5U 5gpu barebone-3
5U 5gpu barebone-5
5U 5gpu barebone-4
5U 5gpu barebone-3
5U 5gpu barebone-2
5U 5gpu barebone-1
5U 5-GPU Barebone

5U 5-GPU Barebone Platform

5U 5-GPU barebone platform for multi-GPU system integration, supporting up to five 4090-class GPUs with Gen4 risers and 4 × 1600W CRPS redundant power.

Technical Specifications

Model
OCG5880-5H4-L
Form Factor
5U Rackmount Chassis
Dimensions (W × D × H)
483 × 880 × 220mm
Material
1.0mm SGCC Zinc-Coated Steel
GPU Support
Up to 5 GPUs (5 × PCIe 3.0 x16)
GPU Riser
5 × Gen4 GPU riser cards
Motherboard
Up to E-ATX (12″ × 13″)
Drive Bays
4 × 3.5″ hot-swappable SATA II/III or SAS II/III 12Gb/s drive bays
Cooling Fan
6 × 120mm fans (3 × 12038 chassis fans + 3 × GPU reinforcement fans)
Power Supply
4 × 1600W CRPS modules, 4+1 redundancy
Connector
2 × USB 3.0
System Control
1 × Power SW, 1 × Reset SW, 1 × LAN LED, 1 × Alert LED
Optional
3 × 8654-8i dual-port cards


KEY FEATURES

Engineering Priorities for Multi-GPU Platforms

Six engineering priorities for a reliable multi-GPU platform.

01 / GPU1

GPU Density Planning

Review GPU quantity, card dimensions, slot width, and mechanical clearances.

GPU · SLOT · CLEARANCE
Discuss Configuration
02 / PCIE2

PCIe Topology Review

Confirm lane allocation, riser direction, slot mapping, and platform topology.

LANES · RISER · TOPOLOGY
Discuss Configuration
03 / POWER3

Power Architecture

Match GPU and system power requirements with the planned PSU configuration.

PSU · CABLE · DISTRIBUTION
Discuss Configuration
04 / COOLING4

Cooling Architecture

Evaluate airflow direction, fan layout, component heat loads, and deployment conditions.

AIRFLOW · FANS · THERMAL
Discuss Configuration
05 / BOARD5

Motherboard Integration

Review board format, connector position, CPU layout, memory, and expansion requirements.

BOARD · CPU · EXPANSION
Discuss Configuration
06 / RACK6

Rack & Mechanical Fit

Confirm rack height, chassis dimensions, rail direction, service access, and installation constraints.

RACK · RAIL · SERVICE
Discuss Configuration

GPU COMPATIBILITY

Confirm the Complete GPU Fit

Compatibility is validated by GPU model, dimensions, power, PCIe topology, connector layout, and cooling.

Mechanical Envelope

Confirm card length, height, slot width, bracket position, and cable clearances.

Electrical & Power

Review GPU power rating, connector type, cable routing, PSU capacity, and distribution.

PCIe Topology

Confirm lane allocation, slot mapping, riser direction, motherboard topology, and BIOS requirements.

Thermal Conditions

Review airflow direction, cooling requirements, ambient conditions, and sustained workload profile.

Request Compatibility Review

DEPLOYMENT REFERENCE CONFIGURATIONS

Plan the Platform Around the Deployment

Compare practical platform directions by GPU density, rack limits, power, and service access.

Reference patterns include GPU cloud nodes, research validation systems, and private-AI platforms. Final configurations are confirmed per project.

WHY ONECHASSIS

A B2B GPU Hardware Platform Approach

ONECHASSIS focuses on GPU barebone platform selection, configuration review, and integration discussion for professional computing projects.

01

Platform Integration Review

Discuss GPUs, motherboard, PCIe, power, cooling, rack format, and mechanical requirements as one platform.

02

Project Configuration Communication

Review required components, interfaces, deployment constraints, and questions before quotation.

03

OEM / ODM Discussion

Discuss project-specific chassis, platform, branding, mechanical, and integration requirements when applicable.

04

B2B RFQ Process

Share the intended configuration and project context so the quotation can reflect the actual hardware direction.

REQUEST QUOTE

Request a Configuration Review

Share your planned GPU, motherboard, power, cooling, and rack requirements for project review.