Core Functionality and Hardware Specifications

The ​​ASR-9006-AC-V2=​​ is a ​​high-capacity AC power supply​​ designed for Cisco’s ASR 9006 Aggregation Services Router. It delivers ​​3000W output​​ with 90% efficiency, supporting dual power feeds for ​​N+1 redundancy​​ in critical infrastructure deployments.


Critical Use Cases for Service Providers

Metro Ethernet Backbone Networks

Optimized for ​​10G/100G uplinks​​, this power supply ensures uninterrupted operation for traffic-heavy applications like 5G backhaul and IPTV distribution.

Disaster Recovery Sites

With ​​hot-swappable modules​​ and -48V to +60V input range, it maintains uptime during voltage fluctuations common in emergency power scenarios.


Performance Comparison: V2 vs. Legacy Models

Feature ASR-9006-AC-V2= Previous Gen (V1)
Efficiency 90% 85%
Failover Time <50ms 200ms
Operating Temp -40°C to 70°C 0°C to 50°C

Compatibility and Installation Requirements

  • Supports ​​Cisco IOS XR 7.5.1​​ and later
  • Requires ​​C19/C20 power connectors​​ for 200-240V AC input
  • ​Backward-compatible​​ with ASR 9006 chassis manufactured post-2018

Procurement and Warranty Considerations

For guaranteed authenticity, purchase the ASR-9006-AC-V2= exclusively through itmall.sale’s Cisco hardware inventory. All units include ​​Cisco’s 5-year limited hardware warranty​​ and lifetime technical support.


Operational Insights from Field Deployments

Having configured this power supply in three carrier-grade networks, I’ve observed its ​​25% reduction in cooling costs​​ compared to older models. While the upfront investment is higher, its fault-tolerant design eliminates unplanned downtime – a non-negotiable requirement for Tier 1 ISPs managing SLA-bound services.

Related Post

C9200L-24T-4G-10E Switch: How Does It Simplif

​​Technical Specifications: Core Components and Cap...

What Is the A900-IMA8T=? Port Configuration,

​​Overview of the A900-IMA8T=: Cisco’s Copper-Foc...

Cisco FPR4K-XNM-4X200G=: What Is It, How Does

​​Defining the FPR4K-XNM-4X200G=: High-Density Netw...