Data line
By designing data cables connected to multiple specifications and adapters, the problem of poor universality of Type-C data cables is solved, and flexible switching between short- and long-distance connections is achieved, improving the convenience and universality of use.
Patent Information
- Application Number
- CN202421881252.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-05
AI Technical Summary
The existing Type-C data cables are poorly universal and have low convenience in use, which cannot meet the charging and data transmission needs in different scenarios.
A data line is designed, including an input end, an output end and a conductor. The input end includes a first outer shell, a Type-C socket and a plug. The output end has a variety of plugs. Multiple line segments are connected through adapters to achieve flexible switching between short-distance and long-distance connections.
It improves the universality and convenience of data cables. Users can quickly change the plugs according to their needs without carrying multiple data cables, which simplifies the charging and data transmission process and reduces user burden.
Smart Images

Figure CN223093263U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of data cables, and particularly to data cables. Background Art
[0002] With the rapid development of technology, especially the popularization of mobile devices and portable electronic products, the Type-C interface has quickly become the mainstream interface standard in the market with its high-speed data transmission, high-power charging, and the convenience of being pluggable in both directions. This transformation not only promotes the unification of interfaces for electronic devices but also greatly improves the user experience. However, with the wide application of the Type-C interface, users' charging and data transmission requirements in different scenarios are becoming increasingly diverse, and traditional Type-C data cables with a single length and function are difficult to meet all usage situations.
[0003] Currently, the common Type-C data cables on the market are mainly divided into two categories: one is a short data cable designed for portability, suitable for immediate needs such as charging a mobile power supply, which is easy to carry but has limited application scenarios due to its short length; the other is a long data cable suitable for fixed-position use. Although this type of data cable has a wide range of applications, in actual use, different types of data cables often need to be switched according to different occasions or interface requirements, which not only increases the burden on users but also affects the convenience of use. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a data cable that can solve the problems of poor application universality and low usage convenience.
[0005] The utility model provides a data cable, including an input end, an output end, and a wire connecting the input end and the output end. The input end includes a first outer shell, at least one Type-C first socket, at least one first plug, and a first circuit board. The Type-C first socket and each of the first plugs are electrically connected to the first circuit board, and the first outer shell covers the Type-C first socket, the at least one first plug, and the first circuit board respectively.
[0006] Preferably, the wire includes a first line segment and a second line segment. The first input end of the first line segment is connected to the input end, and the second input end of the second line segment is connected to the first output end of the first line segment;
[0007] The output end includes a plurality of second plugs, and at least two of the second plugs have different plug specifications. Each of the second plugs is connected to the second output end of the second line segment.
[0008] Preferably, the output end includes at least one second plug, the second plug is connected to the wire, and the length of the effective connection path between any one of the first plugs and the second plug is 5 cm to 25 cm.
[0009] Preferably, the wire includes a first line segment and at least one second line segment, and the second input end of each second line segment is connected to the first output end of the first line segment;
[0010] The wire further includes an adapter, the first output end is connected to the adapter, and each second input end is connected to the adapter.
[0011] Preferably, the adapter is provided with an intermediate input position and a plurality of intermediate output positions, the first output end is connected to the intermediate input position, and each second input end is correspondingly connected to each intermediate output position;
[0012] The intermediate input position is linearly connected to each intermediate output position to form a plurality of intermediate paths, and any one of the intermediate paths can be independently used to form at least part of the effective connection path.
[0013] Preferably, the length of the part of the first line segment exposed between the adapter and the first housing is 3 cm to 12 cm; and / or
[0014] The length of at least part of the second line segment exposed between the adapter and the second plug is 3 cm to 12 cm.
[0015] Preferably, the lengths of all the second line segments are equal; and / or
[0016] The length of the first line segment and the length of each second line segment are equal.
[0017] Preferably, the length of the first line segment is 4 cm to 14 cm; and / or
[0018] The length of at least part of the second line segment is 4 cm to 14 cm.
[0019] Preferably, the first plug includes a USB plug and / or a Type-C plug; and / or the first Type-C socket includes a Type-C socket.
[0020] Preferably, the first housing is provided with a first output position and a plurality of first input positions, the first input end is connected to the first output position, and the first Type-C socket and each first plug are correspondingly arranged at each first input position;
[0021] The first output bits are respectively linearly connected to the first input bits to form a plurality of first paths, and any one of the first paths can be individually used to form at least a part of the effective connection path.
[0022] Preferably, a socket hole is formed in the first housing body, the Type-C first socket is arranged in the socket hole, and two T-shaped positioning members are arranged in the first housing body. The two T-shaped positioning members respectively abut against the Type-C first socket from opposite sides; and / or
[0023] The output end includes a plurality of second plugs, the plug specifications of at least two of the second plugs are different, and each of the second plugs is correspondingly arranged at the second output end of each of the second line segments.
[0024] Implementing the present utility model has the following beneficial effects:
[0025] Implementing the present utility model has the following beneficial effects:
[0026] The present utility model relates to a data cable, which can be used by a user for short-distance connection, and on the basis of short-distance connection, further connection can be carried out with different plugs. On the other hand, when the user uses a Type-C data cable for long-distance connection, the plug of the Type-C data cable can be plugged into the Type-C first socket of the present utility model, and then further connection can be carried out through the second plugs of different specifications, eliminating the need for the user to repeatedly replace the data cable for long-distance connection due to different plug usage requirements. When traveling, the user does not need to carry data cables of different plug types and different plug-in lengths.
[0027] In this way, the product can be adapted to different application requirements, improving the universality of the product and at the same time improving the convenience of use of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] By describing the exemplary embodiments of the present utility model in more detail in conjunction with the drawings, the above and other objects, features, and advantages of the present utility model will become more obvious. Among them, in the exemplary embodiments of the present utility model, the same reference numerals generally represent the same components.
[0029] Figure 1 is a schematic structural diagram of a data cable in some embodiments of the present utility model;
[0030] Figure 2 is another schematic structural diagram of a data cable in some embodiments of the present utility model;
[0031] Figure 3 is viewed from another angle Figure 2 the schematic structural diagram of the shown data cable;
[0032] Figure 4 is an exploded view of the data cable in some embodiments of the present utility model;
[0033] Figure 5 is a front view of the data cable in some embodiments of the present utility model;
[0034] Figure 6 is a schematic structural view of the data cable in some other embodiments of the present utility model;
[0035] Figure 7 is a schematic view of a partial circuit structure of the data cable in some embodiments of the present utility model. Detailed implementation manners
[0036] The embodiments of the present utility model will be described in more detail below with reference to the accompanying drawings. Although the embodiments of the present utility model are shown in the drawings, it should be understood that the present utility model can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present utility model more thorough and complete, and to fully convey the scope of the present utility model to those skilled in the art.
[0037] It should be understood that although the terms "first", "second", "third", etc. may be used in the present utility model to describe various information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present utility model, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, "a plurality" means two or more unless otherwise specifically defined.
[0038] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model.
[0039] Unless otherwise clearly specified and defined, terms such as "installation", "connection", "linkage", "fixation" shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection or an integral one; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal communication between two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0040] Figure 1 Fig. shows the data line 10 in some embodiments of the present utility model. The data line 10 is used to connect two ports that need to be connected, that is, two different ports can be connected through the data line 10. Specifically, the data line 10 can be connected between a mobile power supply and a mobile phone to charge the mobile phone. The data line 10 can also be connected between a mobile phone and a laptop computer to realize data exchange between the mobile phone and the laptop computer.
[0041] As Figure 1 shown, the data line 10 includes a wire 1, an input end 2 and an output end 3. The input end 2 and the output end 3 are respectively arranged at both ends of the wire 1 to electrically connect the two through the wire 1.
[0042] As Figures 2 to 7 shown, the input end 2 includes a first housing 21, a Type-C first socket 22, at least one first plug 23 and a first circuit board 24. The Type-C first socket 22 and at least one first plug 23 are respectively electrically connected to the first circuit board 24, and the first housing 21 respectively covers the Type-C first socket 22, at least one first plug 23 and the first circuit board 24.
[0043] It can be understood that the first housing 21 can provide physical protection for the internal electronic components to prevent damage caused by daily wear and accidental collision. The Type-C first socket 22 is for an external Type-C plug to be inserted therein (the external Type-C plug refers to the Type-C plug on the port that needs to be connected through the present utility model and is other than the Type-C plug included in the present utility model). The setting of the first plug 23 improves the compatibility of the data line 10. The input end of the first line segment 11 is connected to the inside of the first housing 21 through a reliable connection technology (such as welding or a pluggable joint), ensuring the stable connection of each connection position. The first circuit board 24 is configured as the center of connection and control. It is not only directly connected to the Type-C first socket 22 to ensure the realization of high-speed data transmission and high-power charging functions, but also electrically connected to each first plug 23, so that signals and power can be accurately distributed to the corresponding interfaces.
[0044] The Type-C first socket 22 and each first plug 23 are both arranged on the first housing 21. The first circuit board 24 is arranged inside the first housing 21, and the Type-C first socket 22 and each first plug 23 are both electrically connected to the first circuit board 24.
[0045] As Figure 6 shown, the wire 1 includes a first line segment 11 and a second line segment 12. The first input end 111 of the first line segment 11 is connected to the input end 2, and the second input end 121 of the second line segment 12 is connected to the first output end 112 of the first line segment 11; the output end 3 includes a plurality of second plugs 31, and the plug specifications of at least two second plugs 31 are different, and each second plug 31 is connected to the second output end 122 of the second line segment 12.
[0046] It can be understood that the wire 1 only includes one first line segment 11 and one second line segment 12. During use, the current is transmitted to the first input end 111 of the first line segment 11 through the input end 2, then is transmitted to the second input end 121 of the second line segment 12 through the first output end 112 of the first line segment 11, and then is transmitted to one of the second plugs 31 or each of the second plugs 31 through the second output end 122 of the second line segment 12. In this way, the product can be correspondingly matched with different interfaces only through a single second line segment 12, without setting multiple second line segments 12; not only improves the universality of the product, but also reduces the production and manufacturing cost of the product.
[0047] As Figures 2 to 5 shown, the output end 3 includes at least one second plug 31, the second plug 31 is connected to the wire 1, and the length of the effective connection path L1 between the first plug 23 and the second plug 31 is 5 cm to 25 cm.
[0048] It should be noted that the effective connection path L1 refers to each connection part from the first plug 23 to the second plug 31 that ensures the effective transmission of data and / or power. Configuring the effective connection path L1 to be 5 cm to 25 cm can avoid the inconvenience brought by redundant wires while providing the necessary flexibility, and meet various connection requirements in diverse application scenarios.
[0049] It should also be noted that in view of the problems faced by users under the background of the popularization of the current Type-C interface, such as different plug specifications and inconvenient portability, the data cable of the present utility model can provide seamless cross-device connection for short-distance connection and long-distance connection, improving the convenience of use. Specifically, the output end 3 of the present utility model is configured with a second plug 31 including various plug specifications (such as Type-C, USB-A, Micro-USB, Lightning, etc.), ensuring wide compatibility. Users can quickly replace or directly select the appropriate plug specification according to actual needs, without the need to carry multiple long data cables of different types, greatly reducing the burden of traveling.
[0050] During the process of going out, such as in a café, airport or on a train, it is often necessary to use a mobile power supply to charge a mobile phone or other devices. At this time, the effective connection path length of the data cable is configured between 5 cm and 25 cm, which is very suitable for short-distance connection, avoiding the inconvenience caused by long cables, such as excessive winding and troublesome arrangement. The design of this short data cable is convenient to carry, and at the same time can quickly connect the mobile power supply and the device to meet the immediate charging needs.
[0051] When the user is in a home scenario, it may be the case that the charging socket is far from the working area or the sitting / lying / resting position. At this time, although using a traditional long data cable solves the distance problem, it is very cumbersome to frequently change different types of plugs. The data cable of this utility model provides a solution. The user can plug the Type-C data cable for long-distance connection into the Type-C first socket of the data cable, and then connect to different devices through the second plugs of different specifications on the data cable. In this way, there is no need to carry data cables of multiple plug types and lengths anymore, greatly simplifying the charging and data transmission process, and improving the use efficiency and convenience. In summary, the data cable of the present utility model takes into account both short-distance and long-distance connection requirements, and also considers the compatibility of different device interfaces, enabling users to easily handle various charging and data transmission scenarios whether they are going out or in a home scenario, without the need to frequently change data cables or carry multiple adapters. This not only reduces the burden on users, but also enhances the user experience, making it an ideal data cable product for carrying around and using at home.
[0052] Furthermore, as Figures 2 to 5 shown, the output end 3 includes several second plugs 31, at least two of the second plugs 31 have different plug specifications, and each second plug 31 is correspondingly arranged at the second output end 122 of each second line segment 12.
[0053] The output end 3 is configured with a number of second plugs 31, and at least two second plugs 31 are configured to have different specifications (for example, including different types of USB interfaces or other special interfaces) to meet the connection requirements of different devices. Each second plug 31 is respectively installed on each second output end 122, so that each second line segment 12 can adapt to different device interfaces according to actual application requirements. This design allows users to easily select or replace a suitable second plug according to the interface type of the device at hand, without the need to carry multiple data cables additionally, greatly improving portability and practicality.
[0054] As Figures 2 to 5 shown, the wire 1 includes a first line segment 11 and at least one second line segment 12. The second input end 121 of each second line segment 12 is connected to the first output end 112 of the first line segment 11; the wire 1 further includes an adapter 13. The first output end 112 is connected to the adapter 13, and each second input end 121 is connected to the adapter 13.
[0055] It can be understood that the first line segment 11 is used to further transfer the data and / or current input via the input end 2 to the second line segment 12. Subsequently, the second line segment 12 is used to further transfer the data and / or current to the output end 3 and output it by the data and / or current.
[0056] The adapter 13 is located at the intersection of the first line segment 11 and each second line segment 12 and plays a role of connection. The end of the first line segment 11, that is, the first output end 112, is tightly and firmly connected to the adapter 13. At the same time, the second input end 121 of each second line segment 12 is also connected to the adapter 13. Such a design enables multiple second line segments to be aggregated orderly and centrally, avoiding the phenomenon of messy cables.
[0057] It should be noted that the adapter 13 can be configured to be made of high-strength plastic or metal material. Its outer contour can be flexibly adjusted according to actual use requirements or design requirements. Of course, the number of adapters 13 can be configured as one or more. There are wires for connection between multiple adapters 13, and the wires in this part are used to correspondingly connect the first line segment 11 and the second line segment 12.
[0058] As Figures 2 to 4 shown, the adapter 13 is provided with an intermediate input bit 131 and a number of intermediate output bits 132. The first output end 112 is connected to the intermediate input bit 131, and each second input end 121 is correspondingly connected to each intermediate output bit 132; the intermediate input bit 131 is linearly connected to each intermediate output bit 132 respectively to form a number of intermediate paths L2, and any intermediate path L2 can be used alone to form at least part of an effective connection path L1.
[0059] Understandably, the middle input bit 131 of the adapter 13 is configured to receive the connection from the first output end 112 of the first line segment 11. The middle output bits 132 are all configured to fix the second input ends 121 of the second line segments 12. The positions of the middle input bit 131 and each middle output bit 132 can be set flexibly.
[0060] A number of middle paths L2 are formed by directly connecting the middle input bit 131 and each middle output bit 132. Each middle path L2 serves as an independent path for data and / or power transmission, and is designed such that any one of the middle paths L2 can independently form or partially form the final effective connection path L1. Correspondingly, for the effective connection path L1 formed or partially formed by any one of the middle paths L2, the length of the effective connection path L1 should all fall within the range of 5 cm to 25 cm to prevent the product from not being able to adapt to the short-distance connection usage requirements due to the excessive length of the middle path L2.
[0061] As Figure 5 shown, in some embodiments of the data line 10, the length of the part of the first line segment 11 exposed between the adapter 13 and the first housing 21 (this part is shown as P1 in Figure 5 ) is 3 cm to 12 cm.
[0062] Understandably, the part of the first line segment 11 exposed between the adapter 13 and the first housing 21 is the effective connection length, and this exposed part is included in the effective connection path. Correspondingly, when the outer rubber-coated parts or outer fixing parts of each connector are different in size specifications and the mating positions with the first line segment 11, the length of the part of the first line segment 11 exposed between the adapter 13 and the first housing 21 will also change correspondingly. By adopting the content of this type of embodiment, the deformable and bendable characteristics of the first line segment 11 itself can be utilized as much as possible, enabling the product to flexibly adjust the angle to connect to the predetermined position.
[0063] As Figure 5 shown, the length of at least part of the second line segment 12 exposed between the adapter and the second plug 31 (this part is shown as P2 in Figure 5 ) is 3 cm to 12 cm.
[0064] Understandably, referring to the content of the foregoing embodiments, through the content of this type of embodiment, the deformable and bendable characteristics of the second line segment 12 itself can be utilized as much as possible, enabling the product to flexibly adjust the angle to connect to the predetermined position.
[0065] As Figure 3 and Figure 4As shown, in some embodiments of the data cable 10, the lengths of all the second line segments 12 are equal. Understandably, by configuring the lengths of all the second line segments 12 to be the same, users can more intuitively arrange and organize the cable. Especially when connecting multiple devices simultaneously or storing the cable, it avoids the chaos and inconvenience caused by different cable lengths.
[0066] In some other embodiments of the data cable 10, the length of the first line segment 11 and the length of each second line segment 12 are equal. Understandably, when the first line segment 11 and each second line segment 12 have the same length, the entire data cable system exhibits good symmetry, improving the user's comfort. At the same time, in the production and processing process, it can avoid the increase in production costs caused by the diversification of specifications of too many spare parts.
[0067] As Figure 3 and Figure 4 shown, in some embodiments of the data cable 10, the length of the first line segment 11 is 4 cm to 14 cm.
[0068] It should be noted that the length of the first line segment 11 refers to the overall wire length of the first line segment 11, including the visible part exposed outside and the part (if any) inserted into the installation position to form the insertion amount.
[0069] As Figure 3 and Figure 4 shown, in some embodiments of the data cable 10, the length of at least part of the second line segments 12 is 4 cm to 14 cm.
[0070] It should be noted that the length of the second line segment 12 refers to the overall wire length, including the visible part exposed outside and the part (if any) inserted into the installation position to form the insertion amount.
[0071] Specifically, the first plug 23 includes a USB plug and / or a Type-C plug. Understandably, given that the Type-C interface has become the standard configuration of many modern electronic devices, including smartphones, tablets, laptops, etc., the Type-C plug included in the first plug 23 ensures seamless docking with the latest technology devices. In addition, if the first plug 23 is configured to include a USB plug, it ensures the compatibility of the product with old or non-Type-C interface devices, enabling the product to be widely used in various electronic devices, new or old, without the need for an additional adapter, enhancing the versatility of the data cable.
[0072] Specifically, the Type-C first socket 22 includes a Type-C socket.
[0073] As Figures 2 to 5As shown, in some embodiments of the data line 10, a first output bit 211 and a plurality of first input bits 212 are provided on the first outer housing 21. The first input end 111 is connected to the first output bit 211, and the Type-C first socket 22 and each first plug 23 are correspondingly arranged at each first input bit 212;
[0074] The first output bit 211 is linearly connected to each first input bit 212 to form a plurality of first paths L3. Any one of the first paths L3 can be individually used to form at least a part of the effective connection path L1.
[0075] It can be understood that the first outer housing 21 can be a common housing in the related art and can be made of common materials in the prior art.
[0076] It should be noted that when connected to an external port through any one of the first input bits 212, the external port will output through the first output bit 211. Any first path L3 formed by linearly connecting a first output bit 211 and a first input bit 212 can be individually used to form a part of the effective connection path L1. Of course, any L1 formed by any L3 is within a predetermined length range (5 cm to 25 cm), avoiding the situation that the effective connection path L1 exceeds the predetermined length range due to the excessive length of some L3, and ensuring that the use of any one of the first input bits 212 can meet the user's short-distance connection requirements.
[0077] As Figure 4 As shown, in some embodiments of the data line 10, a socket hole 213 is provided on the first outer housing 21. The Type-C first socket 22 is arranged in the socket hole 213, and two T-shaped positioning members 214 are arranged inside the first outer housing 21. The two T-shaped positioning members 214 respectively abut against the Type-C first socket 22 from opposite sides.
[0078] It can be understood that the socket hole 213 provided on the first outer housing 21 provides an installation position for the Type-C first socket 22, improving the stability of the Type-C first socket 22 and avoiding displacement or loosening caused by external forces during use. The two T-shaped positioning members 214 are respectively arranged inside the first outer housing 21 and on both sides of the Type-C first socket 22, forming a clamping and fixing of the socket. The unique feature of the T-shaped design is that it can provide supporting forces from both sides of the socket, effectively preventing the socket from rotating or falling off when subjected to lateral pulling force or torsion force, greatly enhancing the durability and stability of the interface.
[0079] Furthermore, the T-shaped positioning member 214 can be configured to be arranged on the first outer housing 21 by an integral molding method, thereby preventing the T-shaped positioning member 214 from falling off the first outer housing 21.
[0080] As Figures 2 to 5 shown, in some embodiments of the data line 10, each second plug 31 includes at least two of a second Type-C plug, a second Lightning plug, and a second Micro-USB connector.
[0081] It can be understood that through the content of this type of embodiment, it can be ensured that each second plug 31 can correspondingly adapt to devices with at least two interfaces, thereby ensuring the plugging universality of the product.
[0082] As Figure 7 shown, in some embodiments of the data line 10, the data line 10 includes a control circuit 4, the control circuit is connected to the Type-C first socket 22, and the control circuit 4 is used to cut off the Type-C plug in the second plug 31 after a plug is correspondingly inserted into the Type-C first socket 22.
[0083] It can be understood that the data line 10 is internally provided with an electrical structure circuit, and this circuit hole structure is directly connected to the Type-C first socket 22 to monitor the plugging state in the socket in real time. When it is detected that an external device plug is inserted into the Type-C first socket 22, the control circuit immediately starts an intelligent judgment logic to optimize and protect the entire data transmission system.
[0084] During the actual use process, once the Type-C first socket 22 is occupied (i.e., an external Type-C plug is inserted), the control circuit will automatically cut off the power supply and data transmission path of the Type-C plug in the second plug 31. The purpose of this design is to avoid potential current loops or data conflicts, ensuring the system security and data transmission stability when multiple interfaces are used simultaneously.
[0085] Implementing the present utility model has the following beneficial effects:
[0086] The present utility model relates to a data line, which can be used by users for short-distance connection, and on the basis of short-distance connection, it can be further connected with different plugs. On the other hand, when the user uses a Type-C data line for long-distance connection, the plug of the Type-C data line can be inserted into the Type-C first socket of the present utility model, and then further connected through second plugs of different specifications, eliminating the need for the user to repeatedly replace the data line for long-distance connection due to different plug usage requirements. When traveling, the user does not need to carry data lines of different plug types and different plugging lengths.
[0087] In this way, the product can adapt to different application requirements, improving the universality of the product and also improving the convenience of use of the product.
[0088] The solution of the present utility model has been described in detail above with reference to the accompanying drawings. In the above embodiments, the descriptions of the respective embodiments have their own emphases. For the parts not described in detail in a certain embodiment, reference may be made to the relevant descriptions of other embodiments. Those skilled in the art should also be aware that the actions and modules involved in the specification are not necessarily essential to the present utility model. In addition, it can be understood that the steps in the method embodiments of the present utility model can be adjusted, combined, and deleted according to actual needs, and the modules in the device embodiments of the present utility model can be combined, divided, and deleted according to actual needs.
[0089] The various embodiments of the present utility model have been described above. The above description is exemplary and not exhaustive, and is also not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art in the technical field without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, the practical application, or the improvement of the technology in the market, or to enable other ordinary skilled persons in the technical field to understand the embodiments disclosed herein.
Claims
1. A data cable, comprising an input end (2), an output end (3), and a wire (1) connecting the input end (2) and the output end (3), characterized in that, The input end (2) includes a first outer casing (21), at least one Type-C first socket (22), at least one first plug (23), and a first circuit board (24). The Type-C first socket (22) and each of the first plugs (23) are electrically connected to the first circuit board (24). The first outer casing (21) covers the Type-C first socket (22), the at least one first plug (23), and the first circuit board (24) respectively.
2. The data line according to claim 1, wherein The wire (1) includes a first line segment (11) and a second line segment (12). The first input end (111) of the first line segment (11) is connected to the input end (2), and the second input end (121) of the second line segment (12) is connected to the first output end (112) of the first line segment (11). The output end (3) includes a plurality of second plugs (31). The plug specifications of at least two of the second plugs (31) are different, and each of the second plugs (31) is connected to the second output end (122) of the second line segment (12).
3. The data cable according to claim 2, wherein The output end includes at least one second plug (31). The second plug (31) is connected to the wire (1). The length of the effective connection path (L1) between any one of the first plugs (23) and the second plug (31) is 5 cm to 25 cm.
4. The data cable according to claim 3, wherein, The wire (1) includes a first line segment (11) and at least one second line segment (12). The second input end (121) of each second line segment (12) is connected to the first output end (112) of the first line segment (11). The wire (1) further includes an adapter (13). The first output end (112) is connected to the adapter (13), and each of the second input ends (121) is connected to the adapter (13).
5. The data cable according to claim 4, wherein An intermediate input position (131) and a plurality of intermediate output positions (132) are provided on the adapter (13). The first output end (112) is connected to the intermediate input position (131), and each of the second input ends (121) is connected to each of the intermediate output positions (132) in a one-to-one correspondence. The intermediate input position (131) is linearly connected to each of the intermediate output positions (132) to form a plurality of intermediate paths (L2). Any one of the intermediate paths (L2) can be used alone to form at least a part of the effective connection path (L1).
6. The data line according to claim 4, characterized in that, The lengths of all the second line segments (12) are equal; and / or The length of the first line segment (11) and the length of each second line segment (12) are equal.
7. The data cable according to claim 4, wherein The length of the first line segment (11) is 4 cm to 14 cm; and / or The length of at least one of the second line segments (12) is 4 cm to 14 cm; and / or The length of the part of the first line segment (11) exposed between the adapter (13) and the first outer casing (21) is 3 cm to 12 cm; and / or The length of at least a part of the second line segment (12) exposed between the adapter (13) and the second plug (31) is 3 cm to 12 cm.
8. The data line according to claim 3, characterized in that The first housing (21) is provided with a first output position (211) and a plurality of first input positions (212). The first input end (111) is connected to the first output position (211). The Type-C first socket (22) and each of the first plugs (23) are correspondingly arranged at each of the first input positions (212); The first output position (211) is linearly connected to each of the first input positions (212) to form a plurality of first paths (L3). Any one of the first paths (L3) can be independently used to form at least a part of the effective connection path (L1).
9. The data line according to claim 4, wherein A socket hole (213) is formed in the first housing (21). The Type-C first socket (22) is arranged in the socket hole (213). Two T-shaped positioning members (214) are arranged in the first housing (21). The two T-shaped positioning members (214) respectively abut against the Type-C first socket (22) from opposite sides; and / or The output end (3) includes a plurality of second plugs (31). The plug specifications of at least two of the second plugs (31) are different. Each of the second plugs (31) is correspondingly arranged at the second output end (122) of each of the second line segments (12).
10. The data cable according to claim 1, characterized in that, The first plug (23) includes a USB plug and / or a Type-C plug; and / or The Type-C first socket (22) includes a Type-C socket.