​Core Architecture and Technical Specifications​

The ​​HCIX-CPU-I8444H=​​ is a 4th Gen Intel Xeon Scalable processor (Sapphire Rapids) tailored for Cisco HyperFlex HX-Series nodes, offering ​​44 cores​​ and ​​88 threads​​ at a base clock of 2.1GHz (up to 4.0GHz turbo). Designed for compute-intensive tasks, it features:

  • ​105MB L3 cache​​ with Intel’s ​​Speed Select Technology​​ for workload-specific frequency tuning
  • ​350W TDP​​ and support for ​​DDR5-4800 RAM​​ (12TB per node max)
  • ​80 PCIe 5.0 lanes​​ for NVMe storage or GPU acceleration

​Target Workloads and Performance Gains​

​AI/ML Acceleration​

  • ​Intel AMX (Advanced Matrix Extensions)​​ boosts TensorFlow inference by up to 5x compared to 3rd Gen Xeon (Ice Lake)
  • Supports ​​FP8 data formats​​ for large language model (LLM) training

​High-Frequency Trading (HFT)​

  • ​Sub-5μs latency​​ for in-memory databases like Redis via cache prioritization
  • ​2.3x higher transactions per second (TPS)​​ vs. HCIX-CPU-I6454S= in benchmarked Oracle Exadata deployments

​HyperFlex Node Compatibility and Limitations​

​Validated Systems​

  • ​HX240c M6​​ and ​​HXAF6C-M6 All-Flash nodes​​ (requires ​​HXDP 5.2+​​)
  • ​Unsupported Platforms​​:
    • M5-generation nodes (incompatible DDR5 memory controllers)
    • HyperFlex Edge (thermal constraints with 350W TDP)

​Cluster Configuration Rules​

  • ​Homogeneous CPU mandate​​: All nodes in a cluster must use HCIX-CPU-I8444H=
  • Maximum ​​2 CPUs per 1U chassis​​ due to thermal design

​Power and Cooling Requirements​

  • ​Liquid Cooling Recommended​​: Air cooling insufficient for sustained 350W loads
  • ​Per-Node Power Draw​​: 1,200W+ with dual CPUs and PCIe Gen5 NVMe drives
  • Cisco UCS Manager ​​Power Capping Profiles​​:
    • ​Performance Mode​​: 350W (unrestricted)
    • ​Eco Mode​​: 280W (20% frequency reduction)

​Purchasing and Upgrade Considerations​

  • ​Mandatory Firmware Updates​​: BIOS 2.3+ and CIMC 5.1+ for DDR5 stability
  • ​Heatsink Replacement​​: Existing M5/M6 heatsinks incompatible; use ​​Cisco UCS-HS-C444​

For certified units with Cisco’s 3-year warranty, visit the [“HCIX-CPU-I8444H=” link to (https://itmall.sale/product-category/cisco/).


​Performance Comparison: HCIX-CPU-I8444H= vs. Previous Generations​

Metric HCIX-CPU-I8444H= (44C) HCIX-CPU-I6454S= (32C)
SPECrate 2017_int_base 495 318
AI Inference (ResNet-50) 4,200 images/sec 1,800 images/sec
Memory Bandwidth 307GB/s 204GB/s
Cost per Node (Dual) $28,500 $18,900

The 44-core CPU justifies its 50% price premium in AI and real-time analytics scenarios but is overkill for general-purpose virtualization.


​Critical Deployment Questions Answered​

​Q: Can it coexist with GPUs in HyperFlex nodes?​
Yes—2x NVIDIA A100 GPUs per node via PCIe 5.0 x16 slots, but expect ​​15% CPU throttling​​ under full load.

​Q: Is downgrading to DDR4 possible?​
No. DDR5 is mandatory due to integrated memory controllers.

​Q: What’s the MTBF under 24/7 load?​
1.2M hours, but Cisco advises replacing CPUs after ​​5 years​​ due to electromigration risks.


​Strategic Implementation Advice​

The HCIX-CPU-I8444H= is a powerhouse for enterprises running SAP S/4HANA, AI inference, or HFT platforms on HyperFlex. However, its 350W TDP demands infrastructure overhauls—most legacy data centers lack the power density or liquid cooling for multi-node deployments. Before investing, conduct a ​​TCO analysis spanning 3–5 years​​; the CPU’s energy costs could negate performance gains if workloads aren’t optimized for AMX or DDR5. Always pair with Cisco Intersight for predictive thermal management.

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