Machine room environment monitoring device

By using a motor-driven gear to move the support plate and mobile compartment, which carries an infrared temperature sensor and a camera, the problem of not being able to monitor a single server in existing technologies is solved. This enables comprehensive monitoring and range expansion, improving the efficiency and versatility of the monitoring device.

CN223985777UActive Publication Date: 2026-03-10BEIJING TAIJI HUABAO HIGH-TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing monitoring devices can only measure the temperature inside the computer room and cannot monitor individual servers. Furthermore, the fixed installation locations of the cameras create blind spots, reducing the effectiveness of monitoring.

Method used

A data center environment monitoring device was designed. The device uses a motor-driven gear to move a support plate and a mobile compartment, carrying an infrared temperature sensor and a camera to monitor a single server. The number of fixed blocks can be increased by splicing them together to expand the monitoring range.

Benefits of technology

It enables comprehensive monitoring of a single server, improving monitoring effectiveness and installation efficiency, expanding the monitoring range, and reducing power consumption.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223985777U_ABST
    Figure CN223985777U_ABST
Patent Text Reader

Abstract

The utility model discloses a machine room environment monitoring device, which relates to the technical field of machine room monitoring and comprises a plurality of third mounting frames, a third fixing block and a fourth fixing block are respectively arranged on the third mounting frames, and a supporting plate is movably arranged between the third fixing block and the fourth fixing block. A first mounting frame and a storage battery are arranged on the upper wall surface of the supporting plate, a motor is arranged on the first mounting frame, the motor is electrically connected with the supporting plate, a moving bin is arranged on the lower wall surface of the supporting plate, a gear is rotationally arranged at the driving end of the motor, a guide block is arranged on the moving bin, and the guide block is connected with the storage battery. According to the design, the driving motor rotates, the gear is driven to rotate, the mounting block is driven to move, then the infrared temperature sensor and the camera are made to move, the infrared temperature sensor and the camera are made to sequentially pass through the servers in the server unit, the single server can be monitored, and the monitoring effect of the monitoring device is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to machine room monitoring technical field, concretely is a machine room environment monitoring device. BACKGROUND

[0002] In IT industry, machine room generally refers to the place that telecom, net, mobile, double line, power and government or enterprise etc. store server, provide IT service for user and staff, and machine room is internet data center, namely IDC, and telecom department utilizes existing internet communication line, bandwidth resource, establishes standardization telecom professional grade machine room environment, provides server hosting, rent and related value added etc. full range of service for enterprise, government, and the environment of machine room needs to be monitored by staff during use, and the running state of server is checked through monitoring camera and temperature sensor, at present, the existing monitoring device can only measure the temperature in the machine room when in use, cannot monitor single server, and the installation position of camera is fixed, there will be monitoring dead angle when monitoring server unit, and the whole server cannot be monitored in all directions, thereby the monitoring effect of monitoring device is reduced. UTILITARIAN CONTENT

[0003] In view of the defects of prior art, the utility model provides a machine room environment monitoring device, solves the problems that the existing monitoring device can only measure the temperature in the machine room when in use, cannot monitor single server, and the installation position of camera is fixed, there will be monitoring dead angle when monitoring server unit, and the whole server cannot be monitored in all directions, thereby the monitoring effect of monitoring device is reduced.

[0004] In order to achieve the above object, the utility model is realized through the following technical scheme: a machine room environment monitoring device, including a plurality of third mounting frames, a plurality of third mounting frames are respectively provided with third fixed blocks and fourth fixed blocks, the third fixed block and the fourth fixed block are movably provided with a supporting plate, the upper wall surface of the supporting plate is provided with a first mounting frame and a storage battery, the first mounting frame is provided with a motor, the motor and the supporting plate are electrically connected, the lower wall surface of the supporting plate is provided with a moving bin, the driving end of the motor is rotatably provided with a gear, the moving bin is provided with a guide block, the third fixed block is provided with a first guide groove, the moving bin is slidably installed in the first guide groove through the guide block, the fourth fixed block is provided with a first rack, the first rack and the gear are engaged, the lower wall surface of the moving bin is provided with a mounting block, the mounting block is provided with an infrared temperature sensor and a camera, the motor and the infrared temperature sensor are electrically connected, and the motor and the camera are electrically connected.

[0005] Preferably, a first fixed block is movably arranged between a plurality of the third fixed blocks, a second fixed block is movably arranged between a plurality of the fourth fixed blocks, a second guide groove is arranged on the first fixed block, the moving bin is slidably installed in the second guide groove through the guide block, a second rack is arranged on the second fixed block, the second rack is engaged with the gear, and a server unit is arranged on one side of the second fixed block and the fourth fixed block.

[0006] Preferably, a groove is arranged in one of the third fixed blocks, a support block is movably arranged in the groove, a spring is arranged in the groove and arranged on the support block, a wireless charging seat is arranged in the support block, a wireless charging module is arranged in the guide block, the wireless charging module is electrically connected with the motor, and the wireless charging module is matched with the wireless charging seat.

[0007] Preferably, a pair of second mounting racks are arranged on the lower wall surface of the support plate, and a support wheel is rotatably arranged on each of the pair of second mounting racks and movably arranged on the upper wall surfaces of the third fixed block, the fourth fixed block, the second fixed block and the first fixed block.

[0008] Preferably, a protection block is arranged on the guide block and movably arranged on the support block.

[0009] Beneficial effects

[0010] The machine room environment monitoring device has the following beneficial effects:

[0011] The design drives the motor to rotate, drives the gear to rotate, drives the mounting block to move, and then moves the infrared temperature sensor and the camera, so that the infrared temperature sensor and the camera pass through the servers in the server unit in sequence, and the single server can be monitored, and the monitoring effect of the monitoring device is improved.

[0012] The first fixed block and the third fixed block, and the second fixed block and the fourth fixed block are connected in a splicing mode and spliced into a ring shape, the splicing connection mode can improve the installation efficiency of the monitoring device, the number of the third fixed blocks and the fourth fixed blocks can be increased according to the size of the server unit, and when the servers of the server unit are subsequently increased, the monitoring range of the monitoring device can be improved by increasing the number of the third fixed blocks and the fourth fixed blocks, and the universality of the monitoring device is improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a schematic view of the whole utility model.

[0014] Figure 2This is a schematic diagram of the support plate of this utility model.

[0015] Figure 3 This is a schematic diagram of the third and fourth fixing blocks of this utility model.

[0016] Figure 4 This is a schematic diagram of the first fixing block and the second fixing block of this utility model.

[0017] Figure 5 This is a schematic diagram of the guide block of this utility model.

[0018] Figure 6 This is a schematic diagram of the groove of this utility model.

[0019] Figure 7 This is a schematic diagram of the third mounting bracket of this utility model.

[0020] In the diagram: 1. Motor; 2. First mounting bracket; 3. Second mounting bracket; 4. Support wheel; 5. Gear; 6. Camera; 7. Mobile compartment; 8. Wireless charging module; 9. Guide block; 10. Support plate; 11. Battery; 12. First fixing block; 13. Second fixing block; 14. Server unit; 15. Third fixing block; 16. Fourth fixing block; 17. Third mounting bracket; 18. Mounting block; 19. Infrared temperature sensor; 20. First rack; 21. First guide groove; 22. Second rack; 23. Second guide groove; 24. Protective block; 25. Groove; 26. Support block; 27. Wireless charging base; 28. Spring. Detailed Implementation

[0021] 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.

[0022] Please see Figures 1-7This utility model provides a technical solution: a computer room environment monitoring device, including a plurality of third mounting frames 17, on which third fixing blocks 15 and fourth fixing blocks 16 are respectively provided. A support plate 10 is movably arranged between the third fixing blocks 15 and the fourth fixing blocks 16. A first mounting frame 2 and a battery 11 are arranged on the upper wall of the support plate 10. A motor 1 is arranged on the first mounting frame 2. The motor 1 and the support plate 10 are electrically connected. A movable compartment 7 is arranged on the lower wall of the support plate 10. A rotating device is provided on the drive end of the motor 1. The mobile compartment 7 is equipped with a gear 5, a guide block 9 is provided on the mobile compartment 7, a first guide groove 21 is provided on the third fixed block 15, the mobile compartment 7 is slidably installed in the first guide groove 21 through the guide block 9, a first rack 20 is provided on the fourth fixed block 16, the first rack 20 meshes with the gear 5, an mounting block 18 is provided on the lower wall of the mobile compartment 7, an infrared temperature sensor 19 and a camera 6 are provided on the mounting block 18, the motor 1 is electrically connected to the infrared temperature sensor 19, and the motor 1 is electrically connected to the camera 6;

[0023] Battery 11 powers motor 1, infrared temperature sensor 19 and camera 6;

[0024] The drive motor 1 rotates, which drives the gear 5 to rotate, which in turn drives the support plate 10 to move. The moving compartment 7 is slidably installed in the first guide groove 21 through the guide block 9, so that the moving compartment 7 moves along the first guide groove 21, which drives the mounting block 18 to move, thereby causing the infrared temperature sensor 19 and the camera 6 to move. In turn, the infrared temperature sensor 19 and the camera 6 pass through the server in the server unit 14 in sequence, which can monitor a single server and improve the monitoring effect of the monitoring device.

[0025] Infrared temperature sensor 19 calculates the surface temperature of an object by measuring the infrared energy radiated by the object, and is used to monitor the temperature of server unit 14.

[0026] In this embodiment, a first fixing block 12 is movably arranged between several third fixing blocks 15, and a second fixing block 13 is movably arranged between several fourth fixing blocks 16. A second guide groove 23 is provided on the first fixing block 12, and the mobile compartment 7 is slidably installed in the second guide groove 23 through the guide block 9. A second rack 22 is provided on the second fixing block 13, and the second rack 22 meshes with the gear 5. A server unit 14 is provided on one side of the second fixing block 13 and the fourth fixing block 16.

[0027] Server group 14 consists of multiple servers;

[0028] like Figure 1 ,Figure 2 and Figure 3 As shown, the first fixing block 12 and the third fixing block 15, as well as the second fixing block 13 and the fourth fixing block 16, are all connected by splicing and spliced ​​into a ring. They are installed in the computer room by the third mounting bracket 17. The splicing connection method can improve the installation efficiency of the monitoring device. At the same time, the number of the third fixing block 15 and the fourth fixing block 16 can be increased according to the size of the server unit 14. When adding servers to the server unit 14 in the future, the monitoring range of the monitoring device can be increased by increasing the number of the third fixing block 15 and the fourth fixing block 16, thereby improving the wide applicability of the monitoring device.

[0029] The drive motor 1 rotates, which drives the gear 5 to rotate, which in turn drives the support plate 10 to move. The moving compartment 7 is slidably installed in the second guide groove 23 through the guide block 9, so that the moving compartment 7 moves along the second guide groove 23, which drives the mounting block 18 to move, thereby causing the infrared temperature sensor 19 and the camera 6 to move, and in turn, the infrared temperature sensor 19 and the camera 6 server unit 14 to move.

[0030] In this embodiment, a groove 25 is provided in one of the third fixing blocks 15, a support block 26 is movably disposed in the groove 25, a spring 28 is provided in the groove 25, the spring 28 is disposed on the support block 26, a wireless charging base 27 is provided in the support block 26, a wireless charging module 8 is provided in the guide block 9, the wireless charging module 8 is electrically connected to the motor 1, and the wireless charging module 8 and the wireless charging base 27 are matched.

[0031] Spring 28 is a compression spring. When the guide block 9 moves to the position of the support block 26, the interaction force generated by the spring 28 drives the support block 26 to move, so that the wireless charging base 27 is in close contact with the wireless charging module 8, and the battery 11 is charged through the wireless charging module 8.

[0032] In this embodiment, a pair of second mounting brackets 3 are provided on the lower wall of the support plate 10, and a support wheel 4 is rotatably provided on each pair of second mounting brackets 3. The support wheel 4 is movably provided on the upper wall of the third fixing block 15, the fourth fixing block 16, the second fixing block 13 and the first fixing block 12.

[0033] The support wheel 4 is movably mounted on the upper wall of the third fixing block 15, the fourth fixing block 16, the second fixing block 13, and the first fixing block 12. This reduces the contact area between the third fixing block 15, the fourth fixing block 16, the second fixing block 13, and the first fixing block 12 and the support plate 10, thereby reducing the friction between the third fixing block 15, the fourth fixing block 16, the second fixing block 13, and the first fixing block 12 and the support plate 10, and thus reducing the power loss of the motor 1.

[0034] In this embodiment, the guide block 9 is provided with a protective block 24, and the protective block 24 is movably disposed on the support block 26.

[0035] The protective block 24 is an inclined block. Before the guide block 9 approaches the support block 26, the inclined surface of the protective block 24 presses against the support block 26, causing the support block 26 to descend. This prevents the guide block 9 from being blocked by the support block 26, thus preventing the moving chamber 7 from stopping and improving the working efficiency of the monitoring device.

[0036] Example: When installing the monitoring device, such as Figure 1 , Figure 2 and Figure 3 As shown, the first fixing block 12 and the third fixing block 15, as well as the second fixing block 13 and the fourth fixing block 16, are all connected by splicing to form a ring. This splicing connection method improves the installation efficiency of the monitoring device. Furthermore, the number of the third fixing blocks 15 and the fourth fixing blocks 16 can be increased according to the size of the server unit 14. When adding servers to the server unit 14 later, the monitoring range of the monitoring device can be increased by increasing the number of the third fixing blocks 15 and the fourth fixing blocks 16, thereby improving the versatility of the monitoring device. When the monitoring device is in use, the drive motor 1 rotates, driving the gear 5 to rotate, which in turn moves the support plate 10 and the mounting block 18, causing the infrared temperature sensor 19 and the camera 6 to move. This allows the infrared temperature sensor 19 and the camera 6 to pass sequentially over the servers within the server unit 14, enabling monitoring of individual servers and improving the monitoring effect of the device. The support wheel 4 is movably set in the first... On the upper walls of the three fixing blocks 15, the fourth fixing block 16, the second fixing block 13, and the first fixing block 12, the contact area between the third fixing block 15, the fourth fixing block 16, the second fixing block 13, and the first fixing block 12 and the support plate 10 can be reduced, thereby reducing the friction between the third fixing block 15, the fourth fixing block 16, the second fixing block 13, and the first fixing block 12 and the support plate 10, thus reducing the power loss of the motor 1. When the monitoring device is charging, before the guide block 9 approaches the support block 26, the inclined surface of the protective block 24 presses the support block 26, causing the support block 26 to descend. The spring 28 generates elastic force, which can prevent the guide block 9 from being blocked by the support block 26 and causing the moving compartment 7 to stop moving, thereby improving the working efficiency of the monitoring device. When the guide block 9 moves to the position of the support block 26, the interaction force generated by the spring 28 drives the support block 26 to move, so that the wireless charging base 27 is in close contact with the wireless charging module 8, and the battery 11 is charged through the wireless charging module 8.

[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A machine room environment monitoring device comprising a plurality of third mounting brackets (17), characterized in that, A third fixed block (15) and a fourth fixed block (16) are arranged on each of the third mounting frames (17), a support plate (10) is movably arranged between the third fixed block (15) and the fourth fixed block (16), a first mounting frame (2) and a battery (11) are arranged on the upper wall surface of the support plate (10), a motor (1) is arranged on the first mounting frame (2), the motor (1) is electrically connected with the support plate (10), a moving bin (7) is arranged on the lower wall surface of the support plate (10), a gear (5) is rotatably arranged on the driving end of the motor (1), a guide block (9) is arranged on the moving bin (7), a first guide groove (21) is arranged on the third fixed block (15), the moving bin (7) is slidably installed in the first guide groove (21) through the guide block (9), a first rack (20) is arranged on the fourth fixed block (16), the first rack (20) is engaged with the gear (5), an installation block (18) is arranged on the lower wall surface of the moving bin (7), an infrared temperature sensor (19) and a camera (6) are arranged on the installation block (18), the motor (1) is electrically connected with the infrared temperature sensor (19), and the motor (1) is electrically connected with the camera (6).

2. The machine room environment monitoring device according to claim 1, characterized in that, A first fixed block (12) is movably arranged between a plurality of third fixed blocks (15), a second fixed block (13) is movably arranged between a plurality of fourth fixed blocks (16), a second guide groove (23) is arranged on the first fixed block (12), the moving bin (7) is slidably installed in the second guide groove (23) through the guide block (9), a second rack (22) is arranged on the second fixed block (13), the second rack (22) is engaged with the gear (5), and a server unit (14) is arranged on one side of the second fixed block (13) and the fourth fixed block (16).

3. The machine room environment monitoring device according to claim 2, wherein A recess (25) is arranged in one of the third fixed blocks (15), a support block (26) is movably arranged in the recess (25), a spring (28) is arranged in the recess (25), the spring (28) is arranged on the support block (26), a wireless charging seat (27) is arranged in the support block (26), a wireless charging module (8) is arranged in the guide block (9), the wireless charging module (8) is electrically connected with the motor (1), and the wireless charging module (8) is matched with the wireless charging seat (27).

4. The machine room environment monitoring apparatus according to claim 3, wherein A pair of second mounting frames (3) are arranged on the lower wall surface of the support plate (10), a support wheel (4) is rotatably arranged on each of the pair of second mounting frames (3), and the support wheel (4) is movably arranged on the upper wall surface of the third fixed block (15), the fourth fixed block (16), the second fixed block (13) and the first fixed block (12).

5. The machine room environment monitoring apparatus according to claim 4, wherein A protection block (24) is arranged on the guide block (9), and the protection block (24) is movably arranged on the support block (26).