Server switch rack mount support that supports multi-angle adjustment
By designing a rack-mounted server switch bracket with detachable limit posts and an angle-adjustable structure, the problems of laborious limit positioning and cable damage caused by fixed angles in existing brackets are solved, enabling convenient limit positioning and multi-angle adjustment of the switch.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 邴宁
- Filing Date
- 2025-07-22
- Publication Date
- 2026-05-29
AI Technical Summary
Existing rack mount brackets have shortcomings in terms of limit and angle adjustment, which makes it difficult to pick up and put down switches and cables are prone to excessive bending, resulting in signal attenuation and physical damage.
A rack-mounted mounting bracket for a server switch that supports multi-angle adjustment was designed. It adopts a detachable limiting post and an angle adjustment structure, including an angle adjustment plate, an adjustment linkage rod and an adjustment cylinder, to realize the detachable limiting and multi-angle adjustment of the switch.
It enables convenient limit positioning and multi-angle adjustment of the switch, reduces the labor intensity of the picking and placing process, and avoids excessive bending of cables and signal attenuation.
Smart Images

Figure CN224305859U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of server switch bracket technology, and in particular relates to a rack-mounted server switch bracket that supports multi-angle adjustment. Background Technology
[0002] A server switch is a network device designed specifically for connecting and managing server clusters. It is typically mounted on a rack-mounted bracket, which is a metal frame structure used to install and secure server switches. It is usually made of steel or aluminum alloy and can accommodate multiple server switches. It is widely used in data centers and computer rooms and other locations that require a large number of server devices.
[0003] Based on the above, the inventors have discovered the following shortcomings of existing rack-mounted mounting brackets:
[0004] 1. Using a limit slot to limit the switch makes the process of picking up and placing the switch more laborious. It is not convenient to add a detachable limit measure to the bracket so that the limit can be removed when picking up and placing the switch.
[0005] 2. The fixed angle can easily cause excessive bending of the cable, resulting in signal attenuation and physical damage. It is also inconvenient to install an angle adjustment structure on the bracket so that the switch interface can face the cabling channel. Utility Model Content
[0006] To address the aforementioned technical problems, this utility model provides a rack-mounted server switch bracket that supports multi-angle adjustment. This solves the issues of existing brackets that use limiting slots to restrict switch movement, making the process of picking up and placing the switch laborious and inconvenient to install detachable limiting measures on the bracket to allow for easy removal of the limiting mechanism; fixed angles that easily cause excessive cable bending, leading to signal attenuation and physical damage; and the inconvenience of incorporating angle adjustment structures on the bracket to allow the switch interfaces to face the cabling channel.
[0007] The purpose and effectiveness of this utility model's multi-angle adjustable rack mount for server switches are achieved through the following specific technical means:
[0008] A rack-mounted mounting bracket for a server switch that supports multi-angle adjustment includes a bracket body. The bracket body has three vertically arranged angle adjustment plates. The front end of the angle adjustment plate has a left-right rotating cylinder. The front center of the angle adjustment plate has a threaded hole that runs vertically through it. The top end of the angle adjustment plate has front-back limiting strips on both the left and right sides. The rear end of the top end of the angle adjustment plate has a semi-circular head plate with a left-right through hole in the middle. The left and right sides of the angle adjustment plate have vertically through rectangular holes. A detachable limiting post is installed at the bottom inside the threaded hole of the angle adjustment plate. A threaded post is installed on the upper part of the detachable limiting post. The bottom of the threaded post of the detachable limiting post has a rotating post with an anti-slip groove.
[0009] Furthermore, an adjusting linkage rod is mounted on the semi-circular head plate of the angle adjusting cylinder via a fixed shaft. Both ends of the adjusting linkage rod are provided with semi-circular heads with left and right through holes. Limit grooves are opened in the middle of both ends of the adjusting linkage rod. The semi-circular head at the front end of the adjusting linkage rod is mounted on the semi-circular head plate of the angle adjusting plate via a fixed shaft.
[0010] Furthermore, the outer circumference of the angle adjusting rod is threaded with three angle adjusting cylinders arranged vertically, the inner circumference of the angle adjusting cylinders is threaded, and a semi-circular head plate with left and right through holes is provided in front of the outer circumference of the angle adjusting cylinders.
[0011] Furthermore, an angle adjustment rod is installed between the bearing holes of the assembled sealing plate via a bearing. The outer circumference of the angle adjustment rod is threaded, and both ends of the angle adjustment rod are provided with fixing posts. The end face of the fixing post at the top of the angle adjustment rod is provided with a regular hexagonal groove.
[0012] Furthermore, the top and bottom of the assembled angle iron rod and the load-bearing angle iron rod are locked with assembly sealing plates by nuts. Threaded posts are provided at the four corners of the inner end face of the assembly sealing plate, and a bearing hole that runs through the top and bottom is opened in the middle of the rear end of the assembly sealing plate.
[0013] Furthermore, the angle adjustment plate is provided with assembly angle iron rods on both the left and right sides of its rear end, and the assembly angle iron rods are provided with fixing plates with through holes at both the upper and lower ends.
[0014] Furthermore, the angle adjustment plates are equipped with load-bearing angle iron rods on both the left and right sides of the front end via fixed shafts. The upper and lower ends of the load-bearing angle iron rods are provided with fixed plates with through holes at the top and bottom. The load-bearing angle iron rods have three fixed holes arranged vertically and horizontally through the middle.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] This design allows for convenient placement of the switch on top of the angle adjustment plate, positioning it between the limit strip and the semi-circular head plate for positioning. Then, the detachable limit post is screwed into the angle adjustment plate to limit the front of the switch. This solves the problem of the switch being difficult to pick up and put down due to the limit groove, and the inconvenience of adding detachable limit measures to the bracket to remove the limit when picking up and putting down the switch.
[0017] The convenient angle adjustment rod connects to the angle adjustment plate via the angle adjustment cylinder and the adjustment linkage rod. By raising and lowering the angle adjustment cylinder, the adjustment linkage rod can rotate the angle adjustment plate, thereby enabling multi-angle adjustment of the angle adjustment plate. This solves the problem that fixed angles can easily cause excessive bending of cables, leading to signal attenuation and physical damage, and that it is inconvenient to install angle adjustment structures on the bracket to allow the switch interface to face the cabling channel. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the main structure of this utility model.
[0019] Figure 2 This is a schematic diagram of the rear view structure of this utility model.
[0020] Figure 3 This is a bottom view of the structure of this utility model.
[0021] Figure 4 This is a disassembled structural diagram of the present invention.
[0022] Figure 5 This is a schematic diagram of the usage state of this utility model.
[0023] Figure 6 This is a schematic diagram of the tilt state of the angle adjustment plate of this utility model.
[0024] In the diagram: 1. Support body; 2. Angle adjustment plate; 3. Detachable limiting post; 4. Bearing angle iron rod; 5. Assembled angle iron rod; 6. Assembled closing plate; 7. Angle adjustment rod; 8. Angle adjustment cylinder; 9. Adjustment linkage rod. Detailed Implementation
[0025] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.
[0026] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown:
[0027] This utility model provides a rack-mounted mounting bracket for a server switch that supports multi-angle adjustment. The bracket body 1 includes three vertically arranged angle adjustment plates 2 for supporting the server switch. Each angle adjustment plate 2 has a left-right rotating cylinder on its front end, allowing it to be rotated via a fixed shaft. A through-hole threaded hole in the center of the front end of each angle adjustment plate 2 facilitates the installation and removal of a detachable limiting post 3. Both ends of the top surface of each angle adjustment plate 2 have front-rear limiting strips for limiting the left and right sides of the server switch. A semi-circular head plate with left-right through holes is located in the center of the rear end of the top surface of each angle adjustment plate 2, allowing the adjustment linkage rod 9 to be installed via a fixed shaft for limiting the rear of the server switch. The left and right sides of the angle adjustment plate 2... Both sides of the right side are provided with rectangular holes that run vertically through the switch to facilitate heat dissipation for the server switch. The bottom of the threaded hole of the angle adjustment plate 2 is equipped with a detachable limiting post 3 to facilitate limiting the front of the server switch. The upper part of the detachable limiting post 3 is provided with a threaded post to facilitate the installation and removal of the detachable limiting post 3 by thread. The bottom of the threaded post of the detachable limiting post 3 is provided with a rotating post with anti-slip groove to facilitate the rotation and anti-slip of the detachable limiting post 3. The left and right sides of the front end of the angle adjustment plate 2 are equipped with a bearing angle iron rod 4 through a fixed shaft to facilitate the flipping of the angle adjustment plate 2. The upper and lower ends of the bearing angle iron rod 4 are provided with a fixed plate with vertical holes to facilitate the insertion of the threaded post of the sealing plate 6. The bearing angle iron rod 4 has three vertically arranged and horizontally through fixed holes in the middle to facilitate the installation of the angle adjustment plate 2 through the fixed shaft.
[0028] The angle adjustment plate 2 has assembly angle iron rods 5 on both the left and right sides of its rear end, which facilitates the formation of a support frame with the load-bearing angle iron rod 4 and the assembly closing plate 6. The assembly angle iron rods 5 have fixing plates with through holes at both ends, allowing the threaded posts of the assembly closing plate 6 to be inserted. The assembly closing plate 6 is locked at the top and bottom of the assembly angle iron rods 5 and the load-bearing angle iron rod 4 with nuts, forming a stable frame structure. The four corners of the inner end face of the assembly closing plate 6 have threaded posts, which are easily inserted into the fixing plates of the assembly angle iron rods 5 and the load-bearing angle iron rod 4 and locked with nuts. The rear end of the assembly closing plate 6 has a through bearing hole, allowing the angle adjustment rod 7 to be installed via a bearing. The angle adjustment rod 7 is installed between the bearing holes of the assembly closing plate 6 via bearings, allowing it to rotate. The outer circumference of the angle adjustment rod 7 has threads, allowing the angle adjustment cylinder 8 to be installed via threads. Fixing posts are provided on both ends of the angle adjustment rod 7, allowing it to be installed via bearings. The fixed column end face at the top of the section rod 7 has a regular hexagonal groove, which facilitates the adjustment of the angle adjustment rod 7 by rotating it with a tool. Three angle adjustment cylinders 8 are installed vertically on the outer circumference of the angle adjustment rod 7 by threads, which facilitates the lifting and lowering of the angle adjustment cylinders 8 by thread engagement. The inner circumference of the angle adjustment cylinder 8 has threads, which facilitates the installation of the angle adjustment rod 7 by threads. A semi-circular head plate with left and right through holes is provided at the front of the outer circumference of the angle adjustment cylinder 8, which facilitates the installation of the adjustment linkage rod 9 by a fixed shaft. The adjustment linkage rod 9 is installed on the semi-circular head plate of the angle adjustment cylinder 8 by a fixed shaft, which facilitates the flipping of the adjustment linkage rod 9. Both ends of the adjustment linkage rod 9 are provided with semi-circular heads with left and right through holes, which facilitates the installation and flipping of the adjustment linkage rod 9 by a fixed shaft. Limit grooves are provided in the middle of both ends of the adjustment linkage rod 9, which facilitates the insertion and limiting of the semi-circular head plates of the angle adjustment cylinder 8 and the angle adjustment plate 2. The semi-circular head at the front end of the adjustment linkage rod 9 is installed on the semi-circular head plate of the angle adjustment plate 2 by a fixed shaft, which facilitates the adjustment linkage rod 9 to drive the angle adjustment plate 2 to flip and adjust.
[0029] The specific usage and function of this embodiment are as follows:
[0030] In this utility model, when... Figure 1As shown, when the bracket body 1 is in use, rotating the detachable limiting post 3 engages with the angle adjustment plate 2 via a threaded engagement, causing the detachable limiting post 3 to descend through the threaded engagement, making the top end face of the detachable limiting post 3 flush with the top end face of the angle adjustment plate 2. This prevents the detachable limiting post 3 from obstructing the switch. The switch is then placed on top of the front end of the angle adjustment plate 2, positioned between the limiting strips of the angle adjustment plate 2. The switch is pushed backward along the limiting strips of the angle adjustment plate 2, causing the rear end face of the switch to contact and be limited by the semi-circular head plate of the angle adjustment plate 2. Rotating the detachable limiting post 3 engages with the angle adjustment plate 2 via a threaded engagement, causing the detachable limiting post 3 to rise through the threaded engagement. This limits the front end face of the switch via the detachable limiting post 3, as shown in the diagram. Figure 5 As shown, this solves the problem that using limit slots to limit the switch makes the process of picking up and placing the switch quite laborious. Figure 5 As shown, when the angle adjusting plate 2 is adjusted to multiple angles, the angle adjusting rod 7 is rotated by a tool to engage with the angle adjusting cylinder 8 through a threaded connection. This causes the angle adjusting cylinder 8 to descend through the threaded engagement. The angle adjusting cylinder 8 then drives the rear end of the adjusting linkage rod 9 to descend synchronously. This causes the front end of the adjusting linkage rod 9 to rotate the angle adjusting plate 2 downwards, as shown in the diagram. Figure 6 As shown, this solves the problem that a fixed angle can easily cause excessive bending of the cable, leading to signal attenuation and physical damage.
[0031] Example 2: Unlike Example 1, the regular hexagonal groove of the angle adjustment rod 7 can also be set as a regular heptagonal groove. This makes it necessary to use a special tool that cooperates with the regular heptagonal groove to rotate the angle adjustment rod 7, thus preventing non-staff members from rotating and adjusting the angle adjustment rod 7.
[0032] Example 3: The difference from Example 1 is that the outer circumferential surface of the rotating column of the detachable limiting column 3 can also be set as a frosted surface, thereby increasing the friction between the outer circumferential surface of the rotating column of the detachable limiting column 3 and the finger, and preventing the rotating circumferential surface of the detachable limiting column 3 from slipping.
Claims
1. A rack-mounted mounting bracket for server switches that supports multi-angle adjustment, characterized in that: The bracket body (1) includes three angle adjustment plates (2) arranged vertically. The front end of the angle adjustment plate (2) is provided with a rotating cylinder in the left and right direction. The front end of the angle adjustment plate (2) is provided with a threaded hole that runs vertically through the middle. The left and right ends of the top end face of the angle adjustment plate (2) are provided with front and rear direction limiting strips. The rear end of the top end face of the angle adjustment plate (2) is provided with a semi-circular head plate with a left and right through hole. The left and right sides of the angle adjustment plate (2) are provided with rectangular holes that run vertically through the middle. A detachable limiting post (3) is installed at the bottom inside the threaded hole of the angle adjustment plate (2). A threaded post is provided on the upper part of the detachable limiting post (3). A rotating post with an anti-slip groove is provided at the bottom of the threaded post of the detachable limiting post (3).
2. The rack mount bracket for server switches that supports multi-angle adjustment as described in claim 1, characterized in that: The angle adjustment plate (2) has a bearing angle iron rod (4) installed on the left and right sides of the front end through a fixed shaft. The bearing angle iron rod (4) has a fixed plate with a through hole at both the upper and lower ends. The bearing angle iron rod (4) has three fixed holes arranged vertically and horizontally through the middle.
3. The rack mount bracket for server switches that supports multi-angle adjustment as described in claim 2, characterized in that: The angle adjustment plate (2) is provided with assembly angle iron rods (5) on both the left and right sides of the rear end, and the assembly angle iron rods (5) are provided with fixing plates with through holes at both the upper and lower ends.
4. The rack mount bracket for server switches that supports multi-angle adjustment as described in claim 3, characterized in that: The assembly angle iron rod (5) and the bearing angle iron rod (4) are locked with assembly sealing plates (6) at the top and bottom by nuts. Threaded posts are provided at the four corners of the inner end face of the assembly sealing plate (6). A bearing hole that runs through the top and bottom is opened in the middle of the rear end of the assembly sealing plate (6).
5. The rack mount bracket for server switches that supports multi-angle adjustment as described in claim 4, characterized in that: An angle adjustment rod (7) is installed between the bearing holes of the assembled closed plate (6) through the bearing. The outer circumference of the angle adjustment rod (7) is threaded. Both ends of the angle adjustment rod (7) are provided with fixing posts. The end face of the fixing post at the top of the angle adjustment rod (7) is provided with a regular hexagonal groove.
6. The rack mount bracket for server switches that supports multi-angle adjustment as described in claim 5, characterized in that: The angle adjustment rod (7) has three angle adjustment cylinders (8) arranged vertically on its outer circumference by thread. The inner circumference of the angle adjustment cylinder (8) is threaded, and a semi-circular head plate with left and right through holes is provided in front of the outer circumference of the angle adjustment cylinder (8).
7. The rack mount bracket for server switches supporting multi-angle adjustment as described in claim 6, characterized in that: An adjusting linkage rod (9) is installed on the semi-circular head plate of the angle adjusting cylinder (8) via a fixed shaft. Both ends of the adjusting linkage rod (9) are provided with semi-circular heads with left and right through holes. Limit grooves are opened in the middle of both ends of the adjusting linkage rod (9). The semi-circular head at the front end of the adjusting linkage rod (9) is installed on the semi-circular head plate of the angle adjusting plate (2) via a fixed shaft.