AMD EPYC 7262 3.20GHz 8 Core 128MB 155W SP3 CPU (HPE Locked) 100-000000041
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- Specifications
- Description
| Manufacturer Part Number | 100-000000041 ( HPE LOCKED ) |
| Manufacturer | AMD |
| Condition | Refurbished |
| Standard Warranty | 90 Day Replacement Warranty |
| Item Category | ProcessorS |
| Model | EPYC 7262 |
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| Processor Type | EPYC |
| Clock Speed | 3.2 GHz (3.4 GHz Max Boost) |
| Number of Cores | 8 |
| Cache | 128 MB |
| Socket Type | SP3 |
| TDP | 155 W |
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AMD EPYC 7262 Processor – 8-Core Zen 2 Server CPU for Efficient Multi‑Threaded Workloads
Overview
The AMD EPYC 7262 is an 8‑core, 16‑thread server CPU from the EPYC 7002 “Rome” series, built on AMD’s energy-efficient 7nm Zen 2 architecture. With support for dual‑socket configurations and full ECC memory, it’s engineered to deliver robust multi-threaded performance in modern data center and virtualization workloads.
Key Features
- Series: AMD EPYC 7002 Series (“Rome”)
- Architecture: Zen 2, 7 nm CPU with 14 nm I/O die (TSMC / GlobalFoundries)
- Cores / Threads: 8 cores / 16 threads
- Base Clock: 3.20 GHz
- Max Boost Clock: Up to 3.40 GHz
- L3 Cache: 128 MB (shared across cores)
- Memory Support: Up to 4 TiB DDR4‑3200 ECC, 8‑channel
- Memory Bandwidth: ~204.8 GB/s
- PCIe Support: PCIe 4.0 with 128 lanes
- TDP: 155 W
- Socket: SP3 (FCLGA‑4094); supports 1‑way or 2‑way SMP
- Launch Date: August 7, 2019
Performance and Use Cases
The EPYC 7262 provides a compelling blend of core density, high clock speeds, and power-efficiency—ideal for:
- Virtualization, cloud nodes, and hyperconverged systems
- Light to mid-load database services
- Containerized workloads and edge computing
- Compute tasks that benefit from high per-core cache and memory bandwidth
Why Choose the AMD EPYC 7262?
With a high base clock and large 128 MB L3 cache dedicated to 8 cores, the EPYC 7262 stands out for latency-sensitive workloads and virtualization efficiency. Its support for PCIe Gen 4, large ECC memory capability, and dual‑socket scalability make it a smart option for cost-conscious datacenter deployments.