Non-shielding module integrated on distribution frame

By introducing a separation component and an anti-pull-out cover structure into the unshielded module, the problems of module loosening and accidental pull-out under vibration are solved, achieving rapid separation and stable connection, and improving the stability and maintenance convenience of the cabling system.

CN121509838APending Publication Date: 2026-02-10NANJING HEDIAN NETWORK TECH CO LTD
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Patent Information

Application Number
CN202511676927.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-17
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Existing unshielded modules are prone to loosening under vibration, making it difficult to separate the crimping base from the terminal block, and the modules are easily accidentally unplugged, affecting network connectivity and ease of maintenance.

Method used

An unshielded module integrated into a patch panel was designed, employing a detachable component and an anti-pull cover structure. The detachable component moves upward to lock the contacting part and moves downward to unlock the wire clamp. Combined with the anti-pull cover, it engages with the support to prevent accidental pulling. The back support frame and inlet support frame of the patch panel constrain the network cable to prevent tangling.

Benefits of technology

It enables quick separation of the crimping base and the terminal block without the need for forceful disassembly, prevents accidental module disconnection, improves module stability and wiring neatness, and simplifies maintenance operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a non-shielding module integrated on a distribution frame, which comprises a jumper socket, a socket clamping plate is arranged on the top surface of the jumper socket, rotating bases are arranged on the top surface and the bottom surface of the jumper socket, and the rotating bases are positioned on one side of the socket clamping plate; a wire holder; a wire pressing seat; a lower shield; the ends, close to the second half wire cover, in the upper protective cover and the second square cover are symmetrically provided with abutting parts, and the inner sides of the abutting parts are connected with separation assemblies. The abutting part is used for vertically rotating to transversely abut against the top of the outer side of the wire pressing base. The anti-pulling part comprises an anti-pulling cover plate, the anti-pulling cover plate is mounted at the top of the second half wire cover in an attached and sliding manner, and one end of the anti-pulling cover plate extends to the upper part of the elastic clamping plate; the distribution frame comprises a distribution board, a back line frame and an incoming line supporting frame. According to the invention, early-stage rapid wiring and subsequent netting twine arrangement can be realized, and the assembly and maintenance efficiency of the distribution frame is effectively improved.
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Description

Technical Field

[0001] This invention relates to the field of unshielded module technology, and more specifically to an unshielded module integrated into a patch panel. Background Technology

[0002] In communication network cabling systems, unshielded modules, as core connecting components between network cables and equipment / patch panels, are widely used in data centers, computer rooms, and office areas. Their core requirements are stable connection of the core wires, convenient installation and maintenance of the modules, and neat organization of multiple network cables to ensure signal transmission stability and the scalability of the cabling system.

[0003] However, existing unshielded modules and matching patch panels have the following technical defects in practical applications: 1. Traditional unshielded modules often use an upper and lower protective cover to press together the wire clamps and terminals. However, the lack of a positioning structure between the upper and lower protective covers makes them prone to loosening under vibration, affecting the protection effect. 2. The wire clamp and contact seat of the unshielded module are tightly fitted together, making separation difficult. Unlocking requires the use of tools to forcibly disassemble it, which is not only cumbersome but also easily causes deformation and damage to components such as the wire clamp and contact plate. 3. After the module is installed on the patch panel, its socket plate is exposed. Workers may accidentally touch it during wiring or maintenance, causing the module to be accidentally pulled out, which will affect network connectivity. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention provides an unshielded module integrated into a patch panel, solving the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: An unshielded module integrated into a patch panel includes a jumper socket with a socket plate on its top surface and rotating bases on both its top and bottom surfaces, the rotating bases being located on one side of the socket plate; a terminal block coaxially fixed to the back of the jumper socket, with multiple sets of mating tabs symmetrically arranged inside the terminal block for connecting to the jumper socket; a wire clamping base with a wire through hole in the center and symmetrically arranged core wire holders inside, each core wire holder having multiple sets of wire clamping grooves; a release groove in the center of the top surface of the wire clamping base; a lower cover including a first square cover rotatably mounted on both sides of the bottom of the jumper socket at one end, a first half-wire cover at the other end of the first square cover, and symmetrically arranged abutment plates inside the first square cover near the first half-wire cover, with a support base at the bottom; the abutment plates are used to rotate vertically to laterally abut the bottom of the outer side of the wire clamping base; and an upper cover including a first square cover rotatably mounted on the back of the jumper socket at one end. The jumper socket has two second square covers on its top sides. Each second square cover has a second half-cover at one end. Symmetrical abutment components are located inside the second half-cover, near one end of each abutment component. A separation component is connected to the inner side of each abutment component, allowing it to rotate vertically to abut the outer top of the pressure seat laterally. When the separation component moves upward, it abuts and locks the abutment component. When it moves downward, one end of the separation component engages with the release groove of the pressure seat, and the other end unlocks the abutment component, so that when the upper cover rotates upward, the separation component abuts and unlocks the pressure seat. An anti-pull-out component includes an anti-pull-out cover that is slidably mounted on the top of the second half-cover. One end of the anti-pull-out cover extends above the elastic retaining plate, and the other end engages with the support to lock the upper and lower covers together. A clearance groove is provided on the top surface of the anti-pull-out cover to avoid the pressing component.

[0006] This invention provides an unshielded module integrated into a patch panel. Compared with the prior art, it has the following advantages: 1. When the separating component moves upward, it locks the abutting part, allowing it to properly abut against the top of the outer side of the wire clamp. Combined with the abutting plate below, this ensures the wire clamp is securely connected to the contact seat. When the separating component moves downward, one end engages with the release groove of the wire clamp, while the other end unlocks the abutting part. Thus, when the upper cover is rotated upward, the wire clamp moves outward through the separating component, and the abutting part retracts accordingly, achieving rapid separation of the contact seat and the wire clamp without the need for forceful disassembly, making maintenance convenient.

[0007] 2. When the unshielded module is connected to the wiring board, the anti-pull cover can surround the socket card plate to prevent workers from accidentally touching the socket card plate. The anti-pull cover can also be locked with the bracket to achieve secondary prevention of the anti-pull cover from being pulled out. The operator needs to unlock the locking position of the anti-pull cover before pulling the anti-pull cover outward to achieve anti-touch locking. When the anti-pull cover is locked with the bracket, it can also lock the upper and lower protective covers, effectively preventing the first and second protective covers from becoming loose and ensuring that the first and second protective covers stably resist the wire clamp. 3. The back panel of the patch panel restrains the vertical network cables, the inlet support supports the horizontal network cables, and the cable tray covers store multiple sets of network cables, avoiding cable tangling and mess, improving the neatness of the cabling and the efficiency of subsequent operation and maintenance. Attached Figure Description

[0008] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0009] Figure 1 A schematic diagram of the unshielded module structure of the present invention is shown; Figure 2 A schematic diagram of the open structure of the unshielded module of the present invention is shown; Figure 3 A schematic diagram of the second square cover structure of the present invention is shown; Figure 4 A schematic diagram of the wire clamping seat and contact seat structure of the present invention is shown; Figure 5 A schematic diagram of the internal structure of the second square cover of the present invention is shown; Figure 6 A schematic diagram of the connection structure between the separation component and the pressure plate seat of the present invention is shown; Figure 7 A schematic diagram of the docking structure between the inner extrusion block and the storage tank of the present invention is shown; Figure 8 A schematic diagram of the contact structure between the inner extrusion block and the extrusion surface of the present invention is shown; Figure 9 A schematic diagram of the connection structure between the unshielded module and the patch panel of the present invention is shown; Figure 10 A schematic diagram of the patch cord socket and wiring board connection structure of the present invention is shown; Figure 11 A schematic diagram of the constraint member insertion structure of the present invention is shown; Figure 12 A schematic diagram of the internal structure of the positioning base of the present invention is shown; Figure 13 A schematic diagram of the inlet support frame structure of the present invention is shown; Figure 14 A schematic diagram of the extrusion assembly structure of the present invention is shown.

[0010] As shown in the figure: 100. Jumper socket; 110. Socket card. 200. Lower protective cover; 210. First square cover; 211. Contact plate; 220. First half-line cover; 230. Support; 240. Positioning seat; 241. Locking hole; 242. Unlocking spring; 243. Through hole; 244. Unlocking hole; 250. First end plate. 300. Upper protective cover; 310. Second square cover; 320. Second half-line cover; 321. T-block; 330. Abutting component; 331. Back strip block; 332. Outer extrusion block; 333. Side vertical groove; 334. Slider; 335. Storage slot; 336. Reception cavity. 400. Anti-pull-out component; 410. Anti-pull-out cover; 411. Clearance groove; 412. Moving groove; 420. Second end plate; 421. Locking plate. 500, contact seat; 510, mating plate. 600. Wire clamp, 610. Wire threading hole, 620. Core wire holder, 630. Wire clamping groove, 640. Release groove, 650. Cutting seat. 700. Separation assembly; 710. Pressure plate; 720. Skid; 730. Extension rod; 740. Adjusting stud; 741. Control panel; 750. Telescopic guide rod; 760. Inner compression block. 800. Patch panel; 810. Patchboard; 811. Mounting slot; 812. Connecting slot; 820. Backing cable support; 821. Horizontal backing bar; 8211. First positioning hole; 8212. Sealing sleeve; 822. Vertical backing bar; 8221. Second positioning hole; 830. Constraint component; 831. Top plate; 832. Unlocking plate; 840. Cable entry support frame; 841. Back slope plate; 8411. Reserved cable hole; 8412. Guide rail; 842. Assembly plate; 8421. Third positioning hole; 843. Cable tray cover; 8431. Reserved strip hole; 844. Cable tie; 8411. First Velcro strap; 8442. Second Velcro strap. 900. Extrusion assembly; 910. Movable base; 920. Spring rod; 930. Operating cover; 940. Extrusion component; 941. Fixing rod; 942. Extrusion plate; 943. Cutter. Detailed Implementation

[0011] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention are described clearly and completely. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0012] Combination Figures 1-14 As shown, the present invention provides an unshielded module integrated into a patch panel, comprising: The jumper socket 100 has a socket plate 110 on its top surface. Both the top and bottom surfaces of the jumper socket 100 are provided with rotating bases, which are located on one side of the socket plate 110. The terminal block is coaxially fixed to the back of the jumper socket 100, and eight sets of mating pieces 510 are symmetrically arranged inside the terminal block; the mating pieces 510 are connected to the jumper socket 100. The wire clamping base 600 has a wire hole 610 in its middle, and core wire holders 620 are symmetrically arranged inside the wire clamping base 600. Each set of core wire holders 620 has four sets of wire clamping grooves 630 inside. A release groove 640 is provided in the middle of the top surface of the wire clamping base 600. The lower cover 200 includes a first square cover 210, one end of which is rotatably mounted on both sides of the bottom of the jumper socket 100. The other end of the first square cover 210 is provided with a first half-wire cover 220. The interior of the first square cover 210 is symmetrically provided with abutment plates 211 near the end of the first half-wire cover 220. The abutment plates 211 are used to rotate vertically to abut the outer bottom of the wire clamp 600 laterally. The bottom of the first half-wire cover 220 is provided with a support 230. The upper cover 300 includes a second square cover 310. One end of the second square cover 310 is rotatably mounted on both sides of the top of the jumper socket 100. The other end of the second square cover 310 is provided with a second half-wire cover 320. The interior of the second square cover 310 is symmetrically provided with abutting members 330 near the end of the second half-wire cover 320. The inner side of the abutting member 330 is connected to the separation component 700. The abutting member 330 is used to rotate vertically to abut the outer top of the wire clamp 600 laterally. When the separation component 700 moves downward, one end of the separation component 700 is engaged with the release groove 640 of the wire clamp 600, and the other end unlocks the abutting member 330, so that when the upper cover 300 rotates upward, the separation component 700 abuts the wire clamp 600 to unlock. The anti-pull-out component 400 includes an anti-pull-out cover plate 410, which is slidably mounted on the top of the second half-cover 320. One end of the anti-pull-out cover plate 410 extends above the elastic retaining plate, and the other end of the anti-pull-out cover plate is engaged with the support 230 to lock the upper cover 300 and the lower cover 200 together. The top surface of the anti-pull-out cover plate 410 is provided with a relief groove 411 to avoid the downward pressing component. The patch panel 800 includes a patch board 810, a back panel 820, and an inlet support frame 840. The patch board 810 has multiple mounting slots 811 inside, into which patch cord sockets 100 are inserted. The back panel 820 is mounted on the back of the patch board 810. The back panel 820 is used to constrain a single network cable extending vertically. The inlet support frame 840 is mounted on the bottom of the outer end of the back panel 820. The inlet support frame 840 is used to support multiple network cables extending horizontally.

[0013] Based on the above technical concept, it can be understood that in the above solution: When the separating component 700 moves upward, the abutment component 330 is locked, allowing it to properly abut against the top outer side of the wire clamping seat 600. Combined with the abutment plate 211 located below, this ensures that the wire clamping seat 600 is securely connected to the contact seat 500. When the separating component 700 moves downward, one end of the separating component 700 engages with the release groove 640 of the wire clamping seat 600, while the other end unlocks the abutment component 330. Thus, when the upper cover 300 is rotated upward, the wire clamping seat 600 can be moved outward by the separating component 700, and the abutment component 330 retracts accordingly, achieving rapid separation of the contact seat 500 and the wire clamping seat 600 without the need for violent disassembly, making maintenance convenient.

[0014] When the unshielded module is connected to the wiring board 810, the anti-pull cover 410 can surround the socket card 110 to prevent workers from accidentally touching the socket card 110. The anti-pull cover is also designed to engage with the bracket 230 to prevent the anti-pull cover 410 from being pulled out accidentally. The operator needs to unlock the anti-pull cover before pulling it out to achieve anti-touch locking. Furthermore, when the anti-pick cover is engaged and positioned with the bracket 230, it can also lock the upper cover 300 and the lower cover 200, effectively preventing the first cover 210 and the second cover 310 from becoming loose, and ensuring that the first cover 210 and the second cover 310 stably resist the wire pressing base 600.

[0015] Furthermore, the back-end cable tray 820 of the patch panel 800 constrains the longitudinal network cables, the incoming cable support 840 supports the transverse network cables, and the cable tray 843 stores multiple sets of network cables, avoiding cable tangling and mess, and improving the neatness of the cabling and the efficiency of subsequent operation and maintenance.

[0016] In this embodiment, the abutting component 330 includes a back strip 331. The top of the back strip 331 has a storage cavity 336. The inside of the storage cavity 336 is open. The inside of the back strip 331 has a side vertical groove 333. An outer extrusion block 332 is slidably embedded in the opening of the storage cavity 336. A slider 334 is symmetrically provided on the side of the outer extrusion block 332. The inner wall of the storage cavity 336 has a horizontal sliding groove for the slider 334 to be embedded. The bottom of the inner side of the outer extrusion block 332 has a storage groove 335 and the top of the inner side has an extrusion surface. The storage groove 335 includes an inclined groove section and an arc groove section.

[0017] Understandably, in the above solution: the extrusion surface of the outer extrusion block 332 fits against the inner extrusion block 760, allowing the outer extrusion block 332 to abut against the pressure seat 600; the storage slot 335 (slanted slot section + arc slot section) provides a suitable storage space for the inner extrusion block 760, and the outer extrusion block 332 can smoothly retract when unlocking; the slider 334 of the outer extrusion block 332 is embedded in the horizontal sliding slot of the back strip block 331, restricting the movement trajectory, preventing the outer extrusion block 332 from shifting, ensuring stable and smooth contact and unlocking actions, and improving structural durability.

[0018] In this embodiment, the separation assembly 700 includes a pressure plate 710. An adjusting stud 740 is rotatably connected to the center of the top surface of the pressure plate 710. The adjusting stud 740 is threaded through the top surface of the second square cover 310. An operating plate 741 is provided at the top of the adjusting stud 740. The adjusting stud 740 passes through an clearance groove 411. A pry block is provided on the bottom surface of one end of the pressure plate 710. An extension rod 730 is symmetrically provided at the other end of the pressure plate 710. The extension rod 730 passes through a side vertical groove 333. An inner pressing block 760 is vertically provided at the inner end of each set of extension rods 730. The inner pressing block 760 slides vertically within the receiving cavity 336, with the inner pressing block 760 facing outwards. The side of the extrusion block 332 is curved; the four corners of the surface of the pressure plate 710 are provided with telescopic guide rods 750, and the top of the telescopic guide rods 750 is fixedly connected to the inner wall of the second cover 310; in the initial state of the pressure plate 710, the inner extrusion block 760 is attached to the extrusion surface of the outer extrusion block 332 so that the outer extrusion block 332 abuts against the wire pressing seat 600; in the unlocked state of the pressure plate 710, the adjusting stud 740 drives the pressure plate 710 to descend, so that the inner extrusion block 760 descends to the inside of the storage groove 335 and the pry bar descends to the release groove 640. When the upper cover 300 rotates upward, the pry bar abuts against the wire pressing seat 600 and disengages, and the outer extrusion block 332 moves inward accordingly.

[0019] In the above solution: the adjusting stud 740 drives the pressure plate 710 to descend, simultaneously realizing the storage of the inner pressing block 760 (unlocking the contact part 330) and the insertion of the pry bar into the release slot 640 (prying the wire clamp 600). Unlocking and separation are completed in one step without the need for additional tools. The telescopic guide rod 750 of the pressure plate 710 restricts the vertical movement trajectory to avoid deviation, ensuring that the pry bar accurately aligns with the release slot 640 and the inner pressing block 760 is smoothly embedded into the storage slot 335, without the risk of jamming or component damage.

[0020] In this embodiment, the anti-pull cover 410 includes a top plate 831, a second end plate 420 is vertically provided at one end of the top plate 831, locking plates 421 are symmetrically provided on the inner wall of the bottom end of the second end plate 420, a moving groove 412 is provided on the bottom surface of one end of the anti-pull cover 410, and a T-shaped block 321 is provided at the top end of the second half-cover 320, and the T-shaped block 321 is slidably embedded in the moving groove 412.

[0021] Understandably, in the above solution: the movable groove 412 of the anti-pull cover 410 and the T-shaped block 321 of the second half-cover 320 engage in damping sliding cooperation, ensuring stable guidance and smooth sliding; the locking plate 421 can be precisely inserted into the locking hole 241 of the bracket 230, achieving a stable locking of the upper and lower covers 200. One end of the anti-pull cover 410 extends above the socket plate 110 to prevent accidental module removal, while the other end engages with the bracket 230, providing double protection to ensure a stable connection between the module and the cover, adapting to vibration environments.

[0022] In this embodiment, the top surface of the support 230 is symmetrically provided with a positioning seat 240. The end of the positioning seat 240 is provided with a locking hole 241 and an unlocking hole 244, which are separated. An unlocking spring 242 is installed at the inner end of the locking hole 241. A through hole 243 is provided on the side of the locking block. The locking plate 421 is inserted into the locking hole 241 and engaged in the through hole 243. The end face of the support 230 is provided with a first end plate 250. The first end plate 250 and the second end plate 420 are arranged opposite to each other.

[0023] Understandably, in the above solution: the unlocking hole 244 of the positioning base 240 provides an insertion space for the unlocking component. During unlocking, the locking plate 421 can be retracted by external components, disengaging from the through hole 243 without the need for forceful pulling, thus protecting the structural integrity. The unlocking spring 242 provides elastic support for the locking plate 421. When engaged, it automatically extends outward and engages with the through hole 243, locking securely. After unlocking, the spring drives the locking plate 421 to reset, facilitating the removal of the anti-pull cover 410 and improving operational efficiency.

[0024] In this embodiment, the wiring board 810 has multiple sets of mounting slots 811 inside, the jumper socket 100 is inserted into the mounting slot 811, and each set of mounting slots 811 has a set of docking slots 812 at the top, and the end of the anti-pull cover plate 410 is inserted into the docking slot 812.

[0025] In the above solution: the mounting slot 811 of the wiring board 810 is precisely matched with the jumper socket 100 to ensure the module is installed correctly and avoid wiring deviation; the end of the anti-pull cover 410 is inserted into the mating slot 812 to achieve double fixation of the anti-pull cover 410 and the wiring board 810, eliminating the risk of displacement. After the module is inserted into the mounting slot 811, the anti-pull cover 410 simultaneously engages with the protective cover and the mating slot 812, forming a fixed structure of the module, wiring board 810, and protective cover, preventing loosening under vibration and improving overall stability.

[0026] In this embodiment, the back support frame 820 includes a horizontal back support 821 and a vertical back support 822. The two ends of the horizontal back support 821 are vertically symmetrically provided with the vertical back support 822. The ends of the vertical back support 822 are rotatably connected to the two ends of the back of the patch panel 810. The surface of the horizontal back support 821 has multiple sets of first positioning holes 8211. A set of constraint members 830 is inserted into the top of the two sets of first positioning holes 8211. Each set of jumper sockets 100 corresponds to a set of constraint members 830. The constraint members 830 are used to unlock the upper cover 300 and the lower cover 200 assembled as a whole, and to constrain the single network cable connected to the jumper socket 100. The surface of the vertical back support 822 has multiple sets of second positioning holes 8221. The constraint member 830 includes a top plate 831. Both ends of the top plate 831 are provided with unlocking plates 832. The two sets of unlocking plates 832 are damped and inserted into the second positioning holes 8221 or unlocking holes 244. A sealing sleeve 8212 is provided inside the first positioning hole 8211, which can increase the insertion stability of the constraint member 830.

[0027] In the above solution: the horizontal back bar 821 and the vertical back bar 822 of the cable tray 820 cooperate to partition and constrain the vertically extending single network cable, preventing tangling and improving the neatness of the cabling; the constraint member 830 is inserted into the first positioning hole 8211, which can further press down and position the network cable for more stable fixation. The unlocking plate 832 of the constraint member 830 can be inserted into the unlocking hole 244 of the bracket 230 to unlock the upper and lower protective covers 200 without additional tools; the same component has both network cable constraint and module unlocking functions, with integrated structure and simplified operation and maintenance; at the same time, the constraint member 830 is placed close to the side of the unshielded module for easy access for unlocking operations.

[0028] In this embodiment, the incoming line support frame 840 includes a back slope plate 841. Multiple sets of reserved wire holes 8411 are provided inside the back slope plate 841. A horizontally arranged assembly plate 842 is symmetrically arranged on the inner side of the back slope plate 841. A third positioning hole 8421 is provided at the end of the assembly plate 842. The second positioning hole 8221 and the third positioning hole 8421 are fixed together by bolts. A single network cable passes sequentially through the reserved wire hole 8411 and the constraint member 830. A guide rail 8412 is symmetrically provided on the top surface of the back slope plate 841. A set of extrusion assembly 900 is laterally slidably installed on the top of the two sets of guide rails 8412. The extrusion assembly 900 is used to press and cut the wires of the pre-inserted core wire pressing seat 600. A wire support cover 843 is provided on the outer side of the back slope plate 841. Multiple sets of network cables connected to the patch panel 800 are bundled and stored inside the wire support cover 843.

[0029] In the above solution: the back slope plate 841 of the incoming cable support frame 840 provides a support surface for the wire crimping; the extrusion assembly 900 can simultaneously complete the core wire crimping and cut off the excess portion, without the need for separate tools, simplifying the wiring process; the reserved wire hole 8411 guides the horizontal network cable to be introduced in an orderly manner, avoiding chaos. The cable tray 843 can store multiple sets of network cables, and with the binding strap 844, it can be bundled and positioned to prevent the cables from being exposed or tangled, protect the network cables from wear, and at the same time improve the aesthetics of the cabling and the convenience of operation and maintenance.

[0030] In this embodiment, the extrusion assembly 900 includes an operation cover 930. Spring rods 920 are provided at the four corners of the bottom surface of the operation cover 930. A set of movable bases 910 is provided at the bottom end of the two sets of spring rods 920 on one side. The movable bases 910 are slidably mounted on the guide rail 8412. Eight sets of extrusion parts 940 are symmetrically provided on the bottom surface of the operation cover 930. The extrusion part 940 includes a fixing rod 941. The top end of the fixing rod 941 is fixedly connected to the operation cover 930. The bottom end of the fixing rod 941 is provided with an extrusion plate 942. The outer end of the extrusion plate 942 is provided with a cutter 943. The side wall of the pressure seat 600 is symmetrically provided with a cutting seat 650. The cutting seat 650 is located at the outer end of the wire clamping groove 630.

[0031] In the above solution: the eight extrusion pieces 940 of the extrusion assembly 900 correspond one-to-one with the wire clamping grooves 630 of the core wire holder 620. Pressing down the operation cover 930 simultaneously completes the clamping of the eight core wires; the cutter 943 cooperates with the cutting seat 650 to simultaneously cut the extended part of the core wire, eliminating the need for individual connection and greatly improving efficiency. The extrusion plate 942 is precisely inserted into the wire clamping groove 630, with uniform pressure to ensure tight contact between the core wire and the connecting piece 510; the cutter 943 and the cutting seat 650 are precisely connected, resulting in neat wire cuts without the need for additional finishing, thus improving the wiring quality.

[0032] In this embodiment, the outer wall of the cable support cover 843 is provided with multiple sets of reserved strap holes 8431. Each set of reserved strap holes 8431 is placed between adjacent reserved cable holes 8411. Each set of reserved strap holes 8431 is arranged in an arc-shaped interval. The other end of the cable support cover 843 away from the back slope plate 841 is connected to multiple sets of straps 844. The straps 844 are arranged opposite to a set of reserved cable holes 8411. The two sides of the straps 844 are respectively provided with a first Velcro 8411 and a second Velcro 8442. The straps 844 pass through a reserved cable hole 8411 to constrain and position different numbers of network cables.

[0033] In the above solution: the cable tray 843 has multiple sets of pre-drilled holes 8431 spaced out, and the cable ties 844 can be selected according to the number of network cables to pass through the corresponding pre-drilled holes 8431 and fixed with Velcro, adapting to the constraint requirements of one or more network cables without the need for cable ties. The Velcro connection method can be repeatedly opened and closed, which is convenient for adding, removing and adjusting network cables, and there is no risk of damage during disassembly; the cable ties 844 correspond one-to-one with the pre-drilled holes 8411 to realize the zoned bundling of network cables, further improving the neatness of the cabling.

[0034] Working principle and usage process of this invention: S1. Initial unlocking of non-shielded modules: In the initial factory state, the upper cover 300 and lower cover 200 of each unshielded module are snapped together as one unit, the inner extrusion block 760 contacts the extrusion surface, so that the outer extrusion plate 710 abuts against the wire clamp 600, and the wire clamp 600 is tightly connected to the terminal block; when wiring, pull out a set of constraint members 830, insert the two sets of unlocking plates 832 of the constraint members 830 into the unlocking hole 244, so that the locking plate 421 retracts and disengages from the through hole 243, and the unlocking spring 242 in the retracted state can then return to its original position and abut against the locking plate 421 and move outward and disengage from the unlocking hole 244; the anti-pull cover 410 can then move outward a certain distance; the lower cover 200 rotates downward under its own weight; It should be noted that at this time, when the adjusting stud 740 is rotated downwards, the operating plate 741 comes into contact with the surface of the anti-detachment cover; when the anti-pull cover 410 is rotated upwards, the anti-pull cover 410 drives the second half-cover 320 and the second square cover 310 to rotate upwards. During the rotation, the pry bar 720 moves outwards against the wire clamp 600 a certain distance, thereby unlocking the wire clamp 600. The outer pressing block 332 is pushed inwards by the wire clamp 600 and retracts into the receiving cavity. The inner pressing block 760 cooperates to enter the storage slot 335 of the outer pressing block 332. In this way, the operator can quickly separate the wire clamp 600 and the terminal block. S2, First crimping of the network cable: Pass a single network cable through the reserved wire hole 8411 from inside the cable tray 843 outwards; then strip and separate the wires at the end of the network cable, pass the network cable through the wire hole 610 of the wire clamp 600, and then bend the eight core wires to both sides and insert them into the corresponding wire clamping slots 630. Part of the core wires will protrude out of the wire clamp 600. After each core wire is pre-inserted, the inner mesh is pulled so that the wire pressing seat 600 is attached to the back slope plate 841 and placed between the two guide rails 8412. The wire extrusion assembly 900 is moved so that a set of wire extrusion parts 940 are aligned with a core wire seat 620. The operation cover 930 is pressed down, the spring rod 920 retracts, and the wire extrusion plate 942 of the wire extrusion part 940 is inserted into the wire clamping groove 630, pressing the pre-inserted core wire into the innermost end of the wire clamping groove 630. At the same time, the cutter 943 and the cutter seat 650 cooperate to cut off the protruding part of the core wire. S3, Secondary crimping of the network cable: After the single network cable is assembled with the wire clamp 600, the wire clamp 600 is axially connected with the contact seat 500. The adjusting stud 740 is rotated outward, which in turn drives the pressure plate 710 to move upward. The pry block leaves the release groove 640, and the inner pressing block 760 abuts against the pressing surface of the outer contact block. Then, rotate the upper cover 300 vertically downwards and the lower cover 200 vertically upwards. The contacting part 330 contacts the top outer side of the wire pressing seat 600, and the contacting plate 211 contacts the bottom outer side of the wire pressing seat 600, so that the wire pressing seat 600 and the contact seat 500 are tightly connected; the first square cover 210 is connected to the second square cover 310, and the first half wire cover 220 is connected to the second half wire cover 320. Insert the jumper socket 100 into the mounting slot 811, and then push the anti-pull cover 410 inward. The inner end of the anti-pull cover 410 is inserted into the mating slot 812, thereby preventing accidental manual contact with the socket plate 110 and accidental removal of the unshielded module. During the inward movement of the anti-pull cover 410, the locking plate 421 is inserted into the locking hole 241, the unlocking spring 242 is compressed, and the locking plate 421 is locked into the through hole 243, thereby preventing the upper cover 300 from separating from the lower cover 200. S4. Neatly arranged network cables: Repeat S1-S3 to ensure that each mounting slot 811 is equipped with an unshielded module. Align the second positioning hole 8221 with the first positioning hole 8211 and position them with bolts to fix the inlet support frame 840 and the back cable frame 820 into one piece. All network cables are neatly arranged inside the cable tray 843. According to the number of network cables at the corresponding position of the cable tie 844, the cable tie 844 is passed through the reserved hole 8431 at the appropriate position. Then, the first Velcro 8411 and the second Velcro 8442 are used to tie and position the network cables with the cable tie 844. The network cables are stably placed inside the cable tray 843 without the need to use cable ties for positioning. Finally, the constraint member 830 is inserted into the corresponding first positioning hole 8211 to achieve downward positioning of the network cable.

[0035] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. An unshielded module integrated into a patch panel, characterized in that, include: The jumper socket has a socket plate on the top surface, and both the top and bottom surfaces of the jumper socket have rotating bases, with the rotating bases located on one side of the socket plate. The terminal block is coaxially fixed to the back of the jumper socket, and the terminal block has multiple sets of mating pieces that connect to the jumper socket symmetrically inside; The wire clamping base has a wire hole in the middle and symmetrically arranged core wire holders inside. Each set of core wire holders has multiple sets of wire holding grooves. A release groove is opened in the middle of the top surface of the wire clamping base. The lower cover includes a first square cover rotatably mounted on both sides of the bottom of the jumper socket, a first half-wire cover at the other end of the first square cover, and a contact plate symmetrically provided inside the first half-wire cover near one end, and a support at the bottom; the contact plate is used to rotate vertically to abut against the bottom of the outer side of the wire clamping seat laterally. The upper cover includes a second square cover rotatably mounted on both sides of the top of the jumper socket. The other end of the second square cover is provided with a second half-wire cover. Symmetrical abutment members are provided inside the second square cover near the end of the second half-wire cover. The inner side of the abutment member is connected to a separation component for vertical rotation to abut the outer top of the wire clamp seat laterally. When the separation component moves upward, it abuts and locks the abutment member. When it moves downward, one end of the separation component engages with the release groove of the wire clamp seat, and the other end unlocks the abutment member, so that when the upper cover rotates upward, the separation component abuts and unlocks the wire clamp seat. The anti-pull-out component includes an anti-pull-out cover plate that is fitted and slidably installed on the top of the second half-cover. One end of the anti-pull-out cover plate extends above the elastic clamping plate, and the other end is engaged with the support to lock the upper cover and the lower cover together. The top surface of the anti-pull-out cover plate is provided with a clearance groove to avoid the pressing component.

2. The unshielded module integrated into a patch panel according to claim 1, characterized in that: The abutting component includes a back strip block, with a storage cavity at the top inside the back strip block. The storage cavity has an opening on its inner side, and a side vertical groove is formed on the inner side of the back strip block. An outer extrusion block is slidably embedded at the opening of the storage cavity. A slider is symmetrically arranged on the side of the outer extrusion block, and a horizontal sliding groove for the slider to be embedded is formed on the inner wall of the storage cavity. A storage groove is formed at the bottom of the inner side of the outer extrusion block, and an extrusion surface is formed at the top of the inner side. The storage groove includes an inclined groove section and an arc groove section.

3. The unshielded module integrated into a patch panel according to claim 1, characterized in that: The separation assembly includes a pressure plate, with an adjusting stud rotatably connected to the center of the top surface of the pressure plate. The adjusting stud is threaded through the top surface of the second square cover. An operating plate is provided at the top of the adjusting stud and passes through the clearance groove. A pry block is provided on the bottom surface of one end of the pressure plate, and an extension rod is symmetrically provided on the other end. The extension rod passes through the side vertical groove. An inner squeezing block is vertically provided at the inner end of each set of extension rods. The inner squeezing block is vertically slidably placed in the storage cavity, and its side facing the outer squeezing block is an arc surface. Telescopic guide rods are provided at the four corners of the pressure plate surface, and the top of the telescopic guide rods is fixedly connected to the inner wall of the second square cover. In the initial state of the pressure plate, the inner extrusion block is attached to the extrusion surface of the outer extrusion block so that the outer extrusion block abuts against the pressure line seat. In the unlocked state of the pressure plate, the adjusting stud drives the pressure plate to descend, so that the inner extrusion block descends to the inside of the storage tank and the pry bar descends to the disengagement tank. When the upper cover rotates upward, the pry bar abuts against the pressure line seat and disengages, and the outer extrusion block moves inward accordingly.

4. The unshielded module integrated into a patch panel according to claim 1, characterized in that: The anti-pull cover includes a top plate, a second end plate is vertically provided at one end of the top plate, and locking plates are symmetrically provided on the inner wall of the bottom end of the second end plate. A moving groove is provided on the bottom surface of one end of the anti-pull cover, and a T-shaped block provided at the top end of the second half-cover is slidably embedded in the moving groove.

5. An unshielded module integrated into a patch panel according to claim 1 or 4, characterized in that: The top surface of the support is symmetrically provided with a positioning seat. The end of the positioning seat is provided with a locking hole and an unlocking hole. The locking hole and the unlocking hole are separated. An unlocking spring is installed inside the locking hole. A through hole is provided on the side of the locking block. The locking plate is inserted into the locking hole and engaged in the through hole. The end face of the support is provided with a first end plate.

6. An unshielded module integrated into a patch panel according to claim 1 or 4, characterized in that: It also includes a patch panel, which includes a patch board, a backing cable, and an inlet support frame. The patch board has multiple mounting slots for patch cord sockets to be inserted, and a backing cable is installed on the back. The backing cable is used to constrain a single network cable extending vertically. An inlet support frame is installed at the bottom of the outer end of the backing cable to support multiple network cables extending horizontally. Each set of mounting slots has a set of docking slots at the top, and the end of the anti-pull-out cover plate is inserted into the docking slot.

7. The unshielded module integrated into a patch panel according to claim 6, characterized in that: The cable tray includes horizontal back bars and vertical back bars. The horizontal back bars have vertically symmetrically arranged vertical back bars at both ends. The ends of the vertical back bars are rotatably connected to both ends of the back of the patch panel. The surface of the horizontal back bars has multiple sets of first positioning holes. A set of constraint members is inserted into the top of the two sets of first positioning holes. Each set of jumper sockets corresponds to a set of constraint members. The constraint members are used to unlock the upper and lower protective covers that are assembled as one piece and to constrain the single network cable connected to the jumper socket. The surface of the vertical back bars has multiple sets of second positioning holes. The constraint members include top plates with unlocking plates at both ends. The two sets of unlocking plates are damped and inserted into the second positioning holes or unlocking holes.

8. The unshielded module integrated into a patch panel according to claim 6, characterized in that: The incoming line support frame includes a back slope plate with multiple sets of reserved line holes inside. The back slope plate has horizontally arranged assembly plates symmetrically arranged on its inner side. The assembly plate has a third positioning hole at its end. The third positioning hole is fixed to the second positioning hole by bolts. A single network cable passes through a pre-drilled hole and a constraint in sequence; the top surface of the back slope plate is symmetrically provided with guide rails, and a set of extrusion components are slidably installed on the top of the two sets of guide rails to perform wire pressing and cutting on the wire pressing seat for pre-inserted core wires; a wire support cover is provided on the outer side of the back slope plate, and multiple sets of network cables connected to the patch panel are bundled and stored in the wire support cover.

9. The unshielded module integrated into a patch panel according to claim 8, characterized in that: The extrusion assembly includes an operating cover, with spring rods at the four corners of the bottom surface of the operating cover, and a set of movable bases at the bottom ends of the two sets of spring rods on one side, the movable bases being slidably mounted on the guide rail; the bottom surface of the operating cover is symmetrically provided with eight sets of extrusion components; The extrusion component includes a fixing rod, wherein the top end of the fixing rod is fixedly connected to an operating cover, the bottom end is provided with an extrusion plate, the outer end of the extrusion plate is provided with a cutter, and the side wall of the pressure seat is symmetrically provided with cutting seats, the cutting seats being located at the outer end of the wire clamping groove.

10. The unshielded module integrated into a patch panel according to claim 8, characterized in that: The outer wall of the cable support cover has multiple sets of reserved strap holes. Each set of reserved strap holes is placed between adjacent reserved cable holes, and each set of reserved strap holes is arranged in an arc-shaped interval. The other end of the cable support cover away from the back slope plate is connected to multiple sets of straps. The straps are arranged opposite to a set of reserved cable holes, and the two sides of the straps are respectively provided with a first Velcro and a second Velcro. The straps pass through a reserved cable hole to constrain and position different numbers of network cables.

Citation Information

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