JN0-683 · Question #30
You are deploying a new network to support your AI workloads on devices that support at least 400 Gbps Ethernet. There is no requirement for any Layer 2 VLANs in this network. Which network…
The correct answer is D. an IP fabric using EBGP. For high-performance AI workloads requiring speeds of 400 Gbps or more, a pure Layer 3 IP fabric using EBGP underlay routing is typically deployed for scalability and efficiency. This avoids the complexities of Layer 2 VLANs and minimizes oversubscription. EBGP-based IP fabrics…
Question
You are deploying a new network to support your AI workloads on devices that support at least 400 Gbps Ethernet. There is no requirement for any Layer 2 VLANs in this network. Which network architecture would satisfy this requirement?
Options
- Aan IP fabric using PIM-SM to signal VXLAN overlay
- Ban IP fabric using the EVPN-MPLS architecture
- Can IP fabric with an EVPN-VXLAN architecture
- Dan IP fabric using EBGP
How the community answered
(50 responses)- A4% (2)
- B4% (2)
- C14% (7)
- D78% (39)
Explanation
For high-performance AI workloads requiring speeds of 400 Gbps or more, a pure Layer 3 IP fabric using EBGP underlay routing is typically deployed for scalability and efficiency. This avoids the complexities of Layer 2 VLANs and minimizes oversubscription. EBGP-based IP fabrics are common in modern data centers to provide large-scale, scalable, and high-bandwidth connectivity between leaves and spines with VXLAN or other overlays as appropriate but without mandatory Layer 2 VLANs. EBGP-based IP fabrics typically provide a pure Layer 3 routing underlay that scales easily with high port speeds such as 400Gbps.
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