Wire arranging device

CN224610447UActive Publication Date: 2026-08-07ZHEJIANG ZHAOLONG INTERCONNECT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG ZHAOLONG INTERCONNECT TECH CO LTD
Filing Date
2025-08-15
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]然而,大量的中央处理器、硬盘、主存储器彼此连接,或与网际网络连接,皆需通过数量庞大的线缆及光纤,但若线缆及光纤未被整理、放任其随意置放,混乱的线缆及光纤会对伺服器造成散热气流阻碍、不易维修、增加危险性与环境美观下降等问题

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Abstract

The utility model relates to a wire arrangement device for a case, a plurality of cables and a plurality of optical fibers, the case has a plurality of parallel interval spaces, the wire arrangement device comprises a winding box, the winding box is detachably fixed to the case and transversely arranged in the plurality of parallel interval spaces, the inside of the winding box is separated into a first cavity and a second cavity which are stacked, the outside of the winding box is provided with a plurality of first openings corresponding to the first cavity and a plurality of second openings corresponding to the second cavity, and each first opening and each second opening are respectively arranged opposite to each interval space, wherein one of the plurality of cables and the plurality of optical fibers is accommodated in the first cavity and passes through each first opening to each interval space, and the other of the plurality of cables and the plurality of optical fibers is accommodated in the second cavity and passes through each second opening to each interval space.
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Description

Technical Field

[0001] This utility model relates to a cable management rack structure for organizing optical fibers and cables, and more particularly to a cable management device. Background Technology

[0002] The integration of servers, switches, GPUs, and servers includes multiple central processing units, multiple hard drives, and multiple main storage devices. This integration enables servers, switches, GPUs, and servers to provide cloud computing and massive data services to a large number of users via the Internet, thereby creating various new types of industries, such as e-commerce, online stores, online shopping, online auctions, online marketing, online games, web design, blogs, and increasingly prevalent cloud databases.

[0003] However, the interconnection of numerous central processing units, hard drives, and main storage devices, or their connection to the internet, requires a vast number of cables and fiber optic cables. If these cables and cables are not organized and are left haphazardly placed, the resulting mess can obstruct airflow and heat dissipation, hinder maintenance, increase safety risks, and degrade the aesthetics of the environment. Therefore, how to improve server cable management is a key focus of this invention.

[0004] In view of this, the inventor of this utility model has devoted himself to researching and applying theoretical principles to solve the aforementioned problems, which is the goal of the inventor's development. Utility Model Content

[0005] This utility model provides a cable management device. When the cable take-up box is fixed to the chassis, the cable take-up box is horizontally arranged across a plurality of parallel space intervals. The cable take-up box has a first cavity and a second cavity stacked inside. The first opening of the cable take-up box is configured with the first cavity and the space intervals, and the second opening of the cable take-up box is configured with the second cavity and the space intervals. This allows one of the plurality of cables and the plurality of optical fibers to be accommodated in the first cavity and pass through each first opening to each space interval, and the other of the plurality of cables and the plurality of optical fibers to be accommodated in the second cavity and pass through each second opening to each space interval. This achieves the effect of layered management and cable management of cables and optical fibers.

[0006] In this embodiment of the present invention, a cable management device is provided for a chassis, a plurality of cables, and a plurality of optical fibers. The chassis has a plurality of parallel spaced intervals. The cable management device includes: a cable take-up box, which is detachably fixed to the chassis and laterally spans the plurality of parallel spaced intervals. The cable take-up box is internally divided into a first cavity and a second cavity stacked on top of each other. The cable take-up box is externally provided with a plurality of first ports corresponding to the first cavity and a plurality of second ports corresponding to the second cavity, and each of the first ports and each of the second ports is respectively arranged opposite to each of the spaced intervals. Among them, one of the plurality of cables and one of the plurality of optical fibers is housed in the first cavity and passes through each of the first ports to each of the spaced intervals, and the other of the plurality of cables and one of the plurality of optical fibers is housed in the second cavity and passes through each of the second ports to each of the spaced intervals.

[0007] Based on the above, cables and optical fibers can be managed in layers through the first cavity and the second cavity, and the end of the cable and optical fiber that is electrically connected to the circuit board of each space can also be managed through the first port and the second port, so that the cable management device of this utility model has the advantages of layered management of cables and optical fibers and helping to manage the cable and optical fiber outlet ends.

[0008] Based on the above, the cable management device of this utility model further includes a plurality of cable management racks, which are connected to the cable take-up box and are configured with a plurality of first ports and a plurality of second ports. Each cable management rack is provided with a plurality of cable management slots, and cables or optical fibers can be locked into the cable management slots, thereby further enhancing the cable management efficiency of the cable management device of this utility model. Attached Figure Description

[0009] Figure 1 This is a three-dimensional schematic diagram of the cable management device of this utility model fixed in the chassis;

[0010] Figure 2 This is a utility model Figure 1 A magnified view of the area marked 2 in the middle box;

[0011] Figure 3 This is a utility model Figure 1 A magnified view of the area marked 3 in the middle box;

[0012] Figure 4 This is a three-dimensional schematic diagram of the cover of this utility model being opened relative to the strip box body;

[0013] Figure 5 This is a utility model Figure 4 A magnified view of the area marked 5 in the middle box;

[0014] Figure 6 This is a utility model Figure 4 A magnified view of the area marked 6 in the middle box;

[0015] Figure 7 This is an exploded perspective view of the cable management device and chassis of this utility model;

[0016] Figure 8 This is an exploded perspective view of the cable management device of this utility model;

[0017] Figure 9 This is another exploded perspective view of the cable management device of this utility model;

[0018] In the attached figures, the following labels are used:

[0019] 100: Chassis;

[0020] 101: Spacing;

[0021] 200: Cable;

[0022] 300: Fiber optic cable;

[0023] 400: Circuit board;

[0024] 500: Support frame;

[0025] 10: Cable management device;

[0026] 1: Cable take-up box;

[0027] 11: First cavity;

[0028] 12: Second cavity;

[0029] 13: First Exit;

[0030] 14: Second passage;

[0031] 2: Strip box body;

[0032] 21: Base plate;

[0033] 22: Side panel;

[0034] 221: Gully;

[0035] 23: Open;

[0036] 3: Cover;

[0037] 4: Divider;

[0038] 41: Hole;

[0039] 5: Cable management rack;

[0040] 51: Cable management channel;

[0041] 52: Wavy side;

[0042] 53: U-shaped clamp;

[0043] 54: U-shaped rod. Detailed Implementation

[0044] The detailed description and technical content of this utility model will be explained below with reference to the accompanying drawings. However, the drawings are for illustrative purposes only and are not intended to limit the scope of this utility model.

[0045] Please refer to Figures 1 to 9 As shown, this utility model provides a cable management device for a chassis 100, a plurality of cables 200, a plurality of optical fibers 300 and a plurality of circuit boards 400. The chassis 100 is used for the integration of servers, switches, GPUs and servers. This cable management device 10 mainly includes a cable tray 1.

[0046] like Figures 1 to 7 As shown, the chassis 100 in this embodiment is a blade server, but this is not a limitation. The chassis 100 has a plurality of spaced spaces 101 arranged side by side. One or more circuit boards 400 can be installed in each space 101. A plurality of support frames 500 are installed on the chassis 100. Each support frame 500 is L-shaped, but this is not a limitation.

[0047] like Figures 1 to 9 As shown, the take-up box 1 can be assembled, fixed, or disassembled away from the chassis 100 and horizontally spanned across a plurality of parallel space intervals 101. The inside of the take-up box 1 is divided into a first cavity 11 and a second cavity 12 that are stacked in layers. The outside of the take-up box 1 is provided with a plurality of first openings 13 and a plurality of second openings 14. The plurality of first openings 13 are configured corresponding to the first cavity 11, and the plurality of second openings 14 are configured corresponding to the second cavity 12. Each first opening 13 and each second opening 14 is respectively arranged opposite to each space interval 101.

[0048] The detailed description is as follows: The cable take-up box 1 includes a strip-shaped box body 2, a cover body 3 corresponding to the strip-shaped box body 2, and a partition plate 4 that is detachably fixed between the strip-shaped box body 2 and the cover body 3. The strip-shaped box body 2 can be engaged with a plurality of support frames 500, abut against the plurality of support frames 500, and is horizontally arranged across a plurality of parallel interval spaces 101, so that the strip-shaped box body 2 can be assembled and fixed or disassembled away from the chassis 100. The interior of the cable take-up box 1 is divided into a first cavity 11 and a second cavity 12 by the partition plate 4. A plurality of first openings 13 are opened from the strip-shaped box body 2, and a plurality of second openings 14 are opened from the cover body 3.

[0049] In addition, the shape of the strip box 2 in this embodiment is U-shaped, but it is not limited thereto. The strip box 2 in this embodiment has a bottom plate 21, two side plates 22 extending from one opposite side of the bottom plate 21, and two openings 23 formed on the other opposite side of the bottom plate 21. The two side plates 22 are provided with two grooves 221. The partition plate 4 can be inserted into the groove 221 through one of the openings 23 and engaged with the groove 221, so that the partition plate 4 can be assembled and fixed or disassembled away from the groove 221. The bottom plate 21 is located in the first cavity 11, the partition plate 4 is located in the second cavity 12, and the cover 3 is pivotally connected to one of the side plates 22.

[0050] like Figures 3 to 9 As shown, the cable management device 10 of this utility model further includes a plurality of cable management racks 5. The plurality of cable management racks 5 are connected to the cable take-up box 1 and are configured corresponding to a plurality of first openings 13 and a plurality of second openings 14. Each cable management rack 5 is provided with a plurality of cable management slots 51. Cables 200 or optical fibers 300 can be engaged in the cable management slots 51, so that the cables 200 or optical fibers 300 are positioned by the cable management slots 51.

[0051] like Figures 8 to 9 As shown, in this embodiment, the number of first openings 13 corresponding to each interval space 101 is multiple, and the number of second openings 14 corresponding to each interval space 101 is one. A portion of the multiple cable management racks 5 are disposed in the multiple first openings 13. Each cable management rack 5 installed in each first opening 13 is a U-shaped clamp 53. Each U-shaped clamp 53 has two oppositely arranged wavy sides 52 on its inner side, and each cable management groove 51 is formed between each of the two wavy sides 52. Another portion of the multiple cable management racks 5 are disposed in each second opening 14. The multiple cable management racks 5 installed in each second opening 14 are U-shaped rods 54. The partition plate 4 is provided with a multiple perforated holes 41. The multiple U-shaped rods 54 can be assembled, fixed, or disassembled away from the partition plate 4 by locking the perforated holes 41 with screws. Adjacent two cable management racks 5 have two oppositely arranged wavy sides 52, and each cable management groove 51 is formed between each of the two wavy sides 52.

[0052] However, this embodiment is not limited to this one. The number of first openings 13 configured for each interval space 101 can also be one, and the number of second openings 14 configured for each interval space 101 can also be multiple. A portion of the multiple cable management racks 5 are set in each first opening 13. The multiple cable management racks 5 installed in each first opening 13 are U-shaped rods 54. The base plate 21 can be provided with multiple through holes. The multiple U-shaped rods 54 can be assembled, fixed or disassembled away from the base plate 21 by locking the through holes with screws. Two adjacent cable management racks 5 have two wavy sides 52 arranged opposite to each other. Each cable management groove 51 is formed between the two wavy sides 52. Another portion of the multiple cable management racks 5 are set in a multiple second opening 14. Each cable management rack 5 installed in each second opening 14 is a U-shaped clamp 53. Each U-shaped clamp 53 has two wavy sides 52 arranged opposite to each other on its inner side. Each cable management groove 51 is formed between the two wavy sides 52.

[0053] In this embodiment, multiple cables 200 are housed in a first cavity 11, engaged in a cable management groove 51, and pass through each first opening 13 to each interval space 101 and are electrically connected to the circuit board 400. Multiple optical fibers 300 are housed in a second cavity 12, engaged in a cable management groove 51, and pass through each second opening 14 to each interval space 101 and are electrically connected to the circuit board 400.

[0054] However, this embodiment is not a limitation. Multiple optical fibers 300 may also be housed in the first cavity 11, engaged in the cable management groove 51, and pass through each first opening 13 to each interval space 101 and be electrically connected to the circuit board 400. Multiple cables 200 may also be housed in the second cavity 12, engaged in the cable management groove 51, and pass through each second opening 14 to each interval space 101 and be electrically connected to the circuit board 400.

[0055] like Figures 1 to 9 As shown, the cable management device 10 of this utility model is used when the cable take-up box 1 is fixed to the chassis 100. The cable take-up box 1 is horizontally arranged across a plurality of parallel space intervals 101. The cable take-up box 1 has a first cavity 11 and a second cavity 12 stacked inside. The first opening 13 of the cable take-up box 1 is configured corresponding to the first cavity 11 and the space interval 101. The second opening 14 of the cable take-up box 1 is configured corresponding to the second cavity 12 and the space interval 101. This allows one of the plurality of cables 200 and the plurality of optical fibers 300 to be accommodated in the first cavity 11 and pass through each of the first openings 13 to each space interval 101 and be electrically connected to the circuit board 400. The other of the plurality of cables 200 and the plurality of optical fibers 300 can be accommodated in the second cavity 12 and pass through each of the second openings 14 to each space interval 101 and be electrically connected to the circuit board 400.

[0056] In this way, the cable 200 and the optical fiber 300 can be managed in layers through the first cavity 11 and the second cavity 12, and the end of the cable 200 and the optical fiber 300 that is electrically connected to the circuit board 400 of each interval space 101 can also be managed through the first port 13 and the second port 14, so as to achieve the advantages of the cable management device 10 of this utility model having layered management of the cable 200 and the optical fiber 300, and helping to manage the cable 200 and the optical fiber 300 at the outlet end.

[0057] In addition, multiple cable management racks 5 are connected to the cable tray 1 and are configured with multiple first openings 13 and multiple second openings 14. Each cable management rack 5 is provided with multiple cable management slots 51, in which cables 200 or optical fibers 300 can be engaged. Some cable management racks 5 are U-shaped rods 54 that can be placed inside the cables 200 or optical fibers 300, so that the cables 200 or optical fibers 300 are limited and supported by the U-shaped rods 54, thereby further enhancing the cable management efficiency of the cable management device 10 of this utility model.

[0058] In conclusion, the cable management device of this utility model has not been seen in similar products or publicly used before, and has industrial applicability, novelty and inventiveness, and fully meets the requirements for patent application. Therefore, this application is filed in accordance with the Patent Law to protect the inventor's rights.

Claims

1. A cable management device for a chassis, a plurality of cables, and a plurality of optical fibers, said chassis having a plurality of parallel spaced intervals, characterized in that, The cable management device includes: A take-up box is detachably fixed to the chassis and horizontally spans the parallel plurality of spaced intervals. The take-up box is internally divided into a first cavity and a second cavity that are stacked in layers. The take-up box is externally provided with a plurality of first openings corresponding to the first cavity and a plurality of second openings corresponding to the second cavity. Each first opening and each second opening is respectively arranged opposite to each of the spaced intervals. Wherein, one of the multiple cables and one of the multiple optical fibers are housed in the first cavity and pass through each of the first ports to each of the interval spaces, and the other of the multiple cables and one of the multiple optical fibers are housed in the second cavity and pass through each of the second ports to each of the interval spaces.

2. The cable management device as described in claim 1, characterized in that, The take-up box includes a strip-shaped box body, a cover corresponding to the strip-shaped box body, and a partition plate that is detachably fixed between the strip-shaped box body and the cover plate. The interior of the take-up box is divided into a first cavity and a second cavity by the partition plate.

3. The cable management device as described in claim 2, characterized in that, The plurality of first openings are opened from the strip-shaped box body, and the plurality of second openings are opened from the cover body.

4. The cable management device as described in claim 2, characterized in that, The strip-shaped box body is detachably fixed to the chassis and horizontally spans the parallel multiple interval spaces.

5. The cable management device as described in claim 2, characterized in that, The strip-shaped box has a base plate, two side plates extending from one opposite side of the base plate, and two openings formed on the other opposite side of the base plate. The two side plates are provided with two grooves, and the partition plate can pass through one of the openings and engage with the two grooves.

6. The cable management device as described in claim 5, characterized in that, The cover is pivotally connected to one of the side panels.

7. The cable management device as described in claim 1, characterized in that, It further includes multiple cable management racks, which are connected to the cable tray and configured corresponding to the multiple first ports and the multiple second ports. Each cable management rack is provided with multiple cable management slots, and the cables or optical fibers can be engaged in the cable management slots.

8. The cable management device as described in claim 7, characterized in that, The plurality of cable management racks are disposed in the plurality of first openings or the plurality of second openings, each of the cable management racks having two wavy sides arranged opposite to each other, and each of the cable management grooves being formed between the two wavy sides.

9. The cable management device as described in claim 8, characterized in that, Each of the cable management racks is a U-shaped clamp.

10. The cable management device as described in claim 7, characterized in that, The cable tray has a base plate and a partition plate. The base plate is located in the first cavity, and the partition plate is located in the second cavity. The plurality of cable racks are detachably fixed to the base plate or the partition plate. Two adjacent cable racks have two wavy sides arranged opposite to each other, and each cable groove is formed between the two wavy sides.

11. The cable management device as described in claim 10, characterized in that, Each cable management rack is a U-shaped pole.