
Subscribe To Our Newsletter!
Subscribe to the newsletter to stay up to date with the latest news and most useful
Newsletter
↑
Back to Top
| Product Overview |
|---|
The Dell 338-BSGE Intel Xeon Gold 5217 is a server-grade processor designed to offer strong multi-core performance suited for mid-level enterprise servers and data center applications. It fits well in environments that require consistent, reliable processing power across multiple simultaneous workloads. |
| General Information | |
|---|---|
| Brand | Intel |
| Part Number | 338-BSGE |
| Technical Information | |
|---|---|
| Processor Family | Xeon Gold |
| # Of Cores | 8 Core |
| Total Threads | 16 |
| Base Clock Speed | 3.0 GHz |
| PCIe Version | PCIe 3.0 |
| Lithography | 14 nm |
| Socket Type | LGA 3647 |
| Cache | 11 MB |
| Thermal Design Power | 105 W |
| Memory Specifications | |
|---|---|
| Max Memory Size | 1 TB |
| Memory Types | DDR4 |
| Max Memory Channels | 6 |
| Bandwidth | 128 GB/s |
| Physical Characteristics | |
|---|---|
| Weight | 5.00 |
| Condition | Refurbished |
| Miscellaneous | |
|---|---|
| Eco Friendly | Yes |
| Compliance Standards | RoHS, CE |
| Product Description |
|---|
This Intel Xeon Gold 5217 processor is designed to handle demanding server tasks efficiently. It's commonly used in enterprise-level servers and data centers where reliable performance is critical for applications like virtualization, databases, and cloud computing. Built for IT professionals and organizations needing stable, multiprocessor capabilities, this CPU offers a good balance of core count and speed for mid-range to high-end workloads. Its architecture supports heavy multitasking without sacrificing power efficiency. Key Features
This processor is typically deployed in rack or blade servers powering cloud infrastructures, virtualization hosts, and enterprise applications. It helps maintain uptime and responsiveness in demanding IT environments. In practice, it delivers steady performance for businesses that require both compute power and operational stability without overextending energy consumption. |