Computer room cable tray

CN224774517UActive Publication Date: 2026-09-18HARBIN SECOND HOSPITAL
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Patent Information

Application Number
CN202522181023.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-09-18
Estimated Expiration
2035-10-15

AI Technical Summary

Technical Problem

然而此装置中各“安装槽”方向统一,无法根据计算机机房线缆实际连接位置,对其束线角度进行相应变化,降低布线清晰性,存有弊端

Benefits of technology

[0007] This utility model features an upper and lower cable tie ring connected by a movable shaft for opening and closing, and fixed by an interlocking upper and lower connecting plate. It is easy to operate, allowing for quick insertion, fixing, unlocking, and removal of cables, thus improving the efficiency of cable management in computer rooms. Furthermore, the internal rubber pad increases the frictional resistance between the cable contact surface, preventing cable slippage and improving cable positioning.

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Abstract

A computer room cable management system includes a cable management frame, a cable management base, a locking rod, a positioning rod, a rotating base, and cable management rings. The cable management rings connect to the outer side of a rubber pad, and cables are connected to the inner side of the rubber pad. The cable management rings are divided into an upper cable management ring and a lower cable management ring, with the upper cable management ring connected to the lower cable management ring. The upper cable management ring has a connecting block on its left side, and the lower cable management ring has a connecting ear on its left side. The connecting ear is connected to the connecting block via a movable shaft. The movable shaft sequentially connects the connecting ear and the connecting block, and the connecting block rotates on the movable shaft. The upper cable management ring has an upper connecting plate on its right side, and the lower cable management ring has a lower connecting plate on its right side, with the lower connecting plate connected to the upper connecting plate. The upper connecting plate has a fixing protrusion, and the lower connecting plate has a fixing groove. The fixing protrusion and the fixing groove are adapted to each other, and the fixing protrusion connects to the fixing groove. The lower cable management ring has a base plate at its lower part, which fits against the cable management frame.
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Description

Technical Field

[0001] This utility model relates to the field of computers, and in particular to a cable management rack for computer rooms. Background Technology

[0002] An existing patent (publication number: CN223273770U) discloses a computer room cable management rack, including a base, a clamping wall, a clamping assembly, and a sound-emitting assembly. The clamping wall is detachably connected to the base and is arranged parallel to the base. Both the base and the clamping wall have arrayed mounting slots, which are correspondingly arranged to form through holes for wires to pass through. The clamping assembly includes a first clamping block, a second clamping block, a first elastic element, and a second elastic element. However, in this device, the orientation of each "mounting slot" is uniform, making it impossible to adjust the cable management angle according to the actual connection position of the computer room cables, reducing the clarity of the wiring and presenting a drawback. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a computer room cable management rack that is easy to open and close, allowing for quick insertion, fixing, unlocking, and removal of cables. This improves the efficiency of cable management in computer rooms and allows for flexible adjustment of the cable management angle, spacing, and quantity based on the actual cable management needs of the computer room and the location of the cable connection equipment, thereby enhancing the clarity and rationality of the cabling.

[0004] The objective of this utility model is achieved through the following technical solution: A computer room cable management system includes a cable management frame, a cable management base, a locking rod, a positioning rod, a rotating base, and cable management rings. The cable management rings connect to the outer side of a rubber pad, and cables are connected to the inner side of the rubber pad. The cable management rings are divided into an upper cable management ring and a lower cable management ring, with the upper cable management ring connected to the lower cable management ring. The upper cable management ring has a connecting block on its left side, and the lower cable management ring has a connecting ear on its left side. The connecting ear is connected to the connecting block via a movable shaft. The movable shaft sequentially connects the connecting ear and the connecting block, and the connecting block rotates on the movable shaft. The upper cable management ring has an upper connecting plate on its right side, and the lower cable management ring has a lower connecting plate on its right side, with the lower connecting plate connected to the upper connecting plate. The upper connecting plate has a fixing protrusion, and the lower connecting plate has a fixing groove. The fixing protrusion and the fixing groove are adapted to each other, and the fixing protrusion connects to the fixing groove. The lower cable management ring has a base plate at its lower part, which fits against the cable management frame.

[0005] The cable tie frame of this utility model has a sliding hole on the upper part, and fixed plates at both ends. The cable tie frame has a slide rail inside, which is adapted to the cable tie seat. The slide rail connects to the cable tie seat, and the cable tie seat slides in the slide rail. The cable tie seat has a positioning groove. The cable tie frame has multiple positioning holes. The positioning holes and positioning grooves are adapted to positioning rods. The positioning rods pass through the positioning holes, and the inner end of the positioning rods is connected to the positioning grooves by threads. The outer end of the positioning rods has a knob, and the knob is connected to the cable tie frame.

[0006] The cable harness of this invention has an internally connected rotating seat. The lower part of the rotating seat has a main gear, and the upper part of the rotating seat has a rotating rod. The rotating rod is connected to the inside of the bearing, and the outside of the bearing is connected to the cable harness. The rotating rod is adapted to a sliding hole and passes through the sliding hole. The rotating rod is connected to a base plate. The base plate has an insert rod, and the rotating rod has a slot. The insert rod is adapted to the slot, and the slot is connected to the insert rod. The insert rod is connected to the rotating seat by screws. The screws are connected to the rotating seat and the insert rod in sequence. Beneficial effects

[0007] This utility model features an upper and lower cable tie ring connected by a movable shaft for opening and closing, and fixed by an interlocking upper and lower connecting plate. It is easy to operate, allowing for quick insertion, fixing, unlocking, and removal of cables, thus improving the efficiency of cable management in computer rooms. Furthermore, the internal rubber pad increases the frictional resistance between the cable contact surface, preventing cable slippage and improving cable positioning.

[0008] This utility model's rotating base uses the meshing transmission between the main gear and the auxiliary gear to flexibly rotate and brake the cable bundle angle. When it is necessary to change the direction of the cable bundle, pulling the pull ball will disengage the locking rod from the locking groove to unlock it. At this time, the cable bundle angle can be flexibly changed according to the actual cabling requirements of the computer room and the location of the cable connection equipment, improving the clarity and rationality of the cabling, and facilitating later cable maintenance and troubleshooting. After adjusting to the appropriate angle, releasing the pull ball will cause the locking rod to re-insert into the locking groove under the action of the spring to ensure the stability of the cable bundle.

[0009] The base plate and the rotating rod of this utility model are connected by a plug rod, which provides a force support point for the rotating seat to drive the cable tie ring to rotate synchronously. At the same time, the cable tie ring and the rotating seat can be quickly disassembled and assembled by screws. This allows the number of cable tie rings and rotating seats to be flexibly increased or decreased according to the actual cable tie requirements of the computer room, thereby improving the space utilization of the cable tie rack.

[0010] This utility model cable tie holder adjusts the fixed position of the cable tie ring by sliding within a slide rail, and uses a positioning rod to position and brake the adjusted cable tie holder, so as to centrally manage or reasonably space cables in different positions, thereby improving the applicability and flexibility of the cable tie holder.

[0011] This device is easy to open and close, allowing for quick insertion, fixing, unlocking, and removal of cables. It improves the efficiency of cable management in computer rooms and allows for flexible adjustment of cable support angles, spacing, and quantity based on the actual cable management needs of the computer room and the location of the cable connection equipment, thereby improving the clarity and rationality of the cabling. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of a computer room cable management system according to the present invention.

[0013] Figure 2This is a rear view of a computer room cable management structure according to the present invention.

[0014] Figure 3 This is a cross-sectional view of a computer room cable management frame structure according to the present invention.

[0015] Figure 4 This is a schematic diagram of the cable tie holder and cable tie ring structure described in this utility model.

[0016] Figure 5 This is a schematic diagram of the wire loop drive structure described in this utility model.

[0017] Figure 6 This is an exploded view of the wire harness ring, wire harness seat, and rotating seat structure described in this utility model. Detailed Implementation

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: A computer room cable management rack includes a cable management rack 01, a cable management base 05, a locking rod 10, a positioning rod 19, a rotating base 23, and a cable management ring 27. The cable management ring 27 connects to the outside of a rubber pad 28, and the inside of the rubber pad 28 connects to a cable 03. The cable management ring 27 is divided into an upper cable management ring 271 and a lower cable management ring 272. The upper cable management ring 271 is connected to the lower cable management ring 272. The upper cable management ring 271 has a connecting block 30 on its left side, and the lower cable management ring 272 has a connecting ear 29 on its left side. The connecting ear 29 is connected to the connecting block 30 via a movable shaft 31. The movable shaft 31 sequentially connects the connecting ear 29 and the connecting block 30. The connecting block 30 rotates on the movable shaft 31. The upper cable management ring 271 has an upper connecting plate 34 on its right side, and the lower cable management ring 272 has an upper connecting plate 34 on its right side. The lower connecting plate 35 is connected to the upper connecting plate 34. The upper connecting plate 34 has a fixing protrusion 32, and the lower connecting plate 35 has a fixing groove 33. The fixing protrusion 32 is adapted to the fixing groove 33, and the fixing protrusion 32 is connected to the fixing groove 33. The lower cable tie ring 272 has a base plate 26 at its lower part, which is attached to the cable tie frame 01. The upper cable tie ring 271 and the lower cable tie ring 272 are connected and opened and closed by a movable shaft 31. They are fixed by the interlocking between the upper and lower connecting plates, which is convenient to operate. The cable 03 can be quickly inserted, fixed and unlocked and removed, which improves the efficiency of cable tie operation in the computer room. The internal rubber pad 28 increases the frictional resistance between the contact surface with the cable 03, prevents the cable 03 from sliding, and improves the positioning of the cable 03.

[0019] Example 2: The cable tie 01 of this utility model has a sliding hole 36 on its upper part, and fixed plates 02 at both ends. The cable tie 01 has a slide rail 04 inside, which is adapted to the cable tie seat 05. The slide rail 04 connects to the cable tie seat 05, and the cable tie seat 05 slides within the slide rail 04. The cable tie seat 05 has a positioning groove 17. The cable tie 01 has multiple positioning holes 16, which are adapted to positioning rods 19. The positioning rod 19 passes through the positioning holes 16, and its inner end is threaded to the positioning groove 17. The outer end of the positioning rod 19 has a knob 18, which is connected to the cable tie 01. The cable tie seat 05 slides within the slide rail 04 to adjust the fixed position of the cable tie ring 27. The positioning rod 19 is used to position and brake the adjusted cable tie seat 05, allowing for centralized cable management or reasonable spacing of cables 03 at different locations, thus improving the applicability and flexibility of the cable tie 01.

[0020] Example 3: The cable harness holder 05 of this utility model is internally connected to a rotating base 23. The lower part of the rotating base 23 has a main gear 07, and the upper part of the rotating base 23 has a rotating rod 22. The rotating rod 22 is connected to the inside of a bearing 21, and the bearing 21 is externally connected to the cable harness holder 05. The rotating rod 22 is adapted to a sliding hole 36 and passes through the sliding hole 36. The rotating rod 22 is connected to a base plate 26. The base plate 26 has an insert rod 24, and the rotating rod 22 has a slot 25. The insert rod 24 is adapted to the slot 25, and the slot 25 connects to the insert rod 24. The insertion rod 24 is connected to the rotating base 23 by screws 20. The screws 20 are connected to the rotating base 23 and the insertion rod 24 in sequence. The base plate 26 and the rotating rod 22 are connected by the insertion rod 24. This provides a force support point for the rotating base 23 to drive the cable tie ring 27 to rotate synchronously. At the same time, the cable tie ring 27 and the rotating base 23 can be quickly disassembled and assembled by screws 20. This allows the number of cable tie rings 27 and rotating bases 23 to be flexibly increased or decreased according to the actual cable tie requirements of the computer room, thereby improving the space utilization of the cable tie rack 01.

[0021] Example 4: The cable harness holder 05 of this utility model has a through hole 06, which is adapted to a secondary gear 08. The secondary gear 08 passes through the through hole 06 and meshes with a main gear 07. The main gear 07 is connected to the secondary gear 08. The secondary gear 08 is connected to the cable harness holder 05 via a central shaft 09. The central shaft 09 is sequentially connected to the cable harness holder 05 and the secondary gear 08. The secondary gear 08 has multiple locking grooves 11, which are adapted to locking rods 10. The inner end of the locking rod 10 is connected to the locking grooves 11, and the outer end of the locking rod 10 has a pull ball 15. The rotating seat 23 is driven by the meshing between the main gear 07 and the secondary gear 08 to flexibly rotate and brake the cable harness angle of the cable harness ring 27. When it is necessary to change the direction of the cable harness 03, the pull ball 15 is pulled to lock the rod 10. Once the cable is released from the locking slot 11, it can be unlocked. At this point, the angle of the cable tie ring 27 can be flexibly adjusted according to the actual cabling requirements of the computer room cable 03 and the location of the equipment connected to the cable 03, so as to improve the clarity and rationality of the cabling and facilitate the maintenance and troubleshooting of the cable 03 in the future. After adjusting to the appropriate angle, the pull ball 15 is released, and the locking rod 10 is reinserted into the locking slot 11 under the action of the spring 13 to ensure the stability of the cable tie ring 27.

[0022] Example 5: The locking rod 10 of this utility model passes sequentially through the baffle 14, spring 13, pressure plate 12, and cable tie seat 05. The cable tie seat 05 has a sliding groove 37, which is adapted to the pressure plate 12. The pressure plate 12 is connected to the sliding groove 37 and slides within the sliding groove 37. The pressure plate 12 is connected to the locking rod 10 and the inner end of the spring 13. The outer end of the spring 13 is connected to the baffle 14, and the baffle 14 is connected to the cable tie seat 05. This device is easy to open and close, and can quickly insert and fix the cable 03 and unlock and remove it. It improves the efficiency of cable tying in computer rooms and can flexibly adjust the cable tying angle, arrangement distance, and number of cables according to the actual cable tying needs of the computer room and the location of the equipment connected to the cable 03, thereby improving the clarity and rationality of the wiring.

[0023] Example 6: Installation steps: First, assemble the cable tie holder 05 structure. Place the rotating base 23 into the cable tie holder 05, and embed the rotating rod 22 into the bearing 21. Then, insert the secondary gear 08 through the through hole 06 into the cable tie holder 05, and connect it to the cable tie holder 05 via the central shaft 09. The secondary gear 08 meshes with the main gear 07. Next, the locking rod 10 passes sequentially through the baffle 14, spring 13, and pressure plate 12, with the pressure plate 12 fixedly connected to the locking rod 10. The inner end of the spring 13 is pressed and fixed to the pressure plate 12, and the outer end of the spring 13 is pressed and fixed to the baffle 14. Finally, install and fix the baffle 14 to the lower part of the cable tie holder 05, embedding the pressure plate 12 into the sliding groove 37. The locking rod 10 passes through the cable tie holder 05 and inserts into the locking groove 11, completing the cable tie holder 05 assembly. 5. After the structure is assembled, place the cable tie 05 into the slide rail 04, with the positioning groove 17 corresponding to the positioning hole 16. The rotating rod 22 passes through the sliding hole 36, and then the positioning rod 19 passes through the positioning hole 16 until its inner end is embedded in the positioning groove 17. It is then fixedly connected to the cable tie 05 by threads, and the inner surface of the knob 18 is in contact with the cable tie frame 01. The lower cable tie ring 272 is then placed on the upper part of the cable tie frame 01, with the lower surface of the base plate 26 in contact with the upper surface of the cable tie frame 01. The insertion rod 24 is embedded in the slot 25 and fixedly connected to the rotating seat 23 by screws 20. Finally, the upper cable tie ring 271 is placed on the upper part of the lower cable tie ring 272 and connected by the movable shaft 31. The fixing protrusion 32 is embedded in the fixing groove 33, completing the installation.

[0024] 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 cable management rack for a computer room, characterized in that: The cable tie includes a cable tie frame (01), a cable tie base (05), a locking rod (10), a positioning rod (19), a rotating base (23), and a cable tie ring (27). The cable tie ring (27) connects to the outside of a rubber pad (28), and the inside of the rubber pad (28) connects to a cable (03). The cable tie ring (27) is divided into an upper cable tie ring (271) and a lower cable tie ring (272). The upper cable tie ring (271) is connected to the lower cable tie ring (272). The upper cable tie ring (271) has a connecting block (30) on its left side, and the lower cable tie ring (272) has a connecting ear (29) on its left side. The connecting ear (29) is connected to the connecting block (30) via a movable shaft (31). The movable shaft (31) is connected in sequence to... Connecting ear (29) and connecting block (30), the connecting block (30) rotates on the movable shaft (31), the upper wire loop (271) has an upper connecting plate (34) on the right side, the lower wire loop (272) has a lower connecting plate (35) on the right side, the lower connecting plate (35) is connected to the upper connecting plate (34), the upper connecting plate (34) has a fixing protrusion (32), the lower connecting plate (35) has a fixing groove (33), the fixing protrusion (32) is adapted to the fixing groove (33), the fixing protrusion (32) is connected to the fixing groove (33), the lower part of the lower wire loop (272) has a bottom plate (26), the bottom plate (26) is attached to the wire loop frame (01).

2. A computer wiring rack as claimed in claim 1, wherein The cable tie frame (01) has a sliding hole (36) on the upper part, and fixed plates (02) at both ends of the cable tie frame (01). The cable tie frame (01) has a slide rail (04) inside, which is adapted to the cable tie seat (05). The slide rail (04) is connected to the cable tie seat (05). The cable tie seat (05) slides in the slide rail (04). The cable tie seat (05) has a positioning groove (17). The cable tie frame (01) has multiple positioning holes (16). The positioning holes (16) and positioning grooves (17) are adapted to positioning rods (19). The positioning rods (19) pass through the positioning holes (16). The inner end of the positioning rods (19) is connected to the positioning grooves (17) by a thread. The outer end of the positioning rods (19) has a knob (18), which is connected to the cable tie frame (01).

3. A computer wiring rack as claimed in claim 2, wherein The cable harness (05) is internally connected to a rotating seat (23). The lower part of the rotating seat (23) has a main gear (07), and the upper part of the rotating seat (23) has a rotating rod (22). The rotating rod (22) is connected to the inside of the bearing (21), and the bearing (21) is externally connected to the cable harness (05). The rotating rod (22) is adapted to the sliding hole (36), and the rotating rod (22) passes through the sliding hole (36). The rotating rod (22) is connected to the base plate (26). The base plate (26) has a plug rod (24), and the rotating rod (22) has a slot (25). The plug rod (24) is adapted to the slot (25), and the slot (25) is connected to the plug rod (24). The plug rod (24) is connected to the rotating seat (23) by a screw (20). The screw (20) is connected to the rotating seat (23) and the plug rod (24) in sequence.

4. A computer wiring rack as claimed in claim 3, wherein The cable harness (05) has a through hole (06), which is adapted to the auxiliary gear (08). The auxiliary gear (08) passes through the through hole (06) and meshes with the main gear (07). The main gear (07) is connected to the auxiliary gear (08). The auxiliary gear (08) is connected to the cable harness (05) through a central shaft (09). The central shaft (09) is connected to the cable harness (05) and the auxiliary gear (08) in sequence. The auxiliary gear (08) has multiple locking grooves (11), which are adapted to the locking rod (10). The inner end of the locking rod (10) is connected to the locking groove (11), and the outer end of the locking rod (10) has a pull ball (15).

5. A computer wiring closet rack according to claim 1, wherein The locking rod (10) passes through the baffle (14), spring (13), pressure plate (12), and cable tie seat (05) in sequence. The cable tie seat (05) has a groove (37) that is adapted to the pressure plate (12). The pressure plate (12) is connected to the groove (37) and slides in the groove (37). The pressure plate (12) is connected to the locking rod (10). The pressure plate (12) is connected to the inner end of the spring (13). The outer end of the spring (13) is connected to the baffle (14). The baffle (14) is connected to the cable tie seat (05).

Citation Information

Patent Citations

  • Computer room bunching frame

    CN223273770U