Mobile integrated cable testing cabinet

CN224708160UActive Publication Date: 2026-09-01SHANGHAI GESI INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202522239190.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-09-01
Estimated Expiration
2035-10-22

AI Technical Summary

Technical Problem

[0002]现有电缆测试设备存在测试机与计算机只具备固定区域桌面测试,测试方式单一、操作不便、无相对合为一体匹配机柜,无法移动,导致星上电缆不具备可测试条件,测试过程不集中,测试一次转接线缆管理混乱,二次转接电缆长度无法匹配,部分电缆无法测试,测试困难等现象;因此现有市场测试机柜无一次、二次转接工装,机柜结构不合理

Benefits of technology

[0037] 1. It is easy to move and can flexibly transfer test scenarios, adapting to the test needs of multiple scenarios such as satellite cables, and solving the limitations of fixed testing;

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a movable integrated cable testing cabinet, relating to the field of cable production technology. It includes a cabinet body, within which are integrated: a basic support component providing overall structural support and a stable foundation for the installation and layout of various devices; a heat dissipation component, mounted on the basic support component, enabling air circulation within the cabinet and regulating heat dissipation efficiency to ensure stable equipment operation; an operation display component, mounted on the basic support component, providing a human-machine interface and display functions to assist in testing operations; an electrical connection component, located inside the basic support component, supplying power to the devices within the cabinet and providing safety protection, enabling data transmission between devices, and adapting to the needs of adding or removing equipment; and a dedicated testing component, mounted on the cabinet body, connecting the testing machine to the cable under test and standardizing cable routing. This cable testing cabinet features a convenient, integrated design, ease of movement, and convenient testing capabilities, and can be widely applied in cable testing scenarios.
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Description

Technical Field

[0001] This utility model relates to the field of cable production technology, specifically to a movable integrated cable testing cabinet. Background Technology

[0002] Existing cable testing equipment suffers from several drawbacks. The testing machines and computers are limited to fixed desktop testing areas, resulting in limited testing methods, inconvenient operation, and a lack of integrated, matching cabinets. This immobility leads to unsuitable testing conditions for satellite cables, a fragmented testing process, chaotic management of primary transfer cables, mismatched secondary transfer cable lengths, and the inability to test some cables, making testing difficult. Consequently, existing market testing cabinets lack primary and secondary transfer fixtures, and their structures are often unreasonable.

[0003] Specifically, this manifests as insufficient heat dissipation: The cabinet integrates testing equipment, computers, monitors, power modules, and other devices, generating significant heat during operation. Inadequate heat dissipation design (such as poorly positioned vents or insufficient cooling fan power) can easily lead to excessively high cabinet temperatures, affecting not only the stability and accuracy of the testing equipment but also potentially shortening its lifespan or even causing malfunctions.

[0004] Disorganized cable management: Cable testing requires connecting multiple cables of different types (power cords, test adapters, data transmission cables) and lengths. The existing cabinets lack a dedicated cable management structure, and cables are piled up or tangled at will, which not only takes up space in the cabinet, but also leads to wiring errors, signal interference, and is time-consuming and laborious when troubleshooting or replacing cables later.

[0005] Low space utilization: Some cabinets have unreasonable internal layout design, fixed instrument installation positions or lack of flexible adjustment mechanisms, making it impossible to optimize space allocation according to different testing needs (such as the placement of instruments of different specifications, and the simultaneous execution of multiple sets of tests), resulting in wasted cabinet space, or the crowded placement of instruments affecting operation and maintenance.

[0006] Poor ease of operation: The cabinet door design, control panel height or angle are unreasonable, which may restrict the movement of testers when plugging and unplugging cables and adjusting instrument parameters; some cabinets lack user-friendly auxiliary structures (such as lighting devices, drawer-type trays), which is extremely inconvenient when the light is dim or when temporary tool placement is required.

[0007] Weak compatibility and scalability: As testing requirements upgrade, it may be necessary to add or replace different models of test adapter cable fixtures. However, the size, interface layout, or load-bearing capacity of the existing cabinets are fixed, making it difficult to adapt to new equipment or secondary adapter cable fixtures. Furthermore, the lack of reserved expansion slots such as interfaces and power sockets makes it impossible to integrate new equipment smoothly, requiring the replacement of the entire cabinet and increasing costs.

[0008] Insufficient protection: In some complex environments (such as factory workshops and temporary outdoor test sites), if the cabinet lacks dustproof, moisture-proof and electromagnetic interference protection design, external pollutants or electromagnetic signals may enter the cabinet, affecting the accuracy of test data and even damaging the equipment. Utility Model Content

[0009] To address the shortcomings of existing technologies, this utility model provides a movable integrated cable testing cabinet.

[0010] According to the present invention, a movable integrated cable testing cabinet is provided, the solution of which is as follows:

[0011] A movable integrated cable testing cabinet includes a cabinet body, which integrates a basic support component, a heat dissipation component, an operation display component, an electrical connection component, and a testing-specific component. The components work together to achieve cable testing.

[0012] The aforementioned basic support components provide overall structural support, providing a stable foundation for the installation and layout of each device;

[0013] The heat dissipation component is installed on the basic support component to realize air circulation inside the cabinet, adjust heat dissipation efficiency, and ensure stable operation of the equipment.

[0014] The operation display component is mounted on the basic support component, providing a human-computer interaction interface and display functions to assist in test operations;

[0015] The electrical connection component is located inside the basic support component, which supplies power to the equipment in the cabinet and provides safety protection, enables data transmission between devices, and adapts to the needs of adding or removing equipment.

[0016] The dedicated testing component is installed on the cabinet, connecting the testing machine and the cable to be tested, and standardizing the cable routing.

[0017] Preferably, the basic support components include: a cabinet frame, side panels, a back panel, movable support components, and adjustable space components;

[0018] The cabinet frame provides overall structural support for the cabinet, the movable support is set at the bottom of the cabinet to realize the movement and fixation of the cabinet, and the adjustable space component is used to optimize the allocation of space inside the cabinet.

[0019] Preferably, the movable support includes multiple casters and fixed feet corresponding to each caster; the casters are fixed to the bottom of the cabinet frame by bolts, and the fixed feet can be adjusted in height in the vertical direction to fix the cabinet.

[0020] The adjustable space component includes a multi-layer adjustable height equipment mounting tray and a foldable drawer operating platform. The height of the equipment mounting tray is adjusted by a fixing device, and the drawer operating platform is located on the side of the cabinet.

[0021] Preferably, the heat dissipation component includes a ventilation structure, a temperature-controlled heat dissipation device, and a local heat dissipation structure; the ventilation structure is opened on the side panel and back panel of the cabinet to achieve air circulation, and the temperature-controlled heat dissipation device works in conjunction with the local heat dissipation structure to adjust the heat dissipation efficiency according to the temperature inside the cabinet and the heat generated by key components.

[0022] Preferably, the ventilation structure is an adjustable dustproof ventilation opening located at the top of the rear panel and the bottom of the side panel;

[0023] The temperature control and heat dissipation device includes multiple cooling fans and a temperature control system. The cooling fans are electrically connected to the temperature control system, and the temperature control system adjusts the fan speed according to the temperature inside the cabinet.

[0024] The local heat dissipation structure is an independent heat dissipation vent set for high-power, high-heat-generating components, and the outer side of the cooling fan is covered with a metal protective mesh cover.

[0025] Preferably, the operation display component includes a human-computer interaction panel and a display device; the human-computer interaction panel adopts an ergonomic design to adapt to operating habits.

[0026] Preferably, the human-computer interaction panel is located in an easily accessible position on the front of the cabinet and is designed with an inclined angle;

[0027] The display device includes a display and a fixed panel. The fixed panel is fixedly connected to the cabinet frame, and the display is embedded in the fixed panel with the display surface facing the operation direction.

[0028] The drawer operating platform is slidably connected to the cabinet via guide rails and can extend or retract into the cabinet along the guide rails.

[0029] Preferably, the electrical connection assembly includes a power supply module, a data transmission module, and an expansion interface unit;

[0030] The power supply module provides power to the equipment inside the cabinet and has safety protection functions;

[0031] The data transmission module includes a computer and a data interface, and the computer is connected and communicates with the test machine through the data interface.

[0032] The expansion interface unit reserves a standard interface to adapt to the needs of adding or removing equipment;

[0033] Preferably, the test-specific component includes an adapter and a cable management component. The adapter is installed inside the cabinet to connect the tester to the cable to be tested, and the cable management component regulates the cable routing inside the cabinet.

[0034] Preferably, the adapter fixture includes multiple primary adapter fixture connectors, which are fixed to the cable testing platform and electrically connected to the testing machine and the data transmission module, respectively.

[0035] The cable management component includes a vertical cable tray, an adjustable cable holder, a rubber sealing brush, and a cable fixing seat. The vertical cable tray is installed on the inner walls of both sides of the cabinet and has a partition plate inside. The adjustable cable holder is connected to the side panel of the cabinet, and the rubber sealing brush and the cable fixing seat are located at the cable inlet and outlet.

[0036] Compared with the prior art, the present invention has the following beneficial effects:

[0037] 1. It is easy to move and can flexibly transfer test scenarios, adapting to the test needs of multiple scenarios such as satellite cables, and solving the limitations of fixed testing;

[0038] 2. Highly efficient heat dissipation, with precise control of heat dissipation efficiency to avoid equipment failure due to high temperature, ensuring testing accuracy and equipment lifespan;

[0039] 3. Cables are kept in an orderly manner, and cable management is standardized to reduce tangling, loose connections, and signal interference, thereby reducing the difficulty of troubleshooting;

[0040] 4. Space optimization: Modular design and adjustable components improve space utilization and adapt to different equipment specifications and multiple testing requirements;

[0041] 5. Highly efficient operation; ergonomic design and convenient structure reduce operational difficulty and improve the smoothness of the testing process.

[0042] 6. Flexible expansion, with reserved standard interfaces and expansion space to adapt to equipment upgrades and new requirements, reducing replacement costs;

[0043] 7. Reliable protection, dustproof and moisture-proof design, and electrical protection design ensure accurate test data and equipment safety in complex environments.

[0044] Other beneficial effects of this utility model will be explained in detail through the introduction of specific technical features and technical solutions in the specific embodiments. Those skilled in the art should be able to understand the beneficial technical effects brought about by the technical features and technical solutions through the introduction of these technical features and technical solutions. Attached Figure Description

[0045] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0046] Figure 1 This is a schematic diagram of the cable testing cabinet structure;

[0047] Figure 2 This is an overall diagram of the cable testing cabinet.

[0048] Reference numerals: 1. Cabinet frame; 2. Side panel; 3. Rear panel; 4. Casters; 5. Equipment mounting tray; 6. Drawer operating platform; 61. Keyboard and mouse platform; 62. Cable testing platform; 7. Dustproof ventilation opening; 8. Temperature control and heat dissipation device; 9. Metal protective mesh cover; 10. Monitor; 11. Fixture panel; 12. Power supply module; 13. Data transmission module; 14. USB connector; 15. RJ45 network connector; 16. Adapter fixture; 17. Testing machine; 18. Cable management component; 19. Testing auxiliary component; 20. Velcro. Detailed Implementation

[0049] The present invention will now be described in detail with reference to specific embodiments. These embodiments will help those skilled in the art to further understand the present invention, but do not limit the present invention in any way. It should be noted that those skilled in the art can make several changes and improvements without departing from the concept of the present invention. These all fall within the protection scope of the present invention.

[0050] This utility model provides a movable integrated cable testing cabinet. By optimizing the structural design and functional configuration, it solves the problems existing in current cabinets regarding heat dissipation, cable management, space utilization, ease of operation, compatibility, and protection. (Refer to...) Figure 1 As shown, the test cabinet specifically includes a cabinet body, which integrates basic support components, heat dissipation components, operation display components, electrical connection components, and test-specific components. These components work together to achieve mobility, integration, and stability for cable testing. The cabinet shell is made of aluminum alloy with rust-proof and corrosion-proof treatment. The cabinet doors are double-opening, and both the side doors and the rear panel are equipped with locks and safety devices. A dustproof panel is also installed inside the cabinet to enhance dust protection.

[0051] The basic support components provide overall structural support, offering a stable foundation for the installation and layout of each device. These include a cabinet frame 1, side panels 2, a back panel 3, movable support components, and adjustable space components. The cabinet frame 1 provides overall structural support for the cabinet. The movable support components are located at the bottom of the cabinet to allow for cabinet movement and fixation. The adjustable space components optimize the internal space allocation. Within the basic support components, the movable support components include four DX-60F casters 4 and corresponding fixed feet. The DX-60F casters 4 are fixed to the bottom of the cabinet frame 1 with bolts. The fixed feet can be adjusted vertically to secure the cabinet. The adjustable space components include multi-layer adjustable-height equipment mounting trays 5 and foldable drawer operating platforms 6. The equipment mounting trays 5 are height-adjustable via fixing devices, and the drawer operating platforms 6 are located on the side of the cabinet.

[0052] The heat dissipation assembly, mounted on the basic support assembly, enables air circulation within the cabinet and regulates heat dissipation efficiency to ensure stable equipment operation. It includes a ventilation structure, a temperature-controlled heat dissipation device 8, and a localized heat dissipation structure. The ventilation structure is located on the side panel 2 and back panel 3 of the cabinet to facilitate air circulation. The temperature-controlled heat dissipation device 8 works in conjunction with the localized heat dissipation structure to adjust heat dissipation efficiency based on the cabinet temperature and the heat generated by key components. Within the heat dissipation assembly, the ventilation structure consists of adjustable dustproof vents 7 located at the top of the back panel 3 and the bottom of the side panel 2. The temperature-controlled heat dissipation device 8 includes four 12V silent cooling fans and a temperature control system. The 12V silent cooling fans are electrically connected to the temperature control system, which adjusts the fan speed according to the cabinet temperature. The localized heat dissipation structure consists of independent heat dissipation vents located at the positions corresponding to the power module and power supply module 12 of the testing machine. The 12V silent cooling fans are covered with metal protective mesh covers 9.

[0053] The operation display component, mounted on the basic support component, provides a human-machine interface and display functions to assist in testing operations. It includes a human-machine interface panel, a display device, and a drawer operation platform 6. The human-machine interface panel is ergonomically designed to suit operating habits, and the drawer operation platform 6 can be flexibly extended or retracted. In the operation display component, the human-machine interface panel is located in an easily accessible position on the front of the cabinet and is designed with an inclined angle. The display device includes a 19-inch industrial monitor 10 and a monitor mounting panel 11. The monitor mounting panel 11 is fixedly connected to the cabinet frame 1, and the 19-inch industrial monitor 10 is embedded in the monitor mounting panel 11 with its display surface facing the operating direction. The drawer operation platform 6 includes a keyboard and mouse platform 61 and a cable testing platform 62. The keyboard and mouse platform 61 and the cable testing platform 62 are slidably connected to the cabinet via four guide rails and can extend or retract into the cabinet along the guide rails.

[0054] The electrical connection components, located inside the basic support components, provide power and safety protection for the equipment inside the cabinet, enable data transmission between devices, and adapt to the needs of adding or removing equipment. They include a power supply module 12, a data transmission module 13, and an expansion interface unit. The power supply module 12 provides stable power to the equipment inside the cabinet and has safety protection functions. The expansion interface unit has reserved standard interfaces to adapt to the needs of adding or removing equipment. In the electrical connection components, the power supply module 12 includes one switching power supply and one PDU cabinet power strip. The switching power supply is equipped with overvoltage, overcurrent, and leakage protection devices. The PDU cabinet power strip is fixed to the cabinet side panel 2, and its input terminal is electrically connected to the switching power supply. The data transmission module 13 includes one computer and a data interface. The computer communicates with the test machine 17 through the data interface. The expansion interface unit includes four USB connectors 14 and two RJ45 network connectors 15. Both the USB connectors 14 and the RJ45 network connectors 15 are standard interfaces. Each module is detachably connected to the cabinet frame 1.

[0055] Furthermore, referring to Figure 2 As shown, the cabinet dimensions are 1400mm×800mm×650mm, the overall weight of the cabinet is ≈110KG, the load-bearing capacity is ≥300KG, the input voltage of the power supply module 12 is 220V, and the total power of the cabinet is ≤2500W.

[0056] The testing components include an adapter fixture 16, a cable management component 18, and a testing auxiliary component 19. The adapter fixture 16 connects the testing machine 17 to the cable under test, and the cable management component 18 is used to standardize the cable routing. The adapter fixture 16 includes 16 primary adapter connectors, which are fixed to the cable testing platform 62 and electrically connected to the testing machine 17 and the data transmission module 13, respectively. The cable management component 18 includes a vertical cable trough, an adjustable cable holder, a rubber sealing brush, and a cable fixing seat. The vertical cable trough is installed on the inner walls of both sides of the cabinet and has internal partitions. The adjustable cable holder is connected to the side panel 2 of the cabinet. The rubber sealing brush and the cable fixing seat are located at the cable inlet and outlet. The testing auxiliary component 19 includes 32 test clamps with insulating posts, which are arranged in an array along the edge of the cable testing platform 62. The insulating posts for placing the test clamps are made of polytetrafluoroethylene and are 3-5cm high. The cabinet is also equipped with four Velcro fasteners 20, which are fixed to both sides of the equipment mounting tray 5 to secure cables for the test instruments or computers.

[0057] Specifically, the present invention will be further described in detail in terms of its effects.

[0058] This utility model provides a movable integrated cable testing cabinet with optimized heat dissipation structure:

[0059] Large ventilation openings are provided at the top of the back panel 3 and the bottom of the side panel 2 of the cabinet, and the ventilation openings are equipped with adjustable dustproofs, so that the ventilation volume can be flexibly adjusted according to the temperature inside the cabinet and the heat generated by the test equipment.

[0060] Equipped with a temperature-controlled cooling system, it has four built-in 24V high-power cooling fans. When the rack is working, it provides seamless heat dissipation by automatically starting the high-power cooling fans, and the fan speed can also be intelligently adjusted according to temperature changes.

[0061] Independent heat dissipation vents are installed near key heat-generating components inside the cabinet (such as power modules and power supplies for testing instruments) to quickly dissipate heat and enhance local heat dissipation.

[0062] Regarding the cable management system: vertical cable trays are installed on the inner walls of both sides of the cabinet. Multiple partitions are installed inside the cable trays to classify and organize different types of cables and prevent them from getting tangled.

[0063] The design incorporates an adjustable cable management bracket, which is connected to the side panel 2 of the cabinet. This bracket allows for flexible movement and securing of cables based on their access locations, ensuring a neat and orderly cable routing.

[0064] Rubber sealing brushes and cable fixing seats are installed at the cable inlet and outlet to prevent dust and debris from entering, and to fix the cable and reduce the loosening of the interface caused by cable shaking.

[0065] In terms of space utilization and layout: a modular design concept is adopted, and the cabinet is composed of multiple pluggable functional modules, such as test instrument installation modules, power supply modules, data processing modules, etc., which can be flexibly combined and replaced according to different testing needs.

[0066] The multi-layer adjustable height equipment mounting tray 5 is equipped with an adjustable fixing device to adjust the height, which facilitates the placement of testing instruments and equipment of different sizes and improves space utilization.

[0067] The cabinet is equipped with casters and fixed feet at the bottom for easy movement and fixation; at the same time, the side of the cabinet is designed with a foldable drawer operating platform 6, which can be unfolded when needed to increase operating space and folded up when not in use to save space.

[0068] To enhance ease of operation: the control panel is positioned on the front of the cabinet in an easily accessible location, featuring an angled design and ergonomic features to suit the operating habits of testers; operation buttons and a display screen facilitate parameter setting and test status monitoring. The cabinet doors are designed as double doors, with three doors (side door and rear panel) equipped with locks and safety devices to prevent accidental opening or misoperation.

[0069] Regarding enhanced compatibility and scalability: Multiple standard-sized equipment mounting positions and interfaces are reserved, including power interfaces, data interfaces, and network interfaces, facilitating the addition or replacement of test instruments. The interface layout is also reasonable, simplifying connection and cabling. The internal frame structure of the cabinet uses high-strength, lightweight materials, such as aluminum alloy profiles, ensuring both load-bearing capacity and ease of installation and disassembly. Furthermore, expansion space is reserved at the top of the cabinet, allowing for functional upgrades through the addition of expansion modules.

[0070] In terms of enhanced protection, the cabinet shell is made of high-quality aluminum alloy with rust and corrosion resistant treatment; the cabinet doors and ventilation openings are effectively dustproof and moisture-proof. The power module is equipped with overvoltage, overcurrent, and leakage protection devices, which can promptly cut off the power supply in the event of an electrical fault, protecting the test equipment and personnel safety.

[0071] This utility model provides a movable integrated cable testing cabinet, which realizes cable testing function by connecting with a testing machine and a computer. The cable testing cabinet is easy to move and convenient to test, and can be widely used in cable testing scenarios.

[0072] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application 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. Therefore, they should not be construed as limitations on this application.

[0073] The specific embodiments of this utility model have been described above. It should be understood that this utility model is not limited to the specific embodiments described above, and those skilled in the art can make various changes or modifications within the scope of the claims, which do not affect the substantive content of this utility model. Unless otherwise specified, the embodiments and features described in this application can be arbitrarily combined with each other.

Claims

1. A movable integrated cable testing cabinet, characterized in that, The cabinet includes a basic support component, a heat dissipation component, an operation display component, an electrical connection component, and a dedicated testing component, all of which work together to perform cable testing. The aforementioned basic support components provide overall structural support, providing a stable foundation for the installation and layout of each device; The heat dissipation component is installed on the basic support component to realize air circulation inside the cabinet, adjust heat dissipation efficiency, and ensure stable operation of the equipment. The operation display component is mounted on the basic support component, providing a human-computer interaction interface and display functions to assist in test operations; The electrical connection component is located inside the basic support component, which supplies power to the equipment in the cabinet and provides safety protection, enables data transmission between devices, and adapts to the needs of adding or removing equipment. The dedicated testing component is installed on the cabinet, connecting the testing machine and the cable to be tested, and standardizing the cable routing.

2. The movable integrated cable testing cabinet according to claim 1, characterized in that, The basic support components include: cabinet frame (1), side panel (2), back panel (3), movable support components and adjustable space components; The cabinet frame (1) provides overall structural support for the cabinet. The movable support is set at the bottom of the cabinet to realize the movement and fixation of the cabinet. The adjustable space component is used to optimize the allocation of space inside the cabinet.

3. The movable integrated cable testing cabinet according to claim 2, characterized in that, The movable support includes multiple casters (4) and fixed feet corresponding to each caster (4); the casters (4) are fixed to the bottom of the cabinet frame (1) by bolts, and the fixed feet can be adjusted in height in the vertical direction to fix the cabinet. The adjustable space component includes a multi-layer adjustable height equipment mounting tray (5) and a foldable drawer operating platform (6). The height of the equipment mounting tray (5) is adjusted by a fixing device, and the drawer operating platform (6) is located on the side of the cabinet.

4. The movable integrated cable testing cabinet according to claim 2, characterized in that, The heat dissipation component includes a ventilation structure, a temperature-controlled heat dissipation device (8), and a local heat dissipation structure. The ventilation structure is located on the side panel (2) and back panel (3) of the cabinet to achieve air circulation. The temperature-controlled heat dissipation device (8) works in conjunction with the local heat dissipation structure to adjust the heat dissipation efficiency according to the temperature inside the cabinet and the heat generated by key components.

5. The movable integrated cable testing cabinet according to claim 4, characterized in that, The ventilation structure is a ventilation opening (7) at the top of the rear panel (3) and the bottom of the side panel (2); The temperature control and heat dissipation device (8) includes multiple cooling fans and a temperature control system. The cooling fans are electrically connected to the temperature control system, and the temperature control system adjusts the fan speed according to the temperature inside the cabinet. The local heat dissipation structure is an independent heat dissipation vent set for high-power, high-heat-generating components, and the outer side of the cooling fan is covered with a metal protective mesh cover (9).

6. The movable integrated cable testing cabinet according to claim 3, characterized in that, The operation display component includes a human-computer interaction panel and a display device; the human-computer interaction panel adopts an ergonomic design to adapt to operating habits.

7. The movable integrated cable testing cabinet according to claim 6, characterized in that, The human-computer interaction panel is located in an easily accessible position on the front of the cabinet and is designed with an inclined angle. The display device includes a display (10) and a fixed panel (11). The fixed panel (11) is fixedly connected to the cabinet frame (1). The display (10) is embedded in the fixed panel (11) and the display surface faces the operation direction. The drawer operating platform (6) is slidably connected to the cabinet via guide rails and can extend or retract into the cabinet along the guide rails.

8. The movable integrated cable testing cabinet according to claim 1, characterized in that, The electrical connection components include a power supply module (12), a data transmission module (13), and an expansion interface unit; The power supply module (12) provides power to the equipment inside the cabinet and has safety protection functions; The data transmission module (13) includes a computer and a data interface, and the computer is connected and communicates with the test machine (17) through the data interface; The expansion interface unit reserves a standard interface to adapt to the needs of adding or removing equipment.

9. The movable integrated cable testing cabinet according to claim 1, characterized in that, The test-specific component includes an adapter (16) and a cable management component (18). The adapter (16) is installed in the cabinet to connect the test machine (17) to the cable to be tested. The cable management component (18) is installed in the cabinet to regulate the cable routing.

10. The movable integrated cable testing cabinet according to claim 9, characterized in that, The adapter (16) includes multiple primary adapter connectors, which are fixed to the cable testing platform (62) and electrically connected to the testing machine (17) and the data transmission module (13) respectively. The cable management component (18) includes a vertical cable trough, an adjustable cable fixing bracket, a rubber sealing brush, and a cable fixing seat. The vertical cable trough is installed on the inner walls of both sides of the cabinet and has a partition plate inside. The adjustable cable fixing bracket is connected to the side plate (2) of the cabinet, and the rubber sealing brush and the cable fixing seat are located at the cable inlet and outlet.