Electronic device and energy storage power supply

CN224789166UActive Publication Date: 2026-09-22SHENZHEN HELLO TECH ENERGY CO LTD
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Patent Information

Application Number
CN202521878195.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-09-22
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

[0003]然而,目前一个连接模块只能对应升级一个功能模块,如果电子设备上有两个及以上功能模块,而只有一个连接模块,则不能给两个功能模块升级,而是需要拆开电子设备,逐个将功能模块与连接模块连接升级,此过程费时费力且复杂,不利于电子设备的调试验证及生产制造

Benefits of technology

[0014]本申请的电子设备及储能电源中,第一功能模块的第一管脚单元和第二管脚单元,以及第二功能模块的第三管脚单元和第四管脚单元,与第一脚位单元和第二脚位单元的接入方式相反,在烧录组件正面朝上插入连接模块的情况下,第一功能模块能够通过连接模块与烧录组件电连接,从而对第一功能模块升级,在烧录组件反面朝上插入连接模块的情况下,功能模块通过连接模块与烧录组件电连接,从而对第二功能模块升级。如此,一个连接模块可以分别对第一功能模块和第二功能模块升级,无需拆机,高效简单,有利于电子设备的调试验证及生产制造。

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Abstract

The application discloses an electronic device and an energy storage power supply. The electronic device comprises a connecting module, a first functional module and a second functional module. The connecting module comprises a pin surface and a plurality of pins arranged on the pin surface. The plurality of pins comprises a first pin unit and a second pin unit. The first pin unit and the second pin unit are mirror-symmetrically arranged about a pin center formed by the plurality of pins. The first functional module comprises a first pin unit and a second pin unit. The second functional module comprises a third pin unit and a fourth pin unit. The first pin unit and the third pin unit are the same and connected with the first pin unit. The second pin unit and the fourth pin unit are the same and connected with the second pin unit. When a burning component is inserted into the connecting module with the front face upward, the first functional module is electrically connected with the burning component through the connecting module. When the burning component is inserted into the connecting module with the back face upward, the second functional module is electrically connected with the burning component through the connecting module.
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Description

Technical Field

[0001] This application relates to the field of programming technology, and in particular to an electronic device and an energy storage power supply. Background Technology

[0002] When electronic devices, such as energy storage power supplies, need to upgrade their modules (the internal modules that need to be upgraded can be called functional modules), the connection modules of the electronic devices are electrically connected to the programming components to perform software upgrades.

[0003] However, currently, one connection module can only be upgraded for one functional module. If an electronic device has two or more functional modules but only one connection module, it cannot upgrade both functional modules. Instead, the electronic device needs to be disassembled and each functional module needs to be connected to the connection module for upgrade. This process is time-consuming, laborious, and complicated, which is not conducive to the debugging, verification, and manufacturing of electronic devices. Utility Model Content

[0004] This application provides an electronic device and an energy storage power supply.

[0005] In a first aspect, this application provides an electronic device, comprising a connection module, a first functional module, and a second functional module. The connection module includes a pin surface and a plurality of pins disposed on the pin surface. The plurality of pins includes a first pin unit and a second pin unit, which are mirror-symmetrical about a pin center formed by the plurality of pins. The first functional module includes a first pin unit and a second pin unit, which are used for electrical connection with a connector of a programming component. The second functional module includes a third pin unit and a fourth pin unit, which are used for electrical connection with the connector of the programming component. The first pin unit and the third pin unit are identical, as are the second pin unit and the fourth pin unit. Both the first pin unit and the fourth pin unit are electrically connected to the first pin unit, and both the second pin unit and the third pin unit are electrically connected to the second pin unit. When the connection module is inserted with the front side of the programming component facing upwards, the first functional module is electrically connected to the programming component through the connection module. When the connection module is inserted with the back side of the programming component facing upwards, the second functional module is electrically connected to the programming component through the connection module. The front side and the back side are two opposite surfaces of the programming component.

[0006] In some embodiments, the connector includes a first probe and a second probe. When the connection module is inserted with the programming component facing upwards, the first pin unit is electrically connected to the first probe via the first pin position unit, and the second pin unit is electrically connected to the second probe via the second pin position unit. The first functional module, the first pin unit, the first pin position unit, the first probe, the programming component, the second probe, the second pin position unit, the second pin unit, and the first functional module form a first programming circuit. When the connection module is inserted with the programming component facing downwards, the fourth pin unit is electrically connected to the second probe via the first pin position unit, and the third pin unit is electrically connected to the first probe via the second pin position unit. The second functional module, the fourth pin unit, the first pin position unit, the second probe, the programming component, the first probe, the second pin position unit, the third pin unit, and the second functional module form a second programming circuit.

[0007] In some embodiments, the connection module includes a first pin group and a second pin group. The first pin group includes multiple pins, each pin including at least a first pin unit. The second pin group includes multiple pins, each pin including at least a second pin unit. The multiple pins in the first pin group and the multiple pins in the second pin group are arranged in a straight line, and the multiple pins in the first pin group and the multiple pins in the second pin group are mirror-symmetrical about the pin center.

[0008] In some embodiments, the first pin unit includes a first pin, the second pin unit includes a second pin, the first pin unit includes a first pin, the second pin unit includes a second pin, the third pin unit includes a third pin, and the fourth pin unit includes a fourth pin.

[0009] In some embodiments, the electronic device includes an energy storage power source. The connection module includes a Type-C interface. The first functional module includes a first wireless charging module. The second functional module includes a second wireless charging module. The first pin unit includes a first data interaction line. The second pin unit includes a first unidirectional clock line. The third pin unit includes a second data interaction line. The fourth pin unit includes a second unidirectional clock line.

[0010] In some embodiments, the first pin unit includes a first sideband pin, the second pin unit includes a second sideband pin, the first data interaction line and the second unidirectional clock line are connected to the first sideband pin, and the first unidirectional clock line and the second data interaction line are connected to the second sideband pin.

[0011] In some embodiments, the energy storage power supply further includes a control unit, which is electrically connected to the first functional module and the second functional module via a communication bus, and the first functional module and the second functional module interact with the control unit via the communication bus.

[0012] In some embodiments, the energy storage power supply further includes a bidirectional fast charging protocol control unit, which is electrically connected to the connection module.

[0013] Secondly, this application provides an energy storage power supply. The energy storage power supply includes a battery unit and a wireless charging module. The electrical energy from the battery unit is output to the outside via the wireless charging module.

[0014] In the electronic device and energy storage power supply of this application, the first and second pin units of the first functional module, and the third and fourth pin units of the second functional module, are connected in the opposite manner to the first and second pin units. When the connection module is inserted with the programming component facing upwards, the first functional module can be electrically connected to the programming component through the connection module, thereby upgrading the first functional module. When the connection module is inserted with the programming component facing downwards, the functional module is electrically connected to the programming component through the connection module, thereby upgrading the second functional module. In this way, one connection module can upgrade both the first and second functional modules separately without disassembling the device, which is efficient and simple, and beneficial to the debugging, verification, and manufacturing of electronic devices.

[0015] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0016] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, wherein:

[0017] Figure 1 This is a schematic diagram of the structure of a burning system according to some embodiments of this application;

[0018] Figure 2 This is a partial structural diagram of a burning system in some implementations of traditional solutions;

[0019] Figure 3This is a schematic diagram of the structure of the burning component of the burning system of some embodiments of this application, with the front side facing upwards and inserted into the connection module;

[0020] Figure 4 This is a schematic diagram of the structure of the burning component of the burning system of some embodiments of this application, with the back side facing upwards and inserted into the connection module;

[0021] Figure 5 This is a plan view of the connection module of the burning system according to some embodiments of this application;

[0022] Figure 6 This is a plan view of the connection module of the burning system according to other embodiments of this application;

[0023] Figure 7 This is a schematic diagram of the structure of an energy storage power source according to some embodiments of this application.

[0024] Explanation of key component designations:

[0025] Programming system 1000; electronic device 100; energy storage power supply 101; battery unit 1011; wireless charging module 1013; connection module 10; first pin group 11; first pin unit 111; second pin group 13; second pin unit 131; first functional module 30; first wireless charging module 31; first pin unit 33; second pin unit 35; second functional module 50; second wireless charging module 51; third pin unit 53; fourth pin unit 55; control unit 70; bidirectional fast charging protocol control unit 90; programming component 300; programming element 301; connector 303; front side 305; back side 307; first probe 3031; second probe 3032. Detailed Implementation

[0026] In the description of this application, some of the disclosed content has been illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The following description with reference to the accompanying drawings is exemplary and is only used to explain this application, and should not be construed as limiting this application.

[0027] This application discloses numerous different contents or examples for implementing different structures. To simplify the disclosure of this application, the components and settings of specific examples are described below. Of course, these are merely examples and are not intended to limit this application.

[0028] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.

[0029] In the description of this application, it should be understood that the terms used to indicate orientation or positional relationship (such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc.) are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this application and understanding the corresponding embodiments, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to indicate orientation or positional relationship should not be construed as limitations on this application.

[0030] In the description of this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature being directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature being directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0031] Please see Figure 1 The programming system 1000 includes an electronic device 100 and a programming component 300. The programming component 300 is used to program the electronic device 100. The programming component 300 includes a programming element 301 and a connector 303. The programming element 301 is used to program a first functional module 30 and a second functional module 50. One end of the connector 303 is electrically connected to the programming element 301, and the other end of the connector 303 is electrically connected to the connection module 10.

[0032] Specifically, the programming component 301 is used to store upgrade data, and the connector 303 is electrically connected to the programming component 301 and is used to transmit the upgrade data to the electronic device 100. During programming, the programming component 300 is electrically connected to the electronic device 100, and the upgrade data can be transmitted to the electronic device 100 via the connector 303. The electronic device 100 includes multiple modules; in this application, the modules in the electronic device 100 that need to be upgraded are referred to as functional modules. A functional module can be any module within the electronic device 100 that needs to be upgraded. There can be one or more functional modules. In embodiments with multiple functional modules, the first module to be upgraded is the first functional module 30, the second module to be upgraded is the second functional module 50, and subsequent functional modules are named in the same manner according to the upgrade order.

[0033] The following description uses only electronic device 100 as energy storage power supply 101 and wireless charging module 1013 within energy storage power supply 101 as the functional module. The same explanation applies to implementations where electronic device 100 is another device, or where the functional module is another module within energy storage power supply 101; specific details will not be elaborated upon.

[0034] Please see Figure 7 The energy storage power supply 101 is a device capable of storing and releasing electrical energy. The energy storage power supply 101 includes a battery unit 1011 and a wireless charging module 1013. The battery unit 1011 is the unit in the energy storage power supply 101 used for storing and releasing electrical energy.

[0035] When the energy storage power supply 101 is charging, it can receive electrical energy from an external input source and store it in the battery cell 1011. When the energy storage power supply 101 is discharging, the battery cell 1011 can output electrical energy to charge the load. The energy storage power supply 101 can charge the load via wireless charging mode and / or wired charging mode.

[0036] In wired charging mode, the energy storage power supply 101 delivers electrical energy from the battery unit 1011 to the load via metal wires, connectors, or interfaces. In this embodiment, the energy storage power supply 101 includes a wireless charging module 1013. In wireless charging mode, the electrical energy from the battery unit 1011 can be output to the load via the wireless charging module 1013. The wireless charging module 1013 can be one or more. For example, the following description assumes two wireless charging modules 1013 (a first wireless charging module 31 and a second wireless charging module 51). If both wireless charging modules 1013 need to be upgraded, the first functional module 30 is the first wireless charging module 31, and the second functional module 50 is the second wireless charging module 51.

[0037] The energy storage power supply 101 also includes a connection module 10. The connection module 10 is used for electrical connection with external components (e.g., the programming assembly 300) to achieve electrical connection between the energy storage power supply 101 and the external components. A connection module 10 includes multiple pins. Pins are metal contact points used for electrical connection and signal transmission. A wireless charging module 1013 includes multiple pins for connection with the pins for data interaction. Correspondingly, the connector 303 of the programming assembly 300 includes multiple probes (e.g., a first probe 3031 and a second probe 3032). When the programming assembly 300 is connected to the connection module 10, the probes of the connector 303 connect with the pins, thereby achieving electrical connection between the probes and the pins. The programming assembly 300 can write upgrade data into the wireless charging module 1013 through the electrical connection between the probes and the pins, thereby achieving upgrade of the wireless charging module 1013. It should be noted that probes, pins, and terminals have different electrical types, and only probes, pins, and terminals with matching electrical types will form an electrical connection.

[0038] Please see Figure 3 and Figure 4 In some embodiments, connector 303 includes a first probe 3031 and a second probe 3032.

[0039] In embodiments with two pins / pins, the connector 303 includes two probes, namely a first probe 3031 and a second probe 3032. When the front side 305 of the programming assembly 300 is facing upwards, the connector module 10 is inserted and the connector 303 is electrically connected to the connector module 10. The first probe 3031 and the second probe 3032 are electrically connected to the first pin unit 111 and the second pin unit 131, respectively. When the back side 307 of the programming assembly 300 is facing upwards, the connector module 10 is inserted and the connector 303 is electrically connected to the connector module 10. The second probe 3032 and the first probe 3031 are electrically connected to the first pin unit 111 and the second pin unit 131, respectively.

[0040] Please see Figure 5 or Figure 6 In some embodiments, connector 303 includes a Type-C plug.

[0041] Specifically, the Type-C plug supports reversible insertion, meaning that the Type-C plug can be inserted into the connection module 10 from the front 305 of the programming component 300 facing upwards, or it can be inserted into the connection module 10 from the back 307 of the programming component 300 facing upwards, providing two insertion methods for the programming component 300.

[0042] Please see Figure 3 and Figure 4 , Figure 5 or Figure 6The electronic device 100 includes a connection module 10, a first functional module 30, and a second functional module 50. The connection module 10 includes a pin surface and multiple pins disposed on the pin surface. The multiple pins include a first pin unit 111 and a second pin unit 131, which are mirror-symmetrical about a pin center M formed by the multiple pins. The first functional module 30 includes a first pin unit 33 and a second pin unit 35, which are used for electrical connection with the connector 303 of the programming component 300. The second functional module 50 includes a third pin unit 53 and a fourth pin unit 55, which are used for electrical connection with the connector 303 of the programming component 300. The first pin unit 33 and the third pin unit 53 are the same, the second pin unit 35 and the fourth pin unit 55 are the same, the first pin unit 33 and the fourth pin unit 55 are both electrically connected to the first pin unit 111, and the second pin unit 35 and the third pin unit 53 are both electrically connected to the second pin unit 131. When the front side 305 of the programming component 300 is facing upward and the connection module 10 is inserted, the first functional module 30 is electrically connected to the programming component 300 through the connection module 10. When the back side 307 of the programming component 300 is facing upward and the connection module 10 is inserted, the second functional module 50 is electrically connected to the programming component 300 through the connection module 10. The front side 305 and the back side 307 are two opposite surfaces of the programming component 300.

[0043] Specifically, the connection module 10 includes a housing and multiple pins, with the pins disposed on the housing. More specifically, the housing includes a pin surface, which typically includes the upper surface of the housing and / or a side surface connected to the upper surface. The multiple pins pass through the upper surface and / or the side surface, and the center surrounded by the multiple pins is the pin center M. The multiple pins can be arranged in a ring-shaped uniform distribution or an array distribution (e.g., Figure 5 or Figure 6 (As shown in the 2x2 array). Mirror symmetry means that the pin of the first pin unit 111 is rotated 180° along the pin center M and overlaps with the pin of the second pin unit 131. The first pin unit 111 and the second pin unit 131 may include one or more pins, as long as they are mirror symmetrical. Taking the first pin unit 111 and the second pin unit 131 as having only one pin... Figure 5It includes 16 pins, among which pins A1 and B1 are mirror-symmetric about the pin center M, pins A2 and B2 are mirror-symmetric about the pin center M, pins A3 and B3 are mirror-symmetric about the pin center M, pins A4 and B4 are mirror-symmetric about the pin center M, pins A5 and B5 are mirror-symmetric about the pin center M, pins A6 and B6 are mirror-symmetric about the pin center M, pins A7 and B7 are mirror-symmetric about the pin center M, and pins A8 and B8 are mirror-symmetric about the pin center M.

[0044] The first pin unit 33 and the third pin unit 53 are identical, meaning that the first pin unit 33 and the third pin unit 53 have the same electrical type and can be matched with the same probe on the programming component 300 (the first probe 3031 in this application). The second pin unit 35 and the fourth pin unit 55 are identical, meaning that the second pin unit 35 and the fourth pin unit 55 have the same electrical type and can be matched with the same probe on the programming component 300 (the second probe 3032 in this application).

[0045] In the electronic device 100 and programming system 1000 of this application, the first pin unit 33 and the second pin unit 35 of the first functional module 30, and the third pin unit 53 and the fourth pin unit 55 of the second functional module 50, are connected in the opposite manner to the first pin unit 111 and the second pin unit 131. When the connection module 10 is inserted with the front side 305 of the programming component 300 facing upwards, the first functional module 30 can be electrically connected to the programming component 300 through the connection module 10, thereby upgrading the first functional module 30. When the connection module 10 is inserted with the back side 307 of the programming component 300 facing upwards, the functional module is electrically connected to the programming component 300 through the connection module 10, thereby upgrading the second functional module 50. In this way, one connection module 10 can upgrade the first functional module 30 and the second functional module 50 respectively without disassembly, which is efficient and simple, and is beneficial to the debugging, verification and manufacturing of the electronic device 100.

[0046] Please see Figure 3 and Figure 4 In some embodiments, the connector 303 includes a first probe 3031 and a second probe 3032. When the connector module 10 is inserted with the front side 305 of the programming assembly 300 facing upwards, the first pin unit 33 is electrically connected to the first probe 3031 through the first pin unit 111, and the second pin unit 35 is electrically connected to the second probe 3032 through the second pin unit 131. The first functional module 30, the first pin unit 33, the first pin unit 111, the first probe 3031, the programming assembly 300, the second probe 3032, the second pin unit 131, the second pin unit 35, and the first functional module 30 form a first programming circuit, such as... Figure 3As shown. When the connection module 10 is inserted with the reverse side 307 of the programming component 300 facing upwards, the fourth pin unit 55 is electrically connected to the second probe 3032 through the first pin unit 111, and the third pin unit 53 is electrically connected to the first probe 3031 through the second pin unit 131. The second functional module 50, the fourth pin unit 55, the first pin unit 111, the second probe 3032, the programming component 300, the first probe 3031, the second pin unit 131, the third pin unit 53, and the second functional module 50 form the second programming circuit, as follows. Figure 4 As shown.

[0047] Specifically, the first probe 3031 is electrically matched with the first pin unit 33 and the third pin unit 53, and the second probe 3032 is electrically matched with the second pin unit 35 and the fourth pin unit 55. Therefore, when the connection module 10 is inserted with the front side 305 of the programming component 300 facing upwards ( Figure 3 As shown, the first probe 3031 is connected to the first pin unit 111, and the second probe 3032 is connected to the second pin unit 131. Although the first pin unit 33 and the fourth pin unit 55 are physically connected to the first pin unit 111 and the first probe 3031, the fourth pin unit 55 and the first probe 3031 are electrically incompatible, therefore the fourth pin unit 55 and the first probe 3031 do not form an electrical connection. Similarly, when the connection module 10 is inserted with the front side 305 of the programming component 300 facing upwards, the third pin unit 53 and the second probe 3032 are electrically incompatible, therefore the third pin unit 53 and the second probe 3032 do not form an electrical connection.

[0048] When the connection module 10 is inserted with the reverse side 307 of the programming component 300 facing upwards ( Figure 4 As shown, the first probe 3031 is connected to the second pin unit 131, and the second probe 3032 is connected to the first pin unit 111. Although the second pin unit 35 and the third pin unit 53 are physically connected to the first pin unit 111 and the first probe 3031, the electrical types of the second pin unit 35 and the first probe 3031 are incompatible, therefore, the second pin unit 35 and the first probe 3031 do not form an electrical connection. Similarly, when the connection module 10 is inserted with the reverse side 307 of the programming component 300 facing upwards, the electrical types of the first pin unit 33 and the second probe 3032 are incompatible, therefore, the first pin unit 33 and the second probe 3032 do not form an electrical connection.

[0049] Thus, when the connection module 10 is inserted with the front side 305 of the programming component 300 facing upwards, the programming component 300 can upgrade the first functional module 30 through the first programming circuit. When the connection module 10 is inserted with the back side 307 of the programming component 300 facing upwards, the programming component 300 can upgrade the second functional module 50 through the second programming circuit. Thus, the first functional module 30 and the second functional module 50 can be upgraded through a connection module 10.

[0050] Please see Figure 5 or Figure 6 In some embodiments, the connection module 10 includes a first pin group 11 and a second pin group 13. The first pin group 11 includes a plurality of pins, and the plurality of pins in the first pin group 11 include at least a first pin unit 111. The second pin group 13 includes a plurality of pins, and the plurality of pins in the second pin group 13 include at least a second pin unit 131. The plurality of pins in the first pin group 11 are arranged in a straight line, and the plurality of pins in the second pin group 13 are arranged in a straight line. The plurality of pins in the first pin group 11 and the plurality of pins in the second pin group 13 are mirror symmetrical about the pin center M.

[0051] Specifically, the multiple pins on a connection module 10 can be divided into a first pin group 11 and a second pin group 13. Figure 5 In the connection module 10, there are 16 pins. Pins A1, A2, A3, A4, A5, A6, A7, and A8 form the first pin group 11, and pins B1, B2, B3, B4, B5, B6, B7, and B8 form the second pin group 13. Pins A1 to A8 are arranged in a straight line with equal spacing, and pins B1 to B8 are also arranged in a straight line with equal spacing. The set formed by pins A1 to A8 (i.e., the first pin group 11) and the set formed by pins B1 to B8 (i.e., the second pin group 13) are mirror-symmetrical about the pin center M. Figure 6 In the middle, the connection module 10 includes 24 pins. Pins A1 to A12 are the first pin group 11, and pins B1 to B12 are the second pin group 13. The set formed by pins A1 to A12 (i.e., the first pin group 11) and the set formed by pins B1 to B12 (i.e., the second pin group 13) are mirror symmetrical about the pin center M.

[0052] At least some of the pins on the connection module 10 are used for upgrades. That is, at least some of the pins in the first pin group 11 and the second pin group 13 are used for electrical connection with the programming component 300, and the pins used for electrical connection with the programming component 300 are the first pin unit 111 and the second pin unit 131.

[0053] In some embodiments, the first pin unit 111 and the second pin unit 131 each contain only one pin, such as Figure 5 As shown, pins A8 and B8 are used for electrical connection with the programming component 300. Pin A8 is the first pin unit 111, and pin B8 is the second pin unit 131. Pins A8 and B8 are mirror-symmetrical about the pin center M.

[0054] In other embodiments, the first pin unit 111 and the second pin unit 131 may each contain only a plurality of pins (more than or equal to two), such as Figure 6 As shown, pins A11 and A12 form the first pin unit 111, and pins B11 and B12 form the second pin unit 131. The set formed by pins A11 and A12 (i.e., the first pin unit 111) and the set formed by pins B11 and B12 (i.e., the second pin unit 131) are mirror-symmetric about the pin center M. Specifically, pins A11 and B11 are mirror-symmetric about the pin center M, and pins A12 and B12 are mirror-symmetric about the pin center M.

[0055] The first pin group 11 and the second pin group 13 are mirror-symmetrical about the pin center M, allowing the programming component 300 to be inserted into the connection module 10 in both directions (e.g., front 305 and back 307). The first pin unit 111 and the second pin unit 131 are mirror-symmetrical about the pin center M, allowing the programming component 300 to be aligned with the first pin unit 111 and the second pin unit 131 after the connection module 10 is inserted in both directions, thus allowing the programming component 300 to be programmed (i.e., upgraded) in both directions.

[0056] Please see Figure 5 In some embodiments, the first pin unit 111 includes a first pin, the second pin unit 131 includes a second pin, the first pin unit 33 includes a first pin, and the second pin unit 35 includes a second pin. The third pin unit 53 includes a third pin, and the fourth pin unit 55 includes a fourth pin.

[0057] Specifically, in an embodiment where both the first pin unit 111 and the second pin unit 131 include only one pin, the pin of the first pin unit 111 is the first pin, and the pin of the second pin unit 131 is the second pin. Correspondingly, both the first pin unit 111 and the second pin unit 131 include only one pin. Figure 5 In the diagram, foot A8 is the first foot position, and foot B8 is the second foot position.

[0058] Please see Figure 3 , Figure 5 and Figure 7In some embodiments, the electronic device 100 includes a power storage device 101. The connection module 10 includes a Type-C interface. The first functional module 30 includes a first wireless charging module 31. The second functional module 50 includes a second wireless charging module 51. The first pin unit 33 includes a first data interaction line (SWDIO1). The second pin unit 35 includes a first unidirectional clock line (SWCLK1). The third pin unit 53 includes a second data interaction line (SWDIO2). The fourth pin unit 55 includes a second unidirectional clock line (SWCLK2).

[0059] Specifically, the first wireless charging module 31 and the second wireless charging module 51 include multiple pins, including at least a data interaction line (SWDIO) and a unidirectional clock line (SWCLK). The data interaction line and the unidirectional clock line are necessary for upgrades. Correspondingly, the first wireless charging module 31 includes at least a first data interaction line and a first unidirectional clock line, and the second wireless charging module 51 includes at least a second data interaction line and a second unidirectional clock line.

[0060] like Figure 2 As shown, in the traditional solution, a wireless charging module is connected to a connection module, and a connection module is connected to a programming component. Without disassembling the device, a connection module can only upgrade one wireless charging module.

[0061] like Figure 3 and Figure 4 As shown, in the embodiments of this application, the first data interaction line (SWDIO1) is electrically connected to the first pin unit 111 (A8), the first unidirectional clock line (SWCLK1) is electrically connected to the second pin unit 131 (B8), the second data interaction line (SWDIO2) is electrically connected to the second pin unit 131 (B8), and the second unidirectional clock line (SWCLK2) is electrically connected to the first pin unit 111 (A8).

[0062] In the case of an upgrade, the programming component 300 can be inserted into the connection module 10 in any direction (forward or reverse) to upgrade any functional module (first wireless charging module 31 or second wireless charging module 51). After the upgrade is completed, the programming component 300 pulls out the connection module 10, flips it 180°, and then inserts the connection module 10 from (reverse or forward) to upgrade another functional module (second wireless charging module 51 or first wireless charging module 31).

[0063] Please see Figures 3 to 6In some embodiments, the first pin unit 111 includes a first sideband pin (A8), the second pin unit 131 includes a second sideband pin (B8), the first data interaction line and the second unidirectional clock line are connected to the first sideband pin A8, and the first unidirectional clock line and the second data interaction line are connected to the second sideband pin B8.

[0064] Specifically, the first unidirectional clock line (SWCLK1) and the second unidirectional clock line (SWCLK2) are used to control the update speed and data interaction frequency between the programming component 300 and the first wireless charging module 31 or the second wireless charging module 51 during the upgrade process. A higher clock frequency can speed up the firmware programming process. The first data interaction line (SWDIO1) and the second data interaction line (SWDIO2) are used to transmit information between the programming component 300 and the first wireless charging module 31 or the second wireless charging module 51. In the embodiment where the connection module 10 includes a Type-C interface, the Type-C interface includes multiple pins, wherein different pins have different functions. Figure 5 In the embodiment of the connection module 10 shown, which includes a Type-C interface, pins A1 and B1 are used for grounding, and pins A5 and B5 are pins CC1 and CC2, respectively, used to determine the insertion direction of the Type-C interface. The first sideband-purpose pin (A8) and the second sideband-purpose pin (B8) are unused pins of the Type-C interface. Upgrading using these unused pins avoids electrical or protocol conflicts.

[0065] Please see Figure 1 In some embodiments, the energy storage power supply 101 further includes a control unit 70, which is electrically connected to the first functional module 30 and the second functional module 50 via a communication bus. The first functional module 30 and the second functional module 50 interact with the control unit 70 via the communication bus.

[0066] Specifically, during the upgrade process, the control unit 70 is used to acquire information about the first functional module 30 and the second functional module 50, and the communication bus is used to transmit information about the first functional module 30 and the second functional module 50 to the control unit 70, thereby monitoring the upgrade process of the first functional module 30 and the second functional module 50. If an abnormality such as voltage or temperature is detected, the upgrade is paused and waits for normal recovery to ensure that the first functional module 30 and the second functional module 50 complete the upgrade under safe conditions.

[0067] Please see Figure 1 In some embodiments, the energy storage power supply 101 further includes a bidirectional fast charging protocol control unit 90, which is electrically connected to the connection module 10.

[0068] Specifically, the bidirectional fast charging protocol control unit 90 is used to adjust the voltage and current of the energy storage power supply 101 in real time according to the fast charging protocol, so as to control the output power of the energy storage power supply 101 to the load when the load is electrically connected to the energy storage power supply 101, and ensure that the charging process is carried out efficiently and safely.

[0069] In the description of this specification, the references to terms such as "some embodiments," "in one example," "exemplarily," etc., indicate that a specific feature, structure, material, or characteristic described in connection with an embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0070] Any process or method description in the flowchart or otherwise herein can be understood as representing a component, segment, or portion of code comprising one or more executable instructions for implementing a particular logical function or process, and the scope of the preferred embodiments of this application includes additional implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order according to the functions involved, as should be understood by those skilled in the art to which embodiments of this application pertain.

[0071] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.

Claims

1. An electronic device, characterized in that, include: The connection module includes a foot surface and a plurality of feet disposed on the foot surface. The plurality of feet include a first foot unit and a second foot unit, and the first foot unit and the second foot unit are mirror-symmetrical about a foot center formed by the plurality of feet. The first functional module includes a first pin unit and a second pin unit, which are used for electrical connection with the connector of the programming component. and The second functional module includes a third pin unit and a fourth pin unit, which are used for electrical connection with the connector of the programming component; The first pin unit and the third pin unit are the same, the second pin unit and the fourth pin unit are the same, the first pin unit and the fourth pin unit are both electrically connected to the first pin unit, and the second pin unit and the third pin unit are both electrically connected to the second pin unit. When the connection module is inserted with the front side of the programming component facing upwards, the first functional module is electrically connected to the programming component through the connection module. When the connection module is inserted with the back side of the programming component facing upwards, the second functional module is electrically connected to the programming component through the connection module. The front side and the back side are two opposite surfaces of the programming component.

2. The electronic device according to claim 1, characterized in that, The connector includes a first probe and a second probe. When the connection module is inserted with the programming component facing upwards, the first pin unit is electrically connected to the first probe through the first pin position unit, and the second pin unit is electrically connected to the second probe through the second pin position unit. The first functional module, the first pin unit, the first pin position unit, the first probe, the programming component, the second probe, the second pin position unit, the second pin unit, and the first functional module form a first programming circuit. When the connection module is inserted with the programming component facing upwards, the fourth pin unit is electrically connected to the second probe through the first pin unit, and the third pin unit is electrically connected to the first probe through the second pin unit. The second functional module, the fourth pin unit, the first pin unit, the second probe, the programming component, the first probe, the second pin unit, the third pin unit, and the second functional module form a second programming circuit.

3. The electronic device according to claim 1, characterized in that, The connection module includes a first pin group and a second pin group. The first pin group includes multiple pins, and the multiple pins in the first pin group include at least the first pin unit. The second pin group includes multiple pins, and the multiple pins in the second pin group include at least the second pin unit. The multiple pins in the first pin group are arranged in a straight line, and the multiple pins in the second pin group are arranged in a straight line. The multiple pins in the first pin group and the multiple pins in the second pin group are mirror-symmetrical about the center of the pins.

4. The electronic device according to claim 1, characterized in that, The first pin unit includes a first pin, the second pin unit includes a second pin, the first pin unit includes a first pin, the second pin unit includes a second pin, the third pin unit includes a third pin, and the fourth pin unit includes a fourth pin.

5. The electronic device according to claim 4, characterized in that, The electronic device includes an energy storage power supply, the connection module includes a Type-C interface, the first functional module includes a first wireless charging module, the second functional module includes a second wireless charging module, the first pin unit includes a first data interaction line, the second pin unit includes a first unidirectional clock line, the third pin unit includes a second data interaction line, and the fourth pin unit includes a second unidirectional clock line.

6. The electronic device according to claim 5, characterized in that, The first pin unit includes a first sideband pin, the second pin unit includes a second sideband pin, the first data interaction line and the second unidirectional clock line are connected to the first sideband pin, and the first unidirectional clock line and the second data interaction line are connected to the second sideband pin.

7. The electronic device according to claim 5, characterized in that, The energy storage power supply also includes a control unit, which is electrically connected to the first functional module and the second functional module via a communication bus. The first functional module and the second functional module interact with the control unit via the communication bus.

8. The electronic device according to claim 5, characterized in that, The energy storage power supply also includes a bidirectional fast charging protocol control unit, which is electrically connected to the connection module.

9. An energy storage power source, characterized in that, include: Battery cell; and A wireless charging module is provided, through which the electrical energy of the battery unit is output to the outside.