A device compartment structure

By introducing an adapter plate and protective frame into the cabin structure, combined with the use of seals and pressure rings, the sealing problem during cabin rotation was solved, achieving reliable communication connection and sealing effect between cabins.

CN224596755UActive Publication Date: 2026-08-04INFIRAY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
INFIRAY TECHNOLOGY CO LTD
Filing Date
2025-08-08
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In the existing technology, the cabin structure cannot guarantee a good sealing effect when communication is connected, especially during rotation, the sealing between the communication cable and the cable hole is insufficient, resulting in poor sealing effect.

Method used

The design employs an adapter plate and protective frame. Through the airtight arrangement of the protective cavity and the adapter plate, communication connection between the main compartment and the rotating compartment is achieved. At the same time, the sealing effect is ensured by the use of seals and pressure rings, including the coordinated use of the first seal, the second seal and the third seal.

Benefits of technology

Reliable communication connections between the cabin structures were achieved, while ensuring a good sealing effect to prevent water vapor and mist from entering the main cabin group and ensure the reliable operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an equipment compartment structure, relating to the field of compartment structure technology, comprising: a main compartment assembly; a rotating compartment assembly connected to the main compartment assembly; and a transfer assembly including a protective frame disposed within the main compartment assembly, the protective frame having a protective cavity, one side of which communicates with the inner cavity of the rotating compartment assembly, and the other side of which is sealed by a transfer plate. The two sides of the transfer plate are respectively used for signal connections to the main compartment assembly and the rotating compartment assembly. The above-mentioned equipment compartment structure achieves the transfer of communication connections between the main compartment assembly and the rotating compartment assembly through the transfer plate, and ensures the sealing effect of the rotating compartment assembly and the main compartment assembly through the sealed arrangement of the transfer plate and the inner cavity of the protective frame.
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Description

Technical Field

[0001] This utility model relates to the field of cabin structure technology, and more specifically, to an equipment cabin structure. Background Technology

[0002] For panoramic monitoring equipment, the cabin structure needs to meet a high level of sealing to prevent external rainwater and mist from entering the cabin, and to prevent short circuits or corrosion of communication circuits.

[0003] In related technologies, two cabin structures are directly connected via communication cables on both sides to achieve communication between the two cabins. However, in actual applications, circumferential rotation occurs, making it impossible to guarantee a reliable seal between the communication cable and the corresponding cable hole, thus affecting the sealing effect between the two cabin structures.

[0004] In summary, how to achieve communication connections between cabin structures while ensuring a good sealing effect is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0005] In view of this, the purpose of this utility model is to provide an equipment compartment structure that can achieve communication connection between compartment structures while ensuring a good sealing effect.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An equipment compartment structure, comprising:

[0008] Main module;

[0009] A rotating cabin assembly, connected to the main cabin assembly;

[0010] The adapter assembly includes a protective frame disposed within the main body assembly. The protective frame has a protective cavity, one side of which is connected to the inner cavity of the rotating assembly. The other side of the protective cavity is sealed by an adapter plate. The two sides of the adapter plate are respectively used for signal connection to the main body assembly and the rotating assembly.

[0011] Preferably, the adapter plate has at least two slot structures on both sides, at least one of the slot structures is located inside the protective frame for connecting to the first transmission cable of the rotating cabin assembly, and the remaining slot structures are located outside the protective frame for connecting to the second transmission cable of the main cabin assembly.

[0012] Preferably, the rotating cabin assembly includes a turntable and a hollow rotating shaft rotatably disposed within the turntable, the hollow rotating shaft being connected to the main cabin assembly;

[0013] The first transmission cable of the rotating cabin unit is connected to the adapter plate after passing through the inner cavity of the hollow rotating shaft.

[0014] Preferably, the protective frame has a first opening on the side facing the inner cavity of the rotating chamber, and the first opening communicates with the inner cavity of the hollow rotating shaft.

[0015] Preferably, a first sealing element is provided in the first sealing groove at the first opening, and the first sealing element is used to seal the inner cavity between the protective cavity and the rotating chamber.

[0016] Preferably, the protective frame has a second opening on the side facing the inner wall of the main compartment, and a pressure ring is provided at the second opening. The pressure ring is used to seal the adapter plate to the second opening.

[0017] Preferably, a second seal is provided between the second sealing groove at the second opening and the pressure ring.

[0018] Preferably, the opening direction of the first opening is perpendicular to the opening direction of the second opening.

[0019] Preferably, the adapter plate has a guide ramp inside, which is used to guide the first transmission cable to be led out to the adapter plate.

[0020] Preferably, a third seal is provided between the main compartment and the rotating compartment.

[0021] The equipment compartment structure provided by this utility model includes a main compartment assembly, a rotating compartment assembly connected to the main compartment assembly, and a transfer assembly. The rotating assembly includes a protective frame disposed within the main compartment assembly. The protective frame has a protective cavity, one side of which is connected to the inner cavity of the rotating compartment assembly for wiring. The other side of the protective cavity is sealed by a transfer plate, i.e., the transfer plate and the protective cavity of the protective frame are sealed together, which can ensure the sealing effect of the protective frame relative to the main compartment assembly, and also ensure the sealing effect between the rotating compartment assembly and the main compartment assembly connected to the protective frame. The two sides of the transfer plate are respectively used for signal connection to the main compartment assembly and the rotating compartment assembly. Specifically, the wiring inside the rotating compartment assembly passes through the protective cavity and can communicate with one side of the transfer plate, and the wiring inside the main compartment assembly can communicate with the other side of the transfer plate, so as to satisfy the communication connection between the main compartment assembly and the rotating compartment assembly.

[0022] The beneficial effects of this utility model are as follows: the communication connection between the main compartment and the rotating compartment is realized through the adapter plate, and the sealing effect of the rotating compartment and the main compartment is ensured by the airtight arrangement of the adapter plate and the inner cavity of the protective frame. It can realize the communication connection between the compartment structures while ensuring a good sealing effect. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0024] Figure 1 A schematic diagram of the equipment compartment structure provided by this utility model;

[0025] Figure 2 for Figure 1 A partial exploded view;

[0026] Figure 3 This is a schematic diagram of the structure of the adapter component provided by this utility model;

[0027] Figure 4 for Figure 3 The front view;

[0028] Figure 5 This is a schematic diagram of the structure of the protective frame provided by this utility model;

[0029] Figure 6 A schematic diagram of the adapter plate provided by this utility model;

[0030] Figure 7 This is a schematic diagram of the rotating cabin assembly provided by this utility model.

[0031] Figures 1-7 In the accompanying drawings, the reference numerals include:

[0032] 1-Main compartment assembly; 2-Rotating compartment assembly; 3-Transfer assembly; 4-Third seal;

[0033] 21-Turntable; 22-Hollow shaft; 31-Protective frame; 32-Adapter plate; 33-Pressure ring; 34-First seal; 35-Second seal;

[0034] 311-Protective cavity; 312-First opening; 313-Second opening; 314-Guide slope; 315-First sealing groove; 316-Second sealing groove; 321-Slot structure; 322-Pin hole. Detailed Implementation

[0035] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0036] The core of this utility model is to provide an equipment compartment structure that can achieve communication connections between compartment structures while ensuring a good sealing effect.

[0037] The equipment compartment structure provided by this utility model includes a main compartment assembly 1, a rotating compartment assembly 2, and a connecting assembly 3. Please refer to the following for details. Figure 1 , Figure 2 The rotating cabin 2 is equipped with a drive device that can drive the main cabin 1 to rotate circumferentially, enabling the imaging modules included in the main cabin 1 to capture images circumferentially and achieve a panoramic monitoring effect.

[0038] The adapter assembly 3 includes a protective frame 31 located within the main body compartment 1. The protective frame 31 has a protective cavity 311, which provides protection for the adapter plate 32.

[0039] In one embodiment, the protective cavity 311 can be a straight strip-shaped cavity structure, with the two sides of the straight strip-shaped cavity structure corresponding to the inner cavity of the main compartment 1 and the inner cavity of the rotating compartment 2, respectively.

[0040] In another specific embodiment, the protective cavity 311 can be an L-shaped cavity structure, with the vertical end and the vertical shaft end of the L-shaped cavity structure corresponding to the inner cavity of the main compartment 1 and the inner cavity of the rotating compartment 2, respectively.

[0041] In another specific embodiment, the protective cavity 311 can be an arc-shaped cavity structure, with the two sides of the arc-shaped cavity structure corresponding to the inner cavity of the main compartment 1 and the inner cavity of the rotating compartment 2, respectively.

[0042] The above embodiments are merely simple examples. The actual shape of the protective cavity 311 can be flexibly set according to the actual situation without excessive restrictions.

[0043] One side of the protective cavity 311 is connected to the inner cavity of the rotating cabin 2, and the other side of the protective cavity 311 is sealed by a transition plate 32. The connection between the protective cavity 311 and the inner cavity of the rotating cabin 2 facilitates wiring, allowing transmission lines within the rotating cabin 2 to extend into the protective cavity 311 and connect to the transition plate 32. The protective cavity 311 is only connected to the inner cavity of the rotating cabin 2; the protective cavity 311 and the inner cavity of the main cabin 1 are relatively independent and not interconnected.

[0044] The other side of the protective cavity 311 is sealed by the adapter plate 32, that is, the other side of the protective cavity 311 is sealed by the adapter plate 32, so that the protective cavity 311 and the cavity of the main compartment 1 are relatively independent, thus ensuring the sealing effect of the main compartment 1.

[0045] The sealing connection between the specific protective plate and the protective cavity 311 can be achieved by using sealing rings, sealing gaskets, sealant, etc., depending on the actual situation.

[0046] The adapter plate 32 enables communication between the main compartment 1 and the rotating compartment 2. The sealed protective frame 31 of the adapter plate 32 ensures the sealing effect of the main compartment 1, that is, ensures the relative sealing between the rotating compartment 2 and the main compartment 1, ensuring the reliability and convenience of the communication connection, and ensuring the sealing of the communication connection between the rotating compartment 2 and the main compartment 1.

[0047] Based on the above embodiments, please refer to Figure 1 , Figure 2 , Figure 6 The adapter plate 32 has at least two slot structures 321 on both sides. At least one slot structure 321 is located inside the protective frame 31 for connecting to the first transmission cable of the rotating cabin 2, and the remaining slot structures 321 are located outside the protective frame 31 for connecting to the second transmission cable of the main cabin 1.

[0048] Both the second and first transmission cables corresponding to the main module 1 and the rotating module 2 can be formed into plugs, which can be directly plugged into the slot structure 321 to form a signal connection. The number of slot structures 321 is set according to the actual number of transmission cables and space conditions, and there are no major restrictions.

[0049] In this embodiment, the slot structure 321 is sealed by soldering corresponding to the pin holes 322 on the adapter. Combined with the airtight arrangement on one side of the adapter plate 32 and the protective cavity 311, it can reliably prevent water vapor or mist from entering the main body compartment 1, ensuring the reliable sealing of the main body compartment 1.

[0050] Furthermore, the slot structure 321 facilitates installation and maintenance, improving applicability. For example, the first transmission cable of the rotating cabin 2 section can be disassembled and inspected separately, as can the adapter components.

[0051] Based on any of the above embodiments, please refer to Figure 7 The rotating cabin 2 includes a turntable 21 and a hollow rotating shaft 22 rotatably disposed in the turntable 21. The hollow rotating shaft 22 is connected to the main cabin 1 to realize the circumferential rotation of the main cabin 1. The first transmission cable of the rotating cabin 2 passes through the inner cavity of the hollow rotating shaft 22 and is connected to the adapter plate 32.

[0052] The turntable 21 is fixed, and the hollow shaft 22 can rotate under the driving force of the drive device. During the rotation, the first transmission cable passes through the hollow shaft 22 and then through the protective cavity 311 to form a signal connection with the adapter plate 32. Under the premise of meeting the requirements of rotation drive, the hollow shaft 22 can provide a reliable placement space, so as to facilitate the passage of the first transmission cable without interference. It effectively utilizes the space of the hollow shaft 22 and can reduce the overall weight of the rotating chamber 2, which has good practicality.

[0053] In addition, the first transmission cable has a first end that can be connected to the orientation control board of the rotating cabin 2, and a second end that can pass through the hollow rotating shaft 22 and the protective cavity 311 and communicate with the slot structure 321 on the adapter plate 32 to realize communication between the adapter plate 32 and the orientation control board. The adapter plate 32 can also communicate with the main cabin 1, so a reliable communication connection between the main cabin 1 and the rotating cabin 2 can be realized.

[0054] In this embodiment, considering that friction between the hollow shaft 22 and the first transmission cable may damage the surface structure, a protective layer can be provided inside the first transmission cable or the hollow shaft 22. The protective layer can be a coating structure, which can ensure the reliable service life of the first transmission cable.

[0055] Based on any of the above embodiments, please refer to Figure 2 , Figure 5 , Figure 7 The protective frame 31 has a first opening 312 on the side facing the inner cavity of the rotating chamber 2, and the first opening 312 is connected to the inner cavity of the hollow rotating shaft 22.

[0056] The first opening 312 is an opening for connecting to the inner cavity of the rotating chamber 2. The specific form of the first opening 312 is not limited and can be square, circular or other.

[0057] The first opening 312 is specifically set downwards. Here, downwards refers to the top and bottom position in the figure. The first opening 312 is connected to the inner cavity of the hollow rotating shaft 22. The first transmission cable can directly pass through the hollow rotating shaft 22 from bottom to top and then extend into the protective cavity 311 to connect with the adapter plate 32. The operation is simple and convenient.

[0058] Based on any of the above embodiments, please refer to Figure 2 A first seal 34 is connected to the first opening 312. The first seal 34 is located in the first sealing groove 315 at the first opening 312. The first seal 34 is used to seal the inner cavity between the protective cavity 311 and the rotating chamber 2.

[0059] The first sealing element 34 here ensures that the cavity of the protective frame 31 is sealed relative to the inner cavity of the main compartment 1, preventing water vapor or mist from entering the main compartment 1 through the protective cavity 311 via the inner cavity of the rotating compartment 2, thus ensuring a reliable sealing effect for the main compartment 1 and consequently guaranteeing the reliable operation of each component. These components include, for example, the main control board, the imaging module, and the image processing board.

[0060] The first sealing element 34 can be a sealing ring. The sealing ring can be embedded in the first sealing groove 315 to ensure a reliable sealing effect. The specific shape and number of the sealing ring are not limited.

[0061] If the first sealing groove 315 at the first opening 312 is a stepped groove, then multiple first sealing elements 34 can be arranged along the transverse direction of the first opening 312. The multiple first sealing elements 34 respectively cooperate with the stepped groove to seal, so as to ensure a reliable sealing effect.

[0062] Based on any of the above embodiments, please refer to Figure 3 , Figure 5 The protective frame 31 has a second opening 313 on the inner side of the main compartment 1. A pressure ring 33 is provided at the second opening 313. The pressure ring 33 is used to seal the adapter plate 32 to the second opening 313.

[0063] By setting the pressure ring 33, reliable installation of the adapter relative to the protective frame 31 can be ensured, and damage to components can be avoided when the adapter is directly installed, thus ensuring the reliable use of the adapter.

[0064] Specifically, the pressure ring 33 and the edge of the second opening 313 are connected by connecting holes and fasteners to achieve installation. However, it should be noted that if a hole is made at the edge of the second opening 313, this hole is a non-through hole to avoid communication between the protective cavity 311 of the protective frame 31 and the inner cavity of the main body 1, thus ensuring the reliable sealing effect of the main body 1.

[0065] The setting of the pressure ring 33 can also ensure the installation reliability of the adapter plate 32 and avoid damage to the adapter plate 32. It can be directly pressed onto the circumference of the adapter plate 32 by the pressure ring 33 and fixed at the position of the second opening 313, which is simple and convenient to install.

[0066] Based on any of the above embodiments, please refer to Figure 2 , Figure 3 , Figure 4 A second sealing element 35 is provided between the second sealing groove 316 and the pressure ring 33 at the second opening 313.

[0067] The second seal 35 between the second opening 313 and the pressure ring 33 is positioned closer to the center of the second opening 313 than the non-through hole at the edge of the second opening 313, ensuring a reliable sealing effect.

[0068] After the pressure ring 33 connects the adapter to the second sealing groove 316 at the second opening 313, the second sealing element 35 between the second opening 313 and the pressure ring 33 is pressed to ensure the sealing effect, preventing water vapor and mist from entering the main body assembly 1 through the gap between the pressure ring 33 and the second opening 313, thus ensuring the reliable sealing of the main body assembly 1.

[0069] Specifically, a groove can be provided at the edge of the pressure ring 33 or the second opening 313, and the second seal 35 can be placed in the groove to ensure the sealing effect.

[0070] Based on any of the above embodiments, please refer to Figure 2 , Figure 5 The opening direction of the first opening 312 is perpendicular to the opening direction of the second opening 313, so as to facilitate the installation and removal of the adapter plate 32 relative to the second opening 313 by the operator, and to facilitate the signal connection between the adapter plate 32, the main compartment 1 and the rotating compartment 2.

[0071] Based on any of the above embodiments, please refer to Figure 5 The adapter plate 32 is provided with a guide slope 314, which is used to guide the first transmission cable to be led out to the adapter plate 32.

[0072] By setting the guide slope 314, the first transmission cable can smoothly pass through the protective cavity 311 after passing through the hollow rotating shaft 22 and connect with the adapter plate 32, which facilitates the signal connection operation and improves the convenience of operation.

[0073] The specific inclination direction of the guide ramp 314 is determined by the actual location, such as an upward inclination. A transition chamfer can be formed between the edge of the guide ramp 314 and the inner cavity wall to avoid wear on the first transmission cable and ensure the reliable service life of the first transmission cable.

[0074] In this embodiment, the protective frame 31 can be directly set using the height space of the main compartment 1. The specific guide slope 314 needs to avoid interference with other components and provide a reliable guiding effect, so that the overall structure is compact and reliable.

[0075] Based on any of the above embodiments, please refer to Figure 1 , Figure 2 A third sealing element 4 is provided between the main compartment 1 and the rotating compartment 2 to ensure the reliable sealing of the main compartment 1 and prevent water vapor from entering the main compartment 1 through the gap.

[0076] The equipment compartment structure provided in the above embodiments can be applied to the field of monitoring equipment and other imaging equipment technology. It can ensure reliable sealing and reliable communication connection between the compartment structures through the setting of the adapter component 3, and has good practicality and applicability.

[0077] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0078] The above provides a detailed description of the equipment compartment structure provided by this utility model. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The descriptions of the embodiments above are merely for the purpose of helping to understand the method and core ideas of this utility model. It should be noted that those skilled in the art can make various improvements and modifications to this utility model without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. An equipment compartment structure, characterized in that, include: Main module (1); Rotating cabin assembly (2) is connected to the main cabin assembly (1); The adapter assembly (3) includes a protective frame (31) disposed in the main body assembly (1). The protective frame (31) has a protective cavity (311). One side of the protective cavity (311) is connected to the inner cavity of the rotating assembly (2). The other side of the protective cavity (311) is sealed by an adapter plate (32). The two sides of the adapter plate (32) are respectively used for signal connection to the main body assembly (1) and the rotating assembly (2).

2. The equipment compartment structure according to claim 1, characterized in that, The adapter plate (32) has at least two slot structures (321) on both sides. At least one of the slot structures (321) is located inside the protective frame (31) for connecting to the first transmission cable of the rotating cabin (2), and the remaining slot structures (321) are located outside the protective frame (31) for connecting to the second transmission cable of the main cabin (1).

3. The equipment compartment structure according to claim 2, characterized in that, The rotating cabin assembly (2) includes a turntable (21) and a hollow rotating shaft (22) rotatably disposed in the turntable (21), the hollow rotating shaft (22) being connected to the main cabin assembly (1). The first transmission cable of the rotating cabin (2) is connected to the adapter plate (32) after passing through the inner cavity of the hollow rotating shaft (22).

4. The equipment compartment structure according to claim 3, characterized in that, The protective frame (31) has a first opening (312) on the side facing the inner cavity of the rotating chamber (2), and the first opening (312) is connected to the inner cavity of the hollow rotating shaft (22).

5. The equipment compartment structure according to claim 4, characterized in that, A first sealing element (34) is provided in the first sealing groove (315) at the first opening (312), and the first sealing element (34) is used for sealing between the protective cavity (311) and the inner cavity of the rotating chamber (2).

6. The equipment compartment structure according to claim 5, characterized in that, The protective frame (31) has a second opening (313) on the inner side of the main compartment (1), and a pressure ring (33) is provided at the second opening (313). The pressure ring (33) is used to seal the adapter plate (32) to the second opening (313).

7. The equipment compartment structure according to claim 6, characterized in that, A second seal (35) is provided between the second sealing groove (316) at the second opening (313) and the pressure ring (33).

8. The equipment compartment structure according to claim 7, characterized in that, The opening direction of the first opening (312) is perpendicular to the opening direction of the second opening (313).

9. The equipment compartment structure according to any one of claims 2 to 8, characterized in that, The adapter plate (32) is provided with a guide slope (314), which is used to guide the first transmission cable to be led out to the adapter plate (32).

10. The equipment compartment structure according to claim 1, characterized in that, A third seal (4) is provided between the main compartment (1) and the rotating compartment (2).