A patch panel for computer integrated equipment

CN224709714UActive Publication Date: 2026-09-01HEILONGJIANG PROVINCIAL BUSINESS SCHOOL
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Patent Information

Application Number
CN202522181320.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-09-01
Estimated Expiration
2035-10-15

AI Technical Summary

Technical Problem

然而此装置中“单元板上设置有多对连接孔”,其连接孔结构固定,在使用时对连接的线缆没有夹持固定作用,在外力作用下容易导致线缆连接不稳,影响计算机集成设备信号传输稳定,存有弊端

Benefits of technology

[0007]本实用新型夹板与理线架相配合,并通过内、外半线槽紧密包裹线缆,以及内、外胶垫起到缓冲和防滑作用,对线缆形成稳固夹持,避免外力作用下线缆松动、脱落,确保计算机集成设备信号传输稳定,且多组线缆间有序梳理及固定,可避免线缆杂乱缠绕,利于线缆散热的同时,并通过清晰布线,方便作业人员后期对线缆进行快速排查、维护,提高作业效率。

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Abstract

A patch panel for computer integrated equipment includes a patch panel, a cable management frame, a drive gear, a rotating sleeve, a positioning support rod, a clamping plate, and a U-shaped buckle. The patch panel has fixed plates on both sides and support rods at both ends. The support rods have cable management frames. The cable management frame has a fixed plate in the middle, and the fixed plate is connected to the patch panel. The U-shaped buckle is connected to the outside of the cable management frame, and the clamping plate is attached to the inside of the U-shaped buckle. The clamping plate has a positioning support plate in the middle. The cable management frame has a placement groove inside, which is adapted to the rotating sleeve. The rotating sleeve is connected to the placement groove. The rotating sleeve has a driven gear on the outside. The positioning support rod is connected to the inside of the rotating sleeve by screws. The screws are connected to the rotating sleeve and the positioning support rod in sequence.
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Description

Technical Field

[0001] This utility model relates to the field of computers, and in particular to a patch panel for computer integrated equipment. Background Technology

[0002] An existing patent (publication number: CN104954895A) discloses a digital patch panel, including a frame and multi-layer unit boards mounted on the frame. Each unit board has multiple pairs of connection holes, and each end of the unit board has a flipping device. Each layer of the unit board includes two unit boards. When the unit boards are rotated to a horizontal position, the two unit boards in each layer are located on the same horizontal plane. The flipping device includes a rotating shaft for controlling the horizontal movement and rotation of the unit boards, a handle for controlling the rotation of the rotating shaft, and a stop for fixing the handle to limit the rotation of the rotating shaft. However, in this device, the "multiple pairs of connection holes on the unit boards" have a fixed connection hole structure. During use, they do not clamp or fix the connected cables, making the cable connections unstable under external force, affecting the signal transmission stability of computer integrated equipment, thus presenting a drawback. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a patch panel for computer integrated equipment that prevents cables from loosening or falling off under external force, ensures stable signal transmission of computer integrated equipment, and allows for rapid adjustment of the clamping hole diameter according to the actual diameter of the cable to meet the clamping requirements of different types of cables, thus exhibiting strong adaptability.

[0004] The objective of this utility model is achieved through the following technical solution: A patch panel for computer integrated equipment includes a patch panel, a cable management frame, a drive gear, a rotating sleeve, a positioning support rod, a clamping plate, and a U-shaped buckle. The patch panel has fixed plates on both sides and support rods at both ends. The support rods have cable management frames. The cable management frame has a fixed plate in the middle, and the fixed plate is connected to the patch panel. The U-shaped buckle is connected to the outside of the cable management frame, and the clamping plate is attached to the inside of the U-shaped buckle. The clamping plate has a positioning support plate in the middle. The cable management frame has a placement groove inside, which is adapted to the rotating sleeve. The rotating sleeve is connected to the placement groove. The rotating sleeve has a driven gear on the outside. The positioning support rod is connected to the inside of the rotating sleeve by screws. The screws are connected to the rotating sleeve and the positioning support rod in sequence.

[0005] The U-shaped buckle of this utility model has an external fixing hole, and the cable management rack has an internal fixing hole. The external fixing hole and the internal fixing hole are adapted to the positioning support rod. The positioning support rod passes through the external fixing hole, the positioning support plate, the internal fixing hole, and the rotating sleeve in sequence. The positioning support rod is connected to the positioning support plate by a thread.

[0006] The driven gear of this utility model meshes with the driving gear, the driven gear is connected to the driving gear, the driving gear has a pad, the pad is attached to the cable management frame, the pad has a driving rod, the driving rod is connected to the inside of the bearing, the outside of the bearing is connected to the cable management frame, the outside of the cable management frame is attached to a knob, and the knob is connected to the driving rod. Beneficial effects

[0007] This utility model's clamping plate works in conjunction with the cable management rack, and tightly wraps the cables with inner and outer half-channels, while inner and outer rubber pads provide cushioning and anti-slip properties, forming a stable clamp for the cables. This prevents the cables from loosening or falling off under external force, ensuring stable signal transmission of computer integrated equipment. Furthermore, the orderly arrangement and fixation of multiple groups of cables prevents them from becoming tangled and facilitates heat dissipation. The clear cable routing also makes it easier for operators to quickly inspect and maintain the cables later, improving work efficiency.

[0008] The meshing and linkage between the drive gear and the driven gear in this utility model, combined with the threaded positioning between the positioning support rod and the positioning support plate, allows the two clamping plates to move synchronously towards or away from each other by rotating the knob. This adjusts the size of the hole formed by the combination of the inner and outer half-grooves, making it adaptable to the clamping requirements of cables of different thicknesses and specifications, expanding its applicability, improving the compatibility of the patch panel, and simultaneously clamping multiple cables in two rows. This makes operation convenient and improves the wiring efficiency of computer integrated equipment.

[0009] This utility model features clear wiring and stable clamping, preventing cables from loosening or falling off under external force. It ensures stable signal transmission of computer integrated equipment and allows for quick adjustment of the clamping hole diameter according to the actual diameter of the cable, meeting the clamping requirements of different cable models and exhibiting strong adaptability. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of a patch panel structure for a computer integrated equipment according to the present invention.

[0011] Figure 2 This is a cross-sectional view of the cable management frame structure described in this utility model.

[0012] Figure 3 This is a cross-sectional view of a patch panel structure for a computer integrated equipment according to the present invention.

[0013] Figure 4 This is a side sectional view of a patch panel structure for a computer integrated equipment according to the present invention.

[0014] Figure 5 This is a schematic diagram of the patch panel structure described in this utility model.

[0015] Figure 6 This is a schematic diagram of the clamping plate positioning structure described in this utility model. Detailed Implementation

[0016] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: A patch panel for computer integrated equipment includes a patch panel 01, a cable management frame 02, a drive gear 07, a rotating sleeve 09, a positioning support rod 11, a clamping plate 13, and a U-shaped buckle 24. The patch panel 01 has fixing plates 03 on both sides and support rods 04 at both ends. The support rods 04 have the cable management frame 02. The cable management frame 02 has a fixing plate 03 in the middle, which connects to the patch panel 01. The cable management frame 02 is externally connected to the U-shaped buckle 24, and the clamping plate 13 is attached to the inner side of the U-shaped buckle 24. The clamping plate 13 has a positioning support plate 12 in the middle. The cable management frame 02 has a U-shaped buckle 24 inside. It has a placement slot 06, which is adapted to the rotating sleeve 09. The rotating sleeve 09 is connected to the placement slot 06. The rotating sleeve 09 has a driven gear 08 on its outside. The rotating sleeve 09 is connected to the positioning support rod 11 through screws 10 inside. The screws 10 are connected to the rotating sleeve 09 and the positioning support rod 11 in sequence. This device has clear wiring and stable clamping, which prevents the cable 25 from loosening or falling off under the action of external force. It ensures the stable signal transmission of computer integrated equipment. At the same time, it can quickly adjust the clamping hole diameter according to the actual diameter of the cable 25 to meet the clamping requirements of different types of cables 25, and has strong adaptability.

[0017] Example 2: The U-shaped buckle 24 of this utility model has an outer fixing hole 22, and the cable management rack 02 has an inner fixing hole 23. The outer fixing hole 22 and the inner fixing hole 23 are adapted to the positioning support rod 11. The positioning support rod 11 passes through the outer fixing hole 22, the positioning support plate 12, the inner fixing hole 23, and the rotating sleeve 09 in sequence. The positioning support rod 11 is connected to the positioning support plate 12 by a thread.

[0018] Example 3: The driven gear 08 of this utility model meshes with the driving gear 07, and the driven gear 08 is connected to the driving gear 07. The driving gear 07 has a pad 19, which is attached to the cable management frame 02. The pad 19 has a driving rod 21, which is connected to the inside of the bearing 18. The cable management frame 02 is connected to the outside of the bearing 18. The cable management frame 02 is attached to a knob 20, which is connected to the driving rod 21. The meshing and linkage between the driving gear 07 and the driven gear 08, combined with the threaded positioning between the positioning support rod 11 and the positioning support plate 12, allows the two clamping plates 13 to move synchronously towards or away from each other by rotating the knob 20. This adjusts the size of the hole formed by the combination of the inner and outer half-channels, making it adaptable to the clamping requirements of cables 25 of different thicknesses and specifications, expanding its applicability, improving the compatibility of the patch panel 01, and simultaneously clamping multiple cables 25 in two rows. This makes operation convenient and improves the wiring efficiency of computer integrated equipment.

[0019] Example 4: The cable management rack 02 of this utility model has multiple inner half-channels 16 on both sides, with inner half-channels 16 connected to inner rubber pads 15, and inner rubber pads 15 connected to cables 25. The clamp 13 has multiple outer half-channels 17 on its inner side, with outer half-channels 17 connected to outer rubber pads 14, and outer rubber pads 14 connected to cables 25. The clamp 13 cooperates with the cable management rack 02, and the inner and outer half-channels tightly wrap the cables 25, while the inner and outer rubber pads provide cushioning and anti-slip effects, forming a stable clamp for the cables 25. This prevents the cables 25 from loosening or falling off under external force, ensuring stable signal transmission of computer integrated equipment. Furthermore, the orderly arrangement and fixation of multiple groups of cables 25 can prevent the cables 25 from becoming tangled and facilitate heat dissipation. The clear wiring also makes it convenient for operators to quickly inspect and maintain the cables 25 later, improving work efficiency.

[0020] Example 5: Installation steps: First, place the drive gear 07 into the placement groove 06 until the pad 19 is in contact with the cable management frame 02 and the drive rod 21 is embedded in the bearing 18. Then, place the knob 20 outside the cable management frame 02 and fix it to the outer end of the drive rod 21. Next, place the rotating sleeve 09 into the placement groove 06 and mesh the drive gear 07 with the driven gear 08. Then, place the clamping plate 13 on both sides of the cable management frame 02, with the inner half-channel 16 and the outer half-channel 17 corresponding to each other. Then, the U-shaped buckle 24 is installed and fixed on both sides of the cable management rack 02, and the inner surface of the U-shaped buckle 24 is in contact with the outer surface of the clamp 13. The outer fixing hole 22 and the inner fixing hole 23 are corresponding. Finally, the positioning support rod 11 is passed through the outer fixing hole 22, the positioning support plate 12, the inner fixing hole 23 and the rotating sleeve 09 in sequence, and is fixedly connected to the rotating sleeve 09 by the screw 10. The two ends of the positioning support rod 11 are respectively positioned and connected to the positioning support plates 12 on both sides by positive and negative threads, thus completing the installation.

[0021] 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. A patch panel for computer integrated equipment, characterized in that: The cable management system includes a patch panel (01), a cable management rack (02), a drive gear (07), a rotating sleeve (09), a positioning support rod (11), a clamping plate (13), and a U-shaped buckle (24). The patch panel (01) has fixing plates (03) on both sides and support rods (04) at both ends. The support rods (04) have cable management racks (02). The cable management rack (02) has a fixing plate (03) in the middle. The fixing plate (03) connects to the patch panel (01). The cable management rack (02) is externally connected to a U-shaped buckle. The buckle (24) is attached to the inner side of the clamp (13). The clamp (13) has a positioning support plate (12) in the middle. The cable management rack (02) has a placement groove (06) inside. The placement groove (06) is adapted to the rotating sleeve (09). The rotating sleeve (09) is connected to the placement groove (06). The rotating sleeve (09) has a driven gear (08) on the outside. The rotating sleeve (09) is connected to the positioning support rod (11) through the screw (10) inside. The screw (10) is connected to the rotating sleeve (09) and the positioning support rod (11) in sequence.

2. A patch panel for computer integrated equipment according to claim 1, characterized in that: The U-shaped buckle (24) has an outer fixing hole (22), and the cable management rack (02) has an inner fixing hole (23). The outer fixing hole (22) and the inner fixing hole (23) are adapted to the positioning support rod (11). The positioning support rod (11) passes through the outer fixing hole (22), the positioning support plate (12), the inner fixing hole (23), and the rotating sleeve (09) in sequence. The positioning support rod (11) is connected to the positioning support plate (12) by a thread.

3. A patch panel for computer integrated equipment according to claim 2, characterized in that: The driven gear (08) meshes with the driving gear (07). The driven gear (08) is connected to the driving gear (07). The driving gear (07) has a pad (19). The pad (19) is attached to the cable management frame (02). The pad (19) has a drive rod (21). The drive rod (21) is connected to the inside of the bearing (18). The outside of the bearing (18) is connected to the cable management frame (02). The outside of the cable management frame (02) is attached to the knob (20). The knob (20) is connected to the drive rod (21).

4. A patch panel for computer integrated equipment according to claim 1, characterized in that: The cable management rack (02) has multiple inner half-channels (16) on both sides, the inner half-channels (16) are connected to inner rubber pads (15), and the inner rubber pads (15) are connected to cables (25). The clamp (13) has multiple outer half-channels (17) on the inner side, the outer half-channels (17) are connected to outer rubber pads (14), and the outer rubber pads (14) are connected to cables (25).

Citation Information

Patent Citations

  • Digital distribution frame

    CN104954895A