Cisco UCS-CPU-A9224 EPYC 9224 2.5GHz 24-Core Processor
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Product Details
General Product Information
- Processor Type: Server Processor
- Brand: Advanced Micro Devices Inc (AMD)
- Part Number: UCS-CPU-A9224
- Model Number: 9224
Technical Specifications
Core and Performance
- Number of Cores: 24 cores
- Base Clock Speed: 2.5 GHz
- Max Boost Clock: Up to 3.7 GHz
Cache and Memory Features
- L3 Cache: 64 MB
- System Memory Type: DDR5
- Memory Channels: 12 channels
- Memory Speed: Up to 4800 MHz
- Per Socket Memory Bandwidth: 460.8 GB/s
Thermal and Compatibility
Power and Heat Dissipation
- Max TDP (Thermal Design Power): 240W
Socket Compatibility
- Compatible Processor Socket: SP5
Cisco UCS-CPU-A9224: Unleashing the Power of Epyc 9224 Processors
The Cisco UCS-CPU-A9224 featuring the Epyc 9224 processor delivers an unparalleled combination of performance, scalability, and energy efficiency. Designed for enterprise-grade workloads, this processor is ideal for advanced data centers and high-performance computing environments. With 24 cores operating at a base frequency of 2.5 GHz, it ensures exceptional multi-threaded capabilities while maintaining efficiency with its 200-watt TDP.
Key Features of the Cisco UCS-CPU-A9224 Epyc 9224 Processor
The Cisco UCS-CPU-A9224 processor is powered by AMD's Epyc 9224, built on advanced 5nm process technology. It boasts a robust architecture optimized for demanding workloads, offering enterprise users a highly reliable and scalable solution for modern computing needs.
Advanced Core Architecture
With 24 high-performance cores, the Epyc 9224 processor supports simultaneous multi-threading, allowing it to handle up to 48 threads. This makes it suitable for virtualized environments, cloud computing, and high-performance databases.
Enhanced Cache Design
Equipped with 64MB of L3 cache, the Epyc 9224 minimizes latency and maximizes data throughput. The processor’s cache structure optimizes performance for intensive applications like machine learning, AI, and large-scale analytics.
Power Efficiency
The 200-watt power envelope ensures a balance between high computational power and energy efficiency. This power optimization is critical for data centers aiming to reduce operational costs while maintaining peak performance levels.
Socket SP5 Compatibility
The Cisco UCS-CPU-A9224 is designed for Socket SP5, a platform engineered to support AMD’s latest EPYC processors. Socket SP5 offers increased memory channels, PCIe lanes, and connectivity options to handle cutting-edge workloads with ease.
Memory Support
The SP5 platform supports DDR5 memory, delivering significant improvements in bandwidth and efficiency. With up to 12 memory channels, users can achieve unmatched throughput for memory-intensive applications.
PCIe 5.0 Integration
Socket SP5 includes PCIe 5.0 lanes, offering enhanced bandwidth for peripheral devices. This is essential for systems that demand high-speed storage solutions, GPUs, and networking cards, ensuring the Epyc 9224 processor can handle even the most data-heavy tasks.
Ideal Workloads for the Epyc 9224 Processor
The Epyc 9224 processor is engineered to excel in a variety of enterprise scenarios. Its versatile design makes it ideal for use cases ranging from virtualization and cloud infrastructure to advanced scientific computing and artificial intelligence workloads.
Virtualization and Cloud Computing
The 24-core architecture ensures seamless performance for virtual machines, enabling organizations to run multiple instances without compromising speed or efficiency. This makes it a preferred choice for private and public cloud solutions.
AI and Machine Learning
With its advanced cache system and high core count, the Epyc 9224 processor can handle AI training models and inferencing tasks efficiently. Its scalable architecture supports the growing demands of AI-driven technologies.
Big Data Analytics
Processing large datasets requires exceptional computational capabilities and fast data access. The Epyc 9224’s high memory bandwidth and powerful multi-threading capabilities make it an excellent choice for big data environments.
Enterprise-Grade Reliability
Built with enterprise users in mind, the Cisco UCS-CPU-A9224 ensures reliability, security, and scalability. Its robust design guarantees consistent performance under demanding conditions, meeting the rigorous standards of mission-critical applications.
Security Features
Integrated security features such as AMD Secure Processor and Secure Memory Encryption protect sensitive data from potential threats. These features are essential for organizations prioritizing data integrity and compliance.
Scalability for Growth
The Epyc 9224 processor’s scalable architecture supports future growth. Whether expanding memory, storage, or compute capabilities, this processor offers the flexibility needed to adapt to evolving business requirements.
Integrated Management Capabilities
Cisco’s integration of the Epyc 9224 into its UCS platforms ensures streamlined management and monitoring. This simplifies deployment, minimizes downtime, and enhances operational efficiency across data center environments.
Applications in Cisco Unified Computing Systems
The Cisco UCS-CPU-A9224 is a cornerstone for systems that require a perfect blend of performance and flexibility. Cisco’s UCS architecture is optimized to leverage the power of the Epyc 9224 processor, making it a top choice for enterprise deployments.
Database Management Systems
Running complex database operations demands high compute power and efficient memory management. The Epyc 9224 processor excels in these scenarios, ensuring fast query responses and high transactional throughput.
Enterprise Applications
Applications such as enterprise resource planning (ERP) and customer relationship management (CRM) require robust and reliable computing. The Cisco UCS-CPU-A9224 provides the necessary processing power to handle these workloads with ease.
High-Performance Computing (HPC)
Scientific simulations, weather modeling, and other HPC workloads benefit significantly from the Epyc 9224’s high core count, efficient memory utilization, and advanced computational capabilities.