Desktop branching structure

By optimizing the desktop wiring structure, the problem of traditional sockets being unable to meet the charging needs of multiple devices and the chaotic cable management has been solved. This has resulted in orderly cable arrangement, improved safety and convenience, and flexible power supply and modular expandability.

CN223539940UActive Publication Date: 2025-11-11HANGZHOU JOYE TECH CO LTD
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Patent Information

Application Number
CN202423061216.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-11
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Traditional desktop sockets cannot meet the charging needs of multiple devices, and the cable management is messy, affecting aesthetics and potentially causing safety hazards.

Method used

A desktop cable management structure is designed to provide a stable power cable channel and cable management structure through the optimization of the first housing and housing connector, ensuring orderly arrangement of wires, enhancing isolation, and improving security by setting a sealing plate and locking structure.

Benefits of technology

It achieves a tidy desktop, improves cable management efficiency, reduces the risk of electric shock and short circuit, enhances ease of use and safety, and has flexible power supply methods and modular expandability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a desktop branching structure, which comprises a first shell and a shell connecting seat connected with the first shell, and the first shell is provided with a wire passing end; the wire passing end is provided with a wire separating structure; the branching structure comprises a first housing wire passing port and a separation groove. The utility model relates to the field of power distribution switch control equipment. According to the desktop branching structure provided by the utility model, through the structural optimization of the first shell and the shell connecting seat, the desktop wiring scheme is optimized while multi-surface power supply is carried out on a desktop, so that the desktop is tidier, the power taking is more convenient, the service life of a desktop cable is prolonged, and the risks of electric shock and short circuit are reduced.
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Description

Technical Field

[0001] This utility model relates to the field of power distribution switch control equipment, and in particular to a desktop branching structure. Background Technology

[0002] With the advent of the information age, the number of electronic devices on desktops is increasing, such as computers, printers, mobile phones, and tablets. These devices all require power and charging through sockets. Traditional desktop sockets often only provide a limited number of outlets, and their layout is usually fixed, failing to meet the charging needs of multiple devices. To solve this problem, multi-outlet, multi-functional desktop sockets have emerged on the market. These sockets not only provide more outlets but also integrate USB charging ports, allowing users to charge multiple devices simultaneously. However, while multi-functional desktop sockets solve the problem of insufficient outlets, they also bring about cable management issues. When multiple devices are connected to a desktop socket at the same time, the cables often become tangled, forming a mess. This not only affects aesthetics but may also pose safety hazards. Furthermore, after prolonged use, the cables become intertwined and difficult to untangle, causing inconvenience for daily use and maintenance. To improve the user experience of desktop sockets and solve the problem of messy cables, the market urgently needs a new type of desktop cable routing structure design that can effectively manage cables.

[0003] For example, Chinese patent CN216450897U discloses a desktop socket and a desktop cable tray. Existing desktop cable trays cannot be used with desktops of various thicknesses and suffer from cable clutter. One objective of this invention is to provide a snap-fit ​​desktop socket that can fit desktops of various thicknesses. Another objective is to provide a desktop cable tray, including a housing and a power module within the housing. The housing includes an upper surface and a skirt extending downwards from the upper surface to surround the bottom. At least two sets of locking parts at different heights are provided on opposite surfaces of the skirt. The locking surfaces of the locking parts are inclined slopes with several steps. This invention also provides a desktop cable tray for use with a desktop socket, where the socket's latch engages and is fixed to the bottom of the cable tray within a through hole. While this invention facilitates desktop assembly to some extent, its complex structure leads to cumbersome construction and high cost, and it lacks cable separation capabilities, failing to solve the existing problems. Utility Model Content

[0004] In response to the problems described in the background art, this utility model proposes a desktop cable management structure. Through structural optimization of the first housing and the housing connector, it achieves multi-faceted power supply on the desktop while optimizing the desktop cable routing, making the desktop neater, power access more convenient, extending the service life of desktop cables, and reducing the risk of electric shock and short circuits.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a desktop cable distribution structure, comprising a first housing and a housing connecting seat connected to the first housing, wherein the first housing is provided with a cable passage end; the cable passage end is provided with a cable distribution structure; the cable distribution structure includes a cable passage opening in the first housing and a partition groove.

[0006] The connection between the first housing and the housing connector provides a stable structure for this invention. The cable guide provides a passage for the power cord, effectively organizing the cables on the desktop, making the desktop tidier, improving workspace utilization, and enhancing cable management efficiency and ease of use. The cable management structure helps manage cables, ensuring orderly arrangement and reducing tangled wires. The divider slots separate cables under the desk, giving each cable leading to the desktop its own path, enhancing cable isolation.

[0007] Preferably, the housing connector is provided with a base cable pass-through port corresponding to the branching structure, and the first housing is provided with a first housing socket panel. The first housing socket panel is located on both sides of the partition groove. The base cable pass-through port allows the power cord to pass through the housing connector from the cable pass-through end on the table. By designing the first housing socket panel on both sides of the partition groove, the desktop power supply method is more flexible and meets different usage needs.

[0008] Preferably, the first housing is provided with sealing plates on both sides, and the wire passage of the first housing is provided with a limiting edge and a locking hole. A plurality of wire cover positioning holes are provided between the limiting edge and the locking hole. The sealing plates improve the internal sealing of the present invention, effectively preventing foreign objects from entering the interior of the first housing and improving the safety of use. The limiting edge, locking hole and a plurality of wire cover positioning holes on the wire passage of the first housing ensure that the wire cover is firmly connected to the first housing, preventing movement or detachment.

[0009] Preferably, the housing connector is connected to the first housing on one side and the second housing on the other side. The first housing has a housing mounting limiting edge on the side connected to the housing connector, and the housing mounting limiting edge has several connecting holes. By setting the first housing and the second housing on both sides of the housing connector, the space arrangement is optimized, allowing power to be obtained both on and under the table, which facilitates the user's management of the power cord socket and also improves the scalability of this utility model. The design of the housing mounting limiting edge and connecting holes achieves a stable connection of this utility model and improves the assembly efficiency of the product. At the same time, the setting of the housing mounting limiting edge also stabilizes the stability of this utility model when installed on the desktop.

[0010] Preferably, the housing connector is provided with a plurality of socket module connectors, including a first housing socket module connector and a second housing socket module connector. This arrangement facilitates the installation of the socket module and meets the power supply requirements of the first and second housings.

[0011] Preferably, the second housing has several desktop mounting structures on both sides, and a second housing insertion panel is provided at the bottom of the second housing. The housing connector is provided with a latch at the connection point with the second housing. The desktop mounting structure makes it convenient for users to fix the present invention on the desktop, simplifies the installation method, and improves the installation efficiency. The latch ensures a stable connection between the second housing and the housing connector.

[0012] Preferably, the first housing is connected to a cable guide cover, which has a locking structure and a snap-fit ​​structure. A plurality of cable guide cover positioning posts are provided between the snap-fit ​​structure and the locking structure. The cable guide cover further protects the power cord. The design of the snap-fit ​​structure and the locking structure allows the cable guide cover to be securely connected to the first housing. The design of the two cable guide cover positioning posts allows the user to easily install and remove the cable guide cover as needed.

[0013] Preferably, the desktop mounting structure is provided with a plurality of anti-slip strips, which are arranged in descending order of width from the end closest to the housing connector to the end furthest from the housing connector. Arranging the anti-slip strips in descending order of width from the installation direction facilitates installation and adjustment by the user and enhances the practicality of this utility model.

[0014] Preferably, the housing connector is provided with an overload protector mounting base. The housing connector has several desktop fixing holes, and several reinforcing ribs are provided around the desktop fixing holes. The overload protector mounting base is used for the overload protector. The overload protector can prevent excessive current from damaging the equipment, thus improving the safety and reliability of this invention. The housing connector has two desktop fixing holes at diagonal positions and reinforcing ribs are provided around the desktop fixing holes, which improves the strength of the desktop fixing holes and enhances the stability and durability of this invention during installation.

[0015] Preferably, the wire guide cover has a wire guide hole, the locking structure is petal-shaped, and the top of the locking structure has a backstop structure. The petal-shaped locking structure facilitates the user's installation of the wire guide cover, and the design of the backstop structure ensures a stable connection between the wire guide cover and the first housing, thereby improving the stability of the connection of this utility model.

[0016] Compared with the prior art, the beneficial effects of this utility model are as follows.

[0017] 1. In terms of safety, this design effectively protects the circuit from overload and short circuit damage through the overload protector mounting bracket on the housing connector. Meanwhile, the inclusion of anti-slip strips and reinforcing ribs enhances the stability and durability of the entire wiring structure. These design features ensure user safety and stability during use, avoiding potential safety hazards.

[0018] 2. In terms of cable management, the cable cover design allows users to easily open or close the cable port, and the locking structure and socket panel design also provide a more convenient operation method. Users can choose the power supply cable routing according to their needs.

[0019] 3. In terms of scalability, this utility model adopts a modular combination approach, allowing users to flexibly select and combine these modules according to actual needs, thereby achieving the goal of saving costs. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the present invention.

[0021] Figure 2 This is a bottom view of the present invention.

[0022] Figure 3 This is a schematic diagram of the first housing in this utility model.

[0023] Figure 4 This is a schematic diagram of the housing connecting seat in this utility model.

[0024] Figure 5 This is a front view of the housing connector in this utility model.

[0025] Figure 6 This is an enlarged view of the desktop mounting structure in this utility model.

[0026] Figure 7 This is a perspective view of the wire cover in this utility model.

[0027] Figure 8 This is a schematic diagram of the wire cover in this utility model.

[0028] Diagram Description: 1. First housing; 2. Housing connector; 3. Cable guide; 4. Cable branch structure; 5. Cable guide cover; 6. First housing cable guide port; 7. Divider groove; 8. Second housing; 9. Desktop mounting structure; 10. Socket module connector; 11. Overload protector; 12. Power cord hole; 1.1. First housing socket panel; 1.2. Housing mounting limit edge; 1.3. Connecting hole; 1.4. Sealing plate; 2.1. Overload protector mounting base; 2.2. Lock; 2.3. Desktop fixing hole; 2.4. Base cable guide port; 2.5. Cable cover positioning post; 5.1. Snap-fit ​​structure; 5.2. Locking structure; 5.3. Anti-retraction structure; 5.4. Cable cover hole; 5.5. Limit edge; 6.1. Locking hole; 6.2. Cable cover positioning hole; 6.3. Second housing socket panel; 8.1. Anti-slip strip; 9.1. First housing socket module connector; 10.1. Second housing socket module connector; 10.2. 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 6 As shown, a desktop cable management structure includes a first housing 1 and a housing connector 2 connected to the first housing 1. The first housing 1 has a cable guide end 3; the cable guide end 3 has a cable management structure 4; the cable management structure 4 includes a cable guide opening 6 in the first housing and a dividing groove 7. The connection between the first housing 1 and the housing connector 2 provides a stable structure. The cable guide end 3 provides a passage for power cords, effectively organizing the cables on the desktop, making the desktop tidier, improving workspace utilization, and enhancing cable management efficiency and ease of use. The cable management structure 4 helps manage cables, ensuring orderly arrangement and reducing tangled wiring. The dividing groove 7 separates cables under the desk, ensuring each cable has its own passageway, enhancing cable isolation.

[0032] like Figure 2 and Figure 4 As shown, the housing connector 2 has a base cable pass-through port 2.4 corresponding to the branch cable structure 4. The first housing 1 has a first housing socket panel 1.1, which is located on both sides of the partition groove 7. The base cable pass-through port 2.4 allows the power cord to pass through the housing connector 2 from the cable pass-through end 3 on the table. By designing the first housing socket panel 1.1 on both sides of the partition groove 7, the desktop power supply method is more flexible and meets different usage needs. In this embodiment, as... Figure 1As shown, the first housing 1 has a first housing socket panel 1.1 on both sides. In actual use, this design prevents users on both sides of the desktop from interfering with each other. Furthermore, the first housing socket panels 1.1 on both sides are at an angle, so that the first housing socket panels 1.1 are at an angle to the desktop, rather than being perpendicular. This design makes it convenient for users to plug in and draw power whether they are sitting or standing at the table.

[0033] In this utility model, such as Figure 3 As shown, the first housing 1 has sealing plates 1.4 on both sides, and the wire passage 6 of the first housing has a limiting edge 6.1 and a locking hole 6.2. Between the limiting edge 6.1 and the locking hole 6.2, there are several wire cover positioning holes 6.3. The sealing plates 1.4, together with the first housing 1, enclose the socket module, improving the internal sealing of this utility model and effectively preventing foreign objects from entering the interior of the first housing 1, thus improving safety. The limiting edge 6.1, the locking hole 6.2, and the several wire cover positioning holes 6.3 on the wire passage 6 of the first housing ensure a stable connection between the wire cover 5 and the first housing 1, preventing movement or detachment.

[0034] In this embodiment, the housing connector 2 is connected to the first housing 1 on one side and the second housing 8 on the other side. The first housing 1 has a housing mounting limiting edge 1.2 on the side connected to the housing connector 2, such as... Figure 2 As shown, the housing mounting limiting edge 1.2 is provided with 8 connecting holes 1.3, see [reference]. Figure 4 The eight connecting holes 1.3 are threadedly connected to the housing connecting seat 2, enhancing the overall structural stability of this utility model. By setting the first housing 1 and the second housing 8 on both sides of the housing connecting seat 2, the space arrangement is optimized, allowing power to be accessed both on and under the table, facilitating the user's management of the power cord sockets, and improving the expandability of this utility model. The design of the housing mounting limiting edge 1.2 and the connecting holes 1.3 achieves a stable connection of this utility model, improving the product assembly efficiency. At the same time, the setting of the housing mounting limiting edge 1.2 also ensures the stability of this utility model when installed on a desktop.

[0035] join Figure 5 As shown, the housing connector 2 is provided with several socket module connectors 10. The socket module connectors 10 include a first housing socket module connector 10.1 and a second housing socket module connector 10.2. This arrangement facilitates the installation of socket modules, provides more power interfaces, meets the power supply requirements of the first housing 1 and the second housing 8, and satisfies the different power supply needs of users.

[0036] like Figure 2As shown, the second housing 8 has several desktop mounting structures 9 on both sides, and a second housing socket panel 8.1 at the bottom. The housing connector 2 has a latch 2.2 at its connection with the second housing 8. The desktop mounting structures 9 allow users to easily fix the present invention on a desktop, simplifying the installation method and improving installation efficiency. The latch 2.2 ensures a secure connection between the second housing 8 and the housing connector 2. In this embodiment, the second housing socket panel 8.1 has a 16A socket. One end of the second housing socket panel 8.1 has an overload protector 11 and a power cord hole 12. The power cord is connected to the present invention through the power cord hole 12 on the second housing socket panel 8.1.

[0037] like Figure 7 and Figure 8 As shown, in this utility model, the first housing 1 is connected to the cable guide cover 5. The cable guide cover 5 has a locking structure 5.2 and a locking structure 5.3. Several cable guide cover positioning posts 5.1 are provided between the locking structure 5.2 and the locking structure 5.3. The cable guide cover 5 further protects the power cord. The design of the locking structure 5.2 and the locking structure 5.3 allows the cable guide cover 5 to be securely connected to the first housing. The design of the two cable guide cover positioning posts 5.1 allows the user to easily install and remove the cable guide cover 5 as needed. The cable guide cover 5 has a cable guide cover hole 5.1. The locking structure 5.3 is petal-shaped, and the top of the locking structure 5.3 has a stop structure 5.4. The petal-shaped locking structure 5.3 facilitates the user's installation of the cable guide cover 5. The stop structure 5.4 ensures a secure connection between the cable guide cover 5 and the first housing 1. The petal-shaped locking structure and the stop structure allow the cable guide cover to be more firmly fixed in position, improving the overall structural stability and the connection stability of this utility model.

[0038] join Figure 1 and Figure 6 As shown, the desktop mounting structure 9 is provided with several anti-slip strips 9.1, which are arranged in descending order of width from the end closest to the housing connecting seat 2 to the end furthest from the housing connecting seat 2. During installation, the second housing 8 is inserted into the desktop from above, with the anti-slip strips 9.1 arranged from largest to smallest in the installation direction. This facilitates installation and adjustment by the user, enhancing the practicality of the invention.

[0039] See Figure 4As shown, in this embodiment of the present invention, the housing connecting seat 2 is provided with an overload protector mounting seat 2.1. The housing connecting seat 2 is provided with several desktop fixing holes 2.3, and several reinforcing ribs 2.4 are provided around the desktop fixing holes 2.3. The overload protector mounting seat 2.1 is used to install the overload protector 11. The overload protector 11 can prevent the equipment from being damaged due to excessive current, thereby improving the safety and reliability of the present invention. The housing connecting seat 2 is provided with two desktop fixing holes 2.3 at diagonal positions and is provided with reinforcing ribs 2.5 around the desktop fixing holes 2.3, which improves the strength of the desktop fixing holes 2.3 and enhances the stability and durability of the present invention during installation.

[0040] Example 2.

[0041] In this embodiment, a desktop cable management structure includes a first housing 1 and a housing connector 2 connected to the first housing 1. The first housing 1 has a cable guide end 3; the cable guide end 3 has a cable management structure 4; the cable management structure 4 includes a cable guide opening 6 in the first housing and a separating groove 7. The cable guide end 3 in the first housing 1 contains the cable management structure 4, which includes the cable guide opening 6 in the first housing and a separating groove 7 for separating cables. The connection between the first housing 1 and the housing connector 2 gives the desktop cable management structure stable structural characteristics. The cable guide end 3 provides a convenient channel for power cords, effectively organizing the wires on the desktop, making the desktop tidier, thereby improving the utilization rate of the workspace and the efficiency of cable management. The cable management structure 4 further enhances the cable management effect. Guided by the separating groove 7, the wires can be arranged in an orderly manner, avoiding a messy situation. At the same time, the separating groove 7 also enhances the isolation of the cables, improving the safety of use. The housing connector 2 has a base cable pass-through port 2.4 corresponding to the cable distribution structure 4, allowing the power cord to pass through the housing connector 2 from the cable pass-through end 3 on the table. In addition, the first housing 1 also has a first housing socket panel 1.1, which is located on both sides of the partition groove 7, making desktop power access more flexible and meeting different usage needs. To further optimize space allocation and improve practicality, one side of the housing connector 2 connects to the first housing 1, and the other side connects to the second housing 8. The first housing 1 has a housing mounting limiting edge 1.2 on the side connecting to the housing connector 2, which has several connecting holes 1.3 to achieve a secure connection. The second housing 8 has several desktop mounting structures 9 on both sides, facilitating the fixing of the desktop cable distribution structure to the desktop. The bottom of the second housing 8 has a second housing socket panel 8.1, providing users with an additional power access interface. The housing connector 2 has a latch 2.2 at the connection point with the second housing 8 to ensure a secure connection between the two. The desktop mounting structure 9 is equipped with several anti-slip strips 9.1, which are arranged in descending order of width from the end closest to the housing connector 2 to the end furthest from the housing connector 2, facilitating installation and adjustment by the user. This utility model's desktop cable management structure, through its ingenious cable management design and robust connection structure, achieves effective management and organization of desktop cables. Furthermore, this structure boasts advantages such as simple structure, convenient installation, and strong practicality, making it suitable for various desktop environments and providing users with a cleaner and more efficient workspace.

[0042] Example 3.

[0043] In this embodiment, a desktop cable management structure includes a first housing 1 and a housing connector 2 connected to the first housing 1. The first housing 1 has a cable guide end 3; the cable guide end 3 has a cable management structure 4; the cable management structure 4 includes a first housing cable guide opening 6 and a partition groove 7. The first housing 1 serves as the main structure, achieving a stable connection to the desktop via the housing connector 2, thus constructing a stable support system. The cable guide end 3 is cleverly positioned at the edge of the desktop, providing a convenient channel for power cord introduction and greatly improving the organization of desktop cables. Furthermore, the cable management structure 4 is built into the first housing 1, and this structure includes the partition groove 7, enabling orderly cable management under the desk and effectively avoiding messy and disorderly cables. To meet different usage needs, the first housing socket panel 1.1 is cleverly positioned on both sides of the partition groove 7, providing users with a flexible desktop power access method. Simultaneously, to improve internal sealing and safety, sealing plates 1.4 are carefully positioned on both sides of the first housing 1, effectively preventing debris from entering. In the design of the cable passage 6 of the first housing, we have specially designed a limiting edge 6.1, a locking hole 6.2, and multiple cable cover positioning holes 6.3. These designs work perfectly with the locking structure 5.2, locking structure 5.3, and cable cover positioning post 5.1 of the cable passage 5 to ensure that the cable passage 5 is securely connected to the first housing 1, effectively preventing movement or detachment and further protecting the power cord. The cable cover hole 5.1 on the cable passage 5 facilitates the passage of the power cord, while the locking structure 5.3 adopts a petal-shaped design, which not only facilitates installation but also has a backstop structure 5.4 at its top, thereby ensuring a secure connection between the cable passage 5 and the first housing 1 and further improving the stability of the connection. The housing connecting base 2 also has a base cable passage 2.4 corresponding to the cable distribution structure 4, which allows the power cord to smoothly pass through the cable end 3 on the table and enter the cable distribution structure from the housing connecting base 2. In addition, by designing the first housing socket panel 1.1 on both sides of the partition groove 7, the desktop power supply method is more flexible and diverse, meeting various usage needs. The desktop cabling structure in this embodiment, through its ingenious design, not only makes the desktop tidier and improves the utilization of workspace, but also greatly enhances cable management efficiency and ease of use. Furthermore, by strengthening cable isolation and improving internal sealing, it further enhances safety and stability in use.

[0044] Example 4.

[0045] A desktop cable management structure includes a first housing 1 and a housing connector 2 connected to the first housing 1. The first housing 1 has a cable guide end 3; the cable guide end 3 has a cable management structure 4; the cable management structure 4 includes a cable guide opening 6 in the first housing and a dividing groove 7. The connection between the first housing 1 and the housing connector 2 provides a stable structure. The cable guide end 3 provides a passage for power cords, effectively organizing cables on the desktop, making the desktop tidier, improving workspace utilization, and enhancing cable management efficiency and ease of use. The cable management structure 4 helps manage cables, ensuring orderly arrangement and reducing tangled cable situations. The dividing groove 7 ensures that each cable on the desktop has its own passage, enhancing cable isolation. The housing connector 2 has a base cable passage 2.4 corresponding to the branch cable structure 4. The first housing 1 has a first housing socket panel 1.1, which is located on both sides of the partition groove 7. The base cable passage 2.4 allows the power cord to pass through the housing connector 2 from the cable passage end 3 on the table. By designing the first housing socket panel 1.1 on both sides of the partition groove 7, the power supply method on the desktop is more flexible and meets different usage needs. The housing connector 2 is connected to the first housing 1 on one side and to the second housing 8 on the other side. The first housing 1 has a housing mounting limiting edge 1.2 on the side connected to the housing connector 2. The housing mounting limiting edge 1.2 has 8 connecting holes 1.3, which are threadedly connected to the housing connector 2 to enhance the stability of the overall structure of this utility model. The housing connector 2 connects to the first housing 1 on one side and the second housing 8 on the other side. The first housing 1 has a housing mounting limiting edge 1.2 on one side of the housing connector 2, and a connecting hole 1.3 is provided on the housing mounting limiting edge 1.2. The connecting hole 1.3 is threadedly connected to the housing connector 2, enhancing the overall structural stability of this utility model. The second housing 8 has several desktop mounting structures 9 on both sides, and a second housing insertion panel 8.1 at the bottom. The housing connector 2 has a latch 2.2 at its connection with the second housing 8. The desktop mounting structures 9 facilitate users in fixing this utility model to a desktop, simplifying the installation method and improving installation efficiency. The latch 2.2 ensures a secure connection between the second housing 8 and the housing connector 2. The desktop mounting structures 9 have several anti-slip strips 9.1, arranged in descending order of width from the end closest to the housing connector 2 to the end furthest from the housing connector 2. In this embodiment, the socket module is only provided on both sides of the housing connector 2, and the second housing 8 is not provided with the socket module, which helps to reduce costs while maintaining the simplicity and aesthetics of the desktop wiring structure.

[0046] 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 wiring structure, characterized in that, Includes a first housing (1) and a housing connector (2) connected to the first housing (1), wherein the first housing (1) is provided with a wire guide end (3); The wire-passing end (3) is provided with a wire-splitting structure (4); The branch structure (4) includes a first housing wire passage (6) and a partition groove (7).

2. The desktop wiring structure according to claim 1, characterized in that, The housing connector (2) is provided with a base cable passage (2.4) corresponding to the branch structure (4), and the first housing (1) is provided with a first housing socket panel (1.1), which is located on both sides of the partition groove (7).

3. The desktop wiring structure according to claim 1, characterized in that, The first housing (1) has sealing plates (1.4) on both sides. The wire passage (6) of the first housing has a limiting edge (6.1) and a locking hole (6.2). A plurality of wire cover positioning holes (6.3) are provided between the limiting edge (6.1) and the locking hole (6.2).

4. A desktop wiring structure according to claim 1 or 2, characterized in that, The housing connector (2) is connected to the first housing (1) on one side and to the second housing (8) on the other side. The first housing (1) is provided with a housing mounting limiting edge (1.2) on the side connected to the housing connector (2). The housing mounting limiting edge (1.2) is provided with several connecting holes (1.3).

5. A desktop wiring structure according to claim 1 or 2, characterized in that, The housing connector (2) is provided with a plurality of socket module connectors (10), the socket module connectors (10) including a first housing socket module connector (10.1) and a second housing socket module connector (10.2).

6. A desktop wiring structure according to claim 4, characterized in that, The second housing (8) has several desktop mounting structures (9) on both sides, and the bottom of the second housing (8) has a second housing socket panel (8.1). The housing connector (2) has a latch (2.2) at the connection with the second housing (8).

7. A desktop wiring structure according to claim 1, 2, or 3, characterized in that, The first housing (1) is connected to the wire cover (5). The wire cover (5) is provided with a locking structure (5.2) and a locking structure (5.3). A plurality of wire cover positioning posts (5.1) are provided between the locking structure (5.2) and the locking structure (5.3).

8. A desktop wiring structure according to claim 6, characterized in that, The desktop mounting structure (9) is provided with a number of anti-slip strips (9.1), which are arranged in descending order of width from one end near the housing connector (2) to the other end away from the housing connector (2).

9. A desktop wiring structure according to claim 1 or 2, characterized in that, The housing connector (2) is provided with an overload protector mounting base (2.1), and the housing connector (2) is provided with several desktop fixing holes (2.3), and several reinforcing ribs (2.5) are provided around the desktop fixing holes (2.3).

10. A desktop wiring structure according to claim 7, characterized in that, The wire cover (5) is provided with a wire cover hole (5.5), the locking structure (5.3) is designed in a petal shape, and the top of the locking structure (5.3) is provided with a backstop structure (5.4).

Citation Information

Patent Citations

  • Desktop socket and desktop wire duct

    CN216450897U