Charging dock, energy storage apparatus and electric device
By integrating multiple charging slots and sockets into the charging base and incorporating a built-in power converter, the problem of limited functionality in shared power banks is solved, achieving multi-functionality, stable power supply, and flexible power usage.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-03-26
AI Technical Summary
The charging base of shared power banks has a simple structural design and limited functions, which cannot meet the diverse power needs of users.
Design a charging base comprising a charging body, a power module, and an output module, featuring multiple charging slots and charging ports, supporting both DC and AC power supply, and incorporating AC-DC, DC-DC, and DC-AC converters to achieve multi-functional power supply and uninterruptible power supply functionality.
The charging base enables the charging unit to charge the energy storage device while simultaneously providing multiple power types to external electrical equipment, ensuring the stability and flexibility of the power supply and meeting diverse power needs.
Smart Images

Figure CN2025121636_26032026_PF_FP_ABST
Abstract
Description
Charging base, energy storage device and electric equipment
[0001] Priority information
[0002] The present application claims priority to and the benefit of the filing date of Chinese Patent Application No. 202422322399.7, filed September 23, 2024, and incorporates by reference the entirety of the aforementioned application herein. TECHNICAL FIELD
[0003] The present application relates to the technical field of energy storage power supply, in particular to a charging base, an energy storage device and electric equipment. BACKGROUND
[0004] Shared power bank, also known as shared power bank, is a short-term rental power bank service operated by enterprises, similar to shared cars and shared bicycles, which is a branch of the sharing economy. Users can rent a power bank by scanning the QR code on the device screen with a mobile device and paying a deposit. The deposit can be withdrawn and returned to the account at any time after the power bank is returned successfully.
[0005] However, the inventor realizes that the current charging base structure of the shared power bank is single and the function is relatively single, which cannot meet the diversified power demand of users. SUMMARY
[0006] Therefore, the present application aims to at least partially solve one of the problems in the related art. To this end, the purpose of the present application is to provide a charging base, an energy storage device and electric equipment.
[0007] The present application provides a charging base. The charging base comprises a charging body, a power supply module and an output module. The power supply module is fixedly installed in the charging body, and the power supply module comprises an AC-DC converter; the output module comprises a first output end and a second output end, both of which are connected with the power supply module, at least one charging slot adapted to the first output end is formed on the charging body, and at least one charging jack adapted to the second output end is formed on the charging body.
[0008] The present application also provides an energy storage device. The energy storage device comprises an energy storage body and the charging base described in the above embodiments, the energy storage body can be inserted 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, and the first limiting structure and the second limiting structure are in butt joint to limit the energy storage body in the charging slot; when the power supply socket is disconnected with the external power supply and the energy storage body is inserted into the charging slot, the electric appliance electrically connected with the charging base can be powered through the energy storage body.
[0009] The application also provides a power utilization device. The power utilization device comprises the energy storage device described in the above embodiments.
[0010] The charging base of the application can provide power supply for external electrical appliances through the charging socket while charging the energy storage body through the charging slot, thereby realizing the multifunctional effect of the charging base.
[0011] Additional aspects and advantages of the application will be made apparent by the following description and the appended claims. BRIEF DESCRIPTION OF DRAWINGS
[0012] The above and / or additional aspects and advantages of the application will become apparent and be readily appreciated from the following description, including the appended claims, taken in conjunction with the accompanying drawings.
[0013] Fig. 1 is a structural schematic diagram of a charging base according to an embodiment of the application;
[0014] Fig. 2 is a structural schematic diagram of an energy storage device according to an embodiment of the application;
[0015] Fig. 3 is a structural schematic diagram of an energy storage device according to an embodiment of the application;
[0016] Fig. 4 is a structural schematic diagram of an internal circuit of a charging base according to an embodiment of the application;
[0017] Fig. 5 is a structural schematic diagram of an internal circuit of a charging base according to an embodiment of the application;
[0018] Fig. 6 is a structural schematic diagram of an internal circuit of a charging base according to an embodiment of the application;
[0019] Fig. 7 is a structural schematic diagram of an internal circuit of a charging base according to an embodiment of the application;
[0020] Fig. 8 is a structural schematic diagram of an energy storage device according to an embodiment of the application;
[0021] Fig. 9 is a structural schematic diagram of a charging base according to an embodiment of the application;
[0022] Fig. 10 is a structural schematic diagram of an energy storage device according to an embodiment of the application;
[0023] Fig. 11 is a structural schematic diagram of a charging base according to an embodiment of the application.
[0024] Main element reference numerals: energy storage device 1000; charging base 100, first limiting structure 101, charging interface 111, charging body 10, charging groove 11, top end of charging groove 112, charging jack 12, top end of charging jack 121, first charging jack 122, second charging jack 123, top wall 13, side wall 14, communication jack 15, bottom wall 16, power socket 161, power control button 17, first control button 171, second control button 172, power module 20, mains access end 21, output module 30, first output end 31, second output end 32, third output end 33, communication module 40, power control module 50; energy storage body 200, charging contact 201, second limiting structure 202. DETAILED DESCRIPTION
[0025] Embodiments of the present application are described below in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the accompanying drawings are exemplary only, and are for the purpose of explanation of the present application, and cannot be understood as a limitation of the present application.
[0026] In the description of the present application, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance, or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.
[0027] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connection" should be understood broadly, which can mean fixed connection, or detachable connection, or integral connection; can be mechanical connection, or electrical connection or can communicate with each other; can be directly connected, or indirectly connected through intermediate medium, or the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0028] The following disclosure provides many different embodiments or examples for implementing different structures of the present application. In order to simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the present application. In addition, reference numerals and / or reference letters can be repeated in different examples in the present application, and such repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed.
[0029] Embodiments of the present application are described below in detail with reference to the accompanying drawings, wherein the same or similar components or components having the same or similar functions are denoted by the same or similar reference numerals throughout the drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application and cannot be understood as a limitation of the present application.
[0030] Referring to FIGS. 1 and 2, the 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 end 31 and a second output end 32, the first output end 31 and the second output end 32 are connected with the power module 20, at least one charging slot 11 adapted to the first output end 31 is formed on the charging body 10, and at least one charging jack 12 adapted to the second output end 32 is formed on the charging body 10.
[0031] Specifically, at least one charging slot 11 is formed on the charging body 10, that is, the charging body 10 can be provided with one or more charging slots 11, and the top wall 10 of the charging base 100 can be provided with one or more charging slots 11. As shown in FIGS. 2 and 3, the charging base 100 is provided with three charging slots 11, and three energy storage bodies 200 can be respectively inserted into the three charging slots 11, so that the three energy storage bodies 200 can be charged at the same time. The top of the energy storage body 200 is also provided with at least one external charging hole, and the external electrical equipment can be charged through the external charging hole of the energy storage body 200. The external charging hole can provide direct current (DC), that is, at least one external charging hole is a DC output port.
[0032] When the charging base 100 is provided with one 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 at the same time, and when the commercial power provided by the charging base 100 is interrupted, there is a greater probability that at least one energy storage body 200 is still retained on the charging base 100, so that the power provided by the charging base 100 to the external electrical equipment can be uninterrupted.
[0033] The charging body 10 is further provided with at least one charging jack 12, that is, the top wall 10 of the charging base 100 of the application can not only be provided with the charging slot 11 to charge the energy storage body 200, but also can be provided with the charging jack 12 to provide power supply for external electrical equipment, for example, the charging jack 12 can be provided for a computer, and the charging jack 12 can also be provided for an electric fan, so that the charging base 100 of the application can not only charge the energy storage body 200, but also provide the charging jack 12 to provide power supply for external electrical equipment, realizing the multifunctional role of the charging base 100.
[0034] The power module 20 comprises an AC-DC converter. The AC-DC converter is a current converter for converting alternating current into direct current. The first output end 31 and the second output end 32 are connected with the power module 20, the charging body 10 is provided with at least one charging slot 11 matched with the first output end 31, and the charging body 10 is provided with at least one charging jack 12 matched with the second output end 32. That is, the AC-DC converter can be connected with the first output end 31, the AC-DC converter can output direct current to the first output end 31 of the output module 30, and the AC-DC converter can be connected with part of the output line of the second output end 32 to output direct current to the corresponding at least part of the charging jack 12 of the second output end 32. Alternatively, the AC-DC converter can be connected with all the output lines of the second output end 32 to output direct current to all the charging jacks 12 corresponding to the second output end 32.
[0035] Therefore, the power module 20 can convert the alternating current provided by the external alternating current power supply into direct current through the AC-DC converter to provide direct current for external electrical equipment, or does not convert the alternating current provided by the external alternating current power supply to provide alternating current for external electrical equipment, thereby realizing the different power supply role of the charging slot 11 and the charging jack 12 of the application which can provide direct current or alternating current for external electrical equipment.
[0036] In addition, part of the charging jacks 12 of the application can be used to provide direct current for external electrical equipment, and another part of the charging jacks can be used to provide alternating current for external electrical equipment.
[0037] In some embodiments, the charging jack 12 comprises a first charging jack 122. As shown in FIG. 1, the plurality of first charging jacks 122 on the left side of FIG. 1 can be used to provide direct current (DC), that is, the charging jacks 12 on the left side are DC output ports, and the shapes of the plurality of first charging jacks 122 can be different, and the shapes of the first charging jacks 122 are matched with the corresponding electrical appliance charging interfaces.
[0038] In addition, the two second charging jacks 123 on the right side of FIG. 1 can be used to provide alternating current (AC), that is, the charging jack 12 on the left side is an AC output port, and the second charging jack 123 can be matched with the charging interface of the corresponding electrical appliance. That is, the charging base 100 of the present application is equipped with DC output and AC output, and can directly power computers, televisions and other household appliances.
[0039] In this way, the charging base 100 of the present application can provide power to external electrical appliances through the charging jack 12 while charging the energy storage body 200 through the charging slot 11, realizing the multifunctional role of the charging base 100.
[0040] Please refer to FIG. 4, in some embodiments, the charging jack 12 includes a second charging jack 123, which is used to provide alternating current. The power module 20 further includes a mains access end 21, a DC-DC converter and a first switch K1. The first end of the AC-DC converter is connected with the mains access end 21 through the first switch K1, the second end of the AC-DC converter is connected with the DC-DC converter, and the DC-DC converter is connected with at least one charging slot 11. The DC-DC converter is used to convert the direct current output by the AC-DC converter into direct current that conforms to a preset charging protocol. The mains access end 21 is connected with the second charging jack 123 in turn through the first switch K1, and the mains access end 21 is used to access mains. Among them, the first switch K1 is used to control the input of the mains into the charging base 100.
[0041] That is, the charging base 100 of the present application can be built-in with an AC-DC converter and a DC-DC converter. After the mains access end 21 of the charging base 100 accesses alternating current, the first switch K1 is closed, and the alternating current is converted into direct current through the AC-DC converter and the DC-DC converter. The direct current can directly power the charging slot 11, so that the power module 20 of the present application can directly charge the energy storage body 200 through the power provided by the charging slot 11.
[0042] In addition, the alternating current input by the mains access end 21 at this time can also provide alternating current to the second charging jack 123 through a bypass, that is, the mains can simultaneously power the energy storage body 200 and the external electrical appliance plugged into the second charging jack 123.
[0043] Please refer to FIG. 3, in some embodiments, the energy storage body 200 is inserted into the charging slot 11, and the power of the energy storage body 200 can be output to the second charging jack 123 through the DC-DC converter and the AC-DC converter in turn.
[0044] That is, when the mains power is cut off, the first switch K1 can be controlled to be disconnected, and the electric energy of the energy storage body 200 in the charging groove 11 can be sequentially output to the second charging jack 123 through the DC-DC converter and the AC-DC converter in the power supply module 20, so that the uninterrupted power supply (UPS) function of the charging base 100 to the external electrical appliances plugged into the second charging jack 123 can be realized.
[0045] That is, the AC-DC converter can work in the rectification mode and the inversion mode at this time. When the energy storage body 200 is charged by the mains power, the AC-DC converter works in the rectification mode to rectify the mains power into direct current. When the external electrical appliances plugged into the second charging jack 123 are powered by the energy storage body 200, the AC-DC converter works in the inversion mode, and the electric energy of the energy storage body 200 is inverted into alternating current through the DC-DC converter and the AC-DC converter and then output to the second charging jack 123.
[0046] Please refer to FIG. 5. In some embodiments, the power supply module 20 can further include a second switch K2 for controlling the power supply to the second charging jack 123.
[0047] Specifically, after the mains access end 21 of the charging base 100 is connected to the alternating current, the first switch K1 and the second switch K2 are closed, the alternating current is converted into direct current through the AC-DC converter and the DC-DC converter, and the direct current can directly power the charging groove 11, so that the power supply module 20 of the present application can directly charge the energy storage body 200 by the electric energy provided by the charging groove 11.
[0048] Similarly, when the energy storage body 200 is plugged into the charging groove 11, when the mains power is cut off, the first switch K1 can be controlled to be disconnected and the second switch K2 can be controlled to be closed, and the electric energy of the energy storage body 200 in the charging groove 11 can be output to the second charging jack 123 through the DC-DC converter, the AC-DC converter and the second switch K2 in the power supply module 20, so that the uninterrupted power supply (UPS) function of the charging base 100 to the external electrical appliances plugged into the second charging jack 123 can be realized.
[0049] Referring to FIG. 6, in some embodiments, the charging socket 12 comprises a second charging socket 123 for providing alternating current. The power supply module 20 further comprises a mains access end 21, a DC-DC converter, a first switch K1 and a DC-AC converter. The mains access end 21 is configured to access mains power. A first end of the AC-DC converter is connected to the mains access end 21 through the first switch K1, a second end of the AC-DC converter is connected to the DC-DC converter, and the DC-DC converter is connected to the at least one charging slot 11. The DC-DC converter is configured to convert direct current output by the AC-DC converter into direct current in accordance with a preset charging protocol. A first end of the DC-AC converter is connected to the DC-DC converter through a third switch K3, and a second end of the DC-AC converter is connected to the second charging socket 123. The DC-AC converter is configured to convert direct current into alternating current. The first switch K1 is configured to control whether the mains power is input into the charging base 100.
[0050] That is, the charging base 100 of the present application can further comprise an AC-DC converter, a DC-DC converter and a DC-AC converter. After the mains access end 21 of the charging base 100 is connected to alternating current, the first switch K1 is closed, and the alternating current is converted into direct current by the AC-DC converter and the DC-DC converter. The direct current can directly power the charging slot 11, so that the power supply module 20 of the present application can directly charge the energy storage body 200 by the power provided by the charging slot 11.
[0051] In addition, the direct current obtained by the DC-DC converter can be converted into alternating current by the DC-AC converter, and the alternating current can power the second charging socket 123.
[0052] Referring to FIG. 3, in some embodiments, the charging slot 11 is internally provided with the energy storage body 200. The power of the energy storage body 200 can be sequentially output to the second charging socket 123 through the DC-DC converter and the DC-AC converter.
[0053] When the mains power is cut off, the first switch K1 can be controlled to be opened, and the power of the energy storage body 200 in the charging slot 11 can be sequentially output to the second charging socket 12 through the DC-DC converter and the DC-AC converter in the power supply module 20 to power the external electrical appliances connected to the second charging socket 123. Thus, the uninterrupted power supply (UPS) function of the charging base 100 to the external electrical appliances connected to the second charging socket 123 can be achieved.
[0054] That is, at this time, the AC-DC converter works in a rectification mode, i.e., when charging the energy storage body 200 by the mains power, the AC-DC converter works in the rectification mode to rectify the mains power into direct current.
[0055] Referring to FIG. 7, in some embodiments, the power module 20 can further comprise a third switch K3 for controlling the power supply to the second charging jack 123.
[0056] Specifically, when the power access end 21 of the charging base 100 is connected to the AC power, the first switch K1 and the third switch K3 are closed, and the AC power is converted into DC power by the AC-DC converter and the DC-DC converter. The DC power can directly power the charging slot 11, so that the power module 20 of the present application can directly charge the energy storage body 200 by the power provided by the charging slot 11.
[0057] Similarly, when the energy storage body 200 is inserted into the charging slot 11, and the power is cut off, the first switch K1 can be controlled to be opened and the third switch K3 can be controlled to be closed. The power of the energy storage body 200 in the charging slot 11 can be sequentially output to the second charging jack 123 through the DC-DC converter, the third switch K3 and the DC-AC converter in the power module 20. Thus, the uninterrupted power supply (UPS) function of the charging base 100 to the external electrical appliances connected to the second charging jack 123 can be realized.
[0058] As shown in FIG. 8, the charging slot 11 is provided with a charging interface 111 for charging the energy storage body 200. The energy storage body 200 can be a mobile power supply or other energy storage device, which is not limited herein.
[0059] Referring to FIG. 8, 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 in communication with the power module 20 in the charging base 10 and can perform data communication.
[0060] Referring to FIG. 1, in one embodiment, the charging slot 11 and the at least one charging jack 12 are located on the top wall 13 of the charging body 10. The top end of the charging slot 11 and the top end of the charging jack 12 are located on the same horizontal plane or are inclinedly arranged.
[0061] That is to say, when the charging slot 11 and the at least one charging jack 12 are located on the top wall 13 of the charging body 10, the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 can be located on the same horizontal plane. The appearance of the charging base 100 can be a regular cube or cuboid, or other shapes. It is only required that the end surface of the top wall 13 of the charging body 10 is a horizontal plane with the same height. The appearance of the charging base 100 is more beautiful and appropriate.
[0062] In addition, the charging base 100 of the present application simultaneously provides the charging slot 11 and the at least one charging jack 12 on the top wall of the charging body 10, so that the user can simultaneously charge the energy storage body 200 in the charging slot 11 and use the charging jack 12 without changing his / her position or rotating the charging base 100.
[0063] Specifically, when the charging slot 11 and the at least one charging jack 12 are located on the top wall 13 of the charging body 10, the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 can also not be located on the same horizontal plane. That is, the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 are oppositely inclined to the end faces of the two power supply areas, as shown in FIG. 1, which is beneficial to the user to determine the position of the charging jack 12 when he / she needs to plug in the external power equipment to the charging jack 12 of the charging base 100, so as to quickly complete the plugging of the corresponding port.
[0064] In the present application, the inclination angle a of the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 can be greater than or equal to 90° and less than 180°, for example, the inclination angle a can be 90°, 95°, 99°, 100°, 105°, 110°, 115°, 120°, 125° or 135°, which is not limited herein.
[0065] In some embodiments, the at least one charging jack 12 is located on the 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 in the charging base 100, which is not limited herein.
[0066] That is, the charging base 100 of the present application not only has the charging slot 11 and the charging jack 12 on the top wall 13 of the charging body 10, but also has the at least one charging jack 12 on the side wall 14 of the charging body 10, which meets the charging plugging needs of the user in different directions of the charging base 100, so that the charging plugging mode of the charging base 100 is more flexible.
[0067] Please refer to FIG. 9, in some embodiments, the charging base 100 further comprises a communication module 40 fixedly installed in the charging body 10. The power supply module 20 is connected with the communication module 40, and the communication module 40 comprises a communication circuit and an output control circuit corresponding to the communication jack. The output module 30 further comprises a third output end 33 connected with the communication module 40, and the charging body 10 is further provided with at least one communication jack 15 corresponding to the third output end 33. The communication mode between the communication module 40 and the outside world is any one of the following: NB-IOT, WiFi, Lora and CAN.
[0068] That is to say, the charging base 100 of the 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, three, 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.
[0069] Among them, the communication circuit inside the communication module 40 can include a wireless communication circuit, so that the communication module 40 can provide wireless network coverage and support multiple devices to connect at the same time.
[0070] In this way, the charging base 100 of the application can provide power for the electrical equipment through the charging jack 12 while charging the energy storage body 200 through the charging slot 11, and can also provide network communication connection for other devices at the same time through the communication jack 15, realizing the multifunctional role of the charging base 100.
[0071] Please refer to FIG. 3, in some embodiments, the charging slot 11, at least one charging jack 12 and at least one communication jack 15 are located on the top wall 13 of the charging body 10, the top end 311 of the communication jack 15 adjacent to the charging jack 12 or the top end 121 of the charging jack 12 opposite to the top end 112 of the charging slot 11 is located on the same horizontal plane or is inclinedly arranged.
[0072] That is to say, on the top wall 13 of the charging body 10 of the application, the communication jack 15 can be arranged on the same height mounting surface as the charging jack 12, or the communication jack 15 can be arranged on a different height mounting surface from the charging jack 12.
[0073] When the communication jack 15 is arranged on the same height mounting surface as the charging jack 12, at least one charging jack 12 can be arranged on the left side of the top wall 13, and at least one communication jack 15 can be arranged 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.
[0074] When the communication jack 15 is arranged on a different height mounting surface from the charging jack 12, that is to say, the communication jack 15 is arranged on another height mounting surface different from the charging jack 12, so that the arrangement mode of the communication jack 15 and the charging jack 12 on the top wall 13 is more diversified.
[0075] Specifically, in the charging base 100 of the present application, the top end of the mounting surface where the communication jack 15 is located can be at the same horizontal plane as the top end 112 of the charging slot 11, and the top end 121 of the mounting surface where the charging jack 12 is located is obliquely arranged with the top end 112 of the charging slot 11. Alternatively, the top end of the mounting surface where the communication jack 15 is located can be obliquely arranged with the top end 112 of the charging slot 11, and the top end 121 of the mounting surface where the charging jack 12 is located is at the same horizontal plane as the top end 112 of the charging slot 11.
[0076] In the present application, the inclination angle a of the top end 112 of the charging slot 11 and the top end of the communication jack 15 can be greater than or equal to 90° and less than 180°, for example, the inclination angle a can be 90°, 95°, 100°, 107°, 109°, 110°, 115°, 125°, 130° or 140°, which is not limited herein.
[0077] In some embodiments, at least one communication jack 15 and / or at least one charging jack 12 is located on the side wall 14 of the charging body 10.
[0078] Specifically, on the basis that the charging slot 11, at least one charging jack 12 and at least one communication jack 15 are located on the top wall 13 of the charging body 10, at least one communication jack 15 and / or at least one charging jack 12 located on the side wall 14 of the charging body 10 includes the following three cases: (1) At least one communication jack 15 is arranged on the side wall 14 of the charging body 10, as shown in FIG. 10. (2) At least one charging jack 12 is arranged on the side wall 14 of the charging body 10. (3) At least one communication jack 15 and at least one charging jack 12 can be arranged on the side wall 14 of the charging body 10 at the same time.
[0079] That is to say, all the charging slots 11, charging jacks 12 and communication jacks 15 of the present application can be arranged 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 jacks 12 on the top wall 13, and arrange all the communication jacks 15 on the side wall 14. The present application can also arrange all the charging slots 11, part of the charging jacks 12 and part of the communication jacks 15 on the top wall 13, and at the same time arrange part of the charging jacks 12 and part of the communication jacks 15 on the side wall 14, thereby providing diversified jack position settings to meet the diversified charging jack needs of users in different directions relative to the charging body 10.
[0080] The charging slot 11 of the present application can be arranged on the side wall 14 of the charging body 10 in addition to being arranged on the top wall 13 of the charging body 10.
[0081] Specifically, in another embodiment, the charging slot 11 and the at least one charging jack 12 are located on the side wall 14 of the charging body 10, and the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 are located on the same vertical plane or are obliquely arranged.
[0082] That is to say, when the charging slot 11 and the at least one charging jack 12 are located on the side wall 14 of the charging body 10, the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 of the charging base 100 can be located on the same vertical plane, and the appearance of the charging base 100 can be a regular cube or cuboid, or other shapes, as long as the end face of the side wall 14 of the charging body 10 is the same vertical plane, and the appearance of the charging base 100 is more beautiful and appropriate.
[0083] In addition, the charging base 100 of the present application simultaneously arranges the charging slot 11 and the at least one charging jack 12 on the side wall 14 of the charging body 10, so that the user can simultaneously realize charging of the energy storage body 200 in the charging slot 11 and use of the charging jack 12 without changing his own position or rotating the charging base 100.
[0084] Specifically, when the charging slot 11 and the at least one charging jack 12 are located on the side wall 14 of the charging body 10, the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 of the present application can also not be located on the same vertical plane. That is, the end faces of the two power supply areas of the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 are arranged obliquely opposite, which is beneficial to the user to determine the position of the charging jack 12 when needing to plug the external electrical equipment into the charging jack 12 on the charging base 100, so as to quickly complete the plugging of the corresponding port.
[0085] The inclination angle a of the top end 112 of the charging slot 11 and the top end 121 of the charging jack 12 can be greater than or equal to 90° and less than 180°, for example, the inclination angle a can be 90°, 95°, 99°, 100°, 105°, 110°, 115°, 120°, 125° or 135°, which is not limited here.
[0086] In some embodiments, the at least one charging jack 12 is located on the top wall 13 of the charging body 10.
[0087] That is to say, the charging base 100 of the present application can not only have the charging slot 11 and the charging jack 12 on the side wall 14 of the charging body 10, but also can have at least one charging jack 12 on the top wall 13 of the charging body 10 at the same time, to meet the charging and plugging needs of the user in different directions of the charging base 100, so that the charging and plugging mode of the charging base 100 is more flexible.
[0088] In some embodiments, when the charging base 100 comprises the communication module 40 and the communication jack 15, the charging slot 11, the at least one charging jack 12 and the at least one communication jack 15 are located on the side wall 14 of the charging body 10, the communication jack 15 is adjacent to the charging jack 12, and the top end of the communication jack 15 or the top end 121 of the charging jack 12 is located on the same vertical plane as the top end 112 of the charging slot 11 or is inclinedly arranged.
[0089] That is to say, the communication jack 15 on the side wall 14 of the charging body 10 can be arranged on the same vertical plane as the charging jack 12, or can be arranged on a different vertical plane from the charging jack 12.
[0090] When the communication jack 15 is arranged on the same vertical plane as the charging jack 12, at least one charging jack 12 can be arranged on the left side of the side wall 14, and at least one communication jack 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.
[0091] When the communication jack 15 is arranged on a different vertical plane from the charging jack 12, that is, the communication jack 15 is located on a different vertical plane from the charging jack 12, so that the arrangement of the communication jack 15 and the charging jack 12 on the top wall 13 is more diversified.
[0092] Specifically, in the charging base 100 of the present application, the top end of the mounting surface where the communication jack 15 is located can be located on the same vertical plane as the top end 112 of the charging slot 11, and the top end 121 of the mounting surface where the charging jack 12 is located is inclinedly arranged with the top end 112 of the charging slot 11. Alternatively, the top end of the mounting surface where the communication jack 15 is located can be inclinedly arranged with the top end 112 of the charging slot 11, and the top end 121 of the mounting surface where the charging jack 12 is located is located on the same vertical plane as the top end 112 of the charging slot 11.
[0093] Among them, the inclination angle α of the top end 112 of the charging slot 11 and the top end 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°, which is not limited here.
[0094] In some embodiments, the at least one communication jack 15 and / or the at least one charging jack 12 are located on the top wall 13 of the charging body 10.
[0095] Specifically, on the basis that the charging slots 11, the at least one charging jack 12 and the at least one communication jack 15 are located on the side wall 14 of the charging body 10, the at least one communication jack 15 and / or the at least one charging jack 12 are located on the top wall 13 of the charging body 10 includes the following three cases: (1) The at least one communication jack 15 is arranged on the top wall 13 of the charging body 10. (2) The at least one charging jack 12 is arranged on the top wall 13 of the charging body 10. (3) The at least one communication jack 15 and the at least one charging jack 12 can be arranged on the top wall 13 of the charging body 10 at the same time.
[0096] That is to say, all the charging slots 11, the charging jacks 12 and the communication jacks 15 can be arranged on the side wall 14 of the charging body 10 of the charging base 100. All the charging slots 11 and the charging jacks 12 can be arranged on the side wall 14, and all the communication jacks 15 can be arranged on the top wall 13. All the charging slots 11, part of the charging jacks 12 and part of the communication jacks 15 can be arranged on the side wall 14, and part of the charging jacks 12 and part of the communication jacks 15 can be arranged on the top wall 13, thereby providing diversified jack position settings and meeting the diversified charging jack requirements of users in different directions relative to the charging body 10.
[0097] Please refer to FIG. 10. 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 with an external power source through the power socket 161. The external power source can be an alternating current power source.
[0098] That is to say, when the charging base 100 of the present application is provided with the charging slots 11, the charging jacks 12 or the communication jacks 15 on the top wall 13 or the side wall 14, the power socket 161 can be arranged on the bottom wall 16 to provide power for the charging base 100, so that the appearance of the charging base 100 is more beautiful.
[0099] In addition, the bottom wall 16 of the charging base 100 of the present application can also be provided with a buffer support 162, which can be integrally formed with the charging base 100 or detachably arranged, and the buffer support 162 is used to support the charging base 100, so that the charging base 100 is more stably fixed on a certain plane. As shown in FIG. 10, the buffer support 162 can be four, which are arranged at the four corners of the bottom wall 16 of the charging base 100.
[0100] In addition, referring to FIG. 2 and FIG. 11, the charging base 100 can further be provided with an electric energy control module 50, which is connected with the output module 40 and used to control the electric energy output of the second output end 32. The charging body 10 is provided with an electric energy control button 17 matched with the electric energy control module 50, which can control the electric energy output of the second output end 32. The number of the electric energy control button 17 can be one or more.
[0101] For example, the electric energy control module 50 can be a relay switch, which can control the closing and opening of the relay inside the output module 30 connected with the second output end 32.
[0102] As shown in FIG. 2, the number of the electric energy control button 17 is two, which are a first control button 171 and a second control button 172. The first control button 171 can control the output and pause of the direct current in the first charging jack 122, and the second control button 172 can control the output and pause of the alternating current in the second charging jack 123.
[0103] In this way, the charging base 100 can control the power-on state of the different charging jacks 12 in the charging base 100 through the electric energy control button 17 on the charging body 10.
[0104] Referring to FIG. 1, the application further provides an energy storage device 1000. The energy storage device 1000 comprises the energy storage body 200 and the charging base 100 described in the above embodiments. The energy storage body 200 can be inserted into the charging groove 11 for charging. The charging groove 11 is further provided with a first limiting structure 101, and the side wall of the energy storage body 200 is provided with a second limiting structure 201. The first limiting structure 101 and the second limiting structure 201 are in abutment to limit the energy storage body 200 in the charging groove 11. When the power socket 161 is disconnected with the external power supply and the energy storage body 200 is inserted into the charging groove 11, the electric appliance electrically connected with the charging base 100 can be powered by the energy storage body 200.
[0105] The structure of the charging base 100 is described above and will not be repeated here.
[0106] The first limiting structure 101 can be in telescopic movement in the corresponding through hole on the side wall of the charging groove 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 connected with the limiting lock in the charging groove 11 through the groove, so as to limit the energy storage body 200 in the charging groove 11.
[0107] That is, the charging base 100 of the energy storage device 1000 of the present application can provide power supply for external electrical appliances through the charging jack 12 while charging the energy storage body 200 through the charging slot 11, realizing the multifunctional role of the charging base 100.
[0108] In detail, when the energy storage body 200 is inserted into the charging slot 11 of the charging base 100, the energy storage body 200 can be automatically charged through the charging base 100. During the charging process, the battery management system (BMS) inside the energy storage body 200 communicates with the micro control unit (MCU) of the power module 20 inside the charging base 100, ensuring the safety and efficiency of the charging process.
[0109] When the energy storage body 200 is used as an energy storage power bank, it can be taken out of the charging slot 11 alone for use as a portable power bank, while supporting power supply for other household appliances through the charging base 100. The energy storage device 1000 of the present application has both portability and practicality, and has powerful comprehensive functions, which can integrate charging, energy storage, power supply and network routing functions in one, and can meet the diversified needs of home and office environments.
[0110] The present application also provides a power-using equipment. The power-using equipment includes the energy storage device 200 described in the above embodiments. The power-using equipment may, for example, be an electric vehicle, a household appliance or the like, without limitation.
[0111] In this way, the charging base 100 of the energy storage device 1000 of the power-using equipment of the present application can provide power supply for external electrical appliances through the charging jack 12 while charging the energy storage body 200 through the charging slot 11, realizing the multifunctional role of the charging base 100.
[0112] The above embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as limiting the scope of the patent of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the scope of protection of the present application. Therefore, the scope of protection of the patent of the present application should be subject to the appended claims.
Claims
1. A charging base, comprising: The charging base comprises a charging body, a power module and an output module, the power module is fixedly installed in the charging body, and the power module comprises an AC-DC converter; The output module comprises a first output end and a second output end, the first output end and the second output end are connected with the power module, at least one charging slot adapted to the first output end is formed in the charging body, and at least one charging jack adapted to the second output end is formed in the charging body.
2. The charging dock of claim 1, wherein, The charging slot is provided with a charging interface for charging the energy storage main body.
3. The charging dock of claim 1, wherein, The charging slot and the at least one charging jack are located on the top wall of the charging body, and the top end of the charging slot and the top end of the charging jack are located on the same horizontal plane.
4. The charging dock of claim 1, wherein, The charging slot and the at least one charging jack are located on the top wall of the charging body, and the top end of the charging slot and the top end of the charging jack are arranged obliquely.
5. The charging dock of claim 3 or 4, wherein, At least one charging jack is located on the side wall of the charging body.
6. The charging dock of claim 1, wherein, The charging base further comprises a communication module fixedly installed in the charging body, the power module is connected with the communication module, the communication module comprises a communication circuit and an output control circuit corresponding to a communication jack; the output module further comprises a third output end connected with the communication module, and at least one communication jack corresponding to the third output end is further formed in the charging body.
7. The charging dock of claim 6, wherein, The charging slot, the at least one charging jack and the at least one communication jack are located on the top wall of the charging body, the communication jack is adjacent to the charging jack, and the top end of the communication jack or the top end of the charging jack is located on the same horizontal plane as the top end of the charging slot.
8. The charging dock of claim 6, wherein, The charging slot, the at least one charging jack and the at least one communication jack are located on the top wall of the charging body, the communication jack is adjacent to the charging jack, and the top end of the communication jack or the top end of the charging jack is arranged obliquely to the top end of the charging slot.
9. The charging dock of claim 7 or 8, wherein, At least one communication jack and / or at least one charging jack is located on the top wall of the charging body.
10. The charging dock of claim 1, wherein, The charging slot and the at least one charging jack are located on the side wall of the charging body, and the top end of the charging slot and the top end of the charging jack are located on the same vertical plane or are arranged obliquely.
11. The charging dock of claim 10, wherein, At least one charging jack is located on the top wall of the charging body.
12. The charging dock of claim 6, wherein, The charging slot, the at least one charging jack and the at least one communication jack are located on the side wall of the charging body, the communication jack is adjacent to the charging jack, and the top end of the communication jack or the top end of the charging jack is located on the same vertical plane as the top end of the charging slot or is arranged obliquely to the top end of the charging slot.
13. The charging dock of claim 12, wherein, At least one communication jack and / or at least one charging jack is located on the top wall of the charging body.
14. The charging dock of claim 1, wherein, The charging jack comprises a first charging jack for providing direct current.
15. The charging base of claim 1, wherein, The charging jack comprises a second charging jack for providing alternating current; the power module further comprises a mains access end, a DC-DC converter and a first switch; a first end of the AC-DC converter is connected with the mains access end through the first switch, a second end of the AC-DC converter is connected with the DC-DC converter, the DC-DC converter is connected with at least one charging slot, and the DC-DC converter is used for converting first direct current output by the AC-DC converter into second direct current; the mains access end is connected with the second charging jack in sequence through the first switch; and the mains access end is used for accessing mains.
16. The charging dock of claim 15, wherein, An energy storage main body is inserted in the charging slot, and electric energy of the energy storage main body can be output to the second charging jack in sequence through the DC-DC converter and the AC-DC converter.
17. The charging base of claim 1, wherein, The charging jack comprises a second charging jack for providing alternating current; the power module further comprises a mains access end, a DC-DC converter, a first switch and a DC-AC converter; the mains access end is used for accessing mains; a first end of the AC-DC converter is connected with the mains access end through the first switch, a second end of the AC-DC converter is connected with the DC-DC converter, the DC-DC converter is connected with at least one charging slot, and the DC-DC converter is used for converting first direct current output by the AC-DC converter into second direct current; a first end of the DC-AC converter is connected with the DC-DC converter, and a second end of the DC-AC converter is connected with the second charging jack; and the DC-AC converter is used for converting direct current into alternating current.
18. The charging base of claim 17, wherein, An energy storage main body is inserted in the charging slot, and electric energy of the energy storage main body can be output to the second charging jack in sequence through the DC-DC converter and the DC-AC converter.
19. An energy storage device, characterized by, The energy storage device comprises an energy storage main body and the charging base of any one of claims 1 to 18, the energy storage main body can be inserted in the charging slot for charging, a first limiting structure is further arranged in the charging slot, a second limiting structure is arranged on a side wall of the energy storage main body, and the first limiting structure and the second limiting structure are in butt joint to limit the energy storage main body in the charging slot; when the power socket is disconnected with an external power supply and the energy storage main body is inserted in the charging slot, an electric appliance electrically connected with the charging base can be powered by the energy storage main body.
20. An electrical device, comprising: The electric appliance comprises the energy storage device of claim 19.
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