Power and environment monitoring equipment

By designing and installing slide rails and rotating components in the moving ring monitoring equipment, rapid disassembly and adjustment is achieved, and combined with drive gears and electric push rods, the problems of complex installation of the equipment, laborious adjustment of the perspective angle and unstable operation are solved, and the installation efficiency, flexibility and stability of the monitoring equipment are improved.

CN223036082UActive Publication Date: 2025-06-27BEIJING SUXUN TIANLIAN FEIYANG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422425716.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-06-27
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing dynamic ring monitoring equipment is complex and inefficient during the installation process, and needs to be manually moved or reinstalled when adjusting the monitoring perspective and coverage range, which is time-consuming and labor-intensive and may lead to blind spots or blind spots in monitoring. At the same time, the simple motor drive method is used to operate unstable under low speed and high torque.

Method used

A moving ring monitoring device is designed, using mounting slide rails and rotation components, and the positioning grooves and slot structures of the slider and installation body are quickly disassembled and adjusted. Combined with the drive gear and electric push rod, 360° rotation and angular rotation are achieved.

Benefits of technology

It simplifies the installation process, improves installation efficiency, facilitates subsequent maintenance or replacement work, realizes flexible adjustment of the viewing angle and coverage of the surveillance camera, enhances the flexibility and response speed of monitoring, and improves the stability of the equipment in low speed and high torque occasions.

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    Figure CN223036082U_ABST
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Abstract

The utility model discloses power and environment monitoring equipment, and relates to the technical field of power and environment monitoring. Comprising an installation sliding rail, an installation mechanism used for machine room equipment monitoring is arranged on the installation sliding rail, an installation main body is connected with a sliding block in a positioning mode through a positioning groove, a pull rod is pulled to enable a connecting plate and a clamping block to be compressed in a cavity groove through a spring, and after the lower end of the sliding block is clamped in the positioning groove, the installation main body is fixed. The clamping blocks are connected with the clamping grooves in the sliding blocks in a clamped mode, the installation main body is installed and detached, therefore, the monitoring main body is detached and installed at the edge, the installation process is simplified, the installation efficiency is improved, follow-up overhaul or replacement work is facilitated, the movable sliding blocks move in the installation sliding rails in the horizontal direction, and the installation efficiency is improved. Therefore, the monitoring main body is horizontally adjusted, the visual angle and the coverage range of the monitoring camera are adjusted at any time, complex physical movement or reinstallation is not needed, and the monitoring flexibility and the response speed are greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of dynamic ring monitoring, in particular to a dynamic ring monitoring device. Background Technique

[0002] The dynamic ring monitoring device for computer rooms is a computer control system that remotely measures, remotely signals, remotely adjusts, and remotely controls various parameters of multiple power equipment such as power cabinets, UPSs, air conditioners, and batteries distributed in each computer room, as well as various parameters of the computer room environment such as door magnets, infrared rays, water immersion, temperature and humidity, and smoke sensors, real-time monitors their operating parameters, diagnoses and processes faults, records and analyzes relevant data, and centrally monitors and centrally maintains the equipment.

[0003] The reference patent (publication number: CN218270816U; publication date: January 10, 2023) discloses a dynamic ring monitoring and device, including a box body, two heat dissipation holes are symmetrically arranged on the other two sides of the box body, four heat dissipation fans are arranged on the heat dissipation holes, a sensor group is arranged inside the box body, two hair dryers are symmetrically arranged on one side of the sensor group, and a first buckle part and a second buckle part are arranged at one end of the fixing part.

[0004] During the installation process of the existing monitoring devices, bolts are usually used for installation and fastening, which often face the problems of complex processes and low efficiency, and are not conducive to subsequent maintenance or replacement work. In addition, when adjusting the monitoring angle and coverage range of the monitoring devices, physical movement or reinstallation by manual labor is usually required, which is not only time-consuming and laborious, but also may lead to monitoring blind spots or dead corners, affecting the monitoring effect. For devices that need to achieve 360° rotation monitoring, a simple motor drive method is mostly used, but this method often has unstable operation in occasions that require low speed and high torque. Therefore, the utility model provides a dynamic ring monitoring device. Content of the Utility Model

[0005] Aiming at the deficiencies of the prior art, the utility model provides a dynamic ring monitoring device, which solves the problems that during the installation process of the monitoring device, bolts are usually used for installation and fastening, which often face the problems of complex processes and low efficiency, and are not conducive to subsequent maintenance or replacement work. In addition, when adjusting the monitoring angle and coverage range of the monitoring device, physical movement or reinstallation by manual labor is usually required, which is not only time-consuming and laborious, but also may lead to monitoring blind spots or dead corners, affecting the monitoring effect. For devices that need to achieve 360° rotation monitoring, a simple motor drive method is mostly used, but this method often has unstable operation in occasions that require low speed and high torque.

[0006] To achieve the above purposes, the utility model is realized through the following technical solutions: A dynamic ring monitoring device includes an installation slide rail, and an installation mechanism for monitoring computer room equipment is arranged on the installation slide rail. The installation mechanism includes:

[0007] An installation component, including a slider connected to the inside of an installation slide rail through a rotating component, a lower end of the slider is provided with an installation main body, and a disassembly component for separating from the slider is arranged inside the installation main body;

[0008] An adjusting component, including a support shaft arranged on the left side of the lower end surface of the installation main body, a fixing ring is arranged on the outer wall of the support shaft, a connecting shaft is arranged at the edge of the lower end surface of the fixing ring, a support block is arranged on the outer wall of the connecting shaft, and a monitoring main body connected through a support component is arranged at the end of the support block.

[0009] Preferably, the disassembly component includes clamping grooves opened on both side walls of the slider, a positioning groove is opened at the center of the upper end surface of the installation main body, and the slider is located inside the positioning groove.

[0010] Preferably, cavity grooves are opened on both sides of the positioning groove, springs are arranged on the inner walls of the cavity grooves, connecting plates are arranged at the ends of the springs, clamping blocks are arranged at the front ends of the connecting plates, the clamping blocks are the same size as the clamping grooves, and a pull rod is arranged at the center of the inner wall of the connecting plate.

[0011] Preferably, the rotating component includes a threaded rod arranged on the inner wall of the installation slide rail, the slider is slidably connected inside the installation slide rail, the slider is in threaded connection with the threaded rod, and installation brackets are arranged at both ends of the installation slide rail.

[0012] Preferably, a driving shaft is arranged on the right side of the lower end surface of the installation main body, a driving gear is arranged at the lower end of the driving shaft, a toothed block is arranged on the outer wall of the fixing ring, and the toothed block is in meshing connection with the driving gear.

[0013] Preferably, the support component includes a first rotating shaft arranged on the inner wall of the support block, the monitoring main body is located at the end of the support block, a fixing plate is arranged on the lower end surface of the fixing ring, a second rotating shaft is arranged on the inner wall of the fixing plate, an electric push rod is arranged on the outer wall of the second rotating shaft, and the support block is connected to the electric push rod through the first rotating shaft.

[0014] Beneficial effects

[0015] The utility model provides a dynamic ring monitoring device. Compared with the prior art, the following beneficial effects are achieved:

[0016] First, the installation main body provided by the utility model is positioned and connected with the slider through the positioning groove. When the pull rod is pulled, the connecting plate and the clamping block are compressed inside the cavity groove through the spring. After the lower end of the slider is engaged in the positioning groove, the pull rod is released. The clamping block is engaged with the clamping groove on the slider to realize the installation and disassembly of the installation main body, so as to disassemble and install the monitoring main body at the edge, simplify the installation process, improve the installation efficiency, facilitate subsequent maintenance or replacement work, and the moving slider moves horizontally inside the installation slide rail, so as to horizontally adjust the monitoring main body and adjust the viewing angle and coverage range of the monitoring camera at any time, without complex physical movement or reinstallation, greatly improving the flexibility and response speed of monitoring.

[0017] Second, the driving shaft provided by the utility model drives the driving gear to rotate through the motor. Then, the fixed ring rotates on the support shaft through the engagement of the tooth block and the driving gear. When the small gear drives the large gear, the rotation speed of the large gear will decrease, and at the same time, the torque will increase, which is beneficial to the stable operation of the monitoring device under the condition of requiring lower rotation speed and higher torque, improves the stability of the monitoring main body, drives the monitoring main body to rotate 360°, and when the electric push rod expands and contracts, it supports the support block. The support block forms a rotating structure on the fixed plate through the first rotating shaft, the electric push rod and the second rotating shaft, realizing the angle rotation work of the monitoring main body and the support block through the connecting shaft, greatly increasing the monitoring range. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the overall structural schematic diagram of the utility model;

[0019] Figure 2 is the connection structure schematic diagram of the slider and the installation main body of the utility model;

[0020] Figure 3 is the rotating connection structure schematic diagram of the fixed ring of the utility model;

[0021] Figure 4 is the monitoring main body adjustment structure schematic diagram of the utility model.

[0022] In the figure: 1. Installation slide rail; 2. Threaded rod; 201. Slider; 202. Clamping groove; 203. Installation main body; 204. Positioning groove; 205. Cavity groove; 206. Spring; 207. Connecting plate; 208. Clamping block; 209. Pull rod; 3. Support shaft; 301. Fixed ring; 302. Tooth block; 303. Driving shaft; 304. Driving gear; 4. Connecting shaft; 401. Support block; 402. Monitoring main body; 403. First rotating shaft; 404. Fixed plate; 405. Second rotating shaft; 406. Electric push rod; 5. Installation bracket. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0024] Embodiment 1

[0025] Please refer to Figures 1-4 , the present utility model provides a technical solution: a moving ring monitoring device, including an installation slide rail 1, on which an installation mechanism for monitoring computer room equipment is provided. The installation mechanism includes:

[0026] An installation component, including a slider 201 connected inside the installation slide rail 1 through a rotating component. The lower end of the slider 201 is provided with an installation main body 203, and a disassembly component for separating from the slider 201 is arranged inside the installation main body 203;

[0027] An adjustment component, including a support shaft 3 arranged on the left side of the lower end surface of the installation main body 203. A fixed ring 301 is arranged on the outer wall of the support shaft 3. A connecting shaft 4 is arranged at the edge of the lower end surface of the fixed ring 301. A support block 401 is arranged on the outer wall of the connecting shaft 4. The end of the support block 401 is provided with a monitoring main body 402 connected through a support component.

[0028] In a preferred embodiment, the disassembly component includes clamping grooves 202 opened on both side walls of the slider 201. A positioning groove 204 is opened at the center of the upper end surface of the installation main body 203. The slider 201 is located inside the positioning groove 204. Cavity grooves 205 are opened on both sides of the positioning groove 204. A spring 206 is arranged on the inner wall of the cavity groove 205. A connecting plate 207 is arranged at the end of the spring 206. A clamping block 208 is arranged at the front end of the connecting plate 207. The clamping block 208 is the same size as the clamping groove 202. A pull rod 209 is arranged at the center of the inner wall of the connecting plate 207. The arranged installation main body 203 is positioned and connected with the slider 201 through the positioning groove 204. And by pulling the pull rod 209, the connecting plate 207 and the clamping block 208 are compressed inside the cavity groove 205 through the spring 206. When the lower end of the slider 201 is clamped in the positioning groove 204, the pull rod 209 is released. The clamping block 208 is clamped and connected with the clamping groove 202 on the slider 201, realizing the installation and disassembly of the installation main body 203, thereby facilitating the disassembly and installation of the monitoring main body 402 at the edge, simplifying the installation process, improving the installation efficiency, and facilitating subsequent maintenance or replacement work.

[0029] In a preferred embodiment, the rotating assembly includes a threaded rod 2 disposed on the inner wall of the mounting slide rail 1. The slider 201 is slidably connected inside the mounting slide rail 1 and is threadedly connected to the threaded rod 2. Both ends of the mounting slide rail 1 are provided with mounting brackets 5. The provided mounting slide rail 1 is fixedly connected to the wall through bolts on the mounting brackets 5. Then, the threaded rod 2 is driven by a motor, thereby driving the slider 201 to move horizontally inside the mounting slide rail 1, so as to horizontally adjust the monitoring main body 402, and adjust the viewing angle and coverage range of the monitoring camera at any time, without the need for complex physical movement or reinstallation, greatly improving the flexibility and response speed of the monitoring.

[0030] Embodiment 2. The technical solution of this embodiment different from that of Embodiment 1 includes:

[0031] In a preferred embodiment, a drive shaft 303 is provided on the right side of the lower end surface of the mounting main body 203. A drive gear 304 is provided at the lower end of the drive shaft 303. A toothed block 302 is provided on the outer wall of the fixed ring 301, and the toothed block 302 is meshed with the drive gear 304. The support assembly includes a first rotating shaft 403 disposed on the inner wall of the support block 401. The monitoring main body 402 is located at the end of the support block 401. A fixing plate 404 is provided on the lower end surface of the fixed ring 301. A second rotating shaft 405 is provided on the inner wall of the fixing plate 404. An electric push rod 406 is provided on the outer wall of the second rotating shaft 405. The support block 401 is connected to the electric push rod 406 through the first rotating shaft 403. The provided drive shaft 303 is driven by a motor to drive the rotation of the drive gear 304. Then, the fixed ring 301 rotates on the support shaft 3 through the meshing of the toothed block 302 and the drive gear 304. When the small gear drives the large gear, the rotation speed of the large gear will decrease, and at the same time, the torque will increase, which is beneficial to the stable operation of the monitoring device under the condition of requiring a lower rotation speed and a higher torque, improving the stability of the monitoring main body 402, driving the monitoring main body 402 to perform a 360° rotation operation, and when the electric push rod 406 expands and contracts, it supports the support block 401. The support block 401 forms a rotating structure on the fixing plate 404 through the first rotating shaft 403, the electric push rod 406 and the second rotating shaft 405, realizing the angle rotation operation of the monitoring main body 402 and the support block 401 through the connecting shaft 4, greatly increasing the monitoring range.

[0032] At the same time, the content not described in detail in this specification belongs to the prior art well known to those skilled in the art.

[0033] During operation, the installed mounting body 203 is positioned and connected to the slider 201 through the positioning groove 204. Then, the pull rod 209 is pulled to compress the connecting plate 207 and the clamping block 208 through the spring 206 inside the cavity groove 205. After the lower end of the slider 201 is engaged with the positioning groove 204, the pull rod 209 is released. The clamping block 208 is engaged with the clamping groove 202 on the slider 201 to achieve the installation and disassembly of the mounting body 203, thereby facilitating the disassembly and installation of the monitoring body 402 at the edge. This simplifies the installation process, improves the installation efficiency, and facilitates subsequent maintenance or replacement work. Moreover, the moving slider 201 moves horizontally inside the installation slide rail 1 to horizontally adjust the monitoring body 402, and the viewing angle and coverage range of the monitoring camera can be adjusted at any time without complex physical movement or reinstallation, greatly improving the flexibility and response speed of monitoring;

[0034] The provided drive shaft 303 drives the rotation of the drive gear 304 through a motor. Then, the fixed ring 301 rotates on the support shaft 3 under the engagement of the tooth block 302 and the drive gear 304. When the small gear drives the large gear, the rotational speed of the large gear will decrease while the torque will increase, which is beneficial for the stable operation of the monitoring device under the conditions of requiring a lower rotational speed and a higher torque, improving the stability of the monitoring body 402, and driving the monitoring body 402 to perform a 360° rotation. Moreover, when the electric push rod 406 expands and contracts, it supports the support block 401. The support block 401 forms a rotating structure on the fixed plate 404 through the first rotating shaft 403, the electric push rod 406, and the second rotating shaft 405, realizing the angular rotation of the monitoring body 402 and the support block 401 through the connecting shaft 4, greatly increasing the monitoring range.

[0035] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.

[0036] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A dynamic environment monitoring device, comprising a mounting rail (1), characterized in that: The installation rail (1) is provided with an installation mechanism for monitoring equipment in a machine room, and the installation mechanism comprises: The mounting assembly comprises a sliding block (201) connected to the inside of the mounting rail (1) via a rotating assembly, a mounting body (203) being arranged at the lower end of the sliding block (201), and a disassembly assembly for separating from the sliding block (201) being arranged inside the mounting body (203); The adjustment component comprises a support shaft (3) arranged on the left side of the lower end surface of the installation body (203), the outer wall of the support shaft (3) is provided with a fixing ring (301), the lower end surface edge of the fixing ring (301) is provided with a connecting shaft (4), the outer wall of the connecting shaft (4) is provided with a supporting block (401), and the end of the supporting block (401) is provided with a monitoring body (402) connected through the supporting component.

2. The dynamic environment monitoring device according to claim 1, characterized in that: The disassembly assembly comprises a clamping groove (202) formed on two side walls of a slider (201), a positioning groove (204) is formed at the center of the upper end surface of the installation body (203), and the slider (201) is located inside the positioning groove (204).

3. The dynamic environment monitoring device according to claim 2, characterized in that: Cavity grooves (205) are provided on both sides of the positioning groove (204), a spring (206) is provided on the inner wall of the cavity groove (205), a connecting plate (207) is provided at the end of the spring (206), a clamping block (208) is provided at the front end of the connecting plate (207), the clamping block (208) is consistent in size with the clamping groove (202), and a pull rod (209) is provided at the center of the inner wall of the connecting plate (207).

4. The dynamic environment monitoring device according to claim 1, characterized in that: The rotating assembly comprises a threaded rod (2) arranged on the inner wall of the mounting slide rail (1); the sliding block (201) is located inside the mounting slide rail (1) and is slidably connected; the sliding block (201) is threadedly connected to the threaded rod (2); and mounting brackets (5) are arranged at both ends of the mounting slide rail (1).

5. The dynamic environment monitoring device according to claim 1, characterized in that: A driving shaft (303) is arranged on the right side of the lower end surface of the installation body (203), a driving gear (304) is arranged at the lower end of the driving shaft (303), a tooth block (302) is arranged on the outer wall of the fixing ring (301), and the tooth block (302) is meshingly connected with the driving gear (304).

6. The dynamic environment monitoring device according to claim 1, characterized in that: The support assembly includes a first rotating shaft (403) arranged on the inner wall of the support block (401), the monitoring body (402) is located at the end of the support block (401), the lower end surface of the fixing ring (301) is provided with a fixing plate (404), the inner wall of the fixing plate (404) is provided with a second rotating shaft (405), the outer wall of the second rotating shaft (405) is provided with an electric push rod (406), and the support block (401) is connected to the electric push rod (406) through the first rotating shaft (403).

Citation Information

Patent Citations

  • Power and environment monitoring device

    CN218270816U