Multi-directional network signal socket

By designing a multi-directional network signal socket, using adjustable movable covers and switch gates, the problems of fixing the outgoing direction and electromagnetic wave scattering in the prior art are solved, and construction convenience and network transmission speed are improved.

CN120016197APending Publication Date: 2025-05-16JYH ENG TECH
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Patent Information

Application Number
CN202311519778.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-15
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

The outlet direction of existing network signal sockets is fixed, which makes it difficult for construction personnel to operate flexibly in a tight space environment, and frequent bending will lead to electromagnetic wave scattering, reducing network transmission speed.

Method used

A multi-directional network signal socket is designed, using a movable cover that can be opened and closed and buckled switch gate, and providing multiple threading ports and covers, so that the network signal line can freely select the outgoing direction.

Benefits of technology

It greatly improves the operational convenience of on-site construction personnel, reduces electromagnetic wave scattering, and improves network transmission speed.

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Abstract

The invention discloses a multi-directional network signal socket. The multi-directional network signal socket comprises a socket body, a wire pressing cover plate, two movable covers and a switch gate, wherein the seat body is provided with a network connecting line jack and a containing space communicated with the network connecting line jack, eight puncture type terminals are symmetrically arranged in the seat body in rows, two pairs of pivoting parts are arranged outside the seat body to be movably pivoted with the two movable covers, and the line pressing cover plate presses a network signal line to be electrically conducted with the eight puncture type terminals. Each movable cover is provided with a first threading opening which is arranged on the left side face and the right side face of the base body respectively. According to the invention, a first buckling part at the edge of each movable cover is buckled with a pair of second buckling parts corresponding to the switch gate to form locking, and the switch gate is provided with a movable switch to link the pair of second buckling parts as a releasing means, so that the operation convenience is improved.
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Description

Technical Field

[0001] The present invention belongs to the field of continuous wall construction methods, and in particular relates to a multi-directional network signal socket, which has a pair of movable covers that can be opened and closed, and a switch gate that can buckle the two together, and each of the movable covers is provided with a first threading port and a first cover, and the switch gate is provided with a second threading port and a second cover, so that a network signal line connected to the signal socket can freely choose its outlet direction, greatly improving the operating convenience of on-site construction personnel. Background Art

[0002] In the past, after the installation of Keystone Jack type network signal sockets, the direction of the rear end outlet is mostly fixed in a single direction, and most of them are horizontally backward outlet. However, this outlet method often encounters that when the network signal socket is assembled in the wall panel and the box, its length is almost equal to the length from the panel to the bottom of the box, and the space is quite tight. For on-site construction personnel, they can only make a second choice and use the network signal line to connect from the left and right sides of the box. However, the network signal line must be bent in a 90-degree way without a curvature radius before being assembled into the network signal socket. According to the transmission theory in the electromagnetic wave theory, the smaller the curvature radius of the conductor, the more it will affect the rate of electromagnetic transmission and easily cause electromagnetic wave scattering. The current network signal line has 8 transmission cores inside. When bending, each core will generate electromagnetic wave scattering, causing the electromagnetic waves between each other to cross and reduce the network transmission rate.

[0003] Therefore, network signal sockets with direct side outlets have been developed to avoid the problem of bending wires, but different problems have also arisen, such as: when two network signal sockets are set side by side, the same outlet direction will be disturbed; if two network signal sockets are set side by side, and the openings of the two network signal sockets are facing two different directions, the network signal line will enter the box from the same side and exit from the same side. If the network signal socket with outlets in the other direction needs to be changed to the same side, the signal network line must be folded 180 degrees. The electromagnetic wave scattering caused by this is more likely to reduce the network transmission speed. This type of network signal socket is mostly used in two forms, such as assembly on a wall panel and a box. If it is used in a general computer room, it does not need to use the side outlet design, and it becomes impossible to share.

[0004] To address the above-mentioned deficiencies, U.S. Patent No. 7,967,642 discloses a connector for use in the communications field, comprising: a shell having a rectangular opening at one end thereof so that a matching connector can be inserted, a plurality of contacts that can be connected to a plurality of core wires in the connector, and a guide connected to the connector on the opposite side when the matching connector is inserted, the guide having three core wire openings arranged on an outer surface of the guide and exposed on an outer side of the connector away from the contacts, wherein the core wire openings face in different directions, and wherein the shell provides at least one rotating drive plate for pushing the guide toward the connector. U.S. Patent No. 8,376,779 discloses another type of connector in the field of communications, comprising: a housing, a plurality of contacts disposed in the housing and connectable to a core wire in the connector, a guide having a plurality of core wire openings disposed at the rear end of the housing, and a connector shielding device having an entry portion at the rear end of the connector and an arrangement of the openings on the guide, and an extension device at the entry portion and connected to the cable shielding of a cable, wherein the connector has at least three core wire openings, each of which is suitable for accommodating at least two core wires and is exposed to an outer side away from the connector at a point away from the contacts, and the core wire openings are disposed in at least three directions. Case No. 7,967,642 describes that there are outlet holes in three directions at the rear end, namely, the left and right sides and the rear end; Case No. 8,376,779 further describes that there are at least three outlet holes, and a housing with an electromagnetic wave shielding effect is provided. Although the disadvantages caused by the above-mentioned bending of the cable wires have been improved, these existing solutions only target the top, middle and bottom directions. However, when such network signal sockets are matched with panels and boxes, the line entry direction is not necessarily from the top and bottom of the network signal sockets. It may be from the left and right sides of the box. Even so, the same problem may still be encountered.

[0005] A multi-directional network signal socket comprises a base, a wire pressing cover plate, two movable covers and a switch gate. The base has a network connection line jack and a connected accommodation space, and eight piercing terminals are arranged symmetrically in a row inside the base, and two pairs of pivoting parts are arranged outside to movably pivot the two movable covers. The wire pressing cover plate presses a network signal line to form electrical conduction with the eight piercing terminals. Each of the movable covers is provided with a first threading port and is respectively arranged on the left and right sides of the base. The present invention utilizes a first buckle part on the edge of each movable cover to buckle with a pair of second buckle parts corresponding to the switch gate to form a lock. The switch gate is provided with a movable switch to link the pair of second buckle parts as a means of release to improve the convenience of operation. Summary of the invention

[0006] The purpose of the present invention is to provide a multi-directional network signal socket, which has a pair of movable covers that can be opened and closed, and a switch gate that can buckle the two together, and each of the movable covers is provided with a first threading port and a first cover, and the switch gate is provided with a second threading port and a second cover, so that a network signal line connected to the signal socket can freely choose its outlet direction, thereby greatly improving the operating convenience of on-site construction personnel.

[0007] To achieve the above-mentioned purpose, the present invention provides a multi-directional network signal socket for installation in a wall panel or a box, which comprises: a seat body, which is shaped as a rectangular structure corresponding to the wall panel or the box, and one end of the seat body has a network connection line jack, and the other end forms a receiving space, so that the network connection line jack is connected to the receiving space, the interior of the receiving space is provided with 8 piercing type terminals corresponding to multiple core wires of a network signal line, and the 8 piercing type terminals are symmetrically arranged in a row, and the outside of the seat body is provided with two pairs of pivot parts; a wire pressing cover plate, which is installed in the receiving space, and after the wire pressing cover plate is installed, the multiple core wires can be pressed downward evenly to form electrical conduction with the 8 piercing type terminals; two movable covers, each of which has a pivot hole on both sides corresponding to the pair of pivot parts, so as to allow the movable cover to be inserted into the socket. The two movable covers are respectively movably pivoted on the base body, so that the two movable covers can form an active state that can be expanded outward or closed inward, and each movable cover is provided with a first threading port corresponding to the network signal line, and a first cover is provided on each first threading port, and any first cover can be removed to allow the network signal line to pass through, and each movable side of the movable cover is respectively provided with a first buckle part, so that the two first buckle parts are opposite to each other; and a switch gate, which is provided with a pair of second buckle parts corresponding to the two movable covers, and the switch gate is used to buckle and fix the positions of the two movable covers to form a closed locking state, and a movable switch is provided on one side of the switch gate, and the movable switch links the pair of second buckle parts, and a second threading port is provided on the front of the switch gate, and a second threading port is provided on the second threading port.

[0008] In one embodiment, the surface of the base of the present invention is provided with a buckle block and a hook corresponding to the wall panel or box, so that the buckle block and the hook are respectively provided on two opposite surfaces of the base, so that it can be stably and quickly installed in the wall panel or box. In addition, each first cover is connected to each first threading port by a plurality of first connecting parts, and the second cover is connected to the second threading port by a plurality of second connecting parts; and one end of the second cover is provided with a wire support sheet corresponding to the plurality of first threading ports to support the network signal line passing through any of the first threading ports, and one side of the wire support sheet forms a curved surface facing the plurality of first threading ports.

[0009] In another embodiment, the top of the wire pressing cover plate of the present invention is provided with a plurality of supporting parts, and a plurality of arc-shaped supporting surfaces are provided at corresponding positions on the inner surfaces of the two movable covers, so that when the two movable covers are closed inward, the wire pressing cover plate is driven to evenly press the multiple core wires to form a fixed state. Furthermore, the movable switch of the switch gate is in a U-shape corresponding to the second threading port, and two elastic elements are provided at both ends of the movable switch relative to the switch gate, and the pair of second buckle parts are provided on both sides of the movable switch to buckle and fix the two first buckle parts of the two movable covers to form a locked state. In addition, the first buckle part is a buckle block, and the second buckle part is a hook, or the first buckle part is a hook, and the second buckle part is a buckle block. In addition, the arrangement direction of the 8 piercing type terminals is arranged parallel to the direction of the first threading port of the movable cover. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 It is a three-dimensional exploded view of a preferred embodiment of the present invention.

[0011] Figure 2 This is a three-dimensional appearance diagram of a preferred embodiment of the present invention after assembly.

[0012] Figure 3 It is a partial cross-sectional view of a preferred embodiment of the present invention when buckled.

[0013] Figure 4 Schematic diagram of the state of the preferred embodiment of the present invention during operation (I).

[0014] Figure 5 This is a schematic diagram of the state of the preferred embodiment of the present invention during operation (II).

[0015] Figure 6 It is a three-dimensional exploded view of another preferred embodiment of the present invention.

[0016] Figure 7 It is a partial cross-sectional view of another preferred embodiment of the present invention when it is buckled.

[0017] Explanation of the reference numerals: 1-multi-directional network signal socket; 11-base; 111-network connection cable jack; 112-accommodation space; 113-piercing terminal; 114-pivoting portion; 115-buckle block; 116-hook; 12-wire pressing cover; 121-supporting portion; 13-movable cover; 131-pivoting hole; 132-first threading port; 133-first sealing cover; 1331-first connecting portion; 134-first buckling portion; 135-arc-shaped top supporting surface; 14-switch gate; 141-second buckling portion; 142-movable switch; 1421-elastic element; 143-second threading port; 144-second sealing cover; 1441-second connecting portion; 145-wire supporting sheet; 2-wall panel or box; 3-network signal cable; 31-core wire. DETAILED DESCRIPTION

[0018] In order to clearly understand the content of the present invention, please refer to the following description with the accompanying drawings.

[0019] See also Figure 1 to Figure 3 ,and Figure 4-5 , respectively, a stereoscopic exploded view of a preferred embodiment of the present invention, a stereoscopic appearance view after assembly, a partial cross-sectional view when fastened, and schematic views of various states when it is in operation. As shown in the above figures, the multi-directional network signal socket 1 of the present invention includes a base 11, a wire pressing cover plate 12, two movable covers 13 and a switch gate 14, which are used to be installed in a wall panel or box 2.

[0020] The shape of the base body 11 is a rectangular structure corresponding to the wall panel or box 2, and one end of the base body 11 has a network connection cable jack 111, and the other end forms a accommodating space 112, so that the network connection cable jack 111 is connected to the accommodating space 112, and the interior of the accommodating space 112 is provided with 8 piercing type terminals 113 corresponding to each core wire 31 of a network signal line 3, and the 8 piercing type terminals 113 are arranged symmetrically in a row, and two pairs of pivot parts 114 are provided on the outside of the base body 11; wherein, the surface of the base body 11 is provided with a buckle block 115 and a hook 116 corresponding to the wall panel or box 2, so that the buckle block 115 and the hook 116 are respectively arranged on two opposite surfaces of the base body 11.

[0021] The wire pressing cover plate 12 is installed in the accommodating space 112 . After installation, the wire pressing cover plate 12 can evenly press down each core wire 31 , so that each core wire 31 of the network signal line 2 is electrically connected with the eight piercing terminals 113 .

[0022] Each of the movable covers 13 is provided with a pivot hole 131 on both sides corresponding to the pair of pivot portions 114, so that the two movable covers 13 can be movably pivoted to the base body 11, so that the two movable covers 13 can form an active state that can be expanded outward or closed inward, and each of the movable covers 13 is provided with a first threading port 132 corresponding to the network signal line 2, and each of the first threading ports 132 is provided with a first cover 133, any of the first covers 133 can be removed to allow the network signal line 2 to pass through, and each of the movable sides of the movable cover 13 is provided with a first buckle portion 134, so that the two first buckle portions 134 are opposite to each other. As shown in the figure, each of the first covers 133 is connected to each of the first threading ports 132 by a plurality of first connecting portions 1331. It should be noted that in order to stably and conveniently assemble the various core wires 31 and the eight piercing type terminals 113, the present invention particularly provides a plurality of supporting portions 121 on the top of the wire crimping cover plate 12, and a plurality of arc-shaped supporting surfaces 135 at corresponding positions on the inner surfaces of the two movable covers 13. Therefore, when the two movable covers 13 are closed inwardly, the wire crimping cover plate 12 can be linked and pressed to evenly press the various core wires 31 to form a fixation. In addition, the arrangement direction of the eight piercing type terminals 113 is parallel to the direction of the first wire threading port 132 of the movable cover 13.

[0023] The switch gate 14 is provided with a pair of second buckle parts 141 corresponding to the two movable covers 13. The switch gate 14 can be used to buckle and fix the positions of the two movable covers 13 to form a closed locking state, and a movable switch 142 is provided on one side of the switch gate 14. The movable switch 142 links the pair of second buckle parts 141, and a second threading port 143 is provided on the front of the switch gate 14. A second cover 144 is provided on the second threading port 143, and a wire support sheet 145 is provided at one end of the second cover 144 corresponding to the plurality of first threading ports 132 to support the network signal line 2 passing through any of the first threading ports 143, and the second cover 144 is connected to the second threading port 141 by a plurality of second connecting parts 1441. It should be noted that one side of the wire support sheet 145 forms a curved surface corresponding to the plurality of first threading holes 143, and the movable switch 142 presents a U-shape corresponding to the second threading hole 143, and two elastic elements 1421 are provided at both ends of the movable switch 142 relative to the switch gate 14, and the pair of second buckle parts 141 are respectively provided at the ends of the two side edges of the movable switch 142 to buckle and fix the two first buckle parts 134 of the two movable covers 13 to form a locked state. In addition, according to the present invention, when in use, the first buckle part 134 and the second buckle part 141 have different forms, for example: the first buckle part 134 is a buckle block, and the second buckle part 141 is a hook, or the first buckle part 134 is a hook, and the second buckle part 141 is a buckle block.

[0024] In summary, the multi-directional network signal socket 1 of the present invention includes a base 11, a wire pressing cover plate 12, two movable covers 13 and a switch gate 14, using the two movable covers 13 that can be opened and closed, and the switch gate 14 that can be buckled together, and each of the movable covers 13 is provided with the first threading port and the first cover, and the switch gate is provided with the second threading port and the second cover, so that the network signal line 3 connected to the multi-directional network signal socket 1 can freely choose its outlet direction, thereby greatly improving the operating convenience of on-site construction personnel.

[0025] The above description is only a preferred embodiment of the present invention and is not intended to limit the scope of implementation of the present invention. Therefore, ordinary technicians with common knowledge in the relevant technical field, or equivalent or easy changes made by familiar with this technology, and equal changes and modifications made without departing from the spirit and scope of the present invention should all be included in the protection scope of the present invention.

Claims

1. A multi-directional network signal socket, used in a network system, and in a wall panel or box, characterized in that: include: A seat body, which is shaped as a rectangular structure corresponding to the wall panel or the box, and one end of the seat body has a network connection line jack, and the other end forms a receiving space, so that the network connection line jack is connected to the receiving space, and the interior of the receiving space is provided with 8 piercing terminals corresponding to multiple core wires of a network signal line, and the 8 piercing terminals are arranged symmetrically in a row, and the seat body is provided with two pairs of pivoting parts; A wire pressing cover plate is installed in the accommodating space. After the wire pressing cover plate is installed, it can evenly press the multiple core wires downward so that the multiple core wires of the network signal line are electrically connected with the eight piercing terminals; Two movable covers, each of which has a pivot hole on both sides corresponding to the pair of pivot parts, so that the two movable covers can be pivotally connected to the base body, so that the two movable covers can be opened outward or closed inward, and each of which has a first threading port corresponding to the network signal line, and each of which has a first cover, so that any of the first covers can be removed to allow the network signal line to pass through, and each movable side of the movable cover has a first buckle part, so that the two first buckle parts are opposite to each other; and A switch gate is provided with a pair of second buckle parts corresponding to the two movable covers. The switch gate is used to buckle and fix the positions of the two movable covers to form a closed locking state. A movable switch is provided on one side of the switch gate, and the movable switch links the pair of second buckle parts. A second threading port is provided on the front side of the switch gate, and a second sealing cover is provided on the second threading port.

2. The multi-directional network signal socket according to claim 1, characterized in that: The surface of the base body is provided with a buckle block and a hook corresponding to the wall panel or the box, so that the buckle block and the hook are respectively arranged on two opposite surfaces of the base body.

3. The multi-directional network signal socket according to claim 1, characterized in that: Each of the first covers is connected to each of the first threading ports via a plurality of first connecting portions, and the second covers is connected to the second threading ports via a plurality of second connecting portions.

4. The multi-directional network signal socket according to claim 1, characterized in that: One end of the second cover is provided with a wire support sheet corresponding to the plurality of first wire threading openings to support the network signal wire passing through any of the first wire threading openings.

5. The multi-directional network signal socket according to claim 1, characterized in that: One side of the wire support sheet corresponds to the plurality of first threading openings to form a curved surface.

6. The multi-directional network signal socket according to claim 1, characterized in that: The top of the wire pressing cover plate is provided with a plurality of supporting parts, and the corresponding positions of the inner surfaces of the two movable covers are provided with a plurality of arc-shaped supporting surfaces, so that when the two movable covers are closed inwardly, the wire pressing cover plate is driven to evenly press the multiple core wires to form a fixed shape.

7. The multi-directional network signal socket according to claim 1, characterized in that: The movable switch of the switch gate is in a U-shape corresponding to the second threading port, and at least one elastic element is provided at both ends of the movable switch relative to the switch gate, and the pair of second buckle parts are provided on both side edges of the movable switch to buckle and fix the two first buckle parts of the two movable covers to form a locked state.

8. The multi-directional network signal socket according to claim 7, characterized in that: The first buckle portion is a buckle block, and the second buckle portion is a hook.

9. The multi-directional network signal socket according to claim 7, characterized in that: The first buckle portion is a buckle hook, and the second buckle portion is a buckle block.

10. The multi-directional network signal socket according to claim 1, characterized in that: The arrangement direction of the eight piercing type terminals is parallel to the direction of the first threading opening of the movable cover.

Citation Information

Patent Citations

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