Power failure alarm device for machine room UPS (Uninterrupted Power Supply) system
By introducing monitoring, communication, and alarm components into the UPS system in the data center, and utilizing the power failure alarm device of the 4G communication module and the call button module, the problem of the lack of power failure alarm in the UPS system was solved, enabling real-time notification and remote monitoring, thereby improving the security and operation and maintenance efficiency of the data center.
Patent Information
- Application Number
- CN202520184833.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-06
AI Technical Summary
Existing UPS systems in data centers lack power outage alarm functions, which means that managers cannot be notified in time when power is interrupted, increasing the risk of data loss and hardware damage.
A power failure alarm device for a computer room UPS system was designed, comprising a monitoring component, a communication component, and an alarm component. It uses a 4G external communication module to send SMS alarms, combines a call button module for audible and visual alarms, and collects data in real time through a power supply monitoring module to achieve remote monitoring and management.
It enables immediate notification to management personnel when the UPS system loses power, shortening emergency response time, improving the security of the data center and the convenience of operation and maintenance management, and reducing implementation costs.
Smart Images

Figure CN223796992U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of UPS system technology for computer rooms, specifically a power failure alarm device for UPS systems in computer rooms. Background Technology
[0002] A computer room is a basic engineering facility designed and configured to ensure the safe, stable and reliable operation of critical equipment and devices in a computer room. In the IT industry, a computer room generally refers to a place where servers are stored, which provide IT services to users and employees.
[0003] Currently, many data centers still use UPS (Uninterruptible Power Supply) systems that, while old, still possess core mechanical performance sufficient for daily operations. Given the high cost of replacing the entire UPS system, many organizations choose to continue using these older devices. However, these older UPS systems have a significant drawback: the lack of a power outage alarm function. This means that in the event of a power outage, data center administrators cannot be immediately notified, delaying the activation of emergency response mechanisms and increasing the potential risk of data loss and hardware damage.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed a power failure alarm device for computer room UPS systems. Utility Model Content
[0005] The purpose of this invention is to provide a power failure alarm device for a computer room UPS system to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a power failure alarm device for a computer room UPS system, comprising a monitoring component and a communication component. The communication component is mounted on the top of the monitoring component, and an alarm component is mounted on one side of the monitoring component. A strong magnetic block is mounted on the side of the monitoring component away from the alarm component. The monitoring component includes a power supply monitoring module, a wiring module, a fixing angle plate, and a fixing base. Two sets of wiring modules of different specifications are mounted on the side of the power supply monitoring module away from the communication component. A fixing angle plate is mounted on the surface of the wiring module near the alarm component, and a fixing base is mounted on the side of the wiring module away from the fixing angle plate.
[0007] Furthermore, the communication component includes an external communication module, a warning light, an assembly corner plate, and a connecting wire. The external communication module has a warning light installed on its top, assembly corner plates symmetrically installed on both sides of its exterior, and a connecting wire installed on its exterior.
[0008] Furthermore, the G external communication module and the assembly corner plate are integrated into one structure, and the G external communication module is electrically connected to the monitoring component through a connecting line.
[0009] Furthermore, the power supply monitoring module has a hole structure on the side surface near the external communication module G that matches the mounting corner plate structure, and the fixing corner plate and the power supply monitoring module are integrated into one structure.
[0010] Furthermore, the alarm component includes a call button module, a connecting post, and a connecting groove. The call button module has a connecting post installed on its side, and the upper and lower surfaces of the connecting post are provided with connecting grooves.
[0011] Furthermore, the mutual caller module and the connecting pile are integrated into one structure, and the inner surface structure of the connecting groove matches the surface structure of one side of the assembly corner plate.
[0012] Furthermore, the monitoring component, communication component, and alarm component are connected by a detachable structure, and the monitoring component is movably connected to the strong magnetic block.
[0013] Furthermore, the fixing base has holes for mounting bolts at its four opposite corners, and the fixing base has grooves for embedding the strong magnet on the side surface near the strong magnet at its four opposite corners.
[0014] This utility model provides a power failure alarm device for a UPS system in a computer room, which has the following advantages:
[0015] 1. This utility model, by setting up a 4G external communication module 201 and a call button module 301, enables alarm information to be sent to the mobile phones of management personnel via SMS immediately in the event of a power outage in the computer room, ensuring that they can take rapid countermeasures and effectively shorten the emergency response time. The call button module, as a key component for triggering and amplifying alarm signals, can be quickly activated when the UPS output power is interrupted. In conjunction with the warning light on the top of the 4G external communication module, it can realize the function of audible and visual alarms, prompting management personnel to take immediate countermeasures, thereby facilitating emergency maintenance of the computer room.
[0016] 2. This utility model incorporates a power supply monitoring module that collects and records real-time power supply data for the computer room. Through built-in algorithms, it enables continuous monitoring of the computer room's power status and provides power efficiency analysis reports when necessary. Combined with a 4G external communication module, utilizing 4G wireless communication technology, alarm information can be transmitted instantly and stably to the mobile phone number designated by the administrator, regardless of geographical location. This structure allows administrators to receive real-time power supply information summaries via their mobile phones without physically being present in the computer room, facilitating remote monitoring and management and improving operational efficiency.
[0017] 3. This utility model employs a modular structure for the monitoring, communication, and alarm components. The communication component utilizes mounting angle plates on both sides of the 4G external communication module, which align with holes on one side of the power supply monitoring module, and is fixed with bolts. The intercom module utilizes connecting posts with connecting grooves on both sides to connect with the fixing angle plate on one side of the power supply monitoring module, and is then bolted together. The strong magnetic block is embedded in the power supply monitoring module on the side furthest from the alarm component. Furthermore, the entire device can be seamlessly attached to the inside of the control box using the strong magnetic block for flexible assembly. Alternatively, it can be fixed inside the control box using a mounting base and bolts, accommodating different installation methods. The convenient combination of components makes the implementation cost lower and easier to install and maintain compared to completely replacing the UPS system, providing an economical and feasible solution for the intelligent upgrading of data center facilities. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the main body of a power failure alarm device for a computer room UPS system according to the present invention;
[0019] Figure 2 This is an exploded structural diagram of the main body of a power failure alarm device for a computer room UPS system according to the present invention;
[0020] Figure 3 This is a three-dimensional structural diagram of the monitoring component of a power failure alarm device for a computer room UPS system according to the present invention;
[0021] Figure 4 This is a three-dimensional structural diagram of the communication component of a power failure alarm device for a computer room UPS system according to the present invention.
[0022] In the diagram: 1. Monitoring component; 101. Power supply monitoring module; 102. Wiring module; 103. Fixing angle plate; 104. Fixing base; 2. Communication component; 201. 4G external communication module; 202. Warning light; 203. Assembly angle plate; 204. Connecting wire; 3. Alarm component; 301. Intercom module; 302. Connecting stake; 303. Connecting groove; 4. Strong magnetic block. Detailed Implementation
[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0024] like Figures 1 to 4 As shown, a power failure alarm device for a UPS system in a computer room includes a monitoring component 1 and a communication component 2. The communication component 2 is mounted on the top of the monitoring component 1, and an alarm component 3 is mounted on one side of the monitoring component 1. A strong magnetic block 4 is mounted on the side of the monitoring component 1 away from the alarm component 3. The monitoring component 1 includes a power monitoring module 101, a wiring module 102, a fixing angle plate 103, and a fixing base 104. Two sets of wiring modules 102 of different specifications are mounted on the side of the power monitoring module 101 away from the communication component 2. A fixing angle plate 103 is mounted on the surface of the wiring module 102 near the alarm component 3, and a fixing base 104 is mounted on the side of the wiring module 102 away from the fixing angle plate 103. The power monitoring module 101 is mounted on the side of the alarm component 3. The surface of the 4G external communication module 201 is provided with a hole structure that matches the structure of the mounting corner plate 203. The fixing corner plate 103 and the power monitoring module 101 are integrated into one structure. The fixing base 104 has holes for mounting bolts at its four opposite corners. The surface of the fixing base 104 near the strong magnet 4 has grooves for embedding the strong magnet 4 at its four opposite corners. With the 4G external communication module 201 and the call button module 301, the use of the 4G external communication module 201 ensures that if the computer room experiences a power outage, the alarm information will be immediately sent to the mobile phones of the management personnel via SMS, ensuring that they can take rapid countermeasures and effectively shorten the emergency response time.
[0025] like Figures 1 to 4As shown, the monitoring component 1, communication component 2, and alarm component 3 are connected by a detachable structure. The monitoring component 1 is movably connected to the strong magnetic block 4. The communication component 2 includes a 4G external communication module 201, a warning light 202, an mounting plate 203, and a connecting cable 204. The warning light 202 is mounted on the top of the 4G external communication module 201, and mounting plates 203 are symmetrically mounted on both sides of the 4G external communication module 201. A connecting cable 204 is also mounted on the outer side of the 4G external communication module 201. The 4G external communication module 201 and the mounting plate... The components 203 are arranged as a single unit, and the 4G external communication module 201 is electrically connected to the monitoring component 1 via the connecting cable 204. The power supply monitoring module 101 is provided, which collects and records the power supply data of the computer room in real time. Through the processing of the built-in algorithm, it realizes continuous monitoring of the power status of the computer room and can provide power supply efficiency analysis reports when necessary. With the use of the 4G external communication module 201, the 4G wireless communication technology is used to ensure that alarm information can be transmitted to the mobile phone number designated by the management personnel in a timely and stable manner without geographical restrictions.
[0026] like Figures 1 to 4 As shown, the alarm component 3 includes a call button module 301, a connecting post 302, and a connecting groove 303. The call button module 301 is equipped with a connecting post 302 on its side, and the upper and lower surfaces of the connecting post 302 are provided with connecting grooves 303. The call button module 301 and the connecting post 302 are integrated into one structure. The inner surface structure of the connecting groove 303 matches the surface structure of one side of the mounting angle plate 203. The communication component 2 uses the mounting angle plates 203 on both sides of the 4G external communication module 201 to face the holes on one side of the power supply monitoring module 101 and is fixed with bolts. The call button module 301 can be combined with the connecting post 302 with connecting grooves 303 on both sides of the power supply monitoring module 101 by docking and bolts.
[0027] In summary, as Figures 1 to 4 As shown, the UPS system in the computer room uses a power failure alarm device. When in use, the 4G external communication module 201 is first fixed to the side of the power supply monitoring module 101 using the mounting corner plates 203 on both sides and bolts. At the same time, the connecting line 204 is connected to the power supply monitoring module 101, so that the monitoring component 1 and the communication component 2 are combined and fixed together.
[0028] Then, the intercom module 301 uses the connecting grooves 303 with connecting posts 302 on both sides to connect to the two sets of fixed angle plates 103 on one side of the power monitoring module 101, and uses bolts to connect and fix the two, thereby combining and installing the alarm component 3 and the monitoring component 1.
[0029] According to usage requirements, a strong magnetic block 4 can be embedded in one side of the mounting base 104 to magnetically attach the entire device to the inside of the electrical control cabinet. The two sets of wiring modules 102 on one side of the power supply monitoring module 101 are interconnected with the UPS system in the computer room. With the cooperation of the power supply monitoring module 101, the intercom module 301, and the 4G external communication module 201 connected to the warning light 202, the UPS system is monitored in real time. This effectively solves the problem of the lack of power failure alarm function in old computer room UPS systems, which not only enhances the safety and stability of the computer room, but also significantly improves the convenience of operation and maintenance management.
[0030] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A power failure alarm device for a machine room UPS system, comprising a monitoring component (1) and a communication component (2), characterized in that: The top of the monitoring assembly (1) is provided with a communication assembly (2), one side of the monitoring assembly (1) is provided with an alarm assembly (3), and the side of the monitoring assembly (1) away from the alarm assembly (3) is provided with a strong magnetic block (4), the monitoring assembly (1) comprises a power supply power monitoring module (101), a wiring module (102), a fixed angle plate (103) and a fixed seat (104), two groups of wiring modules (102) of different specifications are installed on the side of the power supply power monitoring module (101) away from the communication assembly (2), the fixed angle plate (103) is installed on the surface of the side of the wiring module (102) close to the alarm assembly (3), and the fixed seat (104) is installed on the side of the wiring module (102) away from the fixed angle plate (103).
2. The power failure alarm device for a machine room UPS system according to claim 1, wherein The communication assembly (2) comprises a 4G external communication module (201), a warning light (202), an assembly angle plate (203) and a connecting line (204), the top of the 4G external communication module (201) is provided with a warning light (202), the two sides of the 4G external communication module (201) are symmetrically provided with assembly angle plates (203), and the outer side of the 4G external communication module (201) is also provided with a connecting line (204).
3. The power failure alarm device for a machine room UPS system according to claim 2, wherein The 4G external communication module (201) and the assembly angle plate (203) are arranged in an integral structure, and the 4G external communication module (201) is electrically connected with the monitoring assembly (1) through the connecting line (204).
4. The power failure alarm device for a machine room UPS system according to claim 2, wherein The side surface of the power supply power monitoring module (101) close to the 4G external communication module (201) is provided with a hole structure matched with the structure of the assembly angle plate (203), and the fixed angle plate (103) and the power supply power monitoring module (101) are arranged in an integral structure.
5. The power failure alarm device for a machine room UPS system according to claim 2, wherein The alarm assembly (3) comprises a shout module (301), a connecting pile (302) and a connection groove (303), the side of the shout module (301) is provided with a connecting pile (302), and the upper and lower side surfaces of the connecting pile (302) are provided with connection grooves (303).
6. The power failure alarm device for a machine room UPS system according to claim 5, wherein The shout module (301) and the connecting pile (302) are arranged in an integral structure, and the inner surface structure of the connection groove (303) is matched with the side surface structure of the assembly angle plate (203).
7. The power failure alarm device for a machine room UPS system according to claim 1, wherein The monitoring assembly (1), the communication assembly (2) and the alarm assembly (3) are connected and combined in a detachable structure, and the monitoring assembly (1) and the strong magnetic block (4) are movably connected.
8. The power failure alarm device for a machine room UPS system according to claim 1, wherein The four diagonal corners of the fixed seat (104) are provided with hole structures for installing bolts, and the side surface of the fixed seat (104) close to the strong magnetic block (4) is provided with a groove structure for inlaying the strong magnetic block (4) and is arranged at the four diagonal corners of the fixed seat (104).