A six category non-shielded information module and network panel

By incorporating a cable threader and elastic clip design on the cable clamp cover, the problem of high rework rate in the installation of Category 6 unshielded information module network cables is solved, achieving stable electrical connection and high-quality core transmission.

CN116315820BActive Publication Date: 2026-02-06FEIXUNDA INVESTMENT XIAMEN
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Patent Information

Application Number
CN202310446571.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-24
Publication Date
2026-02-06
Estimated Expiration
2043-04-24

AI Technical Summary

Technical Problem

The existing Category 6 unshielded information modules have a high rework rate during network cable installation, mainly because the network cable cores may be damaged if they are not fully passed through the wire clamp cover and the wire clip terminals are not properly connected to the wire clamp cover.

Method used

A cable threader is installed on the cable clamp cover. The inlet end of the cable threader is smaller than the diameter of the network cable to ensure that the network cable core is completely passed through before connecting it to the cable clip. Combined with the elastic buckle and mounting groove design, it can be installed stably.

Benefits of technology

This reduces the rework rate of network cable installation, avoids damage to the wire core, and ensures the stability and quality of electrical connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of information module, and particularly relates to a category 6 unshielded information module and a network panel, the network panel comprising a panel and the category 6 unshielded information module, the panel having an assembly surface, the assembly surface being provided with a mounting groove, the category 6 unshielded information module being inserted into the mounting groove, the category 6 unshielded information module comprising a body and a wire pressing cover; the body comprising a wire clamping terminal, the wire pressing cover being provided with a wire clamping clamp for butt joint with the wire clamping terminal, the wire pressing cover being provided with a wire threading device, and a wire inlet end of the wire threading device being smaller in size than a diameter of a network cable. The present application can reduce the rework rate of installation between the network cable and the category 6 unshielded information module.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of information module, in particular to a six type non-shielded information module and a network panel. BACKGROUND

[0002] At present, the application of information technology is increasingly popular, and the rapid development of information technology has brought human society into a brand-new information age, which has had a profound impact on our production mode, lifestyle, learning mode and way of thinking. Information technology has swept the world with its extensive influence and great vitality, becoming the most brilliant, fastest developing, most widely and most profound science and technology field in the history of science and technology. Information technology will continue to change human society in the 21st century. Like all previous industrial revolutions, the information revolution originated from major technological innovations, which promoted the great progress of productivity. As we all know, the core of information technology is computer, and the use of computer requires network, so the information module used for network connection is also very important.

[0003] There are many existing six type non-shielded information modules, which generally include a wiring terminal, a cable clamping terminal and a cable pressing cover. However, there is a high rework rate in the installation of network cable and six type non-shielded information module. The main reasons are as follows: 1. It is difficult for the installer to control the length of the cable core of the network cable clamped in the cable clamping clamp of the cable pressing cover, and the cable core of the network cable is easily exposed outside because part of the cable core has not passed through the cable pressing cover; 2. In the process of butt joint of the cable clamping terminal and the cable pressing cover, the conductive cutter in the cable clamping terminal may cut off the cable core of the network cable or not completely break the contact between the insulating surface of the cable core and the copper wire. SUMMARY

[0004] The technical problem to be solved by the present application is to provide a six type non-shielded information module to reduce the rework rate in the installation of network cable and six type non-shielded information module.

[0005] In order to solve the above technical problems, the technical scheme adopted by the present application is as follows: a six type non-shielded information module, comprising a body and a cable pressing cover; the body comprises a cable clamping terminal, the cable pressing cover is provided with a cable clamping clamp for butt joint with the cable clamping terminal, the cable pressing cover is provided with a cable threading device, and the size of the wire inlet end of the cable threading device is smaller than the diameter of the network cable.

[0006] In order to solve the above technical problems, another technical scheme adopted by the present application is as follows:

[0007] A network panel, comprising a panel and a six type non-shielded information module according to any one of the above schemes, the panel has an assembly surface, the assembly surface is provided with a mounting groove, and the six type non-shielded information module is inserted into the mounting groove.

[0008] The beneficial effects of the present application are that: the threading device is additionally arranged on the wire pressing cover of the six types of non-shielded information module, after the installer passes the one end of the network cable stripped of the outer skin through the threading device and the wire pressing cover, the network cable can be continuously passed through the wire pressing cover according to the installation requirement, since the wire inlet end of the threading device is smaller than the diameter of the network cable, therefore, the cable body of the network cable is extruded by the threading device, so that the wire pressing cover can be tightly held on the cable body of the network cable, when the cable core of the network cable is clamped into the wire clamp by the installer, the wire pressing cover will not move on the network cable, thereby avoiding the situation that the cable core of part of the network cable does not pass through the wire pressing cover. It is helpful that the cable core of the network cable will not be damaged under repeated construction when the six types of non-shielded information module is installed to the network panel, so as to ensure the quality of the cable core transmission. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 It is a structure schematic view of a six types of non-shielded information module in the specific embodiment of the present application;

[0010] Figure 2 It is an explosion structure schematic view of a six types of non-shielded information module in the specific embodiment of the present application;

[0011] Figure 3 It is a structure schematic view of a wire pressing cover of a six types of non-shielded information module in the specific embodiment of the present application;

[0012] Figure 4 It is Figure 3 It is an enlarged view of A part of a wire pressing cover of a six types of non-shielded information module;

[0013] Figure 5 It is a structure schematic view of a gold pin and a conductive cutter installed on a PCB board of a six types of non-shielded information module in the specific embodiment of the present application;

[0014] Figure 6 It is a front view structure schematic view of a wire clamping terminal and a conductive cutter assembly of a six types of non-shielded information module in the specific embodiment of the present application;

[0015] Figure 7 It is a structure schematic view of a network panel in the specific embodiment of the present application;

[0016] REFERENCE SIGNS:

[0017] 1, body; 11, wire clamping terminal; 111, wire clamping groove; 12, wire terminal;

[0018] 2, wire pressing cover; 21, wire clamp;

[0019] 22, threading device; 221, fixed tube; 2211, first sliding piece; 222, movable tube; 2221, second sliding piece; 2222, limiting elastic sheet;

[0020] 3. Limiting member;

[0021] 4. Conductive cutter; 41. First skin breaking cutter; 42. Second skin breaking cutter;

[0022] 43. Connecting member; 431. First connecting arm; 432. Second connecting arm;

[0023] 5. Panel; 51. Accommodation groove;

[0024] 6. Elastic buckle;

[0025] 7-1. First gold needle; 7-2. Second gold needle; 7-3. Third gold needle; 7-4. Fourth gold needle; 7-5. Fifth gold needle; 7-6. Sixth gold needle; 7-7. Seventh gold needle; 7-8. Eighth gold needle;

[0026] 8-1. First installation straight line; 8-2. Second installation straight line; 8-3. Third installation straight line. DETAILED DESCRIPTION

[0027] To make the technical content of the present application, the purposes achieved and the effects clear, the following will be described in combination with the embodiments and the accompanying drawings.

[0028] However, the current network cable and category 6 unshielded information module installation has a high rework rate. The main reasons are as follows: 1. The installation personnel cannot grasp the length of the core of the network cable inserted into the wire clamping of the wire cover, and the core of the network cable is exposed outside; 2. In the process of connecting the wire clamping terminal and the wire cover, the conductive cutter in the wire clamping terminal cuts off the core of the network cable or does not completely break into the contact between the insulating skin and the copper wire.

[0029] Based on this, the present application provides a category 6 unshielded information module and a network panel, which can solve the problem of high rework rate in the installation of network cable and category 6 unshielded information module.

[0030] Please refer to Figure 7 As shown in the figure, in order to install the category 6 unshielded information module on the network panel, in one embodiment, the network panel includes a panel 5 and a category 6 unshielded information module, the panel 5 has an assembly surface, the assembly surface is provided with an accommodation groove 51, and the category 6 unshielded information module is inserted into the accommodation groove 51. Among them, the category 6 unshielded information module is provided with an elastic buckle 6, and the elastic buckle 6 abuts against the inner wall of the accommodation groove 51.

[0031] Please refer to Figures 1 to 3As shown, the six types of non-shield information modules include a body 1 and a wire pressing cover 2; the body 1 includes a wire clamping terminal 11, the wire pressing cover 2 is provided with a wire clamp 21 which is connected with the wire clamping terminal 11, and the wire pressing cover 2 is provided with a wire threading device 22, and the wire threading end of the wire threading device 22 is smaller than the diameter of the network cable. The wire threading device 22 is additionally arranged on the wire pressing cover 2, and after the installer passes the network cable stripped of the outer skin through the wire pressing cover 2 through the wire threading device 22, the network cable can continue to pass through the wire pressing cover 2 according to the installation requirements. Since the wire threading end of the wire threading device 22 is smaller than the diameter of the network cable, the cable body of the network cable is squeezed by the wire threading device 22, so that the wire pressing cover 2 can be tightly held on the cable body of the network cable, and when the installer clamps the core of the network cable into the wire clamp 21, the wire pressing cover 2 will not move on the network cable, thereby avoiding the situation that part of the core does not pass through the wire pressing cover 2. After the core of the network cable is clamped into the wire clamp 21, the wire clamp 21 can be connected with the wire clamping terminal 11, so that the network cable is electrically connected with the body 1.

[0032] In an embodiment, please refer to Figure 3 and Figure 4 As shown, the wire threading device 22 includes a fixed tube 221 and a movable tube 222, one end of the fixed tube 221 is connected with the wire pressing cover 2, the fixed tube 221 is sleeved on the outer wall of the movable tube 222, the inner wall of the fixed tube 221 is provided with a first sliding part 2211 along the axis direction of the fixed tube 221, the outer wall of the movable tube 222 is provided with a second sliding part 2221 which is slidingly connected with the first sliding part 2211, and the minimum inner diameter of the movable tube 222 is smaller than the diameter of the network cable. The first sliding part 2211 is a sliding groove, and the second sliding part 2221 is a sliding block. After the installer passes the core of the network cable through the wire threading device 22, the movable tube 222 can be moved along the axis direction of the fixed tube 221 by pulling the movable tube 222, and the cooperation of the first sliding part 2211 and the second sliding part 2221 prevents the movable tube 222 from rotating in the fixed tube 221, so as to facilitate the movable tube 222 to be sleeved on the outer skin of the network cable.

[0033] Optionally, the inner diameter of the movable tube 222 decreases away from one end of the fixed tube 221, the maximum inner diameter of the movable tube 222 is greater than the diameter of the network cable, and the minimum inner diameter of the movable tube 222 is smaller than the diameter of the network cable. In this way, the wire threading device 22 can tightly hold the network cable while reducing the difficulty of sleeving the movable tube 222 on the outer skin of the network cable.

[0034] In an embodiment, please refer to Figure 3 and Figure 4As shown, the inner wall of the fixed tube 221 is stepped, and is divided into a first section and a second section. The first section is connected with the wire pressing cover 2, and the inner diameter of the second section is larger than that of the first section. The first sliding member 2211 extends from the first section to the second section. The second section is provided with the limiting member 3, and the limiting member 3 is located on the first sliding member 2211. The outer wall of the movable tube 222 is provided with the limiting spring 2222, and the limiting spring 2222 has a free end. When the second sliding member 2221 does not abut against the limiting member 3, the free end of the limiting spring 2222 abuts against the inner wall of the first section of the fixed tube 221. When the second sliding member 2221 abuts against the limiting member 3, the free end of the limiting spring 2222 abuts against the end of the first section of the fixed tube 221 away from the wire pressing cover 2. In the process of pulling the movable tube 222, the limiting member 3 can prevent the movable tube 222 from being pulled out of the fixed tube 221. When the second sliding member 2221 abuts against the limiting member 3, the free end of the limiting spring 2222 abuts against the end of the first section of the fixed tube 221 away from the wire pressing cover 2, thereby locking the movable tube 222 and preventing the fixed tube 221 from moving on the movable tube 222 with the wire pressing cover 2. Thus, the stability of the wire pressing cover 2 is ensured when the installer inserts the core of the network cable into the cable clamp 21.

[0035] In one embodiment, referring to Figure 1 and Figure 5 , the body 1 further comprises a terminal 12 provided with a PCB and a plurality of gold needles welded on the PCB. The terminal 11 has the same number of cable clamping grooves 111 as the gold needles, and each cable clamping groove 111 is provided with a conductive cutter 4 electrically connected with the gold needle through the PCB. When the terminal 11 is connected with the mating cable clamp 21, the conductive cutter 4 can break the insulating skin of the core of the network cable and electrically connect with the copper wire of the core of the network cable, thereby completing the electrical connection between the network cable and the body 1. The gold needle is phosphor bronze, and is plated with nickel on the surface and then plated with gold or copper.

[0036] Optionally, referring to Figure 5 , the contact end of the gold needle is S-shaped. When the gold needle is inserted into and pulled out of the RJ-45 connector, the friction point between the gold needle and the RJ-45 connector and the fixed point of the gold needle in the terminal 12 are not at the same position of the gold needle, thereby ensuring the service life of the gold needle.

[0037] Optionally, referring to Figure 5As shown, the gold needle includes the first gold needle 7-1, the second gold needle 7-2, the third gold needle 7-3, the fourth gold needle 7-4, the fifth gold needle 7-5, the sixth gold needle 7-6, the seventh gold needle 7-7 and the eighth gold needle 7-8 which are sequentially and electrically connected on one end face of the PCB board; the one end face of the PCB board on which the gold needle is installed is provided with a distribution straight line, and the eight gold needles of the first gold needle 7-1 to the eighth gold needle 7-8 are sequentially and spaced apart along the distribution straight line away from the one end of the PCB board; the one end face of the PCB board on which the gold needle is installed is provided with the first installation straight line 8-1, the second installation straight line 8-2 and the third installation straight line 8-3 which are parallel to each other; the first gold needle 7-1, the fourth gold needle 7-4 and the seventh gold needle 7-7 are arranged on the first installation straight line 8-1, the second gold needle 7-2, the fifth gold needle 7-5 and the eighth gold needle 7-8 are arranged on the second installation straight line 8-2, and the third gold needle 7-3 and the sixth gold needle 7-6 are arranged on the third installation straight line 8-3. The eight gold needles are staggered on the PCB board, which can reduce the transmission interference between adjacent gold needles, thereby improving the link stability.

[0038] In an embodiment, referring to Figure 5 and Figure 6 As shown, the conductive cutter 4 includes the first skin breaking cutter 41 and the second skin breaking cutter 42 which are oppositely arranged; and the first skin breaking cutter 41 and the second skin breaking cutter 42 are respectively located on two sides of the middle line of the length direction of the wire clamping groove 111, a gap is left between the back of the first skin breaking cutter 41 and the inner wall of the wire clamping groove 111, and a gap is left between the back of the second skin breaking cutter 42 and the inner wall of the wire clamping groove 111. When the core of the network cable is aligned with the middle line of the length direction of the wire clamping groove 111 and enters the wire clamping groove 111, the conductive cutter 4 breaks the insulating skin of the core of the network cable on two sides of the core of the network cable through the first skin breaking cutter 41 and the second skin breaking cutter 42, so as to ensure that the copper wire in the core can be contacted. At the same time, the gap is left between the back of the first skin breaking cutter 41 and the inner wall of the wire clamping groove 111, and the gap is left between the back of the second skin breaking cutter 42 and the inner wall of the wire clamping groove 111, so that when the first skin breaking cutter 41 and the second skin breaking cutter 42 break the insulating skin of the core of the network cable, the distance between the first skin breaking cutter 41 and the second skin breaking cutter 42 can be expanded by the core of the network cable, thereby preventing the conductive cutter 4 from cutting the core of the network cable too deeply or cutting off the core of the network cable.

[0039] Optionally, referring to Figure 5 and Figure 6As shown, the conductive cutter 4 further comprises a connecting piece 43 electrically connected with the PCB, the connecting piece 43 is provided with a first connecting arm 431 and a second connecting arm 432, the first connecting arm 431 is connected with the first skin-breaking cutter 41, and the width of the first connecting arm 431 is less than the width of the first skin-breaking cutter 41, the second connecting arm 432 is connected with the second skin-breaking cutter 42, and the width of the second connecting arm 432 is less than the width of the second skin-breaking cutter 42. The first connecting arm 431 and the second connecting arm 432 can facilitate the distance between the first skin-breaking cutter 41 and the second skin-breaking cutter 42 to be supported apart by the core of the network cable.

[0040] In an embodiment, referring to Figure 6 As shown, the line connecting the cutting edge of the first skin-breaking cutter 41 and the cutting edge of the second skin-breaking cutter 42 intersects with the midline of the length direction of the cable clamping groove 111 to form an included angle α, the range of the included angle α is 30°-50°. In an example embodiment, the included angle α is 30°, 35°, 40°, 45° or 50°, and preferably, the included angle α is 45°. The conductive cutter 4 is obliquely arranged in the cable clamping groove 111, which can reduce the situation that the conductive cutter 4 does not break the insulating skin of the core of the network cable due to the too thin core of the network cable.

[0041] The above description is only an embodiment of the present application, and does not limit the patent scope of the present application, any equivalent transformation or direct or indirect application in the related technical field based on the content of the specification and drawings of the present application is also included in the patent protection scope of the present application.

Claims

1. A type of unshielded information module, characterized in that: It includes a main body and a wire clamping cover; the main body includes a wire clamping terminal, the wire clamping cover is provided with a wire clamping clip that mates with the wire clamping terminal, and the wire clamping cover is provided with a wire threader, the wire threader's inlet end size being smaller than the diameter of the network cable; The cable threader includes a fixed tube and a movable tube. One end of the fixed tube is connected to the wire clamping cap. The fixed tube is sleeved on the outer wall of the movable tube. A first sliding member is provided on the inner wall of the fixed tube along the axial direction of the fixed tube. A second sliding member is provided on the outer wall of the movable tube and is slidably connected to the first sliding member. The minimum inner diameter of the movable tube is smaller than the diameter of the network cable. The inner wall of the fixed tube is stepped, and the stepped shape is divided into a first section and a second section. The first section is connected to the pressure cap, and the inner diameter of the second section is larger than that of the first section. The first sliding member extends from the first section to the second section. A limiting member is provided on the second section, and the limiting member is located on the first sliding member. A limiting spring is provided on the outer wall of the movable tube, and the limiting spring has a free end. When the second sliding member is not in contact with the limiting member, the free end of the limiting spring abuts against the inner wall of the first section of the fixed tube; When the second sliding member abuts against the limiting member, the free end of the limiting spring abuts against the end of the first section of the fixed tube away from the pressure cap.

2. The six types of unshielded information modules according to claim 1, characterized in that: The main body also includes a wiring terminal, which is provided with a PCB board and a plurality of gold pins soldered on the PCB board. The wire-clamping terminal has the same number of wire-clamping slots as the gold pins. Each wire-clamping slot is provided with a conductive blade, and the conductive blade is electrically connected to the gold pin through the PCB board.

3. The six types of unshielded information modules according to claim 2, characterized in that: The conductive cutting tool includes a first piercing blade and a second piercing blade arranged opposite to each other; the first piercing blade and the second piercing blade are respectively located on both sides of the centerline of the wire clamping groove along its length direction, and a gap is left between the back of the first piercing blade and the inner wall of the wire clamping groove, and a gap is left between the back of the second piercing blade and the inner wall of the wire clamping groove.

4. The six types of unshielded information modules according to claim 3, characterized in that: The conductive cutting tool further includes a connector electrically connected to the PCB board. The connector is provided with a first connecting arm and a second connecting arm. The first connecting arm is connected to the first scalpel, and the width of the first connecting arm is smaller than the width of the first scalpel. The second connecting arm is connected to the second scalpel, and the width of the second connecting arm is smaller than the width of the second scalpel.

5. The six types of unshielded information modules according to claim 3 or 4, characterized in that: The line connecting the blades of the first and second scabbing knives intersects the centerline of the length direction of the groove to form an angle α, which is less than 90°.

6. The six types of unshielded information modules according to claim 5, characterized in that: The included angle α ranges from 30° to 50°.

7. A network panel, characterized in that: The network panel includes a panel and six types of unshielded information modules as described in any one of claims 1-6. The panel has a mounting surface and a mounting groove is provided on the mounting surface, into which the six types of unshielded information modules are inserted.

8. The network panel according to claim 7, characterized in that: The six types of unshielded information modules are equipped with elastic buckles, which abut against the inner wall of the mounting groove.

Citation Information

Patent Citations

  • Circuit seamless connector lug for electric signal transmission

    CN111725636A

  • Rapid network cable connector for mining high-voltage vacuum power distribution device

    CN115296086A