Installation components, chassis, and servers

By designing GPU module installation components that can be installed forward or reverse, the installation limitations of active thermal GPU modules are solved, achieving convenient and efficient installation and cost-reducing effects.

CN119536475BActive Publication Date: 2025-07-11INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202510102268.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-07-11
Estimated Expiration
2045-01-22

AI Technical Summary

Technical Problem

In the prior art, there are limitations in the installation direction and position of the active heat dissipation GPU module, which leads to inconvenient installation and high cost.

Method used

An installation component is designed to install the GPU module forward or reverse in the chassis, and through the cooperation of the support component and the connecting component, it ensures that the wind direction of the GPU module is consistent with the wind direction of the chassis, reducing installation difficulty and cost.

Benefits of technology

提升了主动散热式GPU模组的安装便利性,降低了安装难度和成本,同时保证了GPU模组的风向与机箱风向一致,提高了散热效果。

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a mounting component, a chassis and a server. Among them, the support component has a receiving cavity for receiving a processor module. The support component has a first end and a second end that are opposite in a first direction. The support component is used for plugging and matching with the chassis and realizing that the first end is located inside the chassis. Both the first end and the second end of the support component can be used for matching with the IO end of the processor module. The connection component is arranged in the receiving cavity and is used for connecting the processor module and the support component. Through the mounting component of the present invention, the GPU module can be installed into the chassis in a forward or reverse direction, and it is ensured that the wind direction of the GPU module itself conforms to the wind direction of the chassis, thereby solving the problem that the direction and position of the actively cooled GPU module are limited, and reducing the installation difficulty and cost of the actively cooled GPU module.
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Description

Technical Field

[0001] The present invention relates to the technical field of GPU installation, and particularly relates to an installation component, a chassis, and a server. Background Art

[0002] A fan module is installed in a server chassis, usually forming an air flow direction from front to back. A GPU is configured in the server. Due to the characteristics of its own heat dissipation requirements, the GPU is divided into an active heat dissipation type GPU module and a passive heat dissipation type GPU module. For the active heat dissipation type GPU module, it comes with its own fan, and the formed air flow direction is air intake at the fan end and air outlet at the IO end. When installed in the chassis, it is necessary to consider that the air flow direction of the active heat dissipation type GPU module is consistent with the air flow direction in the chassis to ensure the heat dissipation effect and performance of the chassis.

[0003] However, in the related art, to ensure that the air flow direction of the active heat dissipation type GPU module is consistent with the air flow direction in the chassis, when the active heat dissipation type GPU module is installed with the chassis, the direction and position of the CPU have limitations, the installation convenience is poor, and the cost is relatively high. Summary of the Invention

[0004] The present invention aims to solve at least one of the technical problems in the related art to some extent.

[0005] To this end, an embodiment of the present invention provides an installation component, which can install the GPU module forward in the box body and also install the GPU module backward in the box body, and ensure that the air flow direction of the GPU module itself conforms to the air flow direction of the box body, thereby solving the problem that the direction and position of the active heat dissipation type GPU module have limitations, improving the installation convenience of the active heat dissipation type GPU module, and reducing the installation difficulty and cost of the active heat dissipation type GPU module.

[0006] An embodiment of the present invention provides a chassis.

[0007] An embodiment of the present invention provides a server.

[0008] The installation component of the embodiment of the present invention includes a support component and a connection component. The support component has a receiving cavity for receiving a processor module. The support component has a first end and a second end opposite to each other in a first direction. The support component is used for plugging and cooperating with the chassis and realizing the insertion of the first end into the interior of the chassis. Both the first end and the second end of the support component can be used for cooperating with the IO end of the processor module. The connection component is arranged in the receiving cavity for connecting the processor module and the support component.

[0009] The installation component according to the embodiments of the present invention can install the GPU module into the chassis in a forward or reverse direction, and ensure that the air flow direction of the GPU module itself conforms to the air flow direction of the chassis, thereby solving the problem of limitations in the direction and position of the actively cooled GPU module, improving the convenience of installing the actively cooled GPU module, and reducing the installation difficulty and cost of the actively cooled GPU module.

[0010] In some embodiments, the first end of the support component is used to cooperate with the IO end of the processor module. The connection component includes a first bracket and a second bracket. The first bracket is used to connect the IO end of the processor module, the first bracket has a first limiting piece portion, and the first limiting piece portion is connected to the support component. The second bracket is used to connect the end of the processor module opposite to the IO end, and the second bracket has a first pressing plate portion, and the first pressing plate portion is connected to the support component; or,

[0011] The second end of the support component is used to cooperate with the IO end of the processor module. The connection component includes a third bracket and a fourth bracket. The third bracket is used to connect the IO end of the processor module, the third bracket has a second pressing plate portion, and the second pressing plate portion is connected to the support component. The fourth bracket is used to connect the end of the processor module opposite to the IO end, and the fourth bracket has a second limiting piece portion, and the second limiting piece portion is connected to the support component.

[0012] In some embodiments, the second bracket includes an adapter bracket and a first stop piece. One side of the adapter bracket in the first direction is used to connect to the end of the processor module opposite to the IO end. The first stop piece includes a first connecting piece and a second connecting piece. The first connecting piece is connected to the other side of the adapter bracket in the first direction, the first connecting piece is vertically connected to the second connecting piece, and the second connecting piece forms the first pressing plate portion of the second bracket.

[0013] In some embodiments, the support component includes a support member and a tray. The support member is provided with the accommodation cavity to accommodate the processor module. The support member is connected to the connection component. The support member is detachably arranged on the tray. The tray is used to be plugged and matched with the chassis and realize that one end of the tray in the first direction is adjacent to the middle of the chassis.

[0014] In some embodiments, the support member includes a carrier shell and a fastening member. The carrier shell has the accommodation cavity. The carrier shell is detachably arranged on the tray. One end of the carrier shell in the first direction is provided with the fastening member, and the fastening member is clamped with the first limiting piece portion or the second limiting piece portion.

[0015] In some embodiments, the clamping member includes a connecting frame, a clamping plate and a first bolt, one end of the connecting frame in the second direction is rotatably disposed on the one end of the supporting shell, the other end of the connecting frame in the second direction is provided with the clamping plate, a limiting groove is provided on the clamping plate, the first limiting piece portion or the second limiting piece portion is engaged in the limiting groove, the first bolt connects the connecting frame and the one end of the supporting shell, and the second direction is perpendicular to the first direction.

[0016] In some embodiments, the support assembly further includes a support frame, which is disposed at one end of the tray, and the clamping member further includes a protrusion, which is disposed on the clamping plate, and the protrusion abuts against the support frame and is bolted to the support frame.

[0017] In some embodiments, the support member includes a carrying shell and a compression piece, the carrying shell has the accommodating cavity, the carrying shell is detachably arranged on the tray, the other end of the carrying shell in the first direction is provided with the compression piece, and the compression piece is connected to the first pressure plate part or the second pressure plate part.

[0018] In some embodiments, the pressing piece includes a pressing plate and a second bolt, the pressing plate is rotatably disposed at the other end of the bearing shell, and the second bolt is anchored on the pressing plate; the bearing shell includes a shell, a window frame and a mounting plate, the shell is used to accommodate the processor module, the window frame is located at the other end of the bearing shell, the window frame is connected to the mounting plate on one side in the second direction, the first pressing plate portion or the second pressing plate portion is located between the mounting plate and the pressing plate, and the second bolt is connected to the mounting plate.

[0019] In some embodiments, the support assembly further includes a guide rail and a slider, one of the guide rail and the slider is provided on one side of the support member in the second direction, the other of the guide rail and the slider is provided on the tray, a slide groove is provided on the slider, the guide rail extends along a third direction, the third direction is orthogonal to the first direction and the second direction, and the guide rail is fitted in the slide groove.

[0020] In some embodiments, the slider is arranged on the one side of the support member, and the slider includes a first section, a second section, and a third section connected in sequence, the first section and the third section both extend along the third direction, the first section and the third section are opposite to each other in the first direction and form the slide groove, the second section is located at the end of the first section away from the tray in the third direction, the second section connects the first section and the third section, and the guide rail is arranged on the tray.

[0021] In some embodiments, the support assembly further includes a handle, which is slidably disposed on one side of the support member in the second direction along the third direction; and / or,

[0022] The support assembly further includes a screw fastener and a fastening screw. The screw fastener is provided on the tray, and the fastening screw is disposed on one side of the support member in the second direction and is connected to the screw fastener; and / or,

[0023] The support assembly further includes a indexing pin. The indexing pin is provided at one end of the tray, and the indexing pin has a pin head for mating with the chassis.

[0024] The chassis according to an embodiment of the present invention includes a box body and a mounting assembly. The support assembly is inserted and cooperated with the box body, and the first end is located inside the chassis.

[0025] In some embodiments, the mounting assembly is located at the front end of the box body, and the first end of the support assembly is used to cooperate with the IO end of the processor module; and / or, the mounting assembly is located at the rear end of the box body, and the second end of the support assembly is used to cooperate with the IO end of the processor module.

[0026] The server according to an embodiment of the present invention includes the mounting assembly or the chassis described above. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a schematic structural diagram of the server according to an embodiment of the present invention;

[0028] Figure 2 is a schematic structural diagram of the mounting assembly and the processor module according to one embodiment of the present invention;

[0029] Figure 3 is a schematic structural diagram of the mounting assembly and the processor module according to another embodiment of the present invention;

[0030] Figure 4 is one of the schematic structural diagrams of the connection assembly and the processor module according to one embodiment of the present invention;

[0031] Figure 5 is another of the schematic structural diagrams of the connection assembly and the processor module according to one embodiment of the present invention;

[0032] Figure 6 is one of the schematic structural diagrams of the connection assembly and the processor module according to another embodiment of the present invention;

[0033] Figure 7 is another of the schematic structural diagrams of the connection assembly and the processor module according to another embodiment of the present invention;

[0034] Figure 8 is one of the structural schematic diagrams of the support member according to an embodiment of the present invention;

[0035] Figure 9 This is the second structural schematic diagram of the support member according to the embodiment of the present invention;

[0036] Figure 10 is a schematic structural diagram of a support member, a connection assembly and a processor module in one embodiment of the present invention;

[0037] Figure 11 is a partial structural schematic diagram of a support assembly according to an embodiment of the present invention;

[0038] Figure 12 It is one of the structural schematic diagrams of the tray according to the embodiment of the present invention;

[0039] Figure 13 This is the second structural schematic diagram of the tray according to the embodiment of the present invention.

[0040] Reference numerals:

[0041] Server 10000;

[0042] Chassis 1000;

[0043] Installation assembly 100, box body 200, fan module 300;

[0044] Support assembly 1, accommodating cavity 10, first end 101 of support assembly 1, second end 102 of support assembly 1, support member 11, bearing shell 111, shell 1111, window frame 1112, mounting plate 1113, bottom plate 1114, clamping member 112, connecting frame 1121, clamping plate 1122, limiting groove 11221, first bolt 1123, protruding piece 1125, pressing member 113, pressing piece 1131, second bolt 1132, tray 12, guide groove 121, support frame 13, guide rail 14, slider 15, first section 151, second section 152, third section 153, handle 16, screw fastener 17, fastening screw 18, indexing pin 19;

[0045] Connecting assembly 2, first bracket 21, first limiting piece 210, second bracket 22, first pressing plate 220, adapter 221, first blocking piece 222, first connecting piece 2221, second connecting piece 2222, third bracket 23, second pressing plate 230, fourth bracket 24, second limiting piece 240, screw hole column 25;

[0046] Processor module 2000, IO end 20001, opposite end 20002, adapter card 20003. DETAILED DESCRIPTION

[0047] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention, and should not be construed as a limitation of the present invention.

[0048] Referring to the accompanying drawings below, the installation component 100, the chassis 1000, and the server 10000 of the embodiments of the present invention will be described in detail.

[0049] The chassis 1000 of the embodiments of the present invention includes a box body 200 and an installation component 100.

[0050] Specifically, as Figure 1 shown, the chassis 1000 further includes a fan module 300. The fan module 300 forms an air flow from front to back inside the box body 200. The upstream end of the chassis 1000 in the wind direction is the front end, and the downstream end of the chassis 1000 in the wind direction is the rear end.

[0051] As Figures 1 to 3 shown, the installation component 100 of the embodiments of the present invention includes a support component 1 and a connection component 2.

[0052] The support component 1 has a receiving cavity 10 for receiving the processor module 2000. The support component 1 has a first end 101 and a second end 102 that are opposite in a first direction (such as Figure 1 the front-rear direction in

[0053] ). The support component 1 is inserted and cooperated with the box body 200. The first end 101 is located inside the box body 200. Both the first end 101 and the second end 102 of the support component 1 can be used to cooperate with the IO end 20001 of the processor module 2000. The connection component 2 is arranged in the receiving cavity 10 for connecting the processor module 2000 and the support component 1.

[0054] For ease of description, the two ends of the processor module 2000 in the first direction are respectively referred to as the IO end 20001 and the opposite end 20002, that is, the end of the processor module 2000 opposite to the IO end 20001 is the opposite end 20002.

[0055] The following refers to the attached Figures 1 to 3 , taking the processor module 2000 as an actively cooled GPU module as an example, the process of installing the actively cooled processor module 2000 onto the chassis 1000 using the mounting component 100 of the embodiments of the present invention will be described in detail. Correspondingly, the IO end 20001 of the processor module 2000 is the IO end 20001 of the GPU module, and the opposite end 20002 of the processor module 2000 is the opposite end 20002 of the GPU module. Among them, the front-back direction in the figure is the same as the first direction, the left-right direction is the same as the second direction, and the up-down direction is the same as the third direction.

[0056] Example 1: When an actively cooled GPU module needs to be installed at the front end of the chassis 1000, refer to Figure 2 : First, align the IO end 20001 of the GPU module with the first end 101 of the support component 1, and then install the GPU module into the receiving cavity 10 of the support component 1. Connect the connection component 2 to connect the GPU module and the support component 1, so that the IO end 20001 cooperates with the first end 101, and the opposite end 20002 cooperates with the second end 102. Then move the mounting component 100 to the front end of the box body 200, orient the first end 101 of the support component 1 towards the middle of the box body 200, and then insert the support component 1 into the box body 200 to complete the plug-in fit between the support component 1 and the box body 200. The installation schematic diagram of the actively cooled GPU module at the front end of the chassis 1000 is as shown in Figure 1 : The first end 101 of the support component 1 is adjacent to the middle of the box body 200, and the second end 102 of the support component 1 is adjacent to the front end of the box body 200.

[0057] Example 2: When an actively cooled GPU module needs to be installed at the rear end of the chassis 1000, refer to Figure 3 : First, align the IO end 20001 of the GPU module with the second end 102 of the support component 1, and then install the GPU module into the receiving cavity 10 of the support component 1. Connect the connection component 2 to connect the GPU module and the support component 1, so that the IO end 20001 cooperates with the second end 102, and the opposite end 20002 cooperates with the first end 101. Then move the mounting component 100 to the rear end of the box body 200, orient the first end 101 of the support component 1 towards the middle of the box body 200, and then insert the support component 1 into the box body 200 to complete the plug-in fit between the support component 1 and the box body 200. It should be noted that when moving the Figure 3 The mounting component 100 in Figure 1When reaching the rear end of the box body 200, the installation component 100 needs to be rotated 180° to reverse the direction of the installation component 100, so that the first end 101 of the installation component 100 rotates backward from Figure 3 in the figure to forward in the Figure 1 orientation, and then the installation component 100 is inserted into the box body 200. After the active heat dissipation type GPU module is installed at the rear end of the chassis 1000, the first end 101 of the support component 1 is adjacent to the middle of the box body 200, and the second end 102 of the support component 1 is adjacent to the rear end of the box body 200.

[0058] When active heat dissipation type GPU modules need to be installed at both the front and rear ends of the chassis 1000, the operations in the above Example 1 and Example 2 can be performed respectively.

[0059] Among them, if the GPU module in the state where the IO end 20001 is matched with the first end 101 of the support component 1 and the opposite end 20002 is matched with the second end 102 of the support component 1 (Example 1) is called a forward GPU module, then the GPU module in the state where the IO end 20001 is matched with the second end 102 of the support component 1 and the opposite end 20002 is matched with the first end 101 of the support component 1 (Example 2) is a reverse GPU module.

[0060] The air flow direction of the active heat dissipation type GPU module itself is from the opposite end 20002 to the IO end 20001. When the active heat dissipation type GPU module is installed forward in the support component 1 and installed at the front end of the chassis 1000 through the installation component 100 of the embodiment of the present invention, the opposite end 20002 of the GPU module is adjacent to the front end of the box body 200, and the IO end 20001 is adjacent to the middle of the box body 200 (and also facing the rear end of the box body 200). The air flow direction of this GPU module is from front to back, which is consistent with the air flow direction from front to back of the chassis 1000. When the active heat dissipation type GPU module is installed reversely in the support component 1 and installed at the rear end of the chassis 1000 through the installation component 100 of the embodiment of the present invention, the opposite end 20002 of the GPU module is adjacent to the middle of the box body 200 (and also facing the front end of the box body 200), and the IO end 20001 is adjacent to the rear end of the box body 200. The air flow direction of this GPU module is from front to back, which is consistent with the air flow direction from front to back of the chassis 1000.

[0061] Thus, for the mounting component 100 according to the embodiments of the present invention, on the one hand, the support component 1 can accommodate a GPU module loaded in the forward direction or a GPU module rotated in the reverse direction, and connect the support component 1 and the GPU module through the connection component 2, which can meet the installation requirements of the forward GPU module and the reverse GPU module; on the other hand, it can be inserted into the cabinet 200 from the front end or the rear end of the cabinet 200 through the support component 1 and be plugged and matched with the cabinet 200, so as to meet the installation requirements of the GPU module at the front end or the rear end of the cabinet 200. Therefore, when an actively cooled GPU module needs to be installed at the front end and / or the rear end of the chassis 1000, through the mounting component 100 according to the embodiments of the present invention, not only can the installation and fixation of the GPU module on the cabinet 200 be realized, but also the self - contained air flow direction of the GPU module can be ensured to be consistent with the air flow direction of the cabinet 200.

[0062] Therefore, the mounting component 100 according to the embodiments of the present invention can install the GPU module in the forward direction in the cabinet 200, and can also install the GPU module in the reverse direction in the cabinet 200, and ensure that the self - contained air flow direction of the GPU module conforms to the air flow direction of the cabinet 200, thus solving the problem of the limitations in the direction and position of the actively cooled GPU module, improving the convenience of installing the actively cooled GPU module, and reducing the installation difficulty and cost of the actively cooled GPU module.

[0063] As Figure 2 , Figure 4 and Figure 5 shown, when the first end 101 of the support component 1 is mated with the IO end 20001 of the processor module 2000, that is, when the processor module 2000 is installed upright in the support component 1, the connection component 2 includes a first bracket 21 and a second bracket 22. The first bracket 21 is used to connect the IO end 20001 of the processor module 2000. The first bracket 21 has a first limiting piece portion 210, and the first limiting piece portion 210 is connected to the support component 1. The second bracket 22 is used to connect the opposite end 20002 of the processor module 2000 (that is, the end of the processor module 2000 opposite to the IO end 20001), and the second bracket 22 has a first pressing plate portion 220, and the first pressing plate portion 220 is connected to the support component 1.

[0064] As Figure 3 , Figure 6 and Figure 7As shown, when the second end 102 of the support component 1 cooperates with the IO end 20001 of the processor module 2000, that is, when the processor module 2000 is reversely installed in the support component 1, the connection component 2 includes a third bracket 23 and a fourth bracket 24. The third bracket 23 is used to connect the IO end 20001 of the processor module 2000. The third bracket 23 has a second pressing plate portion 230, and the second pressing plate portion 230 is connected to the support component 1. The fourth bracket 24 is used to connect the opposite end 20002 of the processor module 2000. The fourth bracket 24 has a second limiting piece portion 240, and the second limiting piece portion 240 is connected to the support component 1.

[0065] For one end of the support component 1 in this first direction (such as Figure 2 and Figure 3 the rear end shown), both the first bracket 21 and the fourth bracket 24 are located at this end (rear end) of the support component 1. The first limiting piece portion 210 on the first bracket 21 and the second limiting piece portion 240 on the fourth bracket 24 are both sheet-like structures. Then, the two (the first limiting piece portion 210 and the second limiting piece portion 240) can be applicable to the same connection structure, so that the support component 1 can be respectively connected to the first bracket 21 and the fourth bracket 24 through the same connection structure at this end. For the other end of the support component 1 in this first direction (such as Figure 2 and Figure 3 the front end shown), both the second bracket 22 and the third bracket 23 are located at this other end of the support component 1. The first pressing plate portion 220 on the second bracket 22 and the second pressing plate portion 230 of the third bracket 23 are both plate-like structures. Then, the two (the first pressing plate portion 220 and the second pressing plate portion 230) can be applicable to the same connection structure, so that the support component 1 can be respectively connected to the second bracket 22 and the third bracket 23 through the same connection structure at this other end. Thus, the support component 1 can adapt to the forward processor module 2000 and can also adapt to the reverse processor module 2000, ensuring that the support component 1 itself can be reused when the processor module 2000 is in the forward and reverse directions. Thereby, the structural complexity of the support component 1 is reduced, the manufacturing difficulty of the support component 1 is reduced, and then the cost of the installation component 100 in the embodiment of the present invention is reduced, and the installation cost of the processor module 2000 is reduced.

[0066] Specifically, the first bracket 21 is provided with a wire passing hole so that the connection wire extending from the IO end 20001 of the processor module 2000 can extend outwards from the first bracket 21.

[0067] In some embodiments, such as Figure 4 and Figure 5As shown, the second bracket 22 includes an adapter frame 221 and a first baffle 222, one side (rear side) of the adapter frame 221 in the first direction is used to connect with the opposite end 20002 of the processor module 2000, the first baffle 222 includes a first connecting piece 2221 and a second connecting piece 2222, the first connecting piece 2221 is connected to the other side (front side) of the adapter frame 221 in the first direction, the first connecting piece 2221 is vertically connected to the second connecting piece 2222, and the second connecting piece 2222 forms the first pressing plate portion 220 of the second bracket 22. In the related art, the processor module 2000 itself has a mounting hole, and the adapter frame 221 is installed according to the mounting hole on the opposite end 20002 of the processor module 2000. The adapter frame 221 separates the first blocking piece 222 and the processor module 2000 , thereby providing space for the processor module 2000 to extend the wires from the opposite end 20002 , making it convenient for a portion of the connection wires of the processor module 2000 to extend from the opposite end 20002 .

[0068] like Figure 4 and Figure 5 As shown, the adapter frame 221 has a threading cavity that passes through the second direction (left-right direction) and the third direction (up-down direction), so that the connecting wires extending from the opposite end 20002 of the processor module 2000 can pass through the threading cavity, and the connecting wires extending from the opposite end 20002 can pass through and turn in the space formed between the opposite end 20002 and the first baffle 222 (the space where the adapter frame 221 is located), thereby improving the convenience of wiring and winding of the processor module 2000.

[0069] Specifically, Figure 6 and Figure 7 As shown, the third bracket 23 is a second baffle, and a threading hole is provided on the second baffle so that the connection line extending from the IO terminal 20001 of the GPU module can extend outward from the third bracket 23. The fourth bracket 24 includes a first connecting plate and a second connecting plate, and the first connecting plate is installed according to the installation hole on the opposite end 20002 of the processor module 2000 to achieve the first connecting plate and the opposite end 20002 of the processor module 2000. The second connecting plate is perpendicular to the first connecting plate, and the end of the second connecting plate away from the processor module 2000 forms a second limiting piece 240. The third bracket 23 and the fourth bracket 24 have simple structures and are easy to install, and are convenient for the end of the processor module 2000 to extend the connection line.

[0070] During the installation of the processor module 2000 , the connection component 2 is first installed correspondingly to the two ends of the processor module 2000 (the IO end 20001 and the opposite end 20002 ), and then the processor module 2000 with the connection component 2 is installed into the accommodating cavity 10 of the support component 1 .

[0071] In some embodiments, such as Figure 2 and Figure 3 shown, the support assembly 1 includes a support member 11 and a tray 12. The support member 11 is provided with a receiving cavity 10 to receive the processor module 2000. The support member 11 is connected to the connection assembly 2. The support member 11 is detachably disposed on the tray 12. The tray 12 is in plug-in fit with the box body 200. One end (the rear end) of the tray 12 in this first direction is adjacent to the middle of the box body 200.

[0072] The support assembly 1 accommodates the processor module 2000 through the support member 11 and cooperates with the box body 200 through the tray 12, separately arranging the connection structure support member 11 and connection assembly 2 of the processor module 2000 and the connection structure tray 12 of the box body 200, which can provide space for the layout of each connection component, reduce the difficulty of the structural layout, and further reduce the difficulty of the installation process of the processor module 2000, which is beneficial to further reducing the cost of the installation assembly 100 of the embodiments of the present invention and further reducing the installation cost of the processor module 2000.

[0073] Specifically, referring to Figure 2 and Figure 3 , the first end 101 of the support assembly 1 is located at the rear end of the support assembly 1, and the second end 102 of the support assembly 1 is located at the front end of the support assembly 1. Correspondingly, the rear end of the tray 12 and the rear end of the support member 11 are both opposite to the first end 101 of the support assembly 1, and the front end of the tray 12 and the front end of the support member 11 are both opposite to the second end 102 of the support assembly 1.

[0074] In some embodiments, such as Figure 8 and Figure 9 shown, the support member 11 includes a carrier shell 111 and a fastening member 112. The carrier shell 111 has a receiving cavity 10. The carrier shell 111 is detachably disposed on the tray 12. One end (the rear end) of the carrier shell 111 in this first direction is provided with a fastening member 112, and the fastening member 112 is clamped with the first limiting piece portion 210 or the second limiting piece portion 240. The clamping method of the fastening member 112 is simple and easy to operate, which is beneficial to improving the convenience of the installation operation of the installation assembly 100 of the embodiments of the present invention.

[0075] The card fixing member 112 includes a connecting frame 1121, a clamping plate 1122 and a first bolt 1123. One end (left end) of the connecting frame 1121 in the second direction is rotatably provided at this end of the bearing housing 111. The other end (right end) of the connecting frame 1121 in the second direction is provided with the clamping plate 1122. A limiting groove 11221 is provided on the clamping plate 1122. The first limiting piece part 210 or the second limiting piece part 240 is fitted in the limiting groove 11221. The first bolt 1123 connects the connecting frame 1121 and this end of the bearing housing 111. The second direction is perpendicular to the first direction. The card fixing member 112 is rotatably provided at this end of the bearing housing 111 through the connecting frame 1121. During the process of installing the processor module 2000 into the bearing housing 111, the card fixing member 112 is in an open state, that is, the clamping plate 1122 is spaced apart from the bearing housing 111.

[0076] As Figure 8 and Figure 9 shown, both the clamping plate 1122 and the limiting groove 11221 extend along the second direction. Both ends of the limiting groove 11221 in the second direction are closed ends, that is, the left and right ends of the limiting groove 11221 are closed, and the limiting groove 11221 is only open at the front end.

[0077] The card fixing member 112 is rotatably provided at this end (rear end) of the bearing housing 111. After the processor module 2000 is installed into the bearing housing 111, the card fixing member 112 is rotated towards the bearing housing 111 to cooperate the card fixing member 112 with the first limiting piece part 210 or the second limiting piece part 240. This operation process separates the installation process of the processor module 2000 in the bearing housing 111 and the connection and fixing process of the card fixing member 112 and the processor module 2000, avoiding the sliding process of the first limiting piece part 210 or the second limiting piece part 240 in the limiting groove 11221 along the second direction. On the one hand, it can reduce the difficulty in the process of installing the processor module 2000 into the bearing housing 111. On the other hand, the limiting groove 11221 can be processed into a groove with closed ends at both ends in its extending direction, which is beneficial to improving the strength of the clamping plate 1122, enhancing the fixing effect of the clamping plate 1122 and the card fixing member 112 on the first limiting piece part 210 or the second limiting piece part 240, and thus ensuring the stability of the connection between the IO end 20001 of the processor module 2000 and the support member 11.

[0078] In some embodiments, the card fixing member 112 further includes a reinforcing plate (not shown in the figure), the reinforcing plate connects two adjacent card connecting plates 1122, and the reinforcing plate is located at one end of the card connecting plate 1122 away from the connecting frame 1121. The reinforcing plate is located at the right end of the card connecting plate 1122. The reinforcing plate can improve the strength of two adjacent card connecting plates 1122, avoid the card connecting plate 1122 from bending, thereby further improving the fixing effect of the card connecting plate 1122 and the card fixing member 112 on the first limiting piece portion 210 or the second limiting piece portion 240, and then further ensuring the stability of the connection between the IO end 20001 of the processor module 2000 and the support member 11.

[0079] As Figure 8 and Figure 9 shown, the support member 11 further includes a pressing fixing member 113. A pressing fixing member 113 is provided at the other end (front end) of the bearing shell 111 in the first direction, and the pressing fixing member 113 is connected to the first pressing plate portion 220 or the second pressing plate portion 230. The pressing fixing member 113 includes a pressing piece 1131 and a second bolt 1132. The pressing piece 1131 is rotatably provided at the other end of the bearing shell 111, and the second bolt 1132 is anchored on the pressing piece 1131. The bearing shell 111 includes a shell body 1111, a window frame 1112 and a mounting plate 1113. The shell body 1111 is used to accommodate the processor module 2000. The window frame 1112 is located at the other end of the bearing shell 111. One side (right side) of the window frame 1112 in the second direction is connected to the mounting plate 1113. The first pressing plate portion 220 or the second pressing plate portion 230 is located between the mounting plate 1113 and the pressing piece 1131, and the second bolt 1132 is connected to the mounting plate 1113.

[0080] Before installing the processor module 2000 with the connection assembly 2 into the accommodation cavity 10 of the shell body 1111, the pressing piece 1131 is spaced apart from the mounting plate 1113. After installing the processor module 2000 into the accommodation cavity 10 of the shell body 1111, the first pressing plate portion 220 or the second pressing plate portion 230 abuts against the mounting plate 1113, and then the pressing piece 1131 is rotated to make the pressing piece 1131 abut against the first pressing plate portion 220 or the second pressing plate portion 230, and then the second bolt 1132 is tightened with the mounting plate 1113. The structure of the pressing fixing member 113 is simple and easy to operate, which is beneficial to further improving the installation convenience of the processor module 2000.

[0081] As Figures 4 to 7 and Figure 10As shown in the figure, the GPU module is equipped with a riser card 20003, and the riser card 20003 is located on the left side of the GPU module. The connection component 2 further includes a plurality of screw posts 25 and screws. One side (left side) of the carrier shell 111 in the second direction is a bottom plate 1114, and a first through hole is provided on the bottom plate 1114. The first through hole is used to correspond to the mounting holes on the riser card 20003. The screw posts 25 are installed on the first through holes, and screws are fitted on the screw posts 25 to fixedly connect the riser card and the carrier shell 111. Before installing the GPU module into the accommodation cavity 10 of the support member 11, first install the screw posts 25 onto the first through holes, then align the mounting holes on the riser card 20003 with the screw posts 25, pass the screws through the mounting holes on the riser card 20003 and fit them into the screw posts 25, and tighten the screws to complete the fixation of the riser card 20003 and the carrier shell 111. Then, dock the GPU module connected with the connection component 2 with the riser card and install it into the carrier shell 111.

[0082] It should be noted that the positions of the riser card 20003 of the forward GPU module and the riser card 20003 of the reverse GPU module on the bottom plate 1114 are different. Correspondingly, the installation positions of the screw posts 25 are different.

[0083] The screw posts 25 have a certain size. The support member 11 (or the carrier shell 111) uses the screw posts 25 to support and connect the riser card 20003, so that there is a certain distance between the riser card 20003 and the bottom plate 1114, thereby forming a wire-passing space between the riser card 20003 and the bottom plate 1114. Subsequently, the connection wires extending from the opposite end 20002 (or the IO end 20001) of the GPU module can pass through this wire-passing space and extend to the IO end 20001 (or the opposite end 20002) of the GPU module to complete the wire winding of the GPU module.

[0084] Thus, the installation component 100 of the embodiment of the present invention provides a wire-winding space for the GPU module. Therefore, when it is necessary to install an active-cooled GPU module at the front end and / or the rear end of the chassis 1000, whether the GPU module is inserted forward or backward, when the connection wires of the GPU module need to be wound and turned, the wire winding can be completed within the installation component 100, so that the connection wires of the GPU module can be connected to the corresponding connectors on the chassis 1000, and there is no need to set a wire-winding space between the installation component 100 and the box body 200.

[0085] Further, as Figure 2 、 Figure 3 、 Figure 8 and Figure 9As shown, the accommodation cavity 10 is open at the lower side of the carrier shell 111, that is, the carrier shell 111 is not provided with a plate body at its lower side. The carrier shell 111 encloses the accommodation cavity 10 by relying on its front side, rear side, left side and upper side. After the carrier shell 111 is installed on the tray 12, the lower side of the carrier shell 111 faces the bottom wall surface of the tray 12, and the tray 12 can protect the lower side of the GPU module. Thus, the carrier shell 111 forms an opening at the lower side of the accommodation cavity 10, which not only does not affect the protection effect of the installation component 100 of the embodiment of the present invention on the processor module 2000, but also can reduce the weight of the carrier shell 111, thereby facilitating the reduction of the weights of the installation component 100, the chassis 1000 and the server 10000 of the embodiment of the present invention.

[0086] Specifically, a rectangular hole is provided at the rear end of the carrier shell 111, and the connection line of the GPU module passes through the rectangular hole.

[0087] After installing the processor module 2000 connected with the connection component 2 on the carrier shell 111 and completing the connection of the connection component 2 with the card fixing member 112 and the pressing fixing member 113 respectively, then install the carrier shell 111 (support member 11) into the tray 12, and the rear end of the carrier shell 111 is opposite to the rear end of the tray 12.

[0088] As Figure 2 、 Figure 3 、 Figure 12 and Figure 13 shown, the tray 12 is U-shaped and has a first inner side surface, a second inner side surface and a bottom wall surface. The first inner side surface is located on the left side of the tray 12, the second inner side surface is located on the right side of the tray 12, and the bottom wall surface is located on the lower side of the tray 12.

[0089] The support assembly 1 further includes a handle 16, and the handle 16 is slidably arranged on one side (left side) of the support member 11 in the second direction along the third direction. Thus, the handle 16 can slide relative to the support member 11. As Figure 11 shown, the handle 16 can be pulled out upward for easy use by personnel. When moving the support member 11, personnel can move it by holding the handle 16, thereby facilitating the further improvement of the installation convenience of the installation component 100 of the embodiment of the present invention. At the same time, it is also convenient to push the handle 16 downward to hide the handle 16, so as not to occupy the space in the chassis 1000 in the up and down direction.

[0090] In some embodiments, such as Figure 2 、 Figure 8 、 Figure 9 and Figure 12As shown, the support assembly 1 further includes a support frame 13, which is disposed at the end (rear end) of the tray 12, and the clamping member 112 further includes a protruding piece 1125, which is disposed on the clamping plate 1122, and the protruding piece 1125 abuts against the support frame 13 and is bolted to the support frame 13. Figure 2 As shown, there are two clamping plates 1122, and a protruding piece 1125 is provided on the clamping plate 1122 located on the upper side. When the support member 11 is installed in the tray 12, the protruding piece 1125 on the clamping member 112 is first aligned with the support frame 13 in the up-down direction, and then the support member 11 is moved to install the support member 11 in the tray 12, and then the protruding piece 1125 and the support frame 13 are connected by bolts. The support frame 13 abuts against the protruding piece 1125 to form an upward support for the protruding piece 1125, thereby forming an upward support for the clamping plate 1122, and the processor module 2000 is formed upward support through the clamping plate 1122, thereby further ensuring the stability of the connection between the IO terminal 20001 of the processor module 2000 and the support member 11.

[0091] Specifically, Figure 12 As shown, the support frame 13 is a rectangular frame, and the lower side of the support frame 13 is connected to the bottom wall surface of the tray 12.

[0092] In some embodiments, Figure 11 and Figure 13 As shown, the support assembly 1 further includes a guide rail 14 and a slider 15. One of the guide rail 14 and the slider 15 is provided on one side (left side) of the support member 11 in the second direction, and the other of the guide rail 14 and the slider 15 is provided on the tray 12. The slider 15 is provided with a slide groove. The guide rail 14 extends along the third direction, which is orthogonal to the first direction and the second direction, and the guide rail 14 fits in the slide groove. The fit of the guide rail 14 and the slide groove guides and positions the movement of the support member 11 in the tray 12, so that the process of installing the support member 11 to the tray 12 is easy to operate, thereby further improving the installation convenience of the installation assembly 100 of the embodiment of the present invention.

[0093] Specifically, the slider 15 is disposed on the side (left side) of the support member 11, and the slider 15 includes a first section 151, a second section 152, and a third section 153 that are sequentially connected. The first section 151 and the third section 153 both extend along the third direction. The first section 151 and the third section 153 are opposite to each other in the first direction and form a slide groove. The second section 152 is located at an end of the first section 151 that is away from the tray 12 in the third direction. The second section 152 connects the first section 151 and the third section 153. Figure 11 As shown, the slider 15 is n-shaped. The guide rail 14 is arranged on the tray 12, as shown in FIG. Figure 13As shown, the guide rail 14 is located on the first inner side of the tray 12. When the guide rail 14 abuts against the second section 152, the slider 15 can no longer slide, indicating that the support member 11 is properly installed within the tray 12.

[0094] As Figure 11 and Figure 13 shown, the support assembly 1 further includes a screw fastener 17 and a fastening screw 18. The screw fastener 17 is provided on the tray 12, and the fastening screw 18 is provided on this side (left side) of the support member 11. The fastening screw 18 is connected to the screw fastener 17. After installing the support member 11 into the tray 12, rotate the fastening screw 18 to connect the fastening screw 18 with the screw fastener 17.

[0095] Specifically, as Figure 13 shown, the screw fastener 17 is located on the bottom wall surface of the tray 12. The fastening screw 18 is a quarter-turn screw. When turning the screw, it only needs to be rotated 90°, and the operation is relatively convenient.

[0096] In some embodiments, the support assembly 1 further includes a indexing pin 19. The indexing pin 19 is provided at this end of the tray 12. The indexing pin 19 has a pin head for cooperating with the chassis 1000. Correspondingly, a second through hole is provided on the box body 200. After the support assembly 1 is installed on the box body 200, drive the indexing pin 19 to move to the second through hole of the box body 200, and then rotate the indexing pin 19 so that the pin head of the indexing pin 19 extends into the second through hole, thus completing the connection and fixation of the support assembly 1 and the box body 200.

[0097] Furthermore, a guide post is provided on the box body 200, and a guide groove 121 is provided at this end (rear end) of the tray 12. When inserting the support assembly 1 into the box body 200, gradually slide the guide post into the guide groove 121. After the guide post abuts against the bottom of the guide groove 121, stop moving the support assembly 1. The support assembly 1 is in place, and the pin head of the indexing pin 19 is opposite to the second through hole of the box body 200. Then rotate the indexing pin 19 and insert its pin head into the second through hole of the box body 200. Thus, the cooperation between the guide post and the guide groove 121 improves the convenience of the cooperation process between the mounting assembly 100 and the box body 200 in the embodiments of the present invention.

[0098] For the above Example 1, after moving the mounting assembly with the forward GPU module installed to the front side of the box body 200, orient the first end 101 of the support assembly 1 towards the front end of the box body 200, and push the mounting assembly 100 backward. After the guide post abuts against the bottom of the guide groove 121, rotate the indexing pin 19 so that the indexing pin 19 cooperates with the second through hole on the box body 200, thus completing the plug-in cooperation between the mounting assembly 100 and the front end of the box body 200.

[0099] For the second above example, after moving the mounting component with the reversely installed GPU module to the rear side of the cabinet 200, orient the first end 101 of the support component 1 towards the rear end of the cabinet 200, and push the mounting component 100 forward. After the guide post abuts against the bottom of the guide slot 121, rotate the indexing pin 19 so that the indexing pin 19 cooperates with the second through hole on the cabinet 200, thus completing the plug-in fit between the mounting component 100 and the rear end of the cabinet 200.

[0100] The server 10000 according to an embodiment of the present invention includes the mounting component 100 of any one of the embodiments or the chassis 1000 of any one of the embodiments.

[0101] Thus, the server 10000 according to an embodiment of the present invention can install an actively cooled GPU module at the front end and / or the rear end, and the installation is convenient and the installation cost is low.

[0102] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation of the present invention.

[0103] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.

[0104] In the present invention, unless otherwise clearly defined and limited, the terms "mount", "connect", "couple", "fix", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection, an electrical connection, or communicable with each other; it can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two elements or the interaction relationship between two elements, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0105] In the present invention, unless otherwise clearly specified or limited, the first feature being "on" or "under" the second feature may mean that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Further, the first feature being "above", "over" and "on top of" the second feature may mean that the first feature is directly above or obliquely above the second feature, or simply indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "under", "below" and "beneath" the second feature may mean that the first feature is directly below or obliquely below the second feature, or simply indicates that the horizontal height of the first feature is less than that of the second feature.

[0106] In the present invention, the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art may combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0107] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present invention.

Claims

1. An installation component (100), characterized in that: It includes: A support component (1), the support component (1) has a receiving cavity (10), the receiving cavity (10) is used to accommodate a processor module (2000), the support component (1) has a first end (101) and a second end (102) opposite in the first direction, the support component (1) is used to be plugged and matched with a chassis (1000) and realize the insertion of the first end (101) into the interior of the chassis (1000), and both the first end (101) of the support component (1) and the second end (102) of the support component (1) can be used to cooperate with the IO end (20001) of the processor module (2000); and A connection component (2), the connection component (2) is arranged in the receiving cavity (10) for connecting the processor module (2000) and the support component (1); The first end (101) of the support component (1) is used to cooperate with the IO end (20001) of the processor module (2000), the connection component (2) includes a first bracket (21) and a second bracket (22), the first bracket (21) is used to connect the IO end (20001) of the processor module (2000), the first bracket (21) has a first limiting piece part (210), the first limiting piece part (210) is connected to the support component (1), the second bracket (22) is used to connect the end of the processor module (2000) opposite to the IO end (20001), the second bracket (22) has a first pressing plate part (220), the first pressing plate part (220) is connected to the support component (1); or, The second end (102) of the support component (1) is used to cooperate with the IO end (20001) of the processor module (2000), the connection component (2) includes a third bracket (23) and a fourth bracket (24), the third bracket (23) is used to connect the IO end (20001) of the processor module (2000), the third bracket (23) has a second pressing plate part (230), the second pressing plate part (230) is connected to the support component (1), the fourth bracket (24) is used to connect the end of the processor module (2000) opposite to the IO end (20001), the fourth bracket (24) has a second limiting piece part (240), the second limiting piece part (240) is connected to the support component (1).

2. The mounting assembly (100) according to claim 1, wherein, The second bracket (22) includes: An adapter bracket (221), one side of the adapter bracket (221) in the first direction is used to connect to the end of the processor module (2000) opposite to the IO end (20001); and The first baffle (222), the first baffle (222) includes a first connecting piece (2221) and a second connecting piece (2222), the first connecting piece (2221) is connected to the other side of the adapter frame (221) in the first direction, the first connecting piece (2221) is vertically connected to the second connecting piece (2222), and the second connecting piece (2222) forms the first pressing plate portion (220) of the second bracket (22).

3. The mounting assembly (100) according to claim 1, characterized in that, The support assembly (1) includes a support member (11) and a tray (12), the support member (11) is provided with the accommodation cavity (10) to accommodate the processor module (2000), the support member (11) is connected to the connection assembly (2), the support member (11) is detachably arranged on the tray (12), and the tray (12) is used for plugging and matching with the chassis (1000) and realizing that one end of the tray (12) in the first direction is adjacent to the middle of the chassis (1000).

4. The mounting assembly (100) according to claim 3, characterized in that, The support member (11) includes a bearing shell (111) and a fastening member (112), the bearing shell (111) has the accommodation cavity (10), the bearing shell (111) is detachably arranged on the tray (12), one end of the bearing shell (111) in the first direction is provided with the fastening member (112), and the fastening member (112) is clamped with the first limiting piece portion (210) or the second limiting piece portion (240).

5. The mounting assembly (100) according to claim 4, characterized in that, The fastening member (112) includes a connecting frame (1121), a clamping plate (1122) and a first bolt (1123), one end of the connecting frame (1121) in the second direction is rotatably arranged at the end of the bearing shell (111), the other end of the connecting frame (1121) in the second direction is provided with the clamping plate (1122), the clamping plate (1122) is provided with a limiting groove (11221), the first limiting piece portion (210) or the second limiting piece portion (240) is fitted in the limiting groove (11221), and the first bolt (1123) connects the connecting frame (1121) and the end of the bearing shell (111), and the second direction is perpendicular to the first direction.

6. The mounting assembly (100) according to claim 5, characterized in that, The support assembly (1) further includes a support frame (13), the support frame (13) is arranged at the end of the tray (12), the fastening member (112) further includes a lug (1125), the lug (1125) is arranged on the clamping plate (1122), and the lug (1125) abuts against the support frame (13) and is bolted to the support frame (13).

7. The mounting assembly (100) according to claim 3, characterized in that, The support member (11) includes a carrier housing (111) and a pressing member (113). The carrier housing (111) has the accommodating cavity (10). The carrier housing (111) is detachably provided on the tray (12). The pressing member (113) is provided at the other end of the carrier housing (111) in the first direction. The pressing member (113) is connected to the first pressing plate portion (220) or the second pressing plate portion (230).

8. The mounting assembly (100) according to claim 7, characterized in that, The pressing member (113) includes a pressing piece (1131) and a second bolt (1132). The pressing piece (1131) is rotatably provided at the other end of the carrier housing (111). The second bolt (1132) is anchored on the pressing piece (1131). The carrier housing (111) includes a housing body (1111), a window frame (1112), and a mounting plate (1113). The housing body (1111) is used to accommodate the processor module (2000). The window frame (1112) is located at the other end of the carrier housing (111). One side of the window frame (1112) in the second direction is connected to the mounting plate (1113). The first pressing plate portion (220) or the second pressing plate portion (230) is located between the mounting plate (1113) and the pressing piece (1131). The second bolt (1132) is connected to the mounting plate (1113).

9. The mounting assembly (100) according to claim 3, characterized in that, The support assembly (1) further includes a guide rail (14) and a slider (15). One of the guide rail (14) and the slider (15) is provided on one side of the support member (11) in the second direction. The other of the guide rail (14) and the slider (15) is provided on the tray (12). The slider (15) is provided with a chute. The guide rail (14) extends along a third direction. The third direction is orthogonal to the first direction and the second direction. The guide rail (14) is engaged in the chute.

10. The mounting assembly (100) according to claim 9, characterized in that, The slider (15) is provided on the side of the support member (11). The slider (15) includes a first section (151), a second section (152), and a third section (153) connected in sequence. Both the first section (151) and the third section (153) extend along the third direction. The first section (151) and the third section (153) are opposite to each other in the first direction and form the chute. The second section (152) is located at the end of the first section (151) away from the tray (12) in the third direction. The second section (152) connects the first section (151) and the third section (153). The guide rail (14) is provided on the tray (12).

11. The mounting assembly (100) according to claim 3, characterized in that, The support assembly (1) further includes a handle (16). The handle (16) is slidably provided along the third direction on one side of the support member (11) in the second direction; and / or, The support assembly (1) further includes a screw fastener (17) and a fastening screw (18). The screw fastener (17) is provided on the tray (12). The fastening screw (18) is provided on one side of the support member (11) in the second direction. The fastening screw (18) is connected to the screw fastener (17); and / or, The support assembly (1) further includes a indexing pin (19). The indexing pin (19) is provided at the one end of the tray (12). The indexing pin (19) has a pin head, and the pin head is used to cooperate with the chassis (1000).

12. A chassis (1000), characterized in that, It includes a box body (200) and an installation assembly (100). The installation assembly (100) is the installation assembly (100) according to any one of claims 1 to 11. The support assembly (1) is inserted and cooperated with the box body (200), and the first end (101) is located inside the chassis (1000).

13. The chassis (1000) according to claim 12, characterized in that, The installation assembly (100) is located at the front end of the box body (200). The first end (101) of the support assembly (1) is used to cooperate with the IO end (20001) of the processor module (2000); and / or, the installation assembly (100) is located at the rear end of the box body (200). The second end (102) of the support assembly (1) is used to cooperate with the IO end (20001) of the processor module (2000).

14. A server (10000), characterized in that, It includes the installation assembly (100) according to any one of claims 1 to 11 or the chassis (1000) according to any one of claims 12 to 13.

Citation Information

Patent Citations

  • Processor integrated module, server and processor integrated module assembling method

    CN117891319A