CN221509017U - Data center wiring frame of nimble equipment - Google Patents

Data center wiring frame of nimble equipment Download PDF

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Publication number
CN221509017U
CN221509017U CN202323253158.3U CN202323253158U CN221509017U CN 221509017 U CN221509017 U CN 221509017U CN 202323253158 U CN202323253158 U CN 202323253158U CN 221509017 U CN221509017 U CN 221509017U
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CN
China
Prior art keywords
wiring
fixed
data center
notch
groove
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Active
Application number
CN202323253158.3U
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Chinese (zh)
Inventor
孙斯曼
王宇
艾仍炜
李伯龙
钟华
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Jiangxi Keyi Hi Tech Co ltd
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Jiangxi Keyi Hi Tech Co ltd
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Priority to CN202323253158.3U priority Critical patent/CN221509017U/en
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Publication of CN221509017U publication Critical patent/CN221509017U/en
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Abstract

The utility model discloses a flexibly assembled data center wire distribution frame, which comprises a wiring unit, wherein wiring notches are formed in the wiring unit in a penetrating manner, the wiring notches are transversely distributed on the wiring unit at equal intervals, fixed side bars are symmetrically fixed at two ends of the wiring unit, an assembling structure is arranged on the outer side of each fixed side bar, and the assembling structure comprises a connecting rotating shaft, splicing side plates, clamping bars and clamping grooves; the wiring unit that designs out both can regard as an individual, uses as the wiring frame alone, can pass through fixed side bar again and assemble the structure, assembles the wiring unit of individual to form an holistic wiring frame, this kind of biggest benefit of design lies in, through the quantity of adjusting the wiring unit, alright quantity and the volume of whole wiring frame of wiring notch of simultaneous adjustment, and the flexibility ratio is very strong, and is high to the adaptation degree of wiring demand under the different conditions.

Description

Data center wiring frame of nimble equipment
Technical Field
The utility model belongs to the technical field of wiring frames, and particularly relates to a flexibly assembled data center wiring frame.
Background
A data center is a specific network of devices used to communicate, accelerate, present, calculate, store, etc., data information over a network infrastructure. The data center needs to use a large number of connecting wires, so as to ensure the orderly distribution of the connecting wires, and the line inspection is convenient, often a wire distribution frame is used, and a large number of orderly converging bundles of the connecting wires are distributed through the wire distribution frame.
The traditional wiring frame is mostly of two types, one type is an integrally formed frame body, the number of notches for wiring of the wiring frame is generally fixed and cannot be adjusted, the other type of wiring frame is composed of an external main frame and an internal bracket, the number and the position of the internal bracket are adjusted to adjust the number of the notches, but the size of the external main frame of the wiring frame cannot be adjusted generally, a certain placing space is needed, and the use flexibility is poor.
Disclosure of utility model
The utility model aims to provide a flexibly assembled data center wire distribution frame so as to solve the problem that the traditional wire distribution frame proposed in the background art often has the number of wire distribution slots or an external main frame cannot be adjusted.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a data center distribution frame of nimble equipment, includes wiring unit, the wiring notch has been run through on the wiring unit, the horizontal equidistance of wiring notch distributes on the wiring unit, the both ends symmetry of wiring unit is fixed with fixed sidebar, the outside of fixed sidebar is provided with the structure of assembling, the structure of assembling is including connecting pivot, concatenation lateral piece, card strip and draw-in groove, the concatenation lateral piece is rotated through connecting the pivot and is connected on fixed sidebar both sides surface, the card strip is fixed in concatenation lateral piece one side, the both sides surface at fixed lateral piece is seted up to the draw-in groove, the draw-in groove is located the bottom of the concatenation lateral piece that sets up on the same fixed lateral piece.
Preferably, the cross section of card strip outer end is circular, draw-in groove and card strip looks adaptation.
Preferably, the assembling structure further comprises a notch, and the notch is formed in one side of the end part of the side piece.
Preferably, the assembly structure further comprises a positioning assembly, and the positioning assembly comprises positioning piles and positioning holes.
Preferably, the positioning pile is fixed at the bottom of the fixed side bar, and the positioning hole is formed in the top surface of the fixed side bar and is matched with the positioning pile.
Preferably, the inside of wiring notch is provided with the wiring pipe subassembly, the wiring pipe subassembly includes PVC protection tube, metal woven mesh, spacing and spacing groove, the inside at the wiring notch is placed to the PVC protection tube, metal woven mesh sets up the inner wall at the PVC protection tube, the inside in spacing groove is gone into to spacing card.
Preferably, the limit strips are symmetrically fixed on the upper side and the lower side of the PVC protection tube, and the limit grooves are symmetrically formed in the upper inner wall and the lower inner wall of the wiring notch.
Preferably, the wiring tube assembly further comprises an end cover and a through groove, wherein the end cover is adhered to two ends of the PVC protection tube, and the through groove is formed in the end cover in a penetrating mode.
Compared with the prior art, the utility model has the beneficial effects that:
The wiring unit that designs out both can regard as an individual, uses as the wiring frame alone, can pass through fixed side bar again and assemble the structure, assembles the wiring unit of individual to form an holistic wiring frame, this kind of biggest benefit of design lies in, through the quantity of adjusting the wiring unit, alright quantity and the volume of whole wiring frame of wiring notch of simultaneous adjustment, and the flexibility ratio is very strong, and is high to the adaptation degree of wiring demand under the different conditions.
Drawings
FIG. 1 is a perspective view of the present utility model;
FIG. 2 is an enlarged view of a portion of the splice structure of FIG. 1 according to the present utility model;
FIG. 3 is a front cross-sectional view of the splice structure of FIG. 1 of the present utility model;
FIG. 4 is a front cross-sectional view of the positioning assembly of FIG. 2 in accordance with the present utility model;
FIG. 5 is a front cross-sectional view of the wiring tube assembly of FIG. 1 in accordance with the present utility model;
fig. 6 is a partial perspective view of the wiring tube assembly of fig. 1 in accordance with the present utility model;
in the figure: 100. a wiring unit; 200. wiring slots; 300. fixing the side bars; 400. assembling the structure; 401. the connecting rotating shaft; 402. splicing the side pieces; 403. clamping strips; 404. a clamping groove; 405. a notch; 406. a positioning assembly; 4061. positioning piles; 4062. positioning holes; 500. a wiring tube assembly; 501. a PVC protective tube; 502. a metal woven mesh; 503. a limit bar; 504. a limit groove; 505. an end cap; 506. and (5) through grooves.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Examples
Referring to fig. 1 to 6, the present utility model provides a technical solution: a flexible assembled data center wire distribution frame comprises a wiring unit 100, wherein the wiring unit 100 can be used independently, a plurality of wiring units 100 can be vertically spliced together to be used as a whole, wiring notches 200 are formed in the wiring unit 100 in a penetrating manner, the wiring notches 200 are distributed on the wiring unit 100 transversely and equidistantly, each wiring notch 200 can be provided with a connecting wire in a penetrating manner, so that wire harness isolation is carried out on each connecting wire, two ends of the wiring unit 100 are symmetrically fixed with fixed side strips 300, the outer sides of the fixed side strips 300 are provided with splicing structures 400, when the wiring unit 100 is assembled and spliced, the upper wiring unit 100 and the lower wiring unit 100 can be assembled through the splicing structures 400, the splicing structures 400 comprise connecting shafts 401, splicing side pieces 402, clamping strips 403 and clamping grooves 404, the splicing side pieces 402 are rotationally connected to two side surfaces of the fixed side strips 300 through the connecting shafts 401, the clamping strips 403 are fixed on one side of the splicing side piece 402, the clamping grooves 404 are formed on the two side surfaces of the fixed side piece 300, the clamping grooves 404 are positioned at the bottoms of the splicing side pieces 402 arranged on the same fixed side piece 300, the cross sections of the outer ends of the clamping strips 403 are circular, the clamping grooves 404 are matched with the clamping strips 403, when the wiring units 100 are independently used, the splicing side pieces 402 naturally droop, if the wiring units 100 are required to be spliced, one of the wiring units 100 is aligned and placed on the top of the other wiring unit 100, then the splicing side pieces 402 on the two sides of the lower fixed side piece 300 are turned over, so that the clamping strips 403 are clamped into the clamping grooves 404 on the two sides of the upper fixed side piece 300, thereby completing the assembly and splicing of the two wiring units 100, people can continue to splice the wiring units 100 according to the method, and simultaneously people can turn over the splicing side pieces 402 to separate the clamping strips 403 from the inside of the clamping grooves 404, so that the upper wiring unit 100 can be detached.
In this embodiment, preferably, the assembling structure 400 further includes a notch 405, the notch 405 is formed on one side of the end of the side piece 402, and a person can turn the side piece 402 by breaking through the notch 405.
In this embodiment, preferably, the assembling structure 400 further includes a positioning component 406, which can play a role in positioning the assembling of the wiring units 100, the positioning component 406 includes a positioning pile 4061 and a positioning hole 4062, the positioning pile 4061 is fixed at the bottom of the fixed side bar 300, the positioning hole 4062 is formed on the top surface of the fixed side bar 300 and is adapted to the positioning pile 4061, when one wiring unit 100 is placed on the top of another wiring unit 100, the positioning pile 4061 on the upper fixed side bar 300 can be inserted into the positioning hole 4062 on the lower fixed side bar 300, so as to complete the positioning connection of the upper and lower wiring units 100.
In this embodiment, preferably, the inside of wiring notch 200 is provided with wiring tube subassembly 500, wiring tube subassembly 500 includes PVC protection tube 501, metal woven mesh 502, spacing 503 and spacing groove 504, PVC protection tube 501 places the inside at wiring notch 200, PVC protection tube 501 can protect the connecting wire that runs through wiring notch 200, the isolated effect between each connecting wire has also been promoted simultaneously, prevent that one of them connecting wire from taking place the short circuit and causing the damage to other connecting wires, metal woven mesh 502 sets up the inner wall at PVC protection tube 501, further promote the isolated effect to the connecting wire, prevent to take place signal interference between the adjacent connecting wire, spacing 503 symmetry is fixed in the upper and lower both sides of PVC protection tube 501, spacing groove 504 symmetry is seted up at the upper and lower inner wall of wiring notch 200, spacing 503 card is gone into the inside of spacing groove 504, guarantee the installation stability of wiring tube subassembly 500.
In this embodiment, preferably, the wiring tube assembly 500 further includes an end cover 505 and a through groove 506, the end cover 505 is adhered to two ends of the PVC protection tube 501, and the through groove 506 is formed on the end cover 505 in a penetrating manner, so as to protect two ends of the PVC protection tube 501 and the metal woven mesh 502.
Although embodiments of the present utility model have been shown and described in detail with reference to the foregoing detailed description, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations may be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. A data center distribution frame with flexible assembly, comprising a wiring unit (100), characterized in that: wiring notch (200) have been run through on wiring unit (100), wiring notch (200) transversely equidistance distributes on wiring unit (100), the both ends symmetry of wiring unit (100) is fixed with fixed sidebar (300), the outside of fixed sidebar (300) is provided with assembles structure (400), assemble structure (400) including connecting pivot (401), concatenation lateral plate (402), card strip (403) and draw-in groove (404), concatenation lateral plate (402) rotate through connecting pivot (401) and connect at fixed sidebar (300) both sides surface, card strip (403) are fixed in concatenation lateral plate (402) one side, the both sides surface at fixed lateral plate (300) is seted up in draw-in groove (404), draw-in groove (404) are located the bottom of concatenation lateral plate (402) that sets up on the same fixed lateral plate (300).
2. The flexibly assembled data center distribution frame of claim 1, wherein: the section of the outer end of the clamping strip (403) is circular, and the clamping groove (404) is matched with the clamping strip (403).
3. The flexibly assembled data center distribution frame of claim 1, wherein: the splicing structure (400) further comprises a notch (405), and the notch (405) is formed in one side of the end part of the splicing side piece (402).
4. The flexibly assembled data center distribution frame of claim 1, wherein: the assembly structure (400) further comprises a positioning assembly (406), and the positioning assembly (406) comprises positioning piles (4061) and positioning holes (4062).
5. The flexibly assembled data center distribution frame of claim 4, wherein: the positioning piles (4061) are fixed at the bottoms of the fixed side strips (300), and the positioning holes (4062) are formed in the top surfaces of the fixed side strips (300) and are matched with the positioning piles (4061).
6. The flexibly assembled data center distribution frame of claim 1, wherein: the inside of wiring notch (200) is provided with wiring tube subassembly (500), wiring tube subassembly (500) include PVC protection tube (501), metal woven mesh (502), spacing (503) and spacing groove (504), PVC protection tube (501) are placed in the inside of wiring notch (200), metal woven mesh (502) set up the inner wall at PVC protection tube (501), the inside of spacing groove (504) is gone into to spacing (503) card.
7. The flexibly assembled data center distribution frame of claim 6, wherein: the limiting strips (503) are symmetrically fixed on the upper side and the lower side of the PVC protection tube (501), and the limiting grooves (504) are symmetrically formed in the upper inner wall and the lower inner wall of the wiring notch (200).
8. The flexibly assembled data center distribution frame of claim 6, wherein: the wiring tube assembly (500) further comprises an end cover (505) and a through groove (506), wherein the end cover (505) is adhered to two ends of the PVC protection tube (501), and the through groove (506) is formed in the end cover (505) in a penetrating mode.
CN202323253158.3U 2023-11-30 2023-11-30 Data center wiring frame of nimble equipment Active CN221509017U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323253158.3U CN221509017U (en) 2023-11-30 2023-11-30 Data center wiring frame of nimble equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323253158.3U CN221509017U (en) 2023-11-30 2023-11-30 Data center wiring frame of nimble equipment

Publications (1)

Publication Number Publication Date
CN221509017U true CN221509017U (en) 2024-08-09

Family

ID=92125120

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323253158.3U Active CN221509017U (en) 2023-11-30 2023-11-30 Data center wiring frame of nimble equipment

Country Status (1)

Country Link
CN (1) CN221509017U (en)

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