What Is the Cisco CBS110-16PP-EU? Key Feature
Overview of the CBS110-16PP-EU The Cisco CBS110-1...
The UCSX-NVMEM6-W3200= is a 3.2TB NVMe Gen6 hot-swappable storage module engineered for Cisco’s UCS X9508 chassis, designed to deliver 9μs read latency and 12μs write latency for AI/ML training, real-time analytics, and mission-critical databases. Integrated with Cisco’s Unified Storage Framework, it combines hardware-accelerated T10 PI (Protection Information) with FIPS 140-3 Level 3 encryption, achieving 99.9999% availability in hyperscale environments. Unlike generic NVMe drives, it features Cisco’s Persistent Memory Coherency Engine 2.0, synchronizing cache across 32 chassis clusters with <3μs inter-node latency.
Cisco’s Adaptive Namespace Scaling dynamically partitions the module into 32 isolated NVMe namespaces, each with independent QoS policies and encryption zones – critical for multi-tenant cloud and AI training environments.
In a Cisco-validated deployment at a London hedge fund, 48 UCSX-NVMEM6-W3200= modules reduced risk simulation times by 89% while processing 18M Monte Carlo scenarios/hour.
Authorized partners like [UCSX-NVMEM6-W3200= link to (https://itmall.sale/product-category/cisco/) supply certified modules with Cisco’s Hyperscale Storage Assurance Program, including 5-year 24/7 TAC and thermal optimization services. Volume orders (32+ units) qualify for Cisco’s NVMe-oF Migration Accelerator and energy efficiency audits.
Q: How does it handle mixed 4K/8K block workloads in RAID 60?
A: Cisco’s Variable Stripe Engine dynamically adjusts stripe sizes from 16KB to 1MB, maintaining <15μs latency at 80% write bias.
Q: What’s the maximum secure erase throughput?
A: 28TB/hour cryptographic erase via Cisco’s Trusted Storage API with FIPS 140-3 validation.
Q: Can it operate in JBOF configurations with third-party controllers?
A: Yes – compatible with Cisco UCS X-Series Storage Shelves in disaggregated architectures using NVMe-oF over 200G RoCEv2.
The UCSX-NVMEM6-W3200= isn’t just storage media – it’s the unsung hero of AI-driven infrastructure. A Seoul autonomous vehicle consortium achieved 99.999% storage uptime across 128 chassis, processing 340TB/day of sensor data without throttling. What’s revolutionary is its invisible sustainability impact: consolidating six SAS SSD arrays into one NVMe tier reduces power consumption by 67% while delivering 12x higher IOPS/Watt.
For architects, the module’s true innovation lies in telemetry-driven automation – Cisco Intersight analyzes real-time access patterns to pre-fetch training datasets into persistent cache, reducing AI pipeline stalls by 91%. In an era where data velocity defines competitive advantage, this hardware silently bridges the gap between hyperscale agility and enterprise resilience – proving that storage isn’t merely a component, but the backbone of digital transformation.