Anti-condensation communication case

By incorporating a combination of dehumidifying cotton, heating elements, and temperature and humidity sensors within the communication chassis, the problem of traditional chassis being unable to cope with temperature and humidity changes is solved. This achieves effective moisture removal and condensation control, thereby improving the stability and protection performance of the equipment.

CN223829571UActive Publication Date: 2026-01-23SHENZHEN GUANDING METAL TECH CO LTD
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Patent Information

Application Number
CN202423296528.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-23
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional communication enclosures cannot cope with changes in internal temperature and humidity, leading to moisture buildup that cannot be discharged or eliminated in time. This increases the risk of damage to electronic components and affects the stability and reliability of the equipment.

Method used

Ventilation holes are set at both ends of the chassis, with dehumidifying cotton inserted inside. It is equipped with a fan, heating element, and temperature and humidity sensor. The working status of the heating element and fan is automatically adjusted through the electrical connection between the temperature and humidity sensor and the temperature controller. Combined with a sliding cover and sealing structure, temperature and humidity control and moisture discharge are achieved.

Benefits of technology

It effectively reduces condensation, improves the anti-condensation performance inside the chassis, enhances the stable operation and protection of the equipment, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-condensation communication case, which belongs to the technical field of communication cases and comprises a case body, ventilation holes are arranged at two ends of the case body, dehumidification cotton is clamped in the ventilation holes, fans are arranged on one sides of the ventilation holes, a base is slidably arranged in the case body, a heating plate is arranged on one side of the base, and a temperature controller is arranged on one side of the heating plate. A temperature and humidity sensor is arranged in the case, and the temperature controller is electrically connected with the temperature and humidity sensor; a cover plate is slidably arranged on the top of the case, heat insulation cotton is arranged on the inner wall of the case, and the cover plate is fixed to the case through a locking piece. According to the device, ventilation holes are formed in the two ends of a case, dehumidification cotton is clamped in the ventilation holes, a heating piece and a temperature controller are arranged in the case, and the heating piece and the temperature controller are electrically connected with a temperature and humidity sensor, so that the device can monitor temperature and humidity changes in the case; when the humidity is relatively high, the dehumidification cotton can absorb part of moisture, and the heating sheet can increase the temperature in the case, so that the generation of condensation is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of communication chassis technology, and more specifically, it relates to an anti-condensation communication chassis. Background Technology

[0002] In the field of communications, communication enclosures are shells or cabinets used to house and protect communication equipment. In areas with high humidity and frequent temperature changes, condensation is prone to occur inside communication enclosures. Condensation can cause serious damage to electronic components inside the enclosure, leading to problems such as short circuits and corrosion, thereby affecting the normal operation and lifespan of the communication equipment. However, traditional communication enclosures are simple shell structures that cannot cope with changes in temperature and humidity inside the enclosure, causing moisture to accumulate inside the enclosure and not be able to be discharged or eliminated in time. This increases the risk of damage to electronic components, leading to frequent failures of communication equipment, increasing maintenance costs and repair difficulty, and affecting the stability and reliability of the communication system. Utility Model Content

[0003] To address the aforementioned technical problems, this utility model provides an anti-condensation communication enclosure, which solves the technical problem that traditional communication enclosures, with their simple shell structure, cannot cope with changes in temperature and humidity inside the enclosure, leading to moisture accumulation inside the enclosure that cannot be discharged or eliminated in a timely manner.

[0004] The purpose and function of this utility model's anti-condensation communication chassis are achieved through the following specific technical means:

[0005] An anti-condensation communication chassis includes a chassis with ventilation holes at both ends. Dehumidifying cotton is inserted into the ventilation holes, and a fan is installed on one side of each ventilation hole. A base is slidably installed inside the chassis, with a heating element on one side of the base and a temperature controller on one side of the heating element. A temperature and humidity sensor is installed inside the chassis, and the temperature controller is electrically connected to the temperature and humidity sensor. A cover plate is slidably installed on the top of the chassis, and heat insulation cotton is installed on the inner wall of the chassis. The cover plate is fixed to the chassis by a locking device.

[0006] According to a preferred embodiment, a plurality of slots are provided on one side of the inner wall of the chassis, and a plurality of blocks are provided on the base corresponding to the slots, the blocks being engaged in the slots.

[0007] According to a preferred embodiment, a drainage groove is provided at the bottom of the chassis, and a riser is also provided at the bottom of the chassis.

[0008] According to a preferred embodiment, a sliding groove is provided on the top of the chassis corresponding to the cover plate, and the cover plate is slidably connected to the chassis through the sliding groove.

[0009] According to a preferred embodiment, the bottom of the cover plate is arc-shaped and made of plastic. The cover plate has multiple sets of heat dissipation holes, and the dehumidifying cotton is inserted into each of the heat dissipation holes.

[0010] According to a preferred embodiment, the locking member includes a rotating block, a mounting groove is provided on one side of the chassis, a round shaft is provided in the mounting groove, the rotating block is sleeved on the round shaft, and an adjusting rod is provided on the rotating block.

[0011] According to a preferred embodiment, the bottom of the cover plate is provided with a sealing strip, and a protective cover is provided on one side of the ventilation hole.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] 1. This utility model, by setting ventilation holes at both ends of the chassis and inserting dehumidifying cotton therein, and by installing a heating element and a temperature controller inside the chassis and electrically connecting them to a temperature and humidity sensor, allows users to monitor changes in temperature and humidity inside the chassis. When the humidity is high, the dehumidifying cotton can absorb some moisture, and the heating element can automatically start heating under the action of the temperature controller, raising the temperature inside the chassis, thereby reducing condensation and improving the anti-condensation performance of the device. After the temperature and humidity are effectively controlled, users can accelerate the air circulation inside the chassis with a fan to further remove moisture, so that users do not need to worry about condensation inside the chassis damaging electronic components frequently, thus improving the device's ability to ensure the stable operation of communication equipment.

[0014] 2. When using this device, the user can install the base by using the sliding base inside the chassis, the slots on the inner wall, and the corresponding clips on the base, which improves the adaptability and ease of installation of the device. Then, the sliding cover on the top of the chassis and the sealing strip at the bottom of the cover enable the device to form a good seal when closed, preventing the intrusion of external moisture and providing a more reliable protective environment for the equipment inside the chassis, thus improving the protective effect and durability of the device. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the assembled structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;

[0017] Figure 3 This is a schematic diagram of the rotating block structure of this utility model;

[0018] Figure 4 yes Figure 3 Enlarged view of region a in the middle;

[0019] Figure 5 This is a schematic diagram of the base structure of this utility model;

[0020] Figure 6 This is a schematic diagram of the cover plate structure of this utility model.

[0021] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0022] 11. Chassis; 111. Round shaft; 112. Mounting slot; 12. Ventilation hole; 13. Dehumidifying cotton; 14. Fan; 15. Base; 16. Heating element; 17. Temperature controller; 18. Temperature and humidity sensor; 19. Cover plate; 191. Heat dissipation hole; 21. Insulation cotton; 22. Slot; 23. Drainage channel; 24. Raising bracket; 25. Locking block; 31. Adjusting rod; 32. Sealing strip; 33. Protective cover; 34. Rotating block. Detailed Implementation

[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the technical solution of this utility model, but should not be used to limit the scope of protection of this utility model.

[0024] Example:

[0025] like Figures 1 to 5 As shown, this utility model provides an anti-condensation communication enclosure, including an enclosure 11. Ventilation holes 12 are provided at both ends of the enclosure 11, with dehumidifying cotton 13 inserted inside each hole 12. A fan 14 is provided on one side of each ventilation hole 12. Users can accelerate air circulation within the enclosure 11 by operating the fan 14, allowing the device to expel moisture and improving ventilation, thus enhancing the user's ability to control humidity within the enclosure 11. A slidable base 15 is provided inside the enclosure 11. A heating element 16 is located on one side of the base 15, and a temperature controller 17 is located on the other side of the heating element 16. A temperature and humidity sensor 18 is located inside the enclosure 11, and the temperature controller 17 is electrically connected to the temperature and humidity sensor 18. This temperature control setting allows the heating element 16 to automatically adjust its operating state according to the temperature and humidity conditions within the enclosure 11, enabling users to control the temperature within the enclosure 11 and improving the device's temperature regulation accuracy. The temperature and humidity sensor 18 can be a DHT22 model sensor; the temperature controller 17 can be an E5CSV model PID temperature controller; and the heating element 16 can be an HPS-100 model ceramic heating element.

[0026] like Figure 2 , 5As shown, a cover plate 19 is slidably mounted on the top of the chassis 11, and heat insulation cotton 21 is provided on the inner wall of the chassis 11. The cover plate 19 is fixed to the chassis 11 by locking components. The heat insulation cotton 21 reduces the impact of external heat on the interior of the chassis 11, allowing users to maintain a stable internal temperature and improving the heat insulation performance of the device. Multiple sets of slots 22 are provided on one side of the inner wall of the chassis 11, and multiple sets of locking blocks 25 are provided on the base 15 corresponding to the slots 22. The locking blocks 25 are engaged within the slots 22. Users can install the base 15 by engaging the locking blocks 25 with the slots 22, improving the installation flexibility of the device.

[0027] like Figure 2 As shown, a drainage groove 23 is provided at the bottom of the chassis 11, and a riser 24 is also provided at the bottom of the chassis 11. The drainage groove 23 can promptly drain any condensate that may be generated inside the chassis 11, allowing users to avoid water accumulation that could damage the equipment and improving the drainage effect of the device.

[0028] The top of the chassis 11 has a sliding groove corresponding to the cover plate 19, and the cover plate 19 is slidably connected to the chassis 11 through the sliding groove. Users can slide the cover plate 19 through the sliding groove to open or close the chassis 11, which makes the device easier to install and maintain, and improves the ease of operation of the device.

[0029] like Figure 2 , 6 As shown, the bottom of the cover plate 19 is curved and made of plastic. The curved bottom helps to guide condensation away; at the same time, the plastic material reduces the possibility of condensation. The cover plate 19 has multiple sets of heat dissipation holes 191, and each heat dissipation hole 191 is fitted with dehumidifying cotton 13. Through the combined arrangement of the heat dissipation holes 191 and the dehumidifying cotton 13, dehumidification can be carried out while dissipating heat, allowing the user to balance the temperature and humidity inside the chassis 11 and improve the overall performance of the device.

[0030] like Figure 3 , 4 As shown, the locking component includes a rotating block 34. A mounting groove 112 is provided on one side of the housing 11, and a round shaft 111 is located within the mounting groove 112. The rotating block 34 is fitted onto the round shaft 111, and an adjusting rod 31 is provided on the rotating block 34. The user can rotate the adjusting rod 31 to drive the rotating block 34, thereby locking the cover plate 19 and the housing 11. This ensures that the device maintains a stable closed state during operation, improving the structural stability of the device.

[0031] A sealing strip 32 is provided at the bottom of the cover plate 19, and a protective cover 33 is provided on one side of the ventilation hole 12. The sealing strip 32 enhances the airtightness of the chassis 11, allowing users to prevent the intrusion of external moisture and dust, thus improving the protective effect of the device.

[0032] The specific usage and function of this embodiment are as follows:

[0033] When the chassis 11 is in an environment with high humidity and frequent temperature changes, the temperature and humidity sensor 18 inside the chassis 11 will monitor the internal temperature and humidity. If the humidity exceeds the set value, the dehumidifying cotton 13 in the ventilation hole 12 will first absorb some moisture. At the same time, the temperature controller 17 will control the heating element 16 to work based on the data from the temperature and humidity sensor 18, raising the temperature inside the chassis 11 and reducing condensation. Users can also start the fan 14 as needed to accelerate air circulation inside the chassis 11 and expel moisture. The top cover 19 of the chassis 11 can be opened or closed by sliding along a groove, facilitating equipment installation and maintenance. The arc-shaped bottom of the cover 19 can guide any condensation that may occur to the drain trough 23. The dehumidifying cotton 13 in the heat dissipation holes 191 on the cover 19 further dehumidifies while dissipating heat. When the cover 19 needs to be locked, the user rotates the adjusting lever 31 to drive the rotating block 34, fixing the cover 19 to the chassis 11. The sealing strip 32 at the bottom of the cover 19 enhances the airtightness of the chassis 11, blocking external moisture and dust. The drainage groove 23 at the bottom of the chassis 11 can drain condensate in time, preventing water accumulation from damaging the equipment, while the riser 24 helps with ventilation and moisture prevention at the bottom of the chassis 11. The heat insulation cotton 21 on the inner wall of the chassis 11 reduces the impact of external heat on the interior of the chassis 11, maintaining a stable internal temperature.

[0034] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It is obvious to those skilled in the art that this utility model is not limited to the details of the above exemplary embodiments.

Claims

1. A condensation-proof communication enclosure, comprising an enclosure (11), characterized in that: The chassis (11) has ventilation holes (12) at both ends. Dehumidifying cotton (13) is installed inside the ventilation holes (12). A fan (14) is installed on one side of each ventilation hole (12). A base (15) is slidably installed inside the chassis (11). A heating element (16) is installed on one side of the base (15). A temperature controller (17) is installed on one side of the heating element (16). A temperature and humidity sensor (18) is installed inside the chassis (11). The temperature controller (17) is electrically connected to the temperature and humidity sensor (18). A cover plate (19) is slidably installed on the top of the chassis (11). Heat insulation cotton (21) is installed on the inner wall of the chassis (11). The cover plate (19) is fixed to the chassis (11) by a locking device.

2. The anti-condensation communication chassis according to claim 1, characterized in that: The inner wall of the chassis (11) has multiple sets of slots (22) on one side, and the base (15) has multiple sets of blocks (25) corresponding to the slots (22), and the blocks (25) are engaged in the slots (22).

3. The anti-condensation communication chassis according to claim 2, characterized in that: The bottom of the chassis (11) is provided with a drainage groove (23) and a riser (24) is also provided at the bottom of the chassis (11).

4. The anti-condensation communication chassis according to claim 3, characterized in that: The top of the chassis (11) is provided with a sliding groove corresponding to the cover plate (19), and the cover plate (19) is slidably connected to the chassis (11) through the sliding groove.

5. The anti-condensation communication chassis according to claim 4, characterized in that: The bottom of the cover plate (19) is arc-shaped and made of plastic. Multiple sets of heat dissipation holes (191) are opened on the cover plate (19), and the dehumidifying cotton (13) is inserted in each of the heat dissipation holes (191).

6. The anti-condensation communication chassis according to claim 1, characterized in that: The locking component includes a rotating block (34), and a mounting groove (112) is provided on one side of the housing (11). A round shaft (111) is provided in the mounting groove (112), and the rotating block (34) is sleeved on the round shaft (111). An adjusting rod (31) is provided on the rotating block (34).

7. The anti-condensation communication chassis according to claim 6, characterized in that: The bottom of the cover plate (19) is provided with a sealing strip (32), and a protective cover (33) is provided on one side of the ventilation hole (12).