A table charging station
The desktop charging station, with its modular design and component limiting structure, solves the problems of easy scratching of the casing, messy data cables, and poor fast charging compatibility. It enables quick installation, convenient maintenance, and intelligent charging status monitoring, thus improving the user experience.
Patent Information
- Application Number
- CN202522018216.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-19
AI Technical Summary
Existing desktop charging devices suffer from issues such as easily scratched casings, messy data cables, weak output capabilities, and poor fast charging compatibility, and they cannot monitor charging status in real time.
The modular desktop charging station includes a cover and a base. The cover connects to the base for quick assembly. Combined with a pull-out guide structure, magnetic fixation, digital display, and a light-transmitting cover, it enables orderly management of data cables and real-time monitoring of charging status.
It improves the assembly efficiency and stability of charging devices, enables convenient management of data cables and real-time monitoring of charging status, and enhances user experience and product intelligence.
Smart Images

Figure CN224683465U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of socket technology, and in particular to a desktop charging station. Background Technology
[0002] Existing desktop charging devices are widely used in office and home settings due to their drill-free design and quick mounting to the edge of a desk. However, as users' demands for desktop aesthetics, power efficiency, and user experience continue to increase, existing products have revealed the following common defects: the casings are generally made of ordinary matte finish, with low surface hardness, making them prone to scratches after daily rubbing and impact, thus compromising the overall texture; the data cables are messy, making it inconvenient to power mobile devices; the output capacity is weak and fast charging compatibility is poor, with insufficient total power, unable to trigger mainstream fast charging protocols such as PD and PPS, requiring users to carry bulky gallium nitride adapters, which actually takes up more desktop space and defeats the original intention of a clean desktop.
[0003] For example, Chinese patent CN208284704U discloses a table-clamping socket, including a socket body, a shell disposed outside the socket body, and a table-clamping assembly disposed on the shell. The socket body includes a housing and an interface module disposed within the housing. The housing includes a frame and a cover fixedly connected to each other. The interface module is mounted on the frame, and the cover has a socket hole adapted to the interface module. Although this utility model installs the interface module in the housing to form the socket body, and then assembles the assembled socket body with the shell, there are no gaps between the interface modules, improving the product's appearance quality. However, it has requirements for the thickness range of the compatible tabletop. Users cannot know the USB port output power and total load status in real time, making it difficult to determine whether the device is fast charging or to detect overload risks in advance. Utility Model Content
[0004] To address the problems described in the background art, this utility model proposes a tabletop charging station, which realizes diversified installation methods for tabletop charging devices, such as sticking or clamping to the table, making it suitable for different scenarios. In terms of saving desktop space, it solves the problem of messy data cables during the power supply of electrical appliances, and through intelligent digital display, it visualizes the output power, allowing users to quickly understand the power status of the charging device.
[0005] To achieve the above objectives, this utility model adopts the following technical solution: a tabletop charging station, comprising a cover and a base connected to the cover. The cover has a power-collecting surface and a structural surface. The structural surface has a pull-out module limiting structure, which is connected to a pull-out guide structure. The base has a charging station mounting end and a cover connecting end, and the cover connecting end has a cover connecting structure. Through modular design, the tabletop charging station is divided into two main parts: the cover and the base. The cover connecting structure enables rapid assembly of the cover and the base, improving production efficiency and reducing product costs. The cooperation between the structural surface of the cover and the base improves the overall stability of the product and provides a basic framework for subsequent personalized design and functional expansion.
[0006] Preferably, the cover connection structure includes several cover buckles and several base limiting grooves. The cover buckles are located on the structural surface, and the base limiting grooves are located at the cover connection end. By using the cover buckles in conjunction with the base limiting grooves to replace the threaded connection, the product can be quickly installed, ensuring that there is no risk of damage to the appearance.
[0007] Preferably, the power receiving surface is provided with a plurality of sockets, and the structural surface is provided with an inner core component limiting structure and a low-voltage component limiting structure. The inner core component limiting structure and the low-voltage component limiting structure are adapted to the plurality of sockets. By setting the inner core component limiting structure and the low-voltage component limiting structure, the process of secondary board alignment at the work station is eliminated during the assembly process, thereby reducing the difficulty of production assembly.
[0008] Preferably, the pull-out guide structure has a pull-out cable outlet and a finger groove structure. The pull-out guide structure has several limiting holes around its periphery. The pull-out module limiting structure has mounting buckles that are adapted to the limiting holes. The design of the pull-out guide structure makes the extension and retraction of the data cable smoother. The data cable can extend and retract from the pull-out cable outlet, avoiding cable tangling. The finger groove structure provides convenient cable pulling operation. The cooperation of the limiting holes and mounting buckles achieves a stable connection between the pull-out guide structure and the cover.
[0009] Preferably, the base has an arc, the base is connected to the power cord sleeve, the charging station mounting end has a fixed surface, and the fixed surface and the power receiving surface have an angle α. The arc design of the base improves the stability of the product. The angle α between the fixed surface and the power receiving surface is between 30 degrees and 60 degrees. This design conforms to the ergonomic principle, makes it convenient for users to plug and unplug electrical appliances, and improves the comfort of use.
[0010] Preferably, the base is connected to a partition, which connects the inner core component and the low-voltage component. The low-voltage component is equipped with a telescopic structure and a digital display device. The partition enhances the support stability of the cover, improves structural performance, and enables the positioning and installation of the inner core component and the low-voltage component. The telescopic structure is equipped with a retractable data cable. The telescopic structure makes the charging method of this invention more flexible and convenient, and the digital display device allows users to understand the charging status in real time, improving the intelligence level of the product and the user experience.
[0011] Preferably, the charging station mounting end is connected to a clamping structure, the clamping structure is provided with an adjustment handle and a clamping structure limiting hole, the charging station mounting end is provided with a clamping structure mounting port, the clamping structure can adjust the clamping thickness by adjusting the handle, and the clamping structure limiting hole allows the clamping structure and the base to be installed in a limited position inside the base, realizing non-destructive quick installation and quick disassembly.
[0012] Preferably, the base is provided with reinforcing ribs, which are located on one side of the charging station installation end. The reinforcing ribs are connected to the buffer structure. The design of the reinforcing ribs enhances the structural strength of the base and, together with the buffer structure, effectively protects the impact resistance of this utility model.
[0013] Preferably, the finger groove structure has a magnetic mounting cavity on one side. By setting the magnetic mounting cavity to house a magnet, the metal end of the data cable can be magnetically fixed. When the data cable is retracted, the metal end can be returned to its original position with one click.
[0014] Preferably, the cover is made of a light-transmitting material and is connected to a switch assembly. This design allows users to intuitively understand the charging status and power of the charging station.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows.
[0016] 1. This utility model improves the assembly efficiency and overall stability of the tabletop charging station through modular design and optimized connection structure, while realizing rapid installation and convenient maintenance of the product, thus enhancing the user experience.
[0017] 2. This utility model, through its component limiting structure, not only improves the safety and reliability of electrical connections, but also meets the diverse power supply needs of users. The design of the insertion and removal angle enhances the convenience of using this product.
[0018] 3. This utility model combines magnetic absorption, digital display and light-transmitting cover design to achieve orderly management of data cables, real-time monitoring of charging status and aesthetic display of products, significantly improving the intelligence level and user experience of desktop charging devices, and meeting the needs of modern users for desktop aesthetics and efficient power use. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of Embodiment 1 of the present utility model.
[0020] Figure 2 This is an installation diagram of Embodiment 1 of the present utility model.
[0021] Figure 3 This is a rear view of Embodiment 1 of the present utility model.
[0022] Figure 4 This is a schematic diagram of Embodiment 2 of the present invention.
[0023] Figure 5 This is a schematic diagram of Embodiment 3 of the present invention.
[0024] Figure 6 This is an exploded view of Embodiment 3 of this utility model.
[0025] Figure 7 This is a schematic diagram of the faceplate of this utility model.
[0026] Figure 8 This is a schematic diagram of the limiting structure of the pull-out module of this utility model.
[0027] Figure 9 This is a cross-sectional view of the limiting structure of the pull-out module of this utility model.
[0028] Diagram Description: 1. Face cover; 2. Base; 3. Power supply surface; 4. Structural surface; 5. Face cover buckle; 6. Pull-out module limiting structure; 7. Charging station mounting end; 8. Face cover connecting end; 9. Pull-out guide structure; 10. Base limiting groove; 11. Clamping structure; 12. Adjustment handle; 13. Partition; 14. Clamping structure limiting hole; 1.1. Switch assembly; 2.1. Power cord sleeve; 2.2. Reinforcing rib; 2.3. Buffer structure; 3.1. Socket; 4.1. Inner core assembly limiting structure; 4.2. Low-voltage component limiting structure; 7.1. Fixing surface; 7.2. Clamping structure mounting port; 8.1. Face cover connecting structure; 9.1. Pull-out cable port; 9.2. Finger groove structure; 9.3. Magnetic mounting cavity; 9.4. Mounting buckle; 9.5. Inner core assembly; 13.1. Low-voltage component; 13.2. Telescopic structure; 13.3. Digital display device; 13.4. Detailed Implementation
[0029] To more clearly reveal the purpose, technical solution, and advantages of this disclosure, the embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. The scale and dimensions in the drawings do not limit the essential technical solution of this utility model. The embodiments described in this detail are merely examples and do not limit the scope of this utility model.
[0030] Example 1.
[0031] See Figures 1 to 3As shown, a tabletop charging station includes a cover 1 and a base 2 connected to the cover 1. The cover 1 has a power-receiving surface 3 and a structural surface 4. The structural surface 4 has a pull-out module limiting structure 6, which is connected to a pull-out guide structure 9. The base 2 has a charging station mounting end 7 and a cover connecting end 8. The cover connecting end 8 has a cover connecting structure 8.1. Through modular design, this utility model is divided into two main parts: the cover 1 and the base 2. The cover connecting structure 8.1 enables rapid assembly of the cover 1 and the base 2, improving production efficiency and reducing product costs. The power-receiving surface 3 is responsible for the user's power supply; the structural surface 4 cooperates with the base 2 for installation and connection, improving the overall stability of the product. This design provides a basic framework for subsequent personalized design and functional expansion.
[0032] In this embodiment, as Figure 8 and Figure 9 As shown, the pull-out guide structure 9 has a pull-out cable outlet 9.1 and a finger groove structure 9.3. Four limiting ports 9.2 are provided around the periphery of the pull-out guide structure 9. In this embodiment, the pull-out guide structure 9 is rectangular, and the four limiting ports 9.2 are symmetrically distributed around its periphery. The pull-out module limiting structure 6 has mounting buckles 9.5 that are adapted to the limiting ports 9.2. During installation, the pull-out guide structure 9 and the pull-out module limiting structure 6 can be easily pressed and installed according to the direction of the limiting ports 9.2. The design of the pull-out guide structure 9 makes the extension and retraction of the data cable smoother. The data cable extends and retracts from the pull-out cable outlet 9.1, avoiding tangling. The finger groove structure 9.3 provides convenient cable pulling operation, allowing users to pull out the data cable with one hand. The cooperation of the limiting ports 9.2 and the mounting buckles 9.5 achieves a stable connection between the pull-out guide structure 9 and the cover 1. The finger groove structure 9.3 is provided on one side of the data cable and has a magnetic mounting cavity 9.4. The magnetic mounting cavity 9.4 is used to house the magnet. In this embodiment, the magnet and the pull-out guide structure 9 are injection molded to ensure that the magnet and the structure 9 are tightly combined, enhance the magnetic attraction, and realize the magnetic fixation of the metal end of the data cable. When the data cable is retracted, the metal end can be returned to its original position with one click.
[0033] Example 2.
[0034] See Figure 4As shown, a tabletop charging station includes a cover 1 and a base 2 connected to the cover 1. The cover 1 has a power-receiving surface 3 and a structural surface 4. The structural surface 4 has a pull-out module limiting structure 6, which is connected to a pull-out guide structure 9. The base 2 has a charging station mounting end 7 and a cover connecting end 8, which has a cover connecting structure 8.1. The base 2 has an arc, and a power cord sleeve 2.1 is connected to the base 2. The charging station mounting end 7 has a fixing surface 7.1, and the fixing surface 7.1 and the power-receiving surface 3 are at an angle α. The arc design of the base 2 improves the stability of the product. The angle α between the fixing surface 7.1 and the power-receiving surface 3 is between 30 degrees and 60 degrees. In this embodiment, the angle α is 52 degrees. This design conforms to ergonomic principles, making it convenient for users to plug and unplug electrical appliances and improving the comfort of use. The charging station mounting end 7 is connected to a clamping structure 11. The clamping structure 11 is equipped with an adjustment handle 12 and a clamping structure limiting hole 14. The charging station mounting end 7 is also equipped with a clamping structure mounting opening 7.2. The clamping structure 11 achieves thickness-adaptive locking through the adjustment handle 12, allowing it to be installed on tabletops with a thickness of 5mm to 45mm. The clamping structure limiting hole 14 enables the clamping structure 11 and the base 2 to be installed within the base 2, achieving non-destructive quick installation and disassembly. The base 2 is equipped with a reinforcing rib 2.2, which is located on one side of the charging station mounting end 7. The reinforcing rib 2.2 is connected to a buffer structure 2.3. In this embodiment, the buffer structure 2.3 is a foam adhesive pad. The design of the reinforcing rib 2.2 enhances the structural strength of the base 2, and the foam adhesive pad improves the impact resistance of this invention.
[0035] Example 3.
[0036] See Figures 5 to 9 As shown, a tabletop charging station includes a cover 1 and a base 2 connected to the cover 1. The cover 1 has a power-collecting surface 3 and a structural surface 4. The structural surface 4 has a pull-out module limiting structure 6, which is connected to a pull-out guide structure 9. The base 2 has a charging station mounting end 7 and a cover connecting end 8. The cover connecting end 8 has a cover connecting structure 8.1. Through modular design, this utility model achieves rapid assembly of the cover 1 and the base 2, which is beneficial to improving production efficiency and reducing costs. The power-collecting surface 3 is used for users to plug in electrical equipment, and the structural surface 4 provides support and cooperates with the base 2 for installation, enhancing overall stability and providing a basis for personalized function expansion.
[0037] In this embodiment of the present invention, the faceplate connection structure 8.1 includes a faceplate buckle 5 and a base limiting groove 10. The faceplate buckle 5 is located on the structural surface 4, and the base limiting groove 10 is located on the faceplate connection end 8. The present invention completely replaces the threaded connection by using the faceplate buckle 5 in conjunction with the base limiting groove 10, thereby achieving quick product installation and ensuring no risk of damage to the appearance. Figure 7As shown, the cover clips 5 are symmetrically arranged on both sides of the structural surface 4. The cover clips 5 at both ends are at an angle to the edge where they are located. This design ensures the sealing of the cover 1.
[0038] like Figure 6 and Figure 7 As shown, the power receiving surface 3 is provided with three sockets 3.1, and the structural surface 4 is provided with an inner core component limiting structure 4.1 and a low-voltage component limiting structure 4.2. The inner core component limiting structure 4.1 and the low-voltage component limiting structure 4.2 are adapted to several sockets 3.1. By setting the inner core component limiting structure 4.1 and the low-voltage component limiting structure 4.2, the process of secondary board alignment at the workstation is eliminated during the assembly process, reducing the difficulty of production assembly.
[0039] The pull-out guide structure 9 has a pull-out cable outlet 9.1 and a finger groove structure 9.3. Several limiting ports 9.2 are provided around the pull-out guide structure 9. The pull-out module limiting structure 6 has mounting buckles 9.5 that fit the limiting ports 9.2. The design of the pull-out guide structure 9 makes the extension and retraction of the data cable smoother. The data cable extends and retracts from the pull-out cable outlet 9.1, avoiding cable tangling. The finger groove structure 9.3 provides convenient cable pulling. The cooperation of the limiting ports 9.2 and mounting buckles 9.5 ensures a stable connection between the pull-out guide structure 9 and the cover 1. A magnetic mounting cavity 9.4 is provided on one side of the finger groove structure 9.3. By setting up a magnetic mounting cavity 9.4 to house a magnet, the metal end of the data cable is magnetically fixed, allowing the metal end to return to its original position with one click when the data cable is retracted.
[0040] The base 2 has an arc, and the base 2 is connected to the power cord sleeve 2.1. The charging station mounting end 7 has a fixed surface 7.1. The fixed surface 7.1 and the power receiving surface 3 have an angle α. The arc design of the base 2 improves the stability of the product. The angle α between the fixed surface 7.1 and the power receiving surface 3 is between 30 degrees and 60 degrees. This design conforms to the ergonomic principle, making it convenient for users to plug and unplug electrical appliances and improving the comfort of use. The cover 1 is made of a translucent material and is connected to the switch assembly 1.1. The base 2 is connected to the partition 13, which connects the inner core assembly 13.1 and the low-voltage component 13.2. The low-voltage component 13.2 has a telescopic structure 13.3 and a digital display device 13.4. The partition 13 enhances the support stability of the cover 1, improves structural performance, and enables the positioning and installation of the inner core assembly 13.1 and the low-voltage component 13.2. The telescopic structure 13.3 has a retractable data cable. The telescopic structure 13.3 makes the charging method of this invention more flexible and convenient. The digital display device 13.4, together with the transparent cover 1, allows users to understand the charging status in real time, improving the intelligence level of the product and the user experience. The base 2 has a reinforcing rib 2.2, which is located on one side of the charging station installation end 7. The reinforcing rib 2.2 is connected to the buffer structure 2.3. In this embodiment, when the table thickness cannot be accommodated by the clamping structure 11, this invention can be used by using an adhesive connection method. In this case, the reinforcing rib 2.2 provides a positioning reference for the adhesive.
[0041] The charging station mounting end 7 is connected to the clamping structure 11. The clamping structure 11 is provided with an adjustment handle 12 and a clamping structure limiting hole 14. The charging station mounting end 7 is provided with a clamping structure mounting port 7.2. The clamping structure 11 achieves thickness adaptive locking through the adjustment handle 12, which is compatible with tabletops from 5mm to 45mm. The clamping structure limiting hole 14 enables the clamping structure 11 and the base 2 to be installed in a limited position inside the base 2, achieving non-destructive quick installation and quick disassembly.
[0042] This utility model is not limited to the above embodiments. Any changes in shape or material made using the structural design provided by this utility model are considered variations of this utility model and are equally protected by this utility model. The use of terminology is only for describing specific embodiments and does not limit the exemplary embodiments according to this application. Within the scope of protection, all changes based on the structural design of this utility model should also be included.
Claims
1. A desktop charging station, characterized in that, It includes a face cover (1) and a base (2) connected to the face cover (1), the face cover (1) having a power-collecting surface (3) and a structural surface (4); The structural surface (4) is provided with a pull-out module limiting structure (6), and the pull-out module limiting structure (6) is connected to the pull-out guide structure (9). The base (2) is provided with a charging station installation end (7) and a cover connection end (8), and the cover connection end (8) is provided with a cover connection structure (8.1).
2. The desktop charging station according to claim 1, characterized in that, The faceplate connection structure (8.1) includes several faceplate buckles (5) and several base limiting grooves (10). The faceplate buckles (5) are located on the structural surface (4), and the base limiting grooves (10) are located on the faceplate connection end (8).
3. The desktop charging station according to claim 1, characterized in that, The power-collecting surface (3) is provided with a plurality of sockets (3.1), and the structural surface (4) is provided with an inner core component limiting structure (4.1) and a weak current component limiting structure (4.2). The inner core component limiting structure (4.1) and the weak current component limiting structure (4.2) are adapted to the plurality of sockets (3.1).
4. A desktop charging station according to claim 1, characterized in that, The pull-out guide structure (9) is provided with a pull-out cable outlet (9.1) and a finger groove structure (9.3). The pull-out guide structure (9) is provided with several limiting ports (9.2) around its periphery. The pull-out module limiting structure (6) is provided with mounting buckles (9.5) that are adapted to the limiting ports (9.2).
5. A desktop charging station according to claim 1, characterized in that, The base (2) has an arc, the base (2) is connected to the power cord sleeve (2.1), the charging station installation end (7) has a fixed surface (7.1), and the fixed surface (7.1) and the power taking surface (3) have an angle α.
6. A desktop charging station according to claim 1, characterized in that, The base (2) is connected to the partition (13), the partition is connected to the inner core assembly (13.1) and the low-voltage assembly (13.2), and the low-voltage assembly (13.2) is provided with a telescopic structure (13.3) and a digital display device (13.4).
7. A desktop charging station according to claim 5, characterized in that, The charging station mounting end (7) is connected to the clamping structure (11), the clamping structure (11) is provided with an adjustment handle (12) and a clamping structure limiting hole (14), and the charging station mounting end (7) is provided with a clamping structure mounting port (7.2).
8. A desktop charging station according to claim 1, 5, or 7, characterized in that, The base (2) is provided with a reinforcing rib (2.2), which is located on one side of the charging station installation end (7) and is connected to the buffer structure (2.3).
9. A desktop charging station according to claim 4, characterized in that, The finger groove structure (9.3) has a magnetic mounting cavity (9.4) on one side.
10. A desktop charging station according to claim 1, characterized in that, The cover (1) is made of a light-transmitting material, and the cover (1) is connected to the switch assembly (1.1).
Citation Information
Patent Citations
Press from both sides table socket
CN208284704U