibility and safety.
Patent Information
- Application Number
- CN202423140696.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-18
AI Technical Summary
In existing line management devices, the haphazard arrangement of power and data cables poses safety hazards and makes it difficult to flexibly adjust cable lengths.
The device employs a fixing mechanism to position the cables, a separating mechanism to separate strong and weak current cables, and a winding mechanism to wind up excess cables. The design of hinges, dust covers, and breathable mesh enhances the flexibility and dustproof effect of the device.
It achieves safe separation of strong and weak current, avoids mutual interference, facilitates flexible adjustment of cable length, and improves the flexibility and safety of the device.
Smart Images

Figure CN223665983U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of management equipment, in particular to a line management device with strong and weak electricity separation structure. BACKGROUND
[0002] Line managers (also commonly known as cable managers) are devices used to organize, label, protect and maintain power, communication and data cables, and are widely used in various scenarios requiring management of large amounts of cables.
[0003] The existing line management device, such as the line manager with strong and weak electricity separation structure and the line management device disclosed in the utility model patent with application number 201821248365.6, mainly includes a control box, also includes a wire storage box for storing lines, the wire storage box is installed on one side of the control box, the control box is provided with a mounting area for installing a data box, the wire storage box is provided with a first strong and weak electricity separation structure, the control box is provided with a second strong and weak electricity separation structure, the first weak electricity channel of the wire storage box is communicated with the second weak electricity channel of the control box, and the first strong electricity channel of the wire storage box is communicated with the second strong electricity channel of the control box; in use, the strong electricity line goes from the first strong electricity channel to the second strong electricity channel or from the second strong electricity channel to the first strong electricity channel, and the weak electricity line goes from the first weak electricity channel to the second weak electricity channel or from the second weak electricity channel to the first weak electricity channel, and is locked by locking the tongue into the slot.
[0004] However, the existing line is arranged in a disorganized manner in the box body, without distinction between strong and weak electricity, which poses a great safety hazard, and most line management devices are difficult to retract and release the cable, which is very troublesome to adjust the length by cutting the cable, resulting in the cable becoming shorter after each cut. UTILITY MODEL CONTENTS
[0005] To solve the above technical problems, the utility model provides a line management device with strong and weak electricity separation structure, which can not only separate and store strong and weak electricity to avoid safety hazards caused by mutual influence of strong and weak electricity, but also can wind the excess cable to avoid adjusting the length by cutting the cable, thereby improving the flexibility of the device in use.
[0006] The line management device with strong and weak electricity separation structure comprises a control box, a fixing mechanism, a separation mechanism and a plurality of winding mechanisms, the fixing mechanism is installed on the control box and positions the cable, the separation mechanism is installed on the control box and separates the cable, and the plurality of winding mechanisms are installed on the control box and wind the excess cable; strong and weak electricity are both conveyed into the control box, the fixing mechanism fixes a plurality of cables, the separation mechanism separates strong and weak electricity to avoid mutual influence, and the winding mechanism winds the excess cable, thereby improving the flexibility of the device in use and facilitating small-range adjustment of the cable length.
[0007] Preferably, the control box includes a box body, hinges, a dust cover, a buckle, and a ventilated mesh. The box body is installed on the working surface, and the box body has an internal cavity. The hinges are installed on the box body, the dust cover is installed on the hinges, the buckles are installed on the dust cover, and the ventilated mesh is installed on the box body. The operator closes the dust cover and locks it to the box body using the buckles to prevent external dust from entering the cavity and affecting the circuit operation. The ventilated mesh facilitates heat dissipation of the equipment and prevents dust from entering. The dust cover is opened when maintenance is required.
[0008] Preferably, the box also includes multiple sets of inlet and outlet ports, and each inlet and outlet port is equipped with a dustproof sleeve. The power cables are introduced into the cavity of the box through the multiple inlet ports, which facilitates circuit control. By setting the dustproof sleeve, the stability of the cables can be enhanced and the cables can be prevented from shaking. It can also prevent external dust and moisture from entering the cavity of the box.
[0009] Preferably, the fixing mechanism includes a tray, two sets of guide posts, a pressing plate, and screws. The tray is installed in the cavity of the box, both sets of guide posts are installed on the tray, the pressing plate is slidably installed on the two sets of trays, and the screws are screwed to the tray. Both strong and weak current cables are laid between the tray and the pressing plate through the inlet. When the operator tightens the screw, the screw drives the pressing plate to descend and press the cable. The two sets of guide posts limit the pressing plate to prevent it from rotating with the screw.
[0010] Preferably, both the tray and the pressing plate are covered with an insulating rubber layer. By setting the insulating rubber layer, not only can the excessive pressing force of the tray and the pressing plate be avoided from tearing the cable sheath and enhancing the protection of the cable, but it can also shield electrical signals to prevent strong electricity from affecting weak electricity.
[0011] Preferably, the separation mechanism includes a main separation plate, multiple sets of secondary separation plates, a controller, and a router. The main separation plate is installed inside the cavity of the box, as are the multiple sets of secondary separation plates. The controller and the router are both installed inside the cavity of the box. The main separation plate separates the interior of the box to prevent interference between high-voltage and low-voltage cables. The multiple sets of secondary separation plates separate and organize the cables to prevent them from tangling together. The high-voltage cables are connected to the controller, which controls the current transmission. The low-voltage cables are connected to the router, which facilitates the processing of low-voltage signals.
[0012] Preferably, the winding mechanism comprises a winding roller, a spring and a baffle, the winding roller is rotatably installed in the cavity of the box body, the spring is installed in the cavity of the box body and connected with the winding roller, and the bottom end of the baffle is connected with the top end of the winding roller; after the line is connected, the staff can wind part of the cable on the winding roller, the line can be prevented from falling off by arranging the baffle, and when the length of the cable needs to be adjusted by a small distance, the cable can be directly pulled to drive the winding roller to rotate, so that the length of the cable is conveniently adjusted, and the spring is arranged to control the rotation angle of the winding roller.
[0013] Compared with the prior art, the utility model has the advantages that the strong current and the weak current are all transported into the control box, the fixing mechanism fixes the plurality of cables, the separation mechanism separates the strong current and the weak current, the influence of each other is avoided, the winding mechanism winds the excess cable, the flexibility of the device is improved, and the length of the cable is conveniently adjusted in a small range. BRIEF DESCRIPTION OF DRAWINGS
[0014] Fig. 1 It is the upper view structure schematic diagram of the utility model, and
[0015] Fig. 2 It is the isometric structure schematic diagram of the control box of the utility model,
[0016] Fig. 3 It is the cross section isometric structure schematic diagram of the fixing mechanism of the utility model,
[0017] Fig. 4 It is the partial enlarged cross section isometric structure schematic diagram of the separation mechanism and the winding mechanism of the utility model.
[0018] Mark in the drawing: 01, control box;11, box body;12, hinge;13, dust cover;14, buckle;15, air permeable net;02, fixing mechanism;21, supporting plate;22, guide column;23, pressing plate;24, screw;03, separation mechanism;31, main separation plate;32, auxiliary separation plate;33, controller;34, router;04, winding mechanism;41, winding roller;42, spring;43, baffle. DETAILED DESCRIPTION
[0019] In order to facilitate understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.
[0020] Embodiment 1
[0021] The utility model discloses a line management device with strong and weak electricity separation structure, including control box 01, still including fixed mechanism 02, separation mechanism 03 and multiple sets of winding mechanism 04, fixed mechanism 02 installs on control box 01 and is positioned to cable, separation mechanism 03 installs on control box 01 and is separated to cable, multiple sets of winding mechanism 04 all install on control box 01 and are wound to the cable in excess, control box 01 includes box body 11, hinge 12, dust cover 13, buckle 14 and breathable net 15, box body 11 installs on the working face, and the inside of box body 11 is provided with cavity, hinge 12 installs on box body 11, dust cover 13 installs on hinge 12, buckle 14 installs on dust cover 13, and breathable net 15 installs on box body 11, still including that multiple sets of inlet and outlet are opened on box body 11, and dust cover ring is set up on inlet and outlet, fixed mechanism 02 includes the supporting plate 21, two sets of guide column 22, pressing plate 23 and screw 24, the supporting plate 21 installs in the cavity of box body 11, two sets of guide column 22 all install on the supporting plate 21, and pressing plate 23 slidingly installs on two sets of supporting plate 21, and screw 24 is connected with the supporting plate 21, still including that the surface of supporting plate 21 and pressing plate 23 all are pasted with insulating rubber layer, separation mechanism 03 includes main separation plate 31, multiple sets of auxiliary separation plate 32, controller 33 and router 34, main separation plate 31 installs in the cavity of box body 11, multiple sets of auxiliary separation plate 32 all install in the cavity of box body 11, controller 33 installs in the cavity of box body 11, and router 34 installs in the cavity of box body 11, when its work, first, the staff closes dust cover 13 and utilizes buckle 14 and box body 11 locking, avoid the dust of outside into the cavity and influence line operation, through setting up breathable net 15, the equipment heat dissipation is convenient and avoids the dust to enter, and strong and weak electricity cable all are laid through inlet between the supporting plate 21 and pressing plate 23, and the staff twists screw 24, and screw 24 drives pressing plate 23 to descend and presses tightly cable, and the pressing plate 23 is positioned through two sets of guide column 22, avoids pressing plate 23 to rotate along with screw 24, through setting up insulating rubber layer, not only can avoid the supporting plate 21 and pressing plate 23 pressure tightness and be too big and break the cable outer skin, strengthen the protection to cable, but also can shield telecommunication signal, avoid strong electricity to weak electricity and cause the influence, main separation plate 31 separates the inside of the cavity of box body 11, avoids strong and weak electricity and influences each other, through setting up multiple sets of auxiliary separation plate 32, multiple sets of cable are separated and arranged, avoid multiple sets of cable to be wound together, and strong electricity cable is connected with controller 33, and the current delivery is controlled through controller 33, and weak electricity cable is connected with router 34, and it is convenient for router 34 to process weak electricity signal, when needing to overhaul, open dust cover 13.
[0022] Example 2
[0023] As Figs. 1 to 4As shown, the utility model discloses a line management device with strong and weak electricity separation structure, on the basis of embodiment 1;Winding mechanism 04 includes winding roller 41, spring 42 and baffle 43, winding roller 41 rotatory installation is in the cavity of box body 11, spring 42 is installed in the cavity of box body 11 and is connected with winding roller 41, and the bottom of baffle 43 is connected with the top of winding roller 41;When it works, first, the staff closes dustproof cover 13 and utilizes buckle 14 and box body 11 locking, avoids the dust of outside into the cavity and influences the line operation, sets up the ventilating net 15 to facilitate equipment heat dissipation and avoids the dust to enter, and strong and weak electricity cable all are laid between the supporting plate 21 and the pressing plate 23 through the wire inlet, and the staff twists screw 24, and screw 24 drives the pressing plate 23 to descend and compresses the cable, and the pressing plate 23 is positioned through two groups of guide columns 22, avoids the pressing plate 23 to rotate along with screw 24, sets up insulating rubber layer, not only can avoid the supporting plate 21 and the pressing plate 23 compression intensity too big and break the cable outer skin, enhance the protection to cable, and can shield the electric signal, avoid strong electricity to weak electricity and cause the influence, and main partition plate 31 separates the cavity inside of box body 11, avoids strong and weak electricity and influences each other, sets up multiple groups of vice partition plate 32 and separates multiple groups of cables, avoids multiple groups of cables to be wound together, and strong electricity cable is connected with controller 33, and the current delivery is controlled through controller 33, and weak electricity cable is connected with router 34, and the weak electric signal is handled to router 34, and the staff can wind part of cable on winding roller 41 after connecting the line, and setting up baffle 43 can avoid the line to fall off, when needing small distance adjustment cable length, can directly pull the cable, and the cable drives winding roller 41 to rotate, and the length of cable is conveniently adjusted, and sets up spring 42 to control the rotation angle of winding roller 41, when needing to overhaul, opens dustproof cover 13.
[0024] The above only is the preferred implementation manner of the utility model, should point out, for ordinary skill for the person in the art in this technology field, on the premise that without departing from the technical principle of the utility model, can also make a number of improvements and variations, these improvements and variations also should be regarded as the protection range of the utility model.
Claims
1. A line management device with a strong and weak current separation structure, comprising a control box (01); characterized in that, It also includes a fixing mechanism (02), a separating mechanism (03), and multiple winding mechanisms (04). The fixing mechanism (02) is installed on the control box (01) and positions the cable. The separating mechanism (03) is installed on the control box (01) and separates the cable. The multiple winding mechanisms (04) are all installed on the control box (01) and wind up the excess cable.
2. The line management device with a strong and weak current separation structure as described in claim 1, characterized in that, The control box (01) includes a box body (11), a hinge (12), a dust cover (13), a buckle (14), and a ventilated mesh (15). The box body (11) is installed on the working surface. The box body (11) has a cavity inside. The hinge (12) is installed on the box body (11). The dust cover (13) is installed on the hinge (12). The buckle (14) is installed on the dust cover (13). The ventilated mesh (15) is installed on the box body (11).
3. A line management device with a strong and weak current separation structure as described in claim 2, characterized in that, It also includes multiple sets of inlet and outlet ports on the box body (11), and dustproof sleeves are provided on both the inlet and outlet ports.
4. A line management device with a strong and weak current separation structure as described in claim 2, characterized in that, The fixing mechanism (02) includes a tray (21), two sets of guide posts (22), a pressing plate (23) and screws (24). The tray (21) is installed in the cavity of the box (11). Both sets of guide posts (22) are installed on the tray (21). The pressing plate (23) is slidably installed on the two sets of trays (21). The screws (24) are screwed to the tray (21).
5. A line management device with a strong and weak current separation structure as described in claim 4, characterized in that, It also includes that the surfaces of the tray (21) and the pressing plate (23) are covered with an insulating rubber layer.
6. A line management device with a strong and weak current separation structure as described in claim 2, characterized in that, The partition mechanism (03) includes a main partition plate (31), multiple sets of sub-partition plates (32), a controller (33), and a router (34). The main partition plate (31) is installed in the cavity of the box (11), the multiple sets of sub-partition plates (32) are all installed in the cavity of the box (11), the controller (33) is installed in the cavity of the box (11), and the router (34) is installed in the cavity of the box (11).
7. A line management device with a strong and weak current separation structure as described in claim 2, characterized in that, The winding mechanism (04) includes a winding roller (41), a spring (42) and a baffle (43). The winding roller (41) is rotatably installed in the cavity of the box body (11). The spring (42) is installed in the cavity of the box body (11) and connected to the winding roller (41). The bottom end of the baffle (43) is connected to the top end of the winding roller (41).
Citation Information
Patent Citations
Circuit manager and circuit management device with strong and weak electroseparation structure
CN208571517U