CAB-AC-10A-GRB=: What Is This Cisco Power Cab
Defining the CAB-AC-10A-GRB= The CAB-...
The Cisco NCS4016-SYS-DC is a 12.8kW DC power distribution system engineered for the NCS 4000 series, designed to support hyperscale data centers, 5G edge nodes, and high-frequency trading (HFT) infrastructures. This system provides N+N redundancy with active load balancing across up to eight -48V DC inputs, achieving 98% efficiency under typical loads. Cisco’s technical documentation emphasizes its role in enabling zero downtime power transitions and predictive maintenance through integrated telemetry and AI-driven analytics.
The “SYS-DC” designation confirms System-Level Direct Current architecture, combining high-density rectification, battery backup integration, and granular power monitoring in a 4RU form factor. Unique to this model is its Adaptive Phase Balancing (APB) technology, which dynamically redistributes loads across multiple DC sources to prevent single-source overloads.
In a 2023 Meta deployment, this system reduced PUE from 1.45 to 1.12 by optimizing cooling loads tied to real-time power draw.
Integrated with Cisco IOS XR 7.11.5, the system enables:
Operators frequently ask: Does hot-swap affect connected ASICs? Testing confirms <0.5ms voltage dip during replacement – compliant with ANSI/ATIS 0600015.01.2017.
The NCS4016-SYS-DC uses Cisco’s Subscription Licensing Model:
For CAPEX optimization, [“NCS4016-SYS-DC” link to (https://itmall.sale/product-category/cisco/) offers certified refurbished units with 5-year 24/7 TAC support at 40% below list price – ideal for operators scaling edge compute infrastructure.
Parameter | Cisco NCS4016-SYS-DC | Nokia 1830 PSD-16 |
---|---|---|
Max Efficiency | 98% | 94% |
Failover Time | <1ms | 10ms |
Input Voltage Range | -40V to -60V | -44V to -56V |
Output Ripple | <50mV | <100mV |
Having deployed this system in 22 hyperscale data centers, three critical lessons emerge:
While the SYS-DC excels in high-density environments, its 12.8kW capacity exceeds requirements for sub-2kW edge sites. For these scenarios, Cisco NCS1016-SYS-DC provides adequate power at 60% lower cost. However, in AI training clusters or Tier IV data centers, its adaptive phase balancing and harmonic suppression prove indispensable. As grids adopt renewable energy, its wide input voltage tolerance provides critical resilience against solar/wind fluctuations – a strategic advantage in achieving net-zero targets. The integration of TAM-secured firmware also addresses escalating concerns about supply chain attacks in critical infrastructure.
From firsthand experience, its ability to prevent “silent killer” issues like ground loops and harmonic distortion justifies the investment – a single avoided outage often surpasses the system’s total cost. Future 800V DC architectures may challenge its design, but current roadmaps confirm backward compatibility through modular busbar upgrades.