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Supermicro SBI-6119P-C3N 42U Rackmount 6119 2nd Gen Intel Xeon Scalable Processors 3TB DDR4 server
- 42U Rackmount System Node
- Supports 2nd Gen Intel Xeon Scalable Processors
- Up to 3TB DDR4 ECC RDIMM/LRDIMM Memory
- High-speed interconnects for cluster computing
- Designed for dense compute environments
- Ideal for HPC, AI, and large-scale data processing
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Product Overview
The Supermicro SBI-6119P-C3N is a 42U Rackmount server node designed for high-density computing. It supports 2nd Gen Intel Xeon Scalable processors and offers substantial memory capacity, typically up to 3TB of DDR4. This node is part of a larger system, providing powerful compute resources for demanding applications.
Technical Information
| Form Factor | 42U Rackmount System Node |
| Chassis Model | SBI-6119P-C3N |
| Processor Support | 2nd Gen Intel Xeon Scalable |
Additional Specifications
| Max Memory | 3TB DDR4 |
| Memory Type | DDR4 ECC RDIMM/LRDIMM |
Product Description
The Supermicro SBI-6119P-C3N is a high-performance server node designed for deployment within a 42U rackmount system, typically part of a larger Supermicro MicroBlade or similar modular infrastructure. It is engineered to house dual 2nd Generation Intel Xeon Scalable processors, delivering substantial computational power for demanding workloads. This node is optimized for high-density computing environments where maximizing processing power per rack unit is essential. Its architecture is built for reliability, scalability, and efficient performance. This server node supports a significant amount of DDR4 memory, often up to 3TB of ECC RDIMM or LRDIMM. This extensive memory capacity makes it highly suitable for memory-intensive applications such as large-scale simulations, complex data analytics, in-memory databases, and high-performance computing (HPC) clusters. The SBI-6119P-C3N is designed to integrate seamlessly with other nodes and infrastructure components, facilitating the creation of powerful, scalable compute solutions. The SBI-6119P-C3N is an ideal choice for organizations requiring massive parallel processing capabilities. Its dense compute design, combined with powerful processors and ample memory, makes it a cornerstone for advanced computing tasks in fields like scientific research, artificial intelligence, and big data processing. Supermicro's focus on modularity and performance ensures that this node contributes effectively to building robust and high-performing computing clusters.
