Array server cluster connection and installation structure of multiple processor units

By setting up a motherboard with electrical slots in the chassis and a U-shaped connection frame with sockets, the rapid installation of the multi-processor daughterboard is achieved, which solves the problem of unreasonable space layout when installing the multi-processor daughterboard in the prior art. It is suitable for space-constrained application environments, meets the needs of artificial intelligence for computing power and control, and improves the stability and reliability of the system.

CN223040379UActive Publication Date: 2025-06-27SHENYANG HUAYI HETONG SOFTWARE CO LTD +1
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Patent Information

Application Number
CN202422226528.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-06-27
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing multi-processor daughterboards are unreasonable when installed and take up a large space, which cannot meet the needs of artificial intelligence for computing power and control, especially inconvenient use in applications where space is limited.

Method used

A connection and installation structure between a multi-processor daughter board and a motherboard cluster is designed. By setting up a motherboard with an electrical slot in the chassis, and a U-shaped connection frame with a socket is installed at the opening on the right side of the chassis, the multi-processor daughter board is quickly installed, with a simple overall structure and small space.

Benefits of technology

It realizes rapid installation between the motherboard and the multi-processor daughterboard. The overall installation structure is simple and takes up a small space. It is suitable for application environments with limited space. It can effectively meet the needs of artificial intelligence for computing power and control, and improves the computing unit density of the array server and the stability and reliability of the system.

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Abstract

An array server cluster connecting and mounting structure of a multiprocessor unit belongs to the technical field of chip daughter board mounting and comprises a case with an opening in the right side, a U-shaped connecting frame with a plurality of sockets is fixedly mounted at the opening in the right side of the case, brackets are detachably mounted in the sockets, multiprocessor daughter boards are fixedly mounted in the brackets, and the multiprocessor daughter boards are fixedly mounted in the U-shaped connecting frame. A mother board with a plurality of electrical slots is fixedly installed in the case, the multiprocessor daughter boards are installed in the corresponding electrical slots in a sliding and inserting mode towards the left side through sockets, the multiprocessor daughter boards are installed in a cluster mode, the arithmetic unit density of the array server is greatly improved, and the stability and the reliability of a system are remarkably improved. And massive computing power can be provided for artificial intelligence application.
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Description

Technical Field

[0001] The utility model belongs to the technical field of chip daughter board installation, and particularly relates to a connection and installation structure for an array server cluster of multi-processor units. Background Technique

[0002] In the current rapidly developing electronic information industry, the optimization of the connection and installation structure between multi-processor daughter boards and motherboard clusters is of crucial importance.

[0003] With the increasing complexity of electronic systems, the limitations of traditional connection and installation methods have gradually emerged. In terms of spatial layout, due to unreasonable design, the connection between multiple daughter boards and the motherboard often occupies too much space. This not only restricts the miniaturization trend of equipment but also leads to an increase in the overall volume and weight of the equipment, making it unfavorable for use in applications with limited space, such as compact data center server cabinets, and unable to meet the existing requirements for computing power and control in artificial intelligence.

[0004] To solve the above problems, a connection and installation structure for an array server cluster of multi-processor units is specifically proposed. Content of the Utility Model

[0005] Aiming at the problems in the prior art that when installing multi-processor daughter boards, the spatial layout is unreasonable, the occupied space is large, it is inconvenient to be applied in scenarios with limited space during use, and it cannot meet the existing requirements for computing power and control in artificial intelligence, the utility model relates to a connection and installation structure between a multi-processor daughter board and a motherboard cluster. This structure realizes pre-fixing a multi-processor daughter board in a bracket by arranging a motherboard with electrical slots in the chassis and installing a U-shaped connection frame with sockets at the right opening of the chassis. Subsequently, the bracket is inserted into the electrical slots of the chassis through the sockets, and the bracket is fixedly connected to the L-shaped limiting plate on the left side of the U-shaped connection frame by bolts, thereby realizing the rapid installation between the motherboard and the multi-processor daughter board. The overall installation structure is simple, occupies little space, is suitable for application environments with limited space, facilitates the application requirements of the miniaturization trend, can effectively meet the current requirements for computing power and control in artificial intelligence, and effectively solves the problems in the prior art that when installing multi-processor daughter boards, the spatial layout is unreasonable, the occupied space is large, it is inconvenient to be applied in scenarios with limited space, and it cannot meet the requirements for computing power and control in artificial intelligence. The specific technical solution is as follows:

[0006] Array server cluster connection and installation structure of multi-processor units, including a chassis with an opening on the right side. A cooling fan is installed on the left side of the chassis. A U-shaped connection frame with multiple sockets is fixedly installed at the opening on the right side of the chassis. Brackets are detachably installed in the sockets. Multi-processor daughter boards are fixedly installed in the brackets. A motherboard with multiple electrical slots is fixedly installed in the chassis. The multi-processor daughter boards are slidably inserted and installed into the corresponding electrical slots through the sockets towards the left side.

[0007] In the above technical solution, a plurality of L-shaped limit frames are fixedly installed on the left side of the U-shaped connection frame. The right surface of the L-shaped limit frame is attached to the left surface of the corresponding bracket, and a bolt is screwed and installed between the bracket and the corresponding L-shaped limit frame.

[0008] In the above technical solution, a plurality of positioning chutes are opened on one side of the L-shaped limit frame close to the bracket. The bracket is slidably installed between two corresponding front and rear positioning chutes.

[0009] In the above technical solution, an installation frame is fixedly installed in the chassis. The motherboard is fixedly installed on the right side of the installation frame;

[0010] In the above technical solution, a plurality of through holes are penetrated and opened on the right surface of the motherboard. A plurality of heat dissipation holes are penetrated and opened on the right side of each bracket.

[0011] In the above technical solution, a through opening is penetrated and opened on the lower surface of the bracket.

[0012] The array server cluster connection and installation structure of the multi-processor units of the present invention, compared with the prior art, has the beneficial effects as follows:

[0013] By setting a motherboard with electrical slots in the chassis and installing a U-shaped connection frame with sockets at the opening on the right side of the chassis, the present invention realizes pre-fixing the multi-processor daughter boards in the brackets. Subsequently, the brackets are inserted into the electrical slots of the chassis through the sockets, and the brackets are fixedly connected to the L-shaped limit plates on the left side of the U-shaped connection frame through bolts, thereby realizing the rapid installation between the motherboard and the multi-processor daughter boards. The overall installation structure is simple, occupies little space, is suitable for application environments with limited space, facilitates the application requirements of the miniaturization trend, greatly improves the computing unit density of the array server, significantly improves the stability and reliability of the system, and can provide a large amount of computing power for artificial intelligence applications. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0015] Figure 2 It is a schematic cross-sectional structure diagram of the present invention.

[0016] Figure 3 This is a schematic diagram of the explosion structure of the present utility model.

[0017] Figure 4 This is a schematic diagram of the U-shaped connection frame structure of the present utility model.

[0018] Figure 5 This is a schematic diagram of the bracket structure of the present utility model.

[0019] Figures 1-5 Among them: 1. Chassis; 11. Cooling fan; 2. U-shaped connection frame; 21. Socket; 22. L-shaped limiting frame; 221. Positioning chute; 3. Bracket; 31. Through hole; 32. Heat dissipation hole; 4. Multi-processor daughter board; 5. Mother board; 51. Electrical slot; 52. Through opening; 6. Installation frame. Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0021] In the embodiments, the front, rear, left, right, upper, and lower are described with Figure 1 as the reference plane. Please refer to Figures 1-5 , the present utility model provides a technical solution:

[0022] An array server cluster connection and installation structure of a multi-processor unit, including a chassis 1 with an opening on the right side, a cooling fan 11 is installed on the left side of the chassis 1, a U-shaped connection frame 2 with a plurality of sockets 21 is fixedly installed at the opening on the right side of the chassis 1, a bracket 3 is detachably installed in each socket 21, a multi-processor daughter board 4 is fixedly installed in each bracket 3, a mother board 5 with a plurality of electrical slots 51 is fixedly installed in the chassis 1, and the multi-processor daughter board 4 is slidably inserted into the corresponding electrical slot 51 through the socket 21 to the left;

[0023] It should be noted that, as shown in Figures 2-4 , a plurality of L-shaped limiting frames 22 are fixedly installed on the left side of the U-shaped connection frame 2. When the bracket 3 is installed in the socket 21 of the U-shaped connection frame 2, the right surface of the L-shaped limiting frame 22 is attached to the left surface of the corresponding bracket 3, and a bolt is screwed between the bracket 3 and the corresponding L-shaped limiting frame 22.

[0024] During the installation process, first, the U-shaped connection frame 2 needs to be fixed at the opening on the right side of the chassis 1. Then, the multi-processor daughter board 4 is fixed in the bracket 3 through bolts. Subsequently, the bracket 3 is inserted into the socket 21 of the U-shaped connection frame 2, and it is ensured that the left surface of the bracket 3 is closely attached to the right surface of the L-shaped limit frame 22. After the bracket 3 is closely attached to the L-shaped limit frame 22, the left end of the multi-processor daughter board 4 is inserted into the electrical slot 51 of the motherboard 5 to complete the installation. Finally, bolts are installed between the bracket 3 and the corresponding L-shaped limit frame 22 to fix the positions of the bracket 3 and the multi-processor daughter board 4, prevent them from easily detaching from the electrical slot 51, and ensure the stability after installation. Compared with the prior art, this cluster connection and installation structure has the characteristics of a simple overall installation structure and small occupied space. It is suitable for application environments with limited space, is convenient to meet the application requirements of the miniaturization trend, and can effectively meet the current artificial intelligence's requirements for computing power and control.

[0025] In addition, to facilitate the quick insertion of the multi-processor daughter board 4 into the corresponding electrical slot 51, as Figure 4 shown, a plurality of positioning chutes 221 are provided on the side of the L-shaped limit frame 22 close to the bracket 3. The bracket 3 is slidably installed between two corresponding positioning chutes 221 front and back. When installing the bracket 3, the positioning chutes 221 can be used for auxiliary positioning to ensure that the bracket 3 is horizontally installed, so as to ensure that the multi-processor daughter board 4 can be accurately inserted into the corresponding electrical slot 51.

[0026] Specifically, an installation frame 6 is fixedly installed in the chassis 1, and the motherboard 5 is fixedly installed on the right side of the installation frame 6. The motherboard 5 is fixedly installed in the chassis 1 through the installation frame 6.

[0027] In addition, to facilitate the heat dissipation of the motherboard 5 and the multi-processor daughter board 4, as Figure 3 and Figure 5 shown, a plurality of through holes 52 are formed through the right surface of the motherboard 5, and a plurality of heat dissipation holes 32 are formed through the right side of the bracket 3. After the heat dissipation fan 11 on the left side of the chassis 1 is turned on, the hot air in the chassis 1 can be discharged from the heat dissipation holes 32, so as to facilitate the heat dissipation of the motherboard 5 and the multi-processor daughter board 4.

[0028] Finally, to further improve the heat dissipation effect of the multi-processor daughter board 4, as Figure 5 shown, a through hole 31 is formed through the lower surface of the bracket 3. When manufacturing the bracket 3, while not affecting the installation of the multi-processor daughter board 4, the manufacturing raw materials can be reduced and the manufacturing cost can be lowered.

Claims

1. An array server cluster connection installation structure of a multi-processor unit, comprising a chassis (1) with an opening on the right side, a cooling fan (11) installed on the left side of the chassis (1), characterized in that: A U-shaped connection frame (2) with a plurality of sockets (21) is fixedly installed at the right opening of the chassis (1); brackets (3) are detachably installed in the sockets (21); a multi-processor daughter board (4) is fixedly installed in the brackets (3); a motherboard (5) with a plurality of electrical slots (51) is fixedly installed in the chassis (1); the multi-processor daughter boards (4) are installed in corresponding electrical slots (51) by sliding to the left through the sockets (21).

2. The array server cluster connection installation structure of multiple processor units according to claim 1, characterized in that: A plurality of L-shaped limit frames (22) are fixedly installed on the left side of the U-shaped connection frame (2); the right surface of the L-shaped limit frame (22) is fitted with the left surface of the corresponding bracket (3); and bolts are threadedly installed between the bracket (3) and the corresponding L-shaped limit frame (22).

3. The array server cluster connection installation structure of multiple processor units according to claim 2, characterized in that: A plurality of positioning slots (221) are provided on one side of the L-shaped limiting frame (22) close to the bracket (3), and the bracket (3) is slidably mounted between two corresponding positioning slots (221) at the front and rear ends.

4. The array server cluster connection installation structure of multiple processor units according to claim 1, characterized in that: A mounting frame (6) is fixedly installed in the chassis (1), and the motherboard (5) is fixedly installed on the right side of the mounting frame (6).

5. The array server cluster connection installation structure of multiple processor units according to claim 4, characterized in that: The right surface of the motherboard (5) is penetrated with a plurality of openings (52), and the right side of the bracket (3) is penetrated with a plurality of heat dissipation holes (32).

6. The array server cluster connection installation structure of multiple processor units according to claim 5, characterized in that: A through opening (31) is formed through the lower surface of the bracket (3).