Switchable wall-mounted cabinet dual-purpose energy storage power supply
By designing a switchable wall-mounted and cabinet-mounted dual-purpose energy storage power supply, and using retractable mounting brackets to switch between wall-mounted and cabinet-mounted installation methods, the problem of the single installation method of existing energy storage power supplies is solved, improving user experience and equipment flexibility.
Patent Information
- Application Number
- CN202422648291.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing energy storage power products can only be installed in one fixed way, which cannot meet the diverse needs of users. Wall-mounted energy storage power supplies have limited capacity, while cabinet-type energy storage power supplies are complicated to install and costly.
Design a switchable wall-mounted and cabinet-mounted dual-purpose energy storage power supply. Through a battery box with a pull-out handle and a retractable mounting bracket, it can flexibly switch between wall-mounted and cabinet-mounted installation methods. The battery box includes a retractable mounting bracket and a mounting base. The battery box can be fixed to the wall or in a battery cabinet.
It enables flexible installation of energy storage power supplies, allowing users to choose wall-mounted or cabinet-mounted installation according to their needs, which improves practicality and flexibility, simplifies operation, reduces maintenance costs, and extends service life.
Smart Images

Figure CN223612554U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to energy storage power supply technical field especially relates to a switchable wall -hanging cabinet dual -purpose energy storage power supply. BACKGROUND
[0002] With the increasing demand for energy and the enhancement of environmental awareness, the demand for energy storage power supply is increasingly prosperous. As a device that can store electricity and release when needed, home energy storage power supply can effectively utilize renewable energy such as solar energy and wind energy, reduce dependence on traditional power grid, reduce electricity cost, and improve power supply reliability.
[0003] The existing home energy storage power supply is mainly divided into wall -hanging type and cabinet type in installation mode. The wall -hanging type energy storage power supply is usually small in size, convenient to install, saves space, and is suitable for the family with small energy storage capacity demand.
[0004] With the increase of household electricity demand, the limited capacity of wall -hanging type energy storage power supply is often difficult to meet the demand. Although the cabinet type energy storage power supply has greater energy storage capacity and can meet higher electricity demand, it is large in size, complex in installation, needs to occupy more space, and has high initial investment cost. Some users may only need small energy storage capacity at the beginning, and it is suitable to adopt wall -hanging installation. But with the growth of capacity demand, it is also hoped that the capacity can be expanded conveniently and changed to cabinet type.
[0005] However, the existing energy storage power supply products can usually only adopt a fixed installation mode, lack of flexibility, and cannot meet the diversified needs of users.
[0006] Therefore, it is necessary to improve the existing energy storage power supply technology to overcome the defects of the prior art. INVENTION CONTENTS
[0007] In order to overcome the problems in the related art, the purpose of the utility model is to provide a switchable wall -hanging cabinet dual -purpose energy storage power supply, which realizes the switching of wall -hanging and cabinet installation mode through the battery box with pull handle and the storable hanging piece, so as to overcome the problem of single fixed mode in the prior art.
[0008] A switchable wall -hanging cabinet dual -purpose energy storage power supply, comprising:
[0009] The battery box is provided with an electric core assembly, the top of the battery box is provided with an interface panel, the interface panel is electrically connected with the electric core assembly, and the two sides of the interface panel are provided with pull handles.
[0010] A wall-mounted component is arranged on the back of the battery box, which includes a storable hanging piece and a hanging seat, the hanging piece is arranged on the back of the battery box, and the hanging seat is fixed on the wall.
[0011] The battery box can be fixed on the wall through the storable hanging piece, or the storable hanging piece can be stored to be fixed in the battery cabinet.
[0012] Through the design of the storable hanging piece, the flexible switching of the wall-mounted and cabinet-mounted installation modes is realized, the battery box can be fixed on the wall through the storable hanging piece, or the hanging piece can be stored to be fixed in the battery cabinet, so that the energy storage power supply has the advantages of wall-mounted and cabinet-mounted, which can be wall-mounted to save space, and can be fixed in the battery cabinet, which is convenient for users to install and use according to the actual situation, thereby improving the practicability and flexibility of the energy storage power supply.
[0013] In some embodiments, the storable hanging piece is arranged along the width direction of the battery box, the bottom of the storable hanging piece is provided with openings on both sides, the hanging seat is provided with a bayonet on the corresponding opening, the bayonet is gradually narrowed from top to bottom, and the bayonet and the opening are matched with each other.
[0014] The openings on both sides are matched with the bayonet, so that the connection between the hanging piece and the hanging seat is more stable and reliable, and is not easy to fall off, thereby improving the safety of the wall-mounted installation. Moreover, since the bayonet is gradually narrowed from top to bottom, the hanging piece can be more conveniently inserted and taken out, thereby simplifying the installation and disassembly operation.
[0015] In some embodiments, the storable hanging piece is provided with two, and the two storable hanging pieces are arranged in parallel.
[0016] Since two parallel hanging pieces are arranged, the weight of the battery box can be more evenly distributed, and the stability of the wall-mounted installation is improved through multiple support points, thereby avoiding deformation or damage caused by excessive stress on a single point.
[0017] In some embodiments, the storable hanging piece and the battery box are detachably connected.
[0018] The detachable design enables users to conveniently detach the hanging piece from the battery box, thereby realizing the quick switching from wall-mounted to cabinet-mounted, and further improving the installation flexibility of the energy storage power supply.
[0019] In some embodiments, the battery box is further provided with a mounting handle on both sides, and the mounting handle is embedded in the battery box.
[0020] The embedded handle design is convenient for users to carry the energy storage power supply and does not occupy extra space, and the overall appearance of the battery box is maintained.
[0021] In some embodiments, the battery cell assembly comprises, in sequence in a direction away from the interface panel, a control module, a first battery cell module, and a second battery cell module, the control module, the first battery cell module, and the second battery cell module are fixed to the battery box, the control module, the first battery cell module, and the second battery cell module are arranged along the width direction of the battery box, and a gap is arranged between the control module, the first battery cell module, and the second battery cell module.
[0022] The layout of the battery cell assembly, the modular design, and the gap arrangement are beneficial to heat dissipation of the battery cell assembly, can improve the safety and stability of the energy storage power supply, and prolong the service life of the battery cell.
[0023] In some embodiments, the front surface of the battery box is provided with a multi-section power indicator and a display screen, the multi-section power indicator and the display screen are electrically connected with the battery cell assembly, and the multi-section power indicator is arranged along the height direction of the battery box.
[0024] Through the multi-section power indicator and the display screen, the user can intuitively understand the residual power and working state of the energy storage power supply.
[0025] In some embodiments, the first battery cell module and the second battery cell module each comprise a fixed frame and a battery cell group, the battery cell group comprises a plurality of square battery cells, the wiring end of the square battery cell is arranged towards the front surface of the battery box, the plurality of square battery cells are arranged in a straight line along the length direction of the battery box, the long side surfaces of adjacent square battery cells are connected, an explosion-proof valve is further arranged on the wiring end of the square battery cell, the fixed frame wraps the battery cell group, and the fixed frame is provided with an opening close to the front surface of the battery box.
[0026] The arrangement of the square battery cells and the design of the fixed frame can improve the space utilization and increase the energy storage density. The arrangement of the explosion-proof valve can improve the safety of the energy storage power supply. The opening of the fixed frame close to the front surface is beneficial to heat dissipation of the battery cell, and improves the stability and life of the energy storage power supply.
[0027] In some embodiments, the storable hanging element is rotationally connected with the battery box, the back of the battery box is provided with a storage groove, the storage groove is arranged corresponding to the shape of the storable hanging element, the top surface of the storage groove is fixed with a rotation hinge, and the rotation hinge connects the battery box and the storable hanging element.
[0028] The hanging piece is connected with the battery box through rotation connection and can be rotatably accommodated in the accommodating groove.
[0029] In some embodiments, the accommodating hanging piece is embedded in the battery box.
[0030] The accommodating hanging piece embedded in the battery box, so that the back of the battery box is kept flat, improving the appearance, and avoiding the loss or damage of the hanging piece.
[0031] The utility model discloses the beneficial effects are:
[0032] The utility model provides a kind of switchable wall-mounted cabinet dual-purpose energy storage power supply, the switchable wall-mounted cabinet dual-purpose energy storage power supply includes battery box and wall hanging component, battery box includes interface panel and pull handle, wall hanging component includes accommodating hanging piece and hanging seat, by the battery box with pull handle and accommodating hanging piece, realize the flexible switching of two kinds of installation mode of wall hanging and cabinet.The user can freely select according to actual demand and space condition, when needing to save space or installation position is limited, can select wall-mounted installation, will energy storage power supply be fixed on wall, make full use of vertical space;When needing greater capacity, can select cabinet type installation, will energy storage power supply be put into battery cabinet total, it is convenient to expand capacity, centralized management and maintenance.The switchable design provides greater freedom and convenience for user, user can change the installation mode of energy storage power supply at any time according to own preference and actual demand, need not to replace equipment, greatly improve user experience. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 It is the front side schematic view of the switchable wall-mounted cabinet dual-purpose energy storage power supply provided in embodiment 1 in the application;
[0034] Figure 2 It is the rear side schematic view of the switchable wall-mounted cabinet dual-purpose energy storage power supply provided in embodiment 1 in the application;
[0035] Figure 3 It is the internal schematic view of the switchable wall-mounted cabinet dual-purpose energy storage power supply provided in embodiment 1 in the application;
[0036] Figure 4 It is the clamping schematic view of wall hanging component provided in embodiment 1 in the application;
[0037] Figure 5 It is the separation schematic view of wall hanging component provided in embodiment 1 in the application.
[0038] Reference signs:
[0039] 100. Battery housing; 110. Interface panel; 120. Pull-out handle; 130. Mounting handle; 140. Multi-segment power indicator bar; 150. Display screen;
[0040] 200. Battery cell assembly; 210. Control module; 220. First battery cell module; 230. Second battery cell module;
[0041] 300. Wall-mounted component; 310. Retractable mounting bracket; 311. Opening; 320. Mounting base; 321. Bayonet. Detailed Implementation
[0042] Preferred embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While preferred embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present invention will be thorough and complete, and will fully convey the scope of the present invention to those skilled in the art.
[0043] Example 1
[0044] like Figures 1-5 As shown, this embodiment provides a switchable wall-mounted cabinet dual-purpose energy storage power supply, which includes a battery housing 100 and a wall-mounting assembly 300. The back of the battery housing 100 is provided with two parallel mounting slots, each slot detachably housing a mounting bracket. The two mounting brackets together constitute part of the wall-mounting assembly 300.
[0045] The battery box 100 contains a battery cell assembly 200. The top of the battery box 100 is provided with an interface panel 110, which is electrically connected to the battery cell assembly 200. Pull-out handles 120 are provided on both sides of the interface panel 110.
[0046] Along the direction away from the interface panel 110, the battery cell assembly 200 sequentially includes a control module 210, a first battery cell module 220, and a second battery cell module 230. The control module 210, the first battery cell module 220, and the second battery cell module 230 are respectively fixed on the battery housing 100. The control module 210, the first battery cell module 220, and the second battery cell module 230 are all arranged along the width direction of the battery housing 100, and there is a gap between the control module 210, the first battery cell module 220, and the second battery cell module 230.
[0047] The front of the battery box 100 is provided with a multi-segment power indicator bar 140 and a display screen 150. The multi-segment power indicator bar 140 and the display screen 150 are electrically connected to the battery cell assembly 200. The multi-segment power indicator bar 140 is set along the height direction of the battery box 100.
[0048] The first and second battery cell modules 220 and 230 each include a fixed frame and a battery cell group, the battery cell group including a plurality of square battery cells, the square battery cells having their connection terminals arranged toward the front of the battery box 100, the plurality of square battery cells being arranged in a straight line along the length direction of the battery box 100, the long sides of adjacent square battery cells being connected, and the connection terminals of the square battery cells further being provided with explosion-proof valves, and the fixed frame wrapping the battery cell group, the fixed frame being provided with an opening 311 near the side of the front of the battery box 100.
[0049] Each detachable hanging component is provided with a buckle mechanism, and the corresponding buckle mechanism is provided in the mounting slot. When it is necessary to fix the hanging component on the battery box 100, the buckle mechanism on the hanging component is only needed to be aligned with the slot, and a slight press can realize the quick connection between the two. When it is necessary to detach the hanging component, the buckle mechanism is only needed to be pressed, and it can be taken out of the slot, which is simple and fast to operate.
[0050] The hanging component body can be made of engineering plastic or metal material to ensure sufficient strength and durability. The connection mode with the battery box 100 can be buckle connection, or screw connection, magnetic connection or other detachable connection modes. The buckle mechanism can be a spring buckle, a button buckle or other mechanisms that can realize quick assembly and disassembly. The part on the hanging component for connecting with the hanging seat 320 can be a hook structure, or other structures that can be stably connected with the hanging seat 320, such as buckles, latches, etc.
[0051] Another part of the wall-mounted assembly 300 is the hanging seat 320 fixed on the wall. Each detachable hanging component is further provided with a hook structure matched with the hanging seat 320. When the wall-mounted assembly is installed, the hook structure is only needed to be hung on the hanging seat 320.
[0052] The hanging seat 320 can be a simple hook structure, or a more complex buckle structure or other structures that can be stably connected with the hanging component. Its material can be metal or engineering plastic, and it needs to have sufficient strength to bear the weight of the battery box 100. The installation mode of the hanging seat 320 can be screw fixing, adhesive fixing, etc., or appropriate fixing modes can be selected according to the material of the wall.
[0053] When it is necessary to place the battery box 100 in a cabinet, two detachable hanging components are only needed to be taken off from the battery box 100, and then the battery box 100 can be placed in the battery cabinet. If it is necessary to place the battery box 100 in the battery cabinet, the inside of the battery cabinet needs to be designed with corresponding support structures or guide rails to facilitate the placement and fixation of the battery box 100. Some bolt fixing holes can be provided on the battery box 100 to be bolted with the battery cabinet.
[0054] The switchable wall-mounted cabinet dual-purpose energy storage power supply of the embodiment can be quickly installed on or detached from the battery box body 100 through a simple buckle mechanism without the aid of any tools, easily realizing the switching of the wall-mounted and cabinet types. This convenient switching method is particularly suitable for users who need to flexibly adjust the installation method according to different scenes or needs, for example, adopting wall-mounted installation to save space during the low power consumption peak period and switching to cabinet installation to facilitate capacity expansion during the high power consumption peak period. In addition, the detachable design also simplifies the maintenance and replacement process of the hanging piece, reduces the maintenance cost, and prolongs the service life of the product. Compared with the fixed hanging piece, the detachable hanging piece is more flexible and practical and can better meet the diversified needs of users.
[0055] Embodiment 2
[0056] As shown in Figures 1-5 The switchable wall-mounted cabinet dual-purpose energy storage power supply provided by the embodiment includes a battery box body 100 and a wall-mounted assembly 300. A rotatable hanging piece is adopted. The back of the battery box body 100 is provided with two parallel receiving grooves, and the rotatable hanging piece is respectively rotationally connected in the two receiving grooves.
[0057] The hanging piece body can adopt similar materials and connection methods as those in Embodiment 1. The rotating hinge can be a common hinge or other mechanism capable of realizing rotational movement. The part of the hanging piece for connecting with the hanging seat 320 can adopt a similar structure as that in Embodiment 1.
[0058] The top surface of each receiving groove is fixed with a rotating hinge, which connects the hanging piece and the battery box body 100 and allows the hanging piece to rotate relative to the battery box body 100.
[0059] The shape and size of the receiving groove need to match the hanging piece to ensure that the hanging piece can be smoothly rotated and stored. The depth of the receiving groove needs to be sufficient so that the hanging piece will not protrude from the back of the battery box body 100 in the storage state.
[0060] Each rotatable hanging piece is provided with a hook structure for connecting with the hanging seat 320 fixed on the wall during wall-mounted installation. When wall-mounted installation is needed, the hanging piece is rotated to the working position to make it protrude from the receiving groove, and the hook structure is hung on the hanging seat 320.
[0061] When cabinet installation is needed, the hanging piece is rotated to the storage position to hide it in the receiving groove, and the back of the battery box body 100 remains flat, facilitating the placement in the battery cabinet.
[0062] This embodiment employs a rotatable mounting bracket, which achieves convenient storage through a clever rotating mechanism. Users can easily switch between the working and storage positions by simply rotating the bracket. For wall mounting, rotating the bracket to the working position connects it to the mounting base 320; for cabinet placement, rotating it to the storage position hides it behind the battery compartment 100, keeping the back of the battery compartment 100 flat for easy placement in a battery cabinet. This design avoids complete disassembly of the bracket, reducing the risk of loss, and also ensures a clean and aesthetically pleasing appearance of the battery compartment 100—a win-win situation. Compared to detachable mounting brackets, rotatable brackets offer advantages in terms of ease of operation, safety, and aesthetics.
[0063] Example 3
[0064] like Figures 1-5 As shown, this embodiment provides a switchable wall-mounted cabinet dual-purpose energy storage power supply, which includes a battery box 100 and a wall-mounting assembly 300. The upper and lower ends of the back of the battery box 100 are provided with pre-made grooves. The embedded mounting bracket is normally embedded in the grooves, completely flush with the back of the battery box 100, ensuring a simple and aesthetically pleasing appearance.
[0065] The shape and size of the hook-up piece need to precisely match the groove to ensure it can slide in and out smoothly. The material of the hook-up piece can be similar to that of the previous two embodiments. The portion of the hook-up piece used for connecting with the hook-up base 320 can adopt a structure similar to that of the previous two embodiments.
[0066] The shape and size of the groove need to match the hanger. To facilitate the sliding of the hanger in and out, guide rails can be designed on the inner wall of the groove.
[0067] When wall mounting is required, simply pull the recessed bracket out of the groove. Each recessed bracket also has a hook structure that matches the bracket 320 for easy wall mounting.
[0068] When cabinet-style placement is required, simply push the embedded mounting bracket back into the groove to place the battery box 100 into the battery cabinet without any disassembly.
[0069] The embedded hanging piece is completely hidden in the battery box 100, and perfect fusion with the back of the battery box 100 is realized. The design makes the back of the battery box 100 completely flat, not only improves the overall appearance of the product, but also avoids the collision or wear of the hanging piece in daily use, improves the durability and reliability of the product. In addition, the embedded hanging piece does not need any disassembly operation, the user only needs to simply push and pull the hanging piece, and the quick switching of the wall-mounted and cabinet-mounted two installation modes can be realized, and the use experience is more convenient and smooth. Compared with the first two schemes, the embedded hanging piece is more excellent in appearance, reliability and ease of use, and can better meet the users who have high requirements on product appearance and use experience.
[0070] Unless specifically stated otherwise, the relative arrangements of parts and steps, numerical expressions, and numerical values set forth in these embodiments do not limit the scope of the application. In all examples shown and discussed herein, any specific value should be interpreted as merely an example, and not as a limitation. Therefore, other examples of the example embodiments can have different values. It should be noted that similar reference numbers and letters represent similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.
[0071] In addition, it should be noted that the use of the words "first", "second", and the like is merely intended to distinguish between similar items, and the above words have no special meaning unless otherwise stated, and therefore cannot be understood as limiting the scope of protection of the present application.
[0072] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A dual-purpose energy storage power supply for switchable wall-mounted cabinet, characterized in that, The utility model relates to a kind of switchable wall-mounted cabinet dual-purpose energy storage power supply, including: Battery box (100), the battery box (100) is equipped with battery cell assembly (200) inside, the top of the battery box (100) is equipped with interface panel (110), the interface panel (110) is electrically connected with the battery cell assembly (200), both sides of the interface panel (110) are equipped with pull handle (120); Wall-mounted component (300), the wall-mounted component (300) is equipped on the back of the battery box (100), and the wall-mounted component (300) includes storable mounting piece (310) and mounting seat (320), the storable mounting piece (310) is equipped on the back of the battery box (100), and the mounting seat (320) is fixed on wall body; The battery box (100) can be fixed on wall body by the storable mounting piece (310), or the storable mounting piece (310) is stored to be fixed in battery cabinet.
2. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 1, wherein: The storable mounting piece (310) is arranged along the width direction of the battery box (100), and the bottom of the storable mounting piece (310) is equipped with openings (311) on both sides, the mounting seat (320) is equipped with a bayonet on the corresponding opening (311), the bayonet is gradually narrowed from top to bottom, and the bayonet and the opening (311) are matched with each other.
3. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 2, wherein: The storable mounting piece (310) is provided with two, and the two storable mounting pieces (310) are arranged in parallel.
4. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 3, wherein: The storable mounting piece (310) is detachably connected with the battery box (100).
5. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 4, wherein: The battery box (100) is further equipped with mounting handle (130) on both sides, and the mounting handle (130) is embedded in the battery box (100).
6. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 5, wherein: In the direction away from the interface panel (110), the battery cell assembly (200) sequentially includes a control module (210), a first battery cell module (220) and a second battery cell module (230), the control module (210), the first battery cell module (220) and the second battery cell module (230) are fixed on the battery box (100) respectively, the control module (210), the first battery cell module (220) and the second battery cell module (230) are arranged along the width direction of the battery box (100), and the control module (210), the first battery cell module (220) and the second battery cell module (230) are provided with gaps.
7. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 6, wherein: The front of the battery box (100) is provided with a multi-section type power indication bar (140) and a display screen (150), the multi-section type power indication bar (140) and the display screen (150) are electrically connected with the battery cell assembly (200), and the multi-section type power indication bar (140) is arranged along the height direction of the battery box (100).
8. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 7, characterized in that: The first battery cell module (220) and the second battery cell module (230) each include a fixed frame and a battery cell group, the battery cell group includes a plurality of square battery cells, the wiring end of the square battery cell is arranged towards the front of the battery box (100), the plurality of square battery cells are arranged in a straight line along the length direction of the battery box (100), the long side surfaces of adjacent square battery cells are connected, and the wiring end of the square battery cell is further provided with an explosion-proof valve, the fixed frame wraps the battery cell group, and the fixed frame is provided with an opening (311) near the front side of the battery box (100).
9. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 3, characterized in that: The storable hanging piece (310) is rotationally connected with the battery box (100), the back of the battery box (100) is provided with a storage groove, the storage groove is arranged corresponding to the shape of the storable hanging piece (310), the top surface of the storage groove is fixed with a rotation hinge, and the rotation hinge connects the battery box (100) and the storable hanging piece (310).
10. The switchable wall-mounted cabinet dual-purpose energy storage power supply according to claim 3, characterized in that: The storable hanging piece (310) is embedded into the battery box (100).