A vertical stabilizing support for a data center fiber slot shaft

CN224758785UActive Publication Date: 2026-09-15BEIJING CHATONE COMPUTER ROOM EQUIP & ENG
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Patent Information

Application Number
CN202522417195.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-14
Publication Date
2026-09-15
Estimated Expiration
2035-11-14

AI Technical Summary

Technical Problem

[0003]现有光纤槽道竖井安装多采用现场加工支架的方式,存在以下不足:一是现场加工精度低,难以保证桥架垂直度与长期稳定性;二是安装流程繁琐,无法适配数据中心快速交付需求;三是支架规格固定,无法灵活调整以适配不同尺寸的桥架;四是后期改造时支架难以重复利用,改造成本高,且运维阶段难以快速区分桥架功能,布线效率低,为此,提出数据中心光纤槽道竖井竖向稳定支架

Benefits of technology

1、本实用新型采用工厂预制与现场快速拼接结合,大幅缩短安装周期,满足数据中心快速交付需求;

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Abstract

The utility model relates to engineering assembly type technical field, concretely to a data center optical fiber channel vertical shaft vertical stable support, including support main part, the support main part includes vertical stress sheet metal part and horizontal sheet metal part, the bottom of vertical stress sheet metal part is connected with horizontal sheet metal part through the threaded hole of bushing silk, the bottom surface of horizontal sheet metal part is equipped with the bearing plate. The utility model adopts the combination of factory prefabrication and on -the -spot quick splicing, and the installation period is greatly shortened, satisfies the quick delivery demand of data center, and the support can be repeatedly used, reduces new material consumption simultaneously, realizes low carbon energy -conserving, and the support specification adaptability is strong, and the bridge function can be quickly distinguished when later period operation and maintenance.
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Claims

1. A vertical stabilizing bracket for a data center fiber slot shaft, comprising a bracket body (10), characterized in that: The main body (10) of the bracket includes a vertically stressed sheet metal part (101) and a horizontal sheet metal part (102). The bottom of the vertically stressed sheet metal part (101) is threadedly connected to the horizontal sheet metal part (102) through a threaded hole. A bearing plate (103) is installed on the bottom surface of the horizontal sheet metal part (102).

2. The data center fiber slot shaft vertical stabilization brace of claim 1, wherein: A cable organizer (104) is fixedly connected to one end of the inner surface of the horizontal sheet metal part (102).

3. The data center fiber slot shaft vertical stabilization brace of claim 1, wherein: The upper internal thread of the vertically stressed sheet metal part (101) is connected to a first optical fiber carrier plate (20) arranged in the horizontal direction, and the first optical fiber carrier plate (20) has a plurality of wire holes (201) inside.

4. The data center fiber slot shaft vertical stabilization brace of claim 3, wherein: A cable fastener (202) is installed on one end of the top surface of the first optical fiber carrier plate (20). The cable fastener (202) includes a support base (2021), a fixed clamp (2022), a movable clamp (2023), and a bolt (2024). The top end of the support base (2021) is fixedly connected to the fixed clamp (2022), and the bottom of the opening of the fixed clamp (2022) is threadedly connected to the movable clamp (2023) by the bolt (2024).

5. The data center fiber slot shaft vertical stabilization brace of claim 1, wherein: The vertically stressed sheet metal part (101) has a threaded connection at the middle section of its interior to a second optical fiber carrier plate (30) arranged in a horizontal direction. A winding device (301) is installed on one end of the surface of the second optical fiber carrier plate (30).

6. The data center fiber slot shaft vertical stabilization brace of claim 5, wherein: The cable reel (301) includes a tripod (3011), a rotating shaft (3012), and a cable reel (3013). The rotating shaft (3012) is rotatably connected to the top of the tripod (3011), and the cable reel (3013) is sleeved on the outside of the rotating shaft (3012).