Cabinet body device

CN223987273UActive Publication Date: 2026-03-10INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2026-02-04
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

The existing server room control cabinets have small interior spaces and poor lighting, making maintenance difficult. The fixed connection between the back panel and the main cabinet body also makes maintenance inconvenient, increasing the difficulty and cost of maintenance.

Method used

A cabinet device was designed that integrates adjustable lighting components and adjustment mechanisms. The position and angle of the lighting components can be adjusted through a guide rail and slider structure. Combined with a switch panel and locking mechanism, it provides a flexible lighting solution.

Benefits of technology

Providing ample illumination for the equipment under any lighting conditions simplifies the maintenance process, improves maintenance efficiency and accuracy, and enhances the practicality of the control cabinet and user comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cabinet body device, and relates to the technical field of electronic equipment, and the cabinet body device comprises a cabinet body which comprises a containing cavity and a first opening which communicate with each other; the lighting component is arranged in the accommodating cavity; the adjusting assembly is arranged in the containing cavity and located at the first opening, and at least part of the adjusting assembly is movably arranged; wherein the moving part of the adjusting assembly is connected with the lighting component so as to adjust the position of the lighting component at the first opening, the technical problem that the control cabinet of the machine room is inconvenient to maintain in the related technology is solved, and the technical effect of remarkably improving the maintenance and repair efficiency and accuracy of the control cabinet is achieved.
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Description

Technical Field

[0001] This application relates to the field of electronic equipment technology, and more particularly to a cabinet device. Background Technology

[0002] Easy-to-maintain server room control cabinets are mainly used in server rooms to provide a stable and controllable working environment for various devices and ensure their normal operation. With the development of information technology and the continuous expansion of data center scale, server room control cabinets often encounter the following problems in maintenance and management.

[0003] Currently, control cabinets often have cramped interiors and poor lighting, especially during maintenance at night or in dimly lit environments. Operators struggle to clearly observe the internal structure and equipment status, increasing maintenance difficulty and potentially leading to equipment damage due to improper operation caused by insufficient lighting. Furthermore, data modules and other equipment within the control cabinet may age or fail after prolonged operation, requiring regular maintenance. However, the connection between the backplane and the main cabinet body is often fixed, making maintenance of internal equipment, particularly when observing or accessing wiring and components behind the backplane, extremely inconvenient and increasing maintenance time and costs. Utility Model Content

[0004] This application provides a cabinet device to at least solve the problem of inconvenient maintenance of control cabinets in computer rooms in related technologies.

[0005] This application provides a cabinet device, including: a cabinet including a communicating receiving cavity and a first opening; a lighting component disposed within the receiving cavity; an adjustment assembly disposed within the receiving cavity and located at the first opening, at least a portion of the adjustment assembly being movably disposed; wherein, the movable portion of the adjustment assembly is connected to the lighting component to adjust the position of the lighting component at the first opening; the adjustment assembly includes: a guide rail and a slider slidably sleeved outside the guide rail, the guide rail extending along the height direction of the cabinet and fixedly connected to the cabinet; an adjustment rod fixedly connected to the slider; an adjustment frame slidably sleeved outside the adjustment rod, at least a portion of the lighting component being mounted on the adjustment frame; an adjustment locking member and a friction strip, the friction strip being disposed on the side of the adjustment rod near the adjustment locking member; the adjustment frame is provided with a second threaded through hole threadedly connected to the adjustment locking member, one end of the adjustment locking member passing through the second threaded through hole for contacting or separating from the friction strip, so as to lock or unlock the sliding of the adjustment frame relative to the adjustment rod by rotating the adjustment locking member.

[0006] Furthermore, the adjustment component includes: a slider locking member, wherein the slider is provided with a first threaded through hole for threaded connection with the threaded section of the slider locking member, and one end of the threaded section passes through the first threaded through hole for contacting or separating from the guide rail, so as to lock or unlock the slider's sliding relative to the guide rail by rotating the slider locking member.

[0007] Furthermore, the lighting component includes a lighting lamp; the adjusting rod extends along the width of the cabinet; the adjusting assembly includes a connecting frame, the connecting frame being fixedly connected to the adjusting frame, the connecting frame including a mounting groove and a mounting opening connected to the mounting groove, and the lighting lamp being rotatably mounted in the mounting groove through the mounting opening.

[0008] Furthermore, the connecting frame includes: a support frame, including a mounting groove and a mounting opening; a collar, which is sleeved on the outside of the lighting lamp and installed in the mounting groove through the mounting opening; and a rotating shaft, which passes through the collar and the support frame, so that the collar drives the lighting lamp to be rotatably arranged relative to the support frame around the axis of the rotating shaft.

[0009] Furthermore, the connecting frame includes: a rotating operating rod, an arc-shaped groove extending around the circumference of the support frame, a first end of the rotating operating rod located on the side of the support frame away from the mounting groove, and a second end of the rotating operating rod passing through the arc-shaped groove and connected to a collar, so as to drive the collar to rotate by driving the rotating operating rod to slide along the arc-shaped groove; and a rotating locking member, which is threadedly connected to the rotating operating rod, so as to make the rotating locking member contact or separate from the support frame by rotating the rotating locking member, so as to lock or unlock the sliding of the rotating operating rod relative to the support frame.

[0010] Furthermore, the cabinet also includes a connected receiving cavity and a connected second opening; the cabinet device includes a switch plate and two sliding guides, the switch plate being disposed at the second opening; both sliding guides are mounted on the cabinet and are respectively located on opposite sides of the second opening, each sliding guide includes a plate groove, each plate groove being located on the side of the corresponding sliding guide closer to the other sliding guide, and the opposite ends of the switch plate are slidably inserted into the plate grooves of the two sliding guides to open or close the second opening.

[0011] Furthermore, the cabinet device includes a switch locking assembly, which includes: a first locking component disposed on the switch plate; and a second locking component disposed on the sliding guide; wherein the first locking component and the second locking component are connected or separated to lock or unlock the sliding of the switch plate on the sliding guide.

[0012] Further, the first locking component includes: a fixed frame connected to the switch plate, the fixed frame including a fixed groove and a fixed opening connected to each other; a connecting shaft disposed in the fixed groove through the fixed opening and with its two ends respectively connected to two opposite groove walls of the fixed groove; a rotating frame, the first end of the rotating frame being rotatably sleeved on the connecting shaft, and the second end of the rotating frame being used to connect or separate from the second locking component; and a first elastic return member sleeved on the connecting shaft and connected to the fixed frame and the rotating frame respectively.

[0013] Further, the second locking component includes: two mounting brackets spaced apart on the sliding guide, each mounting bracket including a guide rod parallel to and spaced apart from the sliding guide; two sliding rings slidably fitted onto the guide rods of the two mounting brackets; a plug-in plate, at least a portion of which is parallel to the sliding guide and located between the two mounting brackets, the plug-in plate being connected to the two sliding rings to slide with the two sliding rings for insertion or separation from the second end of the rotating frame; and two second elastic return members, each fitted onto the guide rods of the two mounting brackets, each second elastic return member being located between one end of the corresponding guide rod and the corresponding sliding ring.

[0014] This application provides a cabinet device that integrates a lighting component and an adjustable adjustment component within the cabinet. By adjusting the position of the adjustment component, the position and angle of the lighting component at the first opening can be changed, ensuring sufficient illumination for equipment (such as control equipment) within the cabinet under any circumstances. This facilitates inspection and maintenance by maintenance personnel, providing a flexible lighting solution. It addresses the problem of insufficient internal lighting in server room control cabinets at night or in dimly lit conditions, thus resolving the inconvenience of maintenance in related technologies and significantly improving the efficiency and accuracy of control cabinet maintenance and repair. Furthermore, the dynamic adjustment of the lighting component's position reduces the inconvenience of manual lighting operations in narrow or complex server room environments, further enhancing the practicality of server room control cabinets and user comfort. Attached Figure Description

[0015] To more clearly illustrate the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 A schematic diagram of the structure of an embodiment of a cabinet device provided in this application, in one direction;

[0017] Figure 2 for Figure 1 A schematic diagram of the cabinet assembly shown from another direction;

[0018] Figure 3 for Figure 1 A partial enlarged view of the lighting and adjustment components of the cabinet unit shown;

[0019] Figure 4 for Figure 3 A partial enlarged view of the connecting bracket of the adjustment component shown;

[0020] Figure 5 for Figure 2 A magnified view of part C of the cabinet assembly shown.

[0021] The above figures include the following reference numerals:

[0022] 1. Cabinet body; 10. Receiving cavity; 11. First opening;

[0023] 2. Switchboard;

[0024] 3. Lighting components; 31. Lighting lamps; 32. Lighting controllers;

[0025] 4. Adjustment assembly; 41. Guide rail; 42. Slider; 43. Adjustment rod; 44. Slider locking component; 45. Adjustment frame; 46. Connecting bracket; 461. Mounting slot; 462. Support frame; 463. Collar; 464. Rotating shaft; 465. Arc-shaped slide groove; 47. Adjustment locking component; 48. Friction strip; 49. Rotation operating rod; 410. Rotation locking component;

[0026] 5. Switch locking assembly; 51. First locking component; 511. Fixing bracket; 512. Connecting shaft; 513. Rotating bracket; 514. First elastic return component; 515. Insertion through hole; 516. First plate segment; 517. Second plate segment; 52. Second locking component; 521. Mounting bracket; 522. Sliding ring; 523. Insertion plate; 524. Second elastic return component; 525. Guide rod; 526. Auxiliary operation slot;

[0027] 6. Sliding guide component;

[0028] 7. Cabinet doors;

[0029] 8. Control equipment. Detailed Implementation

[0030] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this application.

[0031] It should be noted that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," indicating orientation or positional relationships, are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing this application and simplifying the description. They 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 application. The terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can be fixed connections, detachable connections, or integral connections; they can be mechanical connections or electrical connections; they can be direct connections or indirect connections through an intermediate medium; they can be internal connections between two elements. The terms "parallel," "perpendicular," and "equal" include the described situation and situations similar to the described situation, where the range of similarity is within an acceptable deviation range, which is determined by those skilled in the art taking into account the measurement under discussion and the errors associated with the measurement of a particular quantity, i.e., the limitations of the measurement system. For example, "parallel" includes absolute parallelism and approximate parallelism, where an acceptable deviation range for approximate parallelism can be, for example, within 5°; "perpendicular" includes absolute perpendicularity and approximate perpendicularity, where an acceptable deviation range for approximate perpendicularity can also be, for example, within 5°. "Equal" includes absolute equality and approximate equality, where an acceptable deviation range for approximate equality can be, for example, a difference between the two equal items being less than or equal to 5% of either one. Those skilled in the art will understand the specific meaning of the above terms in this application based on the specific circumstances.

[0032] To enable those skilled in the art to better understand the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0033] like Figures 1 to 5As shown, this application provides a cabinet device, including: a cabinet 1, including a communicating receiving cavity 10 and a first opening 11; a lighting component 3, disposed in the receiving cavity 10; and an adjustment component 4, disposed in the receiving cavity 10 and located at the first opening 11, wherein at least a portion of the adjustment component 4 is movably disposed; wherein the movable portion of the adjustment component 4 is connected to the lighting component 3 to adjust the position of the lighting component 3 at the first opening 11.

[0034] Thus, the cabinet device of this application integrates a lighting component 3 and an adjustable adjustment component 4 within the cabinet 1. By adjusting the position of the adjustment component 4, the position and illumination angle of the lighting component 3 at the first opening 11 can be changed, ensuring sufficient lighting for the equipment (such as control equipment 8) within the housing cavity 10 under all circumstances. This facilitates inspection and maintenance work by maintenance personnel, providing a flexible lighting solution. It solves the problem of insufficient internal lighting in server room control cabinets at night or in dimly lit conditions, thereby addressing the issue of inconvenient maintenance of control cabinets in related technologies and significantly improving the efficiency and accuracy of control cabinet maintenance and repair. Furthermore, since the position of the lighting component 3 can be dynamically adjusted according to actual needs, it reduces the inconvenience of manual lighting operations in narrow or complex layout server room environments, further enhancing the practicality of the server room control cabinet and the user's comfort experience.

[0035] Specifically, this application provides a cabinet device that can be a control cabinet.

[0036] like Figure 3 and Figure 4 As shown, the adjustment component 4 includes: a guide rail 41 and a slider 42 slidably sleeved on the guide rail 41. The guide rail 41 extends along the height direction of the cabinet 1 and is fixedly connected to the cabinet 1. An adjustment rod 43 is fixedly connected to the slider 42, and an lighting component 3 is disposed on the adjustment rod 43.

[0037] In this application, the adjustment component 4 is provided with a guide rail 41 and a slider 42. The guide rail 41 extends along the height direction of the cabinet 1 and is fixedly connected to the upper and lower ends of the cabinet 1. The slider 42 is slidably sleeved on the guide rail 41 and fixedly connected to the adjustment rod 43 that carries the lighting component 3. This allows the lighting component 3 to move up and down at the first opening 11 of the cabinet 1, which not only improves the flexibility of lighting inside the cabinet, but also ensures that within a limited space, the operator can adjust the lighting height according to actual needs to adapt to inspection requirements at different heights, significantly enhancing the maintainability and practicality of the server room control cabinet.

[0038] Alternatively, the sliding of slider 42 can be implemented in different ways, such as by electric drive, hydraulic drive, pneumatic drive or manual drive, to further improve the convenience and accuracy of its operation, meet the needs of more diversified maintenance scenarios, ensure maintenance efficiency, and optimize the working environment inside cabinet 1.

[0039] Specifically, the adjustment assembly 4 includes two guide rails 41 and two sliders 42. The two guide rails 41 are spaced apart on opposite sides of the first opening 11 along the width direction of the cabinet 1. The two sliders 42 are slidably mounted on the two guide rails 41 and are respectively connected to the two ends of the adjustment rod 43.

[0040] Among them, the guide rail 41 is a circular rod, and the slider 42 is a circular sleeve that cooperates with the circular rod.

[0041] like Figure 3 and Figure 4 As shown, the adjustment component 4 includes: a slider locking member 44, and a first threaded through hole provided on the slider 42 for threaded connection with the threaded section of the slider locking member 44. One end of the threaded section passes through the first threaded through hole and is used to contact or separate from the guide rail 41, so as to lock or unlock the sliding of the slider 42 relative to the guide rail 41 by rotating the slider locking member 44.

[0042] In this application, the adjusting assembly 4 further incorporates a slider locking member 44 that is threadedly connected to the first threaded through hole on the slider 42. Rotating the slider locking member 44 locks or unlocks the slider 42 relative to the guide rail 41. When the threaded section of the slider locking member 44 is threadedly connected to the first threaded through hole and rotates to contact the guide rail 41, it effectively restricts the sliding of the slider 42 along the guide rail 41, ensuring the stability of the adjusting assembly 4 at the corresponding position. Conversely, when the slider locking member 44 is separated from the guide rail 41, the slider 42 is allowed to slide freely along the guide rail 41, facilitating the adjustment of the position of the lighting component 3. This not only simplifies the adjustment process of the lighting component 3 but also enhances the stability of the adjusted position, ensuring accuracy and safety during maintenance and adjustment, thereby improving the maintenance efficiency and ease of operation of the computer room control cabinet.

[0043] like Figure 3 and Figure 4 As shown, the lighting component 3 includes a lighting lamp 31; the adjusting rod 43 extends along the width direction of the cabinet 1; the adjusting assembly 4 includes: an adjusting frame 45, which is slidably fitted over the adjusting rod 43; and a connecting frame 46, which is fixedly connected to the adjusting frame 45. The connecting frame 46 includes a mounting groove 461 and a mounting opening connected to the mounting groove 461. The lighting lamp 31 is rotatably mounted on the mounting groove 461 through the mounting opening.

[0044] In this application, the adjusting rod 43 extends along the width of the cabinet 1, providing a moving track for the adjusting frame 45, allowing the adjusting frame 45 to slide along the adjusting rod 43 to adjust the position of the lighting lamp 31. The connecting bracket 46 is fixedly connected to the adjusting frame 45. By providing the mounting groove 461 and mounting opening, the lighting lamp 31 can not only be securely installed but also rotate relative to the adjusting frame 45, thereby changing the lighting direction. This enables precise lighting of different areas within the cabinet 1, facilitating equipment inspection and maintenance work by maintenance personnel in low-light environments. This solution improves the flexibility and targeting of lighting, optimizes the maintenance efficiency of the server room control cabinet, and creates safer and more convenient conditions for server room maintenance operations.

[0045] In addition, the adjustment component 4 can also be equipped with structures such as telescopic arms to adjust the position of the lighting lamp 31 in the front and rear directions of the cabinet, further enhancing the adaptability and automation of the cabinet device.

[0046] like Figure 3 and Figure 4 As shown, the connecting frame 46 includes: a support frame 462, including a mounting groove 461 and a mounting opening; a collar 463, which is sleeved on the outside of the lighting lamp 31 and installed in the mounting groove 461 through the mounting opening; and a rotating shaft 464, which passes through the collar 463 and the support frame 462, so that the collar 463 drives the lighting lamp 31 to be rotatably arranged relative to the support frame 462 around the axis of the rotating shaft 464.

[0047] In this application, the structure of the connecting frame 46 includes a support frame 462, a collar 463, and a rotating shaft 464. The support frame 462 has a mounting groove 461 and a mounting port connected thereto. The collar 463 is fitted around the outside of the lighting lamp 31 and installed in the mounting groove 461 through the mounting port. The rotating shaft 464 passes between the collar 463 and the support frame 462, so that the lighting lamp 31 can rotate relative to the support frame 462 through the collar 463 around the axis of the rotating shaft 464. This allows the lighting lamp 31 to flexibly adjust the illumination direction within the cabinet 1, thereby more accurately illuminating the area to be inspected or maintained, improving maintenance efficiency and operational safety. Maintenance personnel can adjust the position of the light source according to actual needs to ensure sufficient light intensity at any angle. Especially when the internal structure of the cabinet 1 is complex and space is limited, it greatly enhances the adaptability and practicality of the lighting system.

[0048] like Figure 3 and Figure 4As shown, the adjustment assembly 4 includes: an adjustment locking member 47. The adjustment frame 45 is provided with a second threaded through hole for threaded connection with the threaded section of the adjustment locking member 47. One end of the threaded section of the adjustment locking member 47 passes through the second threaded through hole and is used to contact or separate from the adjustment rod 43, so as to lock or unlock the sliding of the adjustment frame 45 relative to the adjustment rod 43 by rotating the slider locking member to adjust the locking member 47.

[0049] In this application, the adjustment component 4, by providing a second threaded through hole on the adjustment frame 45 and engaging with the threaded section of the adjustment locking member 47, allows the user to lock or unlock the sliding of the adjustment frame 45 relative to the adjustment rod 43 by rotating the adjustment locking member 47. One end of the adjustment locking member 47 is designed to contact the adjustment rod 43. When the adjustment locking member 47 is rotated, its threaded section presses against the adjustment rod 43 to restrict the sliding of the adjustment frame 45 along the adjustment rod 43. When the adjustment locking member 47 is rotated in the opposite direction, its threaded section separates from the adjustment rod 43, allowing the adjustment frame 45 to slide freely on the adjustment rod 43, facilitating the adjustment of the position of the lighting lamp 31. This not only simplifies the adjustment process but also provides sufficient stability, ensuring that the angle of the lighting lamp 31 can be precisely fixed when maintaining and operating the control cabinet in the server room, meeting the lighting needs in different scenarios, and improving the efficiency and safety of maintenance work.

[0050] like Figure 3 and Figure 4 As shown, the adjustment assembly 4 includes a friction strip 48, which is disposed on the side of the adjustment rod 43 near the adjustment locking member 47 for contacting or separating from the adjustment locking member 47.

[0051] In this application, the side of the adjusting rod 43 near the adjusting locking member 47 is equipped with a friction strip 48. The adjusting locking member 47 can contact or separate from the adjusting rod 43 by contacting or separating from the friction strip 48, preventing the adjusting frame 45 from shifting due to external force during operation, and ensuring the accurate position of the lighting lamp 31.

[0052] like Figure 3 and Figure 4As shown, the connecting frame 46 includes: a rotating operating rod 49; an arc-shaped groove 465 extending around the circumference of the rotating shaft 464 is provided on the support frame 462; the first end of the rotating operating rod 49 is located on the side of the support frame 462 away from the mounting groove 461; the second end of the rotating operating rod 49 passes through the arc-shaped groove 465 and is connected to a collar 463, so as to drive the collar 463 to rotate by driving the rotating operating rod 49 to slide along the arc-shaped groove 465; and a rotating locking member 410, which is threadedly connected to the rotating operating rod 49, so as to make the rotating locking member 410 contact or separate from the support frame 462 by rotating the rotating locking member 410, so as to lock or unlock the sliding of the rotating operating rod 49 relative to the support frame 462.

[0053] In this application, the connecting frame 46 includes a rotating operating lever 49, the first end of which is located outside the support frame 462, and the second end passes through the arc-shaped slide groove 465 on the support frame 462 and is connected to the collar 463. By pushing the rotating operating lever 49 along the arc-shaped slide groove 465, the user can precisely adjust the direction of the lighting lamp 31. Furthermore, to fix this adjusted angle of the lighting lamp 31, a rotating locking member 410 is provided, which is threadedly connected to the rotating operating lever 49. By rotating the rotating locking member 410 to contact the support frame 462, the position of the rotating operating lever 49 can be effectively locked, preventing accidental movement during use. This not only simplifies the adjustment steps of the lighting lamp 31 but also ensures stability during operation, improving the maintenance efficiency and safety of the server room control cabinet.

[0054] Specifically, the rotating locking component 410 includes a nut and a locking ring. The nut is located on the side of the locking ring away from the support frame 462. Both the nut and the locking ring are sleeved on the outside of the rotating operating rod 49. The nut is threadedly connected to the rotating operating rod 49 so that the locking ring can be contacted or separated from the support frame 462 by rotating the nut.

[0055] like Figure 3 and Figure 4 As shown, the lighting component 3 also includes a lighting controller 32 electrically connected to the lighting lamp 31, which is mounted on the adjusting rod 43 and located at one end of the adjusting rod 43 near the slider 42.

[0056] In this application, the lighting component 3 integrates a lighting lamp 31 and a lighting controller 32, which are controlled by electrical connection. The lighting lamp 31 is located at the end of the adjusting rod 43 and near the slider 42. The lighting lamp 31 can change its illumination angle and position with the movement of the adjusting component 4, providing flexible and direct lighting for inspection and maintenance inside the computer room control cabinet. Through the regulation of the lighting controller 32, the brightness and on / off status of the lighting lamp 31 can be adjusted according to actual needs, thereby ensuring effective observation and operation under any lighting conditions, improving maintenance efficiency and safety. This allows the lighting component 3 and the adjusting component 4 to be tightly integrated, not only achieving adjustable lighting but also ensuring precise lighting positioning, thus optimizing the internal maintenance experience of the computer room control cabinet.

[0057] Of course, the installation location of the lighting lamp 31 and the control method of the lighting controller 32 can be appropriately adjusted according to the specific application environment and needs to adapt to the maintenance requirements of the control cabinets in different server rooms.

[0058] like Figure 2 As shown, the cabinet 1 also includes a connected receiving cavity 10 and a connected second opening; the cabinet device includes a switch plate 2 and two sliding guides 6, the switch plate 2 is disposed at the second opening; the two sliding guides 6 are both mounted on the cabinet 1 and are respectively located on opposite sides of the second opening, each sliding guide 6 includes a plate groove, each plate groove is located on the side of the corresponding sliding guide 6 closer to the other sliding guide 6, the opposite ends of the switch plate 2 are respectively slidably inserted into the plate grooves of the two sliding guides 6 to open or close the second opening.

[0059] In this application, the cabinet 1 integrates a second opening that connects to and accommodates the cavity 10, aiming to provide additional access methods to enhance the maintainability and ease of operation of the cabinet. The cabinet effectively manages and controls the second opening by using a switch plate 2 and two sliding guides 6. Specifically, the switch plate 2 is positioned at the second opening, while the two sliding guides 6 are respectively configured on opposite sides of the second opening, each equipped with a plate groove. The opposite ends of the switch plate 2 can freely slide into the plate grooves of these two sliding guides 6, thereby opening and closing the second opening. This not only simplifies the operation process but also ensures the safety and isolation of the internal environment of the cabinet 1, providing operators with a direct and quick way to access the important rear area of ​​the cabinet 1, thus enhancing the maintainability and security of the server room control cabinet.

[0060] like Figure 1 and Figure 2As shown, the first opening 11 and the second opening are arranged opposite to each other. The first opening 11 is located on the front side of the receiving cavity 10, and the second opening is located on the rear side of the receiving cavity 10. The cabinet device also includes a cabinet door 7 that is movably arranged at the first opening 11 to open or close the first opening 11. The adjustment component 4 is located on the side of the cabinet door 7 near the receiving cavity 10.

[0061] In this application, the cabinet door 7 is movably disposed at the first opening 11, effectively opening or closing to provide access to or close the front of the receiving cavity 10. This allows users to easily adjust the state of the cabinet door 7 as needed, enhancing the ease of use of the cabinet unit. The adjustment component 4 is located on the side of the cabinet door 7 closest to the receiving cavity 10. This means that when the cabinet door 7 is open, the adjustment component 4 is directly exposed, facilitating intuitive operation and adjustment by the user without needing to delve into the cabinet, simplifying the adjustment process and improving operational efficiency. Simultaneously, this layout ensures protection for the adjustment component 4 when the cabinet door 7 is closed, reducing damage caused by accidental collisions or other external forces and extending the service life of the cabinet unit. In summary, through the rational arrangement of the cabinet door 7 and the adjustment component 4, this application not only improves the usability and security of the cabinet unit but also optimizes the utilization of the internal space, achieving more efficient and stable environmental control of the server room.

[0062] like Figure 5 As shown, the cabinet device includes a switch locking assembly 5, which includes: a first locking component 51 disposed on the switch plate 2; and a second locking component 52 disposed on the sliding guide 6. The first locking component 51 and the second locking component 52 are connected or separated to lock or unlock the sliding of the switch plate 2 on the sliding guide 6.

[0063] In this application, the cabinet device includes a switch locking assembly 5, which mainly consists of a first locking component 51 and a second locking component 52. These two components are respectively mounted on the switch plate 2 and the sliding guide 6, and interact with each other in a connectable or detachable manner. This enables the locking and unlocking function of the switch plate 2 sliding on the sliding guide 6, ensuring the stability of the switch plate 2 under normal operating conditions and preventing operational errors or safety hazards caused by accidental sliding. Simultaneously, when maintenance or adjustment is required, the user can easily separate the first locking component 51 and the second locking component 52 to unlock the switch plate 2, allowing it to slide along the sliding guide 6 for convenient inspection and maintenance of the cabinet device's interior. Through this flexible switching between locking and unlocking, this application not only improves the safety of the cabinet device but also greatly facilitates its maintenance, achieving a dual optimization of operational convenience and safety.

[0064] In other embodiments, the specific structure and connection method of the switch locking assembly 5 can be adjusted according to actual needs, such as adopting a more complex mechanical structure or electronic locking system to adapt to the usage requirements in different environments. Regardless of the form adopted, the core purpose is to ensure the stability of the switch plate 2 in the non-operating state, and to enable it to be quickly and safely unlocked when needed for necessary inspection and maintenance.

[0065] like Figure 5 As shown, the first locking component 51 includes: a fixing frame 511, which is connected to the switch plate 2, and includes a fixing groove and a fixing opening connected to each other; a connecting shaft 512, which is disposed in the fixing groove through the fixing opening and whose two ends are respectively connected to two opposite groove walls of the fixing groove; a rotating frame 513, the first end of which is rotatably sleeved on the connecting shaft 512, and the second end of which is used to connect or separate from the second locking component 52; and a first elastic return member 514, which is sleeved on the connecting shaft 512 and connected to the fixing frame 511 and the rotating frame 513 respectively.

[0066] In this application, the first locking component 51 of the switch locking assembly 5 is specifically defined as including a fixing frame 511, a connecting shaft 512, a rotating frame 513, and a first elastic return member 514. The fixing frame 511 is connected to the switch plate 2 and covers a fixing groove and a fixing opening, providing support for the connecting shaft 512 and defining its range of motion. The connecting shaft 512 passes through the fixing opening and is inserted into the fixing groove, with its two ends respectively connected to two opposite groove walls of the fixing groove to ensure the stability of the connecting shaft 512. The first end of the rotating frame 513 is rotatably sleeved on the connecting shaft 512, and its second end has a second locking mechanism. The fixed component 52 has interactive capabilities, enabling real-time connection or separation; the first elastic return component 514 is sleeved on the connecting shaft 512, connecting the fixed frame 511 and the rotating frame 513. Its function is to provide return force for the movement of the rotating frame 513, ensuring that it can automatically leave the second locking component 52 after being released from the locked state. This optimizes the operation process, increases the convenience and safety of operation, and enables flexible opening and closing and stable locking of the switch plate 2 without affecting the overall structure of the control cabinet. This greatly facilitates the daily maintenance of the server room control cabinet and rapid response in emergency situations.

[0067] like Figure 5As shown, the second locking component 52 includes: two mounting brackets 521, which are spaced apart on the sliding guide 6, and each mounting bracket 521 includes a guide rod 525 that is parallel to and spaced apart from the sliding guide 6; two sliding rings 522, which are slidably sleeved on the guide rods 525 of the two mounting brackets 521; a plug-in plate 523, at least a portion of which is parallel to the sliding guide 6 and located between the two mounting brackets 521, and which is connected to the two sliding rings 522 to slide with the two sliding rings 522 for insertion or separation from the second end of the rotating frame 513; and two second elastic return members 524, which are sleeved on the guide rods 525 of the two mounting brackets 521, and each second elastic return member 524 is located between one end of the corresponding guide rod 525 and the corresponding sliding ring 522.

[0068] In this application, the second locking component 52 enhances the locking stability of the switch locking assembly 5 and enables quick assembly and disassembly between the switch plate 2 and the cabinet 1. Specifically, two mounting brackets 521 are arranged parallel and spaced apart on a sliding guide 6. Each mounting bracket 521 is equipped with a guide rod 525 to guide the smooth sliding of the sliding ring 522. The two sliding rings 522 are slidably sleeved on the corresponding guide rods 525 and connected to the plug plate 523, so that the plug plate 523 can be parallel to the sliding guide 6 and located between the two mounting brackets 521. The sliding of the sliding rings 522 drives the plug plate 523 to insert or separate from the second end of the rotating frame 513. Two second elastic return components 524 are respectively sleeved on the guide rods 525 and located between one end of the guide rods 525 and the sliding rings 522. Their function is to push the sliding rings 522 and the plug plate 523 to reset when the lock is released, so as to achieve quick unlocking. This not only simplifies the disassembly process of switch panel 2, but also improves the efficiency and convenience of cabinet maintenance. With the cooperation of the second locking component 52, switch panel 2 can be quickly opened during maintenance operations, facilitating inspection and repair of the interior of cabinet 1. In addition, the plug-in plate 523 in the locked state can effectively prevent switch panel 2 from accidentally slipping out, ensuring the safety and reliability of the server room control cabinet during operation.

[0069] like Figure 5 As shown, the second end of the rotating frame 513 is provided with a plug-in through hole 515; there is one first locking component 51 and two second locking components 52. The plug-in plates 523 of the two second locking components 52 are respectively plugged into or separated from the two ends of the plug-in through hole 515 on the rotating frame 513 of the first locking component 51.

[0070] In this application, the second end of the rotating frame 513 is provided with a plug-in through hole 515. The plug-in plates 523 of the two corresponding second locking components 52 can be plugged into or separated from the two ends of the plug-in through hole 515, respectively. This design ensures the stability and flexibility of the connection between the switch plate 2 and the sliding guide 6. By operating the plug-in plates 523, the switch plate 2 can be easily disassembled and installed, greatly improving maintenance efficiency.

[0071] like Figure 5 As shown, an auxiliary operation groove 526 is provided on the side of the plug plate 523 away from the sliding guide 6, so as to drive the plug plate 523 to move along the guide rod 525 through the auxiliary operation groove 526.

[0072] In this application, an auxiliary operation slot 526 is provided on the side of the plug-in plate 523 away from the sliding guide 6. This allows the operator to drive the plug-in plate 523 to move along the guide rod 525 more conveniently through the auxiliary operation slot 526, thereby further simplifying the disassembly and assembly process, ensuring the convenience and efficiency of the cabinet device, and enabling the control cabinet in the computer room to be opened and closed more quickly during maintenance, providing convenience for internal inspection and replacement, and also enhancing its maintainability.

[0073] like Figure 5 As shown, the first elastic return member 514 includes a torsion spring; the second elastic return member 524 includes at least one of a compression spring and a disc spring.

[0074] In this application, the selection of the first elastic return member 514 and the second elastic return member 524 expands the functionality and applicability of the cabinet device. The first elastic return member 514 employs a torsion spring, which provides a restoring force characteristic in the rotation angle to the first end of the rotating frame 513, enabling the first end of the rotating frame 513 to rotate back to its original position, enhancing the flexibility and response speed of the first locking component 51. The second elastic return member 524 employs at least one of a compression spring and a disc spring. This configuration optimizes the reset process of the second locking component 52, providing a restoring force characteristic in the sliding displacement of the plug plate 523, ensuring that the plug plate 523 resets quickly and accurately after operation, reducing maintenance time and improving work efficiency. The combined use of the first elastic return member 514 and the second elastic return member 524 not only enhances the durability and reliability of the switch locking assembly 5, but also further improves the convenience and safety of operators during maintenance and inspection, achieving the best balance in elastic return of the switch locking assembly 5, and meeting the high requirements of server room control cabinets for ease of maintenance.

[0075] Of course, depending on the specific needs of the actual application scenario, the specific type and parameters of the above-mentioned elastic element can be adjusted accordingly to achieve the optimal elastic return effect.

[0076] like Figure 5 As shown, the rotating frame 513 includes a first plate segment 516 and a second plate segment 517 that are perpendicular to each other and connected. The end of the first plate segment 516 away from the second plate segment 517 is used to be sleeved on the connecting shaft 512, and the end of the second plate segment 517 away from the first plate segment 516 is used to be inserted into or separated from the plug-in plate 523.

[0077] In this application, the rotating frame 513 is composed of a first plate segment 516 and a second plate segment 517 that are perpendicular to each other and connected. The first plate segment 516 is adapted to be sleeved on the connecting shaft 512, and the second plate segment 517 is used for insertion or separation with the plug-in plate 523. This allows the rotating frame 513 to rotate around the connecting shaft 512, thereby realizing the connection and disconnection with the plug-in plate 523. This provides a flexible disassembly and installation mechanism for the switch plate 2. Through the cooperation between the rotating frame 513 and the plug-in plate 523, the maintenance process of the switch plate 2 can be simplified, and disassembly and assembly can be completed without additional tools, improving the maintenance efficiency and convenience of the control cabinet. At the same time, this mechanical connection method ensures the stability of the switch plate 2 under normal use, avoiding equipment vibration or other safety hazards that may be caused by loose connections.

[0078] The usage process of the cabinet device in this application is as follows:

[0079] (1) Front maintenance

[0080] For the control cabinets in server rooms that have been running for a long time, the control equipment 8 inside, including the data processor, may experience natural wear and tear due to continuous high load operation, and needs to be observed and maintained from the front.

[0081] First, rotate the adjusting locking member of the adjusting assembly 4 to unlock the sliding of the slider 42 relative to the guide rail 41; then, pull the adjusting rod 43 to move it up and down as needed until the adjusting rod 43 reaches the predetermined height; then, rotate the slider locking member 44 to lock the sliding of the slider 42 relative to the guide rail 41, thereby ensuring the stability of the height of the lighting lamp 31.

[0082] Next, the adjusting locking member of the rotating adjusting assembly 4 is used to unlock the sliding of the slider 42 relative to the guide rail 41; then, the adjusting rod 43 is pulled up and down as needed until the adjusting rod 43 reaches the predetermined height; then, the slider locking member 44 is rotated to lock the sliding of the slider 42 relative to the guide rail 41, thereby ensuring the stability of the height of the lighting lamp 31.

[0083] Finally, the rotation locking member 410 of the rotation adjustment assembly 4 is used to unlock the sliding of the rotation operating rod 49 relative to the support frame 462; then, the rotation operating rod 49 is pulled to move along the arc-shaped slide groove 465 as needed until the collar 463 drives the lighting lamp 31 to rotate to a predetermined angle; then, the rotation locking member 410 is rotated to lock the sliding of the rotation operating rod 49 relative to the support frame 462, thereby ensuring the stability of the lighting angle of the lighting lamp 31.

[0084] (2) Rear maintenance

[0085] For in-depth maintenance needs, it is necessary to proceed from the back end.

[0086] The plug plate 523 of the second locking component 52 is pulled by the auxiliary operation slot 526 to separate the plug plate 523 from the rotating frame 513 of the first locking component 51. The rotating frame 513 will rotate away from the sliding guide 6 under the elastic action of the first elastic return member 514 to lock or unlock the sliding of the switch plate 2 on the sliding guide 6, thereby easily pushing the switch plate 2 to slide along the sliding guide 6 to open the second opening.

[0087] The cabinet device provided in this application has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core ideas of this application. It should be noted that those skilled in the art can make several improvements and modifications to this application without departing from the principles of this application, and these improvements and modifications also fall within the protection scope of the claims of this application.

Claims

1. A cabinet apparatus, characterized by, The application relates to a cabinet body (1) comprising a connected accommodating cavity (10) and a first opening (11); a lighting component (3) arranged in the accommodating cavity (10); and an adjusting assembly (4) arranged in the accommodating cavity (10) and located at the first opening (11), at least a part of the adjusting assembly (4) being movably arranged; wherein the moving part of the adjusting assembly (4) is connected with the lighting component (3) to adjust the position of the lighting component (3) at the first opening (11); the adjusting assembly (4) comprises a guide rail (41) extending along the height direction of the cabinet body (1) and fixedly connected with the cabinet body (1) and a sliding block (42) slidably sleeved outside the guide rail (41); an adjusting rod (43) fixedly connected with the sliding block (42); an adjusting frame (45) slidably sleeved outside the adjusting rod (43), at least a part of the lighting component (3) being mounted on the adjusting frame (45); an adjusting locking piece (47) and a friction strip (48) arranged on one side of the adjusting rod (43) close to the adjusting locking piece (47); a second threaded through hole provided on the adjusting frame (45) and threadedly connected with the adjusting locking piece (47), one end of the adjusting locking piece (47) penetrating through the second threaded through hole and used for contacting or separating from the friction strip (48) to lock or unlock the sliding of the adjusting frame (45) relative to the adjusting rod (43) by rotating the adjusting locking piece (47). The adjusting assembly (4) comprises a sliding block locking piece (44), a first threaded through hole provided on the sliding block (42) and threadedly connected with a threaded section of the sliding block locking piece (44), one end of the threaded section penetrating through the first threaded through hole and used for contacting or separating from the guide rail (41) to lock or unlock the sliding of the sliding block (42) relative to the guide rail (41) by rotating the sliding block locking piece (44). The lighting component (3) comprises a lighting lamp (31); the adjusting rod (43) extends along the width direction of the cabinet body (1); and the adjusting assembly (4) comprises an adapter frame (46) fixedly connected with the adjusting frame (45), the adapter frame (46) comprising a mounting groove (461) and a mounting opening connected with the mounting groove (461), the lighting lamp (31) being rotatably mounted in the mounting groove (461) through the mounting opening. The adapter frame (46) comprises a support frame (462) comprising the mounting groove (461) and the mounting opening; and a sleeve ring (463) sleeved outside the lighting lamp (31) and mounted in the mounting groove (461) through the mounting opening. ​ ​ ​ ​ ​ ​ 2. The cabinet apparatus of claim 1, wherein, ​ ​ 3. The cabinet apparatus of claim 1, wherein, ​ ​ 4. The cabinet apparatus of claim 3, wherein, ​ ​ ​ A rotating shaft (464) is arranged through the sleeve ring (463) and the support frame (462) to allow the sleeve ring (463) to drive the illuminating lamp (31) to rotate around the axis of the rotating shaft (464) relative to the support frame (462).

5. The cabinet apparatus of claim 4, wherein, The adapter frame (46) comprises: A rotating operation rod (49) is arranged on the support frame (462) and extends around the periphery of the rotating shaft (464) in an arc shape, the first end of the rotating operation rod (49) is located on the side of the support frame (462) away from the mounting groove (461), and the second end of the rotating operation rod (49) is connected with the sleeve ring (463) after passing through the arc-shaped sliding groove (465), so that the sleeve ring (463) is driven to rotate by driving the rotating operation rod (49) to slide along the arc-shaped sliding groove (465); A rotating locking member (410) is threadedly connected with the rotating operation rod (49) to make the rotating locking member (410) contact or separate from the support frame (462) by rotating the rotating locking member (410), so as to lock or unlock the sliding of the rotating operation rod (49) relative to the support frame (462).

6. The cabinet apparatus of claim 1, wherein, The cabinet device comprises a switch locking assembly (5), the switch locking assembly (5) comprises:

7. The cabinet apparatus of claim 6, wherein, A first locking component (51) is arranged on the switch plate (2); A second locking component (52) is arranged on the sliding guide (6); Wherein, the first locking component (51) and the second locking component (52) are connected or separated to lock or unlock the sliding of the switch plate (2) on the sliding guide (6). The first locking component (51) comprises:

8. The cabinet apparatus of claim 7, wherein, A fixing frame (511) is connected with the switch plate (2), the fixing frame (511) comprises a fixing slot and a fixing opening connected with each other; A connecting shaft (512) is arranged in the fixing slot through the fixing opening, and the two ends of the connecting shaft (512) are connected with the two slot wall surfaces arranged opposite to each other of the fixing slot, respectively; The second locking component (52) comprises: A sliding block (521) is arranged on the sliding guide (6), the sliding block (521) comprises a sliding block body and a sliding block connecting rod connected with each other, the sliding block body is arranged in the sliding guide (6), and the sliding block connecting rod is arranged in the fixing slot of the fixing frame (511) and connected with the connecting shaft (512); A rotating frame (513) is rotatably sleeved on the connecting shaft (512) at a first end, and a second end of the rotating frame (513) is used for connecting or separating with the second locking component (52); A first elastic return member (514) is sleeved on the connecting shaft (512) and connected with the fixed frame (511) and the rotating frame (513) respectively.

9. The cabinet apparatus of claim 8, wherein, The second locking component (52) comprises: Two mounting frames (521) are spaced apart on the sliding guide (6), and each mounting frame (521) comprises a guide rod (525) which is parallel to and spaced apart from the sliding guide (6); Two sliding rings (522) are respectively and slidably sleeved on the guide rods (525) of the two mounting frames (521); A plug-in plate (523) is parallel to the sliding guide (6) at least in part and located between the two mounting frames (521), and the plug-in plate (523) is connected with the two sliding rings (522) respectively to slide with the two sliding rings (522) for plugging in or separating from the second end of the rotating frame (513); Two second elastic return members (524) are respectively sleeved on the guide rods (525) of the two mounting frames (521), and each second elastic return member (524) is located between one end of the corresponding guide rod (525) and the corresponding sliding ring (522).