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Systèmes de contrôle des salles blanches et de surveillance environnementale

Système de gestion énergétique Cleanroom par

A metering and analytics platform that relates cleanroom HVAC and utility consumption to operating mode, room conditions and production schedules.
  • HVAC Energy Submetering
  • Production-Aware Baselines
  • Demand Peak Tracking
  • Setback Performance Analysis
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Introduction de produit

The cleanroom energy management system collects electrical, thermal and utility-meter data from AHUs, FFU groups, chillers, heaters, humidifiers and process-support systems. Dashboards normalize consumption by area, operating hours or selected production metric so unavoidable cleanroom loads are separated from abnormal waste. Trend overlays compare energy use with pressure, airflow, temperature and humidity to reveal whether a reduction strategy affects environmental performance. Alarmed demand limits, schedule review and setback reports help engineering teams target persistent excess consumption rather than isolated daily variation.

Key Features

Multi-utility metering combines electricity, chilled water, heating and compressed-gas data.

Baselines account for cleanroom area, occupancy schedule and selected process activity.

Energy and environmental trends appear on one timeline for cause-and-effect review.

Demand and setback reports reveal equipment that remains at production load during idle periods.

Préoccupations du client produit

Cleanrooms have high unavoidable ventilation loads, so useful energy analysis must distinguish process demand from control or scheduling waste.

A high monthly bill does not reveal which cleanroom system caused the increase.Submetering separates AHU, FFU, cooling, heating and utility loads by zone or asset.
Energy reduction is feared because it may disturb room conditions.Linked environmental trends show pressure, airflow and humidity alongside each efficiency change.
Equipment remains at full output after production ends.Schedule and setback reports flag assets whose measured load does not follow operating mode.
Raw consumption makes different suites impossible to compare fairly.Normalized indicators relate use to floor area, operating time or chosen production activity.

Les applications typiques

Multi-suite pharmaceutical plantsSemiconductor fabrication supportHospital cleanroom utilitiesEnergy-intensive research facilities

Paramètres techniques

Typical construction values for a cleanroom energy metering and analytics cabinet are shown below.

Matériaux de basePowder-coated steel metering cabinet with FR-4 acquisition modules, copper current terminals and industrial gateway
Panneau épaisseur220-450 mm cabinet depth
Largeur effective600-1200 mm enclosure width
Longueur maximaleUp to 2000 mm cabinet height
Acier face épaisseur1.5-2.0 mm powder-coated steel panels
Densité Core7800-8050 kg/m³ for steel cabinet components
Conductivité thermique45-60 W/(m·K) for steel enclosure panels
surface finieTextured light-gray powder coat with blue energy dashboard and labeled meter windows
Type jointSegmented DIN-rail cabinet with isolated voltage, current, pulse and network terminal zones
CustomisationDisponible en fonction de l'application prévue et de l'environnement d'exploitation.

Options disponibles

Electrical and thermal meteringDemand-limit alarmsProduction-normalized dashboardsBMS and utility API integration

Planning a Cleanroom Energy Management System specification?

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