
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 AMD EPYC 7662 is a 64-core server processor built to deliver reliable compute power for demanding applications. It fits into enterprise data centers and cloud servers where large-scale parallel processing is needed. This CPU balances core count, cache size, and modern I/O standards to provide a solid foundation for multi-threaded and high-throughput tasks. |
| General Information | |
|---|---|
| Brand | AMD |
| Part Number | 100-000000137 |
| Technical Information | |
|---|---|
| # Of Cores | 64 Core |
| Total Threads | 128 |
| Max Turbo Frequency | 3.3 GHz |
| Base Clock Speed | 2.0 GHz |
| Socket Type | SP3 |
| Cache | 256 MB |
| Thermal Design Power | 225 W |
| Memory Specifications | |
|---|---|
| Max Memory Size | 4 TB |
| Memory Types | DDR4 (ECC) |
| Max Memory Channels | 8 |
| Bandwidth | 204.8 GB/s |
| Physical Characteristics | |
|---|---|
| Weight | 5.00 |
| Condition | Refurbished |
| Product Description |
|---|
The AMD EPYC 7662 is a high-performance server processor designed to handle demanding workloads. It is built for data centers and enterprise environments where processing power and scalability are essential. This CPU is often found in servers running virtualization, large databases, and HPC (high-performance computing) applications. System architects and IT professionals benefit from its multi-core design that efficiently manages multiple tasks simultaneously. Its compatibility with PCIe 4.0 interfaces allows faster communication with GPUs and storage devices, making it a versatile choice for modern server setups. Key Features
This processor is typically deployed in enterprise servers, cloud infrastructures, and data analytics platforms. Its robust core count and advanced features make it well-suited to handle complex workloads without bottlenecks. Professionals rely on it for reliable performance in multi-threaded environments where consistent throughput is critical. |