Rear-Mounted. Blind-Mated. Front-Free.

Infinity Fiber Bus Bar — EBO blind-mate optical backplane for OCP ORv3/ORW racks. A flat-profile busbar that runs vertically at the rear alongside 48VDC power and liquid cooling, leaving the front face open for ELS pluggables and loopback adapters.

EBO Blind-Mate

>500 Cycles

Base-8/16

ORv3 Native

01

Main Features

01

Fiber, Power, and Cooling. Together.

The Infinity FBB is a flat-profile busbar that runs vertically at the rear of the rack, mounted parallel to the 48VDC busbar and liquid cooling distribution. This leaves the front face entirely free for ELS pluggable modules, thermal management, and loopback adapters. No front, nor back panel fiber clutter. Reduced blocked airflow.

02

Contamination-Resistant Connection

Expanded Beam Optics (EBO) reduces sensitivity to dust and contamination that would degrade insertion and return loss in traditional physical-contact connectors. The blind-mate interface guarantees alignment without visual inspection. Real plug-and-play — no patch management at the front or back.

03

Shelf-Level Redundancy

The blind mating at the back could allow for a 2RU sled containing multiple shelves, with ASIC distribution per shelf. If one shelf fails, technicians hot-swap that shelf independently without pulling the entire sled or disturbing the other ASICs. Four ASICs per sled, maintained at the shelf level. Aligned with OCP disaggregated design principles.

04

Why Copper Hits a Wall

Copper backplanes and NVLink cables scale poorly in weight, bulk, and bandwidth density. At 800G and 1.6T, copper reach, bend radius, and kilograms-per-rack become prohibitive. The Infinity FBB replaces heavy copper harnesses with lightweight fiber ribbons or round cables, made to length to eliminate overlength management inside the equipment.

02

9 Nodes. 72 GPUs. 1 Rear Busbar.

Rack Layout

  • 1 ORv3/ORW rack houses 9 AI nodes
  • Each AI node = 8 GPUs (4 top, 5 bottom configuration)
  • Leaf switches sit between the AI nodes
  • AI Node rear blind-mate interfaces:
    • 8× GPU C2C (chip-to-chip)
    • 2× Front End
    • 1× In-Band Management
  • Leaf Switch: 144 ports per 2RU
    • 72 ports to GPUs (downstream)
    • 72 ports to Spine network (upstream, outside the rack)

Fiber Bus Bar Placement

  • Infinity FBB runs vertically at the rear of the rack as a flat-profile bar
  • Mounted parallel to the 48VDC busbar and liquid cooling manifolds
  • EBO blind-mate ferrules align with each AI node and leaf switch sled
  • 9× EBO ferrule positions per connection point
  • Supports 144-port configurations (all 9 ferrules active)
  • Supports 128-port configurations (middle ferrule unused)
03

Technical Specifications

Parameter Specification
Physical
Form Factor Rear-mounted flat-profile fiber busbar for OCP ORv3 / ORW racks
Orientation Vertical run, mounted parallel to 48VDC busbar and liquid cooling manifolds
Integrated Shuffle Factory pre-terminated connectivity, no field testing required
Mating Type EBO (Expanded Beam Optics) blind-mate, 3M EBO and USCONEC PRIZM TMT
Mating Cycles >500
Ferrule Count 9× EBO ferrules per interface (supports 144-port or 128-port configs)
Fiber & Connectivity
Fiber Types MMF (OM4/OM5) and SMF (G.657.A1/A2)
Base Options Base-8 and Base-16 on EBO blind-mate side
Cable Construction Flat ribbon or round cable, made to length
Overlength Management Minimized via factory-cut, sled-specific lengths
Optical Performance
EBO Insertion Loss Low-loss expanded beam profile
Contamination Sensitivity Reduced vs. physical contact (PC/UPC/APC), factory pre-terminated
Return Loss Stable under typical data center dust exposure
Switch & GPU Shuffle Options
4×4 Rail-Optimised Switch-to-GPU or Leaf-to-Spine
8×8 Rail-Optimised Higher-density GPU clustering (custom)
Straight Mapping Non-shuffle CPO-to-back blind-mate assemblies
Transceiver Compatibility
Reach Options SR (MMF), DR (SMF), FR (SMF) — determined by CPO/NPO configuration
04

Deployment Scenarios

01

Photonics at the Front. Fiber at the Back.

CPO optimized, with ELS and loopbacks at the front for maximum maintainability and optimized ELS cooling. The Infinity FBB moves all fiber connectivity to the rear, co-located with power and cooling. The front is reserved for what matters: photonics, cooling, and serviceability.

02

From Copper Harness to Fiber Busbar

Replace bulky, weight-intensive NVLink copper bundles with a single lightweight fiber busbar. At 800G and 1.6T lane speeds, copper reach and bend radius become impractical. Fiber provides the bandwidth headroom without the kilograms — and the Infinity FBB delivers it in a hot-pluggable, blind-mate form factor.

03

Swap the Shelf, Not the Sled

OCP modularity demands component-level serviceability. With two shelves per sled and two ASICs per shelf, a technician can pull a single failed shelf without disturbing the other three ASICs. The EBO blind-mate disconnects cleanly. The fiber busbar stays in place. Downtime is measured in minutes, not hours.

05

Standards Alignment

OCP ORv3 / ORW OCP MGX Telcordia GR-1435 (EBO) IEC 61754-7 (MPO) RoHS

Move Fiber to the Rear. Free the Front.

Discuss your OCP ORv3 rack architecture, GPU-to-leaf shuffle requirements, and EBO blind-mate configuration with our engineering team. See the Infinity FBB rear-busbar integration live at our booth.

(内容由AI生成,仅供参考) (内容由AI生成,仅供参考)