Storage apparatus having electrical connection structure

By incorporating a power supply device and a water-blocking structure into the storage unit, the problem of the storage unit becoming unusable during movement due to power failure is solved, thereby improving convenience and safety and ensuring that the socket is not corroded by liquid.

WO2026046299A1PCT designated stage Publication Date: 2026-03-05WUXI FUTURE MIRROR DISPLAY TECH CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2026-03-05

AI Technical Summary

Technical Problem

Existing storage devices cannot be opened or used after being disconnected from the mains power during movement, and the exposed sockets are susceptible to liquid corrosion, affecting safety and convenience.

Method used

A power supply device is designed, including a first socket and a second socket. The first socket is connected to a mobile power source to supply power when the storage device is disconnected from the mains power. The socket is hidden by a mounting hole through a back panel and is combined with a water-blocking structure to prevent liquid corrosion.

Benefits of technology

It improves the convenience and safety of storage devices, ensures continued use in the event of a power outage, and effectively prevents liquid from corroding the socket, thus enhancing the user experience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a storage apparatus, such as a storage cabinet or a locker used as furniture. An aspect of the present application provides a storage apparatus having an energized apparatus. Another aspect of the present application provides a storage apparatus having a socket assembly. Still another aspect of the present application provides a storage apparatus having a water-retaining structure.
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Description

Storage device with electrical connection structure Technical Field

[0001] This application relates to the field of furniture manufacturing technology, and in particular to a storage device. Specifically, this application relates to a storage device having an electrical connection structure and a water-blocking structure. Background Technology

[0002] Storage devices, such as lockers, are common furniture primarily used to store everyday items. However, with rising living standards and the development of the Internet of Things (IoT), people are no longer satisfied with just the simple function of storage devices. They require the integration of modern electronic information technology into all aspects of the home to improve and facilitate their lives. While existing home storage devices may be intelligent and controlled by electronic locks, the device is disconnected from the mains power supply during movement, making it impossible to unlock the electronic lock and causing significant inconvenience to users.

[0003] To improve the aesthetics and portability of the living environment, the main unit can be placed on the side of a sofa or bed. The unit has internal storage space for placing or storing items, and users can place items on top of the unit for easy access. Additionally, when users are sitting or lying on the sofa or bed, there may be situations where they need to charge or power electrical devices; a power outlet or similar structure can be integrated into the unit. However, the current unit's outlet is exposed. If a cup or other item placed on the unit is spilled, liquid will flow down the unit to the outlet, making cleaning inconvenient and posing a risk of electrical conductivity, affecting safety. Therefore, there is room for improvement. Summary of the Invention

[0004] This application aims to address at least one of the technical problems existing in the prior art.

[0005] Therefore, this application proposes an energizing device that is ingeniously designed and easy to use.

[0006] This application also proposes a storage device having the aforementioned power supply device, such as a locker.

[0007] According to the present application, an energizing device is used for a storage device, the storage device including a main body having a mounting hole and a receiving cavity communicating with the mounting hole, the energizing device being disposed at the mounting hole, the energizing device including: a first socket and a second socket, the first socket and the second socket being arranged adjacent to each other at intervals, the first socket being connected to at least a portion of the power-consuming mechanism of the storage device, and a portable power source being adapted to supply power to at least a portion of the power-consuming mechanism through the first socket.

[0008] According to the power supply device of this application, by setting a first socket that can be connected to a power bank, the power bank supplies power to some key electrical components through the first socket, and the power supply device is set on the storage device, thereby solving the problem that the storage device cannot be opened or used after being disconnected from the mains power, improving the convenience of the storage device, increasing the safety factor, and effectively improving the user experience of the storage device.

[0009] In some embodiments, the first socket is a Type-C interface socket.

[0010] In some embodiments, the power supply device includes: a panel and a first PCB board, the panel being disposed over the mounting hole, and the first PCB board being electrically connected to the first socket and the second socket.

[0011] In some embodiments, the second socket is connected to the power supply mechanism of the storage device, and the power supply mechanism is electrically connected to an external circuit through the second socket.

[0012] In some embodiments, the power supply device further includes a dustproof component, which is removably disposed within the first socket.

[0013] According to some embodiments of the present application, the storage device includes a back plate, a mounting hole formed on the back plate and extending through the back plate in the thickness direction, and the storage device includes an energizing device according to a first aspect of the present application, the energizing device being disposed on the back plate.

[0014] According to the storage device of this application, by setting the power supply device of the first aspect mentioned above, the problem that the storage device cannot be opened or used after being disconnected from the mains power is solved, thereby improving the convenience of the storage device, increasing the safety factor, effectively improving the user experience of the storage device, and improving the overall performance of the storage device.

[0015] In some embodiments, the storage device further includes a drawer disposed within the receiving cavity, and the drawer being operable from the receiving cavity in a front-to-back direction.

[0016] The electrical mechanism includes: a locking mechanism electrically connected to one of the first socket and the second socket, the locking mechanism including a lock body and a latch, the lock body being disposed on one of the main body and the drawer, and the latch being disposed on the other of the main body and the drawer; in the locked state, the lock body and the latch engaging; and in the unlocked state, the lock body and the latch disengaging. A control component electrically connected to one of the first socket and the second socket, the control component being configured to control the locking mechanism to switch between the unlocked state and the locked state.

[0017] In some embodiments, the control element is a fingerprint recognition device.

[0018] In some embodiments, the power-consuming mechanism further includes: an integrated speaker disposed within the receiving cavity and electrically connected to the second socket; and a wireless charging unit integrated within the integrated speaker, which can be electrically connected to one of the first socket and the second socket.

[0019] In some embodiments, the power supply mechanism further includes a first sensor lamp disposed on a side surface of the lower sidewall of the body facing the receiving cavity.

[0020] In another aspect, this application proposes a storage device comprising: a main body having an inwardly recessed portion formed on the rear side of the main body, the bottom wall of the recess forming a mounting area; and a socket assembly disposed within the mounting area and connected to the bottom wall of the recess.

[0021] According to the storage device of this application, by setting a socket assembly on the back of the storage device, it is convenient to charge electronic products and power electrical equipment such as bedside lamps and electric kettles. It can effectively hide wires and plugs, keep the bedside area tidy, avoid messy wires, and the storage device is closer to the wall, reducing the space it occupies and making the room look more spacious.

[0022] In some embodiments, the mounting area forms a mounting cavity and a mounting port communicating with the mounting cavity, and the socket assembly includes a bottom shell disposed within the mounting cavity.

[0023] In some embodiments, the bottom shell forms a downwardly recessed cavity, and the socket assembly further includes: a base body disposed within the cavity and fixedly connected to the bottom shell; a second PCB board disposed within the cavity and fixedly connected to the bottom shell, the second PCB board being arranged adjacent to and spaced apart from the base body; and an upper shell covering the top of the cavity.

[0024] In some embodiments, the upper shell has a through hole, and a USB interface is integrated on the second PCB board, the USB interface being disposed within the through hole.

[0025] In some embodiments, the socket assembly further includes a fixing bracket connected between the base and the mounting cavity.

[0026] In some embodiments, the socket assembly is located at the rear of the integrated audio system.

[0027] In some embodiments, the body includes a top plate with a clearance portion formed on its rear side, the clearance portion being adapted to allow wires to pass through.

[0028] In some embodiments, a second sensor light is provided around the periphery of the avoidance portion.

[0029] In some embodiments, the base is a three-prong power socket.

[0030] In another aspect, this application proposes a storage device comprising: a main body, wherein at least one side of the main body is an electrical connection side, the electrical connection side having at least two electrical connection portions; and a water-blocking member connected to the electrical connection side and located above the electrical connection portions to form a shield on the upper part of the electrical connection portions.

[0031] The storage device according to the embodiments of this application is used for placing, storing, and supplying power, etc., which can meet a variety of usage needs, improve the convenience of use, and is equipped with a water-blocking component. The water-blocking component has a simple structure, low manufacturing cost, and convenient installation. It can block the electrical connection part, facilitate the cleaning of the storage device, and ensure the safety of use. It has a better use effect and a wider range of applications.

[0032] According to some embodiments of the present application, in the storage device, at least a portion of the electrical connection side is recessed into the body to form a trough, and the water-blocking member includes a water-blocking structure connected to the top wall of the trough.

[0033] According to some embodiments of the present application, the storage device includes a water-blocking member comprising a mounting plate and an inclined water-blocking plate. The mounting plate is connected to the inner top wall of the settling tank, and the top edge of the water-blocking plate is connected to the mounting plate. The water-blocking plate extends in a vertically downward direction away from the bottom of the settling tank.

[0034] According to some embodiments of the storage device of this application, the angle between the baffle and the horizontal plane is set to α, and satisfies: 45°≤α<90°.

[0035] According to some embodiments of the present application, the storage device has a buffer texture formed on the side of the baffle plate away from the sink, and the buffer texture extends in the horizontal direction.

[0036] Or the direction of the buffer texture extends at an angle to the horizontal direction.

[0037] According to some embodiments of the storage device of this application, the water-blocking structure is detachably connected to the electrical connection side via a connector.

[0038] According to some embodiments of the storage device of this application, there are multiple electrical connection portions, and at least two of the multiple electrical connection portions are spaced apart in the vertical direction. The electrical connection portions may include the aforementioned power supply device and / or socket assembly.

[0039] According to some embodiments of the storage device of this application, the electrical connection portion further includes a second power interface disposed at the bottom of the settling tank, and the water-blocking member includes a shielding structure located above the second power interface.

[0040] According to some embodiments of the storage device of this application, the two sides of the shielding structure are also connected to shielding flanges, and the two shielding flanges are respectively located on the left and right sides of the second power interface. The shielding structure and the shielding flanges cooperate to form a semi-enclosed structure that partially surrounds the second power interface, and the lower opening of the semi-enclosed structure is a wire harness avoidance opening.

[0041] According to some embodiments of the storage device of this application, in all the electrical connection portions, at least one electrical connection portion is a socket for supplying power to the storage device, and the remaining electrical connection portions are sockets for supplying power or charging other electrical appliances.

[0042] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0043] Figure 1 is a schematic diagram of a storage device according to an embodiment of one aspect of this application;

[0044] Figure 2 is a schematic diagram of the storage device shown in Figure 1 from another angle;

[0045] Figure 3 is a schematic diagram of the exploded view of the storage device shown in Figure 1;

[0046] Figure 4 is a schematic diagram of an exploded view of the storage device shown in Figure 3 from another perspective;

[0047] Figure 5 is a schematic diagram of the power supply device shown in Figure 2;

[0048] Figure 6 is a schematic diagram of the locking mechanism shown in Figure 3;

[0049] Figure 7 is a schematic diagram of a storage device according to another aspect of this application;

[0050] Figure 8 is a schematic diagram of the storage device shown in Figure 7 from another angle;

[0051] Figure 9 is a schematic diagram of the exploded view of the storage device shown in Figure 7;

[0052] Figure 10 is a schematic diagram of an exploded view of the storage device shown in Figure 9 from another perspective;

[0053] Figure 11 is a schematic diagram of the socket assembly shown in Figure 9.

[0054] Figure 12 is an exploded view of a storage device according to another aspect of this application;

[0055] Figure 13 is a partial schematic diagram of the water-blocking component shown in Figure 12;

[0056] Figure 14 is a structural schematic diagram of the storage device shown in Figure 12.

[0057] Reference numerals: 100, storage device; 10, main body; 11, receiving cavity; 12, back plate; 121, mounting hole; 13, top plate; 131, clearance part; 14, recess; 141, mounting area; 15, electrical connection part; 16, clearance groove; 17, recess; 171, receiving groove; 18, shielding structure; 181, shielding flange; 182, wire harness clearance opening; 20. Drawer; 30. Locking mechanism; 31. Lock body; 311. Lock tongue; 32. Locking bolt; 321. Connecting plate; 322. Locking plate; 3221. Lock hole; 40. Control component; 41. Fingerprint recognition device; 42. Circuit board; 50. Wireless charging unit; 60. First sensor light; 61. Second sensor light; 70. Power supply device; 71. First socket; 72. Second socket; 73. Panel; 74. First PCB board; 75. Dustproof component; 80. Integrated speaker; 90. Socket assembly; 91. Bottom shell; 92. Base; 93. Second PCB board; 94. Top shell; 941. Through hole; 95. Fixing bracket; 200. Water-blocking structure; 210. Mounting plate; 2101. Mounting hole; 220. Water-blocking plate; 2201. Buffer texture; 300. Connector. Detailed Implementation

[0058] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.

[0059] This application includes a storage device 100, which may be, for example, a storage cabinet, a locker, or a cabinet integrated with other functional components, used as furniture.

[0060] Power supply device

[0061] Referring now to Figures 1-6, some embodiments according to the first aspect of this application will be described below.

[0062] As shown in Figures 1-6, the power supply device 70 includes: a first socket 71 and a second socket 72.

[0063] Specifically, the power supply device 70 is used in the storage device 100. The storage device 100 includes a main body 10, on which a mounting hole 121 and a receiving cavity 11 communicating with the mounting hole 121 are formed. The power supply device 70 is disposed at the position of the mounting hole 121. The power supply device 70 includes a first socket 71 and a second socket 72, which are arranged adjacent to each other at intervals. The first socket 71 is connected to at least a part of the electrical mechanism of the storage device 100, and a portable power source is adapted to supply power to at least a part of the electrical mechanism through the first socket 71.

[0064] For example, during the handling of the storage device 100, the storage device 100 is disconnected from the mains power. The power supply mechanism can be the fingerprint recognition device 41 and the locking mechanism 30. If the user needs to open the storage device 100 at this time, the power bank can be connected from the first socket 71 to the storage device 100 to supply power to the fingerprint recognition device 41 and the locking mechanism 30. In this way, the storage device 100 can be opened.

[0065] According to the embodiment of this application, the power supply device 70 is provided with a first socket 71 that can be connected to a power bank. The power bank supplies power to some key electrical components through the first socket 71. The power supply device 70 is placed on the storage device 100, thereby solving the problem that the storage device 100 cannot be opened or used after being disconnected from the mains power. This improves the convenience of the storage device 100, enhances the safety factor, and effectively improves the user experience of the storage device 100.

[0066] Since the Type-C interface is a widely used standard in modern electronic devices, its reversible plug-in feature greatly facilitates users inserting charging cables in the dark or when visibility is limited, improving ease of use. Preferably, the first socket 71 is a Type-C interface socket, meeting users' needs for a fast, efficient, and universal charging solution. Furthermore, the smaller size of the Type-C interface helps reduce the space occupied by the storage device 100, making the overall design more compact.

[0067] In some embodiments of this application, as shown in Figures 3 and 5, the power supply device 70 includes a panel 73 and a first PCB board 74. The main functions of the panel 73 are aesthetics and protection. The panel 73 covers the mounting hole 121 and is integrated with the appearance of the storage device 100. It also prevents dust, moisture or foreign objects from entering the socket, thus improving safety. The first PCB board 74 is electrically connected to the first socket 71 and the second socket 72. The first PCB board 74 carries and connects electrical components to ensure a stable electrical connection. At the same time, the design of the first PCB board 74 itself also helps with heat dissipation and electromagnetic shielding, ensuring the stability and safety of electrical performance.

[0068] Furthermore, panel 73 may also include indicator lights, switches, or touch control buttons to allow users to intuitively understand the status of the socket or to operate it.

[0069] Alternatively, panel 73 is typically made of plastic, metal, or composite materials that have good insulation and durability and can withstand wear and tear during daily use.

[0070] In some embodiments of this application, the second socket 72 is connected to the electrical component of the storage device 100. The electrical component is electrically connected to an external circuit through the second socket 72. The second socket 72 is a quincunx socket. Quincunx sockets are commonly used for connecting high-power electrical appliances and can carry higher current and voltage. Quincunx sockets also have good grounding and protection measures, which can prevent mis-insertion and electric shock risks. They are particularly suitable for humid or dusty environments and can also ensure the correct phase connection, thus avoiding electrical accidents.

[0071] Here, it is understood that the storage device 100 is electrically connected to the mains power supply via a wire. This allows the wire to be disconnected from the storage device 100 when it is being moved, making it easier to move the storage device 100 and increasing the flexibility of its use.

[0072] In some embodiments of this application, as shown in Figures 3-5, the power supply device 70 further includes a dustproof component 75, which is removably disposed inside the first socket 71. The dustproof component 75 can be tightly fitted inside the first socket 71 to form a physical barrier, preventing external contaminants from entering the socket and thus avoiding problems such as poor contact or short circuit.

[0073] According to the second aspect of the present application, the storage device 100 has a main body 10 including a back plate 12, a mounting hole 121 formed on the back plate 12 and extending through the back plate 12 in the thickness direction, and the storage device 100 includes a power supply device 70 according to the first aspect of the present application, which is disposed on the back plate 12.

[0074] The storage device 100 according to the embodiments of this application solves the problem that the storage device 100 cannot be opened or used after being disconnected from the mains power by setting the power supply device 70 of the first aspect embodiment, thereby improving the convenience of the storage device 100, increasing the safety factor, effectively improving the user experience of the storage device 100, and improving the overall performance of the storage device 100.

[0075] Further, as shown in Figure 3, the storage device 100 is a storage device, and the following description of the storage device is based on the storage device, but is not limited to it. The main body 10 includes a back panel 12, a mounting hole 121 is formed on the back panel 12 and penetrates the back panel 12 in the thickness direction, and the power supply device 70 is disposed on the back panel 12. It can be understood that providing a mounting hole 121 on the back panel 12 can make full use of the space on the back of the storage device 100, while not affecting the aesthetics and use of the front, making the installation position of the power supply device 70 more concealed, maintaining the overall aesthetics of the furniture, and the mounting hole 121 penetrating the back panel 12 allows the wire to pass directly through the rear of the main body 10, which is convenient for organizing and hiding the wire, avoiding the wires being exposed messily on the outside of the main body 10, improving safety, and also making the room look tidier.

[0076] In some embodiments of this application, the storage device 100 further includes: a drawer 20 disposed within a receiving cavity 11, and the drawer 20 being operable from the receiving cavity 11 in a front-to-back direction; an electrical mechanism including: a locking mechanism 30 electrically connected to one of a first socket 71 and a second socket 72; the locking mechanism 30 including a lock body 31 and a latch 32; the lock body 31 being disposed on one of the main body 10 and the drawer 20, and the latch 32 being disposed on the other of the main body 10 and the drawer 20; in the locked state, the lock body 31 and the latch 32 engage; in the unlocked state, the lock body 31 and the latch 32 disengage; and a control element 40 electrically connected to one of the first socket 71 and the second socket 72, the control element 40 being configured to control the locking mechanism 30 to switch between the unlocked and locked states.

[0077] The storage device 100 of this application is equipped with a control component 40. The control component 40 can control the locking mechanism 30 to switch between an unlocked state and a locked state, thereby controlling the engagement or disengagement of the lock body 31 and the latch 32. This enables the unlocking or locking of the drawer 20. Compared with the prior art, which uses manual pushing and pulling of the drawer 20, the storage device 100 of this application can control the unlocking or locking of the drawer 20 through the control component 40. This saves control time, improves control efficiency, saves manpower, and facilitates the use of the drawer 20. At the same time, the control component 40 can improve control accuracy, so that the drawer 20 can be accurately unlocked or locked with the main body 10, thereby effectively improving the user experience of the storage device 100.

[0078] Furthermore, during the movement of the storage device 100, the headboard is disconnected from the mains power, and the control unit 40 and the locking mechanism 30 are de-energized and cannot work. If the user needs to open the storage device 100 at this time, the user can connect the power supply from the first socket 71 to the storage device 100 to supply power to the control unit 40 and the locking mechanism 30, and thus the storage device 100 can be opened.

[0079] Specifically, as shown in Figures 3-6, the lock body 31 is mounted on the main body 10, and the lock body 31 is provided with a locking tongue 311. The drawer 20 is provided with a latch 32, and the latch 32 is provided with a lock hole 3221. In the locked state, the locking tongue 311 extends into the lock hole 3221. Thus, the lock body 31 and the latch 32 are positioned appropriately, ensuring that the lock body 31 can cooperate with the latch 32. At the same time, the lock hole 3221 on the latch 32 facilitates the locking tongue 311 to extend into the latch 32 to cooperate with the lock body 31, thereby ensuring the reliability of locking the drawer 20 to the main body 10 and ensuring the safety of using the storage device 100.

[0080] According to some optional embodiments of this application, referring to FIG6, the latch 32 includes a connecting plate 321 and a locking plate 322. The connecting plate 321 is vertically arranged and fixed to the drawer 20; the locking plate 322 is connected to the connecting plate 321 and extends horizontally, with a lock hole 3221 provided in the locking plate 322 and passing through the locking plate 322 in the vertical direction. Thus, the connecting plate 321 facilitates the connection between the latch 32 and the drawer 20, while the locking plate 322 is fixed to the drawer 20 through the connecting plate 321. When the locking plate 322 engages with the locking tongue 311, the drawer 20 is locked to the main body 10.

[0081] In some embodiments of this application, the control element 40 is a fingerprint recognition device 41. Therefore, the fingerprint recognition device 41 is simple, thereby simplifying the steps of unlocking or locking the drawer 20, and thus facilitating the use of the drawer 20.

[0082] Furthermore, as shown in the figure, the control unit 40 also includes a circuit board 42, which is electrically connected to the fingerprint recognition device 41. When a fingerprint touches the fingerprint recognition device 41, the circuit board 42 controls the locking mechanism 30 to switch states.

[0083] In some embodiments of this application, the power-consuming mechanism further includes: an integrated speaker 80, which is disposed within the receiving cavity 11 and electrically connected to the second socket 72; and a wireless charging unit 50, which is integrated within the integrated speaker 80 and can be electrically connected to one of the first socket 71 and the second socket 72. Therefore, by incorporating the wireless charging unit 50 within the integrated speaker 80, mobile phones, electric kettles, and other devices can be charged more effectively, improving the user experience.

[0084] In some embodiments of this application, the electrical mechanism further includes a first sensor light 60, which is disposed on the lower side wall of the main body 10 facing the receiving cavity 11. Thus, in the event of darkness or poor visibility, the first sensor light 60 can automatically turn on without requiring manual searching for a switch. This facilitates the opening and closing of the drawer 20 in low visibility conditions, and ensures that the light from the first sensor light 60 illuminates the entire storage device 100, making it easy to open the drawer 20 in low visibility situations. Simultaneously, it prevents bumps and knocks against the storage device 100.

[0085] Socket assembly

[0086] Referring now to Figures 7-11, some embodiments according to the second aspect of this application are described below.

[0087] As shown in Figures 7-11, the storage device 100 according to an embodiment of this application includes: a main body 10 and a socket assembly 90.

[0088] Specifically, the rear side of the main body 10 has an inwardly recessed recess 14. The design of the recess 14 allows the storage device 100 to be closer to the wall, reducing the space it occupies and making the room look more spacious. The bottom wall of the recess 14 forms an installation area 141. The socket assembly 90 is located in the installation area 141 and connected to the bottom wall of the recess 14. The socket assembly 90 is located in the recess 14, which can effectively hide wires and plugs, keep the bedside area tidy, and avoid messy wires.

[0089] Storage unit 100 is typically placed beside the bed in the bedroom to store personal items, light controls, alarm clocks, or electronic devices such as mobile phones. Integrating the socket assembly 90 into the storage unit 100 allows users to conveniently charge electronic devices or use other appliances without leaving the bed. Placing the socket assembly 90 in a relatively concealed location can prevent accidental contact by children, thus improving safety.

[0090] According to the embodiments of this application, the storage device 100 provides a socket assembly 90 on the rear side of the storage device 100, which facilitates charging electronic products and powering electrical equipment such as bedside lamps and electric kettles. It can effectively hide wires and plugs, keep the bedside area tidy, avoid messy wires, and the storage device 100 is closer to the wall, reducing the space it occupies and making the room look more spacious.

[0091] In some embodiments of this application, as shown in FIG9, the mounting area 141 forms a mounting cavity and a mounting opening communicating with the mounting cavity. The socket assembly 90 includes a bottom shell 91 disposed within the mounting cavity. Thus, the socket assembly 90 is securely installed within the mounting area 141, preventing loosening. Furthermore, the mounting cavity and mounting opening effectively conceal wires, maintaining the neat appearance of the storage device 100 and reducing safety hazards caused by exposed wires, while also preserving the aesthetics and overall integrity of the furniture.

[0092] In some embodiments of this application, the bottom shell 91 forms a downwardly recessed cavity, and the socket assembly 90 further includes: a base 92, which is disposed within the cavity and fixedly connected to the bottom shell 91; a second PCB board 93, which is disposed within the cavity and fixedly connected to the bottom shell 91, and is arranged adjacent to and spaced apart from the base 92; and an upper shell 94, which covers the top of the cavity. Thus, the socket assembly 90 has a compact overall structure, achieving a combination of functionality and aesthetics, while ensuring electrical safety and ease of maintenance through a layered design.

[0093] In some embodiments of this application, as shown in FIG11, the upper shell 94 has a through hole 941, and the second PCB board 93 integrates a USB interface, which is located within the through hole 941. Specifically, users can directly connect a USB data cable through the through hole 941 to charge electronic devices such as smartphones and tablets without having to carry an additional charger, thus improving convenience. The USB interface is integrated on the second PCB board 93, which, compared to a traditional adapter, can significantly reduce clutter on the desktop or storage device 100, making the space more organized.

[0094] Furthermore, the socket assembly 90 also includes a fixing bracket 95, which is connected between the base shell 91 and the mounting cavity. This enhances structural stability, improves load-bearing capacity, reduces the risk of damage, adapts to different installation environments, and facilitates adjustment and calibration.

[0095] In some embodiments of this application, the socket assembly 90 is located behind the integrated speaker 80, keeping the headboard area tidy. As shown in FIG9, the integrated speaker 80 is located above the drawer 20, and the socket assembly 90 is located behind the integrated speaker 80.

[0096] In some embodiments of this application, the main body 10 includes a top plate 13, and a clearance portion 131 is formed on the rear side of the top plate 13. The clearance portion 131 is adapted to allow wires to pass through, thereby helping to hide the wires and prevent them from being scattered outside, causing clutter and potential safety hazards. It can also keep the storage device 100 and the surrounding space tidy and improve the aesthetics of the home environment. By concentrating and orderly passing the wires through the clearance portion 131, the risk of tripping or short circuit can be reduced.

[0097] Furthermore, a second sensor light 61 is provided around the perimeter of the clearance section 131. When the user needs to plug or unplug the power cord, the second sensor light 61 senses the human body and provides illumination, which improves practicality, enhances the intelligence and humanization of the storage device 100, and makes home life more comfortable and safe.

[0098] Preferably, the base 92 is a three-prong power socket.

[0099] Water-blocking structure

[0100] Referring now to Figures 12-14, some embodiments according to this application will be described in accordance with a third aspect of this application.

[0101] As shown in Figures 12-14, a storage device 100 according to an embodiment of this application includes: a main body 10 and a water-blocking member 2.

[0102] At least one side of the main body 10 is designated as the electrical connection side, and at least two electrical connection portions 15 are provided on the electrical connection side. The water-blocking member 2 is connected to the electrical connection side and is located above the electrical connection portions 15 to form a shield on the upper part of the electrical connection portions 15.

[0103] Specifically, the storage device 100 can be installed on both sides of a sofa, bedside, or desk, etc., for storage, placement, and power supply. Depending on actual usage needs, it can integrate speakers, lighting strips, and air purifiers to meet different user requirements and improve ease of use. The storage device 100 has a main body 10, which can be rectangular, cylindrical, or irregularly shaped, enhancing aesthetics while meeting functional requirements. The main body 10 contains storage space that opens towards the front, and a cabinet door can be installed at the opening. The cabinet door can open or close the storage space, allowing users to store items. In practice, the cabinet door can be replaced with drawers or other structures to increase installation flexibility.

[0104] Furthermore, at least one side of the main body 10 can be configured as an electrical connection side. However, to ensure the storage needs of the main body 10, at most three sides of the main body can be configured as electrical connection sides. For example, the electrical connection sides can be located on the left and right sides or the rear side of the main body 10, which can ensure the aesthetics of the storage device 100 while meeting the power supply requirements. The electrical connection side is provided with at least two electrical connection parts 15, that is, the electrical connection parts 15 can be set to two, three, or four, etc., wherein the electrical connection parts 15 may include the power supply device 70 and / or socket assembly 90 described in the preceding part of this application. The electrical connection parts 15 can be configured as sockets for supplying power to the storage device 100, or charging sockets, USB sockets, or contact power supply areas for supplying power to the outside world, etc., to meet different usage needs.

[0105] Furthermore, the storage device 100 is also equipped with a water-blocking component, which is connected to the electrical connection side. The water-blocking component can be connected to the main body 10 by means of connector 300, adhesive or magnetic attraction, etc., which is convenient to install and can be disassembled for easy cleaning of the main body 10. The water-blocking component is connected above the electrical connection part 15, so that the water-blocking component can form a shield above the electrical connection part 15. That is, when there is liquid flowing down from the top of the main body 10, it can first flow to the water-blocking component, and then continue to flow down along the water-blocking component. The water-blocking component forms a shield above the electrical connection part 15, which can prevent the liquid flowing to the water-blocking component from flowing to the electrical connection part 15, thereby avoiding the danger of electric shock and improving the safety of use. Moreover, the liquid only flows on the surface of the main body 10, which is easy to clean.

[0106] The storage device 100 according to the embodiments of this application is used for placing, storing, and supplying power, etc., which can meet a variety of usage needs, improve the convenience of use, and is equipped with a water-blocking component. The water-blocking component has a simple structure, low manufacturing cost, and convenient installation. It can block the electrical connection part 15, which facilitates the cleaning of the storage device 100, and can ensure the safety of use, with better use effect and wider applicability.

[0107] In some embodiments, at least a portion of the electrical connection side is recessed into the body to form a trough 17, and the water-blocking element includes a water-blocking structure 200 connected to the inner top wall of the trough 17.

[0108] Specifically, one side of the main body 10 is configured as an electrical connection side, and the electrical connection side can be set at the rear side of the main body 10 to improve the aesthetics of the storage device 100. The electrical connection side is provided with an electrical connection part 15, which can charge or supply power to electrical devices to meet different usage needs. At least a portion of the electrical connection side is provided with a recess 17, which is formed by the recess of at least a portion of the electrical connection side into the main body.

[0109] Furthermore, the recess 17 can be configured as a stepped type, as shown in Figures 12 and 14. The upper recess 17 on the electrical connection side is recessed inward to a deeper depth, forming a receiving groove 171. The lower recess 17 on the electrical connection side is recessed inward to a shallower depth. The electrical connection part 15 can be disposed in the upper receiving groove 171 or in the recess 17. Of course, the electrical connection part 15 can be disposed in both the upper receiving groove 171 and the lower recess 17. When using the electrical connection part 15 to charge small electrical devices, the electrical device can be placed in the recess 17, thereby avoiding damage from collisions when the electrical device is placed on top of the main body 10 and ensuring the cleanliness of the area above the main body 10.

[0110] Before further describing the sink 17 and the receiving tank 171, let's first explain the names of the tank walls in this example. The bottom of the sink 17 and the receiving tank 171 refers to the wall surface directly opposite the opening. The term "bottom" is not named according to spatial position. Taking Figure 14 as an example, the opening of the sink 17 is located on the electrical connection side of the main body 10, and the bottom of the sink 17 is the inner wall parallel to the electrical connection side. The inner top wall of the sink 17 and the inner bottom wall of the receiving tank 171 are named according to spatial position. Taking Figure 14 as an example, the inner top wall of the sink 17 refers to the inner wall located at the top of the sink 17, and the inner bottom wall of the receiving tank 171 refers to the inner wall located at the bottom of the receiving tank.

[0111] Meanwhile, the water-blocking component is equipped with a water-blocking structure 200, which can be connected to the inner top wall of the settling tank 17, as shown in Figure 14. The upper part of the water-blocking structure 200 is connected to the edge of the inner top wall of the settling tank 17. The electrical connection part 15 is set in the settling tank 17, so that the electrical connection part 15 is located below the water-blocking structure 200. When the liquid flows downward above the main body 10, the liquid can flow to the water-blocking structure 200 and then be guided away from the electrical connection part 15 by the water-blocking structure 200, ensuring the safety of the electrical connection part 15. At this time, the electrical equipment can also be placed in the settling tank 17, thereby avoiding damage to the electrical equipment and improving the reliability of use.

[0112] In some embodiments, a portion of the bottom of the settling tank 17 is recessed to form a receiving tank 171, which is located below the water-blocking structure 200. The inner bottom wall of the receiving tank 171 is provided with at least one electrical connection portion 15, which is a first power interface.

[0113] Specifically, at least a portion of the electrical connection side is recessed into the body to form a groove 17, and as shown in Figures 12 and 14, a portion of the bottom of the groove 17 is recessed to form a receiving groove 171. That is, the receiving groove 171 can be formed in the upper region of the bottom of the groove 17, or in the lower region of the bottom of the groove 17, etc. In this embodiment, the receiving groove 171 is formed in the upper region of the bottom of the groove 17.

[0114] Furthermore, the electrical connection side is provided with at least two electrical connection parts 15, and at least one of the at least two electrical connection parts 15 can be provided on the inner bottom wall of the receiving groove 171. That is, the inner bottom wall of the receiving groove 171 can have one, two or three electrical connection parts 15. The electrical connection part 15 provided on the inner bottom wall of the receiving groove 171 can be configured as a first power interface. The first power interface can be configured to supply power to the storage device 100 or to supply power to external electrical equipment, which provides high flexibility.

[0115] In addition, the receiving tank 171 is located below the water-blocking structure 200, and the inner bottom wall of the receiving tank 171 is provided with a first power interface. That is, the first power interface is located below the water-blocking structure 200, so that when the liquid flows to the water-blocking structure 200, it can be guided away from the first power interface by the water-blocking structure 200, thus ensuring the safety of the first power interface.

[0116] In some embodiments, the water-blocking structure 200 includes a mounting plate 210 and an inclined water-blocking plate 220. The mounting plate 210 is connected to the inner top wall of the settling tank 17, and the top edge of the water-blocking plate 220 is connected to the mounting plate 210. The water-blocking plate 220 extends in a vertically downward direction away from the bottom of the settling tank 17.

[0117] Specifically, the water-blocking structure 200 is installed on the inner top wall of the settling tank 17, and as shown in Figure 12, the water-blocking structure 200 is provided with an installation plate 210 and a water-blocking plate 220. The installation plate 210 and the water-blocking plate 220 are bent and connected, and the water-blocking plate 220 is inclined. The installation plate 210 is connected to the inner top wall of the settling tank 17, so that the water-blocking structure 200 as a whole can be fixedly connected to the inner top wall of the settling tank 17. The installation plate 210 is set as a plate structure, and the installation plate 210 can be fitted and connected to the inner top wall of the settling tank 17, thereby ensuring the reliability of the connection between the installation plate 210 and the inner top wall of the settling tank 17.

[0118] Furthermore, the top edge of the baffle plate 220 is connected to the mounting plate 210, meaning the upper end of the baffle plate 220 is connected to the side of the mounting plate 210 away from the settling tank 17. Vertically downwards, the baffle plate 220 extends away from the bottom of the settling tank 17, meaning the lower end of the baffle plate 220 is a free end and located on the side of the mounting plate 210 away from the settling tank 17. The baffle plate 220 is inclined away from the mounting plate 210, making the lower end of the baffle plate 220 relatively farther from the upper end. The installation plate 210 is positioned so that when liquid flows from the main body 10 to the baffle plate 220, it can flow along the baffle plate 220 away from the main body 10, that is, the liquid can flow away from the electrical connection part 15, which improves the safety of the electrical connection part 15. Furthermore, the liquid flows away from the main body 10 so that after flowing to the baffle plate 220, it can slide off the baffle plate 220 to the ground, reducing the area of ​​liquid flow on the main body 10 and facilitating the cleaning of the main body 10.

[0119] In some embodiments, the angle between the baffle plate 220 and the horizontal plane is set to α, and satisfies: 45°≤α<90°.

[0120] Specifically, as shown in Figure 12, the mounting plate 210 and the baffle plate 220 are bent and connected. The angle between the baffle plate 220 and the horizontal plane is set to 'a', satisfying the condition: 45°≤a<90°. That is, the angle 'a' between the baffle plate 220 and the horizontal plane can be set to 45°, 75°, or 85°, etc. Setting the angle 'a' between the baffle plate 220 and the horizontal plane to satisfy 45°≤a<90° allows the baffle plate 220 to be tilted away from the mounting plate 210. This ensures that when liquid flows to the baffle plate 220, it flows away from the electrical connection part 15, thus ensuring the safety of the electrical connection part 15 and facilitating the cleaning of residual liquid on the main body 10. Furthermore, setting the angle 'a' between the baffle plate 220 and the horizontal plane to satisfy 45°≤a<90° avoids excessive angles that could cause liquid to splash onto other furniture or appliances, ensuring reliable use.

[0121] In some embodiments, the side of the baffle plate 220 away from the sink 17 has a buffer texture 2201, which extends in the horizontal direction; or the extension direction of the buffer texture 2201 has an angle with the horizontal direction.

[0122] Specifically, the baffle plate 220 is connected to the mounting plate 210 and is inclined toward the side away from the mounting plate 210, thereby preventing liquid from flowing to the electrical connection part 15 and ensuring the safety of the electrical connection part 15. The baffle plate 220 is provided with a buffer texture 2201 on the side away from the settling tank 17, as shown in Figure 13. The buffer texture 2201 can be set as multiple straight grooves arranged at intervals, or as a wavy groove or a patterned groove, etc., and the buffer texture 2201 extends in the horizontal direction.

[0123] Furthermore, when the liquid flows to the baffle plate 220, it can flow along the baffle plate 220 to the buffer groove 2201. The buffer groove 2201 is constructed as a groove structure. When the liquid flows to the buffer groove 2201, the buffer groove 2201 can buffer the liquid, thereby preventing the liquid from flowing too fast and splashing onto other furniture or appliances. When the amount of liquid is small, the liquid flows along the buffer groove 2201 and can remain in multiple buffer grooves 2201, reducing the liquid flow area and making it easier to clean.

[0124] Additionally, as shown in Figure 13, the buffer texture 2201 can be constructed as a buffer groove. Multiple buffer grooves are provided, all extending horizontally and arranged sequentially along the liquid flow direction. That is, when the liquid flows to the baffle 220, it needs to pass through multiple buffer grooves. The grooves are recessed, and multiple buffer grooves can buffer the liquid multiple times, thereby improving the buffering effect. Each buffer groove can hold a small amount of liquid, so that when the liquid volume is small, the liquid can remain in multiple buffer grooves, avoiding liquid contamination of the rest of the main body 10 and facilitating cleaning.

[0125] Furthermore, the extension direction of the buffer ripples 2201 can be configured to form an angle with the horizontal direction, that is, the buffer ripples 2201 can be configured to form a right angle or an acute angle with the vertical direction. When the angle formed by the extension direction of the buffer ripples 2201 and the vertical direction is a right angle, the buffering effect on the liquid is the best. And when the extension direction of the buffer ripples 2201 forms an angle with the horizontal direction, that is, the buffer ripples 2201 are tilted to one side, the buffer ripples 2201 can guide the water spilled on the baffle plate 220 to one side of the storage device 100 to prevent water from spilling onto the electrical connection side.

[0126] In some embodiments, the water-blocking structure 200 is detachably connected to the electrical connection side via a connector 300.

[0127] Specifically, the water-blocking structure 200 extends horizontally, and its length is equal to the length of the inner top wall of the settling tank 17, thereby ensuring the water-blocking effect of the water-blocking structure 200. The water-blocking structure 200 is provided with an mounting plate 210 and a water-blocking plate 220. The mounting plate 210 is fitted and connected to the edge of the inner top wall of the settling tank 17. The water-blocking structure 200 can be detachably connected to the electrical connection side through a connector 300, which can be a bolt or the like, to facilitate the installation of the water-blocking structure 200. When the water-blocking structure 200 is damaged, it can be removed or replaced, saving maintenance costs.

[0128] Furthermore, as shown in Figure 12, the baffle plate 220 is provided with mounting holes 2101. Multiple mounting holes 2101 can be provided, and they are spaced apart along the length of the mounting plate 210. The inner top wall of the settling tank 17 is provided with multiple mounting mating holes. The multiple mounting holes 2101 and the multiple mounting mating holes are provided one-to-one. Multiple connectors 300 are also provided. The connectors 300 can be sequentially inserted into the mounting holes 2101 and the mounting mating holes, thereby connecting the mounting plate 210 and the inner top wall of the settling tank 17. By providing multiple connectors 300, the force between the mounting plate 210 and the inner top wall of the settling tank 17 can be distributed to multiple connectors 300, thereby extending the service life of the connectors 300. Furthermore, providing multiple connectors 300 can ensure the reliability of the connection between the mounting plate 210 and the inner top wall of the settling tank 17.

[0129] In actual installation, a magnetic suction component can be installed on the mounting plate 210, and a magnetic suction fitting component can be installed on the inner top wall of the settling tank 17, so that the mounting plate 210 can be magnetically connected to the inner top wall of the settling tank 17. Alternatively, the mounting plate 210 and the inner top wall of the settling tank 17 can be connected by snap-fit ​​or adhesive, which makes installation convenient and facilitates the disassembly of the water-blocking structure 200, saving cleaning and maintenance time.

[0130] In some embodiments, there are multiple electrical connection portions 15, and at least two of the multiple electrical connection portions 15 are spaced apart in the vertical direction.

[0131] Specifically, the main body 10 is provided with an electrical connection side, and the electrical connection side is provided with an electrical connection part 15. The electrical connection part 15 can be provided in multiple ways, that is, the electrical connection part 15 can be provided in two, three or four, etc. By providing multiple electrical connection parts 15, the storage device 100 can supply power to multiple electrical devices at the same time, meet more usage needs, and ensure user experience. At least two of the multiple electrical connection parts 15 are distributed at intervals in the vertical direction.

[0132] As shown in Figures 12 and 14, in this embodiment, two electrical connection parts 15 are provided, which are spaced apart in the vertical direction. That is, one electrical connection part 15 is provided on the upper part of the electrical connection side, and the other electrical connection part 15 is provided on the lower part of the electrical connection side. This allows the upper electrical connection part 15 to be used to supply power to electrical equipment placed on top of the storage device 100, and the lower electrical connection part 15 to be used to supply power to electrical equipment placed below the storage device 100. This can shorten the length of the power supply harness and meet different usage requirements.

[0133] In some embodiments, the electrical connection portion 15 further includes a second power interface disposed at the bottom of the settling tank 17, and the water-blocking component includes a shielding structure 18 located above the second power interface.

[0134] Specifically, the electrical connection side is provided with multiple electrical connection parts 15, and each electrical connection part 15 also includes a second power interface located at the bottom of the sink 17. The second power interface can be located at the lower part of the electrical connection area. The second power interface can be configured to supply power to electrical equipment, or it can be configured to supply power to the storage device 100, thus providing high flexibility in configuration.

[0135] Furthermore, the water-blocking component also includes a shielding structure 18, which is disposed above the second power interface. The shielding structure 18 can be configured as a shielding plate or the like, and extends in a direction away from the main body 10, thereby allowing the shielding structure 18 to shield the area above the second power interface. When liquid flows to the area above the second power interface, it can flow along the shielding structure 18 in a direction away from the second power interface, thereby ensuring the safety of the second power interface.

[0136] The water-blocking structure 200 is connected to the inner top wall of the settling tank 17, that is, the water-blocking structure 200 is connected to the top of the main body 10. The water-blocking structure 200 can protect the electrical connection part 15 on the upper part of the electrical connection side. A shielding structure 18 is provided above the second power interface on the lower part of the electrical connection side to prevent excessive liquid from flowing down the water-blocking structure 200 to the lower second power interface, thereby further ensuring the safety of the second power interface.

[0137] In some embodiments, shielding flanges 181 are also connected to both sides of the shielding structure 18. The two shielding flanges 181 are located on the left and right sides of the second power interface, respectively. The shielding structure 18 and the shielding flanges 181 cooperate to form a semi-enclosed structure that partially surrounds the second power interface. The lower opening of the semi-enclosed structure is a wire harness avoidance opening 182.

[0138] Specifically, as shown in Figures 12 and 13, a second power interface is provided at the lower part of the settling tank 17, and a shielding structure 18 is formed above the second power interface. Furthermore, shielding flanges 181 are connected to both sides of the shielding structure 18. That is, a shielding structure 18 is provided above the second power interface, and shielding flanges 181 are provided on both sides of the second power interface. Both the shielding structure 18 and the shielding flanges 181 can extend away from the main body 10, so that the shielding structure 18 and the shielding flanges 181 cooperate to form a semi-enclosed structure that partially surrounds the second power interface, thereby shielding the liquid and ensuring the safety of the second power interface.

[0139] Furthermore, the lower opening of the semi-enclosed structure is a wire harness clearance opening 182. As shown in Figures 12 and 14, clearance grooves 16 are provided at both the upper and lower edges of the main body 10. The clearance grooves 16 on the lower part of the main body 10 are directly opposite the wire harness clearance opening 182 in the vertical direction. This allows the wire harness connected to the electrical connection part 15 from below to be placed in the wire harness clearance opening 182 and the clearance grooves 16, avoiding compression of the wire harness and causing damage, thus extending the service life of the wire harness. The clearance grooves 16 on the upper part of the main body 10 are relatively long, allowing the wire harness to be placed in them. This ensures the flexibility of the wire harness movement and prevents the wire harness from being compressed and damaged, thus ensuring reliable use.

[0140] In some embodiments, at least one electrical connection 15 is a socket for supplying power to the storage device 100, and the remaining electrical connection 15 are sockets for supplying power or charging other electrical appliances.

[0141] Specifically, the electrical connection side is provided with at least one electrical connection part 15, that is, the electrical connection part 15 can be set to one, two or three, etc., and among all the electrical connection parts 15, at least one electrical connection part 15 can be set as a socket, and the remaining electrical connection parts 15 can be set as sockets. The socket can be used to supply power or charge other electrical appliances, and the socket can be used to supply power to the storage device 100. Thus, while ensuring the normal use of the storage device 100, it can also supply power or charge other electrical appliances through the storage device 100 to meet different usage needs. In actual settings, the electrical connection part 15 can also be set as a USB socket or a contact power supply area, etc., to improve the flexibility of settings.

[0142] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0143] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0144] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a communication connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0145] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0146] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.

Claims

1. An energized device for a storage device, characterized in that, The storage device includes a main body with a mounting hole and a receiving cavity communicating with the mounting hole. The power supply device is located at the mounting hole and includes a first socket and a second socket, which are arranged adjacent to each other at intervals. The first socket is connected to at least a portion of the power-consuming mechanism of the storage device, and a portable power source is adapted to supply power to at least a portion of the power-consuming mechanism through the first socket.

2. The energizing device according to claim 1, characterized in that, The power supply device includes a panel and a first PCB board. The panel is disposed over the mounting hole, and the first PCB board is electrically connected to the first socket and the second socket.

3. The energizing device according to claim 2, characterized in that, The second socket is connected to the electrical mechanism of the storage device, and the electrical mechanism is electrically connected to an external circuit through the second socket.

4. A storage device, characterized in that, The main body includes a back plate, the mounting hole is formed on the back plate and penetrates the back plate in the thickness direction, and the storage device includes a power supply device according to any one of claims 1-3, the power supply device being disposed on the back plate.

5. The storage device according to claim 4, characterized in that, Also includes: A drawer, wherein the drawer is disposed within the receiving cavity, and the drawer can be pulled out from the receiving cavity in a front-to-back direction. The power-consuming mechanism includes: A locking mechanism is electrically connected to one of the first socket and the second socket. The locking mechanism includes a lock body and a latch. The lock body is disposed on one of the main body and the drawer, and the latch is disposed on the other of the main body and the drawer. In the locked state, the lock body and the latch engage. In the unlocked state, the lock body and the latch disengage. A control element, electrically connected to one of the first socket and the second socket, is configured to control the locking mechanism to switch between the unlocked state and the locked state.

6. The storage device according to claim 5, characterized in that, The control component is a fingerprint recognition device.

7. The storage device according to claim 6, characterized in that, The electrical device further includes an integrated speaker, which is located within the receiving cavity and is electrically connected to the second socket. A wireless charging unit is integrated into the integrated speaker, and the wireless charging unit can be electrically connected to one of the first socket and the second socket.

8. The storage device according to claim 5, characterized in that, The power supply mechanism further includes: a first sensor lamp, which is disposed on the lower side wall of the main body facing the receiving cavity.

9. The storage device according to claim 4, characterized in that, The rear side of the main body has an inwardly recessed portion, and the bottom wall of the recess is formed as a mounting area; The storage device also includes a socket assembly, which is located within the mounting area and connected to the bottom wall of the recess.

10. The storage device according to claim 9, characterized in that, The mounting area has a mounting cavity and a mounting port communicating with the mounting cavity. The socket assembly includes a bottom shell disposed within the mounting cavity.

11. The storage device according to claim 10, characterized in that, The bottom shell has a downwardly recessed cavity, and the socket assembly further includes: A base body, wherein the base body is disposed within the cavity and is fixedly connected to the bottom shell; The second PCB board is disposed in the cavity and fixedly connected to the bottom shell. The second PCB board is arranged adjacent to and spaced apart from the base. The upper shell covers the top of the cavity.

12. The storage device according to claim 11, characterized in that, The socket assembly further includes a fixing bracket connected between the bottom shell and the mounting cavity.

13. The storage device according to claim 9, characterized in that, The main body has a receiving cavity, and the storage device further includes an integrated speaker installed in the receiving cavity, and the socket assembly is located on the rear side of the integrated speaker.

14. The storage device according to claim 13, characterized in that, The main body includes a top plate, and a clearance portion is formed on the rear side of the top plate, the clearance portion being adapted to allow wires to pass through.

15. The storage device according to claim 14, characterized in that, A second sensor light is provided around the perimeter of the avoidance section.

16. A storage device, characterized in that, include: The main body has at least one side as an electrical connection side, and the electrical connection side is provided with at least two electrical connection parts; A water-blocking component is connected to the electrical connection side and located above the electrical connection portion to form a shield on the upper part of the electrical connection portion.

17. The storage device according to claim 16, characterized in that, At least a portion of the electrical connection side is recessed into the cabinet to form a recessed groove, and the water-blocking component includes a water-blocking structure connected to the top wall of the recessed groove. The water-blocking structure includes a mounting plate and an inclined water-blocking plate. The mounting plate is connected to the inner top wall of the settling tank, and the top edge of the water-blocking plate is connected to the mounting plate. The water-blocking plate extends vertically downwards, away from the bottom of the settling tank. A portion of the bottom of the settling trough is recessed to form a receiving trough, which is located below the water-blocking structure. The inner bottom wall of the receiving trough is provided with at least one electrical connection part, which is a first power interface.

18. The storage device according to claim 17, characterized in that, The angle between the water baffle and the horizontal plane is set to α, and satisfies: 45°≤α<90°.

19. The storage device according to claim 17, characterized in that, The side of the baffle plate away from the settling trough has a buffer texture, which extends horizontally. Or the direction of the buffer texture extends at an angle to the horizontal direction.

20. The storage device according to claim 17, characterized in that, The electrical connection portion comprises multiple portions, and at least two of the multiple electrical connection portions are spaced apart in the vertical direction. Each electrical connection portion further includes a second power interface disposed at the bottom of the settling tank. The water-blocking component includes a shielding structure located above the second power interface. The shielding structure is also connected to shielding flanges on both sides. The two shielding flanges are located on the left and right sides of the second power interface, respectively. The shielding structure and the shielding flanges work together to form a semi-enclosed structure that partially surrounds the second power interface. The lower opening of the semi-enclosed structure is a wire harness avoidance opening.

Citation Information

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