Architecture method for four nodes of 1U high-density server
A high-density server and sub-star technology, applied in the field of server architecture methods, can solve problems such as frequent application of network technology, and achieve the effects of increased deployment density, increased density, and reduced power consumption
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Embodiment 1
[0020] A 1U high-density server four-star architecture method, which is characterized by the following specific steps:
[0021] ① 4 node main boards and power conversion version PDB form a computing node system;
[0022] ②The power conversion version (PAB), power conversion version (PDB) and power modules form the power supply system of the whole machine;
[0023] ③Built-in 2 2.5 hard disks are the storage system of the whole machine;
[0024] ④Two cooling fans per node and necessary heat sinks and air ducts on the computing node form the heat dissipation system of the whole machine.
Embodiment 2
[0026] A 1U high-density server four-star architecture method, which is characterized by the following specific steps:
[0027] ① 4 node main boards and power conversion version PDB form a computing node system;
[0028] ②The power adapter board (PAB), power adapter board (PDB) and power modules form the power supply system of the whole machine. The power adapter board is in the center of the chassis and supplies power to 4 system modules;
[0029] ③Built-in 2 2.5 hard disks are the storage system of the whole machine;
[0030] ④Two cooling fans per node and necessary heat sinks and air ducts on the computing node form the heat dissipation system of the whole machine.
Embodiment 3
[0032] A 1U high-density server four-star architecture method, which is characterized by the following specific steps:
[0033] ① 4 node main boards and power conversion version PDB form a computing node system;
[0034] ②The power transfer version (PAB), power transfer version (PDB) and power modules form the power supply system of the whole machine. The power transfer version is located in the center of the chassis and supplies power to 4 system modules. Each system module is powered on and off independently. The influence of other system modules;
[0035] ③Built-in 2 2.5 hard disks are the storage system of the whole machine;
[0036] ④Two cooling fans per node and necessary heat sinks and air ducts on the computing node form the heat dissipation system of the whole machine.
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