Charging base, energy storage device and electric equipment
By integrating multiple charging slots, jacks and communication modules into the charging base, the problem of single function of existing shared mobile power charging bases is solved, and the multifunctional effect of charging the energy storage body while providing multiple power sources and network connections for external devices is achieved.
Patent Information
- Application Number
- CN202422322399.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-09-23
AI Technical Summary
The charging base of the existing shared mobile power supply has a simple structure design and relatively simple functions, which cannot meet the diverse power needs of users.
A charging base is designed, which includes a charging body, a power module and an output module. It has multiple charging slots, charging jacks and communication jacks, supports AC-DC conversion, can simultaneously charge the energy storage body and provide DC or AC power to external power-consuming devices, and has wireless communication function.
The charging base can provide a variety of power types and network connections for external power-consuming devices while charging the energy storage body, meeting diverse power needs and improving user experience and device flexibility.
Smart Images

Figure CN223391129U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of energy storage power supplies, in particular to a charging base, an energy storage device and electrical equipment. Background Art
[0002] Shared mobile power banks, also known as shared power banks, are short-term rental power bank services operated by businesses. Similar to shared cars and shared bicycles, they are a branch of the sharing economy. Users use their mobile devices to scan the QR code on the device screen and pay a deposit to rent a power bank. After the power bank is successfully returned, the deposit can be withdrawn and returned to the account at any time.
[0003] However, the current charging bases of shared mobile power supplies have a simple structure and design and relatively simple functions, which cannot meet the diverse power needs of users. Utility Model Content
[0004] In view of this, the present invention aims to solve at least one of the problems in the related art to a certain extent. To this end, the purpose of the present invention is to provide a charging base, an energy storage device and an electrical device.
[0005] The present application provides a charging base. The charging base includes a charging body, a power module, and an output module. The power module is fixedly mounted within the charging body and includes an AC-DC converter. The output module includes a first output terminal and a second output terminal, both of which are connected to the power module. The charging body is provided with at least one charging slot adapted for the first output terminal, and the charging body is provided with at least one charging jack adapted for the second output terminal.
[0006] In some embodiments, a charging port is provided in the charging slot, and the charging port is used to charge the energy storage body.
[0007] In some embodiments, the charging slot and at least one of the charging sockets are located on the top wall of the charging body, and the top of the charging slot and the top of the charging socket are located on the same horizontal plane or are inclined.
[0008] In some embodiments, at least one of the charging sockets is located on a side wall of the charging body.
[0009] In some embodiments, the charging base also includes a communication module, which is fixedly installed in the charging body, the power module is connected to the communication module, and the communication module includes a communication circuit and an output control circuit corresponding to the communication jack; the output module also includes a third output end, the third output end is connected to the communication module, and the charging body is also provided with at least one communication jack corresponding to the third output end.
[0010] In some embodiments, the charging slot, at least one charging socket and at least one communication socket are located on the top wall of the charging body, the communication socket is adjacent to the charging socket, and the top of the communication socket or the top of the charging socket is located on the same horizontal plane as the top of the charging slot or is inclined.
[0011] In some embodiments, at least one of the communication sockets and / or at least one of the charging sockets is located on a side wall of the charging body.
[0012] In some embodiments, the charging slot and at least one of the charging sockets are located on a side wall of the charging body, and the top of the charging slot and the top of the charging socket are located on the same vertical plane or are inclined.
[0013] In some embodiments, at least one of the charging sockets is located on the top wall of the charging body.
[0014] In some embodiments, the charging slot, at least one charging socket and at least one communication socket are located on the side wall of the charging body, the communication socket is adjacent to the charging socket, and the top of the communication socket or the top of the charging socket is located on the same vertical plane as the top of the charging slot or is arranged at an angle.
[0015] In some embodiments, at least one of the communication sockets and / or at least one of the charging sockets is located on the top wall of the charging body.
[0016] In some embodiments, a power socket is provided on the bottom wall of the charging base, and the charging base is connected to an external power source through the power socket.
[0017] The present application also provides an energy storage device. The energy storage device includes an energy storage body and a charging base according to any one of the above embodiments. The energy storage body can be plugged into the charging slot for charging. The charging slot is also provided with a first limiting structure. The side wall of the energy storage body is provided with a second limiting structure. The first limiting structure and the second limiting structure are docked to limit the energy storage body within the charging slot. When the power socket is disconnected from the external power supply and the energy storage body is plugged into the charging slot, electrical appliances electrically connected to the charging base can be powered by the energy storage body.
[0018] The present application also provides an electrical device, which includes the energy storage device described in the above embodiment.
[0019] In this way, the charging base of the present application can charge the energy storage body through the charging slot while providing power to external electrical appliances through the charging jack, thereby realizing the multifunctional function of the charging base.
[0020] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:
[0022] Figure 1 It is a schematic structural diagram of a charging base according to an embodiment of the present application;
[0023] Figure 2 is a schematic structural diagram of an energy storage device according to an embodiment of the present application;
[0024] Figure 3 is a schematic structural diagram of an energy storage device according to an embodiment of the present application;
[0025] Figure 4 is a schematic structural diagram of an energy storage device according to an embodiment of the present application;
[0026] Figure 5 It is a schematic structural diagram of a charging base according to an embodiment of the present application;
[0027] Figure 6 is a schematic structural diagram of an energy storage device according to an embodiment of the present application;
[0028] Figure 7 It is a structural schematic diagram of the charging base in an embodiment of the present application.
[0029] Main components reference numbers:
[0030] Energy storage device 1000;
[0031] Charging base 100, first limiting structure 101, charging interface 111, charging body 10, charging slot 11, top 112 of the charging slot, charging socket 12, top 121 of the charging socket, first charging socket 122, second charging socket 123, top wall 13, side wall 14, communication socket 15, bottom wall 16, power socket 161, power control button 17, first control button 171, second control button 172, power module 20, output module 30, first output terminal 31, second output terminal 32, third output terminal 33, communication module 40, power control module 50;
[0032] Energy storage body 200 , charging contacts 201 , and second limiting structure 202 . DETAILED DESCRIPTION
[0033] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be understood as limiting the present invention.
[0034] In the description of this utility model, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance, or to implicitly specify the number of the technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the specified features. In the description of this utility model, "plurality" means two or more, unless otherwise specifically specified.
[0035] In the description of this utility model, it should be noted that, unless otherwise specified or limited, the terms "installed" and "connected" should be understood in a broad sense and may refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection, or mutual communication; direct connection, indirect connection through an intermediate medium, internal communication between two components, or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0036] The following disclosure provides many different embodiments or examples for implementing different structures of the present invention. To simplify the disclosure of the present invention, the components and configurations of specific examples are described below. Of course, these are merely examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numbers and / or reference letters in different examples. Such repetition is for the purpose of simplicity and clarity and does not in itself indicate the relationship between the various embodiments and / or configurations discussed.
[0037] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be understood as limiting the present invention.
[0038] See also Figure 1 and Figure 2The present application provides a charging base 100. The charging base 100 includes a charging body 10, a power module 20 and an output module 30. The power module 20 is fixedly installed in the charging body 10. The power module 20 includes an AC-DC converter. The output module 30 includes a first output terminal 31 and a second output terminal 32, and the first output terminal 31 and the second output terminal 32 are connected to the power module 20. The charging body 10 is provided with at least one charging slot 11 adapted to the first output terminal 31, and the charging body 10 is provided with at least one charging socket 12 adapted to the second output terminal 32.
[0039] Specifically, at least one charging slot 11 is provided on the charging body 10, that is, the charging body 10 may be provided with one or more charging slots 11, and the top wall 10 of the charging base 100 may be provided with one or more charging slots 11. Figure 2 and Figure 3 As shown, the charging base 100 is provided with three charging slots 11, into which three energy storage bodies 200 can be respectively inserted, so that all three energy storage bodies 200 can be charged simultaneously. The top of the energy storage body 200 is also provided with at least one external charging port, through which external electrical devices can be charged. This external charging port can provide direct current (DC), that is, at least one external charging port is a DC output port.
[0040] When the charging base 100 is provided with a single charging slot 11, the structure of the charging base 100 is relatively simple and easy to manufacture. When the charging base 100 is provided with multiple charging slots 11, multiple energy storage bodies 200 can be charged simultaneously. Furthermore, if the mains power supply to the charging base 100 is interrupted, there is a greater probability that at least one energy storage body 200 will remain on the charging base 100, thereby ensuring that the charging base 100 can provide uninterrupted power to external power-consuming devices.
[0041] At least one charging socket 12 is also provided on the charging body 10, that is, the top wall 10 of the charging base 100 of the present application can not only be provided with a charging slot 11 to charge the energy storage body 200, but also be provided with a charging socket 12 to provide power to external electrical devices, for example, a charging socket 12 for a computer can be provided, and a charging socket 12 for an electric fan can also be provided, so that the charging base 100 of the present application can charge the energy storage body 200 while also providing a charging socket 12 to provide power to the external electrical devices, thereby realizing the multifunctional function of the charging base 100.
[0042] The power module 20 includes an AC-DC converter. The AC-DC converter is a current converter that converts alternating current to direct current. The first output terminal 31 and the second output terminal 32 are connected to the power module 20. The charging body 10 is provided with at least one charging slot 11 that is compatible with the first output terminal 31, and the charging body 10 is provided with at least one charging socket 12 that is compatible with the second output terminal 32. That is, the AC-DC converter can be connected to the first output terminal 31, and the AC-DC converter can output direct current to the first output terminal 31 of the output module 30. The AC-DC converter can be connected to part of the output lines of the second output terminal 32 to output direct current to at least part of the charging sockets 12 corresponding to the second output terminal 32. Alternatively, the AC-DC converter can be connected to all the output lines of the second output terminal 32 to output direct current to all the charging sockets 12 corresponding to the second output terminal 32.
[0043] Therefore, the power module 20 can convert the AC power provided by the external AC power supply into a DC power supply through an AC-DC converter to provide DC power to external electrical appliances, or not convert the AC power provided by the external AC power supply into AC power to provide AC power to external electrical appliances, thereby realizing the different power supply functions of the charging slot 11 and the charging socket 12 of the present application to provide DC power or AC power to external electrical appliances.
[0044] In addition, some of the charging sockets 12 of the present application can be used to provide DC power to external electrical appliances, and other parts of the charging sockets can be used to provide AC power to external electrical appliances. Figure 1 As shown in Figure 1 The multiple first charging sockets 122 on the left side can be used to provide direct current (DC), that is, the charging socket 12 on the left is a DC output port. The shapes of the multiple first charging sockets 122 can be set to different shapes, and the setting shape of the first charging socket 122 matches the corresponding appliance charging interface. Figure 1 The two second charging sockets 123 on the right side of the center can be used to provide alternating current (AC). That is, the left charging socket 12 is an AC output port, and the configuration of the second charging sockets 123 can match the corresponding appliance charging interface. In other words, the charging base 100 of the present application is equipped with DC output and AC output, which can directly power household appliances such as computers and televisions.
[0045] In this way, the charging base 100 of the present application can charge the energy storage body 200 through the charging slot 11 while providing power to external electrical appliances through the charging socket 12, thereby realizing the multifunctional function of the charging base 100.
[0046] Among them, such as Figure 4As shown, a charging port 111 is provided in the charging slot 11, and the charging port 111 is used to charge the energy storage body 200. The energy storage body 200 can be a mobile power supply or other energy storage devices, which are not limited here.
[0047] See also Figure 4 The energy storage body 200 is provided with a charging contact 201 corresponding to the charging interface 111. When the charging contact 201 contacts the charging interface 111 in the charging slot 11, the energy storage body 200 is connected to the power module 20 in the charging base 10 and data communication can be performed.
[0048] See also Figure 1 In one embodiment, the charging slot 11 and at least one charging socket 12 are located on the top wall 13 of the charging body 10, and the top of the charging slot 11 and the top of the charging socket 12 are located on the same horizontal plane or are inclined.
[0049] That is to say, when the charging slot 11 and at least one charging socket 12 are located on the top wall 13 of the charging body 10, the top 112 of the charging slot 11 and the top 121 of the charging socket 12 of the present application can be located on the same horizontal plane, and the appearance of the charging base 100 can be a regular cube or rectangular parallelepiped, or other shapes. It is only necessary to ensure that the end face of the top wall 13 of the charging body 10 is a horizontal plane at the same height, and the appearance of the charging base 100 is more beautiful and decent.
[0050] In addition, the charging base 100 of the present application simultaneously sets the charging slot 11 and at least one charging socket 12 on the top wall of the charging body 10, so that when the user uses the charging slot 11 and the charging socket 12, he or she can simultaneously charge the energy storage body 200 in the charging slot 11 and use the charging socket 12 without changing his or her own position or rotating the charging base 100.
[0051] Specifically, when the charging slot 11 and at least one charging socket 12 are located on the top wall 13 of the charging body 10, the top 112 of the charging slot 11 and the top 121 of the charging socket 12 of the present application may not be located on the same horizontal plane. That is, the end surfaces of the two power supply areas of the top 112 of the charging slot 11 and the top 121 of the charging socket 12 are relatively inclined, such as Figure 1 As shown, this helps the user to more conveniently and quickly determine the setting position of the charging socket 12 when it is necessary to plug an external electrical device into the charging socket 12 on the charging base 100, thereby quickly completing the plugging of the corresponding port.
[0052] Among them, the inclination angle α between the top 112 of the charging slot 11 and the top 121 of the charging socket 12 can be greater than or equal to 90° and less than 180°. For example, the inclination angle α can be 90°, 95°, 99°, 100°, 105°, 110°, 115°, 120°, 125° or 135°, which is not limited here.
[0053] In some embodiments, at least one charging socket 12 is located on a side wall 14 of the charging body 10. The side wall 14 is arranged around the top wall 13. The side wall 14 of the present application can be any one of the four side walls of the charging base 100, and is not limited here.
[0054] That is to say, the charging base 100 of the present application can not only be provided with a charging slot 11 and a charging socket 12 on the top wall 13 of the charging body 10, but can also simultaneously provide at least one charging socket 12 on the side wall 14 of the charging body 10 to meet the user's charging and plugging needs in different directions of the charging base 100, making the charging and plugging method of the charging base 100 more flexible.
[0055] See also Figure 5 In some embodiments, the charging base 100 further includes a communication module 40, which is fixedly mounted within the charging body 10. The power module 20 is connected to the communication module 40, which includes a communication circuit and an output control circuit corresponding to the communication jack. The output module 30 further includes a third output terminal 33, which is connected to the communication module 40. The charging body 10 is also provided with at least one communication jack 15 corresponding to the third output terminal 33. The communication module 40 communicates with the outside world using any of the following methods: NB-IOT, WiFi, LoRa, and CAN.
[0056] That is to say, the charging base 100 of the present application can also be provided with a communication module 40, and the charging body 10 can be provided with at least one communication jack 15 corresponding to the communication module 40, for example, there can be 3, including one WAN jack and two LAN jacks, so that the charging base 100 supports wired network expansion and can be used as a home or small office router.
[0057] The communication circuit inside the communication module 40 may include a wireless communication circuit, so that the communication module 40 can provide wireless network coverage and support simultaneous connection of multiple devices.
[0058] In this way, while the charging base 100 of the present application charges the energy storage body 200 through the charging slot 11, the charging base 100 can also provide power to the electrical equipment through the charging socket 12, and can simultaneously provide network communication connection for other devices through the communication socket 15, thereby realizing the multi-functional function of the charging base 100.
[0059] See also Figure 3 In some embodiments, the charging slot 11, at least one charging socket 12, and at least one communication socket 15 are located on the top wall 13 of the charging body 10, and the communication socket 15 is adjacent to the charging socket 12. The top 311 of the communication socket 15 or the top 121 of the charging socket 12 is located on the same horizontal plane or is inclined relative to the top 112 of the charging slot 11.
[0060] That is to say, on the top wall 13 of the charging body 10 of the present application, the communication jack 15 can be set on a mounting surface at the same height as the charging jack 12, or the communication jack 15 can be set on a mounting surface at a different height from the charging jack 12.
[0061] When the communication jack 15 is set on the mounting surface at the same height as the charging jack 12, at least one charging jack 12 can be set on the left side of the top wall 13, and at least one communication jack 15 can be set on the right side of the top wall 13, so that the appearance of the charging base 100 is more neat and beautiful, and the layout is more reasonable.
[0062] When the communication socket 15 is set on a mounting surface at a different height from the charging socket 12, that is, the communication socket 15 is located on a mounting surface at another height different from the charging socket 12, the arrangement of the communication socket 15 and the charging socket 12 on the top wall 13 is more diversified.
[0063] Specifically, in the charging base 100 of the present application, the top of the mounting surface where the communication jack 15 is located can be located on the same horizontal plane as the top 112 of the charging slot 11, and the top 121 of the mounting surface where the charging jack 12 is located can be arranged at an angle to the top 112 of the charging slot 11. Alternatively, the top of the mounting surface where the communication jack 15 is located can be arranged at an angle to the top 112 of the charging slot 11, and the top 121 of the mounting surface where the charging jack 12 is located can be located on the same horizontal plane as the top 112 of the charging slot 11.
[0064] Among them, the inclination angle α between the top 112 of the charging slot 11 and the top of the communication jack 15 can be greater than or equal to 90° and less than 180°. For example, the inclination angle α can be 90°, 95°, 100°, 107°, 109°, 110°, 115°, 125°, 130° or 140°, and there is no limitation here.
[0065] In some embodiments, at least one communication socket 15 and / or at least one charging socket 12 is located on the side wall 14 of the charging body 10 .
[0066] Specifically, on the basis that the charging slot 11, at least one charging socket 12 and at least one communication socket 15 are located on the top wall 13 of the charging body 10, at least one communication socket 15 and / or at least one charging socket 12 are located on the side wall 14 of the charging body 10, including the following three situations: (1) at least one communication socket 15 is provided on the side wall 14 of the charging body 10, such as Figure 6 (2) At least one charging socket 12 is provided on the side wall 14 of the charging body 10. (3) At least one communication socket 15 and at least one charging socket 12 can be provided on the side wall 14 of the charging body 10 at the same time.
[0067] That is to say, the present application can arrange all the charging slots 11, charging sockets 12, and communication sockets 15 on the top wall 13 of the charging body 10 of the charging base 100. The present application can also arrange all the charging slots 11 and charging sockets 12 on the top wall 13, and arrange all the communication sockets 15 on the side wall 14. The present application can also arrange all the charging slots 11, some of the charging sockets 12, and some of the communication sockets 15 on the top wall 13, and arrange some of the charging sockets 12 and some of the communication sockets 15 on the side wall 14, thereby providing a variety of socket position settings to meet the user's diverse charging socket needs in different directions relative to the charging body 10.
[0068] In addition to being disposed on the top wall 13 of the charging body 10 , the charging slot 11 of the present application may also be disposed on the side wall 14 of the charging body 10 .
[0069] Specifically, in another embodiment, the charging slot 11 and at least one charging socket 12 are located on the side wall 14 of the charging body 10 , and the top 112 of the charging slot 11 and the top 121 of the charging socket 12 are located on the same vertical plane or are inclined.
[0070] That is to say, when the charging slot 11 and at least one charging socket 12 are located on the side wall 14 of the charging body 10, the top 112 of the charging slot 11 and the top 121 of the charging socket 12 of the present application can be located on the same vertical plane, and the appearance of the charging base 100 can be a regular cube or rectangular parallelepiped, or other shapes. It is only necessary to ensure that the end faces of the side walls 14 of the charging body 10 are the same vertical plane, and the appearance of the charging base 100 is more beautiful and decent.
[0071] In addition, the charging base 100 of the present application simultaneously arranges the charging slot 11 and at least one charging socket 12 on the side wall 14 of the charging body 10, so that when the user uses the charging slot 11 and the charging socket 12, he or she can simultaneously charge the energy storage body 200 in the charging slot 11 and use the charging socket 12 without changing his or her own position or rotating the charging base 100.
[0072] Specifically, when the charging slot 11 and at least one charging socket 12 are located on the side wall 14 of the charging body 10, the top 112 of the charging slot 11 and the top 121 of the charging socket 12 of the present application may not be located on the same vertical plane. That is, the end surfaces of the two power supply areas of the top 112 of the charging slot 11 and the top 121 of the charging socket 12 are arranged with respect to each other. This facilitates the user to more conveniently and quickly determine the location of the charging socket 12 when plugging an external electrical device into the charging socket 12 on the charging base 100, thereby quickly completing the plugging of the corresponding port.
[0073] Among them, the inclination angle α between the top 112 of the charging slot 11 and the top 121 of the charging socket 12 can be greater than or equal to 90° and less than 180°. For example, the inclination angle α can be 90°, 95°, 99°, 100°, 105°, 110°, 115°, 120°, 125° or 135°, which is not limited here.
[0074] In some embodiments, at least one charging socket 12 is located on the top wall 13 of the charging body 10 .
[0075] That is to say, the charging base 100 of the present application can not only be provided with a charging slot 11 and a charging socket 12 on the side wall 14 of the charging body 10, but can also simultaneously provide at least one charging socket 12 on the top wall 13 of the charging body 10, to meet the user's charging and plugging needs in different directions of the charging base 100, making the charging and plugging method of the charging base 100 more flexible.
[0076] In some embodiments, when the charging base 100 includes a communication module 40 and a communication socket 15, the charging slot 11, at least one charging socket 12, and at least one communication socket 15 are located on the side wall 14 of the charging body 10, the communication socket 15 is adjacent to the charging socket 12, and the top of the communication socket 15 or the top 121 of the charging socket 12 is located on the same vertical plane as the top 112 of the charging slot 11 or is arranged at an angle.
[0077] That is to say, on the side wall 14 of the charging body 10 of the present application, the communication socket 15 can be set on the same vertical surface as the charging socket 12, or the communication socket 15 can be set on a different vertical surface from the charging socket 12.
[0078] When the communication socket 15 is arranged on the same vertical plane as the charging socket 12, at least one charging socket 12 can be arranged on the left side of the side wall 14, and at least one communication socket 15 can be arranged on the right side of the side wall 14, so that the appearance of the charging base 100 is more neat and beautiful, and the layout is more reasonable.
[0079] When the communication socket 15 is arranged on a different vertical plane from the charging socket 12 , that is, the communication socket 15 is located on a different vertical plane from the charging socket 12 , the arrangement of the communication socket 15 and the charging socket 12 on the top wall 13 is more diversified.
[0080] Specifically, in the charging base 100 of the present application, the top of the mounting surface where the communication jack 15 is located can be located on the same vertical plane as the top 112 of the charging slot 11, and the top 121 of the mounting surface where the charging jack 12 is located can be arranged at an angle to the top 112 of the charging slot 11. Alternatively, the top of the mounting surface where the communication jack 15 is located can be arranged at an angle to the top 112 of the charging slot 11, and the top 121 of the mounting surface where the charging jack 12 is located can be located on the same vertical plane as the top 112 of the charging slot 11.
[0081] Among them, the inclination angle α between the top 112 of the charging slot 11 and the top 311 of the communication jack 15 can be greater than or equal to 90° and less than 180°. For example, the inclination angle α can be 90°, 95°, 100°, 107°, 109°, 110°, 115°, 125°, 130° or 140°, and there is no limitation here.
[0082] In some embodiments, at least one communication socket 15 and / or at least one charging socket 12 is located on the top wall 13 of the charging body 10 .
[0083] Specifically, on the basis that the charging slot 11, at least one charging socket 12 and at least one communication socket 15 are located on the side wall 14 of the charging body 10, at least one communication socket 15 and / or at least one charging socket 12 are located on the top wall 13 of the charging body 10, including the following three situations: (1) At least one communication socket 15 is set on the top wall 13 of the charging body 10. (2) At least one charging socket 12 is set on the top wall 13 of the charging body 10. (3) At least one communication socket 15 and at least one charging socket 12 can be set on the top wall 13 of the charging body 10 at the same time.
[0084] That is to say, the present application can arrange all the charging slots 11, charging jacks 12, and communication jacks 15 on the side walls 14 of the charging body 10 of the charging base 100. The present application can also arrange all the charging slots 11 and charging jacks 12 on the side walls 14, and arrange all the communication jacks 15 on the top wall 13. The present application can also arrange all the charging slots 11, some of the charging jacks 12, and some of the communication jacks 15 on the side walls 14, and arrange some of the charging jacks 12 and some of the communication jacks 15 on the top wall 13, thereby providing a variety of jack position settings to meet the user's diverse charging jack needs in different directions relative to the charging body 10.
[0085] See also Figure 6 In some embodiments, the bottom wall 16 of the charging base 100 is provided with a power socket 161, and the charging base 100 is connected to an external power source through the power socket 161. The external power source can be an AC power source.
[0086] That is to say, when the charging base 100 of the present application can open a charging slot 11, a charging jack 12 or a communication jack 15 on the top wall 13 or the side wall 14, a power socket 161 can be set on the bottom wall 16 to provide power for the charging base 100, making the appearance of the charging base 100 more beautiful.
[0087] In addition, a buffer support 162 may be provided on the bottom wall 16 of the charging base 100 of the present application. The buffer support 162 may be integrally formed with the charging base 100 or detachably provided. The buffer support 162 is used to support the charging base 100 so that the charging base 100 as a whole is more firmly fixed on a certain plane. Figure 6 As shown, there may be four buffer supports 162 , which are respectively disposed at the four corners of the bottom wall 16 of the charging base 100 .
[0088] Also, see Figure 2 and Figure 7 The charging base 100 of the present application may further include a power control module 50, which is connected to the output module 40 and is used to control the power output of the second output terminal 32. The charging body 10 is provided with a power control button 17 adapted to the power control module 50. The power control button 17 can control whether the second output terminal 32 outputs power. The number of power control buttons 17 can be set to one or more.
[0089] For example, the power control module 50 may be a relay switch, which may control the closing and opening of a relay inside the output module 30 connected to the second output terminal 32 .
[0090] like Figure 2 As shown, there are two power control buttons 17, namely a first control button 171 and a second control button 172. The first control button 171 can control the output and pause of DC power in the first charging socket 122, and the second control button 172 can control the output and pause of AC power in the second charging socket 123.
[0091] In this way, the charging base 100 of the present application can control the power status of different charging sockets 12 in the charging base 100 through the power control button 17 on the charging body 10.
[0092] See also Figure 1, the present application also provides an energy storage device 1000. The energy storage device 1000 includes an energy storage body 200 and the charging base 100 described in the above embodiment. The energy storage body 200 can be plugged into the charging slot 11 for charging. The charging slot 11 is also provided with a first limiting structure 101, and a second limiting structure 201 is provided on the side wall of the energy storage body 200. The first limiting structure 101 and the second limiting structure 201 are docked to limit the energy storage body 200 in the charging slot 11. When the power socket 161 is disconnected from the external power supply and the energy storage body 200 is plugged into the charging slot 11, the electrical appliances electrically connected to the charging base 100 can be powered by the energy storage body 200.
[0093] The structure of the charging base 100 is as described above and will not be repeated here.
[0094] The first limiting structure 101 can perform telescopic movement in the corresponding through hole on the side wall of the charging slot 11. The first limiting structure 101 can be a limiting lock, and the second limiting structure 201 can be a groove. The energy storage body 200 can be engaged with the limiting lock in the charging slot 11 through the groove, thereby achieving a limiting effect on the energy storage body 200 in the charging slot 11.
[0095] That is, while the charging base 100 of the energy storage device 1000 of the present application charges the energy storage body 200 through the charging slot 11, the charging base 100 can also provide power to external electrical appliances through the charging jack 12, thereby realizing the multifunctional function of the charging base 100.
[0096] Specifically, when the energy storage unit 200 of the present application is inserted into the charging slot 11 of the charging base 100, the energy storage unit 200 can be automatically charged by the charging base 100. During the charging process, the battery management system (BMS) inside the energy storage unit 200 communicates with the microcontroller (MCU) of the power module 20 inside the charging base 100 to ensure the safety and efficiency of the charging process.
[0097] When the energy storage body 200 is used as an energy storage power bank, it can be taken out from the charging slot 11 separately and used as a portable power bank. At the same time, it supports powering other household appliances through the charging base 100. The energy storage device 1000 of this application is both portable and practical, with powerful comprehensive functions. It can integrate charging, energy storage, power supply and network routing functions, and can meet the diverse needs of home and office environments.
[0098] The present application also provides an electrical device. The electrical device includes the energy storage device 200 described in the above embodiment. The electrical device can be, for example, an electric vehicle, a household appliance, or other device, which is not limited here.
[0099] In this way, the charging base 100 of the energy storage device 1000 in the electrical equipment of the present application can charge the energy storage body 200 through the charging slot 11, and the charging base 100 can also provide power to external electrical appliances through the charging socket 12, thereby realizing the multi-functional function of the charging base 100.
[0100] The above embodiments merely illustrate several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the concept of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A charging base, characterized in that: The charging base includes a charging body, a power module and an output module. The power module is fixedly installed in the charging body and includes an AC-DC converter. The output module includes a first output end and a second output end, both of which are connected to the power module. The charging body is provided with at least one charging slot adapted to the first output end, and the charging body is provided with at least one charging socket adapted to the second output end.
2. The charging base according to claim 1, characterized in that: A charging interface is provided in the charging slot, and the charging interface is used to charge the energy storage body.
3. The charging base according to claim 1, characterized in that: The charging slot and at least one charging socket are located on the top wall of the charging body, and the top of the charging slot and the top of the charging socket are located on the same horizontal plane or are arranged at an angle.
4. The charging base according to claim 3, characterized in that: At least one of the charging sockets is located on a side wall of the charging body.
5. The charging base according to claim 1, characterized in that: The charging base also includes a communication module, which is fixedly installed in the charging body. The power module is connected to the communication module. The communication module includes a communication circuit and an output control circuit corresponding to the communication jack; the output module also includes a third output end, which is connected to the communication module. The charging body is also provided with at least one communication jack corresponding to the third output end.
6. The charging base according to claim 5, characterized in that: The charging slot, at least one charging socket and at least one communication socket are located on the top wall of the charging body, the communication socket is adjacent to the charging socket, and the top of the communication socket or the top of the charging socket is located on the same horizontal plane as the top of the charging slot or is arranged at an angle.
7. The charging base according to claim 6, characterized in that: At least one of the communication sockets and / or at least one of the charging sockets is located on a side wall of the charging body.
8. The charging base according to claim 1, characterized in that: The charging slot and at least one charging socket are located on the side wall of the charging body, and the top of the charging slot and the top of the charging socket are located on the same vertical plane or are arranged obliquely.
9. The charging base according to claim 8, characterized in that: At least one of the charging sockets is located on the top wall of the charging body.
10. The charging base according to claim 5, characterized in that: The charging slot, at least one charging socket and at least one communication socket are located on the side wall of the charging body, the communication socket is adjacent to the charging socket, and the top of the communication socket or the top of the charging socket is located on the same vertical plane as the top of the charging slot or is arranged at an angle.
11. The charging base according to claim 10, characterized in that: At least one of the communication sockets and / or at least one of the charging sockets is located on the top wall of the charging body.
12. The charging base according to claim 1, wherein: A power socket is provided on the bottom wall of the charging base, and the charging base is connected to an external power source through the power socket.
13. An energy storage device, characterized in that: The energy storage device includes an energy storage body and a charging base according to any one of claims 1 to 12, wherein the energy storage body can be plugged into the charging slot for charging, and a first limiting structure is further provided in the charging slot, and a second limiting structure is provided on the side wall of the energy storage body, and the first limiting structure is docked with the second limiting structure to limit the energy storage body in the charging slot; When the power socket is disconnected from the external power source and the energy storage body is inserted into the charging slot, the electrical appliances electrically connected to the charging base can be powered by the energy storage body.
14. An electrical device, characterized in that: The electrical equipment includes the energy storage device according to claim 13.