UCS-CPU-A9554 Cisco Epyc 9554 64-core 3.1GHz 256MB L3 Cache Socket 360W Processor. New Sealed in Box (NIB) with 3 Year Warranty
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Product Specifications
Basic Product Information
- Processor Category: Server Processor
- Manufacturer: Cisco
- Part Number: UCS-CPU-A9554
- Model: 9554
Performance Features
- Core Count: 64 Cores
- Base Clock Speed: 3.1 GHz
- Max Boost Clock Speed: Up to 3.75 GHz
Memory & Cache Details
Cache Memory
- L3 Cache: 256 MB
System Memory Specifications
- Memory Type: DDR5
- Memory Channels: 12
- Maximum Memory Speed: 4800 MHz
- Per Socket Memory Bandwidth: 460.8 GB/s
Thermal & Power Requirements
- Maximum Thermal Design Power (TDP): 400W
Socket Compatibility
- Processor Socket: SP5
UCS-CPU-A9554 Cisco Epyc 9554 Processor Overview
The UCS-CPU-A9554 is a high-performance processor from Cisco designed to meet the demands of enterprise-level applications and workloads. Powered by the AMD Epyc 9554 architecture, it offers impressive capabilities with 64 cores and a base clock speed of 3.1GHz, making it a key component for high-performance computing environments. With 256MB of L3 cache and a 360W TDP (Thermal Design Power), this processor is engineered to deliver exceptional performance and scalability for data centers, cloud computing, virtualization, and other mission-critical workloads.
Key Features of the UCS-CPU-A9554
- 64 Cores: The UCS-CPU-A9554 features 64 powerful cores, enabling parallel processing and efficient handling of multi-threaded applications.
- Base Clock Speed of 3.1GHz: With a base clock speed of 3.1GHz, the processor delivers fast computation and responsiveness for a wide range of tasks.
- 256MB L3 Cache: The processor’s large 256MB L3 cache helps reduce latency by providing quick access to frequently used data.
- 360W TDP: The 360W TDP ensures the processor remains thermally efficient, even when under heavy computational loads.
- Socket Compatibility: This processor is designed for the Socket SP5, offering enhanced compatibility with compatible servers and platforms.
Applications of the UCS-CPU-A9554 Processor
High-Performance Computing (HPC)
The UCS-CPU-A9554 is perfectly suited for high-performance computing (HPC) environments that demand maximum processing power. With its 64 cores and high clock speeds, it excels in scientific simulations, financial modeling, machine learning, and data analysis. HPC applications often require vast computational resources, and the UCS-CPU-A9554 provides the necessary power to handle such intensive workloads efficiently.
Virtualization and Cloud Computing
Virtualization technologies, such as VMware, Microsoft Hyper-V, and KVM, benefit significantly from the UCS-CPU-A9554’s multi-core architecture. This processor can run multiple virtual machines simultaneously without compromising performance, making it an ideal choice for enterprise virtualization platforms. Additionally, cloud service providers who require scalable and reliable infrastructure can rely on this processor for cloud-based applications and services.
Data Center and Server Workloads
Data centers often handle a variety of server workloads, from web hosting to database management, requiring powerful processors capable of maintaining performance under high-demand scenarios. The UCS-CPU-A9554 is designed to handle these tasks with ease, thanks to its multi-core processing and high cache capacity. It ensures seamless performance for applications such as large-scale data analytics, content delivery networks, and real-time communications systems.
Performance Benefits of the UCS-CPU-A9554
One of the key advantages of the UCS-CPU-A9554 is its multi-core design, which provides an exceptional level of performance across a variety of demanding applications. The processor’s 64 cores allow it to manage multi-threaded workloads with ease, which is particularly important in environments such as scientific research, financial modeling, and machine learning. This level of parallel processing is ideal for workloads that require the simultaneous execution of numerous tasks, significantly improving throughput and efficiency.
Enhanced Scalability for Business Growth
The UCS-CPU-A9554 is built to scale with your business. As businesses grow, so do their computational needs. The 64-core architecture ensures that this processor can handle an expanding number of users, applications, and workloads without a performance hit. This makes it a highly adaptable solution for businesses that expect to grow and need infrastructure that can keep up with increasing demands.
Optimized for Multi-Threaded Applications
Applications that can take advantage of multi-threading, such as virtualization software, cloud services, and advanced analytics platforms, see significant performance improvements when run on the UCS-CPU-A9554. Its ability to process multiple threads simultaneously means that businesses can run more virtual machines, process more transactions, and analyze more data at the same time, all while maintaining high levels of performance.
Power Efficiency and Cooling Considerations
Despite its impressive performance capabilities, the UCS-CPU-A9554 maintains energy efficiency through its 360W thermal design power (TDP). Efficient thermal management is essential in data centers, where equipment must be kept cool to ensure reliable performance. Cisco has engineered the UCS-CPU-A9554 with features that support power efficiency and help prevent overheating under heavy load conditions, ensuring that your system remains stable even during extended periods of high utilization.
Advanced Cooling Mechanisms
When handling workloads that generate significant heat, the processor’s built-in cooling capabilities play a critical role in maintaining system performance. Data centers often feature high-performance cooling solutions to handle the TDP of processors like the UCS-CPU-A9554. Its advanced design allows it to work seamlessly with these systems to maintain optimal thermal conditions, ensuring a longer lifespan and avoiding potential hardware failures.
Compatibility with Cisco UCS Servers
The UCS-CPU-A9554 is designed to work with Cisco’s Unified Computing System (UCS) servers, making it an excellent choice for businesses using Cisco’s server infrastructure. Cisco UCS servers are known for their high availability, scalability, and management features, all of which complement the processing power of the UCS-CPU-A9554. Businesses can take advantage of the integration between the processor and Cisco’s UCS platform to streamline their IT operations and achieve greater efficiency.
Integration with Cisco UCS Manager
Cisco UCS Manager simplifies server management by providing a single interface for the configuration, monitoring, and management of UCS hardware and software. With the UCS-CPU-A9554, organizations can leverage the full capabilities of Cisco UCS Manager, enabling simplified provisioning, automated workflows, and proactive monitoring of server performance and health.
Seamless Platform Integration
The integration of the UCS-CPU-A9554 with Cisco UCS servers ensures that businesses can optimize their server environments for both performance and efficiency. By using the UCS platform alongside this processor, organizations benefit from optimized power consumption, improved workload distribution, and better overall system stability.
Comparison with Other Processors in the Market
UCS-CPU-A9554 vs. Intel Xeon Scalable Processors
When compared to Intel Xeon Scalable processors, the UCS-CPU-A9554 offers a competitive advantage in terms of core count and clock speed. The AMD Epyc 9554’s 64 cores outpace most Xeon processors in terms of parallel processing, while its 3.1GHz base clock speed provides higher performance for single-threaded applications. Additionally, the 256MB L3 cache on the UCS-CPU-A9554 further improves its performance, providing faster access to critical data.
UCS-CPU-A9554 vs. AMD Epyc 7003 Series
While the Epyc 7003 series processors offer solid performance, the Epyc 9554 takes it a step further with improved clock speeds, core counts, and overall throughput. The architecture advancements in the UCS-CPU-A9554 make it better suited for demanding modern workloads like AI, machine learning, and large-scale virtualization.