Magnetic attraction type fixed charging device and method

The magnetic attraction type stationary charging device addresses the limitations of traditional series charging by enabling remote control and power management, ensuring timely fault detection and user notification.

JP7756888B2Active Publication Date: 2025-10-21XIAN CHAOHI NET TECH CO LTD
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Patent Information

Application Number
JP2024520772
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-10-22
Filing Date
2021-11-29
Publication Date
2025-10-21
Estimated Expiration
2041-11-29

AI Technical Summary

Technical Problem

Traditional series charging devices lack control over charging power, fail to timely identify fault locations, complicate inspection processes, and cannot provide remote notifications or solutions, leading to potential secondary damage when devices fail.

Method used

A magnetic attraction type stationary charging device with modules for acquiring and uploading device interface and circuit connection information, selecting charging modes based on status information, and transmitting data to a mobile smart terminal for remote control and feedback.

Benefits of technology

Enables remote control of charging interfaces, timely fault location identification, and efficient power management, preventing secondary damage by notifying users via mobile terminals.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This application discloses a magnetic attraction stationary charging device and method. The device includes a connection status acquisition module for acquiring the interface and circuit connection information of the device and uploading it to a database, a database module for selecting whether to charge according to the interface and circuit connection information in the database, a charging status acquisition module for acquiring the device status information during charging and uploading it to a cloud, a charging mode selection module for selecting a charging mode according to the device status information in the cloud, and a data feedback module for sending the device status information and the charging mode to a bound mobile smart terminal. This application solves the technical problem that the traditional serial charging device cannot control the charging power, cannot timely understand the fault location, and makes the inspection process complicated.
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Description

[Technical Field]

[0001] The present invention relates to the field of charging technology, and more particularly to a magnetic attraction type stationary charging device and method. [Background technology]

[0002] Traditional series charging devices cannot control the charging power, cannot timely identify the fault location, make the inspection process complicated, cannot accurately locate a single series-connected device when it fails, and cannot provide a remote solution, and continuous charging will damage the remaining series devices. At the same time, when a device fails, it cannot remotely notify the user, which is likely to cause secondary damage.

[0003] As described above, the prior art has the following technical problems.

[0004] Traditional serial charging devices cannot control the charging power and cannot timely understand the fault location, which makes the inspection process complicated. Summary of the Invention

[0005] In order to solve the above technical problems, the present invention provides: a connection status acquisition module for acquiring device interface and circuit connection information and uploading it to a database; a database module that selects whether to charge based on interface and circuit connection information in the database; a charging status acquisition module that acquires device status information during charging and uploads it to the cloud; a charging mode selection module that selects a charging mode based on device status information in the cloud; and a data feedback module for transmitting the device status information and charging mode to a bound mobile smart terminal.

[0006] Preferably, the connection status acquisition module an interface sensor means for detecting interface and circuit connection information of the device based on sensors including a pressure sensor, a voltage sensor, and a current sensor; a data conversion means for converting interface and circuit connection information into data information; and a data storage means for storing the converted data information in a database.

[0007] Preferably, the database module comprises: Obtaining device interface and circuit connection information from a database; When the interface is connected to the circuit, selecting charging; and selecting not to charge when at least one or all of the interface and circuitry are turned off.

[0008] Preferably, the charge state acquisition module: a charging sensor means for acquiring device status information during charging based on sensors including a voltage sensor, a current sensor, and a temperature sensor; and a data uploading means for converting the device status information acquired by the sensor into a wireless transmission signal and uploading it to the cloud.

[0009] Preferably, the charging mode selection module comprises: a charging mode acquisition means for acquiring a preset charging mode and adjusting the charging mode according to the device state; a charging mode selection means for selecting the charging mode based on device status information; and a device status update means for returning device status information in this charging mode to the cloud and updating the device status information.

[0010] Preferably, the charging mode selection module comprises: a threshold setting means for acquiring preset device status thresholds including upper voltage limit, upper current limit, and upper temperature limit; a threshold comparison means for comparing the device status information with a preset device status threshold; and a charge control means for stopping charging when the device status information exceeds a preset threshold.

[0011] Preferably, the data feedback module comprises: terminal binding means for obtaining a bound mobile smart terminal, the binding of which supports a change; and a feedback means for transmitting device status information and a current charging mode to a bound mobile smart terminal.

[0012] The magnetic attraction fixed charging method is as follows: obtaining and uploading device interface and circuit connection information to a database; Selecting whether to charge based on the interface and circuit connection information of the database; Acquiring device status information during charging and uploading it to the cloud; selecting a charging mode based on device state information in the cloud; and transmitting the device status information and charging mode to a bound mobile smart terminal.

[0013] Preferably, uploading the interface and circuit connection information of the acquisition device to a database comprises: Detecting interface and circuit connection information of the device based on sensors including a pressure sensor, a voltage sensor, and a current sensor; converting the interface and circuit connection information into data information; and storing the converted data information in a database.

[0014] Preferably, selecting whether to charge based on information in the database includes: Obtaining device interface and circuit connection information from a database; When both interfaces are connected to the circuit, selecting charging; and selecting not to charge when one or all of the interfaces and circuits are turned off.

[0015] Preferably, acquiring device status information during charging and uploading it to the cloud includes: Obtaining device status information during charging based on sensors including a voltage sensor, a current sensor, and a temperature collection sensor; The device status information acquired by the sensor is converted into a wireless transmission signal and uploaded to the cloud.

[0016] Preferably, selecting a charging mode based on device state information in the cloud comprises: Obtaining a preset charging mode and adjusting the charging mode according to the device state; selecting the charging mode based on device status information; and returning device status information in this charging mode to the cloud and updating the device status information.

[0017] Preferably, selecting a charging mode based on device state information in the cloud comprises: Obtaining preset device status thresholds having upper voltage limits, upper current limits, and upper temperature limits; comparing the device status information with a preset device status threshold; and stopping charging when the device status information exceeds a preset threshold.

[0018] Preferably, the sending of the device status information and charging mode to the bound mobile smart terminal comprises: Obtaining a bound mobile smart terminal, the binding of which supports a change; and transmitting the device status information and the current charging mode to the bound mobile smart terminal.

[0019] The electronic device comprises a memory for storing a computer program and a processor, said computer program being capable of executing on said processor to implement the method according to any one of the above.

[0020] The storage medium stores a computer program, which, when executed by a processor, can implement any one of the methods described above.

[0021] The present invention achieves the technical effect of remotely controlling the series charging interface by remotely controlling the electronic lock magnetic suction fixed series charging interface, and realizes the technical effect of remotely controlling the charging status and timely understanding the fault location through the Internet of Things remote control. [Brief explanation of the drawings]

[0022] [Figure 1] 1 is a structural schematic diagram of the magnetic attraction type fixed charging device of the present application; [Figure 2] 10 is a schematic diagram of the main structure of a magnetic attraction type fixed charging device according to a second embodiment of the present invention; FIG. [Figure 3] 10 is a schematic diagram of a charging port of a charging device of a magnetic attraction type fixed charging device according to a second embodiment of the present invention. FIG. [Figure 4] 10 is a schematic diagram illustrating the connection between the main body and the charging port of a magnetic attraction type stationary charging device according to a second embodiment of the present invention; [Figure 5] 10 is a schematic diagram illustrating the connection between the main body and the charging port of a magnetic attraction type stationary charging device according to a second embodiment of the present invention; DETAILED DESCRIPTION OF THE INVENTION

[0023] In order to allow those skilled in the art to better understand the present invention, the present invention in the embodiments of the present invention will be described below clearly and completely with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without any creative work shall fall within the scope of protection of the present application.

[0024] It should be noted that the terms "first," "second," and the like in the specification and claims of this application and in the drawings are intended to distinguish between similar objects without necessarily being used to describe a particular order or priority, and it should be understood that the terms used in this application may be interchanged where appropriate for the implementation of the application described herein.

[0025] In this application, the orientations or positional relationships indicated by terms such as "upper," "lower," and "inner" are based on the drawings. These terms are primarily intended to better explain the application and its embodiments, and are not intended to define that the depicted devices, elements, or components must have a specific orientation or be configured and operated in a specific orientation.

[0026] Furthermore, the above partial terms can be used to express orientation or positional relationships, as well as to express other meanings, for example, the term "on" can also be used to express a dependency or connection relationship in some cases. The specific meanings of these terms in the present application can be understood by those skilled in the art depending on the context.

[0027] Furthermore, terms such as "installed," "configured," "connected," and "fixed" should be understood broadly. For example, "connected" may be a fixed connection, a detachable connection, or an integral structure, may be a mechanical connection, an electrical connection, a direct connection, an indirect connection via an intermediate medium, or an internal connection between two devices, elements, or components. The specific meanings of the above terms in this specification can be understood by those skilled in the art depending on the context.

[0028] Also, the term "plurality" should mean two or more.

[0029] Note that, if there is no conflict, the embodiments and features of the embodiments in this application may be combined with each other. In describing the present invention, unless otherwise clearly specified or limited, the term "storage medium" should be understood to refer to various media capable of storing computer programs, such as ROM, RAM, magnetic disk, or optical disk. The term "processor" refers to a chip or circuit with data processing functions, such as a CPLD (Complex Programmable Logic Device), FPGA (Field-Programmable Gate Array), MCU (Microcontroller Unit), PLC (Programmable Logic Controller), or CPU (Central Processing Unit). The term "electronic device" may refer to any device with data processing and storage functions, and typically includes fixed and mobile terminals, such as desktops. Mobile terminals include mobile phones, PADs, and mobile robots. Furthermore, the technical features of different embodiments of the present invention described below can be combined with each other if there is no conflict between them.

[0030] The present invention provides some preferred embodiments below to teach those skilled in the art how to practice the invention.

[0031] Example 1 As shown in FIG. 1, this embodiment includes a connection status acquisition module for acquiring device interface and circuit connection information and uploading it to a database;

[0032] a database module that selects whether to charge based on interface and circuit connection information in the database; a charging status acquisition module that acquires device status information during charging and uploads it to the cloud; a charging mode selection module that selects a charging mode based on device status information in the cloud; and a data feedback module for transmitting the device status information and charging mode to a bound mobile smart terminal.

[0033] In a further embodiment, the connection status acquisition module an interface sensor means for detecting interface and circuit connection information of the device based on sensors including a pressure sensor, a voltage sensor, and a current sensor; a data conversion means for converting interface and circuit connection information into data information; and a data storage means for storing the converted data information in a database.

[0034] In a further embodiment, the database module comprises: Obtaining device interface and circuit connection information from a database; When the interface is connected to the circuit, selecting charging; and selecting not to charge when at least one or all of the interface and circuitry are turned off.

[0035] In a further embodiment, the charge state acquisition module comprises: a charging sensor means for acquiring device status information during charging based on sensors including a voltage sensor, a current sensor, and a temperature sensor; and a data uploading means for converting the device status information acquired by the sensor into a wireless transmission signal and uploading it to the cloud.

[0036] In a further embodiment, the charging mode selection module comprises: a charging mode acquisition means for acquiring a preset charging mode and adjusting the charging mode according to the device state; a charging mode selection means for selecting the charging mode based on device status information; and a device status update means for returning device status information in this charging mode to the cloud and updating the device status information.

[0037] In a further embodiment, the charging mode selection module comprises: a threshold setting means for acquiring preset device status thresholds including upper voltage limit, upper current limit, and upper temperature limit; a threshold comparison means for comparing the device status information with a preset device status threshold; and a charge control means for stopping charging when the device status information exceeds a preset threshold.

[0038] In a further embodiment, the data feedback module comprises: terminal binding means for obtaining a bound mobile smart terminal, the binding of which supports a change; and a feedback means for transmitting device status information and a current charging mode to a bound mobile smart terminal.

[0039] From the above description, it can be seen that the present invention achieves the following technical effects.

[0040] 1. The remote control electronic lock magnetic suction fixed series charging interface realizes the technical effect of the remote control series charging interface.

[0041] 2. Through the Internet of Things remote control, the technical effect of remotely controlling the charging status and timely grasping the fault location has been achieved.

[0042] Example 2 This embodiment provides a magnetic attraction type stationary charging device.

[0043] 2, 3, 4 and 5, the magnetic attraction type stationary charging device includes a fixed base 1, on which a metal conductive sheet I11, a magnet I12, an AC / DC converter I13, an Internet of Things device 14 and a lock fixing plate I15 are arranged, and on which a charging port 2 of the charging device are arranged a metal conductive sheet II21, a magnet II22, an electronic lock 23 and a lock fixing plate II24, and further includes a power supply means (including 13) connected to the metal conductive sheet I11 and the metal conductive sheet II21.

[0044] The power supply means includes a charging circuit, an AC / DC conversion circuit, a protection circuit, and a battery, and the battery is electrically connected to the charging circuit, the AC / DC conversion circuit, and the protection circuit, respectively.

[0045] Since the charging port and locking plate of the charging device have different product height dimensions, the magnetic attraction type fixed charging device of the present invention is provided with a lifting function to meet the needs of different product heights.

[0046] Regarding the electronic locking hole function, this device not only meets the charging needs of multiple charging devices, but also realizes the safety locking hole function of the charging device through the locking plate I15, the electronic lock 23 and the locking plate II24.

[0047] Regarding real-time big data monitoring of the Internet of Things, the Internet of Things device unit uploads and analyzes data such as voltage, current, temperature, and operating status of the magnetic attraction type fixed charging device in real time, realizing background monitoring of big data.

[0048] The Internet of Things device unit includes a data voltage, current, and temperature collection sensor, a data network transmission device, an AC / DC conversion circuit, and a circuit connection.

[0049] The operating principle of this embodiment is as follows.

[0050] 2, 3, 4, and 5, when installed, the magnetic attraction type stationary charging device 1 is fixed in place with screws or adhesive, and the charging port 2 of the charging device is fixed to the front end of the charging device with screws. In specific application, as shown in FIG. 3, when the charging device is inserted, the first charging device is connected to the magnetic attraction type stationary charging device, and when the second charging device is inserted into the first charging device, the magnet I12 on the charging base 1 in front of the second charging device and the magnet II22 on the charging base behind the first charging device are magnetically attracted to each other and come into contact with the metal conductive sheet II21 on the charging base behind the first charging device and the metal conductive sheet I11 on the charging base in front of the second charging device, completing a series of charging, and then multiple devices are inserted in sequence to complete charging.

[0051] Similarly, when the devices are inserted, the first charging device is connected to the magnetic attraction type fixed charging device, and when the second charging device is inserted into the first charging device, the locking fixing plate I15 on the magnetic attraction type fixed charging device is locked to the electronic lock 23 in front of the first charging device, and the electronic lock 23 in front of the second charging device and the end locking fixing plate II24 at the rear of the first charging device are connected and locked to each other, thereby realizing safety management.

[0052] In concrete implementation, the magnetic attraction type fixed charging device of the present invention provides the charging function for multiple string charging devices and the safety locking function for multiple string charging devices, allowing the charging device to be positioned, fixed, and operated, making it more portable and completing the purpose of charging.

[0053] Example 3 This magnetic attraction fixed charging device is used between shopping carts in department stores, and all shopping carts are connected and locked using magnetic attraction fixing and locking control, and charging is remotely controlled via the Internet of Things.

[0054] This embodiment includes a connection status acquisition module that acquires the interface and circuit connection information of the device and uploads it to the database; a database module that selects whether to charge based on interface and circuit connection information in the database; a charging status acquisition module that acquires device status information during charging and uploads it to the cloud; a charging mode selection module that selects a charging mode based on device status information in the cloud; and a data feedback module for transmitting the device status information and charging mode to a bound mobile smart terminal.

[0055] Among them, electronic locks are fixed in place by magnetic attraction, making it more convenient to lock shopping carts in department stores. At the same time, electronic locks can be used for remote control, eliminating the need for coins to unlock them like traditional shopping carts in department stores, making them easier to use and more in line with modern lifestyles.

[0056] At the same time, the adoption of serial charging solves the problem of multiple magnetic attraction type fixed charging devices connected to shopping carts in department stores making it difficult to charge simultaneously.

[0057] To prevent a shopping cart's magnetic attraction-type fixed charging device from failing and cutting off the entire circuit, a charging status acquisition module is added to keep track of the charging status at all times, and a charging mode selection module is used to always select a safe charging mode and prevent breakdowns from occurring. Even after a breakdown occurs, it is immediately recognized by the mobile terminal bound to the data feedback module.

[0058] In a further embodiment, the connection status acquisition module an interface sensor means for detecting interface and circuit connection information of the device based on sensors including a pressure sensor, a voltage sensor, and a current sensor; a data conversion means for converting interface and circuit connection information into data information; and a data storage means for storing the converted data information in a database.

[0059] In a further embodiment, the database module comprises: Obtaining device interface and circuit connection information from a database; When the interface is connected to the circuit, selecting charging; and selecting not to charge when at least one or all of the interface and circuitry are turned off.

[0060] In a further embodiment, the charge state acquisition module comprises: a charging sensor means for acquiring device status information during charging based on sensors including a voltage sensor, a current sensor, and a temperature sensor; and a data uploading means for converting the device status information acquired by the sensor into a wireless transmission signal and uploading it to the cloud.

[0061] In a further embodiment, the charging mode selection module comprises: a charging mode acquisition means for acquiring a preset charging mode and adjusting the charging mode according to the device state; a charging mode selection means for selecting the charging mode based on device status information; and a device status update means for returning device status information in this charging mode to the cloud and updating the device status information.

[0062] In a further embodiment, the charging mode selection module comprises: a threshold setting means for acquiring preset device status thresholds including upper voltage limit, upper current limit, and upper temperature limit; a threshold comparison means for comparing the device status information with a preset device status threshold; and a charge control means for stopping charging when the device status information exceeds a preset threshold.

[0063] In a further embodiment, the data feedback module comprises: terminal binding means for obtaining a bound mobile smart terminal, the binding of which supports a change; and a feedback means for transmitting device status information and a current charging mode to a bound mobile smart terminal.

[0064] Example 4 In this embodiment, S100, obtaining device interface and circuit connection information and uploading it to a database; S200, selecting whether to charge based on the interface and circuit connection information of the database; S300, to acquire device status information during charging and upload it to the cloud; S400, selecting a charging mode based on device status information in the cloud; S500, transmitting the device status information and charging mode to the bound mobile smart terminal.

[0065] In a further embodiment, obtaining and uploading device interface and circuit connection information to the database comprises: S110: detecting device interface and circuit connection information based on sensors including a pressure sensor, a voltage sensor, and a current sensor, and determining interface connection status and circuit connection status; S120, converting interface and circuit connection information into data information; S130, storing the converted data information in a database.

[0066] In a further embodiment, selecting whether to charge based on information in the database comprises: Obtaining device interface and circuit connection information from a database; When the interface is connected to the circuit, selecting charging; and selecting not to charge when at least one or all of the interface and circuitry are turned off.

[0067] In a further embodiment, acquiring device status information during charging and uploading to the cloud includes: S310, acquiring device status information during charging based on sensors including a voltage sensor, a current sensor, and a temperature sensor; S320, converting the device status information acquired by the sensor into a wireless transmission signal and uploading it to the cloud.

[0068] In a further embodiment, selecting a charging mode based on device state information in the cloud comprises: S410, obtaining a preset charging mode, wherein the charging mode is adjusted according to the device status; S420, selecting the charging mode based on device status information; S430, returning device status information in this charging mode to the cloud and updating the device status information.

[0069] In a further embodiment, selecting a charging mode based on device state information in the cloud comprises: S440, obtaining a preset device status threshold having a voltage upper limit, a current upper limit, and a temperature upper limit; S450, comparing the device status information with a preset device status threshold; S460, stopping charging when the device status information exceeds a preset threshold.

[0070] In a further embodiment, transmitting the device status information and charging mode to the bound mobile smart terminal comprises: S510, obtaining a bound mobile smart terminal supporting a binding change of the mobile smart terminal; S520, including sending the device status information and the current charging mode to the bound mobile smart terminal.

[0071] Example 5 An embodiment of the present invention further comprises an electronic device including a memory and a processor that stores a computer program, the computer program being executed by the processor to realize the above-mentioned magnetic attraction type fixed charging method, the method comprising: S100, obtaining device interface and circuit connection information and uploading it to a database; S200, selecting whether to charge based on the interface and circuit connection information of the database; S300, to acquire device status information during charging and upload it to the cloud; S400, selecting a charging mode based on device status information in the cloud; S500, sending the device status information and charging mode to a bound mobile smart terminal.

[0072] Example 6 In this embodiment, the present invention provides a storage medium for storing a computer program, the computer program being executed by a processor to realize the above-mentioned magnetic attraction type fixed charging method, the method comprising: S100, obtaining device interface and circuit connection information and uploading it to a database; S200, selecting whether to charge based on the interface and circuit connection information of the database; S300, to acquire device status information during charging and upload it to the cloud; S400, selecting a charging mode based on device status information in the cloud; S500, sending the device status information and charging mode to a bound mobile smart terminal.

[0073] Among them, the readable storage medium may be a computer storage medium or a communication medium. Communication media include any medium that facilitates transfer of a computer program from one place to another. Computer storage media may be any available medium accessible by a general-purpose computer or a special-purpose computer. For example, a readable storage medium is coupled to a processor such that the processor can read information from the readable storage medium and write information to the readable storage medium. Of course, the readable storage medium may be a component of the processor. The processor and the readable storage medium may reside in an Application Specific Integrated Circuit (ASIC). Furthermore, the ASIC may reside in a user device. Of course, the processor and the readable storage medium may reside as separate components in a communication device. The readable storage medium may be a read-only memory (ROM), a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, etc.

[0074] The present invention provides a program product including executable instructions stored on a readable storage medium, from which at least one processor of the device can read the executable instructions, such that the device executes the methods provided by the various embodiments described above.

[0075] It is understood that in the above terminal or server embodiments, the processor may be a Central Processing Unit (CPU), other general-purpose processor, Digital Signal Processor (DSP), etc. The general-purpose processor may be a microprocessor, or any conventional processor, etc. The steps of the methods disclosed in the present invention may be directly executed by a hardware processor, or may be implemented by being executed by a combination of hardware and software modules in a processor.

[0076] It should be noted that the steps shown in the flowcharts of the figures may be performed by a computer device, such as a set of computer-executable instructions, and that although a logical order is shown in the flowcharts, in some cases the steps may be performed in a different order than shown or described here.

[0077] Obviously, those skilled in the art will appreciate that each module or step of the present invention described above can be implemented on a general-purpose computing device, which can be centralized on a single computing device or distributed over a network of multiple computing devices, and optionally, can be implemented as computing device-executable program code, and thus can be stored in a storage device and executed by a computing device, or can be implemented on respective integrated circuit modules, or multiple modules or steps therein can be implemented on a single integrated circuit module. Thus, the present invention is not limited to any particular combination of hardware and software.

[0078] The above are only preferred embodiments of the present invention, and are not used to limit the present invention. All modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention. [Explanation of symbols]

[0079] 1, fixing base 11, metal conductive sheet I 12, magnet I 13, AC / DC converter I 14, Internet of Things device 15, lock fixing plate 1 2, charging device charging port 21, metal conductive sheet II 22, magnet II 23, electronic lock 24, lock fixing plate 2.

Claims

1. A magnetic attraction type fixed charging device for use with a plurality of serial charging devices, comprising an interface, a circuit having a data processing function and a memory function and connected to a battery, a connection status acquisition module for acquiring the connection information of the device's interface and the connection information of the circuit, and uploading the information to the database; a database module for selecting whether to charge based on the interface connection information and the circuit connection information in the database; a charging status acquisition module that acquires device status information during charging and uploads it to the cloud; a charging mode selection module that selects a charging mode based on device status information in the cloud; a data feedback module for transmitting the device status information and charging mode to a bound mobile smart terminal; The charging mode selection module: a charging mode acquisition means for acquiring a preset charging mode and adjusting the charging mode according to the device state; a charging mode selection means for selecting the charging mode based on device status information; a device status update means for returning device status information in this charging mode to the cloud and updating the device status information; The charging mode selection module: a threshold setting means for acquiring preset device status thresholds including upper voltage limit, upper current limit, and upper temperature limit; a threshold comparison means for comparing the device status information with a preset device status threshold; and a charge control means for stopping charging when the device status information exceeds a preset device status threshold.

2. The connection status acquisition module: an interface sensor means for detecting connection information of an interface and a circuit of the device based on sensors including a pressure sensor, a voltage sensor, and a current sensor; a data conversion means for converting interface and circuit connection information into data information; 2. The magnetic attraction type stationary charging device according to claim 1, further comprising: a data storage means for storing the converted data information in a database.

3. The database module Obtaining device interface connection information and circuit connection information from a database; Selecting charging when both the interface and the circuit are connected; The magnetic attraction type stationary charging device according to claim 1, further comprising: selecting not to charge when at least one of the interface and the circuit is disconnected.

4. The charging state acquisition module includes: a charging sensor means for acquiring device status information during charging based on sensors including a voltage sensor, a current sensor, and a temperature sensor; 2. The magnetic attraction type stationary charging device according to claim 1, further comprising: a data uploading means for converting the device status information acquired by the sensor into a wireless transmission signal and uploading the wireless transmission signal to the cloud.

5. The data feedback module: terminal binding means for obtaining a bound mobile smart terminal, the binding of which supports a change; The magnetic attraction type stationary charging device as claimed in claim 1, further comprising: a feedback means for transmitting device status information and current charging mode to the bound mobile smart terminal.

6. Acquiring device interface connection information and circuit connection information and uploading them to a database; Selecting whether to charge based on the interface connection information and circuit connection information of the database; Acquiring device status information during charging and uploading it to the cloud; selecting a charging mode based on device state information in the cloud; and transmitting the device status information and charging mode to a bound mobile smart terminal.

7. An electronic device including a processor and a memory for storing a computer program, 7. An electronic device, characterized in that the computer program is capable of implementing the method according to claim 6 when executed by the processor.

8. A storage medium storing a computer program, the computer program being capable of implementing the method of claim 6 when executed by a processor.

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