Industrial Air Conditioners
Air / Water Cooled Air Conditioner
Steady, clean, cool air for the rooms that keep your plant running, even beside the furnace.

Product overview
Cool electrical rooms in the hottest corners of your plant
Our air / water cooled industrial air conditioner removes heat and moisture from the rooms that house your electrical, electronic and control equipment: switchrooms, drive rooms, motor control centre rooms, control rooms, UPS and battery rooms, E-houses and operator pulpits, in plants where the surrounding air can reach 50–55 °C.
It is built with one of two condensing methods. Air-cooled units reject the heat to outdoor air and need only power, so they can sit on a roof, an outer wall or an E-house skid. Water-cooled units reject it to your plant cooling water, so they can sit inside a hot, dusty building where no clean outdoor air is available.
It runs 24 hours a day, 365 days a year, filters the room air and conditions a controlled flow of filtered fresh air that holds the room at a slight positive pressure, keeping dust and corrosive gases out.
- 22–27 °CTypical room condition, below 60 % RH
- 50–55 °CSurrounding plant air it is designed for
- 35 °C24-hour average limit it keeps you within
- 24 hoursA day, 365 days a year, continuous duty
Benefits
The problems it solves
Every watt your drives and switchgear lose becomes heat in a closed room. Here is what that heat, and the plant air around the room, does to your equipment, and how the air conditioner stops it.
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A room that overheats in minutes
The problem
A 30 kW drive loss in a room with 300 m³ of air would raise it by roughly 5 K per minute if no heat left the room.
How it solves it
The unit absorbs the equipment heat continuously, so room temperature stays constant while your plant runs at full load.
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Plant air too hot to ventilate with
The problem
Near furnaces, kilns and casting lines, air at 45–55 °C cannot bring a room below the IEC 61439-1 average limit of 35 °C.
How it solves it
The refrigeration cycle keeps working in surrounding air of 50–55 °C, holding the room within equipment ambient ratings.
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Drives derating and tripping
The problem
Output current is commonly derated above 40 °C ambient, so an overheated drive room forces motors below their required power, or trips them.
How it solves it
Your drives deliver their full rated current, and production continues through summer peaks.
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Equipment ageing fast
The problem
Capacitor life roughly halves for every 10 K rise, and lead-acid battery life roughly halves for every 8–10 K above 25 °C.
How it solves it
Lower operating temperatures slow capacitor ageing, battery degradation and insulation breakdown.
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Dust and corrosive gases
The problem
Conductive dust tracks across insulators, and hydrogen sulphide, sulphur dioxide and chlorine corrode copper and silver on circuit boards.
How it solves it
Filtered fresh air and positive room pressure keep dust and corrosive gases away from your boards and contacts.
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Condensation on busbars
The problem
In humid climates, moisture condenses on busbars and circuit boards, causing insulation breakdown and corrosion.
How it solves it
The coil removes moisture, keeping the room dew point well below your equipment's surface temperatures.
Where it’s used
Beside furnaces, kilns and melting tanks
The rooms that run your process often sit right next to its hottest, dustiest parts.
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Iron and steel
Drive and electrical rooms for blast furnaces, electric arc furnaces, continuous casters and rolling mills, and pulpit control rooms near hot metal.
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Cement and lime
Electrical rooms near kilns, raw mills and packing plants, facing heavy dust loading and radiant heat.
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Glass and ceramics
Furnace control rooms and forming line electrical rooms beside melting tanks and kilns.
Also aluminium and non-ferrous smelting, mining and mineral processing, oil, gas and petrochemicals, power generation and transmission, pulp and paper, chemicals and fertilisers, water and wastewater, ports, rail and transport, and data and telecom rooms within industrial sites.
How it works
One cycle, two ways to reject the heat
A vapour-compression cycle lifts the heat out of your electrical room and hands it to outdoor air or to your plant cooling water.
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1. Cool and dry the room airRoom air at 25 °C and filtered fresh air cross the evaporator, where R-134a boils at 5 °C and 3.5 bar absolute. The coil sits below the air's 13.9 °C dew point, so water condenses and leaves through the trapped drain, and the cool air returns at about 12–16 °C.
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2. CompressThe compressor raises the vapour to the condensing pressure: 11.6 bar absolute for condensing at 45 °C, a pressure ratio of about 3.3. The hot gas leaves at roughly 60–90 °C.
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3. A: reject it to outdoor airIn the air-cooled condenser, a fan blows outdoor air across a finned coil. The refrigerant condenses 10–20 K above the entering air, so at 55 °C ambient it condenses at about 65–75 °C.
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4. B: or to plant cooling waterIn the water-cooled condenser, cooling water supplied at 30–32 °C and leaving at 35–37 °C carries the heat to your cooling tower or other plant heat sink. The refrigerant condenses at about 40–45 °C, whatever the air around the unit.
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5. ExpandThe expansion valve drops the liquid to the evaporating pressure. Part of it flashes to vapour, cooling the rest to the evaporating temperature, and the mixture returns to the evaporator.
Each unit uses one condensing method, A or B, on the same refrigerant cycle. Figures for R-134a evaporating at 5 °C.
Get the full details
Our brochure covers it in detail, and our questionnaire tells us what we need to recommend the right one for your plant.
Keep exploring
More from our range
Equipment for every stage of your compressed air, and our own engineers to test, commission and look after it.
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Refrigerated Air Dryers
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Heated Desiccant Dryers
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Heatless Desiccant Dryers
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Breathing Air Systems
Your plant’s compressed air, made safe to breathe.
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Hydrogen Dryers & De-Oxo Units
Electrolytic hydrogen purified of oxygen and water, ready for fuel cells.
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Biogas & Natural Gas Dryers
Dry, condensate-free fuel gas for your engines, boilers and upgrading plant.
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CO₂ Dryers
Beverage-grade dry CO₂ for your recovery plant, with no gas vented.
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Membrane Dryers
Dry air at the point of use, with no power and no moving parts.
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Coalescing Filters
Takes oil and water aerosols out of your air, down to 0.01 mg/m³.
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Particulate Filters
Dry, dust-free air for your plant, down to 0.01 µm particles.
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Compressed Air Duplex Filters
Change filter elements without interrupting your air supply.
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High Pressure Filters
Certified air purity for your high-pressure lines, up to 350 bar g.
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High Temperature Filters
Particle-free compressed air and gas where your process runs hot.
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Ammonia and Refrigerant Filters
Keeps compressor oil out of your condensers and evaporators.
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Oxygen Filters
Particle-free oxygen for your system, without adding an ignition source.
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Silicone-Free Filters
Crater-free paint finishes, from air free of paint-wetting contaminants.
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Medical Vacuum Filters
Keeps pathogens from hospital suction away from your pumps and exhaust.
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Hydrogen Filters
Particle, aerosol and oil-free hydrogen, from electrolyser to dispenser.
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CNG Filters
Oil-free, particle-free natural gas from your compressor to the vehicle.
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Centrifugal Moisture Separators
Bulk liquid out of your air by centrifugal force, with no element to replace.
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Oil Water Separator
Turns oily compressor condensate into water fit for sewer discharge.
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Zero-Loss Electronic Drain
Discharges every drop of condensate from your system, never your compressed air.
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Timer Drain
Scheduled, positive condensate discharge from any collection point in your system.
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Mechanical Float Drain
Buoyancy-driven condensate removal with no power and no air loss.
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Vacuum Drain
Empties liquid from your vacuum system without breaking the vacuum.
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Crane Air Conditioner
Cool, clean cabins and electrical rooms for cranes working in extreme heat.
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Tent Air Conditioner
Controlled climate for your tents, shelters and temporary structures.
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Panel Air Conditioner
Cool, clean, dry control panels, even in your hottest, dirtiest plant areas.
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Hot Tapping
Add measurement ports to your live air lines without stopping production.
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Compressed Air Quality Measurement
Prove your air's ISO 8573-1 purity: particles, oil and dew point.
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Digital Thickness Meter
Measure the metal left in your receivers and pipework, from the outside.
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Dew Point Meter
Proof your air is dry, measured at line pressure.
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Flow Meter
True standard flow of your compressed air, whatever the line pressure.
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Leak Detector
Hear, locate and cost every compressed air leak in your plant.
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Pressure Sensor
Live pressure data from your compressor room to every point of use.
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Humidity Meter
Humidity, temperature and dew point from one probe.
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Power Meter
Measure the true power, energy and efficiency of your compressors.
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Health Testing of Compressed Air & Gas Dryers
Measured proof your dryer delivers its rated dew point.
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Commissioning and Service of Compressed Air & Gas Dryers
Verified dew point from first start-up through your dryer's service life.
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Compressed Air Quality Testing
Measured, documented proof of your compressed air purity class.
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Dew Point Measurement Testing
Verified pressure dew point at the points that matter in your network.
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Compressed Air Flow Testing
Measured air demand, leakage and cost for your plant, not estimates.
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Wall Thickness Testing
Know the remaining wall, corrosion rate and safe life of your equipment.
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Sourcing
Spares, consumables and whole systems for your plant, sourced globally.
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