Communication network interface and method of use
By designing an information plug and installation slip sleeve compatible with standard RJ45 interfaces, combined with the hinged compression device and conductor insert, the problem of existing RJ45 connectors relying on professional tools to install, achieving rapid, stable and reusable installation of the network cable.
Patent Information
- Application Number
- CN202510366214.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2025-06-06
AI Technical Summary
The installation of existing RJ45 connectors relies on professional tools and cannot be reused, resulting in waste of resources and installation complexity.
A communication network interface is designed, including an information socket, an information plug and a slidable mounting sleeve, and the stable connection and rapid removal of the network cable is achieved through the hinged pressing device and the conductor insert.
High-precision line-sequence positioning and network cable installation can be completed without professional tools, ensuring the stability of physical connections and signal transmission quality, supporting non-destructive repeated disassembly and assembly, reducing resource waste and installation complexity.
Smart Images

Figure CN120109582A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of communication network interfaces, and in particular to a communication network interface and a use method thereof. Background Art
[0002] In order to achieve physical connection of the network, RJ45 connector, commonly known as crystal head, is usually used. It is the most common socket connector in Ethernet. RJ45 connector is widely used in network wiring environment to connect various network devices, such as switches, routers, computers, etc., to achieve network signal transmission.
[0003] The installation of existing RJ45 connectors relies on professional tools, such as network cable pliers: a special tool for cutting, stripping and crimping wires. Using network cable pliers, users need to insert the copper cores of eight colored network cables into the connector in a specific order according to the T568A or T568B port standard, and then crimp them. Not only that, traditional RJ45 crystal heads are usually disposable products. Once the wire sequence is pressed incorrectly or the connection is not reliable, users can only discard it and reinstall a new one. This design is not conducive to the recycling of resources. Summary of the invention
[0004] The present invention aims at the technical problems existing in the prior art and provides a communication network interface and a use method to solve the problem that the installation of the existing RJ45 connector relies on professional tools and cannot be reused.
[0005] The technical solution of the present invention to solve the above technical problems is as follows: In one aspect, a communication network interface is provided, the network interface comprising: Information socket; An information plug, wherein a clamping device is hingedly connected to the information plug; and A mounting sleeve slidably mounted on the information plug; When the installation sleeve slides toward the front end of the information plug, the pressing device presses the four twisted pairs of the network cable; When the installation sleeve slides away from the front end of the information plug, the pressing device releases the four twisted pairs of the network cable.
[0006] Furthermore, eight pressure pins are provided at the bottom of the information socket, and the displacement direction of the pressure pins is perpendicular to the port plane of the information socket.
[0007] Furthermore, eight conductor plugs are installed in the information plug, and the front end and bottom of the conductor plugs are exposed outside the information plug, forming a front end gold finger area and a bottom gold finger area respectively; When the information plug is inserted into the information socket, the front gold finger area squeezes the pressure pin; When the information plug is pulled out of the information socket, the restoring force of the pressing pin resists the information plug and pops outward.
[0008] Furthermore, the information plug is provided with a wiring cavity, and a corner of the conductor plug is exposed in the wiring cavity; A wire portion is provided in the wiring cavity, and eight wire holes are provided in the wire portion; A puncture cavity is provided between the wire portion and the conductor insert; The upper end of the conductor part is provided with seven partition plates to form eight partition compartments, and one end of the clamping device is hinged to a section of the partition plate away from the conductor plug.
[0009] Furthermore, one end of the wiring cavity and the partition plate is respectively provided with an axis groove; The shaft groove is circular and has an outward opening, the spacing of the openings is smaller than the diameter of the shaft groove, and the openings have rounded corners; One end of the clamping device is pressed through the opening and hinged in the plurality of shaft grooves.
[0010] Furthermore, the pressing device comprises: A rotating shaft hinged in the shaft groove; Eight pressing handles arranged in an array on the rotating shaft; and Pressing arms respectively mounted on the front ends of the pressing handles; The pressing handles are respectively accommodated in the partition compartments, and elastic sheets for supporting the pressing handles are installed between the pressing handles and the bottom of the partition compartments; The lower end of the pressing arm is provided with a spike portion for piercing the network cable, and the pressing arm is provided with a pressing angle that fits with a corner of the conductor plug.
[0011] Furthermore, the pressing handle is provided with distinguishing colors, and the distinguishing colors from left to right are respectively: white-green, green, white-orange, blue, white-blue, orange, white-brown and brown; or White and orange, orange, white and green, blue, white and blue, green, white and brown, and brown.
[0012] Furthermore, the installation sleeve is provided with a locking arm which is engaged with the information socket; Guide slide bars are respectively arranged on both sides of the installation sleeve cavity, and correspondingly, slide grooves are respectively arranged on both sides of the information plug; A card interface is provided at the front end of the slide groove, and a buckle is correspondingly provided at the front end of the guide slide bar.
[0013] Furthermore, a deformation portion is provided at the tail end of the installation sleeve, a through hole is provided in the deformation portion for the network cable to pass through, and a locking device is provided at the tail end of the deformation portion, and the locking device includes: A tapered threaded tube disposed at the rear end of the deformation portion, wherein the tapered threaded tube is provided with a plurality of notches; and a tapered threaded cap mounted on the tapered threaded pipe; When the tapered threaded cap is tightened along the tapered threaded tube, the tapered threaded tube locks the network cable to prevent the network cable from slipping out of the information plug.
[0014] On the other hand, a method for using the communication network interface as described above is provided, comprising the following steps: Strip the wires and separate them into twisted pairs. Strip the ends of the network cables slightly longer than the length of the information plug and separate the four twisted pairs. Shuttle the network cable and pass the stripped twisted pair through the tapered thread cap, tapered thread tube and installation sleeve in sequence; Trim flush, trim the twisted pair wires flush after shuttle; Match the colors to the holes, and insert the twisted pair wires into the wire holes according to the different colors on the pressing handle and push them to the end; The sleeve head is combined, and the installation sleeve is slowly slid onto the information plug. The front end of the installation sleeve squeezes the pressing handle to drive the spike part on the pressing arm to rotate close to the puncture cavity; The assembly is completed until the buckle of the guide slide is engaged with the card interface of the slide slot, at which time the spike pierces the twisted pair, and the pressing angle of the pressing arm fits with a corner of the conductor plug; Lock the network cable, tighten the tapered thread cap along the tapered thread tube until the inner wall of the tapered thread tube locks the network cable; For reuse, use a pointed tool to push the buckle of the guide slide bar to disengage it from the card interface of the slide slot, and remove the installation sleeve. During the process, the elastic sheet recovers to push the pressing handle to rotate, and the spiked part releases the twisted pair cable. Pull out the twisted pair cable and remove the network cable. The information plug and the installation sleeve can be reused.
[0015] The beneficial effects of the present invention are: The present invention simplifies the operation process of stripping, twisting and crimping network cables through the structural design of the information plug and the installation sleeve, while being compatible with the standard RJ45 interface. Ordinary users can complete high-precision line sequence positioning without professional tools, and at the same time ensure the stability of the physical connection through multiple locking mechanisms, taking into account both installation efficiency and signal transmission quality, and is suitable for large-scale network rapid deployment scenarios.
[0016] Furthermore, the use of stepped guide grooves and color-coded markings complies with the 568A and 568B standards for network cable installation, transforming key steps such as twist control and cable sorting that rely on experience into standardized operations, greatly reducing the requirements for professional skills of construction personnel. With the reversible locking mechanism design, it supports non-destructive repeated disassembly and assembly, reducing interface losses caused by misoperation.
[0017] Furthermore, when the installation sleeve slides away from the front end of the information plug, the clamping device releases the four pairs of twisted wires of the network cable; the network cable can be easily installed and removed without the need for professional tools, which not only improves the convenience of operation, but also makes the network interface reusable and saves resources. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a structural diagram of an information socket; Figure 3 The assembly diagram of the information plug and the installation sleeve Figure 1 ; Figure 4 The assembly diagram of the information plug and the installation sleeve Figure 2 ; Figure 5 The overall structure of the information plug is shown in FIG. Figure 1 ; Figure 6 The overall structure of the information plug is shown in FIG. Figure 2 ; Figure 7 is a top view of the information plug; Figure 8 for Figure 7 Sectional view at "AA" in the figure; Fig. 9 This is a disassembly diagram of the information plug; Fig.10 for Fig. 9 A partial enlarged view of the area "B" in the middle; Fig.11 It is a partial structural diagram of the information plug; Fig.12 This is a schematic diagram of the overall structure of the installation sleeve; Fig.13 A flow chart of a method for using a communications network interface.
[0019] In the accompanying drawings, the components represented by the reference numerals are listed as follows: 1. Information socket; 11. Press needle; 2. Information plug; 21. Conductor plug; 210. Front gold finger area; 211. Bottom gold finger area; 22. Wiring cavity; 220. Wire part; 221. Wire hole; 222. Puncture cavity; 223. Partition plate; 224. Partition compartment; 225. Axis groove; 2250. Opening; 23. Slide groove; 230. Card interface; 3. Clamping device; 31. Rotating shaft; 32. Pressing handle; 33. Pressing arm; 330. Spike portion; 331. Pressing angle; 34. Elastic sheet; 4. Install the sliding sleeve; 41. Locking arm; 42. Guide slide; 420. Buckle; 43. Deformation portion; 44. Locking device; 440. Tapered threaded tube; 441. Notch; 442. Tapered threaded cap. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical scheme and advantages of the present invention clearer, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements with the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention. In addition, it should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0021] In the description of the present invention, it is necessary to understand that the terms "length", "width", "up", "down", "left", "right", "horizontal", "top", "bottom", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention 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 therefore cannot be understood as a limitation on the present invention.
[0022] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.
[0023] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or mutual communication; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0024] The disclosure below provides many different embodiments or examples for realizing different structures of the present invention. In order to simplify the disclosure of the present invention, the components and settings of specific examples are described below. Of course, they are merely examples, and the purpose is not to limit the present invention. In addition, the present invention may repeat reference numbers and / or reference letters in different examples, and such repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present invention provides examples of various specific processes and materials, but those of ordinary skill in the art may be aware of the application of other processes and / or the use scenarios of other materials.
[0025] The present invention provides the following preferred embodiments: Example 1, reference Figure 1 As shown, this embodiment provides a communication network interface, including an information socket 1 and an information plug 2, wherein the information plug 2 is designed with a clamping device 3, and the clamping device 3 is connected to the information plug 2 through a hinge mechanism, and the movable installation sleeve 4 is set to be able to slide along the information plug 2 to operate the clamping device 3 accordingly; when in use, the user first slides the installation sleeve 4 along the information plug 2 to the front end, and this action triggers the operation of the clamping device 3, causing it to clamp the four pairs of twisted pairs of the network cable passing through the plug, and the clamping action ensures the stability of the twisted pairs and the integrity of the signals during the operation of the communication network interface, and replaces the network cable pliers, reducing the professional level of network cable installation.
[0026] Furthermore, when the connected network cable needs to be released or reconfigured, the user slides the installation sleeve 4 away from the front end of the information plug 2. This simple reverse action activates the release mechanism of the clamping device 3, thereby releasing the clamping effect on the twisted pair. It should be understood that this design allows the user to easily install and remove the network cable without the need for professional tools, which not only improves the convenience of operation, but also increases the reusability of network interface components.
[0027] It can be understood that the cooperation between the mounting sleeve 4 and the clamping device 3 provides a quick and effective assembly and disassembly solution for the communication network interface. Through the design of this embodiment, the user can quickly, conveniently and safely complete the connection and disassembly of the network cable, and this user-friendly design makes the communication network interface of the present invention more attractive, especially suitable for application scenarios that require frequent replacement or maintenance of cables; in addition, the high reusability of the interface means that the generation of electronic waste can be reduced, which is beneficial to environmental protection. Through the design of the communication network interface of this embodiment, rapid deployment and maintenance of the network becomes possible, providing a new and convenient connection tool for the construction of modern communication networks.
[0028] Example 2, reference Figure 2 As shown, unlike the traditional RJ45 socket with pins on the side, in this embodiment, eight pressure pins 11 are designed on the inner bottom of the information socket 1. The characteristic of these pressure pins 11 is that their displacement direction is perpendicular to the port plane of the information socket 1. This structure ensures a stable connection between the pressure pins 11 and the twisted pair cables in the information plug 2. Each pressure pin 11 corresponds to a line, and when the information plug 2 is inserted into the socket, the pressure pin 11 is immediately pressed down to form a stable signal connection.
[0029] It should be understood that the rational design of the pressure pin 11 not only affects the stable transmission of the signal, but also is related to the reliability of the connection. The precise contact between the pressure pin 11 and the gold finger area of the information plug 2 ensures the lossless transmission of the electrical signal. In addition, when the information plug 2 needs to be pulled out from the information socket 1, these movable pressure pins 11 can automatically release and push the information plug 2 to pop out, and the information plug 2 can be pulled out without too much force. This greatly simplifies the operation process in actual applications, especially for application scenarios where the locking spring of the crystal head is broken.
[0030] It can be understood that the design using the movable pressure pin 11 improves the ease of use of the interface, and also makes maintenance and troubleshooting easier, because the user can effortlessly connect and disconnect the connector. The movable pressure pins 11 used in this embodiment not only make the product more durable and have a longer service life, but also further reduce maintenance costs and complexity; in addition, it is suitable for occasions that require frequent plugging and unplugging, and can improve the stability and reliability of the entire network system; through this design, the communication network interface of this embodiment not only optimizes the traditional connection method, but also brings a better user experience to users.
[0031] Example 3, reference Figures 1 to 4As shown, in this embodiment, the communication network interface further improves its connection mechanism. In specific implementation, eight conductor plugs 21 are installed inside the information plug 2. The front end and bottom of these conductor plugs 21 are designed to be exposed outside the plug, respectively constituting the front end gold finger area 210 and the bottom gold finger area 211.
[0032] Furthermore, during the process of the information plug 2 being inserted into the information socket 1, the front gold finger area 210 actively contacts the pressure pin 11 of the information socket 1 and applies a squeezing force to the pressure pin 11 to ensure that both parties can establish a stable and firm electrical signal connection. It is worth noting that according to the records of Example 2, the contact mechanism between the front gold finger area 210 and the pressure pin 11 not only provides a stable connection and maintains the complete transmission of the signal, but also allows the information plug 2 to be easily inserted and unplugged. When the information plug 2 is unplugged from the socket, the restoring force of the pressure pin 11 interacts with the gold finger area, allowing the plug to pop out when it is subjected to less resistance, thereby simplifying the unplugging process without affecting the long-term durability of the connector and the interface.
[0033] It should be understood that the gold finger area 211 at the bottom of the information plug 2 is designed to achieve the function of adapting to the traditional RJ45 socket. This design not only maintains compatibility, but also facilitates users to continue to use existing network devices and accessories.
[0034] The design of the conductor plug 21 in this embodiment not only ensures compatibility with traditional equipment, but also provides a more convenient user experience and a more stable transmission performance in combination with the design of the pressure pin 11. The communication network interface of this embodiment optimizes the user's operation of plugging and unplugging the plug, and through this sophisticated interface design, more rigorous signal transmission is achieved, which helps to improve the reliability of the entire network system.
[0035] Example 4, reference Figures 5 to 8 As shown, in the communication network interface of this embodiment, the information plug 2 is designed to have a wiring cavity 22 to achieve effective connection with the transmission network cable. In this wiring cavity 22, a corner of each conductor plug 21 is designed to be exposed inside the wiring cavity 22 so as to form an electrical connection with the twisted pair in the transmission network cable.
[0036] Furthermore, the wiring cavity 22 is provided with a wire portion 220 having eight wire holes 221 for accommodating twisted pair wires of different colors respectively, and a piercing cavity 222 is provided between the wire portion 220 and the conductor plug 21, the purpose of which is to achieve direct contact with the inner core of the twisted pair wire by piercing the insulating layer without stripping off the insulating layer of the twisted pair wire, thereby completing the connection.
[0037] It should be understood that in order to achieve neat arrangement and fixation of the wires, seven partition plates 223 are installed on the upper end of the wire portion 220, and eight partition compartments 224 are formed between these partition plates 223. Such a design not only helps to prevent interference in the distribution of the wires, but also ensures that each wire is accurately docked with the corresponding plug. One end of the clamping device 3 is hinged to the part of the partition plate 223 away from the conductor plug 21. Through this hinged method, the twisted pair can be guaranteed to form a stable contact with the conductor plug 21 under the action of the clamping device 3, and at the same time, the layout of the wires is maintained and the loosening or falling off of the wires are prevented during the plugging and unplugging process.
[0038] It can be understood that the communication network interface provided in this embodiment not only ensures the reliability of electrical connection, but also simplifies the wiring operation process. By using the piercing cavity 222 design that does not require wire stripping, it reduces the dependence on professional tools and provides users with a convenient and efficient on-site installation or maintenance solution. Through this embodiment, users can quickly and correctly complete the connection between the cable and the information plug 2, thereby ensuring high-speed transmission and long-term stability of the network connection.
[0039] Example 5, reference Figure 8 , Fig. 9 and Fig.11 As shown, the present embodiment further optimizes the structure of the wiring cavity 22 and the partition plate 223 to enhance the convenience of network cable installation and fixation; specifically, one end of the wiring cavity 22 and the partition plate 223 are provided with an axial groove 225 specially designed for the clamping device 3, and these axial grooves 225 are circular and have outward openings 2250 so as to accommodate one end of the clamping device 3 while ensuring its reliable fixation when hinged.
[0040] It should be understood that the information plug 2 is usually formed as a whole by injection molding, so it has a certain degree of elasticity; the spacing of the openings 2250 is designed to be smaller than the diameter of the shaft groove 225. The purpose of this design is to facilitate the extrusion of the end of the clamping device 3 and to pass through these openings 2250 for hinged connection, and after the clamping device 3 is installed, the inner diameter of the shaft groove 225 and the end of the clamping device 3 can be closely matched to ensure the fixity and reliability of the installation. In order to prevent the clamping device 3 from being damaged when it is squeezed and passes through the opening 2250, the opening 2250 of the shaft groove 225 has rounded corners, which reduces the wear on the clamping device 3 and reduces the difficulty of installing the clamping device 3.
[0041] It can be understood that this embodiment realizes stable fixation and rapid installation of the network cable by designing the shaft groove 225 to cooperate with the clamping device 3. This structure significantly reduces the difficulty of operation during wiring and improves installation efficiency. The clamping device 3 is fixed in the shaft groove 225 provided by the wiring cavity 22 and the partition plate 223 through a hinge at one end. It can provide uniform and stable pressure when connecting the twisted pair cables, which not only ensures the reliable connection of the twisted pair cables, but also avoids damage to the twisted pair cables. Through this embodiment, a communication network interface solution that is easy to operate and can ensure a firm connection is realized, which improves the ease of use and efficiency of the interface in practical applications.
[0042] Example 6, reference Fig. 9 and Fig.10 As shown, in this embodiment, the clamping device 3 is designed as a precision mechanical component for achieving stable connection and puncture operation of the network cable. Specifically, the clamping device 3 mainly includes a rotating shaft 31, a pressing handle 32 and a pressing arm 33. The rotating shaft 31 is hinged in the shaft groove 225 at the end of the wiring cavity 22 and the partition plate 223, so that the clamping device 3 can be easily flipped around the rotating shaft 31.
[0043] Furthermore, eight pressing handles 32 are installed in an array on the rotating shaft 31, and each pressing handle 32 corresponds to a position in the partition chamber 224. In order to ensure the reset of the pressing handle 32 and provide necessary operational feedback force, an elastic sheet 34 is installed between each pressing handle 32 and the bottom of the corresponding partition chamber 224. These elastic sheets 34 can effectively lift the pressing handle 32 to ensure that the pressing handle 32 can automatically return to the initial position in the absence of external force, thereby preparing for reuse.
[0044] Furthermore, a pressing arm 33 is fixed at the front end of each pressing handle 32, and a spike portion 330 is provided at the lower end of each pressing arm 33 for piercing the outer insulation of the twisted pair during the pressing operation and achieving physical electrical contact with the inner core of the twisted pair; in addition, the pressing arm 33 is designed with a pressing angle 331 that fits with a corner of the conductor plug 21 to ensure reliable connection between the conductor plug 21 and the twisted pair during the pressing process.
[0045] It can be understood that the clamping device 3 provided in this embodiment realizes the integrated operation of piercing and clamping the network cable through the interaction of the rotating shaft 31, the pressing handle 32 and the pressing arm 33, which greatly reduces the complexity of the traditional network cable connection operation; through this embodiment, the user can efficiently complete the connection between the network cable and the communication network interface, and at the same time, the solution of this embodiment also ensures the stability and reliability of the transmission performance.
[0046] Example 7, reference Figure 1 , Figure 5 and Fig. 9As shown, for non-professionals, due to the various colors of network cables and the lack of clear color line distinction indicators, ordinary users face a high professional threshold when installing crystal heads, which can easily lead to wiring errors, resulting in unstable network connections or complete inability to communicate. For these users, the installation process of the RJ45 connector is complicated, cumbersome, error-prone, and time-consuming.
[0047] In order to further improve the user's operating convenience and the practicality of the interface, this embodiment sets distinguishing colors for easy identification on each pressing handle 32. The design of these distinguishing colors is intended to simplify the identification and matching of color sequence during the installation of the network cable and reduce the possibility of wiring errors.
[0048] When implementing this embodiment, the color sequence of the pressing handle 32 is designed to be white-green, green, white-orange, blue, white-blue, orange, white-brown and brown from left to right, or white-orange, orange, white-green, blue, white-blue, green, white-brown and brown. It can be understood that two color sequences can also be set at the same time for customer selection. These two color arrangements correspond to two commonly used cable wiring standards: T568A and T568B. The use of this colored design of the pressing handle 32 can not only help technicians quickly identify and correctly connect the network cables of the corresponding colors, but also effectively reduce signal interference and transmission performance degradation caused by incorrect color sequence.
[0049] It should be understood that the operator can select a communication network interface with a corresponding color sequence according to the required standards to meet different application scenarios and technical requirements. By setting distinguishing colors, this embodiment can provide users with intuitive line sequence guidance, reduce the risk of misconnection during wiring, and thus improve the efficiency and safety of wiring operations.
[0050] This embodiment provides users with a solution for quickly and accurately completing network cable connections even in low light or complex on-site environments by setting a distinctive color that conforms to the standard color scheme on the pressing handle 32, thereby significantly improving the convenience and accuracy of wiring. Through this innovatively designed communication network interface, the time required for installation and maintenance is effectively reduced, while ensuring the transmission quality of the network.
[0051] Example 8, reference Figure 5 , Figure 6 , Fig. 9 , Fig.11 and Fig.12 As shown, according to the communication network interface recorded in this embodiment, in order to achieve stable and reliable connection between the information socket 1 and the plug, an installation sleeve 4 structure is designed, and the installation sleeve 4 has a locking function to ensure a stable fit between the information plug 2 and the information socket 1.
[0052] In this embodiment, the mounting sleeve 4 is designed with a locking arm 41 for engaging with the information socket 1. The locking arm 41 is designed to fix and maintain the position of the information plug 2 in the information socket 1 to avoid loosening due to external force or vibration, thereby ensuring the stability of connection and transmission.
[0053] Furthermore, in order to ensure the correct installation and guidance of the installation sleeve 4, guide slides 42 are respectively provided on both sides of the cavity of the installation sleeve 4. These guide slides 42 cooperate with the slide grooves 23 on both sides of the information plug 2, thereby ensuring convenient, fast and accurate connection.
[0054] Furthermore, the front end of the slide groove 23 is designed with a card interface 230, and the front end of the guide slide bar 42 is provided with a matching buckle 420. This corresponding design enables the installation sleeve 4 to be firmly connected to the information plug 2; it can be understood that the design of the installation sleeve 4 proposed in this embodiment helps to reduce damage caused by improper operation and improve the service life of the interface, and by unlocking the buckle 420 and the card interface 230, the information plug 2 and the installation sleeve 4 can be reused. Through this embodiment, not only a stable communication network interface can be obtained, but also the convenience of user operation and the efficiency of maintenance can be improved.
[0055] Example 9, reference Figure 3 , Figure 4 and Fig.12 As shown, this embodiment optimizes the design of the structure of the tail end of the installation sleeve 4 to ensure that the network cable is additionally fixed and protected during the connection process, thereby improving the reliability and stability of the entire interface, especially in long-term use or in harsh environments such as humidity and vibration.
[0056] When implementing this embodiment, a deformation portion 43 is designed at the tail end of the mounting sleeve 4. It can be understood that the deformation portion 43 can adapt to the bending deformation of the network cable, so that the network cable is not easily broken. A through hole is provided in the middle of the deformation portion 43 for the network cable to pass through, so that the network cable can pass smoothly and be connected to the information plug 2; in addition, a locking device 44 is further designed at the tail end of the deformation portion 43.
[0057] This locking device 44 includes a tapered threaded tube 440 located at the rear end of the deformation portion 43 and a tapered threaded cap 442 matched therewith. The tapered threaded tube 440 has a plurality of notches 441 along its exterior. These notches 441 allow the tube body to undergo slight deformation during the locking process, thereby clamping the network cable passing through the through hole.
[0058] Furthermore, when the user rotates and tightens the tapered threaded cap 442 along the tapered threaded tube 440, the tapered threaded tube 440 applies pressure to the network cable, thereby locking the network cable and ensuring that the network cable will not accidentally slip out of the information plug 2, which is conducive to the stable connection of the network cable.
[0059] It should be understood that, through the design of this embodiment, the combined use of the tapered threaded tube 440 and the tapered threaded cap 442 enables a quick and reliable network cable installation process, and the user only needs to simply tighten the tapered threaded cap 442 to ensure that the network cable is fixed in place without the need for additional complex operations, such as fixing with tape.
[0060] It can be understood that the locking device 44 described in this embodiment provides a sturdy and adjustable network cable locking mechanism. Through this embodiment, users can improve installation efficiency and long-term stable connection performance, which is especially suitable for network devices that need to be frequently plugged in or transported, and those that are used in environments with large physical displacement.
[0061] Embodiment 10: This embodiment provides a method for using the communication network interface of the present invention, so that the user can quickly and accurately complete the connection between the network cable and the information plug 2, while ensuring the stability and reusability of the connection.
[0062] refer to Fig.13 As shown, the method of use includes the following steps: S100, strip the wires and separate them into four twisted pairs. Strip the end of the network cable slightly longer than the length of the information plug and separate the four twisted pairs. S200, shuttle network cable, pass the stripped twisted pair through the tapered thread cap, tapered thread tube and installation sleeve in sequence; S300, trimming and flushing, trimming the twisted pair wires after shuttle; S400, insert the twisted pair wires into the wire holes according to the different colors on the pressing handle and push them to the end; S500, the sleeve head is combined, and the installation sleeve is slowly slid onto the information plug, and the front end of the installation sleeve squeezes the pressing handle to drive the spike part on the pressing arm to rotate close to the puncture cavity; S600, the assembly is completed until the buckle of the guide slide is engaged with the card interface of the slide slot, at which time the spike portion pierces the twisted pair, and the pressing angle of the pressing arm fits with a corner of the conductor plug; S700, lock the network cable, tighten the tapered thread cap along the tapered thread tube until the inner wall of the tapered thread tube locks the network cable; S800, reuse, use a pointed tool to push the buckle of the guide slide bar and the card interface of the slide slot to disengage, and remove the installation sleeve. During the process, the elastic sheet restores and pushes the pressing handle to rotate, the spiked part releases the twisted pair, pull out the twisted pair and remove the network cable, the information plug and the installation sleeve can be reused.
[0063] When implementing this method, the wires are first stripped and twisted. The user strips the end of the network cable to a length slightly longer than the information plug 2 and completely separates the four pairs of twisted wires. Furthermore, the user passes the stripped four pairs of twisted wires through the conical threaded cap 442 and the conical threaded tube 440 in sequence and guides them into the interior of the installation sleeve 4.
[0064] Furthermore, the user needs to trim the twisted pair cables to ensure that their ends are flat and consistent, and then insert each pair of twisted pair cables into the wire hole 221 and push them to the end of the hole according to the different color indications presented by the pressing handle 32 on the information plug 2.
[0065] Furthermore, after the twisted pair is placed in place, the installation sleeve 4 is slowly slid forward and covers the information plug 2. At this time, the front end of the installation sleeve 4 will squeeze the pressing handle 32, driving the spike portion 330 at the top of the pressing arm 33 to move toward the twisted pair until the spike portion 330 pierces the twisted pair. At the same time, the pressing angle 331 of the pressing arm 33 fits with a corner of the conductor plug 21, preparing for the next step of fixing the wire.
[0066] Further, the user rotates the tapered threaded cap 442 along the tapered threaded tube 440 and tightens it to lock the network cable. As the tapered threaded cap 442 is tightened, the tapered threaded tube 440 applies pressure to the network cable through its inner wall to firmly fix it in place.
[0067] It should be understood that when the information plug 2 needs to be reused, the user can use a pointed tool to lightly touch the buckle 420 at the front end of the guide slide 42 to release the lock of the card connection interface with the slide groove 23, and smoothly remove and install the slide sleeve 4. During this process, the elastic sheet 34 will restore its position and push the pressing handle 32 to rotate, thereby releasing the fixation of the twisted pair cable by the spiked portion 330. Finally, the user can easily pull out the twisted pair cable and remove the network cable in preparation for the next use.
[0068] It can be understood that the usage method of this embodiment not only simplifies the wiring operation between the network cable and the information plug 2, but also provides users with the options of quick release and reuse, thereby improving the convenience of use. Through this embodiment, users can efficiently complete the assembly and disassembly of the network cable, and can ensure the efficient use and maintenance of the communication network interface whether in a home, office or industrial environment.
[0069] The beneficial effects of the present invention are specifically embodied in that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A communication network interface, characterized in that: The network interface comprises: Information socket (1); An information plug (2), wherein a pressing device (3) is hingedly connected to the information plug (2); and A mounting sleeve (4) slidably mounted on the information plug (2); When the installation sleeve (4) slides toward the front end of the information plug (2), the clamping device (3) clamps the four twisted pairs of the network cable; When the installation sleeve (4) slides away from the front end of the information plug (2), the pressing device (3) releases the four twisted pairs of the network cable.
2. The communication network interface according to claim 1, characterized in that: Eight pressure pins (11) are provided at the inner bottom of the information socket (1), and the displacement direction of the pressure pins (11) is perpendicular to the port plane of the information socket (1).
3. The communication network interface according to claim 2, characterized in that: Eight conductor inserts (21) are installed in the information plug (2), and the front end and bottom of the conductor inserts (21) are exposed outside the information plug (2), forming a front end gold finger area (210) and a bottom gold finger area (211) respectively; When the information plug (2) is inserted into the information socket (1), the front gold finger area (210) presses the pressure pin (11); When the information plug (2) is pulled out of the information socket (1), the restoring force of the pressing pin (11) resists the information plug (2) and causes it to pop outward.
4. The communication network interface according to claim 3, characterized in that: The information plug (2) is provided with a wiring cavity (22), and a corner of the conductor plug (21) is exposed in the wiring cavity (22); A wire portion (220) is provided in the wiring cavity (22), and eight wire holes (221) are provided in the wire portion (220); A puncture cavity (222) is provided between the wire portion (220) and the conductor insert (21); Seven partition plates (223) are provided at the upper end of the conductor portion (220) to form eight partition compartments (224), and one end of the clamping device (3) is hinged to a section of the partition plate (223) away from the conductor plug (21).
5. The communication network interface according to claim 4, characterized in that: The wiring cavity (22) and one end of the partition plate (223) are respectively provided with an axis groove (225); The shaft groove (225) is circular and is provided with an outward opening (2250), the spacing of the openings (2250) is smaller than the diameter of the shaft groove (225), and the opening (2250) has rounded corners; One end of the clamping device (3) is squeezed through the opening (2250) and is hinged in the plurality of shaft grooves (225).
6. The communication network interface according to claim 5, characterized in that: The pressing device (3) comprises: A rotating shaft (31) hinged in the shaft groove (225); Eight pressing handles (32) arranged in an array on the rotating shaft (31); and Pressing arms (33) respectively mounted on the front ends of the pressing handles (32); The pressing handles (32) are respectively accommodated in the partition chambers (224), and elastic sheets (34) for lifting the pressing handles (32) are installed between the pressing handles (32) and the bottom of the partition chambers (224); The lower end of the pressing arm (33) is provided with a spike portion (330) for piercing the network cable, and the pressing arm (33) is provided with a pressing corner (331) that fits with a corner of the conductor plug (21).
7. The communication network interface according to claim 6, characterized in that: The pressing handle (32) is provided with distinguishing colors, and the distinguishing colors from left to right are respectively: white-green, green, white-orange, blue, white-blue, orange, white-brown and brown; or White and orange, orange, white and green, blue, white and blue, green, white and brown, and brown.
8. The communication network interface according to claim 1, characterized in that: The installation sliding sleeve (4) is provided with a locking arm (41) which is engaged with the information socket (1); Guide slide bars (42) are respectively provided on both sides of the cavity of the installation sleeve (4), and correspondingly, slide grooves (23) are respectively provided on both sides of the information plug (2); A card interface (230) is provided at the front end of the slide groove (23), and a buckle (420) is correspondingly provided at the front end of the guide slide bar (42).
9. The communication network interface according to claim 1, characterized in that: The rear end of the mounting sleeve (4) is provided with a deformation portion (43), a through hole for the network cable to pass through is provided in the deformation portion (43), and a locking device (44) is provided at the rear end of the deformation portion (43), and the locking device (44) comprises: a tapered threaded tube (440) provided at the rear end of the deformation portion (43), wherein the tapered threaded tube (440) is provided with a plurality of notches (441); and A tapered threaded cap (442) mounted on the tapered threaded tube (440); When the conical threaded cap (442) is tightened along the conical threaded tube (440), the conical threaded tube (440) locks the network cable to prevent the network cable from slipping out of the information plug (2).
10. A method for using the communication network interface according to any one of claims 1 to 9, characterized in that: The following steps are involved: Strip the wires and separate them into twisted pairs. Strip the end of the network cable to a length slightly longer than the length of the information plug (2), and separate the four twisted pairs. Shuttle the network cable, and pass the stripped twisted pair of cables through the tapered thread cap (442), the tapered thread tube (440) and the installation sleeve (4) in sequence; Trim flush, trim the twisted pair wires flush after shuttle; Match the colors to the holes, and insert the twisted pairs into the wire holes (221) according to the different colors on the pressing handle (32) and push them to the end; The sleeve head is combined, and the installation sleeve (4) is slowly slid onto the information plug (2), and the front end of the installation sleeve (4) squeezes the pressing handle (32) to drive the spike portion (330) on the pressing arm (33) to rotate close to the puncture cavity (222); The assembly is completed until the buckle (420) of the guide slide (42) is engaged with the engagement interface (230) of the slide groove (23), at which time the spike portion (330) pierces the twisted pair, and the pressing angle (331) of the pressing arm (33) is in contact with a corner of the conductor insert (21); To lock the network cable, tighten the tapered thread cap (442) along the tapered threaded tube (440) until the inner wall of the tapered threaded tube (440) locks the network cable; For reuse, a pointed tool is used to contact the buckle (420) of the guide slide bar (42) and the card interface (230) of the slide groove (23) to disengage the installation sleeve (4). During the process, the elastic sheet (34) is restored to push the pressing handle (32) to rotate, and the spike portion (330) releases the twisted pair. The twisted pair is pulled out and the network cable is removed. The information plug (2) and the installation sleeve (4) can be reused.