Information engineering distribution frame

By incorporating support plates and flexible clips on the patch panel, the problem of loose connecting wires is solved, ensuring the connectors are secure and easy to plug and unplug, thus improving the stability of equipment connections and wiring efficiency.

CN223553411UActive Publication Date: 2025-11-14QINGAN COUNTY SMALL & MEDIUM ENTERPRISE PROJECT INVESTMENT SERVICE CENTER
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Patent Information

Application Number
CN202423107856.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-14
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

The existing patch panel lacks a fastening device at the interface between the connecting cable and the equipment, which makes the cable connectors easy to loosen, affecting the stability of the equipment connection and normal use.

Method used

By setting multiple sets of support plates and elastic clips on the patch panel for equidistant support, combined with the flexible control of the pressure plate and the locking mechanism of the locking sleeve, the connection wires are evenly spaced, and the connection head is synchronously braked and tightened by the pressure plate to prevent loosening.

Benefits of technology

It achieves a secure connection between the connector and the device, avoiding loosening caused by vibration and pulling, improving the stability of the device connection and the efficiency of wiring operations, and making plugging and unplugging operations convenient.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223553411U_ABST
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Abstract

An information engineering distribution frame comprises a distribution frame body, a connecting line, information engineering equipment, an elastic clamp, a pressing plate, a rotating rod, a rotating sleeve and a lock sleeve, installation supporting plates are arranged on the two sides of the distribution frame body, each installation supporting plate is provided with a fixing plate, the fixing plates are connected with the information engineering equipment, the information engineering equipment is connected with a connector, the connector is provided with the connecting line, and the connecting line is connected with the inner side of an anti-skid pad. Vertical plates are arranged on the two sides of the distribution frame; supporting plates are arranged on the outer sides of the vertical plates; the supporting plates are connected to the exterior of a bearing; a threaded rod is connected to the interior of the bearing, a knob is arranged on the upper portion of the threaded rod, the knob is attached to the supporting plates, and the supporting plates are connected to the exterior of a lock sleeve; a rotating plate is attached to the outer side of the vertical plate, the rotating plate is provided with a plurality of lock grooves, the lock grooves are matched with the lock sleeves, and the lock sleeves are connected with the lock grooves.
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Description

Technical Field

[0001] This utility model relates to the field of information engineering, and in particular to an information engineering patch panel. Background Technology

[0002] An existing patent (publication number: CN208434069U) discloses a patch panel, including a crossbar and two support legs connected to the crossbar. The crossbar includes a main body plate and a bent plate connected to the main body plate. The main body plate has several wire fixing channels and support arms, with the support arms located within the wire fixing channels. The support legs include a connecting plate connected to the bent plate and a mounting plate connected to the connecting plate. The connecting plate has a wire inlet, and the mounting plate has at least two mounting holes. However, this device can only organize the connecting wires, but lacks a fastening device at the interface between the connecting wires and the equipment. This makes the wire connectors prone to loosening, affecting the stability of the equipment connection and normal use, thus presenting a drawback. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing an information engineering patch panel that supports connecting cables at equal intervals to prevent them from tangling and knotting, facilitating later maintenance, sorting, and troubleshooting. It also features a pressure plate for flexible positioning, meeting different usage needs such as easy plugging and unplugging or locking of the connectors. This ensures a secure connection between the connectors and information engineering equipment, preventing the connecting cables from loosening at the connection points when subjected to external forces such as vibration or pulling. It guarantees the stability and normal use of the connection between equipment while also providing convenient connector plugging and unplugging, thus improving the efficiency of wiring operations for information engineering equipment.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] An information engineering patch panel includes a patch panel, connecting wires, information engineering equipment, elastic clips, pressure plates, rotating rods, rotating sleeves, and locking sleeves. The patch panel has mounting plates on both sides, each mounting plate having a fixing plate. The fixing plate connects to the information engineering equipment, which in turn connects to a connector. The connector has connecting wires that connect to the inner side of an anti-slip pad. The outer side of the anti-slip pad connects to an elastic clip, which connects to a support plate. The support plate connects to the patch panel. The patch panel has upright plates on both sides, each upright plate having a support plate on its outer side. The support plate connects to the outside of a bearing, and the bearing has a threaded rod connected inside. The threaded rod has a knob on its upper part, which fits against the support plate. The support plate connects to the outside of a locking sleeve, and the locking sleeve has a threaded connection to the threaded rod inside. The outer side of the upright plate fits against a rotating plate, which has multiple locking grooves that adapt to the locking sleeve, and the locking sleeve connects to the locking grooves.

[0006] The rotating plate of this utility model has a rotating rod on its inner side. The rotating rod is connected to a vertical plate and a rotating sleeve in sequence. The rotating sleeve has a control protrusion, and the rotating rod has a control groove. The control protrusion and the control groove are adapted to each other and the control protrusion is connected to the control groove. The rotating rod has a convex rod that passes through the vertical plate and is connected to a baffle. The baffle is attached to the outer side of the vertical plate, and the inner side of the vertical plate is attached to the rotating sleeve. The rotating sleeve has multiple gear disks.

[0007] The pressure plate of this utility model has an inner connecting head, and the outer side of the pressure plate has multiple support rods. The wiring frame has multiple storage slots, the support rods are adapted to the storage slots, the storage slots are connected to the support rods, and the support rods have racks. Beneficial effects

[0008] This utility model features multiple sets of support plates evenly distributed on the upper part of the patch panel. Elastic clamps at both ends support and position the connecting wires, ensuring that the multiple sets of connecting wires are evenly spaced and uniformly arranged. This facilitates later maintenance, sorting, and troubleshooting. Furthermore, the addition of pressure plates synchronously brakes and tightens the rear of the multiple sets of connectors, ensuring a secure connection between the connectors and the information engineering equipment. This prevents the connectors from loosening at the connection points when subjected to vibration, pulling, or other external forces, guaranteeing the stability of the connection and normal operation between the equipment. The pressure plate position adjustment is also convenient, increasing the ease of connector insertion and removal and improving the efficiency of wiring operations for information engineering equipment.

[0009] This utility model utilizes a meshing connection and an embedded insertion between the support rod, rotating sleeve, and rotating rod for coordinated positioning. This allows for adjustment of the pressure plate in different usage states, such as tightening and retracting, thereby reinforcing the connection between the connector and the information engineering equipment, ensuring the stability and normal operation of the connection. It also provides ample space for connector insertion and removal, facilitating operation. Furthermore, rotating the knob drives the locking sleeve to move, braking and locking the pressure plate in different usage states, thus improving structural stability and resulting in a rational structure.

[0010] This utility model prevents the connecting wires from tangling and knotting by equidistantly separating and supporting them, facilitating later maintenance, sorting, and troubleshooting. The pressure plate allows for flexible positioning, meeting different usage needs such as easy plugging and unplugging or locking of the connector. This ensures a secure connection between the connector and the information engineering equipment, preventing the connecting wires from loosening at the connection point when subjected to external forces such as vibration or pulling. It guarantees the stability and normal use of the connection between equipment while also making the connector easy to plug and unplug, thus improving the efficiency of wiring operations for information engineering equipment. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of an information engineering patch panel structure according to the present invention.

[0012] Figure 2This is a bottom view of an information engineering patch panel structure according to the present invention.

[0013] Figure 3 This is a schematic diagram of the pressure plate positioning structure described in this utility model.

[0014] Figure 4 This is a side sectional view of an information engineering patch panel structure according to the present invention.

[0015] Figure 5 This is a cross-sectional view of an information engineering patch panel structure according to the present invention.

[0016] Figure 6 This is a schematic diagram of the patch panel structure described in this utility model.

[0017] Figure 7 The present utility model Figure 5 Enlarged view of a local structure. Detailed Implementation

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0019] Example 1:

[0020] An information engineering patch panel includes a patch panel 01, connecting wires 02, information engineering equipment 04, elastic clips 06, pressure plates 08, rotating rods 16, rotating sleeves 17, and locking sleeves 25. The patch panel 01 has mounting plates 29 on both sides, each mounting plate 29 having a fixing plate 30. The fixing plate 30 connects to the information engineering equipment 04, which in turn connects to a connector 03. The connector 03 has connecting wires 02 connected to the inner side of an anti-slip pad 05, and the outer side of the anti-slip pad 05 connects to the elastic clips 06. The elastic clips 06 connect to a support plate 07, which connects to the patch panel 01. The patch panel 01 has upright plates 15 on both sides, and the outer side of the upright plates 15 has a support plate 28. The support plate 28 connects to the outside of a bearing 23, and the inside of the bearing 23 connects to a threaded rod 24. The upper part of the threaded rod 24 has a knob 22 that fits against the support plate 28. The support plate 28 connects to the outside of the locking sleeve 25, and the inside of the locking sleeve 25 is open. The threaded rod 24 is connected via a threaded connection. The outer side of the upright plate 15 is attached to the rotating plate 27. The rotating plate 27 has multiple locking grooves 26, which are adapted to the locking sleeve 25. The locking sleeve 25 is connected to the locking grooves 26. Multiple sets of support plates 07 are evenly distributed on the upper part of the wiring frame 01. The connecting wires 02 are supported and positioned by elastic clips 06 at both ends, so that the multiple sets of connecting wires 02 are evenly spaced and evenly arranged, which facilitates later maintenance, sorting, and troubleshooting. At the same time, the addition of pressure plates 08 synchronously brakes and tightens the rear of multiple sets of connectors 03, ensuring the firmness of the connection between the connectors 03 and the information engineering equipment 04. This prevents the connectors 03 from loosening at the connection port of the information engineering equipment 04 when subjected to external forces such as vibration and pulling, ensuring the stability of the connection between the equipment and normal use. In addition, the pressure plate 08 is easy to control and adjust, increasing the convenience of inserting and removing the connectors 03 and improving the wiring efficiency of the information engineering equipment 04.

[0021] Example 2:

[0022] The rotating plate 27 of this utility model has a rotating rod 16 on its inner side. The rotating rod 16 is connected to the upright plate 15 and the rotating sleeve 17 in sequence. The rotating sleeve 17 has a control protrusion 18 and the rotating rod 16 has a control groove 19. The control protrusion 18 is adapted to the control groove 19 and the control protrusion 18 is connected to the control groove 19. The rotating rod 16 has a protruding rod 20, which passes through the upright plate 15 and is connected to the baffle 21. The baffle 21 is attached to the outer side of the upright plate 15, and the inner side of the upright plate 15 is attached to the rotating sleeve 17. The rotating sleeve 17 has multiple gear disks 13.

[0023] Example 3:

[0024] The pressure plate 08 of this utility model has an inner connector 03 and an outer support rod 09. The wiring frame 01 has multiple storage slots 11. The support rods 09 are adapted to the storage slots 11, and the storage slots 11 are connected to the support rods 09. The support rods 09 have racks 12. The support rods 09, the rotating sleeve 17, and the rotating rod 16 are connected by meshing and embedded insertion to achieve linkage and position control. This allows for position control and adjustment of the pressure plate 08 in different usage states, such as fixing and tightening, and retracting and moving inward. This strengthens the connection between the connector 03 and the information engineering equipment 04, ensuring the stability and normal use of the connection between the equipment. It also provides sufficient space for the connector 03 to be inserted and removed, facilitating operation. By rotating the knob 22, the locking sleeve 25 is displaced, which brakes and locks the pressure plate 08 in different usage states, improving structural stability and making the structure reasonable.

[0025] Example 4:

[0026] The support rod 09 of this utility model is connected to one end of the spring strip 10, and the other end of the spring strip 10 is connected to the patch panel 01. The patch panel 01 has a mounting hole 14, which is adapted to the gear disk 13. The gear disk 13 passes through the mounting hole 14 and meshes with the rack 12. The gear disk 13 is connected to the rack 12. This device supports the connecting wires 02 at equal intervals to prevent them from tangling and knotting. This facilitates later maintenance, sorting, and troubleshooting. The pressure plate 08 flexibly controls the position to meet different usage requirements such as the movable insertion and removal or braking and tightening of the connector 03. This ensures the firmness of the connection between the connector 03 and the information engineering equipment 04 and prevents the connecting wires from loosening at the connection port of the information engineering equipment 04 when subjected to external forces such as vibration and pulling. This ensures the stability of the connection between the equipment and normal use, while also making the insertion and removal of the connector 03 convenient and improving the wiring efficiency of the information engineering equipment 04.

[0027] Example 5:

[0028] Installation steps: First, assemble the patch panel 01 structure. First, install and fix the support plates 07 on the upper part of the patch panel 01, ensuring multiple support plates 07 are evenly distributed. Then, install and fix the elastic clips 06 at both ends of the support plates 07. Next, embed the threaded rod 24 into the bearing 23 until the lower surface of the knob 22 is in contact with the upper surface of the support plate 28. Finally, place the locking sleeve 25 into the support plate 28, and fit the locking sleeve 25 onto the outside of the threaded rod 24, connecting it to the threaded rod for positioning. After completing the patch panel 01 structure assembly, assemble the pressure plate 08 control structure. First, place the spring strip 10 into the storage groove 11, pressing and fixing the inner end of the spring strip 10 against the patch panel 01. Then, place the pressure plate 08 inside the patch panel 01, and insert the support rod 09 into the storage groove 11. The spring bar 10 is pressed against the outer end of the rack 12, which corresponds to the mounting hole 14. Then, the rotating sleeve 17 is placed under the wiring frame 01, and the gear disk 13 passes through the mounting hole 14 and meshes with the rack 12. The rotating rod 16 passes through the upright plate 15 and the rotating sleeve 17 in sequence until the protruding rod 20 passes through the upright plate 15. The inner surface of the rotating plate 27 is in contact with the outer surface of the upright plate 15, and the locking groove 26 corresponds to the locking sleeve 25. The control protrusion 18 is embedded in the control groove 19. Then, the baffle 21 is placed outside the upright plate 15 and fixedly connected with the protruding rod 20. The inner surface of the baffle 21 is in contact with the upright plate 15. The baffle 21 rotates synchronously with the protruding rod 20. Finally, the locking sleeve 25 is moved into the locking groove 26 by rotating the knob 22, thus completing the installation.

[0029] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. An information engineering patch panel, characterized in that: The system includes a patch panel (01), connecting wires (02), information engineering equipment (04), elastic clips (06), pressure plates (08), rotating rods (16), rotating sleeves (17), and locking sleeves (25). The patch panel (01) has mounting plates (29) on both sides. The mounting plates (29) have fixing plates (30). The fixing plates (30) are connected to the information engineering equipment (04). The information engineering equipment (04) is connected to a connector (03). The connector (03) has connecting wires (02). The connecting wires (02) are connected to the inner side of an anti-slip pad (05). The outer side of the anti-slip pad (05) is connected to the elastic clips (06). The elastic clips (06) are connected to a support plate (07). The support plate (07) is connected to the support plate (08). The patch panel (01) is connected. The patch panel (01) has upright plates (15) on both sides. The upright plates (15) have support plates (28) on the outside. The support plates (28) are connected to the outside of the bearing (23). The bearing (23) is connected to the threaded rod (24). The threaded rod (24) has a knob (22) on the upper part. The knob (22) is attached to the support plate (28). The support plate (28) is connected to the outside of the lock sleeve (25). The lock sleeve (25) is connected to the threaded rod (24) through a thread. The upright plates (15) are attached to the rotating plate (27) on the outside. The rotating plate (27) has multiple locking grooves (26). The locking grooves (26) are adapted to the lock sleeve (25). The lock sleeve (25) is connected to the locking grooves (26).

2. The information engineering patch panel according to claim 1, characterized in that: The rotating plate (27) has a rotating rod (16) on its inner side. The rotating rod (16) is connected to the upright plate (15) and the rotating sleeve (17) in sequence. The rotating sleeve (17) has a control protrusion (18). The rotating rod (16) has a control groove (19). The control protrusion (18) is adapted to the control groove (19). The control protrusion (18) is connected to the control groove (19). The rotating rod (16) has a protrusion (20). The protrusion (20) passes through the upright plate (15). The protrusion (20) is connected to the baffle (21). The baffle (21) fits against the outer side of the upright plate (15). The inner side of the upright plate (15) fits against the rotating sleeve (17). The rotating sleeve (17) has multiple gear disks (13).

3. The information engineering patch panel according to claim 2, characterized in that: The inner side of the pressure plate (08) is connected to the connector (03), and the outer side of the pressure plate (08) has multiple support rods (09). The wiring frame (01) has multiple storage slots (11). The support rods (09) are adapted to the storage slots (11). The storage slots (11) are connected to the support rods (09). The support rods (09) have racks (12).

4. An information engineering patch panel according to claim 1, characterized in that: The support rod (09) is connected to one end of the spring strip (10), and the other end of the spring strip (10) is connected to the wiring frame (01). The wiring frame (01) has a mounting hole (14), which is adapted to the gear disk (13). The gear disk (13) passes through the mounting hole (14), and the gear disk (13) meshes with the rack (12). The gear disk (13) is connected to the rack (12).

Citation Information

Patent Citations

  • Distributing frame

    CN208434069U