
AMD EPYC 9224 24c/48t 2.5GHz-3.7GHz 200W (100-000000939)
P/N: 100-000000939
944€ (excl. TAX)
1133 € RRP en AMD.com
The recommended retail price provided by the product’s manufacturer.
Delivery is made within 3-7 days
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Warranty 1 year
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AMD EPYC 9224 24-core Zen 4 server processor for balanced enterprise performance. Official warranty included.
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Technical Specifications Product
| Country of manufacture | Taiwan |
|---|---|
| Manufacturer's warranty (years) | 1 |
| Series | EPYC |
| Number of cores | 24 |
| Number of threads | 48 |
| Clock frequency (GHz) | 2.5 |
| Cache L3 (MB) | 64 |
| Process technology (nm) | 5 |
| Maximum Turbo Frequency (GHz) | 3.7 |
| Memory type | DDR5 |
| Maximum memory channels | 12 |
| Maximum memory frequency (MHz) | 4800 |
| Heat dissipation TDP (W) | 200 |
| PCI Express controller | PCIE 5.0 |
| Number of PCI Express lanes | 128 |
| Processors on a motherboard | 2 |
| Architecture | Zen 4 (Genoa) |
| Socket | SP5 |
Product description
AMD EPYC 9224 Server CPU
Positioning within the EPYC 9004 lineup
AMD EPYC 9224 is a Zen 4–based EPYC processor positioned as a balanced, general-purpose compute option within the EPYC 9004 “Genoa” family. It targets enterprise and cloud environments that require a strong mix of core density, modern I/O, and high memory bandwidth without moving to the highest power envelopes or cache-specialized SKUs. EPYC 9224 is often selected for scalable infrastructure tiers where predictable throughput and platform flexibility are more important than extreme per-core frequency or oversized cache.
Core configuration and execution characteristics
The processor provides 24 cores and 48 threads, operating at a 2.5 GHz base frequency with boost clocks up to 3.7 GHz. This configuration offers a balanced execution profile suitable for mixed workloads that combine parallel processing with moderately latency-sensitive tasks. In production, EPYC 9224 performs well in environments where applications scale across multiple threads but still rely on stable per-core behavior during peak load.
Compared to higher core-count EPYC 9004 models, the 9224 places less emphasis on maximum parallelism and more on efficient utilization of cores, making it suitable for application servers, virtualization platforms, and scale-out services with diverse workload characteristics.
Cache architecture and data access behavior
EPYC 9224 includes 64 MB of L3 cache, which aligns with its role as a balanced compute processor rather than a cache-specialized model. While this cache capacity is smaller than that of X-series parts, it is sufficient for many enterprise workloads where performance depends more on memory bandwidth and concurrency than on keeping very large datasets resident in cache.
In multi-tenant environments, this cache size helps maintain stable behavior across concurrent workloads while relying on the strong memory subsystem of the EPYC platform to handle larger data streams efficiently.
Memory subsystem and bandwidth capabilities
The processor supports DDR5-4800 memory across 12 memory channels, delivering very high aggregate memory bandwidth per socket. This is one of the defining advantages of the EPYC 9004 platform and enables EPYC 9224 to handle memory-intensive workloads, high VM density, and data-processing pipelines that stream large volumes of data.
Proper memory population across all channels is essential to fully realize this bandwidth. Balanced DIMM placement ensures predictable latency and avoids artificial bottlenecks that can limit real-world performance.
I/O capabilities and platform integration
EPYC 9224 supports PCI Express 5.0 with up to 128 lanes, enabling next-generation NVMe storage, high-speed networking, and accelerator connectivity without external PCIe switches. This extensive I/O capacity allows architects to design flexible systems that can support storage-heavy, network-heavy, or mixed workloads while maintaining clean and predictable topologies.
The processor uses the SP5 socket and supports dual-socket configurations, enabling systems with increased aggregate core count, memory capacity, and I/O bandwidth for demanding enterprise environments.
Power envelope and deployment considerations
EPYC 9224 is rated at 200 W TDP, which makes it relatively efficient within the EPYC 9004 family. This power profile allows deployment in a wide range of enterprise server chassis with standard high-performance cooling solutions. In properly designed systems, the processor delivers consistent performance under sustained load, making it suitable for always-on production services.
Ideal use cases and selection guidance
EPYC 9224 is best suited for organizations seeking a modern, balanced Zen 4 server CPU. Typical use cases include virtualization and private cloud platforms, enterprise application and middleware servers, scale-out infrastructure with mixed workloads, and data-processing and memory-bandwidth-driven services. For workloads dominated by extreme parallelism or cache sensitivity, higher core-count or X-series EPYC models may be more appropriate. EPYC 9224 is an effective choice when the goal is to combine Zen 4 efficiency, DDR5 memory, and PCIe 5.0 connectivity in a well-balanced enterprise server platform.
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