SmartAir

SmartAIR® is an industrial intelligent ventilation airflow control system. SmartAIR® is the most energy efficient LEV control system available for multi-branch systems.

Top Key Features

  • Can provide real time monitoring of the branch air flows.
  • If the air flow drops due to an internal duct blockage, an immediate warning alarm is provided to the operator
  • Can be retrofitted into existing dust extraction/fume extraction/LEV and industrial ventilation systems.
  • Extends filter life and reduces compressed air costs, as filter differential pressures are maintained at the lowest possible levels. 
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Overview

SmartAIR® is an industrial intelligent ventilation airflow control system. SmartAIR® is the most energy efficient LEV control system available for multi-branch systems.

SmartAIR® provides maximum energy savings and the lowest running costs for industrial ventilation systems. SmartAIR®, compared to any other competitive or ‘constant pressure’ controlled dust extraction and fume extraction, this intelligent ventilation airflow control system can provide energy efficient LEV control for multi branch systems.

SmartAIR® is unique in that it optimises both the industrial ventilation fan speed and pressure. Resulting in a far greater energy saving and a lower carbon footprint is available compared to any other industrial ventilation system on the market, worldwide.

SmartAIR® is a patented intelligent airflow control system which reduces energy consumption, precisely controls branch airflows and works with minimum human input.

Using a variable speed drive and modulating dampers, SmartAIR® optimises the motor speed for the airflow demand of the system.

Key Features

  • Can provide real time monitoring of the branch air flows.
  • If the air flow drops due to an internal duct blockage, an immediate warning alarm is provided to the operator
  • Can be retrofitted into existing dust extraction/fume extraction/LEV and industrial ventilation systems.
  • Extends filter life and reduces compressed air costs, as filter differential pressures are maintained at the lowest possible levels. 
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