Wireless charging seat
By designing the data cable as a lanyard and using the internal and external capsule structure and the protruding design of the slot, the problem of easy damage during the carrying process is solved, convenient access and durability are achieved, and the practicality and aesthetics of the wireless charging device are enhanced.
Patent Information
- Application Number
- CN202422398082.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The data cables of traditional wireless charging devices are easily knotted and difficult to separate during carrying, resulting in loss of the wire body and connectors, and the existing storage methods increase user operation complexity and cost.
The data line is designed as a lanyard, and the data line is securely clamped through the inner and outer capsule structure of the connector. Combined with the compact design of the lanyard and the charging base, the data line port position is installed inside the connector to avoid friction and damage, and to achieve convenient access through the innovative design of capsule shape and slot protrusion.
The data cable is used as a lanyard, which reduces redundancy, enhances durability and practicality, avoids damage caused by friction, improves the ornamentality and portability of the product, and simplifies storage operations.
Smart Images

Figure CN223273643U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of charging seats, in particular to a wireless charging seat. Background Art
[0002] With the increasing popularity of smart wearable devices, including smartwatches, their functionality and performance continue to improve, necessitating a revolution in charging methods. Traditional wired charging methods are no longer able to meet users' demands for convenience and efficiency, leading to the emergence of wireless charging technology as a key development direction for smartwatch charging. Currently, most wireless chargers for watches on the market have 1m cables. While some wireless chargers for watches feature a detachable cable holder for easier storage, the cables can still become tangled and difficult to detach when carried in a backpack or pocket, causing wear and tear on the cable and connectors, reducing their lifespan.
[0003] In order to solve this problem, a variety of cable storage products have emerged on the market, such as Velcro, data cable buckles, storage boxes, etc. Although these methods solve the problem of data cables getting tangled and difficult to separate, they also increase the storage process for users, even reduce portability, and increase users' storage time and product usage costs. Summary of the Invention
[0004] To address the aforementioned issues, the present invention provides a wireless charging station that cleverly transforms the data cable into a lanyard. Both ends of the data cable are securely secured within the connector, ensuring stable data transmission while also making the cable itself a practical lanyard. This design not only reduces the redundant components of traditional data cables but also gives them new uses, increasing the product's added value and practicality.
[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is: a wireless charging stand, including a charging stand body, a data cable, and a connector, wherein the two ends of the data cable are detachably mounted inside the connector, and the data cable is wound into a ring structure, and the other end of the connector is mounted on the charging stand body.
[0006] Furthermore, the connecting piece is in the shape of a capsule, including an inner capsule and an outer capsule. The inner capsule is provided with a data terminal slot for placing the two ends of the data cable, wherein the outer capsule is slidably fitted on the outer side of the inner capsule, and the outer capsule moves axially along the inner capsule to cover or open the data terminal slot.
[0007] Furthermore, a circle of locking grooves is provided on the outer side surface of the inner capsule, and a circle of locking protrusions is provided on the inner wall of the outer capsule. The outer capsule moves along the axial direction of the inner capsule and is locked in the locking grooves by the locking protrusions to achieve assembly.
[0008] Furthermore, a rope connecting portion is provided at the end of the inner capsule, the rope connecting portion is provided with a first wire outlet hole, and the charging seat body is provided with a corresponding second wire outlet hole, and the two are assembled by passing the hanging rope through the first wire outlet hole and the second wire outlet hole.
[0009] Furthermore, the data terminal slot includes a wire slot for clamping the data cable and a connector slot for clamping the data cable connector, wherein the width of the connector slot is greater than the width of the wire slot.
[0010] Furthermore, the charging station body includes a charging station shell and a charging control board built into the charging station shell, and a wireless coil electrically connected to the charging control board is provided on the surface of the charging station shell, and a charging connector electrically connected to the charging control board is provided on one side of the charging station shell.
[0011] Furthermore, a connector notch is provided on the outer shell of the charging base, and a CF / AM adapter is provided in the connector notch.
[0012] Furthermore, the connector gap is located at the corner of the charging base shell, and a clearance groove is provided on the outside of the connector gap to facilitate the removal of the CF / AM adapter. An extension is provided at the end of the CF / AM adapter, and the projection of the extension falls on the clearance groove.
[0013] The beneficial effects of this utility model lie in the fact that the data cable is cleverly transformed into a lanyard, with both ends securely secured within the connector. This not only ensures stable data transmission but also makes the cable itself a practical lanyard. This design not only reduces the redundant components of traditional data cables but also gives them new uses, increasing the product's added value and practicality. Furthermore, by locating the data cable port within the connector, the utility model effectively avoids peeling at the connection between the cable and the connector due to external friction. This design greatly enhances the durability of the data cable and connector, reducing damage caused by frequent plugging and unplugging or accidental collisions, thereby significantly extending the product's service life. Furthermore, the ingenious connection between the connector and the charging station allows the entire device to form a compact, aesthetically pleasing pendant. This design not only makes it easy for users to carry but also allows the device to be worn as a fashionable accessory when not in use, enhancing the product's aesthetics and practicality. Users no longer need to worry about storing their charging device; they can simply hang it from a bag or keychain for immediate access. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural diagram of a wireless charging stand.
[0015] Figure 2 This is a schematic diagram of the structure of the wireless charging station after omitting the CF / AM adapter.
[0016] Figure 3 This is a structural diagram of the wireless charging stand from another perspective.
[0017] Figure 4 This is a picture of the data cable and connector after assembly.
[0018] Figure 5 This is the schematic diagram of the assembly of data cables and connectors.
[0019] Figure 6 It is a schematic diagram of the structure of the inner capsule.
[0020] Explanation of the accompanying numbers: 1. Charging base body; 12. Make way groove; 13. Connector notch; 14. Charging connector; 2. Connector; 21. Outer capsule; 211. Positioning protrusion; 22. Inner capsule; 220. Data terminal slot; 221. Connector slot; 222. Wire slot; 223. Rope connection part; 224. Card slot; 3. Data cable; 4. CF / AM adapter; 41. Extension part; 5. Hanging rope. DETAILED DESCRIPTION
[0021] See also Figure 1-6 As shown, the utility model relates to a wireless charging stand, comprising a charging stand body 1, a data cable 3, and a connector 2, wherein both ends of the data cable 3 are detachably mounted inside the connector 2, and the data cable 3 is wound into a ring structure, and the other end of the connector 2 is mounted on the charging stand body 1.
[0022] In this solution, the data cable 3 is cleverly transformed into a lanyard 5. Both ends of the data cable 3 are securely secured within the connector 2, ensuring stable data transmission and transforming the data cable 3 into a practical lanyard 5. This design not only reduces the redundant components of traditional data cables 3 but also provides them with new uses, increasing the product's added value and practicality. Furthermore, by locating the port of the data cable 3 within the connector 2, the present invention effectively prevents peeling at the connection between the cable and the connector due to external friction. This design significantly enhances the durability of the data cable 3 and the connector, reducing damage from frequent plugging and unplugging or accidental collisions, thereby significantly extending the product's lifespan. Furthermore, the ingenious connection between the connector 2 and the charging station body 1 allows the entire device to form a compact, aesthetically pleasing pendant. This design not only makes it easier for users to carry, but also allows the device to be worn as a fashionable accessory when not in use, enhancing the product's aesthetics and practicality. Users no longer need to worry about storing their charging device; they can simply hang it from a bag or keychain for immediate access.
[0023] Specifically, the connecting part 2 is in the shape of a capsule, which includes an inner capsule 22 and an outer capsule 21, wherein the inner capsule 22 is provided with a data terminal card slot 220 for placing the two ends of the data cable 3, wherein the outer capsule 21 is slidably fitted on the outer side surface of the inner capsule 22, and the outer capsule 21 moves axially along the inner capsule 22 to cover or open the data terminal card slot 220.
[0024] Its beneficial effect lies in: the connector 2 adopts an innovative capsule-shaped design, consisting of an inner capsule 22 and an outer capsule 21. This design is not only stylish and compact, but also fully utilizes the internal space, providing a perfect solution for storing the data cable 3. The inner capsule 22 is carefully designed with a data terminal slot 220 for securely placing the connectors at both ends of the data cable 3. This design ensures that the data cable 3 is firmly fixed inside the connector 2 when not in use, avoiding damage or loss due to arbitrary placement. The outer capsule 21 is cleverly slidably mounted on the outer side of the inner capsule 22. The user only needs to gently push the outer capsule 21 to move it along the axial direction of the inner capsule 22. This design makes covering or opening the data terminal slot 220 extremely simple and quick, allowing users to easily access the data cable 3 without complex operations. Moreover, when the outer capsule 21 covers the data terminal slot 220, it effectively protects the connection between the data cable 3 and the connector from interference and damage from the external environment. This protective mechanism not only reduces peeling caused by friction, collisions, and other factors, but also extends the lifespan of the data cable 3 and connector. The compact, capsule-like design of the connector 2, along with its lightweight and robust structure, makes it extremely portable. Whether hanging it on a bag, a keychain, or simply slipping it into a pocket, it poses no additional burden to the user.
[0025] Specifically, the outer side surface of the inner capsule 22 is provided with a circle of locking grooves 224, and the inner wall of the outer capsule 21 is provided with a circle of locking protrusions 211. The outer capsule 21 moves along the axial direction of the inner capsule 22 and is locked in the locking grooves 224 by the locking protrusions 211 to achieve assembly.
[0026] A circle of latching grooves 224 are provided on the outer side surface of the inner capsule 22, and a circle of latching protrusions 211 are correspondingly provided on the inner wall of the outer capsule 21. This combination of latching grooves and protrusions ensures that the outer capsule 21 can be accurately positioned and firmly latched in the designated position when it moves axially along the inner capsule 22. When the outer capsule 21 moves along the axial direction of the inner capsule 22, the latching protrusions 211 on its inner wall will gradually cooperate with the latching grooves 224 on the outer side surface of the inner capsule 22. Once the latching protrusions 211 are fully latched into the latching grooves 224, a stable assembly structure is formed between the inner and outer capsules 21. This design not only enhances the stability of the connection, but also avoids the problem of loosening or falling off due to external forces.
[0027] When the user needs to take out or put in the data cable 3, he or she only needs to push the outer capsule 21 to move it along the axial direction of the inner capsule 22, and through the separation and matching of the locking protrusion 211 and the locking groove 224, the inner and outer capsules 21 can be conveniently disassembled and installed. This design greatly simplifies the user's operating process and improves the convenience of use. Through the stable fitting design of the slot and the protrusion, the connection between the inner and outer capsules 21 is tighter and more reliable. This structure not only reduces the risk of damage caused by loosening or falling off, but also enhances the durability of the entire connector 2. After long-term use, users do not need to worry about performance degradation or malfunctions caused by fitting problems.
[0028] Specifically, the end of the inner capsule 22 is also provided with a rope connecting part 223, the rope connecting part 223 is provided with a first wire outlet hole, and the charging seat body 1 is provided with a corresponding second wire outlet hole, and the hanging rope 5 is passed through the first wire outlet hole and the second wire outlet hole to achieve the assembly of the two.
[0029] In actual operation, the user needs to pass one end of the lanyard 5 through the first wire outlet hole on the rope body connecting part 223 of the inner capsule 22, and then guide it to the second wire outlet hole of the charging base body 1 and pass it through the hole. Finally, fix or tie the other end of the lanyard 5 to ensure a firm connection between the inner capsule 22 and the charging base body 1. Through this connection method of the lanyard 5, the connection between the inner capsule 22 and the charging base body 1 becomes more stable and reliable. Even if there is a bump or shake during movement or carrying, it can effectively prevent the connector 2 from accidentally falling off or loosening. At the same time, this connection method of the lanyard 5 is also convenient for users to disassemble and maintain when needed. Simply untie the fixed or knotted part of the lanyard 5 to easily remove the inner capsule 22 from the charging base body 1 for cleaning, inspection or replacement of the data cable 3.
[0030] Specifically, the data terminal slot 220 includes a wire slot 222 for securing the data wire 3 and a connector slot 221 for securing the connector of the data wire 3 , wherein the width of the connector slot 221 is greater than the width of the wire slot 222 .
[0031] The cable slot 222 is specifically designed for the main body of the data cable 3. Its width and depth are precisely calculated to ensure that the data cable 3 can be securely secured therein. This design prevents the data cable 3 from accidentally slipping while moving or carrying, while also ensuring good contact during charging.
[0032] Connector slot 221 Adjacent to the wire slot 222 is the connector slot 221, which is designed to be wider than the wire slot 222. This is because the connector portion of the data cable 3 is usually wider than the cable body, and therefore requires a larger space to accommodate it. This design ensures that the connector of the data cable 3 can be completely inserted into the slot without being squeezed or damaged. Once the data cable 3 and its connector are inserted into the slot, they will be firmly fixed. This stable locking effect not only prevents the data cable 3 from shaking or falling off during charging, but also ensures the stability and safety of the charging process.
[0033] Specifically, the charging station body 1 includes a charging station shell and a charging control board built into the charging station shell, and a wireless coil electrically connected to the charging control board is provided on the surface of the charging station shell, and a charging connector 14 electrically connected to the charging control board is provided on one side of the charging station shell.
[0034] When the user connects the charging cradle to an external power source via charging connector 14, power is supplied to the charging cradle body 1. When the user places a smartwatch on the charging cradle body 1, the receiving coil inside the smartwatch inductively couples with the wireless coil on the surface of the charging cradle housing, enabling wireless charging. Throughout this process, the charging control board monitors and regulates wireless charging parameters such as power and current to ensure safety and stability.
[0035] Specifically, a connector notch 13 is provided on the outer shell of the charging base, and a CF / AM adapter 4 is provided in the notch.
[0036] A connector notch 13 is designed on the outer shell of the charging stand. The main purpose of this notch is to facilitate users to connect or unplug specific connectors 2 or adapters, thereby improving the convenience of use. A CF / AM adapter 4 is set in the connector notch 13. The CF / AM adapter 4 can convert different types of charging interfaces, so that the charging stand can be compatible with more types of smart watches or other electronic devices. The setting of the connector notch 13 and the CF / AM adapter 4 greatly improves the user's charging experience. Users no longer need to find different chargers or charging cables for different devices. Only one charging stand and the CF / AM adapter 4 are needed to meet the charging needs of multiple devices. In addition, this design also reduces the trouble of users carrying multiple chargers, making travel more convenient and efficient.
[0037] Specifically, the connector notch 13 is located at the corner of the charging base shell, and a clearance groove 12 is provided on the outside of the connector notch 13 to facilitate the removal of the CF / AM adapter 4. In addition, an extension portion 41 is provided at the end of the CF / AM adapter 4, and the projection of the extension portion 41 falls on the clearance groove 12.
[0038] The connector notch 13 is cleverly set at the corner of the charging stand housing. This design not only saves space, but also avoids interference with other operations during daily use. The corner position can also ensure the stability of the CF / AM adapter 4 on the charging stand. On the outside of the connector notch 13, there is a clearance groove 12. The main function of this groove is to provide a space that is easy for fingers or nails to enter, so that users can easily pick out or insert the CF / AM adapter 4. The design of the clearance groove 12 fully considers the principles of ergonomics, so that the user's fingers or nails can be naturally placed in the groove during operation, reducing the difficulty of operation and improving the convenience of use.
[0039] An extension 41 is specially provided at the end of the CF / AM adapter 4. This extension 41 not only increases the overall length of the adapter, but also enables its projection to fall precisely on the clearance groove 12. The presence of the extension 41 further facilitates the user's operation. When the user needs to take out the CF / AM adapter 4, the extension 41 can be used as a force point to easily pull it out with the help of fingers or nails. This design greatly reduces the risk of damage to the adapter due to improper operation. The synergistic effect of the connector notch 13, the clearance groove 12 and the extension 41 of the CF / AM adapter 4 jointly enhances the user's charging experience. The user does not need to struggle to find the right tools or position to operate the adapter, and can complete the plugging and unplugging operations with simple finger movements.
[0040] The above embodiments are merely descriptions of preferred embodiments of the present invention and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary engineering technicians in this field should fall within the scope of protection determined by the claims of the present invention.
Claims
1. A wireless charging stand, characterized by: It includes a charging base body, a data cable, and a connector, wherein both ends of the data cable are detachably mounted inside the connector, and the data cable is wound into a ring structure, and the other end of the connector is mounted on the charging base body.
2. The wireless charging stand according to claim 1, characterized in that: The connecting piece is in the shape of a capsule, including an inner capsule and an outer capsule. The inner capsule is provided with a data terminal slot for placing the two ends of the data cable. The outer capsule is slidably fitted on the outer side of the inner capsule, and the outer capsule moves axially along the inner capsule to cover or open the data terminal slot.
3. The wireless charging stand according to claim 2, characterized in that: The outer side surface of the inner capsule is provided with a circle of clamping grooves, and the inner wall of the outer capsule is provided with a circle of clamping protrusions. The outer capsule moves along the axial direction of the inner capsule and is clamped in the clamping grooves by the clamping protrusions to achieve assembly.
4. The wireless charging stand according to claim 3, characterized in that: The end of the inner capsule is also provided with a rope connecting part, which is provided with a first wire outlet hole, and the charging seat body is provided with a corresponding second wire outlet hole. The two are assembled by passing the hanging rope through the first wire outlet hole and the second wire outlet hole.
5. The wireless charging stand according to claim 3, characterized in that: The data terminal slot includes a wire slot for clamping the data cable and a connector slot for clamping the data cable connector, wherein the width of the connector slot is greater than the width of the wire slot.
6. The wireless charging stand according to claim 1, characterized in that: The charging station body includes a charging station shell and a charging control board built into the charging station shell. A wireless coil electrically connected to the charging control board is provided on the surface of the charging station shell, and a charging connector electrically connected to the charging control board is provided on one side of the charging station shell.
7. The wireless charging stand according to claim 6, characterized in that: The charging base shell is also provided with a connector notch, in which a CF / AM adapter is provided.
8. The wireless charging stand according to claim 7, characterized in that: The connector gap is located at the corner of the charging base shell, and a clearance groove is provided on the outside of the connector gap to facilitate the removal of the CF / AM adapter. An extension is provided at the end of the CF / AM adapter, and the projection of the extension falls on the clearance groove.