Rack level | Hybrid air + liquid

240 kW Hybrid Air + Liquid AI Rack Emulator

Simulate the electrical and thermal characteristics of a high-density AI rack before the production servers arrive.

Pair of Fullde hybrid air and liquid AI rack emulators
Total load240 kW
Liquid load192 kW
Air load48 kW
Resolution1 kW

Commission the infrastructure before compute goes live.

A controllable 240 kW resistive load platform that combines liquid-side and air-side heat rejection in one rack-scale configuration. It supports coordinated validation of rack power paths, CDUs, secondary loops and air-side systems under the approved commissioning plan.

Technical specifications

Rated power
240 kW
Cooling split
192 kW liquid + 48 kW air
Rated voltage
AC 380 / 400 / 415 / 480 V
Loading resolution
1 kW
Reference dimensions
600 x 1200 x 2300 mm
Power factor
1.0 resistive load
Control
Local touchscreen; remote control optional
Monitoring
Voltage, current, active power, frequency, liquid-side temperature, flow and pressure functions
Protection
Over-voltage, over-current, over-temperature, overload, low-flow, high-temperature and leak protection
Environment
+5 C to +50 C; RH <= 90%; altitude <= 1500 m
Enclosure
IP20 indoor
Technology & Manufacturing Partner: Fullde

Where the equipment fits.

Final test responsibilities and procedures remain governed by the approved project commissioning plan and the CxA.

01AI rack power-path validation
02CDU and secondary-loop validation
03Hybrid air/liquid thermal testing
04Heat-load testing
05Functional performance testing support
06Integrated systems testing support

Designed around the commissioning task.

01

Why Hybrid Rack Emulation Matters

High-density AI racks can reject heat through both liquid and air. Applying both loads together allows the project team to observe how the electrical path, CDU, secondary loop, CRAH/containment strategy and controls respond as one system.

02

Electrical Load Simulation

The resistive platform introduces controlled rack-scale demand in 1 kW increments. Staged loading supports power-path checks, steady-state operation, transfer scenarios and repeatable demand conditions before live compute is installed.

03

Liquid Cooling Validation

The 192 kW liquid load exercises CDU capacity and secondary-loop response. Liquid-side temperature, flow and pressure functions can be observed while the test team works through the approved procedures.

04

Air-Side Heat Rejection

The 48 kW air load adds the air-side component of the rack profile, supporting room airflow, containment, temperature response and heat-rejection checks alongside liquid testing.

05

Controls & Monitoring

A local touchscreen is standard and remote control is optional. Electrical parameters and liquid-side operating functions can be monitored during controlled load testing.

06

Commissioning Applications

Use the emulator for rack power-path testing, CDU and secondary-loop validation, thermal response testing and equipment support for L4 functional performance testing and L5 integrated systems testing under the approved project commissioning plan.

07

AMOR Deployment & Field Support

Amor can support configuration, mobilization, site-readiness coordination, temporary electrical and liquid interfaces, setup, operating support, troubleshooting and data-capture coordination with the owner, CxA, GC, EC and mechanical teams.

More than equipment delivery.

Equipment and field support for L4 functional performance testing, heat-load testing and L5 integrated systems testing under the approved project commissioning plan.

  • Equipment selection and configuration
  • Mobilization and site-readiness coordination
  • Temporary electrical interface coordination
  • Liquid connection coordination
  • Equipment setup and operating support
  • Troubleshooting and data-capture support
  • Coordination with owner, CxA, GC, EC and mechanical teams

Project requirements

Send us your rack requirements

Tell us enough about the power, cooling architecture and commissioning stage to begin the correct equipment review.

Send us your rack requirements
01Project location02Required MW / kW03Rack type and density04Voltage05Air / liquid / hybrid cooling06Test stage07Anticipated test date