A smart charge / discharge cycle cabinet for electronic devices

The design of the intelligent charge and discharge cycle cabinet solves the problems of long aging process and safety hazards in the existing technology, realizes intelligent management and real-time monitoring of multiple device interfaces, and improves aging efficiency and safety.

CN224582913UActive Publication Date: 2026-07-31TIANJIN TIANCHU TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN TIANCHU TECH
Filing Date
2025-07-15
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

In existing technologies, the input or output of adapters, chargers, and discharge loads cannot be adjusted, resulting in a long aging process. Operators need to frequently check the charging and discharging status, and manual monitoring poses safety hazards. Furthermore, it is difficult to adapt to the inconsistency of interfaces between different models of equipment.

Method used

Design an intelligent charging and discharging cycle cabinet, which includes multiple interface modules, a control module, and a display module. It supports simultaneous charging and discharging of devices with various interface types, and displays charging and discharging information in real time through the display module. Combined with the wireless scanning and communication module, it automatically identifies the device serial number to achieve intelligent batch operation.

Benefits of technology

It improves the efficiency and safety of the aging process, reduces the frequency of interface replacement, reduces the need for manual monitoring, reduces equipment wear, and enables intelligent management of multiple devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an intelligent charge / discharge cycle cabinet for electronic devices, comprising: a cabinet body, multiple interface modules, a control module, and a display module; the cabinet body includes multi-layer charge / discharge units; the control module is connected to the cabinet body via electrical wiring; the interface modules include a first interface and a second interface; the first ends of both the first and second interfaces are fixedly connected to the power supply terminals of the charge / discharge units; the second end of the first interface is connected to the device to be charged / discharged and / or the second end of the second interface is connected to the device to be charged / discharged; the display module is connected to the control module; the display module displays the charging or discharging information of multiple devices to be charged / discharged in real time. The intelligent charge / discharge cycle cabinet provided by this utility model can operate multiple devices to be charged / discharged simultaneously, and simultaneously display the charging or discharging information of multiple devices on the display module, achieving the technical effects of intelligent, batch operation and improved safety during the aging process.
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Description

Technical Field

[0001] This utility model relates to the field of product aging cabinet design technology, and in particular to an intelligent charging and discharging cycle cabinet for electronic devices. Background Technology

[0002] The aging process is the initial one or more charge-discharge cycles that occur after a product is manufactured but before it leaves the factory. This typically involves connecting an adapter or charger to the product to charge it, and connecting a discharge load or other device to the product to discharge it.

[0003] Common adapters, chargers, or discharge loads cannot adjust their input or output, making the aging process time-consuming. Secondly, since adapters or chargers are usually not adjustable, operators need to check the charging status at the product end and switch to discharge mode only after confirming full charge. Thirdly, discharge loads are usually not adjustable, requiring operators to confirm complete discharge at the product end before switching to charging mode to complete one or more charge-discharge cycles. Fourthly, if there are many product models with inconsistent charging / discharging functions or interfaces, different adapters, chargers, or discharge loads need to be used according to different parameters. Fifthly, during operation, real-time monitoring of the product's status and collection of status information are necessary; if safety issues arise during the product aging process, relying solely on manual intervention may result in technical problems going undetected in a timely manner. Utility Model Content

[0004] This utility model provides an intelligent charge and discharge cycle cabinet for electronic devices. By setting multiple interface modules in the cabinet, the interface modules include a first interface and a second interface. The first interface and the second interface can simultaneously adapt to the interfaces of multiple devices to be charged and discharged, eliminating the need for frequent interface replacement. At the same time, the charging or discharging information of multiple devices to be charged and discharged is displayed in real time on the display module, thereby achieving the technical effects of intelligent and batch operation and improving the safety of the aging process.

[0005] According to a first aspect of the present invention, an intelligent charging and discharging cycle cabinet for electronic devices is provided, comprising: a cabinet body, multiple interface modules, a control module, and a display module; the cabinet body includes multiple layers of charging and discharging units; the control module is connected to the cabinet body via electrical wiring; the interface modules include a first interface and a second interface;

[0006] The first end of both the first interface and the second interface is fixedly connected to the power supply end of the charging and discharging unit; the second end of the first interface is connected to the device to be charged and discharged and / or the second end of the second interface is connected to the device to be charged and discharged.

[0007] The display module is connected to the control module;

[0008] The display module displays the charging or discharging information of multiple devices to be charged and discharged in real time.

[0009] Optionally, a wireless scanning module may also be included;

[0010] The wireless signal receiver of the wireless scanning module is communicatively connected to the wireless signal transmitter of the device to be charged and discharged. The wireless scanning module is used to automatically scan the serial numbers of multiple devices to be charged and discharged.

[0011] Optionally, it may also include a communication module; the control module may also include a network unit;

[0012] The wireless signal receiver of the communication module is communicatively connected to the wireless signal transmitter of the wireless scanning module, and the communication terminal of the network unit is communicatively connected to the wireless signal transmitter of the communication module.

[0013] The communication module transmits the serial number to the network unit via a wireless local area network; the network unit transmits the charging or discharging information of the device to be charged and discharged to the user terminal.

[0014] Optionally, the cabinet may also include a conversion unit;

[0015] The conversion unit is connected to the input terminal of the charging and discharging unit, and the conversion unit is used to convert AC power into DC power.

[0016] Optionally, it may also include a data module, which includes a data acquisition unit and a transmission unit;

[0017] The acquisition unit is used to acquire charging or discharging information. The acquisition end is connected to the interface module, and the output end of the acquisition unit is connected to the receiving end of the transmission unit.

[0018] The first output terminal of the transmission unit, used to output charging or discharging information, is connected to the control module.

[0019] Optionally, the data module further includes a storage unit;

[0020] The input terminal of the storage unit is connected to the second output terminal of the transmission unit for storing charging or discharging information. The storage unit is used to store charging or discharging information of multiple devices to be charged and discharged in a cycle.

[0021] Optionally, the control module further includes a detection unit and a switching unit;

[0022] The detection end of the detection unit is connected to the charge / discharge cycle device to be charged and discharged, and the output end of the detection unit is connected to the input end of the switching unit.

[0023] The detection unit is used to detect the charging completion information or discharging completion information of the charge-discharge cycle device.

[0024] The output of the switching unit is connected to the display module; the switching unit is used to switch the charging mode or discharging mode of the device to be charged and discharged.

[0025] Optionally, an alarm module may also be included;

[0026] The input terminal of the alarm module is connected to the control module, and the alarm module is used to send alarm information to the user.

[0027] Optionally, the alarm module includes a lighting unit;

[0028] The lighting unit includes yellow, green, and red lights;

[0029] The yellow, green, and red lights are all connected to the power supply. The yellow light indicates to the user that the device to be charged / discharged is in a first working state; the green light indicates to the user that the device to be charged / discharged is in a second working state; and the red light indicates to the user that the device to be charged / discharged is in a third working state. The first working state is either charging or discharging, the second working state is either charging or discharging complete, and the third working state is either charging or discharging abnormal.

[0030] Optionally, the device to be charged and discharged includes at least one of a mobile phone, a computer, and a tablet.

[0031] This utility model discloses an intelligent charge / discharge cycle cabinet for electronic devices, comprising: a cabinet body, multiple interface modules, a control module, and a display module; the cabinet body includes multi-layer charging / discharging units; the control module is connected to the cabinet body via electrical wiring; the interface modules include a first interface and a second interface; the first ends of both the first and second interfaces are fixedly connected to the power supply terminals of the charging / discharging units; the second end of the first interface is connected to the device to be charged / discharged and / or the second end of the second interface is connected to the device to be charged / discharged; the display module is connected to the control module; the display module displays charging or discharging information of multiple devices to be charged / discharged in real time. This utility model provides an intelligent charge / discharge cycle cabinet for electronic devices, which, by setting multiple interface modules in the cabinet body, including a first interface and a second interface, can simultaneously adapt to the interfaces of multiple devices to be charged / discharged with different interface types, eliminating the need for frequent interface changes. Simultaneously, the display module displays the charging or discharging information of multiple devices to be charged / discharged in real time, thereby achieving the technical effect of intelligent and batch operation.

[0032] It should be understood that the description in this section is not intended to identify key or essential features of the embodiments of this utility model, nor is it intended to limit the scope of this utility model. Other features of this utility model will become readily apparent from the following description. Attached Figure Description

[0033] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0034] Figure 1 This is a schematic diagram of an intelligent charging and discharging cycle cabinet for electronic devices provided in an embodiment of this utility model;

[0035] Figure 2 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention;

[0036] Figure 3 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention;

[0037] Figure 4 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention;

[0038] Figure 5 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention;

[0039] Figure 6 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention;

[0040] Figure 7 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention;

[0041] Figure 8 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided by an embodiment of this utility model. Detailed Implementation

[0042] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.

[0043] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of the utility model described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0044] It should be understood that the various forms of the process shown above can be used, with steps reordered, added, or deleted. For example, the steps described in this utility model can be executed in parallel, sequentially, or in different orders, as long as the desired result of the technical solution of this utility model can be achieved, and this is not limited herein.

[0045] Figure 1 This is a schematic diagram of an intelligent charging and discharging cycle cabinet for electronic devices provided in an embodiment of this utility model. (Refer to...) Figure 1 The intelligent charging and discharging cycle cabinet for electronic devices provided in this embodiment includes: a cabinet body 1, multiple interface modules 2, a control module 3, and a display module 4; the cabinet body 1 includes multi-layer charging and discharging units 11; the control module 3 is connected to the cabinet body 1 via electrical wiring; the interface module 2 includes a first interface 21 and a second interface 22; the first ends of both the first interface 21 and the second interface 22 are fixedly connected to the power supply end of the charging and discharging unit 11; the second end of the first interface 21 is connected to the device 5 to be charged and discharged and / or the second end of the second interface 22 is connected to the device 5 to be charged and discharged; the display module 4 is connected to the control module 3; the display module 4 displays the charging or discharging information of the multiple devices 5 to be charged and discharged in real time.

[0046] Specifically, the intelligent charging and discharging cycle cabinet provided in this embodiment of the present invention includes: a cabinet body 1, multiple interface modules 2, a control module 3, and a display module 4. The cabinet body 1 can be made of aluminum alloy to ensure better durability and corrosion resistance. The interface module 2 includes a first interface 21 and a second interface 22. For example, the first interface 21 and the second interface 22 are of different types, such as the first interface 21 being a Type-C interface and the second interface 22 being a Lightning interface. The first interface 21 is connected to the device to be charged and discharged 5, and the second interface 22 is connected to the device to be charged and discharged 5, thereby enabling simultaneous charging and discharging cycle operations for two different interface types of devices to be charged and discharged 5. The cabinet body 1 includes multiple charging and discharging units 11, such as... Figure 1 As shown, each layer has multiple charging and discharging units 11. The charging and discharging units 11 are used to provide electrical energy so that the interface module 2 can charge or discharge the device 5 to be charged and discharged. The control module 3 is connected to the cabinet 1 by an electrical connection so that the control module 3 can control the working mode of the device 5 to be charged and discharged. The working modules include charging, discharging, etc.

[0047] The display module 4 is connected to the control module 3. The display module 4 can be a touch screen for displaying the charging or discharging information of the device 5 to be charged and discharged in real time. The charging or discharging information includes, but is not limited to: current parameters, voltage parameters, battery charge status, battery charging progress, battery discharging progress, internal environmental detection information of the cabinet, temperature, humidity, device being charged and discharged, power, etc.

[0048] Optionally, the display module 4 can also display an electronic device that is discharging, or an electronic device that is charging, or an electronic device that has completed charging and discharging, or an electronic device that is abnormally charging and discharging, etc. The embodiments of this utility model are not exhaustive here.

[0049] The intelligent charge / discharge cycle cabinet for electronic devices provided in this embodiment of the utility model sets up multiple interface modules in the cabinet and connects them with a control module and a display module. On the one hand, it can simultaneously supply power to multiple devices with different interface types to be charged and discharged during the aging process. During the aging process, operators do not need to frequently change the interface configuration. On the other hand, the aging process of electronic devices can be monitored in real time through the display module, and the charging or discharging information of electronic devices can be monitored in real time. This greatly improves the efficiency of aging detection of electronic devices, reduces personnel costs, and also reduces the number of times the interfaces are plugged and unplugged before the electronic devices leave the factory.

[0050] Figure 2 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 2 Optionally, it also includes a wireless scanning module 6;

[0051] The wireless signal receiver of the wireless scanning module 6 is communicatively connected to the wireless signal transmitter of the device to be charged and discharged 5. The wireless scanning module 6 is used to automatically scan the serial numbers of multiple devices to be charged and discharged 5.

[0052] Specifically, the intelligent charge / discharge cycle cabinet provided in this embodiment of the present invention also includes a wireless scanning module 6. The wireless signal receiving end of the wireless scanning module 6 is communicatively connected to the wireless signal transmitting end of the device to be charged / discharged 5. The wireless scanning module 6 can be Bluetooth and a matching data reading module. Before starting the aging operation of the device to be charged / discharged 5, the Bluetooth function of the device to be charged / discharged 5 is turned on. The wireless scanning module 6 can pair with the Bluetooth of the device to be charged / discharged 5, thereby identifying and scanning the serial number in the device to be charged / discharged 5 through Bluetooth. The so-called serial number refers to a string of characters or numbers used to uniquely identify a product or device. The serial number combination is usually set by the electronic equipment manufacturer for the verification and management of electronic equipment. Before starting the aging test of the device 5 to be charged and discharged, the operator can scan the serial number of each device 5 to be charged and discharged through the wireless scanning module 6, and input the serial number and the corresponding electronic equipment into the control module 3. The wireless scanning module 6 can automatically identify the "serial number and the corresponding electronic equipment", so that the device 5 to be charged and discharged can be accurately identified in the display module 4 during the charging and discharging process, and can be recorded and tracked as a unique identifier for the device 5 to be charged and discharged.

[0053] Figure 3 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 3 Optionally, it also includes a communication module 7; the control module 3 also includes a network unit 31;

[0054] The wireless signal receiver of the communication module 7 is communicatively connected to the wireless signal transmitter of the wireless scanning module 6, and the communication terminal of the network unit 31 is communicatively connected to the wireless signal transmitter of the communication module 7.

[0055] The communication module 7 transmits the serial number to the network unit 31 via a wireless local area network; the network unit 31 transmits the charging or discharging information of the device 5 to be charged and discharged to the user terminal.

[0056] Specifically, the intelligent charging and discharging cycle cabinet provided in this embodiment of the present invention also includes a communication module 7, and the control module 3 also includes a network unit 31;

[0057] The wireless signal receiver of the communication module 7 is connected to the wireless signal transmitter of the wireless scanning module 6. The communication module 7 is used to receive the serial number of the device to be charged and discharged 5 obtained by the wireless scanning module 6. After obtaining the serial number of the device to be charged and discharged 5, the communication module 7 transmits it to the network unit 31 through the wireless local area network. The control module 3 displays the charging or discharging information of the device to be charged and discharged 5 in the display module 4. The network unit 31 can also transmit the charging or discharging information to the user terminal through wireless transmission, so that the user can query the charging or discharging information of each device to be charged and discharged 5 in real time through the mobile terminal.

[0058] Figure 4 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 4 Optionally, cabinet 1 may also include conversion unit 12;

[0059] The conversion unit 12 is connected to the input terminal of the charging and discharging unit 11, and the conversion unit 12 is used to convert AC power into DC power.

[0060] Specifically, the cabinet 1 of the intelligent charging and discharging cycle cabinet provided in this embodiment of the present invention also includes a conversion unit 12. The conversion unit 12 is connected to the input terminal of the charging and discharging unit 11. Since the power source of the charging and discharging cycle cabinet is usually mains power, which refers to standard AC power provided by the public power grid, but since this AC power cannot charge the charging and discharging cycle device 5, a conversion unit 12 is also provided in the cabinet 1. The conversion unit 12 can be an inverter group to convert the AC power of the mains power into DC power that can be directly used by the charging and discharging integrated interface 2.

[0061] Figure 5 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 5 Optionally, it also includes a data module 8, which includes a data acquisition unit 81 and a transmission unit 82;

[0062] The acquisition unit 81 is used to acquire charging or discharging information. The acquisition end is connected to the interface module 2, and the output end of the acquisition unit 81 is connected to the receiving end of the transmission unit 82.

[0063] The first output terminal of the transmission unit 82, which is used to output charging or discharging information, is connected to the control module 3.

[0064] Specifically, the charge / discharge cycle cabinet provided in this embodiment of the present invention also includes a data module 8, which includes a data acquisition unit 81 and a transmission unit 82;

[0065] The acquisition unit 81 is used to acquire charging or discharging information. The acquisition end is connected to the interface module 2. The output end of the acquisition unit 81 is connected to the receiving end of the transmission unit 82. The acquisition unit 81 is used to acquire the charging or discharging information of the device 5 to be charged and discharged, and transmit the charging or discharging information to the transmission unit 82. The first output end of the transmission unit is connected to the control module 3. The transmission unit 82 is used to transmit the charging or discharging information to the control module 3. The operator confirms which information needs to be detected through the control module 3 and views it in real time through the display module 4.

[0066] Optional, continue to refer to Figure 5 The data module 8 also includes a storage unit 83;

[0067] The input terminal of the storage unit 83 is connected to the second output terminal of the transmission unit 82 for outputting charging or discharging information. The storage unit 83 is used to store the charging or discharging information of multiple devices 5 to be charged and discharged.

[0068] Specifically, the data module 8 in the intelligent charge-discharge cycle cabinet provided in this embodiment of the present invention also includes a storage unit 8. The input end of the storage unit 83 is connected to the transmission unit 82. The transmission unit 82 transmits the charging information or discharging information of the charge-discharge cycle device 5 to be stored to the storage unit 83 according to the needs of the operator. The storage unit 83 stores the charging information or discharging information of the charge-discharge cycle device 5 to be stored for the operator to query when needed.

[0069] Figure 6 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 6 Optionally, the control module 3 also includes a detection unit 32 and a switching unit 33;

[0070] The detection end of the detection unit 32 is connected to the charge / discharge cycle device 5, and the output end of the detection unit 32 is connected to the input end of the switching unit 33.

[0071] The detection unit 32 is used to detect the charging completion information or discharging completion information of the device 5 to be charged and discharged.

[0072] The output of the switching unit 33 is connected to the display module 4; the switching unit 33 is used to switch the charging mode or discharging mode of the device 5 to be charged and discharged.

[0073] Specifically, the control module 3 in the intelligent charging and discharging cycle cabinet provided in this embodiment of the present invention further includes a detection unit 32 and a switching unit 33;

[0074] The detection end of the detection unit 32 is connected to the charge / discharge cycle device 5, and the output end of the detection unit 32 is connected to the input end of the switching unit 33. The detection unit 32 is used to detect the charging completion information or discharging completion information of the charge / discharge cycle device 5, and can also detect the process information of the charge / discharge cycle device 5 during the charging and discharging process, such as the cell temperature of the charge / discharge cycle device 5. The output end of the switching unit 33 is connected to the display module 4. The switching unit 33 is used to switch the charging mode or discharging mode of the charge / discharge cycle device 5, that is, the switching unit 33 is used to switch the charging mode or discharging mode of the charge / discharge cycle device 5 if the working mode of the charge / discharge cycle device 5 is charging. In the charging mode, when the detection unit 32 detects that the device 5 to be charged and discharged has reached a threshold (which can be 90% of the total capacity or the voltage of the device 5 to be charged and discharged can be charged to the rated voltage of the cell), the switching unit 33 switches the charging mode of the device 5 to the discharging mode; when the detection unit 32 detects that the device 5 to be charged and discharged has reached a threshold (which can be 10% of the total capacity or the voltage of the device 5 to be charged and discharged can be charged to the cutoff voltage of the cell), the switching unit 33 switches the discharging mode of the device 5 to the charging mode.

[0075] Figure 7 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 7 Optionally, an alarm module 9 may also be included;

[0076] The input terminal of the alarm module 9 is connected to the control module 3, and the alarm module 9 is used to send alarm information to the user.

[0077] Specifically, the intelligent charging and discharging cycle cabinet provided in this embodiment of the present invention also includes an alarm module 9. The input terminal of the alarm module 9 is connected to the control module 3. When the alarm module 9 detects an abnormal state (such as the charging and discharging cycle device 5 being unable to charge or discharge, excessive current, or excessive voltage), it will be displayed in the display module 4 in a timely manner and an alarm message will be issued to remind the operator to pay attention and handle the abnormal state in a timely manner.

[0078] Figure 8 This is a schematic diagram of another intelligent charging and discharging cycle cabinet structure for electronic devices provided in this embodiment of the present invention, for reference. Figure 8 Optionally, the alarm module 9 includes a lighting unit 91;

[0079] Lighting unit 91 includes a yellow light 911, a green light 912, and a red light 913;

[0080] Yellow light 911, green light 912, and red light 913 are all connected to the power supply. Yellow light 911 is used to indicate to the user that the device 5 is in the first working state, which is waiting to be charged and discharged; green light 912 is used to indicate to the user that the device 5 is in the second working state, which is waiting to be charged and discharged; and red light 913 is used to indicate to the user that the device 5 is in the third working state, which is waiting to be charged and discharged. The first working state is the charging state or the discharging state, the second working state is the charging completed state or the discharging completed state, and the third working state is the charging abnormal state or the discharging abnormal state.

[0081] Specifically, the alarm module 9 also includes a lighting unit 91, which includes a yellow light 911, a green light 912, and a red light 913.

[0082] The input terminals of yellow light 911, green light 912, and red light 913 are all connected to the power supply terminal VCC. VCC provides electrical power. Yellow light 911 indicates to the operator that the device 5 is in a charging or discharging state; green light 912 indicates to the operator that the device 5 is in a fully charged or fully discharged state; red light 913 indicates to the operator that the device 5 is in an abnormal charging or discharging state.

[0083] When the device 5 to be charged or discharged is charging or discharging, a yellow light 911 will light up above the icon of the device 5 to be charged or discharged in the display module 4.

[0084] When the device 5 to be charged and discharged is in the charging completed state or the discharging completed state, a green light 912 will light up above the icon of the device 5 to be charged and discharged in the display module 4.

[0085] When the device 5 to be charged and discharged is in an abnormal charging or discharging state, a red light 913 will light up above the icon corresponding to the device 5 in the display module 4.

[0086] The working process of the charge / discharge cycle cabinet for electronic devices provided in this embodiment of the invention is as follows:

[0087] The operator powers on the batch of charge / discharge cycle devices 5 using the wireless scanning module 6 and enables their Bluetooth function. This allows the wireless scanning module 6 to pair with the Bluetooth of the device 5, enabling it to automatically identify the serial numbers on each device. The communication module 7 then receives these serial numbers and wirelessly transmits them to the network unit 31 in the control module 3 via a wireless LAN. Simultaneously, the serial numbers are displayed on the display module 4. The operator places the device 5 in the product placement area (not shown in the diagram) and connects it to the cabinet 1 via the interface module 2. The display module 4 then indicates that the connection is complete.

[0088] According to requirements, the operator sets up a group of devices 5 to begin charging, completing 5 charge-discharge cycles to reach 30% charge; another group of devices 5 to begin discharging, completing 10 discharge-charge cycles to reach 50% charge. After the operator selects the desired process and clicks confirm, the system automatically begins working according to the selected logic. Simultaneously, the display module 4 shows the current process and status of each device 5. Devices 5 in operation are indicated by a yellow icon, those that have completed their operation by a green icon, and those indicating an abnormality by a red icon. The operator can clearly identify their status. If the user needs to query or monitor the charging or discharging information of a device 5, communication is established with the user's mobile terminal via the network unit 31, allowing the user to query and monitor the charging or discharging information of a specific device 5 in real time. A week later, if the operators want to summarize the data from this week, they can use network unit 31 to transfer the system-archived information (which can be stored in storage unit 83 or retrieved in real time as historical data) to other work computers for viewing and analysis.

[0089] Optional, continue to refer to Figure 1 The device to be charged and discharged 5 includes at least one of a power bank, a mobile phone, a computer, and a tablet.

[0090] Optional, continue to refer to Figure 1 The interface types of the first interface 21 and / or the second interface 22 include USB, Lightning, DC interface, etc., and this embodiment of the utility model does not limit them.

[0091] The specific embodiments described above do not constitute a limitation on the scope of protection of this utility model. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.

Claims

1. An intelligent charging and discharging cycle cabinet for electronic devices, characterized in that, include: The system comprises a cabinet, multiple interface modules, a control module, and a display module; the cabinet includes a multi-layer charging and discharging unit; the control module is connected to the cabinet via electrical wiring; the interface modules include a first interface and a second interface. The first end of both the first interface and the second interface is fixedly connected to the power supply end of the charging and discharging unit; the second end of the first interface is connected to the device to be charged and discharged and / or the second end of the second interface is connected to the device to be charged and discharged. The display module is connected to the control module; The display module displays the charging or discharging information of multiple devices to be charged and discharged in real time.

2. The intelligent charging and discharging cycle cabinet for electronic devices according to claim 1, characterized in that, It also includes a wireless scanning module; The wireless signal receiver of the wireless scanning module is communicatively connected to the wireless signal transmitter of the device to be charged and discharged. The wireless scanning module is used to automatically scan the serial numbers of multiple devices to be charged and discharged.

3. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 2, characterized in that, It also includes a communication module; the control module further includes a network unit; The wireless signal receiver of the communication module is communicatively connected to the wireless signal transmitter of the wireless scanning module, and the communication terminal of the network unit is communicatively connected to the wireless signal transmitter of the communication module. The communication module transmits the serial number to the network unit via a wireless local area network; the network unit transmits the charging or discharging information of the device to be charged and discharged to the user terminal.

4. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 1, characterized in that, The cabinet also includes a conversion unit; The conversion unit is connected to the input terminal of the charging and discharging unit, and the conversion unit is used to convert AC power into DC power.

5. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 1, characterized in that, It also includes a data module, which comprises a data acquisition unit and a transmission unit; The acquisition unit is used to acquire charging or discharging information. The acquisition end is connected to the interface module, and the output end of the acquisition unit is connected to the receiving end of the transmission unit. The first output terminal of the transmission unit, used to output charging or discharging information, is connected to the control module.

6. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 5, characterized in that, The data module also includes a storage unit; The input terminal of the storage unit is connected to the second output terminal of the transmission unit for storing charging or discharging information. The storage unit is used to store charging or discharging information of multiple devices to be charged and discharged in a cycle.

7. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 1, characterized in that, The control module also includes a detection unit and a switching unit; The detection end of the detection unit is connected to the charge / discharge cycle device to be charged and discharged, and the output end of the detection unit is connected to the input end of the switching unit. The detection unit is used to detect the charging completion information or discharging completion information of the charge-discharge cycle device. The output of the switching unit is connected to the display module; the switching unit is used to switch the charging mode or discharging mode of the device to be charged and discharged.

8. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 1, characterized in that, It also includes an alarm module; The input terminal of the alarm module is connected to the control module, and the alarm module is used to send alarm information to the user.

9. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 8, characterized in that, The alarm module includes a lighting unit; The lighting unit includes yellow, green, and red lights; The yellow, green, and red lights are all connected to the power supply. The yellow light indicates to the user that the device to be charged / discharged is in a first working state; the green light indicates to the user that the device to be charged / discharged is in a second working state; and the red light indicates to the user that the device to be charged / discharged is in a third working state. The first working state is either charging or discharging, the second working state is either charging or discharging complete, and the third working state is either charging or discharging abnormal.

10. The intelligent charge / discharge cycle cabinet for electronic devices according to claim 1, characterized in that, The device to be charged and discharged includes a mobile power supply.