AMD EPYC 9534 Server Processor | 64-Core 128-Thread, 5nm, DDR5, PCIe 5.0 | High-Performance Data Center CPU
$2,880.00
The AMD EPYC 9534 is a high-performance 4th-generation server processor (Genoa) built on 5nm Zen 4 architecture, featuring 64 cores, 128 threads, 2.45GHz base clock, 3.7GHz max boost, 256MB L3 cache, DDR5 support, and PCIe 5.0 connectivity. Designed for modern data centers, it delivers exceptional performance, energy efficiency, and scalability for mission-critical workloads like analytics, virtualization, and enterprise applications.
AMD EPYC 9534 Server Processor | 64-Core 128-Thread, 5nm, DDR5, PCIe 5.0 | High-Performance Data Center CPU
| Specification | Details |
|---|---|
| Processor Name | AMD EPYC 9534 |
| Product Family | AMD EPYC |
| Series | EPYC 9004 Series (Genoa) |
| Architecture | Zen 4 |
| Manufacturing Process | 5nm (TSMC) |
| Number of Cores | 64 |
| Number of Threads | 128 (SMT Supported) |
| Base Clock | 2.45 GHz |
| All-Core Boost Speed | 3.55 GHz |
| Max Boost Clock | Up to 3.7 GHz |
| L2 Cache | 64 MB (1 MB per Core) |
| L3 Cache | 256 MB |
| TDP (Default) | 280W |
| Configurable TDP (cTDP) | 240W – 300W |
| CPU Socket | SP5 |
| Socket Count | 1P / 2P |
| Memory Type | DDR5 |
| Memory Channels | 12 |
| Max Memory Speed | Up to 4800 MT/s |
| Memory Bandwidth (Per Socket) | 460.8 GB/s |
| PCIe Version | PCIe 5.0 |
| PCIe Lanes | 128 |
| Launch Date | November 10, 2022 |
| 1kU Pricing | $7,250 USD |
| Product ID (Tray) | 100-000000799 |
| Regional Availability | Global, China, NA, EMEA, APJ, LATAM |
| Supported Technologies | AMD Infinity Guard, AMD Infinity Architecture, AVX2, AVX-512, ECC Memory |
| Workload Affinity | Analytics, App Dev/Test, CAE, ERM/SCM/CRM Apps, High-Capacity Data Mgmt, VDI, VM Density |
| Integrated Graphics | No (No iGPU) |
| Transistors | 52.56 Billion |
In the fast-paced world of enterprise data centers, where performance, reliability, and efficiency are non-negotiable, the AMD EPYC 9534 Server Processor stands out as a powerhouse designed to meet the most demanding workloads. As part of AMD’s 4th-generation EPYC 9004 Series (codenamed Genoa), the EPYC 9534 leverages cutting-edge 5nm manufacturing technology and the advanced Zen 4 architecture to deliver a perfect balance of raw processing power, energy efficiency, and scalability—making it an ideal choice for businesses of all sizes, from small enterprises to large-scale data centers.
Key Architecture & Manufacturing: 5nm Zen 4 for Unmatched Efficiency
At the core of the AMD EPYC 9534 is the Zen 4 architecture, a significant leap forward in CPU design that builds on the success of previous generations to deliver improved IPC (Instructions Per Cycle), reduced latency, and enhanced energy efficiency. Fabricated using TSMC’s 5nm process node, the EPYC 9534 packs an impressive 52.56 billion transistors into a compact form factor, enabling higher core density and lower power consumption compared to 7nm predecessors. This advanced manufacturing process not only reduces heat output but also ensures that the processor can maintain consistent performance even under heavy, prolonged workloads—a critical requirement for 24/7 data center operations.
The Zen 4 architecture introduces several key enhancements that directly benefit server workloads. Improved branch prediction, larger instruction windows, and optimized cache hierarchies work together to reduce bottlenecks and speed up data processing, while support for the latest instruction sets (including AVX2 and AVX-512) ensures compatibility with modern enterprise applications, such as high-performance computing (HPC), data analytics, and machine learning. Unlike consumer-grade CPUs, the EPYC 9534 is engineered for durability and reliability, with built-in features that minimize downtime and ensure consistent performance over years of operation.
Core & Clock Performance: 64 Cores, 128 Threads for Multitasking Dominance
One of the most striking features of the AMD EPYC 9534 is its core configuration: 64 physical cores and 128 threads, thanks to AMD’s Simultaneous Multithreading (SMT) technology. This high core count makes the processor ideal for multithreaded workloads, which are prevalent in data centers—including virtualization (VDI, VM density), cloud computing, database management (RDBMS), and enterprise resource planning (ERP/CRM) applications. With 128 threads, the EPYC 9534 can handle hundreds of concurrent tasks simultaneously, eliminating bottlenecks and ensuring smooth performance even during peak usage.
Complementing its core count is a flexible clock speed profile that balances performance and energy efficiency. The processor features a base clock of 2.45GHz, ensuring consistent performance for baseline workloads, while an all-core boost speed of 3.55GHz delivers a significant performance boost when multiple cores are active. For single-threaded tasks that require maximum speed, the EPYC 9534 can boost up to 3.7GHz, making it capable of handling even the most demanding single-threaded enterprise applications. This dynamic clocking technology ensures that the processor only uses the necessary power for the task at hand, reducing energy consumption without sacrificing performance.
Cache & Memory: 256MB L3 Cache & 12-Channel DDR5 for Blazing Fast Data Access
To support its high core count and clock speeds, the AMD EPYC 9534 is equipped with a massive 256MB of L3 cache, paired with 64MB of L2 cache (1MB per core). This generous cache allocation is critical for server workloads, as it reduces the need to access slower system memory, significantly lowering latency and improving data throughput. The L3 cache is shared across all cores, ensuring that data is readily available for all threads, while the per-core L2 cache provides fast access to frequently used data, further enhancing performance for multitasking and parallel processing.
In terms of memory support, the EPYC 9534 features 12 memory channels, supporting DDR5 memory with speeds of up to 4800 MT/s. This high memory bandwidth (up to 460.8 GB/s per socket) is essential for data-intensive workloads, such as big data analytics, HPC, and in-memory databases, where fast access to large datasets is critical. The processor also supports ECC (Error-Correcting Code) memory, a must-have for mission-critical applications, as it detects and corrects memory errors to prevent data corruption and system crashes. With support for up to 6TB of memory per socket (when using 512GB DIMMs), the EPYC 9534 can handle even the largest memory-intensive workloads with ease.
Connectivity & Expansion: PCIe 5.0 for Future-Proofed Infrastructure
The AMD EPYC 9534 is equipped with PCIe 5.0 connectivity, the latest generation of the PCI Express standard, which delivers twice the bandwidth of PCIe 4.0 (up to 32 GT/s per lane). With 128 PCIe 5.0 lanes, the processor provides ample expansion options for data center hardware, including high-speed storage (NVMe SSDs), network interface cards (NICs), GPUs, and other peripherals. This high bandwidth ensures that data can be transferred between components at lightning-fast speeds, reducing bottlenecks and improving overall system performance.
PCIe 5.0 also offers future-proofing, as it supports the latest data center technologies, such as Gen Z and CXL (Compute Express Link), which enable faster communication between CPUs, memory, and accelerators. This means that the EPYC 9534 can adapt to evolving data center needs, ensuring that your infrastructure remains relevant and efficient for years to come. Additionally, the processor supports 1P (1-socket) and 2P (2-socket) configurations, allowing for easy scalability as your business grows—whether you need a single-server solution or a large-scale cluster.
Power Efficiency & Thermal Management: Balancing Performance and Cost
Despite its impressive performance, the AMD EPYC 9534 is designed with energy efficiency in mind. The processor has a default TDP (Thermal Design Power) of 280W, with a configurable TDP (cTDP) range of 240W to 300W, allowing data center administrators to adjust power consumption based on workload requirements. This flexibility ensures that the processor uses only the necessary power, reducing energy costs and minimizing environmental impact—critical factors for modern data centers looking to optimize operational expenses.
To manage heat effectively, the EPYC 9534 features advanced thermal management technologies, including support for thermal monitoring and dynamic voltage and frequency scaling (DVFS). These features ensure that the processor remains within safe temperature limits even under heavy workloads, preventing overheating and ensuring long-term reliability. The processor also supports AMD’s Infinity Guard and Infinity Architecture, which provide enhanced security and system management capabilities, further improving the overall reliability of your data center infrastructure.
Workload Affinity: Ideal for a Wide Range of Enterprise Applications
The AMD EPYC 9534 is engineered to excel in a wide range of enterprise workloads, making it a versatile choice for data centers. Its high core count, large cache, and fast memory bandwidth make it ideal for: Analytics and Big Data: Processing large datasets quickly and efficiently, enabling businesses to gain valuable insights in real time. Application Development and Testing: Running multiple development environments and test scenarios simultaneously, accelerating time-to-market for new applications. Computer-Aided Engineering (CAE): Handling complex simulations and modeling tasks, reducing design cycles for engineering projects. Enterprise Resource Planning (ERP) and Customer Relationship Management (CRM): Supporting large-scale databases and concurrent user access, ensuring smooth operation of critical business systems. Virtualization and VDI: Running hundreds of virtual machines (VMs) or virtual desktops (VDIs) efficiently, maximizing server utilization and reducing hardware costs. High-Capacity Data Management: Managing large databases and storage systems, ensuring fast access to critical data.
Additionally, the EPYC 9534 is compatible with major server operating systems, including Windows Server, Linux (Red Hat, SUSE, Ubuntu), and VMware, ensuring seamless integration into existing data center environments. Its broad compatibility with server hardware from leading manufacturers (such as Dell, Supermicro) further simplifies deployment and reduces time-to-value.
Pricing & Availability: Value for High-Performance Computing
The AMD EPYC 9534 is globally available, with regional availability covering North America (NA), Europe, Middle East, and Africa (EMEA), Asia Pacific (APJ), Latin America (LATAM), and China. The processor has a 1kU pricing of $7,250 USD, making it a cost-effective option for businesses seeking high performance without compromising on reliability or efficiency. Compared to competing server processors, the EPYC 9534 offers superior core count, cache, and memory bandwidth at a competitive price point, delivering exceptional value for data center investments.
The processor is available in tray form (Product ID: 100-000000799) and is supported by a 24-month warranty from most retailers, ensuring peace of mind for businesses. With its combination of performance, efficiency, and scalability, the AMD EPYC 9534 is a smart investment for any data center looking to optimize performance, reduce costs, and future-proof their infrastructure.
Conclusion: Why Choose the AMD EPYC 9534?
In a market saturated with server processors, the AMD EPYC 9534 stands out as a top-tier choice for modern data centers. Its 5nm Zen 4 architecture, 64 cores, 128 threads, massive cache, and PCIe 5.0 connectivity deliver the performance and scalability needed to handle the most demanding enterprise workloads. Whether you’re running a small server farm or a large-scale data center, the EPYC 9534 offers the perfect balance of performance, energy efficiency, and reliability—ensuring that your infrastructure can keep up with the evolving needs of your business.
With its future-proof design, broad compatibility, and competitive pricing, the AMD EPYC 9534 is more than just a processor—it’s a long-term investment in your data center’s success. By choosing the EPYC 9534, you’re not only getting a high-performance CPU but also a solution that will adapt to your growing needs, reduce operational costs, and deliver consistent, reliable performance for years to come.
Recommended Motherboards for AMD EPYC 9005/9004 SP5 processors
| Model | CPU (Socket / TDP) | Memory | PCIe/CXL | LAN | Management | Form Factor |
|---|---|---|---|---|---|---|
| Gigabyte MZ73-LM2 | Dual SP5 / 500W | 24×DDR5 | PCIe 5.0 | 2×10GbE | IPMI | E-ATX |
| Gigabyte MZ73-LM1 | Dual SP5 / 400W | 24×DDR5 | PCIe 5.0 | 2×10GbE | IPMI | E-ATX |
| Gigabyte MZ73-LM0 | Dual SP5 / 400W | 24×DDR5 | PCIe 5.0 | 2×10GbE | IPMI | E-ATX |
| Gigabyte MZ33-AR1 | Single SP5 / 400W | 24×DDR5 | PCIe 5.0 | 1×10GbE | IPMI | E-ATX |
| Gigabyte MZ33-CP1 | Single SP5 / 500W | 12×DDR5 | PCIe 5.0 | 2×1GbE | IPMI | E-ATX |
| ASRock Rack TURIND8-2L2T | Single SP5 / 400W | 8×DDR5 | PCIe 5.0 + CXL 2.0 | 2×10GbE + 2×1GbE | IPMI | CEB |
| ASRock Rack TURIN2D16-2T | Dual SP5 / 400W | 16×DDR5 (8+8) | PCIe 5.0 + CXL 2.0 | 2×10GbE | IPMI | EEB |
| ASRock Rack TURIN2D24G-2L+/500W | Dual SP5 / 500W | 24×DDR5 (12+12) | PCIe 5.0 + CXL 2.0 | 2×1GbE | IPMI | Proprietary |
| ASUS K14PA-U12 | Single SP5 / 400W | 12×DDR5 | PCIe 5.0 | 2×25GbE (SFP28) | iKVM (ASMB11) | CEB |
4th Gen AMD EPYC Server CPUs 9004 Series Processors SKUs
| Name | # of CPU Cores | # of Threads | Max. Boost Clock | Base Clock | L3 Cache | Default TDP |
| AMD EPYCâ„¢ 9184X | 16 | 32 | Up to 4.2 GHz | 3.55 GHz | 768 MB | 320W |
| AMD EPYCâ„¢ 9174F | 16 | 32 | Up to 4.4 GHz | 4.1 GHz | 256 MB | 320W |
| AMD EPYCâ„¢ 9124 | 16 | 32 | Up to 3.7 GHz | 3 GHz | 64 MB | 200W |
| AMD EPYCâ„¢ 9184X | 16 | 32 | Up to 4.2 GHz | 3.55 GHz | 768 MB | 320W |
| AMD EPYCâ„¢ 9274F | 24 | 48 | Up to 4.3 GHz | 4.05 GHz | 256 MB | 320W |
| AMD EPYCâ„¢ 9254 | 24 | 48 | Up to 4.15 GHz | 2.9 GHz | 128 MB | 200W |
| AMD EPYCâ„¢ 9224 | 24 | 48 | Up to 3.7 GHz | 2.5 GHz | 64 MB | 200W |
| AMD EPYCâ„¢ 9384X | 32 | 64 | Up to 3.9 GHz | 3.1 GHz | 768 MB | 320W |
| AMD EPYCâ„¢ 9374F | 32 | 64 | Up to 4.3 GHz | 3.85 GHz | 256 MB | 320W |
| AMD EPYCâ„¢ 9354P | 32 | 64 | Up to 3.8 GHz | 3.25 GHz | 256 MB | 280W |
| AMD EPYCâ„¢ 9354 | 32 | 64 | Up to 3.8 GHz | 3.25 GHz | 256 MB | 280W |
| AMD EPYCâ„¢ 9334 | 32 | 64 | Up to 3.9 GHz | 2.7 GHz | 128 MB | 210W |
| AMD EPYCâ„¢ 9384X | 32 | 64 | Up to 3.9 GHz | 3.1 GHz | 768 MB | 320W |
| AMD EPYCâ„¢ 9474F | 48 | 96 | Up to 4.1 GHz | 3.6 GHz | 256 MB | 360W |
| AMD EPYCâ„¢ 9454P | 48 | 96 | Up to 3.8 GHz | 2.75 GHz | 256 MB | 290W |
| AMD EPYCâ„¢ 9454 | 48 | 96 | Up to 3.8 GHz | 2.75 GHz | 256 MB | 290W |
| AMD EPYCâ„¢ 9554P | 64 | 128 | Up to 3.75 GHz | 3.1 GHz | 256 MB | 360W |
| AMD EPYCâ„¢ 9554 | 64 | 128 | Up to 3.75 GHz | 3.1 GHz | 256 MB | 360W |
| AMD EPYCâ„¢ 9534 | 64 | 128 | Up to 3.7 GHz | 2.45 GHz | 256 MB | 280W |
| AMD EPYCâ„¢ 9634 | 84 | 168 | Up to 3.7 GHz | 2.25 GHz | 384 MB | 290W |
| AMD EPYCâ„¢ 9684X | 96 | 192 | Up to 3.7 GHz | 2.55 GHz | 1152 MB | 400W |
| AMD EPYCâ„¢ 9654P | 96 | 192 | Up to 3.7 GHz | 2.4 GHz | 384 MB | 360W |
| AMD EPYCâ„¢ 9654 | 96 | 192 | Up to 3.7 GHz | 2.4 GHz | 384 MB | 360W |
| AMD EPYCâ„¢ 9684X | 96 | 192 | Up to 3.7 GHz | 2.55 GHz | 1152 MB | 400W |
| AMD EPYCâ„¢ 9734 | 112 | 224 | Up to 3 GHz | 2.2 GHz | 256 MB | 340W |
| AMD EPYCâ„¢ 9734 | 112 | 224 | Up to 3 GHz | 2.2 GHz | 256 MB | 340W |
| AMD EPYCâ„¢ 9754S | 128 | 128 | Up to 3.1 GHz | 2.25 GHz | 256 MB | 360W |
| AMD EPYCâ„¢ 9754 | 128 | 256 | Up to 3.1 GHz | 2.25 GHz | 256 MB | 360W |
| AMD EPYCâ„¢ 9754S | 128 | 128 | Up to 3.1 GHz | 2.25 GHz | 256 MB | 360W |
| AMD EPYCâ„¢ 9754 | 128 | 256 | Up to 3.1 GHz | 2.25 GHz | 256 MB | 360W |
| Weight | 1 kg |
|---|---|
| Dimensions | 20 × 20 × 10 cm |
| CPU Series | EPYC 9004 Series |
| CPU Cores | 64 |
| Threads | 128 |
| Max. Boost Clock | 3.7 GHz |
| Base Clock | 2.45 GHz |
| L2 Cache | 64 MB |
| L3 Cache | 256 MB |
| Default TDP | 280W |
| CPU Socket | SP5 |
| Products Status | Tray |
| Warranty(Year) | 1-Year Limited |







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