Early warning type socket
By integrating power conduction, data communication, and intelligent monitoring modules into the socket, real-time monitoring and multi-level early warning of equipment operation status can be achieved, solving the problems of single monitoring dimensions and weak data interaction capabilities of traditional sockets, and improving the safety and efficiency of automated production lines.
Patent Information
- Application Number
- CN202511754865.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-02-06
AI Technical Summary
Traditional sockets lack real-time monitoring of equipment operating status, resulting in a high risk of electrical faults. Furthermore, their weak data interaction capabilities make them difficult to integrate into intelligent production line systems, thus affecting production line integration efficiency.
The design incorporates a pre-warning socket, integrating a power conduction module, a data communication connection module, and an intelligent monitoring and early warning module. It collects voltage and temperature data in real time, judges and alarms based on multi-level thresholds, supports data interaction between devices, and enables independent power supply and data transmission.
It improves the accuracy of fault prediction, reduces the risk of electrical fires and equipment damage, enhances power supply and data transmission efficiency, supports local alarms and remote uploads, and is suitable for automated production lines.
Smart Images

Figure CN121484573A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of socket safety technology, and in particular to a warning socket. Background Technology
[0002] In modern industrial automated production lines, various functional devices typically rely on sockets for power supply and data communication. Traditional sockets only have basic power transmission functions and lack the ability to monitor operating status (such as voltage and temperature) in real time. With increasing production line complexity and equipment density, the risk of electrical faults (such as short circuits, arcing, overheating, and even fires) caused by socket aging, overload, poor contact, or abnormal ambient temperatures has significantly increased. While some existing smart sockets possess single-parameter (such as current or temperature) monitoring capabilities, they generally suffer from the following shortcomings: 1. The monitoring dimensions are limited, making it impossible to comprehensively assess the equipment's operating status; 2. The lack of an early warning mechanism often results in protection actions being triggered only after a fault occurs, making it difficult to achieve "prevention in advance"; 3. Weak data interaction capabilities, lack of support for efficient data transmission between devices or with host computers, making it difficult to integrate into intelligent production line systems; 4. The lack of standardized data communication interfaces makes it difficult for different devices to work together, affecting the efficiency of production line integration.
[0003] In addition, in automated production environments, each functional component often requires independent power supply and data acquisition. Traditional centralized power supply and communication architectures suffer from problems such as long lines, signal attenuation, high energy consumption, and difficult maintenance. Summary of the Invention
[0004] This invention addresses the problems of existing technologies by providing a pre-warning socket that collects voltage and temperature data in real time and makes comprehensive judgments based on preset multi-level thresholds. When a problem occurs, the alarm unit issues an alarm indication, realizing real-time online monitoring of the socket and the functional components connected to the socket. This improves the accuracy of fault prediction, avoids safety accidents such as electrical fires or equipment damage on the production line, and enables independent power supply and data transmission for each functional component on the production line, reducing long-distance power supply and data transmission and improving power supply efficiency and data transmission efficiency.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: This invention provides a warning socket, which includes a socket body and a power conduction module, a data communication connection module, and an intelligent monitoring and warning module respectively disposed on the socket body. The power conduction module includes a power socket, and the inner wall of the power socket is provided with a first metal terminal. The data communication connection module includes a data communication socket and a data transmission connection hole, and the inner wall of the data communication socket is provided with a second metal terminal. The data communication socket and the data transmission connection hole are connected by a signal. The data transmission connection hole is connected to an adjacent warning socket or to a host computer through a data transmission line. The intelligent monitoring and early warning module includes a voltage monitoring unit, a temperature monitoring unit, an alarm unit, a wireless communication unit, and a main control processing unit. The voltage monitoring unit, temperature monitoring unit, alarm unit, and wireless communication unit are electrically connected to the main control processing unit. The voltage monitoring unit is used to monitor the operating voltage, and the temperature monitoring unit is used to monitor the operating temperature. The main control processing unit is equipped with a multi-level early warning mode. The multi-level early warning mode determines whether the system is working normally by combining the monitoring data from the voltage monitoring unit and the monitoring data from the temperature monitoring unit. If it is determined that a fault is about to occur, an emergency data packet encapsulation is initiated in advance, and the encapsulated data packet is uploaded.
[0006] The socket body is further equipped with a first locking assembly located above the power socket. The first locking assembly includes a first rotating locking plate, a first rotating shaft, and a first spring. The first rotating shaft is rotatably mounted on the socket body, and the first spring is movably sleeved on the outer periphery of the first rotating shaft. One end of the first rotating locking plate is connected to the upper end of the first rotating shaft, and a first locking groove is provided in the middle of the first rotating locking plate. The other end of the first rotating locking plate is provided with a first handle. The upper end of the first spring is connected to the first rotating locking plate, and the lower end of the first spring is connected to the socket body.
[0007] The socket body is further equipped with a second locking assembly, which is located above the data communication jack. The second locking assembly includes a second rotating locking plate, a second rotating shaft, and a second spring. The second rotating shaft is rotatably mounted on the socket body, and the second spring is movably sleeved on the outer periphery of the second rotating shaft. One end of the second rotating locking plate is connected to the upper end of the second rotating shaft, and a second locking groove is provided in the middle of the second rotating locking plate. The other end of the second rotating locking plate is provided with a second handle. The upper end of the second spring is connected to the second rotating locking plate, and the lower end of the second spring is connected to the socket body.
[0008] The socket body has magnets at the bottom corners and shock-absorbing pads at the bottom of the magnets.
[0009] The voltage monitoring unit includes a voltage sensor.
[0010] The temperature monitoring unit includes a temperature sensor.
[0011] The alarm unit includes a circuit board and a buzzer, a receive button, a reset button, and multiple indicator lights respectively installed on the circuit board. The buzzer, receive button, reset button, and multiple indicator lights are electrically connected to the main control processing unit.
[0012] The multi-level early warning mode includes a voltage early warning mode and a temperature early warning mode; The voltage warning mode is configured with a voltage warning threshold, a voltage severity threshold, and a voltage fault threshold; the temperature warning mode is configured with a temperature warning threshold, a temperature severity threshold, and a temperature fault threshold. When the operating voltage detected by the voltage monitoring unit is less than the voltage warning threshold and the operating temperature detected by the temperature monitoring unit is less than the temperature warning threshold, multiple indicator lights will simultaneously remain on green. When the operating voltage detected by the voltage monitoring unit is between the voltage warning threshold and the voltage severity threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the temperature warning threshold and the temperature severity threshold, multiple indicator lights will simultaneously illuminate yellow. When the operating voltage detected by the voltage monitoring unit is between the severe voltage threshold and the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the severe temperature threshold and the temperature fault threshold, multiple indicator lights will simultaneously illuminate red, and the buzzer will sound an alarm. When the operating voltage detected by the voltage monitoring unit is greater than the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is greater than the temperature fault threshold, multiple indicator lights flash red simultaneously, and the buzzer sounds an alarm.
[0013] Specifically, when the operating voltage detected by the voltage monitoring unit is between the severe voltage threshold and the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the severe temperature threshold and the temperature fault threshold, an early warning signal is sent to the host computer or / and the operator's terminal for early warning.
[0014] Specifically, when the operating voltage detected by the voltage monitoring unit is greater than the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is greater than the temperature fault threshold, the fault timestamp and original data are latched, emergency data packet encapsulation is initiated, and the encapsulated data packet is uploaded to the host computer or / and the operator's terminal.
[0015] The beneficial effects of this invention are: This invention features an ingenious design, comprising a socket body, a power conduction module, a data communication connection module, and an intelligent monitoring and early warning module. The power conduction module transmits power via a first metal terminal on its inner wall. The data communication connection module uses a second metal terminal, a data communication jack, and a data transmission connector. Device functional components connect to the data communication jack via a data transmission connector for easy data acquisition. The data transmission connector connects to adjacent early warning sockets or a host computer via a data transmission line, supporting data interaction between devices or with a host computer, facilitating use in automated production lines. The intelligent monitoring and early warning module integrates a voltage sensor, a temperature sensor, and a main control processing unit. The system includes an alarm unit and a wireless communication unit, which collect voltage and temperature data in real time and make comprehensive judgments based on preset multi-level thresholds. When a problem occurs, the alarm unit issues an alarm indication, realizing real-time online monitoring of the operating status (voltage, temperature) of the socket and the functional components connected to the socket. Furthermore, it improves the accuracy of fault prediction through multi-source data fusion judgment. It supports local alarms and remote uploads, facilitating timely response by maintenance personnel and preventing safety accidents such as electrical fires or equipment damage on the production line. This invention can be applied to automated production lines to achieve independent power supply and data transmission for each functional component of the production line, reducing long-distance power supply and data transmission and improving power supply efficiency and data transmission efficiency. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of a warning socket according to the present invention.
[0017] Figure 2 This is a schematic diagram of a warning socket according to the present invention.
[0018] Figure 3 This is a schematic diagram of the structure of the first metal terminal of the present invention.
[0019] Figure 4 This is a schematic diagram of the structure of the first locking component of the present invention.
[0020] exist Figures 1 to 4 The reference numerals in the figures include: 100. Socket body; 200. Power supply module; 300. Data communication connection module; 1. Power socket; 2. First metal terminal; 3. Data communication socket; 4. Data transmission connection hole; 5. Second metal terminal; 6. First rotating locking plate; 7. First rotating shaft; 8. First spring; 9. First handle; 10. Second rotating locking plate; 11. Second rotating shaft; 12. Second handle; 13. Buzzer; 14. Accept button; 15. Reset button; 16. Indicator light; 17. Contact spring; 18. Insertion space; 19. Arc-shaped protrusion; 20. First locking groove; 21. Second locking groove. Detailed Implementation
[0021] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention. The present invention will be described in detail below with reference to the accompanying drawings.
[0022] A type of warning socket, such as Figures 1 to 4 As shown, it includes a socket body 100 and a power conduction module 200, a data communication connection module 300, and an intelligent monitoring and early warning module respectively disposed on the socket body 100. The power conduction module 200 includes a power socket 1, and a first metal terminal 2 is disposed on the inner wall of the power socket 1. The data communication connection module 300 includes a data communication socket 3 and a data transmission connection hole 4. A second metal terminal 5 is disposed on the inner wall of the data communication socket 3. The data communication socket 3 and the data transmission connection hole 4 are connected to a signal. The data transmission connection hole 4 is connected to an adjacent early warning socket or to a host computer through a data transmission line. The intelligent monitoring and early warning module includes a voltage monitoring unit, a temperature monitoring unit, an alarm unit, a wireless communication unit, and a main control processing unit. The voltage monitoring unit, temperature monitoring unit, alarm unit, and wireless communication unit are electrically connected to the main control processing unit. The voltage monitoring unit monitors the operating voltage, and the temperature monitoring unit monitors the operating temperature. In this embodiment, the voltage monitoring unit includes a voltage sensor. The temperature monitoring unit includes a temperature sensor; both the voltage sensor and the temperature sensor are existing technologies and will not be described in detail here. The main control processing unit is equipped with a multi-level early warning mode. This multi-level early warning mode determines whether normal operation is being performed by comprehensively analyzing the monitoring data from the voltage monitoring unit and the temperature monitoring unit. If a fault is detected as imminent, an emergency data packet encapsulation is initiated in advance, and the encapsulated data packet is uploaded.
[0023] Specifically, the embodiment of this application is ingeniously designed, consisting of a socket body 100, a power conduction module 200, a data communication connection module 300, and an intelligent monitoring and early warning module. The power conduction module 200 transmits power through a first metal terminal 2 located on its inner wall. The data communication connection module 300 uses a second metal terminal 5, a data communication socket 3, and a data transmission connection hole 4. After the device functional components are connected to the data communication socket 3 via the data transmission connector, it is convenient to collect data from the device functional components. The data transmission connection hole 4 connects to an adjacent early warning socket or to a host computer via a data transmission line, supporting data interaction between devices or with a host computer, which is convenient for use in automated production lines. The intelligent monitoring and early warning module integrates a voltage sensor. The device includes a voltage and temperature sensor, a main control processing unit, an alarm unit, and a wireless communication unit. It collects voltage and temperature data in real time and makes comprehensive judgments based on preset multi-level thresholds. When a problem occurs, the alarm unit issues an alarm indication, realizing real-time online monitoring of the operating status (voltage, temperature) of the socket and the functional components connected to the socket. Furthermore, it improves the accuracy of fault prediction through multi-source data fusion judgment. It supports local alarms and remote uploads, facilitating timely response by maintenance personnel and avoiding safety accidents such as electrical fires or equipment damage on the production line. The embodiments of this application can be applied to automated production lines to realize independent power supply and data transmission for each functional component, reduce long-distance power supply and data transmission, and improve power supply efficiency and data transmission efficiency.
[0024] The socket in this application embodiment adopts an integrated design, combining power supply, communication, and monitoring into one, saving space and wiring; it can be directly applied to long-distance production lines, is plug-and-play, supports rapid module replacement, and improves production line flexibility; proactive early warning: shifting from "post-event maintenance" to "pre-event early warning", improving safety and providing an early warning function. This application embodiment can be applied to modular intelligent production lines such as automobile assembly lines, electronic manufacturing, and food packaging, and is a key hardware foundation for realizing module autonomy and collaborative control in "intelligent factories".
[0025] In this embodiment, the alarm unit includes a circuit board and a buzzer 13, a receive button 14, a reset button 15, and multiple indicator lights 16 respectively disposed on the circuit board. The buzzer 13, receive button 14, reset button 15, and multiple indicator lights 16 are electrically connected to the main control processing unit. Specifically, the buzzer 13, receive button 14, reset button 15, and multiple indicator lights 16 are integrated on the circuit board, making the alarm unit an integrated structure. This eliminates the need for multiple wires to connect the buzzer 13, receive button 14, reset button 15, and multiple indicator lights 16, reducing structural redundancy, avoiding messy wiring, and facilitating integrated disassembly and replacement.
[0026] In this embodiment of the application, the multi-level early warning mode includes a voltage early warning mode and a temperature early warning mode; the voltage early warning mode is configured with a voltage warning threshold, a voltage severity threshold, and a voltage fault threshold; the temperature early warning mode is configured with a temperature warning threshold, a temperature severity threshold, and a temperature fault threshold. When the operating voltage detected by the voltage monitoring unit is less than the voltage warning threshold and the operating temperature detected by the temperature monitoring unit is less than the temperature warning threshold, multiple indicator lights 16 will simultaneously remain on green. When the operating voltage detected by the voltage monitoring unit is between the voltage warning threshold and the voltage severity threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the temperature warning threshold and the temperature severity threshold, multiple indicator lights 16 will simultaneously illuminate yellow. When the operating voltage detected by the voltage monitoring unit is between the severe voltage threshold and the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the severe temperature threshold and the temperature fault threshold, multiple indicator lights 16 will simultaneously illuminate red, and the buzzer 13 will sound an alarm. When the operating voltage detected by the voltage monitoring unit is greater than the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is greater than the temperature fault threshold, multiple indicator lights 16 flash red lights simultaneously, and the buzzer 13 sounds an alarm.
[0027] Specifically, when the operating voltage detected by the voltage monitoring unit is between the severe voltage threshold and the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the severe temperature threshold and the temperature fault threshold, an early warning signal is sent to the host computer or / and the operator's terminal for early warning.
[0028] Specifically, when the operating voltage detected by the voltage monitoring unit is greater than the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is greater than the temperature fault threshold, the fault timestamp and original data are latched, emergency data packet encapsulation is initiated, and the encapsulated data packet is uploaded to the host computer or / and the operator's terminal.
[0029] Specifically, under the above settings, the system sets three threshold levels for voltage / temperature (warning, critical, fault), and triggers different levels of audible and visual alerts accordingly: A solid green light indicates normal operation. A constantly lit yellow light indicates a minor abnormality and requires attention. Red light constantly on + buzzer alarm 13: Serious abnormality, intervention required; Red light flashing + buzzer alarm 13: Limit exceeded, fault status entered; Meanwhile, in severe or faulty conditions, the system automatically encapsulates emergency data packets and uploads them to the host computer or operator's terminal via wireless communication unit.
[0030] Under the above settings, this application embodiment realizes a visual hierarchical early warning mechanism, which makes it easy for users to quickly identify the risk level; the human-computer interaction design (button + indicator light 16) supports on-site confirmation and reset operations; the automatic data reporting function ensures that key fault information is not lost, providing data support for post-event analysis and prevention; and enhances the system's proactive safety protection capabilities, shifting from "post-event processing" to "pre-event early warning".
[0031] In this embodiment, the socket body 100 is further equipped with a first locking assembly. The first locking assembly is located above the power socket 1. The first locking assembly includes a first rotating locking plate 6, a first rotating shaft 7, and a first spring 8. The first rotating shaft 7 is rotatably mounted on the socket body 100, and the first spring 8 is movably sleeved on the outer periphery of the first rotating shaft 7. One end of the first rotating locking plate 6 is connected to the upper end of the first rotating shaft 7, and a first locking groove 20 is provided in the middle of the first rotating locking plate 6. A first handle 9 is provided at the other end of the first rotating locking plate 6. The upper end of the first spring 8 is connected to the first rotating locking plate 6, and the lower end of the first spring 8 is connected to the socket body 100. Specifically, the first locking assembly, including the first rotating locking plate 6, the first rotating shaft 7, and the first spring 8, is provided above the power socket 1. When the plug is inserted, the first handle 9 can be turned to make the first rotating locking plate 6 rotate around the rotating shaft, and the first locking groove 20 on it locks the plug to prevent accidental dislodgement; the spring provides a rebound force to facilitate unlocking and reset. With the above settings, the power plug is physically locked to prevent poor contact or power failure due to vibration or pulling; the connection reliability is improved in high-vibration or mobile scenarios such as industrial production; the structure is simple and easy to operate, and locking / releasing can be achieved without additional tools.
[0032] In this embodiment, the power socket 1 is arc-shaped or waist-shaped. The first metal terminal 2 in the power socket 1 includes two opposing contact springs 17, forming an insertion space 18 between the two contact springs 17 for the insertion of the power connector plug of the functional component. The insertion space 18 between the two contact springs 17 is trapezoidal or figure-eight shaped. With this configuration, after the power connector plug of the functional component is inserted into the power socket 1, it can be rotated to the narrow end of the insertion space 18, so that the two contact springs 17 can better clamp the power connector plug of the functional component, thereby improving the reliability and stability of contact conduction. Furthermore, an arc-shaped protrusion 19 is provided on the inner sidewall of the contact spring 17 near the narrow end of the insertion space 18. The arc-shaped protrusion 19 can further improve the contact reliability with the power connector plug.
[0033] In this embodiment, the socket body 100 is further equipped with a second locking assembly. The second locking assembly is located above the data communication socket 3. The second locking assembly includes a second rotating locking plate 10, a second rotating shaft 11, and a second spring. The second rotating shaft 11 is rotatably mounted on the socket body 100. The second spring is movably sleeved on the outer periphery of the second rotating shaft 11. One end of the second rotating locking plate 10 is connected to the upper end of the second rotating shaft 11. A second locking groove 21 is provided in the middle of the second rotating locking plate 10. A second handle 12 is provided at the other end of the second rotating locking plate 10. The upper end of the second spring is connected to the second rotating locking plate 10, and the lower end of the second spring is connected to the socket body 100. Specifically, the second locking component has a similar structure to the first locking component. The second locking component is set above the data communication socket 3 and mechanically fixes the data communication plug through the second locking groove 21. This ensures the stability of the data communication connection and avoids communication interruption or data errors due to loose plugs. It works in conjunction with the power locking to achieve a reliable connection between power and data channels. It is particularly suitable for industrial IoT, intelligent monitoring and other application scenarios that require continuous and stable data transmission.
[0034] In this embodiment, magnet blocks are respectively provided at the bottom corners of the socket body 100, and shock-absorbing pads are provided at the lower ends of the magnet blocks. Specifically, the magnet blocks can be quickly fixed by adhering to the metal surface of the production line frame, while the shock-absorbing pads buffer external vibrations and shocks. The magnetic installation method facilitates rapid deployment in scenarios such as metal cabinets and equipment housings, eliminating the need for drilling or screws; the shock-absorbing pads effectively absorb vibration energy, reducing the risk of damage to internal electronic components due to vibration; and it enhances the product's adaptability and durability in complex industrial environments, extending its service life.
[0035] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present invention. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present invention without departing from the scope of the present invention are within the scope of the present invention.
Claims
1. A warning socket, characterized in that: The device includes a socket body and a power conduction module, a data communication connection module, and an intelligent monitoring and early warning module respectively disposed on the socket body. The power conduction module includes a power socket, and the inner wall of the power socket is provided with a first metal terminal. The data communication connection module includes a data communication socket and a data transmission connection hole, and the inner wall of the data communication socket is provided with a second metal terminal. The data communication socket and the data transmission connection hole are connected to a signal. The data transmission connection hole is connected to an adjacent early warning socket or to a host computer through a data transmission line. The intelligent monitoring and early warning module includes a voltage monitoring unit, a temperature monitoring unit, an alarm unit, a wireless communication unit, and a main control processing unit. The voltage monitoring unit, temperature monitoring unit, alarm unit, and wireless communication unit are electrically connected to the main control processing unit. The voltage monitoring unit is used to monitor the operating voltage, and the temperature monitoring unit is used to monitor the operating temperature. The main control processing unit is equipped with a multi-level early warning mode. The multi-level early warning mode determines whether the system is working normally by combining the monitoring data from the voltage monitoring unit and the monitoring data from the temperature monitoring unit. If it is determined that a fault is about to occur, an emergency data packet encapsulation is initiated in advance, and the encapsulated data packet is uploaded.
2. The early warning socket according to claim 1, characterized in that: The socket body is also equipped with a first locking assembly, which is located above the power socket. The first locking assembly includes a first rotating locking plate, a first rotating shaft, and a first spring. The first rotating shaft is rotatably mounted on the socket body, and the first spring is movably sleeved on the outer periphery of the first rotating shaft. One end of the first rotating locking plate is connected to the upper end of the first rotating shaft, and a first locking groove is provided in the middle of the first rotating locking plate. The other end of the first rotating locking plate is provided with a first handle, and the upper end of the first spring is connected to the first rotating locking plate, while the lower end of the first spring is connected to the socket body.
3. The early warning socket according to claim 1, characterized in that: The socket body is also equipped with a second locking assembly, which is located above the data communication jack. The second locking assembly includes a second rotating locking plate, a second rotating shaft, and a second spring. The second rotating shaft is rotatably mounted on the socket body, and the second spring is movably sleeved on the outer periphery of the second rotating shaft. One end of the second rotating locking plate is connected to the upper end of the second rotating shaft, and a second locking groove is provided in the middle of the second rotating locking plate. A second handle is provided at the other end of the second rotating locking plate. The upper end of the second spring is connected to the second rotating locking plate, and the lower end of the second spring is connected to the socket body.
4. The early warning socket according to claim 1, characterized in that: Magnet blocks are provided at the bottom corners of the socket body, and shock-absorbing pads are provided at the lower ends of the magnet blocks.
5. A warning socket according to claim 1, characterized in that: The voltage monitoring unit includes a voltage sensor.
6. A warning socket according to claim 1, characterized in that: The temperature monitoring unit includes a temperature sensor.
7. A warning socket according to claim 1, characterized in that: The alarm unit includes a circuit board and a buzzer, a receive button, a reset button, and multiple indicator lights respectively installed on the circuit board. The buzzer, receive button, reset button, and multiple indicator lights are electrically connected to the main control processing unit.
8. A warning socket according to claim 7, characterized in that: The multi-level early warning mode includes a voltage early warning mode and a temperature early warning mode; The voltage warning mode is configured with a voltage warning threshold, a voltage severity threshold, and a voltage fault threshold; the temperature warning mode is configured with a temperature warning threshold, a temperature severity threshold, and a temperature fault threshold. When the operating voltage detected by the voltage monitoring unit is less than the voltage warning threshold and the operating temperature detected by the temperature monitoring unit is less than the temperature warning threshold, multiple indicator lights will simultaneously remain on green. When the operating voltage detected by the voltage monitoring unit is between the voltage warning threshold and the voltage severity threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the temperature warning threshold and the temperature severity threshold, multiple indicator lights will simultaneously illuminate yellow. When the operating voltage detected by the voltage monitoring unit is between the severe voltage threshold and the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the severe temperature threshold and the temperature fault threshold, multiple indicator lights will simultaneously illuminate red, and the buzzer will sound an alarm. When the operating voltage detected by the voltage monitoring unit is greater than the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is greater than the temperature fault threshold, multiple indicator lights flash red simultaneously, and the buzzer sounds an alarm.
9. A warning socket according to claim 8, characterized in that: When the operating voltage detected by the voltage monitoring unit is between the severe voltage threshold and the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is between the severe temperature threshold and the temperature fault threshold, an early warning signal is sent to the host computer or / and the operator terminal for early warning.
10. A warning socket according to claim 8, characterized in that: When the operating voltage detected by the voltage monitoring unit is greater than the voltage fault threshold, or / and when the operating temperature detected by the temperature monitoring unit is greater than the temperature fault threshold, the fault timestamp and original data are latched, emergency data packet encapsulation is initiated, and the encapsulated data packet is uploaded to the host computer or / and the operator's terminal.