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2V0-13.24 · Question #4

A customer defined a requirement for the newly deployed SDDC infrastructure which will host one of the applications responsible for video streaming. Application will run as part of a VI Workload…

The correct answer is C. Deploy NSX bare-metal Edges and create Edge Cluster using NSX console. For 250 Gb/s throughput and low latency in a VI Workload Domain, NSX Edges must handle high- performance traffic. Option C, "Deploy NSX bare-metal Edges and create Edge Cluster using NSX console," is optimal: bare-metal Edges in NSX-T 3.2 (VCF 5.2) support up to 100 Gb/s per…

Plan and Design the VMware Solution

Question

A customer defined a requirement for the newly deployed SDDC infrastructure which will host one of the applications responsible for video streaming. Application will run as part of a VI Workload Domain with dedicated NSX instance and virtual machines. Required network throughput was defined as 250 Gb/s. Additionally, the application should provide the lowest possible latency. Which design decision should be recommended by an architect for the NSX Edge deployment?

Options

  • ADeploy 2 NSX Edges using NSX console and add to Edge cluster created in SDDC Manager.
  • BDeploy 4 extra large edges using vCenter Server console.
  • CDeploy NSX bare-metal Edges and create Edge Cluster using NSX console.
  • DDeploy 2 large NSX Edges using SDDC Manager.

How the community answered

(36 responses)
  • A
    3% (1)
  • B
    14% (5)
  • C
    78% (28)
  • D
    6% (2)

Explanation

For 250 Gb/s throughput and low latency in a VI Workload Domain, NSX Edges must handle high- performance traffic. Option C, "Deploy NSX bare-metal Edges and create Edge Cluster using NSX console," is optimal: bare-metal Edges in NSX-T 3.2 (VCF 5.2) support up to 100 Gb/s per node, and clustering multiple nodes achieves 250 Gb/s with minimal latency due to direct hardware access, ideal for video streaming. Option A (2 VM Edges) and D (2 large VM Edges) cap at ~20 Gb/s per node, insufficient for 250 Gb/s. Option B (4 extra-large VM Edges) improves throughput but increases latency via virtualization overhead. Bare-metal is the verified high- performance choice.

Topics

#NSX Edge#bare-metal edges#network throughput#edge cluster design

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