Artificial intelligence computing power all-in-one machine architecture
By introducing a heat dissipation and refrigeration device and a connecting plate structure into the integrated computing machine architecture, the problem of difficult temperature discharge caused by tight module distribution is solved, and efficient heat dissipation and cooling and improved computing efficiency are achieved.
Patent Information
- Application Number
- CN202422611135.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The internal modules of the traditional computing power integrated machine architecture are closely distributed, making it difficult to discharge the temperature, affecting the normal operation of the modules and components, and reducing the computing efficiency.
An artificial intelligence computing power integrated machine architecture is designed, using protective cover, server box, processing unit module, computing unit module and heat dissipation and refrigeration device. By setting up a connecting board and a rectangular bin inside the server box, combining fans and refrigeration boards, effective heat dissipation and cooling is achieved.
It improves the flexibility and computing efficiency of the computing power unit module, reduces the internal temperature, and improves the working performance of the overall computing power integrated machine architecture.
Smart Images

Figure CN223260133U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of server technology, specifically an artificial intelligence computing power all-in-one machine architecture. Background Art
[0002] The AI computing all-in-one architecture is a comprehensive system designed specifically to meet the needs of modern AI applications. It integrates computing, storage, and networking capabilities to provide efficient computing support. With the development of deep learning and big data technologies, the demand for AI applications in areas such as image recognition and natural language processing has increased dramatically. Traditional computing architectures are unable to meet their high-performance requirements. This architecture usually combines multiple specialized hardware, such as GPUs, TPUs, and FPGAs, and utilizes these units with strong parallel computing capabilities to significantly improve the efficiency of model training and inference.
[0003] However, the various computing modules within the traditional all-in-one computing architecture are often closely distributed and difficult to replace, and the structural positions between different modules are relatively complex, resulting in the internal temperature of the entire all-in-one computing architecture server being difficult to discharge. As a result, the internal temperature seriously affects the normal operation of various modules, components, wires, etc., and seriously affects computing efficiency. For this reason, we propose an artificial intelligence all-in-one computing architecture. Utility Model Content
[0004] (1) Technical problems solved
[0005] In response to the deficiencies of the existing technology, the present invention provides an artificial intelligence computing power all-in-one machine architecture to solve the above-mentioned problems.
[0006] (2) Technical solution
[0007] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: an artificial intelligence computing power integrated machine architecture, including a protective cover, a server box, a processing unit module, a computing power unit module and a heat dissipation and cooling device, the server box is provided with connection holes at four corners of the end face corresponding to the end connected to the protective cover, and the protective cover is provided with a connection hole that is connected to the connection hole one through an adapter screw at the end corresponding to the end connected to the server box, the interior of the server box is provided with a processing unit module and a computing power unit module distributed in parallel, and the server box is provided with two axially symmetrically distributed connecting plates at the position corresponding to the connection of the computing power unit module, the computing power unit module is provided between the two connecting plates, and the computing power unit module is provided with heat dissipation and cooling devices at both ends of the computing power unit module corresponding to the processing unit module and the end away from the protective cover.
[0008] Preferably, the end of the server box corresponding to the connection protective cover is a rectangular opening structure, and the two internal connecting plates of the server box are provided with partitions parallel to the connecting plates at one end corresponding to the processing unit module. The partitions and the adjacent connecting plates form a rectangular warehouse, and the two internal connecting plates of the server box are provided with a rectangular warehouse at one end away from the processing unit module and the small end face of the server box. The positions of the two rectangular warehouses are axially symmetrical, and the rectangular warehouses are connected to the corresponding heat dissipation and refrigeration devices.
[0009] Preferably, the connecting plate body is a vertical plate surface, and four fixing grooves distributed evenly are provided at one end of the connecting plate corresponding to the protective cover, and two connecting holes 2 distributed axially symmetrically are provided inside the fixing groove, and a group of ventilation grooves distributed evenly are provided on the main plate surface of the connecting plate.
[0010] Preferably, a connection port corresponding to the fixing groove is provided at one end facing away from the protective cover between the two connection plates, and a group of metal connectors are provided inside the connection port.
[0011] Preferably, the heat dissipation and refrigeration device consists of three parts, namely fan 1, fan 2 and a cooling plate. Fan 1 and fan 2 are respectively connected to two axially symmetrical rectangular bins composed of partitions and connecting plates inside the server box, and the cooling plate is correspondingly connected to the middle of one end of the two connecting plates away from the protective cover and contacts with one side of the fan.
[0012] Preferably, the fan 1 and the fan 2 are of the same model structure, and the wind direction of the fan 1 and the fan 2 is from the processing unit module to the computing power unit module.
[0013] Preferably, a processing unit module and a circuit board are provided at one end of the server box away from the computing power unit module, and the processing unit module is fixedly welded on the circuit board, and the end of the circuit board away from the processing unit module is connected to the end of the server box away from the protective cover.
[0014] Preferably, a group of ventilation holes are provided on both end faces of the outside of the server box that are axially opposite to the processing unit module and the computing power unit module, and a data interface is provided on the end of the outside of the server box corresponding to the processing unit module.
[0015] (3) Beneficial effects
[0016] Compared with the existing technology, this utility model provides an artificial intelligence computing power all-in-one machine architecture with the following beneficial effects:
[0017] 1. The AI computing power all-in-one machine architecture consists of multiple computing power unit modules, which can be freely combined and matched according to usage requirements, greatly improving its flexible applicability. Calculations can be performed in the best combination to improve computing efficiency.
[0018] 2. The AI computing power all-in-one architecture is equipped with a heat dissipation and refrigeration device inside, which can increase the internal air circulation rate, remove the heat dissipated by various modules and heat-generating devices inside the architecture, and cooperate with the cooling plate at the bottom of the computing power module to greatly reduce the internal temperature and improve the computing power and work efficiency of the architecture. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the structure of the artificial intelligence computing all-in-one machine architecture of the utility model;
[0020] Figure 2 This is a front view and cross-sectional diagram of the architecture of the artificial intelligence computing all-in-one machine of the present invention;
[0021] Figure 3 This is a schematic cross-sectional view of the right side of the artificial intelligence computing all-in-one machine architecture of the present invention;
[0022] Figure 4 This is a schematic diagram of the server box of the utility model;
[0023] Figure 5 This is a schematic diagram of the computing power unit module of the present utility model.
[0024] In the figure: 1. Protective cover; 2. Server box; 3. Processing unit module; 4. Fan 1; 5. Computing power unit module; 6. Fan 2; 7. Refrigeration plate; 8. Circuit board; 9. Data interface; 10. Ventilation hole; 11. Connection hole 1; 12. Connection plate; 13. Ventilation slot; 14. Fixing slot; 15. Connection hole 2; 16. Connection port; 17. Metal connector; 18. Partition; 19. Connection block; 20. Connection hole 3; 21. Mating head; 22. Mating hole. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0026] See also Figure 1-5, an artificial intelligence computing power all-in-one machine architecture, including a protective cover 1, a server box 2, a processing unit module 3, a computing power unit module 5 and a heat dissipation and refrigeration device, the server box 2 corresponding to the end surface of the protective cover 1 is provided with connection holes 11 at the four corners, and the protective cover 1 corresponding to the end connected to the server box 2 is provided with a connection hole that is connected to the connection hole 11 through an adapter screw, the interior of the server box 2 is provided with a processing unit module 3 and a computing power unit module 5 distributed in parallel, and the server box 2 is provided with two axially symmetrically distributed connection plates 12 at the position corresponding to the connection of the computing power unit module 5, the computing power unit module 5 is provided between the two connection plates 12, and the computing power unit module 5 is provided with a heat dissipation and refrigeration device at both ends of the computing unit module 3 and the end away from the protective cover 1.
[0027] Furthermore, the end of the server box 2 corresponding to the connection protective cover 1 is a rectangular opening structure, and the two connecting plates 12 inside the server box 2 are provided with a partition 18 parallel to the connecting plate 12 at one end corresponding to the processing unit module 3. The partition 18 and the adjacent connecting plate 12 form a rectangular warehouse, and the two connecting plates 12 inside the server box 2 are provided with a rectangular warehouse at one end away from the processing unit module 3 and the small end face of the server box 2. The positions of the two rectangular warehouses are axially symmetrical, and the rectangular warehouses correspond to the connected heat dissipation and refrigeration devices. The two rectangular chambers inside the server box 2 can provide a fixed and effective working space for the components of the heat dissipation and refrigeration device. The unique structural position can effectively discharge the temperature inside the server and perform efficient cooling.
[0028] Furthermore, the main body of the connecting plate 12 is a vertical plate surface. The connecting plate 12 is provided with four evenly distributed fixing grooves 14 at one end corresponding to the protective cover 1, and two axially symmetrically distributed connecting holes 15 are provided inside the fixing groove 14. A group of evenly distributed ventilation grooves 13 are provided on the main plate surface of the connecting plate 12. The connecting plate 12 mainly serves to effectively fix the computing unit module 5, and the ventilation grooves 13 cooperate with the heat dissipation and refrigeration device to effectively reduce the temperature inside the server.
[0029] Furthermore, a connection port 16 corresponding to the fixing groove 14 is provided at one end of the two connection plates 12 facing away from the protective cover 1 , and a group of metal connectors 17 are provided inside the connection port 16 .
[0030] Furthermore, the heat dissipation and refrigeration device consists of three parts, namely fan 1 4, fan 2 6 and a cooling plate 7. Fan 1 4 and fan 2 6 are respectively connected to two axially symmetrical rectangular bins composed of the internal partition 18 and the connecting plate 12 of the server box 2, and the cooling plate 7 is correspondingly connected to the middle of the end of the two connecting plates 12 away from the protective cover 1 and is in surface contact with the computing power unit module 5. The cooling plate 7 can effectively perform surface contact cooling on the computing power unit module 5, thereby improving the operating efficiency of the computing power unit module 5.
[0031] Furthermore, fan 1 4 and fan 2 6 are of the same model structure, and the wind direction of fan 1 4 and fan 2 6 is from the processing unit module 3 to the computing power unit module 5.
[0032] Furthermore, a processing unit module 3 and a circuit board 8 are provided at the end of the server box 2 facing away from the computing power unit module 5, and the processing unit module 3 is fixedly welded on the circuit board 8, and the end of the circuit board 8 facing away from the processing unit module 3 is connected to the end of the server box 2 facing away from the protective cover 1.
[0033] Furthermore, a group of ventilation holes 10 are provided on the end faces of the outside of the server box 2 that are axially opposite to the processing unit module 3 and the computing power unit module 5, and a data interface 9 is provided on the end of the outside of the server box 2 corresponding to the processing unit module 3. The data interface 9 is designed with a universal interface and API, supporting a variety of mainstream deep learning frameworks (such as TensorFlow, PyTorch, etc.), which is convenient for developers to carry out secondary development and model deployment.
[0034] Working principle: Install the artificial intelligence computing power all-in-one architecture correctly according to the diagram. A processing unit module 3 is provided inside the server box 2 to work together with the computing power unit module 5, and the computing power unit module 5 can be freely assembled. The position of the computing power unit module 5 inside the server box 2 can be freely selected according to the user's needs, and the computing power unit module 5 is arranged equidistantly as a whole, while the processing unit module 3 and the computing power unit module 5 are adjacent to each other. A heat dissipation and cooling device is provided between the processing unit module 3 and the computing power unit module 5, which can greatly reduce the temperature inside the server, thereby improving the computing efficiency inside the server.
[0035] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An artificial intelligence computing power integrated machine architecture, comprising a protective cover (1), a server box (2), a processing unit module (3), a computing power unit module (5) and a heat dissipation and refrigeration device, characterized in that: The server box (2) is provided with connection holes (11) at four corners of the end surface corresponding to the end connected to the protective cover (1), and the protective cover (1) is provided with a connection hole connected to the connection hole (11) through an adapter screw at the end corresponding to the end connected to the server box (2). The server box (2) is provided with a processing unit module (3) and a computing unit module (5) arranged in parallel, and the server box (2) is provided with two axially symmetrically distributed connection plates (12) at the position corresponding to the connection to the computing unit module (5). The computing unit module (5) is provided between the two connection plates (12), and the computing unit module (5) is provided with a heat dissipation and cooling device at both ends corresponding to the processing unit module (3) and at the end facing away from the protective cover (1).
2. The artificial intelligence computing power all-in-one machine architecture according to claim 1, characterized in that: The server box (2) has a rectangular opening structure at one end corresponding to the protective cover (1). Two connecting plates (12) inside the server box (2) are provided with a partition (18) parallel to the connecting plate (12) at one end corresponding to the processing unit module (3). The partition (18) and the adjacent connecting plate (12) form a rectangular bin. Two connecting plates (12) inside the server box (2) are provided with a rectangular bin at one end facing away from the processing unit module (3) and the small end face of the server box (2). The two rectangular bins are axially symmetrically distributed, and the rectangular bins are connected to the corresponding heat dissipation and refrigeration device.
3. The artificial intelligence computing power all-in-one architecture according to claim 2, characterized in that: The main body of the connecting plate (12) is a vertical plate surface. One end of the connecting plate (12) corresponding to the protective cover (1) is provided with four fixing grooves (14) distributed at equal intervals, and two connecting holes (15) distributed in an axisymmetric manner are opened inside the fixing groove (14). A group of ventilation grooves (13) distributed at equal intervals are opened on the main plate surface of the connecting plate (12).
4. The artificial intelligence computing power all-in-one architecture according to claim 3, characterized in that: A connection port (16) corresponding to the fixing groove (14) is provided at one end facing away from the protective cover (1) between the two connection plates (12), and a group of metal connectors (17) are provided inside the connection port (16).
5. The artificial intelligence computing power all-in-one machine architecture according to claim 1, characterized in that: The heat dissipation and refrigeration device is composed of three parts, namely fan 1 (4), fan 2 (6) and a cooling plate (7). Fan 1 (4) and fan 2 (6) are respectively connected to two axially symmetrically distributed rectangular bins composed of an internal partition (18) and a connecting plate (12) of the server box (2), and the cooling plate (7) is correspondingly connected to the middle of one end of the two connecting plates (12) away from the protective cover (1) and is in surface contact with the computing unit module (5).
6. The artificial intelligence computing power all-in-one architecture according to claim 5, characterized in that: The fan 1 (4) and the fan 2 (6) are of the same type of structure, and the wind direction of the fan 1 (4) and the fan 2 (6) is from the processing unit module (3) to the computing unit module (5).
7. The artificial intelligence computing power all-in-one architecture according to claim 2, characterized in that: A processing unit module (3) and a circuit board (8) are provided at one end of the server box (2) facing away from the computing unit module (5), and the processing unit module (3) is fixedly welded on the circuit board (8), and the end of the circuit board (8) facing away from the processing unit module (3) is connected to the end of the server box (2) facing away from the protective cover (1).
8. The artificial intelligence computing power all-in-one architecture according to claim 7, characterized in that: A group of ventilation holes (10) are provided on both end faces of the exterior of the server box (2) that are axially opposite to the processing unit module (3) and the computing power unit module (5), and a data interface (9) is provided on one end of the exterior of the server box (2) that corresponds to the processing unit module (3).