Yes. Unlike previous legacy implementations that forced CPUs to drastically drop frequencies, the Zen 4 architecture processes 256-bit AVX-512 instructions efficiently. This provides a massive, thermal-stable performance boost for AI inference, CFD simulations, and cryptographic algorithms directly on the bare metal.
Absolutely. Deploying a single 128-core EPYC 9754 (Bergamo) server drastically lowers your Total Cost of Ownership (TCO) by allowing you to consolidate an entire rack of legacy servers into one node. You save heavily on data center footprint, power consumption, and per-socket software licensing while gaining unprecedented compute density.
Absolutely. The SP5 platform provides 128 lanes of PCIe Gen 5.0 per socket. This allows you to scale your AI and Machine Learning pipelines by integrating enterprise accelerators like the NVIDIA H100 Tensor Core GPU (Available via custom deployment). This native PCIe 5.0 attachment completely eliminates the storage bus bottlenecks found in legacy architectures.
Yes. Corporate infrastructure requires absolute uptime. All of our worldwide EPYC bare metal instances feature automated, network-edge volumetric DDoS protection (up to 50Gbps) at zero additional cost to guarantee your business continuity.
Genoa (Zen 4) processors, like the EPYC 9654, feature massive L3 caches per core, making them the ultimate choice for heavy enterprise databases and high-performance computing (HPC). Bergamo (Zen 4c) processors, like the EPYC 9754, trade individual core cache size for extreme density, packing up to 128 cores into a single socket—the undisputed champion for cloud-native applications and Kubernetes clusters.
For SMBs transitioning to the SP5 platform without breaking the budget, entry-level models like the 16-core EPYC 9124 provide the exact same 12-channel DDR5-4800 memory and 128 PCIe 5.0 lanes as the flagship models, offering an incredibly cost-effective starting point.
Standard EPYC servers focus on core count, but the Genoa F-Series (like the EPYC 9374F) is an absolute powerhouse for gaming. Pushing past 4.1 GHz boost clocks with massive L3 cache, it delivers the extreme single-thread performance and low latency required for demanding multiplayer game servers and simulation environments.




