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Systèmes de contrôle des salles blanches et de surveillance environnementale

Système de contrôle VAV

A pressure-independent variable air volume package that measures branch airflow and regulates a VAV damper across changing duct static pressure.
  • Pressure-Independent Airflow
  • Integrated Flow Measurement
  • Minimum and Maximum Limits
  • Networked Actuator Feedback
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Introduction de produit

The VAV control system integrates a differential pressure sensor, airflow calculation, controller and direct-coupled actuator on a factory-assembled terminal. It maintains the requested airflow even when upstream duct pressure varies within the operating range. Configurable minimum and maximum limits protect ventilation requirements and cap excessive branch flow. Supply, return and exhaust terminals can exchange airflow values with room pressure logic, while network communication exposes actual volume, setpoint, damper position and alarms to the supervisory system.

Key Features

Pressure-independent control compensates for normal changes in upstream duct static pressure.

Factory-arranged sensor tubing and actuator linkage reduce field assembly variables.

Minimum and maximum airflow limits keep operation within the terminal's useful control range.

Network feedback reports actual airflow, requested airflow and damper position separately.

Préoccupations du client produit

A VAV branch must deliver stable air volume even as the main duct pressure changes with other terminal demands.

Airflow rises when other branches close and duct pressure increases.Pressure-independent measurement and damper control hold the requested branch volume.
A terminal cannot control accurately below its usable sensor range.Configured minimum airflow prevents operation in the unstable low-signal region.
Field-installed tubing is reversed or pinched during commissioning.Clearly identified high and low ports with short factory-routed tubing reduce connection errors.
The BMS sees actuator position but cannot verify delivered air volume.Independent airflow feedback confirms actual branch performance rather than inferred damper movement.

Les applications typiques

Cleanroom supply-air terminalsLaboratory exhaust branchesAirlock transfer airflowVariable-occupancy controlled rooms

Paramètres techniques

Typical materials and dimensions for a pressure-independent cleanroom VAV terminal are shown below.

Matériaux de baseGalvanized steel VAV casing with aluminum sensing cross, polymer controller and copper motor windings
Panneau épaisseur180-450 mm terminal depth
Largeur effective150-800 mm nominal duct width or diameter
Longueur maximaleUp to 1200 mm terminal assembly length
Acier face épaisseur0.8-1.2 mm galvanized steel casing
Densité Core7800-8050 kg/m³ for steel casing and damper components
Conductivité thermique45-60 W/(m·K) for galvanized steel structural parts
surface finieClean zinc-coated steel casing with white controller and blue or orange actuator accent
Type jointCircular spigot or rectangular flange with integral averaging pickup and direct-coupled actuator
CustomisationDisponible en fonction de l'application prévue et de l'environnement d'exploitation.

Options disponibles

Circular or rectangular terminalSupply, return or exhaust dutySpring-return actuatorBACnet MS/TP or Modbus RTU

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