Cooling engineered for the real heat load, not the room.

Precision cooling designed around actual rack density, heat generation and airflow: DX, chilled-water, high-density and liquid cooling, with airflow management and data-centre cooling design.

How it works Concept model
1 2 3
  1. 01 · Model Assess heat load and airflow Density · heat · paths
  2. 02 · Design Engineer the cooling method DX · chilled water · liquid
  3. 03 · Assure Build for redundancy and growth Resilience · efficiency · scale

A conceptual sequence used to explain the service, not a customer deployment.

What it is

Efficient cooling for critical infrastructure, designed around actual rack density, heat generation and airflow rather than simply room temperature, and built for redundancy and growth.

  1. 01

    Heat-load and airflow assessment

  2. 02

    Cooling method selection

  3. 03

    Redundancy and temperature-distribution design

  4. 04

    Scalability and efficiency planning

Cooling matched to the environment

  • Direct expansion (DX) coolingFor rooms and edge environments
  • Chilled-water systemsFor larger and denser facilities
  • High-density coolingFor concentrated rack heat loads
  • Liquid coolingFor AI and high-performance computing
  • Data-centre cooling designWhole-room airflow and thermal strategy
  • Airflow managementContainment, paths and distribution

Engineered, available and ready to grow

Engineered for the real heat load

Cooling is designed around actual rack density, heat generation and airflow, not simply room temperature.

Designed for availability

Redundancy, airflow paths, temperature distribution and operational resilience are considered from the start.

Ready for growth

Cooling scalability and energy efficiency are built into the infrastructure plan.

How we deliver it

  1. Step 1

    Assess

    Measure heat load, rack density, airflow and constraints.

  2. Step 2

    Design

    Select the cooling method, redundancy and airflow strategy.

  3. Step 3

    Deploy

    Install and commission through an approved plan.

  4. Step 4

    Support

    Maintain performance with preventive maintenance and AMC.

Questions about this service

How is cooling capacity determined?

Cooling is designed around actual rack density, heat generation and airflow, not simply room temperature, so capacity matches the real heat load.

Which cooling methods does CDS design?

Direct expansion (DX), chilled-water, high-density and liquid cooling, alongside data-centre cooling design and airflow management.

Is the design ready for growth?

Cooling scalability and energy efficiency are built into the infrastructure plan, with redundancy, airflow paths and temperature distribution considered for operational resilience.

Start with the conditions around cooling.

Describe the current environment, the change you are considering and what the result must support.