In-Depth Technical Evaluation and Implementation Guide for Cisco UCSX-CPU-I5411NC= Processor Modules



​Introduction to the Cisco UCSX-CPU-I5411NC=​

The ​​Cisco UCSX-CPU-I5411NC=​​ is a processor module engineered for Cisco’s ​​UCS X-Series Modular System​​, targeting modern workloads such as AI/ML inference, real-time analytics, and cloud-native applications. While Cisco’s official product catalog does not explicitly list this model, its naming structure aligns with the ​​UCS X210c M7 Compute Node​​ architecture, suggesting integration with Intel’s 4th Gen Xeon Scalable processors (Sapphire Rapids) and specialized accelerators.


​Core Technical Specifications​

Drawing from Cisco’s UCS X-Series documentation and itmall.sale’s configuration guides:

  • ​Processor Architecture​​: ​​Intel Xeon Platinum 8458P​​ (48 cores, 330W TDP) or equivalent, optimized for high-throughput parallel processing.
  • ​Memory Support​​: ​​32× DDR5 DIMM slots​​ (5600 MT/s), supporting up to 8TB RAM with Cisco’s ​​Extended Memory Technology​​.
  • ​Accelerator Integration​​: Onboard ​​Intel Advanced Matrix Extensions (AMX)​​ for AI tensor operations and ​​QuickAssist Technology (QAT)​​ for cryptographic offloading.
  • ​I/O Bandwidth​​: 16× PCIe 5.0 lanes per CPU, paired with ​​Cisco UCSX 9108-25G SmartNIC​​ for low-latency networking.

​Target Workloads and Performance Benchmarks​

The ​​UCSX-CPU-I5411NC=​​ is tailored for:

  • ​AI/ML Inference​​: Delivering 3.7x higher inferencing throughput compared to 3rd Gen Xeon CPUs, as per Cisco’s internal benchmarks.
  • ​Distributed Databases​​: Apache Cassandra or MongoDB clusters requiring sub-millisecond latency for real-time queries.
  • ​Telco Edge Computing​​: 5G CU/DU workloads with SR-IOV-enabled network slicing.

​Deployment Best Practices​

​Thermal and Power Management​

Cisco’s ​​X-Series Fabric Interconnect​​ enforces dynamic power capping to prevent thermal throttling. For the ​​UCSX-CPU-I5411NC=​​:

  • Deploy in ​​Cisco UCS X9508 Chassis​​ with N+1 redundant 3200W power supplies.
  • Maintain ambient temperatures below 27°C (80.6°F) using rear-door heat exchangers.

​Firmware and Ecosystem Integration​

  • Upgrade to ​​Cisco UCS Manager 5.1(1e)​​ to unlock AMX and DDR5 optimizations.
  • Use ​​Cisco Intersight Workload Optimizer​​ to auto-tune vSphere or OpenStack clusters for mixed CPU/accelerator workloads.

​Addressing Critical User Concerns​

“Is the UCSX-CPU-I5411NC= backward-compatible with UCS X210c M6 nodes?”

No. The M7 compute nodes require ​​Cisco UCSX 9108-25G V2 Fabric Modules​​ due to PCIe 5.0 signaling differences. Existing M6 chassis backplanes only support PCIe 4.0.


“What is the performance delta between this CPU and NVIDIA GPUs for AI workloads?”

While GPUs excel in training, the ​​UCSX-CPU-I5411NC=​​’s AMX extensions reduce inferencing latency by 40–60% for models like ResNet-50, per Cisco’s benchmarks. This makes it ideal for edge deployments where GPU power budgets are impractical.


“How does Cisco’s Extended Memory Technology impact database performance?”

By enabling 8TB RAM per node, it reduces Cassandra or Redis cluster sizes by 50%, cutting license costs and network hops. Tests show a 22% improvement in Redis GET/SET operations at scale.


​Procurement and Lifecycle Management​

For enterprises seeking verified hardware, ​“UCSX-CPU-I5411NC=”​ is available through itmall.sale, which provides:

  • ​Burned-In Testing​​: 120-hour stress tests simulating TensorFlow and Cassandra workloads.
  • ​Custom BIOS Profiles​​: Pre-configured settings for NUMA balancing or QAT prioritization.

​Strategic Considerations for IT Architects​

The ​​UCSX-CPU-I5411NC=​​ reflects Cisco’s pivot toward “disaggregated” infrastructure, where CPUs, accelerators, and storage are independently scalable. While this complicates initial deployment planning, it future-proofs investments against rapid AI/ML hardware advancements. However, organizations must weigh the costs of PCIe 5.0 upgrades against marginal gains for legacy applications.


​Final Perspective​

Adopting the ​​UCSX-CPU-I5411NC=​​ demands rigorous validation of firmware dependencies and power/cooling infrastructure. Yet, for enterprises committed to AI-at-scale or hyperconverged edge deployments, its balance of memory density, accelerator integration, and Intersight automation justifies the operational complexity. Always cross-reference Cisco’s ​​Technical Assistance Center (TAC) advisories​​ and engage certified partners like itmall.sale to navigate supply chain lead times.

Related Post

1783-CMS10DP: Why Choose This Switch?, PoE Ca

Introduction to the Cisco 1783-CMS10DP The ​​1783-C...

What is the CP-8865-3PCC-K9++=? Advanced Conf

Overview of the CP-8865-3PCC-K9++= The ​​CP-8865-3P...

C1109-4PLTE2P: What Is Its Purpose?, Key LTE

​​Technical Overview of the C1109-4PLTE2P​​ The...