Server bracket and server
By designing the modular bracket and cable management bracket of the server bracket, a clear and coherent cable path and independent cable management channel are formed, which solves the problems of cable entanglement and crossing, and improves the efficiency of cable management and the stability of the equipment.
Patent Information
- Application Number
- CN202510887542.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2045-06-27
AI Technical Summary
In the prior art, multiple layers of cables are entangled and cross-stacked inside the server, resulting in a cluttered space, increasing the difficulty of disassembly and maintenance, and increasing the risk of accidental collision of devices due to pressure and pulling of cables.
A server bracket is designed, including a module bracket and a cable management bracket. By setting a first routing port on the module bracket, a second routing port and multiple array-arranged extensions on the cable management bracket, a clear and coherent cable path is formed. Multiple extensions are used to form independent cable management channels, thereby achieving physical separation and flexible guidance of cables.
It improves the orderliness and reliability of cable layout, simplifies cable management, improves the cleanliness and maintenance efficiency inside the equipment, reduces unnecessary bending and friction of cable connections, and enhances the stability of the equipment.
Smart Images

Figure CN120386433B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of server technology, and in particular to a server bracket and a server. Background Art
[0002] With the surge in demand for artificial intelligence and high-performance computing, the industry generally adopts multiple graphics processing unit (GPU) configuration solutions to improve computing power density within a limited space. However, the current mainstream solution can only accommodate up to four full-size GPUs. Due to the limited installation space, cables such as the GPU power cord, plug-in card power cord, and signal cables need to be forced into the remaining space. Multiple layers of cables are entangled and cross-overlaid with each other, causing clutter in the internal space and increasing the difficulty of subsequent disassembly and maintenance. In addition, the pressure and pulling of cables on the devices increase the risk of accidental collisions. Summary of the Invention
[0003] The present application provides a server bracket and a server to at least solve the problem in the related art that multiple layers of cables are entangled and cross-stacked with each other, causing a cluttered internal space, increasing the difficulty of subsequent disassembly and maintenance, and increasing the risk of accidental collision of devices due to pressure and pulling of cables.
[0004] The present application provides a server bracket, comprising a module bracket and a cable management bracket; the module bracket is provided with a first cable routing opening for placing a processor module; the cable management bracket comprises a connecting frame and multiple extensions; the connecting frame is arranged at one end of the module bracket and is provided with a second cable routing opening, and the second cable routing opening corresponds to the position of the first cable routing opening; the multiple extensions are all protrudingly arranged on the side of the connecting frame away from the module bracket; and the multiple extensions are arranged in an array, and a first cable management channel is formed between two adjacent extensions; the first cable routing opening, the second cable routing opening and the first cable management channel are connected in sequence to form a cable path.
[0005] The present application also provides a server, comprising the above-mentioned server bracket.
[0006] Through the present application, since the first wiring port on the module bracket, the second wiring port on the cable management bracket, and the first cable management channel are connected in sequence, a clear and coherent cable path is formed, ensuring that the cables can be effectively guided, constrained, and organized after being led out of the module bracket. Since the multiple extensions on the cable management bracket are arranged in an array, the independent first cable management channels formed by two adjacent extensions achieve physical separation of multiple cables. Therefore, it can solve the technical problem of multiple cables being entangled, stacked, or crossed with each other, and improve the orderliness and reliability of the cable layout; the extensions adopt an array structure layout, so that different first cable management channels can cooperate with each other to provide a variety of routing methods. After the cables are led out from the module bracket and enter the array area, they can be flexibly selected and guided to different first cable management channels for layout and fixation according to the requirements of their final connection location, maximizing cable management efficiency. Not only does this make the cable layout inside the equipment clearer and neater, but it also facilitates subsequent maintenance and repair work, forming a highly integrated, organized, and easy-to-maintain cable management system, which improves the efficiency, reliability, and neatness of cable management inside the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0007] In order to more clearly illustrate the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0008] Figure 1 A schematic structural diagram of a server bracket provided in an embodiment of the present application;
[0009] Figure 2 A schematic diagram of the structure of the server bracket rotation provided in an embodiment of the present application;
[0010] Figure 3 An exploded schematic diagram of a server bracket provided in an embodiment of the present application;
[0011] Figure 4 An exploded schematic diagram of the processor module and cable management bracket provided in an embodiment of the present application;
[0012] Figure 5 A schematic diagram of the structure of the cable management bracket provided in an embodiment of the present application;
[0013] Figure 6 A schematic diagram of the structure of the connection between the cable management bracket and the plug-in card provided in an embodiment of the present application;
[0014] Figure 7 A side view of a server bracket provided in an embodiment of the present application;
[0015] Figure 8 A schematic diagram of the structure of the connection between the cable management bracket and the first bracket provided in an embodiment of the present application;
[0016] Figure 9 A schematic diagram of the structure of the connection between the processor module, the cable management bracket and the cable management clip provided in an embodiment of the present application;
[0017] Figure 10 A schematic structural diagram showing the connection between the processor module, the cable management bracket, and the cable management clip provided in an embodiment of the present application from another perspective;
[0018] Figure 11 A side view of the connection between the processor module, cable management bracket, and cable management clip provided in an embodiment of the present application;
[0019] Figure 12 A schematic diagram of the structure of the cable management clip provided in an embodiment of the present application;
[0020] Figure 13 An exploded schematic diagram of the processor module and module bracket provided in an embodiment of the present application;
[0021] Figure 14 A schematic diagram of the structure of the connection between the plug-in card and the module bracket provided in an embodiment of the present application;
[0022] Figure 15 A structural diagram of the connection between the plug-in card and the module bracket from another perspective provided in an embodiment of the present application;
[0023] Figure 16 A schematic structural diagram of the connection between the second bracket and the chassis provided in an embodiment of the present application.
[0024] The above drawings include the following reference numerals:
[0025] 1. Module bracket; 11. First wiring port; 12. First buckle; 13. First bracket; 131. First bracket body; 132. First connecting portion; 133. Second connecting portion; 134. Fifth connecting portion; 14. Second bracket; 141. Second bracket body; 142. Third connecting portion; 143. Fourth connecting portion; 151. Second buckle; 152. Handle; 2. Processor module; 21. Card; 22. Processor; 3. Cable management bracket; 31. Connecting bracket; 32. Extension portion; 321. First protrusion; 322. Second protrusion Part; 323, third protrusion; 324, fourth protrusion; 33, second wiring opening; 34, first wiring channel; 35, clamping part; 36, clamping groove; 4, wiring clip; 41, second wiring channel; 42, fixing plate; 43, first clamping part; 431, first clamping member; 4311, first clamping body; 4312, first clamping surface; 44, second clamping part; 441, second clamping member; 4411, second clamping body; 4412, second clamping surface; 5, mounting bracket; 6, wiring space; 7, chassis; 71, mounting axis. DETAILED DESCRIPTION
[0026] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0027] It should be noted that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely for ease of description and simplification of the present application. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present application. The terms "mounted," "connected," and "connected" should be interpreted broadly, and may include, for example, fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. The terms "parallel," "perpendicular," and "equal" encompass the described conditions and conditions similar to the described conditions, provided that the range of the similar conditions is within an acceptable range of deviation, as determined by a person of ordinary skill in the art taking into account the measurement in question and the errors associated with the measurement of the particular quantity (i.e., the limitations of the measurement system). For example, "parallel" includes both absolute parallelism and approximate parallelism, where the acceptable deviation range for approximate parallelism may be, for example, within 5°; "perpendicular" includes both absolute perpendicularity and approximate perpendicularity, where the acceptable deviation range for approximate perpendicularity may also be, for example, within 5°. "Equal" includes both absolute equality and approximate equality, where the acceptable deviation range for approximate equality may be, for example, that the difference between the two is less than or equal to 5% of either. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0028] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0029] The embodiments of the present application provide a server bracket and a server, and the devices are described in detail in combination with the structure and working principle of the server bracket and the server.
[0030] The following combination Figures 1 to 16 , describing embodiments of the present invention.
[0031] According to an embodiment of the present invention, on the one hand, Figures 1 to 5 As shown, the present invention provides a server bracket, including a module bracket 1 and a cable management bracket 3; the module bracket 1 is provided with a first wiring port 11 for placing a processor module 2; the processor module 2 is mounted on the module bracket 1; the cable management bracket 3 includes a connecting frame 31 and a plurality of extensions 32; Figure 3As shown, the connecting frame 31 is arranged at one end of the module bracket 1 and is provided with a second wiring opening 33, and the second wiring opening 33 corresponds to the position of the first wiring opening 11; multiple extension portions 32 are all protrudingly arranged on the side of the connecting frame 31 away from the module bracket 1; and the multiple extension portions 32 are arranged in an array, and a first wiring channel 34 is formed between two adjacent extension portions 32; the first wiring opening 11, the second wiring opening 33 and the first wiring channel 34 are connected in sequence to form a cable path.
[0032] In the above embodiment, through the present application, since the first wiring port 11 on the module bracket 1, the second wiring port 33 on the cable management bracket 3, and the first cable management channel 34 are connected in sequence, a clear and coherent cable path is formed, ensuring that the cables can be effectively guided, restrained and organized after being led out of the module bracket 1. Since the multiple extensions 32 on the cable management bracket 3 are arranged in an array, the independent first cable management channels 34 formed by the two adjacent extensions 32 realize the physical separation of multiple cables. Therefore, it can solve the technical problem of multiple cables being entangled, stacked or crossed with each other, and improve the orderliness and reliability of the cable layout; the extensions 32 adopt an array structure layout, so that different first cable management channels can cooperate with each other to provide a variety of routing methods. After the cables are led out from the module bracket 1 and enter the array area, they can be flexibly selected and guided to different first cable management channels 34 for layout and fixation according to the requirements of their final connection position, thereby maximizing the cable management efficiency. It not only makes the cable layout inside the equipment clearer and neater, but also facilitates subsequent maintenance and repair work, forming a highly integrated, well-organized and easy-to-maintain cable management system, which improves the efficiency, reliability and neatness of cable management inside the equipment.
[0033] In this embodiment, since the second wiring opening 33 corresponds to the first wiring opening 11, the transition of the cable from the module bracket 1 to the cable management bracket 3 is smooth, and unnecessary bending, squeezing or friction of the cable between the second wiring opening 33 and the first wiring opening 11 is avoided, which is beneficial to protecting the cable and improving the reliability of the cable connection.
[0034] Specifically, there is no limitation on the processor module 2 , and the processor module 2 may be a graphics processor module or a central processing unit module.
[0035] Specifically, one cable can pass through the first cable management channel 34. The cable can be a power cable or a communication cable.
[0036] In some embodiments, as Figures 9 to 12 As shown, it also includes a wire management clip 4, which is arranged on a side of the wire management bracket 3 close to the circuit board; the wire management clip 4 is provided with a second wire management channel 41, and the second wire management channel 41 is used to communicate with a different first wire management channel 34.
[0037] In the above embodiment, by adding a cable management clamp 4 to the area of the cable management bracket 3 close to the circuit board, and flexibly connecting the second cable management channel 41 with different first cable management channels 34, accurate transition and directional guidance of the cables from the cable management bracket 3 to the circuit board are achieved, effectively isolating cables with different directions and avoiding cross-interference between multiple cables; and because the second cable management channel 41 can be flexibly connected with different first cable management channels 34, on-demand adaptation to different wiring schemes is achieved, thereby enhancing the flexibility and adaptability of use.
[0038] Specifically, the second cable management channel 41 can accommodate one cable passing through.
[0039] In some embodiments, as Figure 11 As shown, the module bracket 1 is used to be fixed on the mounting bracket 5; the circuit board is arranged on the side of the mounting bracket 5 away from the module bracket 1 along the first direction; the cable management clip 4 includes a fixing plate 42, a first clamping portion 43 and a second clamping portion 44; the fixing plate 42 and the mounting bracket 5 are spaced apart along the first direction; the first clamping portion 43 is protrudingly arranged on the side of the fixing plate 42 close to the module bracket 1, and is clamped with the cable management bracket 3; the second clamping portion 44 is protrudingly arranged on the side of the fixing plate 42 close to the module bracket 1, is spaced apart from the first clamping portion 43 along the second direction, and is clamped with the mounting bracket 5; the second direction is perpendicular to the first direction.
[0040] In the above embodiment, the fixing plate 42 and the mounting bracket 5 are spaced apart along the first direction, reserving a cable routing channel, providing ample space for cable routing and ensuring an orderly cable layout. Simultaneously, the first clamping portion 43 is clamped to the cable management bracket 3, and the second clamping portion 44 is clamped to the mounting bracket 5, forming a dual fixing structure. This not only secures the cable management clip 4, but also allows for quick assembly and disassembly due to its clamping properties. Synchronous locking with the cable management bracket 3 and the mounting bracket 5 can be achieved without the need for tools, thereby improving the installation and maintenance efficiency of the cable management clip 4. Furthermore, the clamping connection between the cable management clip 4, the cable management bracket 3, and the mounting bracket 5 allows the cable management clip 4 to be connected to any position on the cable management bracket 3 and the mounting bracket 5 according to actual needs, allowing the cable management clip 4 to communicate with different first cable management channels 34 on the cable management bracket 3, thereby meeting diverse cable connection requirements.
[0041] In some embodiments, as Figure 12As shown, the first clamping portion 43 includes two first clamping members 431, which are respectively clamped with two adjacent extension portions 32, and the two first clamping members 431 are spaced apart along the third direction to form a first wire-managing gap; the second clamping portion 44 includes two second clamping members 441, which are both clamped with the mounting bracket 5, and the two second clamping members 441 are spaced apart along the third direction to form a second wire-managing gap; the first wire-managing gap is connected to the second wire-managing gap to form a second wire-managing channel 41; the first direction, the second direction and the third direction are perpendicular to each other.
[0042] In the above embodiment, the provision of the first clamping member 431 and the second clamping member 441 not only achieves mechanical fixation but also forms a cable routing path, thus enabling the first clamping member 431 and the second clamping member 441 to serve as both a structural lock and a cable guide. Furthermore, the cable management clip 4 provides installation flexibility, enabling the cable management clip to be installed at different locations on the cable management bracket 3 and the mounting bracket 5, ensuring that the cable management clip 4 can communicate with different first cable management channels 34, thereby enabling on-demand adaptation to different wiring schemes and enhancing flexibility and adaptability.
[0043] In a specific embodiment, the first clamping member 431 includes a first clamping body 4311 and a first clamping surface 4312; the first clamping body 4311 is protruded on the side of the fixed plate 42 close to the module bracket 1, and extends on the inner side of the corresponding first wire management channel 34; the first clamping surface 4312 is arranged on the side of the first clamping body 4311 away from the fixed plate 42, and the first clamping surface 4312 protrudes along the third direction on the side of the first clamping body 4311 away from the third gap, which helps the first clamping surface 4312 to clamp with the corresponding extension part 32.
[0044] In another embodiment, the first clamping member 431 may include a first clamping body 4311 and a first clamping surface 4312; the first clamping body 4311 is protrudingly arranged on the side of the fixed plate 42 close to the module bracket 1, and extends to the outside of the corresponding first wire management channel 34; the first clamping surface 4312 is arranged on the side of the first clamping body 4311 away from the fixed plate 42, and the first clamping surface 4312 is protruding along the third direction on the side of the first clamping body 4311 close to the third gap, which helps the first clamping surface 4312 to clamp with the corresponding extension part 32.
[0045] Preferably, an avoidance portion is provided on the first clamping body 4311 to prevent the first clamping body 4311 from interfering with other components on the inner wall of the chassis 7 , thereby ensuring smooth installation of the cable management clip 4 .
[0046] In a specific embodiment, the second clamping member 441 is located on the side of the mounting bracket 5 away from the cable management bracket 3, and includes a second clamping body 4411 and a second clamping surface 4412; the second clamping body 4411 is protrudingly arranged on the side of the fixed plate 42 close to the module bracket 1; the second clamping surface 4412 is arranged on the side of the second clamping body 4411 away from the fixed plate 42, and the first clamping surface 4312 is protruding along the second direction and is arranged on the side of the second clamping body 4411 close to the mounting bracket 5, which helps the first clamping surface 4312 to be clamped with the mounting bracket 5.
[0047] Specifically, the spacing distance between the first clamping portion 43 and the second clamping portion 44 is greater than the width of the mounting bracket 5, which can not only ensure the smooth installation of the cable management clip 4, but also be compatible with component tolerances, reduce assembly accuracy requirements, and further improve the installation and maintenance efficiency of the cable management clip 4.
[0048] Specifically, after the cable management clip 4 is installed in place, the first clamping portion 43 and the connecting frame 31 are spaced apart; and along the second direction, the distance between the first clamping portion 43 and the connecting member is greater than the length of the second clamping surface 4412; when the cable management clip 4 needs to be disassembled, the cable management clip 4 is moved along the second direction toward the side close to the image processing module until the second clamping surface 4412 is separated from the mounting bracket 5, and then the first clamping member 431 is separated from the corresponding extension portion 32, and the disassembly of the cable management clip 4 is completed.
[0049] In this embodiment, there is no limit on the number of the cable management clips 4 . Each cable is provided with a corresponding cable management clip 4 , and the cable management clip 4 is installed at the corresponding first cable management channel 34 .
[0050] In a specific embodiment, the mounting bracket 5 extends along the third direction.
[0051] In some embodiments, as Figure 5 As shown, two first protrusions 321 are provided at one end of the extension portion 32 away from the connecting frame 31 , and the two first protrusions 321 form an L-shaped limiting end.
[0052] In the above embodiment, an L-shaped limit end is provided at the end of the extension portion 32 away from the connecting frame 31, so that the L-shaped limit end can simultaneously exert a reliable restraining effect on the cables within the first cable management channel 34 in two adjacent directions of the extension portion 32, forming a stable physical blocking surface. When the cables are laid out in the first cable management channel 34, the L-shaped limit end reliably blocks the cables, preventing them from accidentally sliding out or falling off from the end of the extension portion 32 away from the connecting frame 31, ensuring that the cables are always restrained within the preset path, enhancing the full-range restraining ability of the cable management bracket 3 and improving the overall reliability of cable management. In addition, the L-shaped limit end can also maintain the compactness of the terminal structure while providing effective restraint, without taking up too much additional space.
[0053] In a specific embodiment, in the second direction, the distance between the first protrusion 321 and the connecting frame 31 is equal to the cable diameter plus 2 mm. This prevents the cable from being squeezed or worn due to a too small distance between the first protrusion 321 and the connecting frame 31, and also prevents the cable from loosening or shifting due to an excessive distance between the first protrusion 321 and the connecting frame 31.
[0054] In some embodiments, as Figure 5 As shown, two second protrusions 322 are provided at one end of the extension portion 32 away from the connecting frame 31 , and the two second protrusions 322 form a straight-line limiting end.
[0055] In the above embodiment, a straight-line limit end is provided at the end of the extension portion 32 away from the connecting frame 31, so that the straight-line limit end can simultaneously exert a reliable restraining effect on the cables within the first cable management channel 34 in two directions relative to the extension portion 32, forming a stable physical blocking surface. When the cables are laid out in the first cable management channel 34, the straight-line limit end reliably blocks the cables, preventing them from accidentally sliding out or falling off from the end of the extension portion 32 away from the connecting frame 31, ensuring that the cables are always restrained within the preset path, enhancing the full-range restraint capability of the cable management bracket 3 and improving the overall reliability of cable management. In addition, the straight-line design has straight lines and a simpler structure, which not only reduces manufacturing complexity and cost, but also occupies less space.
[0056] In a specific embodiment, in the second direction, the distance between the second protrusion 322 and the connecting frame 31 is equal to the cable diameter plus 2 mm. This prevents the cable from being squeezed or worn due to a too small distance between the second protrusion 322 and the connecting frame 31, and also prevents the cable from loosening or shifting due to an excessive distance between the second protrusion 322 and the connecting frame 31.
[0057] In some embodiments, as Figure 5 As shown, three third protrusions 323 are provided at one end of the extension portion 32 away from the connecting frame 31 , and the three third protrusions 323 form a T-shaped limiting end.
[0058] In the above embodiment, a T-shaped stopper is provided at the end of the extension 32 away from the connecting frame 31. This allows the T-shaped stopper to simultaneously and reliably constrain the cables within the first cable management channel 34 in three adjacent directions of the extension 32, forming a stable physical barrier. When the cables are routed in the first cable management channel 34, the T-shaped stopper reliably blocks the cables, preventing them from accidentally slipping out or falling off the end of the extension 32 away from the connecting frame 31. This ensures that the cables are always constrained within the pre-set path, enhancing the full-range cable restraint capability of the cable management bracket 3 and improving the overall reliability of cable management.
[0059] In a specific embodiment, in the second direction, the distance between the third protrusion 323 and the connecting frame 31 is equal to the cable diameter plus 2 mm. This prevents the cable from being squeezed or worn due to a too small distance between the third protrusion 323 and the connecting frame 31, and also prevents the cable from loosening or shifting due to an excessive distance between the third protrusion 323 and the connecting frame 31.
[0060] In some embodiments, as Figure 5 As shown, four fourth protrusions 324 are provided at one end of the extension portion 32 away from the connecting frame 31 , and the four fourth protrusions 324 form a cross-shaped limiting end.
[0061] In the above embodiment, a cross-shaped stopper is provided at the end of the extension 32 away from the connecting frame 31. This allows the cross-shaped stopper to simultaneously and reliably constrain the cables within the first cable management channel 34 in both directions of the extension 32, forming a stable physical barrier. When the cables are routed in the first cable management channel 34, the cross-shaped stopper reliably blocks the cables, preventing them from accidentally slipping out or falling off the end of the extension 32 away from the connecting frame 31. This ensures that the cables are always constrained within the pre-set path, enhancing the cable management bracket 3's ability to constrain the cables throughout their entire length and improving the overall reliability of cable management.
[0062] In a specific embodiment, in the second direction, the distance between the fourth protrusion 324 and the connecting frame 31 is equal to the cable diameter plus 2 mm. This prevents the cable from being squeezed or worn due to a too small distance between the fourth protrusion 324 and the connecting frame 31, and also prevents the cable from loosening or shifting due to an excessive distance between the fourth protrusion 324 and the connecting frame 31.
[0063] In a specific embodiment, the distance between two adjacent limit ends is equal to the distance between the cables minus 2 mm, which can effectively prevent the cable from accidentally sliding out or falling off from the end of the extension portion 32 away from the connecting frame 31, ensuring that the cable is always constrained within the preset path.
[0064] In a specific embodiment, according to the actual wiring density and protection requirements, in the edge area of the connecting frame 31, multiple I-shaped limit ends, multiple T-shaped limit ends and multiple L-shaped limit ends are mixedly arranged; in the middle area of the connecting frame 31, multiple I-shaped limit ends, multiple T-shaped limit ends and multiple cross-shaped limit ends are mixedly arranged to form a complementary protection array, which improves the compactness of the structure of the cable management bracket 3 while meeting the wiring of cables in all directions.
[0065] Specifically, in the edge area of the connecting frame 31 , a T-shaped limiting end or an L-shaped limiting end is arranged every other I-shaped limiting end.
[0066] Specifically, the ends of the extension portions 32 at the four included corners of the connecting frame 31 facing away from the connecting frame 31 are all L-shaped limiting ends.
[0067] Specifically, in the middle area of the connecting frame 31 , a T-shaped limiting end or a cross-shaped limiting end is arranged every other I-shaped limiting end.
[0068] In a specific embodiment, in the third direction, the distance between two adjacent extensions 32 is equal to the cable diameter plus 2 mm. This prevents the cable from being squeezed or worn due to a too small distance between two adjacent extensions 32, and also prevents the cable from loosening or shifting due to an excessive distance between two adjacent extensions 32.
[0069] In some embodiments, as Figure 6 As shown, the cable management bracket 3 further includes a locking portion 35 , which is protrudingly provided on a side of the connecting frame 31 close to the module bracket 1 and passes through the first wiring opening 11 to be locked with the processor module 2 .
[0070] In the above embodiment, the cable management bracket 3 is engaged with the processor module 2 via its engaging portion 35. By utilizing the characteristics of the engaging structure, the operator can achieve a secure connection between the cable management bracket 3 and the processor module 2 without the need for additional tools or complicated operating steps. Furthermore, the engaging portion 35 passes through the existing first wiring opening 11 on the module bracket 1 to complete the engagement with the processor module 2, fully utilizing the existing first wiring opening 11 structure and avoiding the need for additional holes in the module bracket 1. This not only effectively enhances the mechanical strength of the module bracket 1, enabling it to withstand greater external forces without being easily damaged, but also simplifies the assembly process, reduces assembly time, and makes the overall structure more compact. The connection between the processor module 2, module bracket 1, and cable management bracket 3 is more secure, thereby improving the stability and reliability of the overall structure.
[0071] In a specific embodiment, the engaging portion 35 is a bent edge protruding from the connecting frame 31 along the second direction toward the side of the processor module 2. Two engaging portions 35 are provided, one on each side of the first wiring opening 11 in the third direction, and are respectively detachably engaged with the plug-in cards 21 of the two sets of processor modules 2. The engaging portion 35 is provided with a first engaging slot, which engages with the first I-shaped pin on the corresponding plug-in card 21 to achieve a detachable connection between the engaging portion 35 and the corresponding plug-in card 21. Specifically, the first engaging slot is an L-shaped slot.
[0072] In some embodiments, as Figure 7 and Figure 8As shown, the cable management bracket 3 further includes at least two groups of snap-fit grooves 36 , which are respectively arranged on both sides of the cable management bracket 3 , and the module bracket 1 is provided with at least two groups of first snaps 12 , which are snap-fitted with the snap-fit grooves 36 in a one-to-one correspondence.
[0073] In the above embodiment, by providing snap-fit grooves 36 on both sides of the cable management bracket 3 and snap-fitting them with the corresponding second snap buckles 151 on the module bracket 1, the module bracket 1 and the cable management bracket 3 can be quickly assembled without the aid of any additional tools or complicated operating steps, and the connection can be ensured to be firm and reliable, thereby improving assembly efficiency; and because the forces on both sides are balanced, it can also effectively resist vibrations or accidental pulling that may be encountered during the use of the equipment, prevent the connection parts from loosening or accidental detachment, enhance the rigidity and stability of the overall structure, and ensure that the cable management bracket 3 can provide firm support for the cables.
[0074] In a specific embodiment, two groups of snap-in slots 36 are provided on one side of the cable management bracket 3 in the third direction. The two groups of snap-in slots 36 are sequentially arranged along the first direction, and each snap-in slot 36 is corresponding to a first snap 12. Two groups of snap-in slots 36 are also provided on the other side of the cable management bracket 3 in the third direction. The two groups of snap-in slots 36 are sequentially arranged along the first direction, and each snap-in slot 36 is corresponding to a first snap 12.
[0075] In some embodiments, as Figure 13 As shown, two groups of processor modules 2 are respectively provided on both sides of the first wiring opening 11 , a wiring space 6 is provided between the two groups of processor modules 2 , and the wiring space 6 is communicated with the first wiring opening 11 .
[0076] In the above embodiment, by symmetrically arranging two sets of processor modules 2 on either side of the first wiring opening 11, full and maximum utilization of the horizontal space is achieved, effectively improving space efficiency. Furthermore, a dedicated wiring space 6 is reserved between the two sets of processor modules 2, avoiding additional space occupation in the depth direction and further optimizing the spatial layout. Furthermore, because the wiring space 6 is directly connected to the first wiring opening 11, forming a cable trunk, cables can be routed out of the first wiring opening 11 in a centralized and orderly manner, minimizing cable bending and thus reducing signal loss during transmission, thereby ensuring signal integrity and stability.
[0077] In a specific embodiment, the two groups of processor modules 2 are arranged in sequence along the third direction.
[0078] In some embodiments, as Figures 13 to 15As shown, the module bracket 1 includes a first bracket 13 , the first ends of the two groups of processor modules 2 are detachably connected to the first bracket 13 , and the cable management bracket 3 is arranged on a side of the first bracket 13 away from the processor module 2 .
[0079] In the above embodiment, by setting up the first bracket 13, the two groups of processor modules 2 can be detachably connected to the same side of the bracket, which is convenient for independent maintenance or replacement, thereby realizing modular installation of the two groups of processor modules 2; and the cable management bracket 3 is arranged on the side of the first bracket 13 away from the processor module 2. By centrally guiding the cable path, it not only improves the cleanliness inside the equipment, but also realizes the integrated layout of cable management, making the cable laying, maintenance and replacement work more efficient and orderly, thereby ensuring high maintainability of the cables.
[0080] In a specific embodiment, the first bracket 13 is fixed on the mounting bracket 5 , and the mounting bracket 5 is protruded along the second direction near the side of the processor module 2 , and the second clamping member 441 of the cable management clip 4 is clamped on the protruding end of the mounting bracket 5 .
[0081] Specifically, a fifth connecting portion 134 is provided on one side of the first bracket 13 close to the mounting bracket 5 along the first direction, and the connection between the first bracket 13 and the mounting bracket 5 is achieved through the fifth connecting portion 134 .
[0082] Specifically, the fifth connecting portion 134 is a bent edge protruding from the first main frame body along the second direction toward the side away from the processor module 2. A first connecting hole is provided on the fifth connecting portion 134, and a second connecting hole is correspondingly provided on the mounting bracket 5. The fastener connects the first connecting hole and the second connecting hole in sequence, thereby realizing a detachable connection between the mounting bracket 5 and the first bracket 13.
[0083] In some embodiments, as Figures 13 to 15 As shown, the processor module 2 includes a plug-in card 21 and a processor 22; the processor 22 is connected to the side of the plug-in card 21 away from the wiring space 6; the first bracket 13 includes a first bracket body 131, two first connecting parts 132 and a second connecting part 133; the two first connecting parts 132 are located at the position where the wiring space 6 is located, and are both protruding from the side of the first bracket body 131 close to the processor module 2, and are respectively detachably connected to one end of the two plug-in cards 21; the second connecting part 133 is protruding from the side of the first bracket body 131 close to the processor module 2, and the sides of the two processors 22 close to the circuit board are both in contact with the second connecting part 133.
[0084] In the above embodiment, by arranging the processor 22 on the side of the plug-in card 21 away from the wiring space 6, when the plug-in card 21 is connected to the first bracket 13, the processor 22 can be smoothly and firmly installed in place, avoiding the problem of being unable to install due to spatial interference. By providing two first connecting parts 132 on the first bracket body 131, the two first connecting parts 132 are respectively detachably connected to one end of the two plug-in cards 21. At the same time, by providing a second connecting part 133 on the first bracket body 131, the sides of the two processors 22 close to the circuit board are both in contact with the second connecting part 133. Not only does this achieve flexible assembly and convenient disassembly between the processor module 2 and the first bracket 13, it also facilitates the installation, subsequent maintenance, and upgrade of the equipment, thereby effectively improving the overall efficiency and operability of the equipment.
[0085] In a specific embodiment, the first connection portion 132 is a bent edge protruding from the first bracket body 131 along the second direction toward the side closest to the processor module 2. Two first connection portions 132 are provided on either side of the first wiring opening 11 in the third direction. A second latching slot is provided on each of the first connection portions 132. The second latching slot engages with the second I-shaped pin on the corresponding plug-in card 21, achieving a removable connection between the first connection portion 132 and the corresponding plug-in card 21. Specifically, the second latching slot is a U-shaped slot.
[0086] Specifically, the first I-shaped nail and the second I-shaped nail are arranged in sequence in the first direction.
[0087] Specifically, when the cable management bracket 3 is installed in place, the engaging portion 35 and the first connecting portion 132 are arranged in sequence in the first direction.
[0088] In a specific embodiment, the second connection portion 133 is a bent edge protruding from the first bracket body 131 along the second direction toward the side close to the processor module 2, and the second connection portion 133 extends along the third direction; the processor 22 abuts against the second connection portion 133 on the side close to the circuit board along the second direction.
[0089] Preferably, a plurality of first ventilation openings are provided on the first bracket body 131 .
[0090] In some embodiments, as Figures 13 to 15 As shown, the module bracket 1 includes a second bracket 14 , which is arranged opposite to the first bracket 13 , and the second ends of the two groups of processor modules 2 are detachably connected to the second bracket 14 .
[0091] In the above embodiment, by providing a second bracket 14 that cooperates with the first bracket 13, the two ends of the two sets of processor modules 2 are firmly fixed. This not only improves the installation stability of the processor modules 2 and effectively prevents loosening or displacement caused by vibration or external forces, but also ensures the stability and reliability of the processor modules 2 during long-term operation. Furthermore, because the second ends of the two sets of processor modules 2 are detachably connected to the second bracket 14, the processor modules 2 can be quickly installed and removed, and subsequent maintenance and upgrades are facilitated, thereby improving the overall efficiency and maintainability of the device.
[0092] In some embodiments, as Figures 13 to 15 As shown, the processor module 2 includes a plug-in card 21 and a processor 22; the processor 22 is connected to the side of the plug-in card 21 away from the wiring space 6; the second bracket 14 includes a second bracket body 141, two third connecting parts 142 and two fourth connecting parts 143; the two third connecting parts 142 are located at the position where the wiring space 6 is located, and both protrude from the side of the second bracket body 141 close to the processor module 2, and are respectively detachably connected to the other ends of the two plug-in cards 21; the two fourth connecting parts 143 both protrude from the side of the second bracket body 141 close to the processor module 2, and are respectively detachably connected to the other ends of the two processors 22.
[0093] In the above embodiment, by arranging the processor 22 on the side of the plug-in card 21 away from the wiring space 6, when the plug-in card 21 is connected to the second bracket 14, the processor 22 can be smoothly and firmly installed in place, avoiding the problem of being unable to install due to spatial interference. By providing two third connecting parts 142 on the second bracket body 141, the two connecting parts are respectively detachably connected to the other ends of the two plug-in cards 21, and cooperate with the existing first connecting part 132 to ensure that the two ends of the plug-in card 21 are firmly fixed. At the same time, two fourth connecting parts 143 are also added to the second bracket body 141, which are respectively detachably connected to the other ends of the two processors 22, and through cooperation with the second connecting part 133, the two ends of the processor 22 are firmly fixed. Not only does this achieve flexible assembly and convenient disassembly between the processor module 2 and the second bracket 14, but it also facilitates the installation, subsequent maintenance and upgrade of the equipment, thereby effectively improving the overall efficiency and operability of the equipment.
[0094] In a specific embodiment, the second bracket body 141 is recessed within the wiring space 6 to form a groove. The two processor modules 2 are positioned on either side of the groove in the third direction. The two third connecting portions 142 serve as the two groove walls in the third direction. Specifically, the third connecting portions 142 are provided with through holes, into which the positioning pins on the card 21 are inserted, thereby connecting the card 21 to the third connecting portions 142.
[0095] In a specific embodiment, the fourth connection portion 143 is a bent edge protruding from the second main frame body along the second direction toward one side close to the processor module 2. A third connection hole is provided on the fourth connection portion 143, and a fourth connection hole is correspondingly provided on the processor 22. The fastener connects the third connection hole and the fourth connection hole in sequence, thereby realizing a detachable connection between the processor 22 and the fourth connection portion 143.
[0096] Preferably, the two fourth connection portions 143 are arranged diagonally, and the two fourth connection portions 143 are respectively arranged at the two ends of the second bracket body 141 in the third direction, and the two fourth connection portions 143 are respectively arranged at the two ends of the second bracket body 141 in the first direction. In the first direction, the processor module 2 is located between the two fourth connection portions 143.
[0097] Preferably, a plurality of first ventilation openings are provided on the second bracket body 141 .
[0098] In a specific embodiment, the connection between the first bracket 13 and the second bracket 14 and the two plug-in cards 21 is first achieved through the first connecting part 132 and the third connecting part 142, and then the two processors 22 are respectively connected to the two plug-in cards 21 along the third direction, and then the processor 22 is fixed in the first direction through the second connecting part 133 and the fourth connecting part 143, thereby realizing the rigid interconnection of the two processor modules 2.
[0099] In some embodiments, as Figure 16 As shown, the module bracket 1 further includes a rotating assembly, which includes a second clip 151 . The second clip 151 is protrudingly provided on the second bracket 14 and is used for being rotatably clipped to the chassis 7 .
[0100] In the above embodiment, by providing a second clip 151 on the second bracket 14, the second clip 151 is rotatably connected to the chassis 7, which provides the server bracket with flexible flipping freedom, so that the server bracket can be rotated and lifted as a whole, which facilitates the maintenance of the components at the bottom of the device, and also provides sufficient space for the plugging and unplugging operations of the cables, thereby improving the convenience of cable plugging and unplugging maintenance.
[0101] In a specific embodiment, a mounting shaft 71 is provided on a side wall of the chassis 7, and a second clip 151 protrudes from a side of the first bracket 13 away from the processor module 2 along the second direction and is rotatably engaged with the mounting shaft 71. Specifically, the second clip 151 is provided on a side of the first bracket 13 away from the circuit board along the first direction.
[0102] Specifically, the second buckle 151 is a semicircular buckle.
[0103] In some embodiments, the rotating assembly further includes a handle 152 , which is disposed on the first bracket 13 .
[0104] In the above embodiment, by providing a handle 152 on the first bracket 13, a clear force point is provided for the operator. When the server bracket needs to be rotated and lifted as a whole, the device can be lifted and rotated to the appropriate position through the handle 152, thereby improving the convenience of operation.
[0105] In a specific embodiment, the handle 152 is provided on a side of the first bracket 13 away from the mounting bracket 5 along the first direction. Specifically, the handle 152 is a bent edge of the first main frame body protruding from a side away from the processor module 2 along the second direction.
[0106] According to another aspect of an embodiment of the present invention, a server is provided, comprising the above-mentioned server bracket.
[0107] The above is a detailed introduction to a server bracket and server provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only intended to help understand the method and core ideas of the present application. It should be pointed out that, for ordinary technicians in this technical field, without departing from the principles of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the scope of protection of the claims of the present application.
Claims
1. A server bracket, characterized in that: include A module bracket (1) is provided with a first wiring opening (11) for accommodating a processor module (2); A cable management bracket (3) comprises a connecting frame (31) and a plurality of extensions (32); the connecting frame (31) is arranged at one end of the module bracket (1) and is provided with a second wiring opening (33), the second wiring opening (33) corresponding to the position of the first wiring opening (11); the plurality of extensions (32) are all protrudingly arranged on a side of the connecting frame (31) away from the module bracket (1); and the plurality of extensions (32) are arranged in an array, and a first cable management channel (34) is formed between two adjacent extensions (32); the first cable management opening (11), the second cable management opening (33) and the first cable management channel (34) are sequentially connected to form a cable path; It also includes a cable management clip (4), and the module bracket (1) is used to be fixed on the mounting bracket (5); The cable management clip (4) comprises: A fixing plate (42) is spaced apart from the mounting bracket (5) along a first direction; A first clamping portion (43) is protrudingly provided on a side of the fixing plate (42) close to the module bracket (1) and is clamped to the cable management bracket (3); A second clamping portion (44) is protrudingly arranged on a side of the fixing plate (42) close to the module bracket (1), is spaced apart from the first clamping portion (43) along a second direction, and is clamped to the mounting bracket (5); the second direction is perpendicular to the first direction.
2. The server bracket according to claim 1, wherein: The cable management clip (4) is arranged on a side of the cable management bracket (3) close to the circuit board; the cable management clip (4) is provided with a second cable management channel (41), and the second cable management channel (41) is used to communicate with a different first cable management channel (34).
3. The server bracket according to claim 2, characterized in that: The circuit board is arranged along a first direction on a side of the mounting bracket (5) facing away from the module bracket (1).
4. The server bracket according to claim 3, characterized in that: The first clamping portion (43) comprises two first clamping members (431), the two first clamping members (431) are respectively clamped with two adjacent extension portions (32), and the two first clamping members (431) are spaced apart along the third direction to form a first wire management gap; The second clamping portion (44) comprises two second clamping members (441), both of the two second clamping members (441) are clamped to the mounting bracket (5), and the two second clamping members (441) are spaced apart along the third direction to form a second wiring gap; The first wiring gap and the second wiring gap are connected to form the second wiring channel (41); the first direction, the second direction and the third direction are perpendicular to each other.
5. The server rack according to any one of claims 1 to 4, characterized in that: Two first protrusions (321) are provided at one end of the extension portion (32) away from the connecting frame (31), and the two first protrusions (321) form an L-shaped limiting end; And / or, one end of the extension portion (32) away from the connecting frame (31) is provided with two second protrusions (322), and the two second protrusions (322) form a straight-line limiting end; And / or, three third protrusions (323) are provided at one end of the extension portion (32) away from the connecting frame (31), and the three third protrusions (323) form a T-shaped limiting end; And / or, one end of the extension portion (32) away from the connecting frame (31) is provided with four fourth protrusions (324), and the four fourth protrusions (324) form a cross-shaped limiting end.
6. The server rack according to any one of claims 1 to 4, characterized in that: The cable management bracket (3) further comprises a snap-fit portion (35), the snap-fit portion (35) being protrudingly arranged on a side of the connecting frame (31) close to the module bracket (1), and passing through the first wiring opening (11) to snap-fit with the processor module (2).
7. The server rack according to any one of claims 1 to 4, characterized in that: The cable management bracket (3) further comprises at least two groups of snap-fitting grooves (36), which are respectively arranged on both sides of the cable management bracket (3). The module bracket (1) is provided with at least two groups of first snap-fitting buckles (12), which are snap-fitted with the snap-fitting grooves (36) in a one-to-one correspondence.
8. The server rack according to any one of claims 1 to 4, characterized in that: Two groups of processor modules (2) are respectively provided on both sides of the first wiring opening (11), a wiring space (6) is provided between the two groups of processor modules (2), and the wiring space (6) is communicated with the first wiring opening (11).
9. The server bracket according to claim 8, characterized in that: The module bracket (1) comprises a first bracket (13), the first ends of the two groups of processor modules (2) are detachably connected to the first bracket (13), and the wire management bracket (3) is arranged on a side of the first bracket (13) away from the processor module (2).
10. The server rack according to claim 9, wherein: The processor module (2) includes an insert card (21) and a processor (22); the processor (22) is connected to a side of the insert card (21) facing away from the wiring space (6); the first bracket (13) includes: A first bracket body (131); Two first connecting portions (132), located at the location of the wiring space (6), are both protrudingly arranged on a side of the first bracket body (131) close to the processor module (2), and are detachably connected to one end of the two plug-in cards (21) respectively; The second connecting portion (133) is protrudingly provided on a side of the first bracket body (131) close to the processor module (2), and the side surfaces of the two processors (22) close to the circuit board are in contact with the second connecting portion (133).
11. The server rack according to claim 9, wherein: The module bracket (1) comprises a second bracket (14), the second bracket (14) being arranged opposite to the first bracket (13), and the second ends of the two groups of processor modules (2) are detachably connected to the second bracket (14).
12. The server rack according to claim 11, wherein: The processor module (2) includes an insert card (21) and a processor (22); the processor (22) is connected to a side of the insert card (21) facing away from the wiring space (6); the second bracket (14) includes: A second bracket body (141); Two third connecting portions (142) are located at the location of the wiring space (6), are both protrudingly arranged on one side of the second bracket body (141) close to the processor module (2), and are detachably connected to the other ends of the two plug-in cards (21); Two fourth connecting portions (143) are both protrudingly arranged on one side of the second bracket body (141) close to the processor module (2), and are detachably connected to the other ends of the two processors (22) respectively.
13. The server rack according to claim 11, wherein: The module bracket (1) further comprises a rotating assembly, wherein the rotating assembly comprises a second buckle (151), wherein the second buckle (151) is protrudingly provided on the second bracket (14) and is used for being rotatably clamped on the chassis (7).
14. The server rack according to claim 13, wherein: The rotating assembly further comprises a handle (152), and the handle (152) is arranged on the first bracket (13).
15. A server, characterized in that: Comprising the server bracket according to any one of claims 1 to 14.
Citation Information
Patent Citations
Expansion assembly frame and server
CN116185149A