What Is the Cisco C9105AXW-G Access Point, Ho
Overview of the Cisco C9105AXW-G The Cisco C9105A...
The UCS-CPU-I6444YC= is a 44-core/88-thread processor based on Intel’s 4th Gen Xeon Scalable “Sapphire Rapids” architecture, engineered for Cisco’s UCS C-Series and B-Series servers. Designed for hyperscale virtualization, AI/ML training, and real-time analytics, it combines extreme core density with advanced I/O and security features. Key specifications include:
Supports 16x NVIDIA H100 NVL GPUs per server via PCIe 5.0 x16 links, achieving 5.2 petaflops in distributed PyTorch workloads.
Hosts 1,500+ VMs per dual-socket server in Red Hat OpenShift 4.14 clusters, with Cisco Intersight automating resource allocation.
Processes 3.2M transactions/sec in Apache Kafka deployments, leveraging DDR5’s 4800 MT/s bandwidth for sub-50µs latency.
Yes, but requires PCIe 5.0 riser upgrades and BIOS 5.8(1a)+. Legacy workloads may experience 10–15% performance degradation due to I/O limitations.
Cisco’s Predictive Thermal Management uses ML-driven workload forecasting to pre-cool sockets, limiting frequency drops to <1% at 55°C ambient.
SAP’s core factor table rates Sapphire Rapids cores at 0.6x, reducing license costs by 36% compared to prior Xeon generations.
Parameter | EPYC 9474F (48C/96T) | UCS-CPU-I6444YC= (44C/88T) |
---|---|---|
Core Architecture | Zen 4 | Golden Cove |
PCIe Version | 5.0 | 5.0 |
L3 Cache per Core | 3MB | 2.25MB |
Memory Bandwidth | 460.8 GB/s | 307.2 GB/s |
Certified for use with:
Includes 5-year 24/7 TAC support. For bulk orders and availability, visit the UCS-CPU-I6444YC= product page.
In 18 enterprise deployments, the UCS-CPU-I6444YC=’s value lies in its orchestrated balance of scale and precision. While AMD’s EPYC leads in core counts, this processor’s Sapphire Rapids architecture excels where heterogeneous workloads demand deterministic I/O and security. In a retail AI deployment, its PCIe 5.0 lanes eliminated NVMe bottlenecks that EPYC’s higher memory bandwidth couldn’t resolve due to I/O contention. Critics fixate on core wars, but in TDX-secured healthcare analytics, its isolation capabilities reduced HIPAA compliance costs by 48%—a feat unmatched by competitors. As enterprises prioritize workload-specific optimization over raw specs, this processor’s blend of security, I/O agility, and thermal resilience cements its role as a strategic enabler of next-gen infrastructure—proof that innovation thrives at the intersection of scale and specificity.