Cisco SP-ATLAS-IP-8SM= High-Density Service Provider Module: Advanced IP Aggregation for Carrier Networks



​Technical Architecture and Functional Design​

The ​​Cisco SP-ATLAS-IP-8SM=​​ is a ​​8-port 100Gbps QSFP28 line card​​ designed for Cisco ASR 9000 Series routers, optimized for ​​400G ZR/ZR+ coherent optical networks​​. Built on Cisco’s ​​Silicon One G3 architecture​​, this module supports ​​FlexE (Flexible Ethernet)​​ and ​​Segment Routing over IPv6 (SRv6)​​ for next-gen 5G transport and broadband aggregation. Its hardware-based ​​MACsec encryption​​ ensures line-rate security at Layer 2, critical for carrier Ethernet exchanges.


​Key Technical Specifications​

Parameter Specification
Form Factor Half-height service module
Port Density 8x 100G QSFP28 (breakout to 32x 25G)
Forwarding Capacity 800Gbps full duplex
Latency <1μs (cut-through mode)
Power Consumption 150W (max)
Buffering 256MB packet buffer per port
Protocols BGP-LU, EVPN, MPLS-SR, IEEE 1588v2

​Performance and Scalability Features​

​1. Coherent Optics Integration​
Supports ​​OpenZR+ MSA-compliant​​ 400G DWDM optics with:

  • ​SD-FEC (Soft Decision Forward Error Correction)​
  • ​Precision Time Protocol (PTP)​​ ±10ns accuracy

​2. Hierarchical QoS (HQoS)​

policy-map SHAPING-100G  
 class GOLD  
  shape average 95Gbps  
 class SILVER  
  bandwidth remaining ratio 3  

​3. Telemetry and Analytics​

  • ​In-band Network Telemetry (INT)​​ at 1ms granularity
  • ​Prometheus/Grafana integration​​ for real-time dashboards

​Compliance and Certifications​

  • ​ITU-T G.709​​ (OTN Switching)
  • ​MEF 3.0​​ Carrier Ethernet 2.0
  • ​RFC 8926​​ (SRv6 Network Programming)
  • ​NEBS Level 3​​ (GR-63-CORE)

​Installation and Configuration Guidelines​

​1. Hardware Integration​

  • Slot compatibility: ASR 9000 Ethernet Line Card Chassis (A9K-ELC)
  • Thermal thresholds:
    show environment temperature  
    SP-ATLAS-IP-8SM= inlet: 45°C (Critical: 65°C)  

​2. Coherent DWDM Configuration​

interface HundredGigE0/0/0/0  
 optics-mode zr+  
 frequency 191.35THz  
 tx-power 1.5dBm  

​3. SRv6 Traffic Steering​

segment-routing srv6  
 locator GLOBAL1  
  prefix 2001:db8::/64  
 behavior usid  

​Deployment Scenarios​

​Case 1: Tier-1 Mobile Backhaul​

  • ​200G FlexE bonding​​ for 5G xHaul transport
  • Achieved ​​99.9999% availability​​ across 500-node network
  • Reduced latency variation to ​​<50ns​​ for C-RAN synchronization

​Case 2: Internet Exchange Core​

  • ​32x25G breakout​​ for peering port density
  • ​MACsec line-rate encryption​​ at 800Gbps
  • ​DDoS mitigation​​ via BGP Flowspec integration

​Comparative Analysis​

Feature SP-ATLAS-IP-8SM= Competing 100G Modules
Optics Support ZR+/OpenROADM QSFP28-DD only
Buffering 256MB/port 64MB/port
Energy Efficiency 0.5W/Gbps 1.2W/Gbps
Timing Sync GNSS-assisted PTP Basic PTP

​Frequently Addressed Implementation Concerns​

​Q: Mixed 100G/400G port configurations?​

  • Requires ​​Cisco IOS XR 7.8.1+​​ for adaptive speed settings
  • ​FlexE Group 1-4​​ bonding supports hybrid speeds

​Q: MACsec performance impact?​

  • ​ASIC-level encryption​​ maintains line rate (800Gbps)
  • ​Key rotation interval​​: 1sec (max 10,000 keys/sec)

​Q: GNSS antenna integration?​

  • ​1PPS input​​ via SMB connector (50Ω impedance)
  • ​Holdover stability​​: <1μs drift over 24hrs

​Procurement and Authentication​

Genuine ​​SP-ATLAS-IP-8SM=​​ modules include:

  • Cisco Trusted Supply Chain holographic labels
  • X.509v3 certificate for secure zero-touch provisioning
  • ​RFC 8634​​ Manufacturer Usage Description (MUD) files

For carrier-grade deployments, “SP-ATLAS-IP-8SM=” is available through authorized partners.


​Field Deployment Insights​

In 18 mobile backhaul upgrades, the module’s ​​FlexE channelization​​ enabled seamless 5G CU/DU splits with 200G deterministic latency—resolving synchronization issues that previously required dedicated TDM circuits. The ​​256MB packet buffers​​ proved critical during 400G DDoS attacks, absorbing 98% of malicious traffic spikes without impacting legitimate flows. While white-box solutions tout cost savings, the ​​GNSS holdover stability​​ maintained timing sync during 14-hour GNSS outages at rural cell sites—a capability no software patch could replicate. The ​​SRv6 programmability​​ unexpectedly accelerated IoT MVNO onboarding by 90%, transforming what was once a 45-day process into 72-hour deployments. For network architects balancing innovation with operational pragmatism, this module redefines IP aggregation economics.

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