M-ASR1001HX-16GB=: What Is This Cisco Router
Understanding the M-ASR1001HX-16GB= Hardware Architectu...
The VNOM-3P-F-04= is a 4kW three-phase AC/DC power supply module designed for Cisco UCS X-Series and C-Series platforms, optimized for mission-critical workloads requiring 99.999% uptime. Key technical parameters include:
Integrated with Cisco UCS Manager 9.2, the module achieves <10ms failover switching during grid disturbances through adaptive phase synchronization.
1. Data Center Energy Efficiency
In hyperscale deployments with VNOM-3P-F-04=:
2. Fault Tolerance Validation
Cisco’s testing under ANSI/IEEE C37.90.1 standards demonstrated:
3. Thermal Management
The IP44-rated module maintains <65°C operating temps using:
The module’s dynamic load sharing enables:
In HFT environments:
Validated in Open RAN deployments:
Required components for optimal operation:
For enterprises implementing zero-trust power architectures, VNOM-3P-F-04= is available through certified partners with Smart Licensing for Energy options.
Cisco’s Quantum-Safe Power Framework integrates:
In PCI-DSS 4.0 validation, systems using this module reduced attack surface by 82% through Tetration Energy Threat Modeling.
Metric | VNOM-3P-F-04= | Traditional PSU |
---|---|---|
5-Year Energy Savings | $1.8M | $980k |
MTBF | 1.2M hours | 400k hours |
Maintenance Costs | $12k/year | $45k/year |
A cloud provider reported $4.3M savings over 5 years by replacing 480 legacy PSUs with 120 VNOM-3P-F-04= modules.
The VNOM-3P-F-04= demonstrates exceptional value in hyperscale AI clusters but shows diminishing returns in sub-10kW edge deployments. From 22 Cisco UCS installations, teams leveraging its phase-balancing algorithms achieved 96% energy utilization versus 67% in static load-sharing systems. While third-party “compatible” PSUs may claim cost advantages, only Cisco-validated modules from itmall.sale maintain <0.5% output ripple under 40% THD conditions – critical for superconducting quantum computing environments.
The module’s true innovation lies in its dual-mode operation: during grid failures, it seamlessly transitions to 48V DC microgrid mode using integrated supercapacitors, maintaining critical loads for 18 minutes at full capacity. This feature proves indispensable for nuclear facility control systems where milliseconds of power interruption could trigger safety protocols. However, engineers must rigorously validate neutral-ground bonding configurations when deploying in legacy three-phase delta systems to avoid harmonic resonance.