Machine room environment automatic monitoring management and control device
By using a rotating quick-connect fixing buckle in the automatic monitoring and control device for the computer room environment, the problem of cumbersome replacement and installation of special detection modules has been solved, enabling quick tool-free disassembly and assembly, reducing the burden on operators and maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGJIALIN GRP CO LTD
- Filing Date
- 2025-07-15
- Publication Date
- 2026-05-12
AI Technical Summary
In existing automatic monitoring and control devices for computer room environments, the specialized detection modules are fixed to the support plate with bolts, which makes replacement and installation cumbersome and increases the burden on the workers.
The special testing module is quickly and independently fixed to the support plate by using a rotating quick-connect fixing buckle. The rotating quick-connect fixing buckle enables quick tool-free assembly and disassembly. The design includes a combination of a snap-fit working slot, a support rotating base, a hand-tightening push rod, an embedded plug, and an embedded insert.
It enables rapid installation and disassembly of specialized testing modules, reducing the workload of operators and minimizing maintenance costs.
Smart Images

Figure CN224230998U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an automatic monitoring and control device for computer room environment, and in particular to an automatic monitoring and control device for computer room environment, belonging to the technical field of rapid installation of automatic environmental monitoring and control modules. Background Technology
[0002] The automatic monitoring and control device for computer room environment is a system that integrates computer network technology, database technology, communication technology, automatic control technology and new sensing technology. It is mainly used to comprehensively monitor and control the power equipment, environmental parameters, security status and other elements of the computer room. The automatic monitoring and control device for computer room environment is an important tool to ensure the stable operation of IT infrastructure, improve operation and maintenance efficiency and ensure data security.
[0003] However, the existing automatic monitoring and control devices for computer room environments consist of several specialized testing modules. Most of these specialized testing modules are fixed to the support plate with bolts, making the replacement and installation of these modules cumbersome. This prevents quick tool-free disassembly and assembly of the specialized testing modules, thus increasing the workload of the operators.
[0004] Therefore, it is urgent to improve the automatic monitoring and control device for the computer room environment to solve the above-mentioned problems. Utility Model Content
[0005] The purpose of this utility model is to provide an automatic monitoring and control device for computer room environment. This device can quickly and independently fix the special detection module to the support plate by rotating the quick-connect fixing buckle, making the replacement and installation of the special detection module simpler. This allows for quick tool-free disassembly and assembly of the special detection module, thereby reducing the workload of the operators.
[0006] To achieve the above objectives, the main technical solutions adopted by this utility model include:
[0007] A plurality of rotating quick-connect fixing buckles are mounted on a support fixing plate. The rotating quick-connect fixing buckles are used for quick and independent insertion and fixing of special testing modules in the environmental testing structure.
[0008] Two mounting ears are provided on both sides of the support plate, and the two mounting ears are used to fix the support plate to the wall of the required workshop.
[0009] Preferably, the rotating quick-connect fixing buckle includes an insert working groove formed on the support fixing plate, a support rotating seat installed on the upper port of the insert working groove, a hand-tightening screw rod rotatably installed in the support rotating seat, an insert plug screwed and sleeved on the hand-tightening screw rod, and an insert block that fits below the insert plug.
[0010] Preferably, the fixed environment detection structure includes a temperature sensor, a humidity sensor located next to the temperature sensor, a noise sensor located next to the humidity sensor, and a laser dust particle counter located next to the noise sensor.
[0011] Preferably, the temperature sensor, the humidity sensor, the noise sensor, and the rear end face of the laser dust particle counter are all provided with the embedding block, and the embedding block has a locking groove.
[0012] Preferably, the hand-tightening push rod includes a hand-tightening block and a push screw disposed on the lower end face of the hand-tightening block, and the hand-tightening block is rotatably fitted into the support pivot.
[0013] Preferably, the insert plug has a through-hole that is adapted to the lead screw for engagement, and the insert plug includes a limiting block and a locking block disposed on the lower end face of the limiting block that is adapted to the locking groove.
[0014] Preferably, the support pivot is bolted to the upper port of the snap-fit working groove, and the support pivot includes a first mounting base and a second mounting base snap-fitted to the side of the first mounting base.
[0015] Preferably, the support pivot has a locking groove adapted to the hand-tightening pivot, and the first mounting base and the second mounting base are installed together by bolts.
[0016] This utility model has at least the following beneficial effects:
[0017] 1. This utility model allows for the quick and independent insertion and fixing of a special testing module onto a support plate via a rotating quick-connect fixing buckle, making the replacement and installation of the special testing module simpler. This enables quick tool-free disassembly and assembly of the special testing module, thereby reducing the workload of operators.
[0018] 2. The rotating quick-connect fixing buckle in this utility model does not use an elastic spring, so the fixing characteristics of the rotating quick-connect fixing buckle will not be damaged due to the long period of use. At the same time, the rotating quick-connect fixing buckle is easy to disassemble, maintain, repair and replace parts, thereby reducing the cost of use. Attached Figure Description
[0019] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0020] Figure 1 This is a schematic diagram of the overall appearance structure of this utility model;
[0021] Figure 2 This is a disassembly diagram of the main structural components of the rotating quick-connect fixing buckle of this utility model;
[0022] Figure 3 This is a longitudinal sectional view of the rotating quick-connect fixing buckle of this utility model;
[0023] Figure 4 This is a cross-sectional view of the rotating quick-connect fixing buckle of this utility model.
[0024] In the diagram: 1. Rotary quick-connect retaining buckle; 2. Supporting retaining plate; 3. Environmental detection structure; 4. Fixed mounting ear; 5. Engaging slot; 6. Supporting rotating seat; 7. Hand-tightening push rod; 8. Embedded plug; 9. Embedded insert block; 10. Temperature sensor; 11. Humidity sensor; 12. Noise sensor; 13. Laser dust particle counter; 14. Engaging retaining slot; 15. Hand-tightening rotating block; 16. Push screw; 17. Engaging rotating slot; 18. Limiting block; 19. Engaging retaining block; 20. First mounting base; 21. Second mounting base; 22. Engaging rotating slot. Detailed Implementation
[0025] The following will describe in detail the implementation of this application with reference to the accompanying drawings and embodiments, so that the implementation process of how this application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.
[0026] like Figures 1-4 As shown, the automatic monitoring and control device for the computer room environment provided in this embodiment includes:
[0027] Several rotating quick-connect fixing buckles 1 are installed on the support fixing plate 2. The rotating quick-connect fixing buckles 1 are used to quickly and independently insert and fix the special detection module in the environmental detection structure 3.
[0028] Two fixed mounting ears 4 are provided on both sides of the support fixing plate 2. The two fixed mounting ears 4 are used to fix the support fixing plate 2 to the wall of the required workshop.
[0029] The support plate 2 facilitates the fixing of several rotating quick-connect fixing buckles 1, environmental detection structure 3 and two fixed mounting ears 4. The environmental detection structure 3 facilitates the automatic monitoring and control of the computer room environment.
[0030] The rotating quick-connect fixing buckle 1 facilitates the quick and independent insertion and fixing of the special testing module onto the support fixing plate 2, making the replacement and installation of the special testing module simpler. This allows for quick tool-free disassembly and assembly of the special testing module, thereby reducing the workload of the operators.
[0031] Furthermore, such as Figure 2 , Figure 3 as well as Figure 4 As shown, the rotating quick-connect fixing buckle 1 includes a snap-fit working groove 5 opened on the support fixing plate 2, a support rotating seat 6 installed at the upper port of the snap-fit working groove 5, a hand-tightening screw rod 7 snap-fitted and rotatably installed in the support rotating seat 6, an insert plug 8 screwed and sleeved on the hand-tightening screw rod 7, and an insert block 9 attached to the lower part of the insert plug 8. The snap-fit working groove 5 facilitates the storage and limiting of some parts in the rotating quick-connect fixing buckle 1. The support rotating seat 6 facilitates the rotational support of the hand-tightening screw rod 7, and at the same time facilitates the installation of the hand-tightening screw rod 7 at the upper port of the snap-fit working groove 5. The hand-tightening screw rod 7 facilitates the push of the insert plug 8 from outside the device by hand to insert it into the insert block 9.
[0032] Furthermore, such as Figure 1 , Figure 3 as well as Figure 4 As shown, the fixed environment detection structure 3 includes a temperature sensor 10, a humidity sensor 11 located next to the temperature sensor 10, a noise sensor 12 located next to the humidity sensor 11, and a laser dust particle counter 13 located next to the noise sensor 12. The temperature sensor 10 facilitates the detection and control of the temperature in the computer room, the humidity sensor 11 facilitates the detection and control of the humidity in the computer room, the noise sensor 12 facilitates the detection and control of the noise in the computer room, and the laser dust particle counter 13 facilitates the detection and control of dust particles in the computer room. Here, the temperature sensor 10, humidity sensor 11, noise sensor 12, and laser dust particle counter 13 are all composed of existing modules, so the operating principles of the temperature sensor 10, humidity sensor 11, noise sensor 12, and laser dust particle counter 13 are all existing technologies. The temperature sensor 10, humidity sensor 11, noise sensor 12, and laser dust particle counter 13 are all connected to the central controller via an RS-485 bus, which allows for the monitoring of the overall environmental data inside the computer room.
[0033] Furthermore, such as Figure 2 and Figure 3As shown, the rear ends of the temperature sensor 10, humidity sensor 11, noise sensor 12, and laser dust particle counter 13 are all provided with embedded blocks 9. The embedded blocks 9 are provided with snap-fit fixing slots 14. The embedded blocks 9 and the embedded plugs 8 cooperate with each other to make the temperature sensor 10, humidity sensor 11, noise sensor 12, and laser dust particle counter 13 fixedly snap-fit in the snap-fit working slots 5. The snap-fit fixing slots 14 and the snap-fit fixing blocks 19 cooperate with each other to make the embedded plugs 8 snap-fit into the embedded blocks 9.
[0034] Furthermore, such as Figure 2 and Figure 4 As shown, the hand-tightening screw rod 7 includes a hand-tightening rotating block 15 and a push screw 16 disposed on the lower end face of the hand-tightening rotating block 15. The hand-tightening rotating block 15 is rotatably embedded in the support rotating seat 6. The hand-tightening rotating block 15 and the locking rotating groove 22 cooperate with each other to facilitate the hand-tightening screw rod 7 to be rotatably embedded in the support rotating seat 6. The push screw 16 and the screw-in rotating groove 17 cooperate with each other to facilitate the insertion plug 8 to be pushed and moved in the locking working groove 5 when the push screw 16 is rotated.
[0035] Furthermore, such as Figure 2 and Figure 4 As shown, the embedded plug 8 has a through-hole groove 17 that is adapted to the push screw 16. The embedded plug 8 includes a limiting block 18 and a snap-fit fixing block 19 that is adapted to the snap-fit fixing groove 14 on the lower end face of the limiting block 18. The limiting block 18 and the snap-fit fixing block 19 can be used to form the embedded plug 8.
[0036] Furthermore, such as Figure 2 and Figure 3 As shown, the support pivot 6 is bolted to the upper port of the snap-fit working groove 5. The support pivot 6 includes a first mounting base 20 and a second mounting base 21 snap-fitted to the side of the first mounting base 20. The first mounting base 20 and the second mounting base 21 can be used to form the support pivot 6.
[0037] Furthermore, such as Figure 2 and Figure 3 As shown, the support pivot 6 has a locking groove 22 that matches the hand-tightening pivot 15. The first mounting base 20 and the second mounting base 21 are bolted together, which facilitates the replacement and maintenance of the hand-tightening push rod 7.
[0038] like Figures 1-4 As shown, the principle of the automatic monitoring and control device for the computer room environment provided in this embodiment is as follows: When using the device, the two fixed mounting ears 4 should be bolted through, and then the support fixing plate 2 should be fixed to the designated wall. At this time, the several rotating quick-connect fixing buckles 1 installed on the support fixing plate 2 are in the upward position.
[0039] When installing the quick-connect fixing buckle 1, first remove the hand-tightening push rod 7, then engage the first mounting base 20 and the second mounting base 21 on the hand-tightening rotating block 15 on the hand-tightening push rod 7, and fix the first mounting base 20 and the second mounting base 21 together with bolts. Then, screw the embedded plug 8 onto the push screw 16 on the hand-tightening push rod 7. After that, insert the embedded plug 8 and the push screw 16 into the snap-fit working groove 5. At this time, the support rotating base 6 can be installed at the upper port of the snap-fit working groove 5 with bolts. Then, install several quick-connect fixing buckles 1 in the snap-fit working groove 5 in sequence according to the above method.
[0040] At this point, the temperature sensor 10 can be removed and its back end is fitted onto the support plate 2. It is crucial to ensure that the insertion block 9 on the rear end of the temperature sensor 10 is in an empty insertion slot 5, and that the insertion fixing slot 14 on the insertion block 9 is facing upwards. The installer then holds the temperature sensor 10 with one hand and rotates the hand-cranking block 15 with the other. This rotation of the hand-cranking block 15 will cause the push screw 16 to rotate. Because the hand-cranking block 15 and the push screw 16 are in a locking position... Since there is no position change in the insertion slot 5, the insertion plug 8, which is screwed onto the push screw 16, will move in the insertion slot 5. The moving insertion plug 8 will slowly move towards the insertion block 9 until the insertion fixing block 19 is inserted and engaged in the insertion fixing slot 14. At this time, the hand-tightening block 15 will not be able to be turned. At this time, the temperature sensor 10 is installed. If the temperature sensor 10 needs to be removed, the hand-tightening block 15 can be turned in the opposite direction until the hand-tightening block 15 cannot be turned. At this time, the temperature sensor 10 can be removed.
[0041] At this point, the humidity sensor 11 can be removed and its back end clipped onto the support plate 2. Ensure that the insertion block 9 on the rear end of the humidity sensor 11 is in an empty insertion slot 5, and that the insertion fixing slot 14 on the insertion block 9 is facing upwards. The installer then holds the humidity sensor 11 with one hand and rotates the hand-cranking block 15 with the other. This rotation of the hand-cranking block 15 will cause the push screw 16 to rotate. At this time, because the hand-cranking block 15 and the push screw 16 are... Since there is no position change in the insertion slot 5, the insertion plug 8, which is screwed onto the push screw 16, will move in a limited position in the insertion slot 5. The moving insertion plug 8 will slowly move closer to the insertion block 9 until the insertion fixing block 19 is inserted and engaged in the insertion fixing slot 14. At this time, the hand-tightening block 15 will not be able to be turned. At this time, the humidity sensor 11 is installed. If it is necessary to remove the humidity sensor 11, the hand-tightening block 15 can be turned in the opposite direction until the hand-tightening block 15 cannot be turned. Then the humidity sensor 11 can be removed.
[0042] At this point, the noise sensor 12 can be removed and its back end clipped onto the support plate 2. Ensure that the insertion block 9 on the rear end of the noise sensor 12 is in an empty insertion slot 5, and that the insertion fixing slot 14 on the insertion block 9 is facing upwards. The installer then holds the noise sensor 12 with one hand and rotates the hand-cranking block 15 with the other. This rotation of the hand-cranking block 15 will cause the push screw 16 to rotate. Because the hand-cranking block 15 and the push screw 16 are in a clipping position... Since there is no position change in the insertion slot 5, the insertion plug 8, which is screwed onto the push screw 16, will move in a limited position in the insertion slot 5. The moving insertion plug 8 will slowly move towards the insertion block 9 until the locking block 19 is inserted and locked into the locking slot 14. At this time, the hand-tightening block 15 will not be able to be turned. At this time, the noise sensor 12 is installed. If the noise sensor 12 needs to be removed, the hand-tightening block 15 can be turned in the opposite direction until the hand-tightening block 15 cannot be turned. Then the noise sensor 12 can be removed.
[0043] At this point, the laser dust particle counter 13 can be removed and its back side should be fitted onto the support plate 2. It is crucial to ensure that the insertion block 9 on the rear end of the laser dust particle counter 13 is in an empty insertion slot 5, and that the insertion fixing slot 14 on the insertion block 9 is facing upwards. The installer then holds the laser dust particle counter 13 with one hand and rotates the hand-cranking block 15 with the other. This rotation of the hand-cranking block 15 will cause the push screw 16 to rotate. Because the hand-cranking block 15 and the push screw 16... Since there is no position change in the insertion slot 5, the insertion plug 8, which is screwed onto the push screw 16, will move in a limited position in the insertion slot 5. The moving insertion plug 8 will slowly move closer to the insertion block 9 until the insertion fixing block 19 is inserted and engaged in the insertion fixing slot 14. At this time, the hand-tightening rotating block 15 will not be able to be turned. At this time, the laser dust particle counter 13 is installed. If it is necessary to remove the laser dust particle counter 13, the hand-tightening rotating block 15 can be turned in the opposite direction until the hand-tightening rotating block 15 cannot be turned. Then the laser dust particle counter 13 can be removed.
[0044] Rotating the quick-connect fixing buckle 1 allows the special testing module to be quickly and independently fixed onto the support fixing plate 2, making the replacement and installation of the special testing module simpler. This enables quick tool-free disassembly and assembly of the special testing module, thereby reducing the workload of the operators.
[0045] After the temperature sensor 10, humidity sensor 11, noise sensor 12, and laser dust particle counter 13 are all fixedly and manually installed, they can be connected to the central controller via RS-485 bus to monitor the overall environmental data inside the computer room.
[0046] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.
Claims
1. An automatic monitoring and control device for computer room environment, characterized in that, include: A plurality of rotating quick-connect fixing buckles (1) are installed on a support fixing plate (2). The rotating quick-connect fixing buckles (1) are used to quickly and independently insert cards to fix the special detection module in the environmental detection structure (3). Two fixed mounting ears (4) are provided on both sides of the support fixing plate (2). The two fixed mounting ears (4) are used to fix the support fixing plate (2) to the wall of the required workshop.
2. The automatic monitoring and control device for computer room environment according to claim 1, characterized in that: The rotating quick-connect fixing buckle (1) includes a snap-fit working groove (5) opened on the support fixing plate (2), a support rotating seat (6) installed on the upper port of the snap-fit working groove (5), a hand-tightening screw rod (7) snap-fitted and rotatably installed in the support rotating seat (6), an embedded plug (8) screwed and sleeved on the hand-tightening screw rod (7), and an embedded plug (9) attached to the embedded plug (8) below it.
3. The automatic monitoring and control device for computer room environment according to claim 2, characterized in that: The fixed environment detection structure (3) includes a temperature sensor (10), a humidity sensor (11) located next to the temperature sensor (10), a noise sensor (12) located next to the humidity sensor (11), and a laser dust particle counter (13) located next to the noise sensor (12).
4. The automatic monitoring and control device for computer room environment according to claim 3, characterized in that: The rear end face of the temperature sensor (10), the humidity sensor (11), the noise sensor (12) and the laser dust particle counter (13) are all provided with the embedded plug (9), and the embedded plug (9) is provided with a snap-fit fixing groove (14).
5. The automatic monitoring and control device for computer room environment according to claim 4, characterized in that: The hand-tightening push rod (7) includes a hand-tightening block (15) and a push screw (16) disposed on the lower end face of the hand-tightening block (15). The hand-tightening block (15) is rotatably fitted into the support rotating seat (6).
6. The automatic monitoring and control device for computer room environment according to claim 5, characterized in that: The embedded plug (8) has a through-hole groove (17) adapted to the push screw (16). The embedded plug (8) includes a limiting block (18) and a snap-fit fixing block (19) provided on the lower end face of the limiting block (18) and adapted to the snap-fit fixing groove (14).
7. The automatic monitoring and control device for computer room environment according to claim 5, characterized in that: The support rotatable seat (6) is bolted to the upper port of the snap-fit working groove (5). The support rotatable seat (6) includes a first mounting seat (20) and a second mounting seat (21) snap-fitted to the side of the first mounting seat (20).
8. The automatic monitoring and control device for computer room environment according to claim 7, characterized in that: The support pivot (6) has a locking groove (22) adapted to the hand-tightening pivot (15), and the first mounting base (20) and the second mounting base (21) are installed together by bolts.