Transmitting box for power supply of network equipment

By introducing an adjustable mounting plate structure and dehumidification and waterproof design into the transmitter box, the problems of space waste and moisture influence on electrical components are solved, and efficient and stable use of electrical components is achieved.

CN223322251UActive Publication Date: 2025-09-09SHANDONG ZHONGHONG CLOUD COMPUTING TECH CO LTD
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Patent Information

Application Number
CN202422346705.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-09-09
Estimated Expiration
2034-09-26

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Abstract

A transmission box for power supply of network equipment relates to the technical field of protective box bodies and comprises a box shell, a plurality of horizontal mounting plates are arranged in the box shell side by side from top to bottom, the height of each horizontal mounting plate is adjusted in the vertical direction through an adjusting assembly, and the horizontal mounting plates and the box shell are detachably arranged. And vertical mounting plates of which the heights are adjusted along the vertical direction are arranged at the front end part of the horizontal mounting plate in parallel. According to the utility model, the problems that in the using process of the device in the prior art, various different types of electrical elements are arranged in the gearbox, so that the electrical elements of different types occupy different spaces in the assembling process, the internal space of the transmission box is easily wasted, and the use is influenced are solved; and the problem that the working stability of the internal electrical elements is affected due to the fact that the humidity of the sucked air is high when the external weather is relatively humid because the internal electrical elements need to be cooled in the use process of the existing transmission box for network equipment power supply is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of protection boxes, in particular to a transmitter box for powering network equipment. Background Art

[0002] Network devices and components are physical entities connected to the network. There are many types of network devices, and the number is increasing day by day. Basic network equipment includes: computers (whether they are personal computers or servers), hubs, switches, bridges, routers, gateways, network interface cards (NICs), wireless access points (WAPs), printers and modems, fiber optic transceivers, fiber optic cables, etc. Whether it is a local area network, a metropolitan area network, or a wide area network, it is usually physically composed of network connection devices and transmission media such as network cards, hubs, switches, routers, network cables, RJ45 connectors, etc. Network equipment also includes repeaters, bridges, routers, gateways, firewalls, switches, etc.

[0003] With the development of oil and gas, chemical industry, communication, environmental protection, safety and logistics, signal transmission is a big problem in signal testing, transmission and control systems in various long-distance, unmanned and power supply-difficult areas because there is no AC working power supply. By using the transmission box, the above-mentioned various components can be contained and protected.

[0004] The prior art discloses a patent with publication number CN201742333U. The transmitter box has a transmitter box body, a photovoltaic cell assembly is installed on the outer top of the box body, a photovoltaic control assembly, a test transmitter module and an input-output assembly are installed inside the box body, and a battery assembly is placed at the bottom of the box body, wherein: the photovoltaic cell assembly is connected to the photovoltaic cell access end of the photovoltaic control assembly, the battery assembly is connected to the battery access end of the photovoltaic control assembly, and the test transmitter load access end of the photovoltaic control assembly is connected to the test transmitter module through the input-output assembly. It can be used in signal testing, transmission, and control systems in various weather conditions, long distances, and unattended conditions where there is no grid coverage and power supply is difficult.

[0005] As the existing devices are used, the shortcomings of this technology are gradually exposed, mainly in the following aspects:

[0006] First, during use of the existing transmission box, since the gearbox has various types of electrical components, the different types of electrical components occupy different spaces during assembly, which easily causes waste of space inside the transmission box and affects its use.

[0007] Second, during use, the existing network equipment power supply transformer box needs to dissipate heat from the internal electrical components. This results in the humidity of the inhaled air being high when the external weather is humid, affecting the working stability of the internal electrical components.

[0008] As can be seen from the above, the existing technology obviously has inconveniences and defects in actual use, so it is necessary to improve it. Utility Model Content

[0009] In response to the defects in the existing technology, the present invention provides a transmitter box for powering network equipment, which is used to solve the problem that during use of the device in the traditional technology, due to the presence of various types of electrical components in the gearbox, different types of electrical components occupy different spaces during the assembly process, which easily causes waste of internal space of the transmitter box and affects use; and the existing transmitter box for powering network equipment needs to dissipate heat for the internal electrical components during use, which results in the humidity of the inhaled air being high when the external weather is relatively humid, affecting the stability of the operation of the internal electrical components.

[0010] In order to achieve the above-mentioned purpose, the present utility model provides the following technical solutions.

[0011] A network equipment power supply transmission box includes a box shell, wherein a plurality of horizontal mounting plates are arranged in parallel from top to bottom inside the box shell, each of the horizontal mounting plates is adjusted in height vertically by an adjusting component and is detachably arranged with the box shell.

[0012] The front end of the horizontal mounting plate is provided with a vertical mounting plate for adjusting the height vertically.

[0013] The bottom of the box shell is provided with an air inlet box, and a dehumidification structure is detachably provided in the air inlet box.

[0014] A plurality of punching bags are fixedly connected in parallel to the top of the box shell, and a waterproof structure is provided at the upper end of the punching bag.

[0015] As an optimized solution, the air outlet is vertically arranged, the lower port of the air outlet is connected to the inner cavity of the box shell, and a number of air outlet holes connected to its inner cavity are arranged on the side wall of the air outlet near the upper end, and the lower edge of the air outlet hole is higher than the upper surface of the box shell.

[0016] As an optimized solution, the waterproof structure includes a conical air guide cover fixedly connected to the upper end of each of the air outlet tubes.

[0017] As an optimized solution, two vertically arranged rectangular sliding holes are arranged side by side on the vertical mounting plate, and a locking knob is slidably provided in the rectangular sliding hole, and the end of the locking knob is threadedly connected to the front end of the horizontal mounting plate.

[0018] As an optimized solution, a plurality of mounting holes are distributed in the area of ​​the vertical mounting plate between the two rectangular sliding holes.

[0019] As an optimized solution, the adjustment component includes two vertical slide grooves opened vertically on the opposite inner walls of the box shell, and the two vertical slide grooves are vertically opened on the same side wall with several horizontal slide grooves connected to them. The other end of the horizontal slide groove is downwardly opened with a card slot, and the end of the horizontal mounting plate is fixed with a slider that slides along the vertical slide grooves, the horizontal slide grooves and the card slots.

[0020] As an optimized solution, the air inlet box includes a rectangular cylindrical shell, the upper end of which is fixed to the outer bottom surface of the box shell and communicated with the inner cavity of the box shell. An air inlet fan is rotatably installed in the air inlet box.

[0021] As an optimized solution, the dehumidification structure includes a dehumidification box body, the upper end of the dehumidification box body is open, the lower end of the dehumidification box body is provided with ventilation holes, and a dehumidification agent bag is provided in the dehumidification box body.

[0022] As an optimized solution, a pull-out hole is provided on the side wall of the rectangular cylindrical shell, and the dehumidification box is slidably arranged in the rectangular cylindrical shell through the pull-out hole.

[0023] As an optimized solution, support slides are horizontally fixed to the relative inner walls of the rectangular cylinder shell, the relative edges of the lower end of the dehumidification box shell are slidingly supported on the support slides, and a handle is fixed to the outer end of the dehumidification box shell.

[0024] As an optimized solution, a filter screen is fixedly connected horizontally to a position of the rectangular cylindrical shell near the lower port, and a scraper is provided on the lower surface of the filter screen for horizontal sliding contact with the filter screen.

[0025] As an optimized solution, a screw is provided for horizontal rotation relative to the inner wall of the rectangular cylindrical shell, the screw is threadedly connected to the scraper, and a driving machine for driving the screw to rotate is fixed to the outer wall of the rectangular cylindrical shell.

[0026] As an optimized solution, the front of the box shell is provided with an opening and is hingedly provided with a box door.

[0027] Compared with the prior art, the beneficial effects of the present invention are:

[0028] The height of the horizontal mounting plate can be flexibly adjusted by the adjustment component. When the height of the horizontal mounting plate needs to be adjusted, the horizontal mounting plate is lifted up to drive the slider from the card slot to the horizontal slot, and then the horizontal mounting plate is slid horizontally to move the slider from the horizontal slot to the vertical slot. After the horizontal mounting plate is slid vertically to select a suitable height, the slider is moved along the horizontal slot into the card slot to be fixed. This is convenient and fast, and has a simple structure, overcoming the problem of occupying the internal space of the box due to the complex adjustment structure in the traditional technology. The flexible height adjustment of the horizontal mounting plate and the adjustment of the spacing between adjacent horizontal mounting plates can meet the spatial layout of different types of electrical components.

[0029] By vertically sliding a vertical mounting plate at the front end of the horizontal mounting plate, electrical components can also be installed using the vertical mounting plate, thereby increasing the scope of use;

[0030] By setting up a dehumidification structure, the external space sucked in can be dehumidified, the humidity of the air entering the box shell can be reduced, the impact on electrical components can be reduced, and the dehumidifier bag can be replaced regularly to ensure dehumidification efficiency;

[0031] By setting a waterproof structure on the top of the box shell, external liquid can be prevented from entering the box shell from the top, thereby improving the working stability of the electrical components. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly describes the drawings required for the specific embodiments or the description of the prior art. Similar elements or parts are generally identified by similar reference numerals throughout the drawings. Elements or parts in the drawings are not necessarily drawn to scale.

[0033] Figure 1 It is a structural diagram of the utility model;

[0034] Figure 2 This is a structural diagram of the top adjustment component of the utility model.

[0035] In the figure: 1-box shell; 2-horizontal mounting plate; 3-vertical mounting plate; 4-mounting hole; 5-rectangular sliding hole; 6-locking knob; 7-rectangular cylinder shell; 8-air inlet fan; 9-dehumidification box body; 10-handle; 11-filter; 12-screw; 13-scraper; 14-drive motor; 15-air outlet; 16-air outlet; 17-conical air guide cover; 18-vertical slide; 19-horizontal slide; 20-card slot; 21-slider. DETAILED DESCRIPTION

[0036] The following embodiments of the technical solution of the present invention are described in detail with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present invention and are therefore only examples and are not intended to limit the scope of protection of the present invention.

[0037] like Figure 1 and Figure 2 As shown, a transmitter box for powering network equipment includes a box shell 1. Inside the box shell 1, a plurality of horizontal mounting plates 2 are arranged side by side from top to bottom. Each horizontal mounting plate 2 is adjusted in height vertically by an adjusting component and is detachably arranged with the box shell 1.

[0038] The front end of the horizontal mounting plate 2 is provided with a vertical mounting plate 3 for adjusting the height vertically.

[0039] The bottom of the box shell 1 is provided with an air inlet box, and a dehumidification structure is detachably provided inside the air inlet box.

[0040] A plurality of air outlets 15 are fixedly connected in parallel to the top of the box shell 1 , and a waterproof structure is provided at the upper end of the air outlets 15 .

[0041] The air outlet 15 is arranged vertically, and the lower end of the air outlet 15 is connected to the inner cavity of the box shell 1. The side wall of the air outlet 15 near the upper end is surrounded by a plurality of air outlet holes 16 connected to its inner cavity, and the lower edge of the air outlet hole 16 is higher than the upper surface of the box shell 1.

[0042] The waterproof structure includes a conical air guide cover 17 fixed to the upper end of each air outlet tube 15.

[0043] Two vertically arranged rectangular sliding holes 5 are arranged side by side on the vertical mounting plate 3 , and a locking knob 6 is slidably provided in the rectangular sliding hole 5 , and the end of the locking knob 6 is threadedly connected to the front end of the horizontal mounting plate 2 .

[0044] A plurality of mounting holes 4 are evenly distributed in the area between the two rectangular sliding holes 5 of the vertical mounting plate 3 , and mounting holes 4 are also evenly distributed on the horizontal mounting plate 2 .

[0045] The adjustment component includes two vertical slide grooves 18 opened vertically on the opposite inner walls of the box shell 1. The two vertical slide grooves 18 face the same side wall and are vertically opened with a plurality of horizontal slide grooves 19 connected thereto. The other end of the horizontal slide groove 19 is downwardly opened with a card slot 20. The end of the horizontal mounting plate 2 is fixed with a slider 21 that slides along the vertical slide groove 18, the horizontal slide groove 19 and the card slot 20.

[0046] When the horizontal mounting plate 2 is tilted in the left-right direction, the sliding block can be separated from the vertical guide groove, and then the horizontal mounting plate can be taken out.

[0047] The air inlet box includes a rectangular cylindrical shell 7, the upper end of which is fixed to the outer bottom surface of the box shell 1 and communicated with the inner cavity of the box shell 1. An air inlet fan 8 is rotatably provided in the air inlet box.

[0048] The dehumidification structure includes a dehumidification box body 9 , the upper end of the dehumidification box body 9 is opened, the lower end of the dehumidification box body 9 is provided with ventilation holes, and a dehumidification agent bag is arranged in the dehumidification box body 9 .

[0049] A drawing hole is provided on the side wall of the rectangular cylindrical shell 7 , and the dehumidification box body 9 is slidably arranged in the rectangular cylindrical shell 7 through the drawing hole.

[0050] Support slides are fixedly connected horizontally to the opposite inner walls of the rectangular cylindrical shell 7, and the opposite edges of the lower end of the dehumidification box shell 1 are slidably supported on the support slides. A handle 10 is fixedly connected to the outer end of the dehumidification box shell 1.

[0051] A filter screen 11 is fixedly connected horizontally to a position near the lower end of the rectangular cylindrical shell 7 , and a scraper 13 is provided on the lower surface of the filter screen 11 so as to slide horizontally and be in frictional contact with the filter screen 11 .

[0052] A lead screw 12 is provided between the rectangular cylindrical shell 7 and the inner wall thereof for horizontal rotation. The lead screw 12 is threadedly connected to a scraper 13 . A driving machine 14 for driving the lead screw 12 to rotate is fixed to the outer wall of the rectangular cylindrical shell 7 .

[0053] The front of the box shell 1 is opened and has a door hinged thereon.

[0054] The working principle of this device is:

[0055] The height of the horizontal mounting plate 2 can be flexibly adjusted by the adjustment component. When the height of the horizontal mounting plate 2 needs to be adjusted, the horizontal mounting plate 2 is lifted up to drive the slider 21 from the card slot 20 to the horizontal slide slot 19, and then the horizontal mounting plate 2 is slid horizontally to move the slider 21 from the horizontal slide slot 19 to the vertical slide slot 18. After the horizontal mounting plate 2 is slid vertically to select a suitable height, the slider 21 is fixed along the horizontal slide slot 19 into the card slot 20. This is convenient and fast, and has a simple structure, overcoming the problem of occupying the internal space of the box due to the complex adjustment structure in the traditional technology; the flexible adjustment of the height of the horizontal mounting plate 2 and the adjustment of the distance between adjacent horizontal mounting plates 2 can meet the spatial layout of different types of electrical components;

[0056] By vertically slidingly arranging a vertical mounting plate 3 at the front end of the horizontal mounting plate 2, the vertical mounting plate 3 can also be used to install electrical components, thereby increasing the scope of use;

[0057] By setting up the dehumidification structure, the external space sucked in can be dehumidified, the humidity of the air entering the box shell 1 can be reduced, the impact on the electrical components can be reduced, and the dehumidifier bag can be replaced regularly to ensure the dehumidification efficiency;

[0058] By providing a waterproof structure on the top of the box shell 1, it is possible to prevent external liquid from entering the box shell 1 from the top, thereby improving the working stability of the electrical components.

[0059] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention, and they should all be included in the scope of the claims and description of the present invention.

Claims

1. Transmitter box for power supply of network equipment, characterized by: The invention comprises a box shell (1), wherein a plurality of horizontal mounting plates (2) are arranged in parallel from top to bottom inside the box shell (1), and each of the horizontal mounting plates (2) is adjusted in height vertically by an adjusting component and is detachably arranged with the box shell (1). A vertical mounting plate (3) for adjusting the height in the vertical direction is provided in parallel at the front end of the horizontal mounting plate (2). An air inlet box is provided at the bottom of the box shell (1), and a dehumidification structure is detachably provided in the air inlet box. A plurality of air outlets (15) are fixedly connected in parallel to the top of the box shell (1), and a waterproof structure is provided at the upper end of the air outlets (15).

2. The network equipment power supply transmission box according to claim 1, characterized in that: The air outlet tube (15) is vertically arranged, and the lower end of the air outlet tube (15) is connected to the inner cavity of the box shell (1). The side wall of the air outlet tube (15) near the upper end is surrounded by a plurality of air outlet holes (16) connected to the inner cavity thereof, and the lower edge of the air outlet hole (16) is higher than the upper surface of the box shell (1).

3. The network equipment power supply transmission box according to claim 2, characterized in that: The waterproof structure comprises a conical flow guide cover (17) fixedly connected to the upper end of each of the air outlet cylinders (15).

4. The network equipment power supply transmission box according to claim 3, characterized in that: Two vertically arranged rectangular sliding holes (5) are arranged in parallel on the vertical mounting plate (3), a locking knob (6) is slidably provided in the rectangular sliding hole (5), and the end of the locking knob (6) is threadedly connected to the front end of the horizontal mounting plate (2).

5. The network equipment power supply transmission box according to claim 4, characterized in that: A plurality of mounting holes (4) are evenly distributed in the area of ​​the vertical mounting plate (3) between the two rectangular sliding holes (5).

6. The network equipment power supply transmission box according to claim 5, characterized in that: The adjustment assembly includes two vertical slide grooves (18) vertically opened on opposite inner walls of the box shell (1), and a plurality of horizontal slide grooves (19) vertically opened on the same side wall of the two vertical slide grooves (18) are connected thereto, and a clamping groove (20) is downwardly opened at the other end of the horizontal slide groove (19), and a slider (21) is fixed to the end of the horizontal mounting plate (2) and is slidably arranged along the vertical slide grooves (18), the horizontal slide grooves (19) and the clamping groove (20).

7. The network equipment power supply transmission box according to claim 6, characterized in that: The air inlet box comprises a rectangular cylindrical shell (7), the upper end of which is fixedly connected to the outer bottom surface of the box shell (1) and communicated with the inner cavity of the box shell (1), and an air inlet fan (8) is rotatably provided in the air inlet box.

8. The network equipment power supply transmission box according to claim 7, characterized in that: The dehumidification structure comprises a dehumidification box (9), the upper end of the dehumidification box (9) is open, the lower end of the dehumidification box (9) is uniformly provided with ventilation holes, and a dehumidification agent bag is arranged in the dehumidification box (9).

9. The network equipment power supply transmission box according to claim 8, characterized in that: A draw-out hole is provided on the side wall of the rectangular cylindrical shell (7), and the dehumidification box (9) is slidably arranged in the rectangular cylindrical shell (7) through the draw-out hole.

10. The network equipment power supply transmission box according to claim 9, characterized in that: A filter screen (11) is fixedly connected horizontally to a position of the rectangular cylindrical shell (7) near the lower port, and a scraper (13) in frictional contact with the filter screen (11) is provided on the lower surface of the filter screen (11) so as to slide horizontally.

Citation Information

Patent Citations

  • Self-powered transmitting box

    CN201742333U