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Under the Hood: Scaling AI infrastructure
Microsoft’s Deepak Bansal and Cisco’s Will Eatherton discuss the shift to AI-first infrastructure. They explore using DPUs and Sonic to improve network efficiency and cost-per-token, while analyzing the competition between hyperscalers and Neoclouds.
34:45
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Building Scalable AI Infrastructure: Neoclouds, GPU Clusters & Operational Excellence
Explore how Neoclouds are scaling AI infrastructure with GMI Cloud and Cisco. Learn about managing GPU clusters, simplifying operations with unified visibility, and deploying NCP-compliant architectures for predictable, high-performance AI services.
30:23
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AI Canvas troubleshoots across security and networking domains
AI Canvas correlates identity, endpoint, and network signals to detect a Volt Typhoon-style compromise, contain the breach, harden access with MFA and ZTNA, and protect critical financial apps with segmentation and continuous monitoring.
4:10
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Unified Architecture: Single SDK & P4 Programmability Across All Cisco Silicon One Chip Families
Advanced SerDes technology in Cisco Silicon One reduces AI data center power consumption. Discover how integrated retimers enable Linear Pluggable Optics, saving 500W per switch, along with direct copper cables that deliver zero-watt connectivity.
1:44
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Advanced SerDes Innovation: Cisco Silicon One Reduces AI Data Center Power with LPO & Direct Copper
Advanced SerDes technology in Cisco Silicon One reduces AI data center power consumption. Discover how integrated retimers enable Linear Pluggable Optics, saving 500W per switch, along with direct copper cables that deliver zero-watt connectivity.
2:05
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In-Band Network Telemetry: Cisco Silicon One Smart Stamping & Congestion Signaling for AI Networks
Cisco Silicon One offers in-band telemetry with smart stamping, congestion signaling, and packet trimming. Learn how real-time data embedded in packets enables dynamic congestion control, reduces latency, and optimizes AI workload performance.
1:47
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Adaptive Load Balancing: Cisco Silicon One Manages Mixed AI Traffic with Congestion-Aware Routing
Cisco Silicon One dynamically manages mixed traffic in distributed AI clusters. Discover microsecond-level congestion detection, intelligent rerouting, and adaptive load balancing that optimizes packet spraying and flowlet-based traffic flows.
1:42
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Traffic Engineering with Cisco Silicon One: AI-Driven Segment Routing, Policy & Static Pinning
Explore advanced traffic engineering capabilities enabled by Cisco Silicon One, including AI-driven segment routing, policy-based routing, and static pinning. Optimize data flows and ensure predictable performance.
2:19
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Network Trust & Security: Cisco Silicon One Hardware Root of Trust Verifies Genuine Device Identity
Cisco Silicon One establishes network trust with built-in hardware root of trust. Discover how the Cisco Trust Anchor module, secure boot, and ASIC verification protect against tampering, ensuring only authentic hardware and software operate securely
1:13
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Network Programmability: Cisco Silicon One P4-Powered Dynamic ASIC Updates Without Hardware Changes
Cisco Silicon One uses P4-powered programmability to enable dynamic ASIC updates without hardware changes. Learn how packet inspection, traffic shaping, advanced routing, and real-time policy enforcement help networks adapt to evolving standards.
1:39
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Reliable Burst Management: Cisco Silicon One Shared Memory Architecture Prevents Packet Loss in AI
The shared memory architecture of Cisco Silicon One handles synchronized GPU traffic bursts. Learn how dynamic buffer allocation prevents packet drops, ensures uninterrupted data delivery, and improves resource utilization for AI workloads.
1:12
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Intelligent Load Balancing: Cisco Silicon One Hardware-Driven Fault Recovery for AI Networks
Cisco Silicon One revolutionizes network recovery with hardware-driven fault detection and instant rerouting. Discover microsecond-level convergence, automatic bandwidth adjustment, and intelligent load balancing for AI workload efficiency.
1:47
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