Hanging scaffold type heat dissipation structure of airspace control device

By designing a suspended heat dissipation structure in the airspace control device, and utilizing the suspended plate and ventilation slots to diffuse the airflow from the fan, the heat dissipation problem of the airspace control device was solved, achieving a better heat dissipation effect.

CN224068987UActive Publication Date: 2026-03-31CCCC REMOTE SENSING TIANYU TECH JIANGSU CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing airspace control equipment suffers from heat dissipation problems during operation, affecting its normal functioning.

Method used

A suspended heat dissipation structure was designed, including a shell, a suspended plate, a cooling fan, and cooling fins. The fan exhaust air is diffused and distributed through the ventilation holes and diversion slots on the suspended plate, thereby increasing the heat dissipation range.

Benefits of technology

The heat dissipation effect of the airspace control device has been improved, ensuring that the device operates normally under high load conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hanging scaffold type heat dissipation structure of an airspace control device, which comprises a shell of the airspace control device, a hanging scaffold is hung below the shell, and the surface of the hanging scaffold is separated from the bottom of the shell; a ventilation opening is formed in the hanging scaffold, a cooling fan is installed below the hanging scaffold, and outlet air of the cooling fan can be blown to the bottom of the shell through the ventilation opening. Heat dissipation fins are arranged at the bottom of the shell. Outlet air of the heat dissipation fan can be blown to the heat dissipation fins through the ventilation openings. A plurality of separation strips are arranged in the ventilation opening and divide the ventilation opening into a plurality of diversion grooves. A plurality of cooling fans are installed below the hanging scaffold, a plurality of ventilation openings are formed in the hanging scaffold, and the cooling fans are installed under the ventilation openings respectively. According to the utility model, the airspace control device can be well cooled.
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Description

Technical Field

[0001] This utility model relates to the field of airspace control devices, and more particularly to a hanging-plate type heat dissipation structure for airspace control devices. Background Technology

[0002] Airspace control equipment is a technological tool used to prevent, interfere with, or control unauthorized drones. Its core function is to eliminate drone threats through proactive intervention, ensuring airspace safety and privacy. Airspace control equipment generates heat during operation; therefore, a suitable heat dissipation structure needs to be designed to ensure its proper functioning. Summary of the Invention

[0003] Purpose of the invention: In order to overcome the shortcomings of the existing technology, this utility model provides a hanging plate-type heat dissipation structure for airspace control devices, which aims to provide good heat dissipation for airspace control devices.

[0004] Technical Solution: To achieve the above objectives, the present invention provides a suspended heat dissipation structure for an airspace control device, comprising a housing of the airspace control device, a suspended platform suspended below the housing, the platform surface being spaced apart from the bottom of the housing; a ventilation opening is provided on the suspended platform, and a cooling fan is installed below the platform, the exhaust air from the cooling fan being blown towards the bottom of the housing through the ventilation opening; heat dissipation fins are provided at the bottom of the housing, and the exhaust air from the cooling fan being blown towards the heat dissipation fins through the ventilation opening; several partition strips are provided inside the ventilation opening, dividing the ventilation opening into multiple diversion slots.

[0005] Furthermore, the width of the diversion channel gradually increases from bottom to top, so that the airflow from the cooling fan is dispersed after passing through the diversion channel.

[0006] Furthermore, multiple cooling fans are installed below the hanging platform, and multiple ventilation openings are provided on the hanging platform, with each cooling fan installed directly below each ventilation opening.

[0007] Furthermore, several mounting holes are provided around the vent, and the cooling fan can be installed directly below the vent of the hanging plate through bolt assemblies and mounting holes.

[0008] Furthermore, a plurality of lifting lugs are provided above the lifting platform, with the upper end of the lifting lugs fixed to the bottom of the housing and the lower end of the lifting lugs fixedly connected to the edge of the lifting platform.

[0009] Furthermore, several of the aforementioned ventilation openings are circumferentially distributed on the hanging platform, and several lifting lugs are also circumferentially distributed on the hanging platform, with the lifting lugs staggered in the gaps between adjacent ventilation openings.

[0010] Beneficial effects: The hanging-plate heat dissipation structure of the airspace control device of this utility model has the following beneficial effects;

[0011] 1) A hanging platform is installed at the bottom of the airspace control device housing. A cooling fan is installed at the bottom of the hanging platform. The air from the cooling fan blows through the ventilation holes on the hanging platform to the heat dissipation fins at the bottom of the housing, thereby cooling the airspace control device.

[0012] 2) The ventilation opening is divided into multiple diversion channels. The air from the cooling fan is cooled after passing through the diversion channels, which makes the coverage of the cooling fan's airflow larger and thus improves the cooling effect. Attached Figure Description

[0013] Appendix Figure 1 This is a schematic diagram of the suspended platform at the bottom of the casing of the unmanned control equipment.

[0014] Appendix Figure 2 This is a structural diagram of the hanging platform. Detailed Implementation

[0015] The present invention will be further described below with reference to the accompanying drawings.

[0016] As attached Figures 1 to 2 The aforementioned airspace control device's suspended cooling structure includes a housing 1, with a suspended platform 2 suspended below the housing 1. The platform 2 is spaced apart from the bottom of the housing 1, allowing airflow between them. Vertical ventilation openings 3 are provided on the platform 2, and a cooling fan is installed below it. The fan's exhaust air is directed towards the bottom of the housing 1 through the ventilation openings 3. The platform 2 provides support for the cooling fan, and because of the distance between the platform 2 and the housing 1, the fan's exhaust air diffuses after passing through the ventilation openings 3, thus increasing the coverage area and improving the cooling effect on the airspace control device.

[0017] The bottom of the housing 1 is provided with heat dissipation fins 4, which can increase the surface area of ​​the bottom of the housing 1. The air from the cooling fan can be blown towards the heat dissipation fins 4 through the vent 3. Under the combined effect of the heat dissipation fins 4 and air cooling, good heat dissipation of the airspace control device is achieved.

[0018] As attached Figure 2 As shown, the vent 3 is provided with several partition strips, which divide the vent 3 into multiple diversion slots 5. Due to the presence of the diversion slots 5, when the airflow from the cooling fan passes through the vent 3, the airflow is dispersed, thereby increasing the coverage area of ​​the airflow and facilitating uniform cooling of the heat dissipation fins 4, thus improving the heat dissipation effect.

[0019] The width of the diversion channel 5 gradually increases from bottom to top, making it easier for the airflow from the cooling fan to be dispersed after passing through the diversion channel 5, thereby further improving the heat dissipation effect.

[0020] Multiple cooling fans are installed below the hanging plate 2, and multiple ventilation openings 3 are provided on the hanging plate 2. The cooling fans are axial fans, and each cooling fan is installed directly below each ventilation opening 3, so that the airflow from each cooling fan can be dispersed after passing through the ventilation opening 3.

[0021] As attached Figure 2 As shown, the ventilation opening 3 is provided with several mounting holes 6 around it, and the cooling fan can be installed directly below the ventilation opening 3 of the hanging plate 2 through the bolt assembly and the mounting holes 6.

[0022] Several lifting lugs 7 are provided above the lifting platform 2. The upper ends of the lifting lugs 7 are fixed to the bottom of the housing 1, and the lower ends of the lifting lugs 7 are fixedly connected to the edge of the lifting platform 2. (See attached image) Figure 2 As shown, the lifting lug 7 is Z-shaped and has a through hole. Threaded holes are provided on the lifting plate 2 and the bottom of the housing 1. The lifting lug 7 can be fixedly connected to the lifting plate 2 or the housing 1 through the through hole and bolt assembly.

[0023] Several ventilation openings 3 are arranged circumferentially on the mounting plate 2. Correspondingly, several cooling fans are also arranged circumferentially, so that the airflow from the cooling fans can cover the entire bottom of the housing 1, thereby achieving good heat dissipation for the airspace control device. Several lifting lugs 7 are also arranged circumferentially on the mounting plate 2, and the lifting lugs 7 are staggered in the gaps between adjacent ventilation openings 3, so that the lifting lugs 7 have little impact on airflow and are conducive to heat dissipation for the airspace control device.

[0024] This invention features a mounting plate 2 at the bottom of the airspace control device's housing 1. The exhaust air from the cooling fan is blown through vents 3 on the mounting plate 2 onto the heat dissipation fins 4 at the bottom of the housing 1, thus cooling the airspace control device. Furthermore, the exhaust air is cooled after passing through the vents 3, resulting in a large airflow coverage area and excellent heat dissipation. In practical applications, support legs are installed around the bottom of the airspace control device's housing 1 to elevate the device and provide support, preventing the airspace control device from directly pressing on the mounting plate 2.

[0025] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A hanging-plate type heat dissipation structure for airspace control equipment, characterized in that: The shell (1) of airspace control device is hung with the hanging plate (2) below, the disc surface of the hanging plate (2) is spaced apart from the bottom of the shell (1), the ventilation opening (3) is formed on the hanging plate (2), the heat dissipation fan is installed below the hanging plate (2), the air outlet of the heat dissipation fan can blow to the bottom of the shell (1) through the ventilation opening (3), the bottom of the shell (1) is provided with the heat dissipation fin (4), the air outlet of the heat dissipation fan can blow to the heat dissipation fin (4) through the ventilation opening (3), the ventilation opening (3) is provided with a plurality of partition strips, and the ventilation opening (3) is divided into a plurality of shunt grooves (5) by the partition strips.

2. The airside control device's hanging tray heat dissipation structure according to claim 1, characterized in that: The width of the shunt groove (5) gradually increases from bottom to top, so that the air outlet of the heat dissipation fan is dispersed after passing through the shunt groove (5).

3. The airside control device's hanging tray heat dissipation structure according to claim 1, characterized in that: A plurality of heat dissipation fans are installed below the hanging plate (2), a plurality of ventilation openings (3) are formed on the hanging plate (2), and each heat dissipation fan is installed directly below each ventilation opening (3).

4. The air space control device's hanging plate type heat dissipation structure according to claim 3, characterized in that: A plurality of mounting holes (6) are formed around the ventilation opening (3), and the heat dissipation fan can be installed directly below the ventilation opening (3) of the hanging plate (2) through the bolt assembly and the mounting hole (6).

5. The air space control apparatus of claim 3, wherein: A plurality of lifting lugs (7) are arranged above the hanging plate (2), the upper end of the lifting lug (7) is fixed to the bottom of the shell (1), and the lower end of the lifting lug (7) is fixedly connected with the edge of the hanging plate (2).

6. The airside control apparatus' hanging tray heat dissipation structure according to claim 5, characterized in that: A plurality of ventilation openings (3) are distributed on the hanging plate (2) in a ring shape, a plurality of lifting lugs (7) are also distributed on the hanging plate (2) in a ring shape, and the lifting lugs (7) are distributed in the gap between adjacent two ventilation openings (3) in a staggered manner.