Full-stack data center cooling — from CRAC and CRAH precision units and air handling to chillers, liquid cooling, and immersion. Engineered for AI-density heat loads and Saudi ambient extremes, integrated with the Tabrid AI platform.

Direct-Expansion Precision Cooling
Direct-expansion precision air conditioning for data halls, server rooms, and edge sites. Close-control of temperature and humidity for continuous IT operation.
Chilled-Water Precision Cooling
Chilled-water computer room air handler for large data centers served by a central chilled-water plant. High sensible cooling with EC fan arrays for efficient airflow control.
Custom Modular Air Handling
Custom modular air handling units for commercial, industrial, and critical environments. Configurable filtration, heat recovery, and coil sections built to project specification.
Redundant Fan-Array Air Handling
Fan wall air handling units built on a redundant EC fan array for N+1 reliability and low acoustic output. Maintains airflow under single-fan failure for mission-critical spaces.
Water-Cooled Close-Control
Close-control water-cooled unit for environments requiring tight, stable temperature and humidity. Suited to facilities with available condenser or chilled-water loops.
Central Plant Chilled Water
Air-cooled and water-cooled chillers for central cooling plants. Low-GWP refrigerant options and high part-load efficiency for Saudi ambient conditions.
High-Density Rack Cooling
Liquid cooling for high-density AI and HPC racks — coolant distribution units (CDU), rear-door heat exchangers (RDHX), and in-row units that bring cooling close to the heat source.
Ultra-High-Density Compute
Immersion cooling for ultra-high-density AI compute, submerging hardware in dielectric coolant to remove heat directly from components with minimal fan energy.
AI training and HPC have pushed rack power densities past what air alone can remove. We match the cooling method to the heat load — air where it works, liquid and immersion where it doesn't — across one integrated platform.
Up to ~20 kW / rack
CRAC, CRAH, AHU, and fan-wall units deliver close-control precision cooling for conventional compute and mixed-density halls.
~20–80 kW / rack
CDU, rear-door heat exchangers, and in-row units bring cooling to the rack — the efficient path for dense GPU and HPC deployments.
80 kW+ / rack
Direct dielectric immersion removes heat at the component for the highest-density AI training clusters, at very low cooling-energy overhead.
Every system feeds the Tabrid AI platform for real-time thermal monitoring, PUE tracking, and predictive maintenance.
Tabrid.ai provides CRAC and CRAH precision cooling, custom air handling units, fan-wall and close-control water units, air- and water-cooled chillers, liquid cooling (CDU, rear-door heat exchangers, in-row), and immersion cooling for the highest-density AI compute.
Yes. Tabrid.ai matches the cooling method to the heat load: air cooling up to roughly 20 kW per rack, liquid cooling (CDU, RDHX, in-row) for roughly 20–80 kW, and immersion cooling for 80 kW and above — the density range required by AI training clusters.
Yes. The data center cooling line offers AHRI-certified performance aligned with SASO 2874 Path A, and is engineered for Saudi ambient extremes and Vision 2030 energy efficiency requirements.
Yes. Every Tabrid.ai cooling system feeds the Tabrid AI platform for real-time thermal monitoring, PUE tracking, and predictive maintenance.
From CRAC and CRAH to chillers, liquid cooling, and immersion — our engineering team will design the right thermal solution for your facility and rack density.
Request a DemoNo commitment required. Typical demo is 30 minutes.