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Unlock Capacity From Existing Infrastructure

Adiabatic precooling systems that improve performance, reliability, and efficiency—without replacing your existing equipment.

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How Retrofit Deployments Improve Performance

Existing data centers are often limited by peak temperature conditions that reduce capacity and increase system stress. Peak+ retrofit solutions add controlled adiabatic precooling to improve reliability, capacity, efficiency, and extend compressor life.

Resolve HVAC Reliability Issues

High ambient conditions increase:

  • Compressor strain
  • System cycling
  • Risk of failure

Peak+ reduces thermal load during peak conditions, improving:

  • System stability
  • Operational reliability
  • Uptime
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lower-PUE

Increase Efficiency through Lower PUE

Efficiency losses are most severe during peak conditions. Lowering condenser temperatures improves performance when it matters most.

By reducing condenser temperatures:

  • Compressor energy use decreases
  • System efficiency improves
  • Peak PUE is lowered

Extend Compressor and Condenser Coil Life

Sustained high temperatures accelerate wear on critical components. Reducing operating stress helps extend equipment lifespan.

Peak+ helps:

  • Lower operating stress
  • Reduce maintenance frequency
  • Extend equipment lifespan
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Large circular industrial ventilation fans on a rooftop with metal grates and railings.

Increase Capacity of Aging Equipment

Older systems often lose performance under peak demand conditions. Adiabatic precooling helps recover and extend usable capacity.

Adiabatic precooling:

  • Restores lost capacity
  • Improves performance during extreme conditions
  • Delays or avoids equipment replacement

Proven Results in Real Climates

Private Data Center

The owner of a large data center facility with 3,310 Tons of air-cooled HVAC equipment had...

Peak+ Data Center Site Performance

Peak+ deploys sensors to measure site performance as part of its core product package...

CASE STUDY: 55MW Nevada Data Center

Conversion from Water-Cooled Plant to Air-Cooled Chillers Within a Fixed 65MW Utility Allocation...

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Partners

Dimly lit data center with rows of black server racks and overhead industrial lighting.

Confidential Data Center

State:   NV
Size:   55 MW
Cooled Temp:   110F

97% reduction in annual water usage by replacing cooling towers with air-cooled chillers with adiabatic assist.

Aerial view of a large industrial building with parking lots surrounded by green fields and trees.

Confidential Data Center

State:   NJ
Size:   5 MW
Cooled Temp:  

Kept air-cooled chillers online during peak demand periods - significantly reducing nuisance trips, unplanned shutdowns, and electrical demand charges.

Aerial view of a large industrial building with parking lots surrounded by green fields and trees.

Confidential Data Center

State:   OR
Size:   22 MW
Cooled Temp:   95F

Maintained cooling performance during >95 F ambient conditions in a heavily loaded data hall that had previously experienced repeated SLA violations.

Design for Peak Performance From Day One

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Close-up of industrial HVAC units and piping on a rooftop.