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Dell FC630 PowerEdge Node Chassis Configure To Order
- Manufacturer: Dell
- Product Line: PowerEdge
- Type: Node Chassis
- Purpose: Housing compute nodes
- Scalable solution
- Configure To Order (CTO)
- Designed for dense computing environments
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
Purchase orders accepted
For government, enterprise, data center, and small business customers.
Bulk Purchase Inquiry
Volume pricing and availability
Product Overview
The Dell FC630 is a PowerEdge Node Chassis, designed as a configurable unit for building scalable server solutions. It serves as the foundational hardware for housing compute nodes within a larger infrastructure.
Technical Information
| Part Number | FC630 |
| Product Line | Dell PowerEdge |
| Type | Node Chassis |
Additional Specifications
| Configuration | Configure To Order (CTO) |
| Form Factor | Rackmount (specific U size depends on configuration) |
Product Description
The Dell FC630 is a specialized node chassis designed as part of Dell's PowerEdge server portfolio, specifically for building highly scalable and dense computing environments. Unlike a traditional standalone server, the FC630 acts as a modular enclosure that houses multiple independent compute nodes. This architecture is ideal for high-performance computing (HPC), large-scale virtualization, and cloud deployments where maximizing compute density within a rack is crucial. As a 'Configure To Order' (CTO) product, the FC630 chassis itself is the base unit, and customers can select specific configurations of processors, memory, storage, and networking for the individual compute nodes that will be installed within it. This flexibility allows organizations to tailor their infrastructure precisely to their workload requirements, optimizing for performance, capacity, or cost. The design of the FC630 emphasizes efficient use of rack space and power. By consolidating multiple compute nodes into a single chassis, it reduces the overall physical footprint and simplifies management compared to deploying numerous individual servers. This makes it a cost-effective and operationally efficient solution for data centers requiring significant processing power.

