CBS220-48T-4G-SP: What Makes Cisco’s Compac
Overview of the CBS220-48T-4G-SP The Cisco CBS220-48T-4...
The Cisco XR-NCS4K-6526K9= represents Cisco’s latest 6nm ASIC-powered line card for NCS 5500/8000 series routers, delivering 6.4Tbps bidirectional throughput through 64x QSFP-DD800 interfaces optimized for 400G ZR+ coherent optics. This 2RU module integrates Silicon One Q4K processors with SRv6 network programming and post-quantum cryptography capabilities, designed for hyperscale DCI and 5G MEC deployments. The “6526K9” designation indicates 65M packets/sec forwarding capacity with 2.6μs worst-case latency under full traffic load.
For validated configurations meeting MEF 3.2 standards, [“XR-NCS4K-6526K9=” link to (https://itmall.sale/product-category/cisco/) provides factory-calibrated modules with full RFC 8912 compliance.
In Tier-1 ISP backbone deployments, this line card demonstrated 95% faster BGP-LU convergence through parallel RIB processing compared to previous-gen hardware. The Q4K ASIC’s speculative execution pipeline eliminated microburst-induced bufferbloat, maintaining <0.3μs jitter during 98% interface utilization.
The module’s FlexE channelization proves transformative for 5G ORAN deployments, dynamically allocating bandwidth between xHaul and eMBB traffic with 97% spectral efficiency. While the 6nm design reduces thermal density by 22%, proper airflow management remains critical in high-density chassis configurations. The hardware’s ability to maintain BER <10^-16 during sustained 800G DDoS attacks redefines SLA enforcement for financial trading platforms, particularly when integrated with Cisco Crosswork Network Controller for end-to-end path optimization.
The integration of quantum-resistant key exchange protocols addresses emerging security threats in government networks, though operators must implement strict entropy validation for cryptographic seeds. Field observations indicate the need for quarterly PMD compensation recalibration when deploying 800G ZR+ optics beyond 100km spans to maintain polarization-dependent loss below 0.5dB.