Intelligent security device cabinet

CN224746834UActive Publication Date: 2026-09-11SHENYANG HAINA TONGCHUANG TECH CO LTD
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Patent Information

Application Number
CN202522185616.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2026-09-11
Estimated Expiration
2035-10-16

AI Technical Summary

Technical Problem

[0005]为了解决上述现有技术中存在的不便快速理线的问题,本实用新型提供一种智能安防设备柜,采用设备组结合穿线部件达到便于快速理线的效果,其具体技术方案为:一种智能安防设备柜,包括:安防设备柜,所述安防设备柜的内部安装有设备安装架,所述设备安装架上安装有多组设备组,每组所述设备组与所述安防设备柜之间均设置有穿线部件,所述穿线部件用于对所述设备组进行穿线;所述穿线部件包括:安装框、连接件和竖直壳,所述设备安装架的侧壁上安装有安装框,所述安装框与每组所述设备组一一对应,所述安装框上安装有连接件,所述连接件的另一端安装有竖直壳,所述竖直壳安装在所述安防设备柜的内壁上

Benefits of technology

1、该智能安防设备柜在设计上充分考虑了线缆管理的便利性和空间利用率。通过精心选用不同弧度大小的理线板,使同侧安装的理线板呈现出差异化的出线位置布局。这种设计使得在安装对应的连接件和竖直壳时,能够充分利用安防设备柜内的立体空间,实现错位分布,有效避免了各部件之间的空间干涉问题,大大提升了柜内空间的利用效率。

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Abstract

This utility model provides an intelligent security equipment cabinet, belonging to the field of security technology; it includes: a security equipment cabinet, inside which an equipment mounting rack is installed, on which multiple sets of equipment are installed, and each set of equipment is connected to the security equipment cabinet by a cable threading component, which is used to thread cables through the equipment sets; the cable threading component includes: a mounting frame, connectors, and a vertical shell. This intelligent security equipment cabinet is designed with full consideration for the convenience of cable management and space utilization. By carefully selecting cable management boards of different curvatures, the cable management boards installed on the same side present differentiated cable exit positions. This design allows for full utilization of the three-dimensional space inside the security equipment cabinet when installing corresponding connectors and vertical shells, achieving staggered distribution, effectively avoiding spatial interference between components, and greatly improving the utilization efficiency of the cabinet's internal space.
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Description

Technical Field

[0001] This utility model belongs to the field of security technology, specifically relating to an intelligent security equipment cabinet. Background Technology

[0002] Security equipment cabinets are critical infrastructure that provides centralized installation, physical protection, and a suitable operating environment for precision equipment such as surveillance cameras, video recorders, networks, and power supplies. Traditional equipment cabinets often use mechanical locks, which have limited security performance. Furthermore, their heat dissipation relies heavily on fixed fans and ventilation holes, resulting in poor dehumidification and anti-condensation effects in high-humidity or high-temperature-difference outdoor environments. This makes it difficult to ensure the long-term stable operation of the internal equipment, leading to high maintenance costs. In addition, their mobile design suffers from insufficient friction with the ground, affecting stability. Therefore, the industry is moving towards integrating intelligent access control, automatic fire suppression, environmental monitoring, and enhanced heat dissipation and dehumidification functions.

[0003] Chinese Patent Publication No. CN220776191U discloses an intelligent security equipment cabinet. Through the cooperation between the cabinet body, the closing mechanism and the expansion mechanism, when the internal temperature of the cabinet reaches the warning value, the closing mechanism will open several exhaust vents at the bottom of the cabinet, and the expansion mechanism can open several air inlets at the top of the cabinet. This allows the cabinet to control the overall ventilation effect of the device according to the change of the internal temperature of the cabinet, thereby solving the problem that existing ventilation facilities cannot increase the number of air inlets and outlets at high temperatures.

[0004] However, due to the need to install various security devices such as video surveillance hosts, network switches, power supply equipment, and alarm hosts inside the security equipment cabinet, the dense installation of these devices results in very limited internal space and a very compact layout. While the aforementioned heat dissipation device uses hydraulic cylinders to adjust the opening and closing of the cabinet's ventilation holes, achieving heat dissipation adjustment, this mechanical structure further occupies the already limited internal space, making equipment installation and wiring more difficult. Furthermore, the design of installing cooling fans on the side walls has significant shortcomings: firstly, it relies on forced convection from the fans for effective heat dissipation, as natural convection cooling is relatively inefficient; secondly, the heat dissipation effect is affected by multiple factors, including fan power, installation location, and the level of dust accumulation in the environment, and due to the limitations of the heat dissipation principle, the internal temperature of the cabinet is always difficult to lower below the ambient temperature. At the same time, although existing equipment cabinets have basic wiring channels and cable routing structures, most connecting cables are still exposed, lacking effective cable management measures. In addition, security systems have a large number of connection cables, including power cables, network cables, video cables, control cables and other types. Maintenance personnel often need to observe the labels on the cables to identify the specific purpose and connection location of each connection cable. This design has obvious defects in actual maintenance: when a connection cable fails, maintenance personnel have difficulty quickly and accurately locating the specific location of the faulty line, which greatly increases the difficulty of troubleshooting and repair. Utility Model Content

[0005] To address the inconvenience of quick and easy cable management in existing technologies, this invention provides an intelligent security equipment cabinet that utilizes a combination of equipment groups and cable management components to achieve convenient and rapid cable management. The specific technical solution is as follows: An intelligent security equipment cabinet includes a security equipment cabinet with an internal equipment mounting rack. Multiple equipment groups are mounted on the mounting rack, and a cable management component is provided between each equipment group and the security equipment cabinet. The cable management component is used to thread cables through the equipment groups. The cable management component includes a mounting frame, a connector, and a vertical shell. A mounting frame is mounted on the side wall of the equipment mounting rack, and each mounting frame corresponds one-to-one with each equipment group. A connector is mounted on the mounting frame, and a vertical shell is mounted on the other end of the connector. The vertical shell is mounted on the inner wall of the security equipment cabinet.

[0006] Preferably, a cooling fan is installed on the top inner side of the security equipment cabinet, and a power strip is installed on the inner rear side wall of the security equipment cabinet, with the cooling fan connected to the power strip.

[0007] Preferably, the security equipment cabinet is equipped with casters at all four corners of its bottom, which are used to move the security equipment cabinet.

[0008] Preferably, the front side of the security equipment cabinet is rotatably connected to a cabinet door, a transparent panel is installed in the middle of the cabinet door for observing the internal situation, and a first heat dissipation hole is provided on the cabinet door; a second heat dissipation hole is provided on the inner wall of the security equipment cabinet.

[0009] Preferably, the equipment group includes: security equipment, a cover plate, and a cable management plate. The security equipment is mounted on the equipment mounting frame, the cover plate is mounted on the equipment mounting frame, the cover plate is used to increase the curvature of the connecting cable, and the cable management plate is mounted on the equipment mounting frame, with the cover plate located between the security equipment and the cable management plate.

[0010] Preferably, the cable management board has two sets of arc-shaped cable guides symmetrically arranged on its front side, and the rear ends of the two sets of arc-shaped cable guides are respectively opened to both sides of the cable management board. Two first side plates are symmetrically installed on the front side of the cable management board, and the first side plates have first mounting holes for mounting the cable management board on the equipment mounting frame.

[0011] Preferably, the mounting frame has second mounting holes on both sides, and the mounting frame is mounted on the equipment mounting bracket through the second mounting holes. The upper and lower surfaces of the mounting frame have multiple sets of first holes, and each set of first holes is used to install the connector.

[0012] Preferably, the connector includes a connecting block and a mounting plate. Mounting plates are installed at both ends of the connecting block. A first straight line group is formed between the connecting block and the two mounting plates. The number of openings in the arc-shaped line group is the same as that in the first straight line group. A second hole group is formed on the surface of the mounting plate. The first hole group and the second hole group on one side are installed by bolts.

[0013] In addition, the intelligent security equipment cabinet in the above-mentioned technical solution provided by this utility model may also have the following features: a second side plate is installed on both sides of the vertical shell, a third mounting hole is opened on the second side plate, the third mounting hole is fixedly installed on the inner wall of the security equipment cabinet by bolts, an inlet is opened on the surface of the vertical shell, a third hole group is opened on the surface of the vertical shell, the third hole group is located on both sides of the inlet, the third hole group is installed with the second hole group on the other side by bolts, and a second straight cable group is opened at the inner bottom of the inlet.

[0014] In the above technical solution, the second straight through-line group has the same number of openings as the first straight through-line group.

[0015] The intelligent security equipment cabinet of this utility model has the following advantages compared with the prior art: 1. This intelligent security equipment cabinet is designed with cable management convenience and space utilization in mind. By carefully selecting cable management boards of different curvatures, the cable management boards installed on the same side present differentiated cable exit positions. This design allows for full utilization of the cabinet's internal space when installing corresponding connectors and vertical housings, achieving staggered distribution and effectively avoiding spatial interference between components, thus greatly improving the efficiency of space utilization within the cabinet.

[0016] 2. This intelligent security equipment cabinet employs a scientific cable management system. By systematically threading each connection cable through a specially designed cable management board, dedicated connectors, and a vertical casing, it ensures that all cables are precisely placed into their respective independent channels. This modular cabling method not only makes the cables neat and aesthetically pleasing, but more importantly, when a connection cable malfunctions, maintenance personnel can quickly and accurately locate the specific connection point, significantly improving the efficiency of troubleshooting and repair.

[0017] 3. This intelligent security equipment cabinet boasts multiple advantages in its heat dissipation design. By centrally mounting the equipment units in the middle of the equipment rack, ample space for heat dissipation is ensured around the units. Simultaneously, a high-performance cooling fan is installed at the top of the cabinet, cleverly utilizing the natural upward movement of hot air to create an efficient chimney effect. This design ensures smoother airflow circulation and a short, direct path for hot air exhaust. Large ventilation holes or grille structures within the cabinet further increase the airflow area, enabling faster heat removal. Furthermore, the top cover is designed for quick and easy opening and removal, greatly facilitating daily inspection and maintenance of the equipment inside, fully embodying a user-friendly design philosophy. Attached Figure Description

[0018] Figure 1 This is a front view schematic diagram of the intelligent security equipment cabinet provided by this utility model; Figure 2 This is an internal schematic diagram of the intelligent security equipment cabinet provided by this utility model; Figure 3 A cross-sectional schematic diagram of the cable management board provided by this utility model; Figure 4 A three-dimensional structural diagram of the mounting frame provided by this utility model; Figure 5 A three-dimensional structural diagram of the connector provided by this utility model; Figure 6 A three-dimensional structural diagram of the vertical shell provided by this utility model; in, Figures 1 to 6The attached diagrams and component names are as follows: 1. Security equipment cabinet, 2. Equipment mounting rack, 3. Equipment group, 4. Cable threading component, 5. Cooling fan, 6. Power strip, 7. Casters, 8. Cabinet door, 9. Transparent panel, 10. First ventilation hole, 11. Second ventilation hole, 31. Security equipment, 32. Cover plate, 33. Cable management plate, 41. Mounting frame, 42. Connector, 43. Vertical shell, 331. Arc-shaped cable guide group, 332. First side panel, 333. First mounting hole, 411. Second mounting hole, 412. First hole group, 421. Connecting block, 422. Mounting plate, 423. First straight cable guide group, 424. Second hole group, 431. Second side panel, 432. Third mounting hole, 433. Cable inlet, 434. Third hole group, 435. Second straight cable guide group. Detailed Implementation

[0019] The following are specific implementation cases and appendices. Figures 1-6 This utility model provides a further description, but it is not limited to these embodiments. This utility model offers a technical solution: an intelligent security equipment cabinet, comprising: a security equipment cabinet 1, serving as the core carrier of the entire security system, made of high-strength metal, possessing excellent protective performance and heat dissipation characteristics. The internal space of the security equipment cabinet 1 is carefully designed, with equipment mounting racks 2 rationally installed. These mounting racks adopt a modular structure design, allowing for flexible adjustment of installation positions according to actual needs. The equipment mounting racks 2 employ a layered layout, housing multiple equipment groups 3. Each equipment group 3 undergoes rigorous seismic and electromagnetic compatibility testing. Equipment groups 3 contain various important devices, such as data processing hosts for data storage and processing, network switches for network interconnection, routers responsible for data transmission, uninterruptible power supplies ensuring continuous power supply, and surge protectors to prevent lightning strike damage. These devices collectively constitute the complete hardware foundation of the security system. Each equipment group 3 is connected to the security equipment cabinet 1 by a cable threading component 4. This component is made of fire-retardant material and is used to manage the cables of the equipment group 3 in a standardized manner, ensuring that the cable layout is neat and orderly, and facilitating later maintenance and repair work.

[0020] The wiring component 4 mainly consists of three key components: a mounting frame 41, a connector 42, and a vertical shell 43. Specifically, the mounting frame 41 is securely mounted on the side wall of the equipment mounting rack 2, with each mounting frame 41 corresponding to a specific set of equipment groups 3, ensuring the modular design of the system. A connector 42 is fixed to the mounting frame 41, and the other end of this connector 42 is connected to the vertical shell 43, which is ultimately installed on the inner wall of the security equipment cabinet 1, forming a complete wiring channel. It is worth noting that the height specifications of each vertical shell 43 are different. This design is to accommodate the installation height requirements of different equipment groups 3. In actual installation, only the vertical shell 43 matching the installation height of the equipment group 3 needs to be selected, thus ensuring both installation flexibility and overall system coordination.

[0021] As a preferred solution, a dedicated axial fan 5 for heat dissipation is installed at the top of the security equipment cabinet 1. This fan is driven by a high-quality motor and can operate continuously and stably. Simultaneously, a multi-functional power strip 6 with multiple standard socket interfaces is fixedly installed on the rear inner wall of the security equipment cabinet 1. To ensure the normal operation of the cooling system, the cooling fan 5 is electrically connected to the rear power strip 6 via a dedicated power cord, thus providing a stable power supply to the fan. This design ensures both effective ventilation and heat dissipation inside the equipment cabinet, as well as convenient and secure power connections.

[0022] As a preferred option, the security equipment cabinet 1 is further reinforced with four 360-degree rotating casters 7 at its bottom corners. Each caster 7 is equipped with a reliable braking mechanism, allowing for quick locking of the wheel position by stepping on or rotating it. These flexible casters 7 not only enable the security equipment cabinet 1 to move in any direction on a flat surface but also easily handle the handling needs of different ground environments. When a fixed position is required, simply operating the braking mechanism ensures that the security equipment cabinet 1 remains stable and immovable, facilitating daily maintenance and repositioning while ensuring safety during use.

[0023] As a preferred option, the front of the security equipment cabinet 1 is hinged to a cabinet door 8, which is made of metal and offers excellent protection. A high-strength transparent panel 9, made of tempered glass or acrylic, is embedded in the center of the cabinet door 8, providing impact resistance and shatterproof properties, allowing staff to directly observe the operating status of the equipment inside without opening the door. Multiple primary ventilation holes 10 are evenly distributed on the upper part of the cabinet door 8, arranged in an array to ensure good ventilation and heat dissipation while effectively preventing dust and foreign objects from entering. Furthermore, secondary ventilation holes 11 are provided around the inner walls of the security equipment cabinet 1. These ventilation holes, together with the primary ventilation holes 10 on the cabinet door, form a convection channel, constituting a complete heat dissipation system to ensure stable operation of the equipment inside the cabinet within a suitable temperature environment.

[0024] As a preferred option, the equipment group 3 further comprises three main components: security equipment 31, a cover plate 32, and a cable management board 33. The security equipment 31, as the core security device, is securely installed in a designated position on the equipment mounting frame 2 to ensure stable operation of the security function. The cover plate 32 is also installed on the equipment mounting frame 2; its special design effectively enhances the curvature of the connecting cables, providing better bending space and protection for the wiring layout. The cable management board 33 is also installed on the equipment mounting frame 2, specifically used to organize and secure various connecting cables, keeping the wiring neat and orderly. It is worth noting that the cover plate 32 is positioned strategically between the security equipment 31 and the cable management board 33 in the installation layout. This arrangement ensures reasonable spacing between the devices and optimizes the cable routing, making the installation of the entire equipment group more scientific and rational.

[0025] As a preferred embodiment, the cable management plate 33 is further provided with two sets of identical arc-shaped cable guide groups 331 symmetrically formed on its front side. Each set of arc-shaped cable guide groups 331 consists of multiple arc-shaped cable guide grooves, and the rear ends of the two sets of arc-shaped cable guide groups 331 extend to the left and right edges of the cable management plate 33, respectively. Two first side plates 332 are symmetrically fixedly installed on the front side of the cable management plate 33. The first side plates 332 are made of high-strength material and have first mounting holes 333 precisely machined on them. These first mounting holes 333 are used to securely install the cable management plate 33 onto the equipment mounting frame 2 using bolts or other fasteners. Of particular note is that the arc-shaped cable management groups 331 on the cable management board 33 connected on the same side are carefully designed. The curvature parameters of each cable management group are different. This differentiated curvature design makes the opening positions formed on the side of each arc-shaped cable management group 331 different. Through this ingenious structural design, it can be ensured that the side connector 42 and the vertical shell 43 can be perfectly aligned after installation and always remain on the same vertical plane, thereby achieving a more neat and beautiful wiring effect.

[0026] As a preferred embodiment, the mounting frame 41 is further provided with multiple second mounting holes 411 symmetrically formed on both sides of its surface. These second mounting holes 411 are evenly distributed and arranged to achieve a secure connection between the mounting frame 41 and the equipment mounting bracket 2. The mounting frame 41 is fixed to the equipment mounting bracket 2 using bolts or screws or other fasteners through the second mounting holes 411, ensuring the firmness and reliability of the installation. In addition, multiple sets of first hole groups 412 are regularly formed on the upper and lower surfaces of the mounting frame 41. Each set of first hole groups 412 consists of several precision-machined mounting holes. The position and size of these mounting holes are precisely designed specifically for installing and fixing the connector 42. This structural design not only ensures the overall structural strength of the mounting frame 41 but also achieves a precise fit with the connector 42, providing convenience for equipment installation.

[0027] As a preferred embodiment, the connector 42 further comprises two main components: a connecting block 421 and a mounting plate 422. The connecting block 421 has a cuboid structure with two mounting plates 422 symmetrically mounted at both ends along its length, forming a stable connection structure. To facilitate cable routing and fixing, a first straight cable pass group 423 is formed between the connecting block 421 and the two mounting plates 422. This pass group consists of multiple parallel straight through holes. Notably, the arc-shaped cable pass group 331 and the first straight cable pass group 423 maintain the same number of openings in their design, ensuring compatibility during connection. Furthermore, a second hole group 424 is machined onto the surface of each mounting plate 422, and these hole groups are arranged regularly. During assembly, the first hole group 412 is fastened to one of the corresponding second hole groups 424 using high-strength bolts, thus achieving reliable installation of the entire connector 42. The design of the entire connector 42 fully considers structural strength and ease of installation, ensuring its stability and reliability in operation.

[0028] As a preferred option, the vertical shell 43, serving as a crucial internal support structure for the security equipment cabinet 1, has symmetrically mounted second side plates 431 on both sides. These side plates are made of high-strength metal to ensure the overall structural stability. Third mounting holes 432 are precisely machined into the second side plates 431, arranged at equal intervals, and securely connected to the inner wall of the security equipment cabinet 1 using high-strength bolts. The front surface of the vertical shell 43 features a dedicated cable inlet 433 with rounded corners to prevent cable abrasion. Symmetrically arranged on both sides of the cable inlet 433 are third hole groups 434, precisely machined to correspond perfectly with the second hole group 424 on the other side, and tightly connected using matching bolts. A second straight cable passage group 435 is formed on the inner bottom surface of the cable inlet 433, with the same number of openings as the first straight cable passage group 423. Each passage hole is polished to ensure smooth cable passage. The entire structural design fully considers ease of installation and reliability of use. All connection parts are designed to prevent loosening, ensuring stable performance during long-term use.

[0029] The security equipment cabinets, equipment mounting racks, equipment groups, cooling fans, and power strips in this case are existing technologies. As long as the security equipment cabinets, equipment mounting racks, equipment groups, cooling fans, and power strips meet the requirements of this case, they are acceptable.

[0030] The specific types or circuit structures of the controllers for the electrical components mentioned in this application, as well as the circuit connection relationships between the electrical components and the accurate coordinated control of multiple power components, are all prior art. Therefore, the above content will not be elaborated upon in this application.

[0031] Working Principle: All electrical components mentioned in this application are externally connected to a power supply and control switch during use. After installation, first check the installation, fixation, and safety protection of this utility model before use. During the specific installation process, when installing equipment group 3, first follow the standard steps to install the three main components—security equipment 31, cover plate 32, and cable management board 33—in sequence along the vertical direction at the designated positions on the equipment mounting bracket 2. Special attention must be paid to the installation position of the cover plate 32; it must be precisely installed in the middle position between the security equipment 31 and the cable management board 33. The security equipment 31, as a core component, contains various important devices, such as a data processing host, network switch, router, uninterruptible power supply, and surge protector. When installing the cable management board 33, special attention should be paid to its cable routing direction. Cables are routed through the left side of the upper cable management board 33 and through the right side of the lower cable management board 33. Therefore, a cable management board 33 with a specially designed arc-shaped cable guide group 331 should be selected. It should also be ensured that the side hole opening position of the selected cable management board is different from that of other components. This way, during the subsequent cable routing process, each line can remain independent in the vertical direction and will not interfere with each other.

[0032] After the initial installation of the above components is completed, the next step is to perform detailed wiring. First, all connecting wires of the security device 31 are threaded through the corresponding holes of the pre-selected arc-shaped cable group 331 according to specifications. The extending connecting wires need to continue through the channel of the first straight cable group 423. During this process, matching connectors 42 must be selected and installed according to the specific positions of the side holes of the arc-shaped cable group 331 to ensure that the first hole group 412 and the second hole group 424 can be precisely connected and securely fixed with bolts. After fixing, the extended connecting wires need to be neatly introduced into the inlet 433, and each connecting wire is threaded into the corresponding hole of the third hole group 434 in the pre-planned sequence. Then, the connecting wires are extended downwards to the designated position, and finally, the connectors 42 are reliably connected to the vertical shell 43. The entire vertical shell 43 assembly is then securely installed on the predetermined position on the side wall of the security equipment cabinet 1 using bolts, ensuring that the entire installation process complies with engineering specifications and safety requirements.

[0033] In the description of this utility model, the term "multiple" refers to two or more. Unless otherwise explicitly defined, the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. The terms "connection," "installation," "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0034] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An intelligent security equipment cabinet, comprising: A security equipment cabinet (1) is characterized in that an equipment mounting rack (2) is installed inside the security equipment cabinet (1), and multiple sets of equipment groups (3) are installed on the equipment mounting rack (2). Each set of equipment groups (3) is provided with a wiring component (4) between it and the security equipment cabinet (1). The wiring component (4) is used to thread wires through the equipment groups (3). The wiring component (4) includes: a mounting frame (41), a connector (42) and a vertical shell (43). The mounting frame (41) is installed on the side wall of the equipment mounting frame (2). The mounting frame (41) corresponds one-to-one with each of the equipment groups (3). The connector (42) is installed on the mounting frame (41). The vertical shell (43) is installed at the other end of the connector (42). The vertical shell (43) is installed on the inner wall of the security equipment cabinet (1).

2. The intelligent security device cabinet of claim 1, wherein, A cooling fan (5) is installed on the top inner side of the security equipment cabinet (1), and a power strip (6) is installed on the inner rear side wall of the security equipment cabinet (1). The cooling fan (5) is connected to the power strip (6).

3. The intelligent security device cabinet of claim 1, wherein, The security equipment cabinet (1) is equipped with casters (7) at the four corners of its bottom, and the casters (7) are used to move the security equipment cabinet (1).

4. The intelligent security device cabinet of claim 1, wherein, The front side of the security equipment cabinet (1) is rotatably connected to a cabinet door (8), and a transparent plate (9) is installed in the middle of the cabinet door (8). The transparent plate (9) is used to observe the internal situation. A first heat dissipation hole (10) is opened on the cabinet door (8); a second heat dissipation hole (11) is opened on the inner wall of the security equipment cabinet (1).

5. The intelligent security device cabinet of claim 1, wherein, The equipment group (3) includes: security equipment (31), a cover plate (32) and a cable management plate (33). The security equipment (31) is installed on the equipment mounting frame (2). The cover plate (32) is installed on the equipment mounting frame (2). The cover plate (32) is used to improve the curvature of the connecting cable. The cable management plate (33) is installed on the equipment mounting frame (2). The cover plate (32) is located between the security equipment (31) and the cable management plate (33).

6. The intelligent security device cabinet of claim 5, wherein, The cable management plate (33) has two sets of arc-shaped cable guides (331) symmetrically arranged on the front side. The rear ends of the two sets of arc-shaped cable guides (331) are respectively opened to the two sides of the cable management plate (33). The cable management plate (33) has two first side plates (332) symmetrically installed on the front side. The first side plates (332) have first mounting holes (333) for mounting the cable management plate (33) on the equipment mounting frame (2).

7. The intelligent security device cabinet of claim 6, wherein, The mounting frame (41) has second mounting holes (411) on both sides. The mounting frame (41) is mounted on the equipment mounting frame (2) through the second mounting holes (411). The upper and lower surfaces of the mounting frame (41) have multiple sets of first hole groups (412). Each set of first hole groups (412) is used to install the connector (42).

8. The intelligent security equipment cabinet according to claim 7, characterized in that, The connector (42) includes a connecting block (421) and a mounting plate (422). Mounting plates (422) are installed at both ends of the connecting block (421). A first straight line group (423) is opened between the connecting block (421) and the two mounting plates (422). The number of openings of the arc-shaped line group (331) is the same as that of the first straight line group (423). A second hole group (424) is opened on the surface of the mounting plate (422). The first hole group (412) and the second hole group (424) on one side are installed by bolts.

9. The intelligent security device cabinet of claim 8, wherein, The vertical shell (43) has a second side plate (431) installed on both sides. The second side plate (431) has a third mounting hole (432). The third mounting hole (432) is fixedly installed on the inner wall of the security equipment cabinet (1) by bolts. The vertical shell (43) has a cable inlet (433) on its surface. The vertical shell (43) has a third hole group (434) on its surface. The third hole group (434) is located on both sides of the cable inlet (433). The third hole group (434) is installed with the second hole group (424) on the other side by bolts. The bottom of the cable inlet (433) has a second straight cable group (435) with the same number of openings as the first straight cable group (423).

Citation Information

Patent Citations

  • Intelligent security equipment cabinet

    CN220776191U