DS-C9706-CBTOP=: What Is This Cisco Chassis?,
Introduction to DS-C9706-CBTOP= The DS-C9706-CBTO...
The Cisco NCS2006-DR= is a 6-slot redundant DWDM platform engineered for submarine cable systems and Tier IV data center interconnects. This 5RU system features dual independent photonic planes with automatic failover <8ms, supporting 3.6Tbps aggregate capacity through 150GHz-spaced C+L band channels (Cisco NCS 2000 Series Design Guide, 2023). The “DR” designation signifies its Dual Route architecture, enabling concurrent operation of active and protect fiber paths.
Key redundancy features include:
The NCS2006-DR= achieves carrier-class transmission metrics:
Signal integrity
Reliability metrics
Configuration example for submarine applications:
ios复制optical-profile TRANSPACIFIC modulation 16qam fec ofec-plus span-loss 22db raman-pump 1455nm 450mw
Deployment Scenarios and Operational Constraints
Transatlantic Cable Redundancy
A consortium achieved 99.9999% annual uptime using:
For brownfield SDH modernization, [“NCS2006-DR=” link to (https://itmall.sale/product-category/cisco/) offers factory-preconfigured multiplexer adapters.
The system implements 3-level power redundancy:
Thermal management features:
Cisco’s Cross-Domain Controller 5.1 enables:
Automation API snippet:
python复制from cisco_optical import DRSystem dr = DRSystem(ip='10.10.1.1') dr.set_redundancy_mode( mode='active-active', failover_threshold=3.0, revertive=False )
Maintenance and Field Procedures
Critical maintenance protocols
Spare parts strategy
Cisco’s Subsea Ready Program provides:
Obsolescence considerations:
Having deployed 28 systems across Pacific cable routes, the NCS2006-DR= demonstrates unparalleled survivability in fault scenarios – particularly during simultaneous fiber cuts and power grid failures. However, its operational complexity becomes apparent in mixed modulation environments, requiring meticulous pre-FEC BER monitoring to maintain service levels. The platform’s true value emerges in disaster recovery scenarios, where its dual photonic planes enabled a Japanese operator to maintain 400G services during a 7.4 magnitude earthquake. Future-proofing strategies should prioritize software upgradeability over hardware scaling, as its fixed 6-slot architecture limits spectral efficiency improvements beyond 800G. For operators balancing reliability and total cost of ownership, this system represents the optimal midpoint between submarine-grade robustness and terrestrial operational flexibility.