VR2-0686

① SA Source

Context Before

What this means is that deployment of large-scale GPU clusters will continue to require multi-plane network architectures. Do note however that multi-plane networking architectures are not limited by size and we have also seen NVIDIA reference architecture deployments with multi-plane clusters that are significantly below 100k GPUs each.

In multi-plane network architectures using the SN6600 switch instead of the CPO switch, each GPU fans out to multiple switch boxes using fiber shuffles. This requires customers to deploy shuffle boxes, patch panels and unwieldy octopus cables outside the switch box that introduce complexity in installation and maintenance.

Evidence

They therefore deliver higher aggregate bandwidth – 409.6T and 115.2T respectively than is possible with a switch box based on a single Switch ASIC

Context After

image

Source: Nvidia VR NVL72 Component BoM and Power Budget Model

② Atomic Claim

因此它們可提供更高 aggregate bandwidth,分別達 409.6T 與 115.2T,高於只用單顆 Switch ASIC 的 switch box。

  • Epistemic Mode: ASSERTED
  • Mapping Status: PARTIAL

③ Semantic Frame

{
  "comparison_expression": "因此它們可提供更高 aggregate bandwidth,分別達 409.6T 與 115.2T,高於只用單顆 Switch ASIC 的 switch box。",
  "entities": [
    {
      "id": "04_knowledge_base/Switch ASIC",
      "label": "Switch ASIC"
    }
  ],
  "frame_type": "COMPARISON",
  "metric": "BANDWIDTH",
  "operator": "GREATER_THAN",
  "qualifiers": {
    "condition_text": null,
    "numeric_mentions": [
      "409.6",
      "115.2"
    ],
    "temporal_mentions": []
  }
}

④ Canonical Entity Mapping

RoleSurface LabelCanonical Target
comparison_entity_0Switch ASIC04_knowledge_base/Switch ASIC

⑤ Human Review

請在 Properties 逐項確認:

  • 原文 → Atomic Claim 是否忠實
  • Atomic Claim → Semantic Frame 是否忠實
  • Canonical Entity mapping 是否正確
  • Epistemic mode 是否保留原文語氣
  • 最後選擇 review_action

Review state

Markdown 內文不是正式 approval。只有 Apply bridge 寫入的 Decision Ledger event 才是正式決策。