24 cores and 48 threads
Perfect for VM hosting, HPC tasks, and parallel analytics
24 Cores • 48 Threads • Up to 3.00 GHz Boost • PCIe Gen 3: Zen "Naples" Power for Mid-Sized Virtualization, Storage & Multi-Instance Hosting
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The EPYC 7401 delivers high core density and robust multi-threaded performance ideal for virtualization, analytics, and mid-tier enterprise workloads demanding serious parallelism:
Perfect for VM hosting, HPC tasks, and parallel analytics
Faster data access across workloads
Outstanding performance-per-dollar in multi-socket setups
Enables NVMe, GPU, and high-speed networking attachments
Deploy dense virtual machines, Kubernetes nodes, or container clusters with high concurrency and memory capacity.
Run medium-scale ETL, processing pipelines, and enterprise BI tools that consume CPU and memory but don’t require Gen 4.
Support real-time bidding, tracking services, and attribution engines with stable multi-core processing.
Host Ethereum, Polygon, Bitcoin, and Cosmos validator or archival nodes using NVMe + PCIe Gen 3 bandwidth.
Execute multi-threaded backtesting, analytics, and strategy engines with high cache and throughput.
Migrate stable workloads to bare metal gain performance predictability, full control, and avoid public cloud overage fees with unmetered bandwidth and global support.
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Common questions about the AMD EPYC 7401, answered by the engineers who run the hardware.
A 24-core Naples-based server processor, launched June 2017. Supports dual-socket setups and enables enterprise-grade parallel computing.
While it’s Zen-1, its core density and cache size deliver excellent throughput for mid-tier parallel tasks, especially when cost is important.
With a 170 W TDP (up to ~268 W peak), it performs well with proper cooling, ideal for colocation and edge setups.
Yes supports AMD-V virtualization, IOMMU (PCI passthrough), AVX/AVX2 acceleration, making it ideal for hypervisor environments.
No this CPU is based on PCIe Gen 3, sufficient for most block-level storage, networking, and compute nodes that don’t need bleeding-edge I/O.
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