Rotatable monitoring equipment for machine room

By incorporating sliding and rotating mounting components, the design solves the problems of blind spots and inflexible installation in traditional computer room monitoring equipment, achieving high-precision positioning and multi-angle rotation, thereby improving the equipment's operating efficiency and security.

CN223992099UActive Publication Date: 2026-03-13武汉奔腾网络系统集成有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Traditional computer room monitoring equipment is fixed in place, resulting in a single monitoring angle and blind spots. Furthermore, the vertical tilt angle adjustment range of rotatable equipment is limited, and the rotating mechanism is easily affected by dust and cable entanglement, leading to jamming or malfunction. The installation method is inflexible, and exposed cables pose safety hazards.

Method used

The system employs sliding components, track components, and rotary mounting components. The sliding components achieve smooth sliding through the friction between pulleys and tracks, the track components provide guidance and stability, and the rotary mounting components enable multi-angle rotation and fixation through drive motors and expansion bolts, thereby improving the flexibility and stability of the equipment.

Benefits of technology

It achieves high-precision positioning and multi-angle rotation of monitoring equipment, reduces movement resistance, improves equipment operating efficiency and safety, enhances installation flexibility and service life, and meets the needs of complex working scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a rotatable monitoring device for a machine room, which relates to the technical field of monitoring devices, and comprises a monitoring assembly, a sliding assembly, a driving assembly and a control assembly, the monitoring assembly is composed of a rotating seat, an adjusting mounting seat and a spherical camera, the adjusting mounting seat is rotatably connected to the bottom of the rotating seat, and the spherical camera is rotatably connected to the adjusting mounting seat; the sliding assembly is composed of a sliding frame arranged at the top of the rotating seat and an installation support arm, the sliding frame is of a concave structure, the sliding frame and the installation support arm serve as a main body through the sliding assembly, the sliding frame is of the concave structure and can provide certain space layout, the installation support arm is located on the inner side of the sliding frame, and a pulley on the installation support arm can flexibly rotate. When external power is applied, the pulleys roll along the rails, the sliding frame stably slides on the rails by means of friction force between the pulleys and the rails, then parts connected with the sliding frame are driven to move, the sliding process is smooth due to the rotation design of the pulleys, moving resistance is reduced, and equipment operation efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of monitoring equipment technology, and in particular to a rotatable monitoring device for computer rooms. Background Technology

[0002] As the core area for data storage and equipment operation, the computer room needs to monitor the equipment operating status and environmental parameters (such as temperature, humidity, and cable connection status) in real time.

[0003] Traditional data center monitoring equipment is typically fixed in place, offering only a single monitoring angle and creating blind spots. While some rotatable monitoring devices have horizontal rotation capabilities, their vertical tilt adjustment range is limited, and the rotation mechanism is susceptible to problems such as dust and tangled cables in the data center, leading to jamming or malfunctions. Furthermore, the installation methods of existing equipment lack flexibility, and exposed cables pose safety hazards.

[0004] Therefore, this utility model proposes a rotatable monitoring device for computer rooms. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies and propose a rotatable monitoring device for computer rooms.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a rotatable monitoring device for a computer room, comprising a monitoring component, which consists of a rotating base, an adjustable mounting base, and a spherical camera. The adjustable mounting base is rotatably connected to the bottom of the rotating base, and the spherical camera is rotatably connected to the adjustable mounting base. The device also includes:

[0007] The sliding assembly consists of a sliding frame disposed on the top of the rotating seat and mounting bracket arms. The sliding frame has a concave structure, and the mounting bracket arms are disposed on the side of the sliding frame that is close to each other. Each side of the mounting bracket arms that is close to each other is rotatably connected to a pulley.

[0008] Furthermore, there are four mounting bracket arms in total, and the four mounting bracket arms are arranged in pairs on both sides of the sliding frame. Each side of the sliding frame that is far apart from the other is equipped with a micro motor, and the output end of the micro motor is connected to the pulley.

[0009] The beneficial effects of adopting the above-mentioned further solution are: two sets of mounting bracket arms are symmetrically arranged on both sides of the sliding frame, providing stable support for the whole. After the micro motor is powered on, its output end drives the pulley to rotate at high speed. The pulley contacts the track and relies on friction to realize the smooth movement of the sliding frame along the track. By controlling the start, stop and direction of the micro motor, the position of the sliding frame can be precisely adjusted.

[0010] Furthermore, the track assembly consists of a track plate and a track frame disposed between the two sets of pulleys. The track frame is disposed on the top of the track plate, and each side of the track plate that is far apart from each other has a slide rail groove. The slide frame is slidably connected to the slide rail groove by pulleys.

[0011] The beneficial effects of adopting the above-mentioned further solutions are: the design of the track assembly makes the sliding frame run more stably, the slide rail groove guides the pulley, reducing sliding offset and shaking, this structure improves the positioning accuracy of the equipment and meets the requirements of high-precision work, at the same time, the track frame enhances the load-bearing capacity of the track plate, enabling the equipment to withstand greater weight, in addition, the track-type design facilitates installation and maintenance, and improves the efficiency and lifespan of the equipment.

[0012] Furthermore, each end of the track frame that is far apart from the others is provided with a limit plate, and a rotating shaft is provided at the top center of the track frame.

[0013] The beneficial effects of adopting the above-mentioned further solutions are: the setting of the limit plate greatly improves the safety and stability of equipment operation, avoids equipment damage and safety accidents caused by the uncontrolled sliding frame, and the rotating shaft provides a stable rotation support point for the rotating installation components, enabling the equipment to achieve multi-angle rotation operation, increasing the flexibility and functionality of the equipment, and meeting the needs of more complex working scenarios.

[0014] Furthermore, a rotary mounting assembly is provided, which consists of a concave mounting frame rotatably connected to the top of a rotating shaft. A drive motor is mounted on the concave mounting frame, and the output end of the drive motor is connected to the rotating shaft.

[0015] The beneficial effects of adopting the above-mentioned further solution are: the component realizes the flexible rotation function of the concave mounting bracket, which can meet the needs of multi-angle operation and improve the applicability of the equipment. For example, in some work scenarios that require adjustment of direction, it can be quickly and accurately adjusted to the appropriate angle. At the same time, the precise control capability of the drive motor ensures the stability and accuracy of the rotation action, improves work efficiency and quality, and facilitates the operation and maintenance of the equipment.

[0016] Furthermore, expansion bolts are provided through both ends of the concave mounting bracket, and a total of six expansion bolts are provided, with the six expansion bolts arranged in groups of three to drive the motor symmetrically.

[0017] The advantages of adopting the above-mentioned further solutions are: the expansion bolts provide a reliable fixing effect, ensuring the stability of the entire rotating installation assembly during operation; the symmetrical distribution design further enhances the balance of the structure, reduces damage caused by uneven stress, and extends the service life of the equipment; at the same time, this installation method facilitates disassembly and replacement, reducing maintenance costs.

[0018] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0019] 1. In this utility model, the sliding assembly mainly consists of a sliding frame and a mounting bracket arm. The sliding frame has a concave structure, which can provide a certain spatial layout. The mounting bracket arm is located inside the sliding frame, and the pulleys on it can rotate flexibly. When external power is applied, the pulleys roll along the track. With the friction between the pulleys and the track, the sliding frame can slide smoothly on the track, thereby driving the connected components to move. The rotation design of the pulleys makes the sliding process smooth, reduces the movement resistance, and improves the operating efficiency of the equipment. At the same time, this assembly can realize the linear movement of the components and can accurately position them according to actual needs, meeting the requirements for adjusting the position of components in different working scenarios, thus improving the practicality and flexibility of the equipment. Attached Figure Description

[0020] Figure 1 This is a front view of a rotatable monitoring device for computer rooms according to the present invention.

[0021] Figure 2 This is an exploded view of a rotatable monitoring device for computer rooms according to the present invention;

[0022] Figure 3 This is a structural diagram of a rotating mounting component in a rotatable monitoring device for a computer room according to the present invention;

[0023] Figure 4 This is a structural diagram of a sliding component in a rotatable monitoring device for computer rooms according to this utility model.

[0024] Attached Figure

[0025] 1. Track assembly; 11. Track frame; 111. Limiting plate; 112. Rotating shaft; 12. Track plate; 121. Slide rail groove;

[0026] 2. Rotary mounting assembly; 21. Concave mounting bracket; 22. Drive motor; 23. Expansion bolts;

[0027] 3. Monitoring components; 31. Rotary mount; 32. Adjustable mounting base; 33. Spherical camera;

[0028] 4. Sliding assembly; 41. Sliding frame; 42. Mounting bracket arm; 43. Pulley; 44. Miniature motor. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] like Figure 1-4 As shown, this utility model provides a technical solution: a rotatable monitoring device for a computer room, including a monitoring component 3. The monitoring component 3 consists of a rotating base 31, an adjustable mounting base 32, and a spherical camera 33. The adjustable mounting base 32 is rotatably connected to the bottom of the rotating base 31, and the spherical camera 33 is rotatably connected to the adjustable mounting base 32. It also includes:

[0031] The sliding assembly 4 consists of a sliding frame 41 mounted on top of the rotating base 31 and a mounting bracket arm 42. The sliding frame 41 has a concave structure, and the mounting bracket arm 42 is located on the side of the sliding frame 41 that is close to each other. Both sides of the mounting bracket arm 42 are rotatably connected to pulleys 43. The sliding assembly 4, with the sliding frame 41 and the mounting bracket arm 42 as its main components, provides a certain spatial layout due to the concave structure of the sliding frame 41. The mounting bracket arm 42 is located inside the sliding frame 41, and the pulleys 43 on it can rotate flexibly. When external power is applied, the pulleys 43 roll along the track. The friction between the pulleys 43 and the track enables the sliding frame 41 to slide smoothly on the track, thereby driving the connected components to move. The rotational design of the pulleys 43 makes the sliding process smooth, reduces movement resistance, and improves the operating efficiency of the equipment. At the same time, this assembly can realize the linear movement of the components and can accurately position them according to actual needs, meeting the requirements for adjusting the position of components in different working scenarios, thus improving the practicality and flexibility of the equipment.

[0032] There are four mounting bracket arms 42 in total, and the four mounting bracket arms 42 are arranged in pairs on both sides of the sliding frame 41. A micro motor 44 is provided on the side of the sliding frame 41 that is far apart from each other. The output end of the micro motor 44 is connected to the pulley 43. The two sets of mounting bracket arms 42 are symmetrically arranged on both sides of the sliding frame 41 to provide stable support for the whole. After the micro motor 44 is powered on, its output end drives the pulley 43 to rotate at high speed. The pulley 43 contacts the track and relies on friction to realize the smooth movement of the sliding frame 41 along the track. By controlling the start, stop and direction of the micro motor 44, the position of the sliding frame 41 can be precisely adjusted.

[0033] Track assembly 1 consists of a track plate 12 disposed between two sets of pulleys 43 and a track frame 11. The track frame 11 is located on top of the track plate 12. Each side of the track plate 12, which is far apart from the others, has a slide rail groove 121. A sliding frame 41 is slidably connected to the slide rail groove 121 via pulleys 43. Track assembly 1 comprises the track frame 11 and the track plate 12. The track frame 11 provides support for the track plate 12. The pulleys 43 roll within the slide rail groove 121, allowing the sliding frame 41 to move along the track plate 12. When the micro motor 44 drives... When the movable pulley 43 rotates, the pulley 43 generates friction with the inner wall of the slide rail groove 121, driving the sliding frame 41 to slide smoothly on the track. The design of the track assembly 1 makes the sliding frame 41 run more stably. The slide rail groove 121 guides the pulley 43, reducing sliding deviation and shaking. This structure improves the positioning accuracy of the equipment and meets the requirements of high-precision work. At the same time, the track frame 11 enhances the load-bearing capacity of the track plate 12, enabling the equipment to withstand greater weight. In addition, the track-type design facilitates installation and maintenance, improving the efficiency and lifespan of the equipment.

[0034] Each end of the track frame 11 is equipped with a limit plate 111. A rotating shaft 112 is located at the center of the top of the track frame 11. The limit plates 111 are installed at the ends of the track frame 11. When the sliding frame 41 slides to the end of the track, the limit plate 111 will block the pulley 43 from continuing to move, preventing the sliding frame 41 from derailing and ensuring the safe operation of the equipment. The rotating shaft 112 at the center of the top of the track frame 11 is connected to the rotating mounting assembly 2. The drive motor 22 drives the rotating shaft 112 to rotate, which in turn drives the concave mounting frame 21 connected to it to rotate, realizing the rotation function of the equipment. The setting of the limit plate 111 greatly improves the safety and stability of the equipment operation, avoiding equipment damage and safety accidents caused by the uncontrolled sliding frame 41. The rotating shaft 112 provides a stable rotation support point for the rotating mounting assembly 2, enabling the equipment to achieve multi-angle rotation operation, increasing the flexibility and functionality of the equipment, and meeting the needs of more complex working scenarios.

[0035] The rotary mounting assembly 2 consists of a concave mounting bracket 21 rotatably connected to the top of the rotating shaft 112. A drive motor 22 is mounted on the concave mounting bracket 21, and the output end of the drive motor 22 is connected to the rotating shaft 112. When the drive motor 22 is energized, its output end drives the rotating shaft 112 to rotate, causing the concave mounting bracket 21 to rotate around the rotating shaft 112. By controlling the speed, direction, and running time of the drive motor 22, the rotation state of the concave mounting bracket 21 can be precisely controlled. This assembly enables flexible rotation of the concave mounting bracket 21, meeting multi-angle operation requirements and expanding the equipment's applicability. For example, in work scenarios requiring direction adjustment, it can quickly and accurately adjust to a suitable angle. Simultaneously, the precise control capability of the drive motor 22 ensures the stability and accuracy of the rotational action, improving work efficiency and quality, and facilitating equipment operation and maintenance.

[0036] Expansion bolts 23 are installed through both ends of the concave mounting bracket 21. There are six expansion bolts 23 in total, and they are arranged in groups of three, symmetrically with respect to the drive motor 22. When the bolts are tightened, the expansion tubes at the ends of the bolts expand within the hole wall, generating friction with the mounting surface, thus firmly fixing the concave mounting bracket 21. The three expansion bolts 23 in each group, symmetrically distributed with respect to the drive motor 22, can evenly distribute the force borne by the concave mounting bracket 21. When the drive motor 22 operates and drives the rotating shaft 112 to rotate, causing the concave mounting bracket 21 to rotate, this symmetrically distributed expansion bolts 23 can stably support the concave mounting bracket 21, ensuring that it does not loosen during rotation. The expansion bolts 23 provide a reliable fixing effect, ensuring the stability of the entire rotating mounting assembly 2 during operation. The symmetrical distribution design further enhances the balance of the structure, reduces damage caused by uneven force, and extends the service life of the equipment. At the same time, this installation method facilitates disassembly and replacement, reducing maintenance costs.

[0037] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A rotatable monitoring device for machine room, comprising a monitoring assembly (3), the monitoring assembly (3) is composed of a rotating seat (31), an adjusting mounting seat (32) and a spherical camera (33), the adjusting mounting seat (32) is rotationally connected at the bottom of the rotating seat (31), and the spherical camera (33) is rotationally connected on the adjusting mounting seat (32), characterized in that, Also includes: The sliding assembly (4) is composed of a sliding frame (41) arranged at the top of the rotating seat (31) and a mounting bracket arm (42), the sliding frame (41) is a concave structure, the mounting bracket arm (42) is arranged on the side of the sliding frame (41) close to each other, and the side close to each other of the mounting bracket arm (42) is rotationally connected with a pulley (43).

2. The rotatable monitoring device for a machine room according to claim 1, wherein: The mounting bracket arm (42) is provided with four, and the four mounting bracket arms (42) are arranged in two groups on the two sides of the sliding frame (41), and the side away from each other of the sliding frame (41) is provided with a micro motor (44), and the output end of the micro motor (44) is connected with the pulley (43).

3. The rotatable monitoring device for a machine room according to claim 1, wherein: The track assembly (1) is composed of a track plate (12) arranged between the two groups of pulleys (43) and a track frame (11), the track frame (11) is arranged at the top of the track plate (12), the side away from each other of the track plate (12) is provided with a sliding groove (121), and the sliding frame (41) is connected with the pulley (43) on the sliding groove (121) through the pulley (43).

4. The rotatable monitoring device for a machine room according to claim 3, wherein: The track frame (11) is provided with a limiting plate (111) at the end away from each other, and the top center of the track frame (11) is provided with a rotating shaft (112).

5. The rotatable monitoring device for a machine room according to claim 1, wherein: The rotating installation assembly (2) is composed of a concave mounting frame (21) rotationally connected at the top of the rotating shaft (112), the concave mounting frame (21) is provided with a driving motor (22), and the output end of the driving motor (22) is connected with the rotating shaft (112).

6. The rotatable monitoring device for a machine room according to claim 5, wherein: The two ends of the concave mounting frame (21) are provided with expansion bolts (23), the expansion bolts (23) are provided with six, and the three expansion bolts (23) are symmetrically arranged with the driving motor (22).