Interference equipment shell
Through the flat design and intensive layout of the interference equipment shell, the existing equipment is solved by the problems of bulkiness and insufficient waterproof performance, miniaturization and directional strikes are achieved, adapting to complex environments, and the applicability and strike accuracy of the equipment are improved.
Patent Information
- Application Number
- CN202421982675.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The housing design of existing interference equipment is too large and has insufficient waterproof performance, which makes the equipment bulky and inadequate to complex external environments, limiting its application scope.
The flat design chamber and intensive layout are adopted, combined with the detachable connected shell and heat dissipation back plate to ensure the device is fixed and heat dissipated, and the angle and position of the rotary table are adjusted to achieve miniaturization and directional blows of the equipment.
The miniaturization and intensive design of interference equipment is realized, which is convenient for outdoor installation and handling, improves work efficiency, enhances adaptability and strike accuracy in complex environments, and prevents hazards such as sun exposure and rain.
Smart Images

Figure CN223124900U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of interference equipment protection, and more specifically, to an interference equipment housing. Background Art
[0002] With the development of technology, anti-drone technology has been increasingly widely applied in the fields of military, aviation, security, etc. A drone electromagnetic interference device is a rejection device that can effectively prevent drones from communicating with the remote controller, and has the advantages of a long strike distance, accurately releasing the strike frequency, and a fast response speed. However, there are some problems in the housing design of the existing interference devices, such as too large a design volume, insufficient waterproof performance, etc. They are relatively bulky and inconvenient to use, have relatively strict conditions, and cannot adapt to various external environments such as complex terrain and more rain, which limit the performance and application scope of the electromagnetic interference devices. Summary of the Utility Model
[0003] In view of the above technical problems in the related art, the utility model provides an interference equipment housing that can overcome the above-mentioned deficiencies existing in the prior art.
[0004] To achieve the above technical objectives, the technical solution of the utility model is realized as follows:
[0005] An interference equipment housing includes a heat dissipation back plate. On one end face of the heat dissipation back plate, a chamber one and a chamber two are arranged side by side. The other end face of the heat dissipation back plate is connected to one end face of a base, and the other end face of the base is connected to a power supply box.
[0006] Preferably, the base is movably connected to a turntable.
[0007] Preferably, a base bottom plate is provided at the bottom of the base, and the base bottom plate is movably connected to the turntable. The turntable controls the position and angle of the base bottom plate to adjust the position and angle of the entire interference equipment housing.
[0008] Preferably, the base bottom plate is rotatably connected to the turntable. The turntable controls the up, down, left, and right rotation of the interference equipment housing through the base bottom plate to control the angle.
[0009] Preferably, connection holes corresponding to the power supply box are provided on the base, and connection parts corresponding to the connection holes on the base are provided on the power supply box. The connection parts of the power supply box are snap-connected or thread-connected to the connection holes on the base.
[0010] Preferably, the connection holes on the base are bolt holes, and the connection parts of the power supply box are corresponding bolts or screws.
[0011] Preferably, a connection side plate one and a connection side plate two are provided on one end face of the heat dissipation back plate. The connection side plate one is connected to the chamber one, and the connection side plate two is connected to the chamber two.
[0012] Preferably, the areas of the connecting surfaces between the first connecting side plate and the first chamber are equivalent, and the areas of the connecting surfaces between the second connecting side plate and the second chamber are equivalent.
[0013] Preferably, the first chamber is smaller than the second chamber, and similarly, the first connecting side plate is smaller than the second connecting side plate.
[0014] Preferably, the first chamber is used to place devices such as a power supply and a control board, and the second chamber is used to place devices such as a power amplifier, a digital source, and an antenna.
[0015] Preferably, the first chamber adopts a flattened design. The first chamber is used to place devices such as a power supply and a control board. The chamber adopts a flattened design, measures the maximum thickness of the power supply and the control board, and designs the space height of the chamber. At the same time, the fixation and heat dissipation of the power supply and the control board should be considered. To ensure the normal operation of the power supply and the control board, the balance between the compression of the chamber space and the heat dissipation of the chamber should be considered. Therefore, while compressing the chamber space, a heat dissipation design is added to the outer shell of the device.
[0016] Preferably, the second chamber adopts a flattened design. For the second chamber, device intensification and flattened design can also be adopted. According to the sizes of each power amplifier and digital source, as well as the corresponding antenna sizes, make good arrangements and combinations for intensive design. Limit the size of the heat dissipation backplane of each chamber to be able to accommodate the power amplifier and digital source and be conducive to device heat dissipation. Make the corresponding antennas miniaturized as much as possible to meet the usage requirements of the chamber space and be as miniaturized as possible. Similarly, while the space meets the usage requirements, the heat dissipation function should also be considered. Therefore, a heat dissipation design is also added to the outer shell of the device.
[0017] Preferably, chamber housings are respectively provided on the outer side walls of the first chamber and the second chamber.
[0018] Advantages of the present utility model: The structure of this product is simple and the operation is convenient. It can be easily applied to interference devices, achieving miniaturization and intensification. It can be widely used in various outdoor environments and minimize the outdoor installation scenarios of the device in situations such as wind, rain, snow, and vibration. The miniaturized design of this product is convenient for handling and installation, improving work efficiency. This product adjusts the striking angle of the device through a power supply box and can accurately strike the drone target by adopting a directional striking method, avoiding the harm brought to the surrounding environment by an omnidirectional antenna and improving the striking accuracy. The unique design of this product can effectively prevent the harm caused by sunlight, rain, salt spray, etc. to the device and can be widely applicable to the external environments of low-altitude defense, such as complex terrains like mountains and coasts.
[0019] This product includes a detachable and connected housing heat dissipation backplane, a chamber for placing power supplies and control board devices, a power amplifier, a digital source, a chamber for placing devices such as antennas, and a heat dissipation part of the device; the housing heat dissipation backplane is used to install the device chamber and connect it to the power supply box, and the chamber for placing power supplies and control board devices is designed with a corresponding space according to the shape and space size of the power supply and the control board. The chambers for devices such as power amplifiers, digital sources, and antennas are designed with corresponding spaces for placing these functional devices according to the shapes and space sizes of the power amplifier, digital source, and control board; the heat dissipation part is used for the diversion and discharge of a large amount of heat generated during the operation of the device. Thus, this product can accommodate a power amplifier, a digital source, a power supply and a control board, an antenna, etc. into the same housing, and can also achieve an effective heat dissipation and waterproof housing. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0021] Figure 1 It is a perspective view (biased towards the main view angle) of the interference device housing described in the present invention.
[0022] Figure 2 It is a left view of the interference device housing described in the present invention.
[0023] Figure 3 It is a right view of the interference device housing described in the present invention.
[0024] Figure 4 It is a schematic diagram of the use of the interference device housing described in the present invention from the main view angle Figure 1 。
[0025] Figure 5 It is a schematic diagram of the use of the interference device housing described in the present invention from the perspective view Figure 2 。
[0026] In the figure: 1. Heat dissipation backplane; 2. Chamber 1; 3. Chamber 2; 4. Chamber surface shell; 5. Power supply box; 6. Base; 601. Base bottom plate; 7. Turntable. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] 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 belong to the scope of protection of the present invention.
[0028] As Figures 1-5 shown, in order to facilitate the understanding of the above technical solutions of the present invention, the above technical solutions of the present invention will be described in detail below in terms of specific usage methods.
[0029] During implementation, the interference device housing includes a heat dissipation back plate 1. On one end face of the heat dissipation back plate 1, a chamber one 2 and a chamber two 3 are arranged side by side. The other end face of the heat dissipation back plate 1 is connected to one end face of a base 6, and the other end face of the base 6 is connected to a power supply box 5.
[0030] In a certain embodiment, the base 6 is movably connected to a turntable 7. The base 6 adjusts the angle and position through the turntable 7.
[0031] In a certain embodiment, a base bottom plate 601 is provided at the bottom of the base 6, and the base bottom plate 601 is movably connected to the turntable 7. The turntable 7 controls the conversion of the position and angle of the base bottom plate 601, thereby adjusting the position and angle of the entire interference device housing.
[0032] In a certain embodiment, the base bottom plate 601 is rotatably connected to the turntable 7. The turntable 7 controls the up, down, left, and right rotation of the interference device housing through the base bottom plate 601, thereby controlling the angle.
[0033] In a certain embodiment, a base connection hole corresponding to the power supply box 5 is provided on the base 6, and a power supply box connection part corresponding to the base connection hole is provided on the power supply box 5. The power supply box connection part is snap-connected or thread-connected to the base connection hole.
[0034] In a certain embodiment, the base connection hole is a bolt hole, and the power supply box connection part is a corresponding bolt or screw rod.
[0035] In a certain embodiment, a connection side plate one and a connection side plate two are provided on one end face of the heat dissipation back plate 1. The connection side plate one is connected to the chamber one 2, and the connection side plate two is connected to the chamber two 3.
[0036] In a certain embodiment, the connection area between the connection side plate one and the chamber one 2 is equivalent, and the connection area between the connection side plate two and the chamber two 3 is equivalent.
[0037] In a certain embodiment, the chamber one 2 is smaller than the chamber two 3. Similarly, the connection side plate one is smaller than the connection side plate two.
[0038] In a certain embodiment, Chamber 1 is used to place devices such as a power supply and a control board, and Chamber 2 is used to place devices such as a power amplifier, a digital source, and an antenna.
[0039] In a certain embodiment, Chamber 1 adopts a flattened design. Chamber 1 is used to place devices such as a power supply and a control board. The chamber adopts a flattened design, measures the maximum thickness of the power supply and the control board, and designs the spatial height of the chamber. At the same time, the fixation and heat dissipation of the power supply and the control board should be taken into account. To ensure the normal operation of the power supply and the control board, the balance between the compression of the chamber space and the heat dissipation of the chamber should be considered. Therefore, a heat dissipation design is added to the outer shell of the device while compressing the chamber space.
[0040] In a certain embodiment, Chamber 2 adopts a flattened design. Chamber 2 can also adopt an intensive and flattened design of devices. According to the sizes of each power amplifier and digital source, as well as the corresponding antenna sizes, perform permutations and combinations and intensive design. Limit the size of the heat dissipation backplane of each chamber to be able to accommodate the power amplifier and the digital source and be conducive to the heat dissipation of the device. Make the corresponding antennas miniaturized as much as possible while meeting the usage requirements of the chamber space. Similarly, while the space meets the usage requirements, the heat dissipation function should also be taken into account. Therefore, a heat dissipation design is also added to the outer shell of the device.
[0041] In a certain embodiment, chamber surface shells 4 are respectively provided on the outer side walls of Chamber 1 and Chamber 2.
[0042] In summary, by means of the above technical solutions of the present utility model, the product has a simple structure and is easy to operate. It can be easily applied to interference devices, achieving miniaturization and intensification. It can be widely used in various outdoor environments and minimize the outdoor installation scenarios of the device in situations such as wind, rain, snow, and vibration. The miniaturized design of this product is convenient for handling and installation, improving work efficiency. This product adjusts the striking angle of the device through a power supply box and can accurately strike the drone target by adopting a directional striking method, avoiding the harm brought by the omnidirectional antenna to the surrounding environment and improving the striking accuracy. The unique design of this product can effectively prevent the harm caused by sunlight, rain, salt spray, etc. to the device and can be widely applicable to the external environments of low-altitude defense, such as complex terrains like mountains and seashores.
[0043] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An interference device housing, characterized in that, It includes a heat dissipation backplane (1). One end face of the heat dissipation backplane (1) is provided with a first chamber (2) and a second chamber (3) side by side. The other end face of the heat dissipation backplane (1) is connected to one end face of a base (6), and the other end face of the base (6) is connected to a power supply box (5).
2. The interference device housing according to claim 1, characterized in that, A base bottom plate (601) is provided at the bottom of the base (6), and the base bottom plate (601) is movably connected to a turntable (7).
3. The interference device housing according to claim 2, characterized in that, The base bottom plate (601) is rotationally connected to the turntable (7).
4. The interference device housing according to claim 3, characterized in that, The base (6) is provided with base connection holes corresponding to the power supply box (5), and the power supply box (5) is provided with power supply box connection parts corresponding to the base connection holes. The power supply box connection parts are snap-connected or screwed to the base connection holes.
5. The interference device housing according to claim 4, wherein The base connection holes are bolt holes, and the power supply box connection parts are corresponding bolts or screws.
6. The interference device housing according to claim 1, wherein One end face of the heat dissipation backplane (1) is provided with a first connecting side plate and a second connecting side plate. The first connecting side plate is connected to the first chamber (2), and the second connecting side plate is connected to the second chamber (3).
7. The interference device housing according to claim 6, wherein, The first chamber (2) is smaller than the second chamber (3). Similarly, the first connecting side plate is smaller than the second connecting side plate.
8. The interference device housing according to claim 7, characterized in that, The first chamber (2) is used to place a power supply and a control board, and the second chamber (3) is used to place a power amplifier, a digital source, and an antenna.
9. The interference device housing according to claim 1, wherein, The first chamber (2) or the second chamber (3) adopts a flattened design.
10. The interference device housing according to claim 1, characterized in that, Chamber surface shells (4) are respectively provided on the outer side walls of the first chamber (2) and the second chamber (3).