AMD EPYC 7513 32c/64t 2.6GHz-3.64GHz 200W (100-000000334)

P/N: 100-000000334

663 (inc. VAT (Spain))

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  • Warranty 2 year

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AMD

AMD EPYC 7513 32-core server CPU for scalable enterprise and cloud platforms. Official warranty included.

Categories: AMD EPYC

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Technical Specifications Product

Dimensions 17 × 17 × 10 cm
Country of manufacture

Taiwan

Manufacturer's warranty (years)

1

Series

EPYC

Number of cores

32

Number of threads

64

Clock frequency (GHz)

2.6

Cache L3 (MB)

128

Process technology (nm)

7

Maximum Turbo Frequency (GHz)

3.64

Memory type

DDR4

Maximum memory channels

8

Maximum memory frequency (MHz)

3200

Heat dissipation TDP (W)

200

PCI Express controller

PCIE 4.0

Number of PCI Express lanes

128

Processors on a motherboard

2

Length (cm)

17

Width (cm)

17

SKU

100-100000334WOF

Architecture

Zen 3 (Milan)

Socket

SP3

Product description

AMD EPYC 7513 Server CPU

Positioning and role in the EPYC 7003 lineup

AMD EPYC 7513 is a 3rd Gen EPYC “Milan” processor positioned as a balanced high-core-count CPU for enterprise and cloud environments that require strong parallel throughput, full memory bandwidth, and predictable behavior under sustained load. It sits above mid-range 24–28 core parts and below the highest-core-count SKUs, making it a practical choice for organizations that want scalable performance without moving to the most power-intensive models in the EPYC 7003 family.

Core configuration, frequency behavior, and execution profile

The processor provides 32 cores and 64 threads, operating at a 2.6 GHz base clock with boost frequencies up to 3.64 GHz. This configuration emphasizes sustained multi-threaded throughput rather than peak single-core frequency. In real-world deployments, EPYC 7513 performs best in workloads that can efficiently distribute work across many threads and benefit from consistent all-core performance.

Zen 3 cores deliver improved instructions-per-clock and more uniform latency characteristics compared to previous generations. This helps the processor maintain stable performance across mixed workloads, long-running batch jobs, and heavily parallelized enterprise services.

Cache architecture and memory access characteristics

EPYC 7513 includes 128 MB of shared L3 cache, providing a balanced cache-to-core ratio for throughput-oriented workloads. While it does not feature the expanded cache of X-series processors, this cache capacity is sufficient for many enterprise applications, virtualization platforms, and distributed services that rely more on parallel execution and memory bandwidth than extreme cache residency.

The processor supports DDR4-3200 memory across 8 memory channels, which remains one of the defining strengths of the EPYC platform. With symmetric DIMM population, EPYC 7513 can deliver very high aggregate memory bandwidth per socket, making it suitable for memory-intensive workloads, high virtual machine density, and data-processing pipelines that rely on sustained memory throughput.

I/O capabilities and platform integration

EPYC 7513 supports PCI Express 4.0 with up to 128 lanes per socket, allowing dense NVMe storage configurations, high-speed networking, and flexible expansion without external PCIe switches. This extensive I/O capacity simplifies system design and supports modern software-defined infrastructure, storage-heavy deployments, and network-intensive enterprise platforms.

The processor uses the SP3 socket and supports dual-socket server configurations, enabling scalable systems with high aggregate core counts, memory bandwidth, and I/O capacity for demanding enterprise workloads.

Power characteristics and deployment considerations

EPYC 7513 is rated at 200 W TDP, reflecting its balance of core count and sustained throughput. This power envelope fits well within standard enterprise server chassis with appropriate server-grade cooling. When deployed in properly designed platforms, the processor delivers predictable performance under continuous load, which is essential for always-on production environments.

Ideal use cases and selection guidance

EPYC 7513 is best suited for workloads that benefit from high core density and steady parallel performance. Typical use cases include virtualization hosts with large VM populations, cloud and hosting infrastructure requiring scalable throughput, enterprise application servers and middleware platforms, and data-processing and analytics workloads with strong parallelism. It is an effective choice when workloads scale efficiently across many threads and require full EPYC memory and I/O capabilities without the need for frequency-optimized or cache-specialized processors.

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Product Berchmark

Overview and Analysis of the AMD EPYC 7513 Processor

Within the AMD EPYC 7003 server solution lineup, the EPYC 7513 model occupies the position of a balanced high-performance processor, oriented towards ensuring maximum multi-threaded performance within a limited thermal envelope. Possessing 32 physical cores and Zen 3 architecture, this processor is an optimal choice for virtualization, cloud computing, and enterprise applications where high computational resource density is required without moving into the extreme power consumption segment. Below is a comparison of technical specifications with the closest competitors in the series.


Comparative Table of Technical Specifications

Processor Model Cores / Threads Base Frequency (GHz) Turbo Boost (GHz) L3 Cache (MB) TDP (W)
AMD EPYC 7513 32 / 64 2.6 3.64 128 200
AMD EPYC 7543 32 / 64 2.8 3.7 256 225
AMD EPYC 7543P 32 / 64 2.8 3.7 256 225
AMD EPYC 7453 28 / 56 2.75 3.45 64 225
AMD EPYC 7643 48 / 96 2.3 3.6 256 225
AMD EPYC 7663 56 / 112 2.0 3.5 256 240
AMD EPYC 7713 64 / 128 2.0 3.67 256 225
AMD EPYC 7443 24 / 48 2.85 4.0 128 128
AMD EPYC 7413 24 / 48 2.65 3.6 128 180
AMD EPYC 7343 16 / 32 3.2 3.9 128 190

Analysis of Technical Specifications of the AMD EPYC 7513 Processor

Based on the technical specifications, the AMD EPYC 7513 demonstrates a number of key advantages that distinguish it from competitors in this segment:

  • Superior Energy Efficiency: With the same number of cores (32) as the EPYC 7543 and 7543P models, the 7513 processor possesses a lower TDP of 200W versus 225W for the competitors. This allows for achieving high computational density with reduced operational costs for cooling and power, which is critical for modern data centers.
  • Balanced Memory Architecture: Compared to the EPYC 7453 model (28 cores), which has only 64 MB of L3 cache, the EPYC 7513 offers 128 MB of L3 cache. This provides double the cache volume in absolute terms and a significantly higher volume per core, which directly impacts performance in data-intensive tasks.
  • Higher Base Frequency Compared to Multi-Core Solutions: The base clock frequency of 2.6 GHz for the EPYC 7513 is substantially higher than that of senior models with a larger number of cores, such as the EPYC 7663 (56 cores, 2.0 GHz) or EPYC 7713 (64 cores, 2.0 GHz). This makes the 7513 a more preferable choice for frequency-sensitive workloads while maintaining a high degree of parallelism.
  • Optimal Core-to-Performance Ratio: Surpassing 24-core models (7443, 7413) in the number of computational threads by 33%, the EPYC 7513 provides a significant performance boost for virtualized environments, while remaining within a thermal envelope comparable to or lower than less efficient multi-core alternatives.

Conclusion

The AMD EPYC 7513 represents an ideal solution for tasks requiring a balance between high multi-threaded performance and energy efficiency. Due to the successful combination of 32 cores, a high volume of cache memory, and moderate heat dissipation (TDP 200W), this processor prevails over competitors in scenarios where both computational power density and operational cost optimization are important, serving as the “golden mean” between high-frequency models with fewer cores and expensive flagships.

Product FAQ

The AMD EPYC 7513 is a server processor equipped with 32 physical cores and supports 64 computing threads. Its base clock frequency is 2.6 GHz, and the maximum frequency in Boost mode reaches 3.64 GHz. The processor features 128 MB of Level 3 (L3) cache.

The EPYC 7513 model belongs to the third generation of AMD EPYC server processors of the 7003 series, known by the codename “Milan”. It is built on the high-performance Zen 3 architecture, which provides a significant increase in Instructions Per Clock (IPC) compared to previous generations.

The TDP (Thermal Design Power) of the AMD EPYC 7513 is 200 W. This makes it one of the most energy-efficient 32-core solutions in the lineup. Stable operation requires a server-grade cooling system capable of dissipating the specified thermal power.

The processor supports DDR4 standard RAM with a frequency of up to 3200 MHz. The memory controller operates in 8-channel mode, providing the high bandwidth necessary for data-intensive tasks. The maximum supported memory capacity is 4 TB per socket.

The AMD EPYC 7513 is installed in the Socket SP3 (LGA 4094). It is compatible with a wide range of motherboards designed for the EPYC 7002 (Rome) and EPYC 7003 (Milan) series, although previous generation boards may require a BIOS update.

The model supports 128 lanes of the PCI Express 4.0 interface. This allows for connecting a large number of high-speed NVMe devices, network adapters, and computing accelerators without using additional switches, ensuring excellent I/O capabilities.

Due to the balance between core count, frequency, and power consumption, this processor is ideally suited for virtualization, cloud computing, database management, and enterprise applications. It ensures a high density of virtual machine placement per server.

The main difference lies in power consumption and cache volume. The EPYC 7513 has a TDP of 200 W and 128 MB of L3 cache, whereas the higher-end 7543 model features a TDP of 225 W and 256 MB of cache. The EPYC 7513 is the preferred choice when energy efficiency and reducing operational costs are important while maintaining 32 cores.

Yes, the AMD EPYC 7513 fully supports operation in dual-processor (2P) systems. Installing two such chips on a single motherboard allows for a system with 64 cores and 128 threads, as well as doubling the number of available memory channels and PCIe lanes.

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Additional Notes

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