| 1 | Axial Wall-Mounted Fan | 1,000–45,000 m³/h | Low pressure; generally below 250 Pa | Warehouses, workshops, agricultural buildings, factories, and general-purpose rooms | Warm climatesDry climatesNaturally ventilated buildings | High airflow, simple installation, low initial cost, and efficient direct air discharge | Requires a suitable intake path; performance decreases when connected to long or restrictive ductwork |
| 2 | Axial Roof Exhaust Fan | 2,000–60,000 m³/h | Low pressure; generally below 300 Pa | Industrial halls, distribution centers, livestock buildings, and large commercial spaces | Hot climatesRoof-level heat removalLow-to-moderate rainfall | Removes hot air that accumulates near the roof and saves valuable wall space | Roof waterproofing, wind exposure, rain protection, and structural support must be assessed |
| 3 | Centrifugal Cabinet Fan | 500–30,000 m³/h | Medium to high pressure; approximately 300–1,500 Pa | Offices, hospitals, hotels, kitchens, laboratories, and ducted commercial ventilation systems | Humid climatesUrban buildingsDucted systems | Handles duct resistance well and can provide controlled, reliable exhaust airflow | Needs adequate service access; fan selection should be based on system resistance, not airflow alone |
| 4 | Mixed-Flow Inline Fan | 300–10,000 m³/h | Medium pressure; approximately 150–800 Pa | Bathrooms, apartments, retail units, restaurants, and spaces with limited installation room | Humid climatesCompact layoutsModerate duct runs | Compact cylindrical design, quieter operation than many basic axial fans, and flexible duct installation | Check access for cleaning and ensure the fan diameter matches the duct system |
| 5 | Propeller Fan | 1,000–100,000 m³/h | Very low pressure; generally below 150 Pa | Large factories, barns, parking structures, and open-sided agricultural buildings | Hot climatesOpen buildingsHigh-volume ventilation | Moves very large air volumes with a simple and economical construction | Not suitable for long ducts, filters, silencers, or systems requiring significant static pressure |
| 6 | Bathroom and Toilet Exhaust Fan | 50–500 m³/h | Low to medium pressure; approximately 50–250 Pa | Residential bathrooms, guest rooms, small offices, and sanitation areas | Humid climatesCondensation-prone roomsSmall spaces | Compact, easy to control, and effective for reducing moisture, odors, and indoor pollutants | Use suitable moisture protection and provide make-up air to prevent poor airflow performance |
| 7 | Kitchen and Grease Exhaust Fan | 1,000–25,000 m³/h | Medium to high pressure; approximately 400–1,500 Pa | Commercial kitchens, food-processing areas, canteens, and cooking exhaust systems | Hot and humid conditionsGrease-laden airHigh-temperature exhaust | Designed for heavy-duty exhaust duty and compatibility with grease-control components | Requires fire-safety compliance, regular grease cleaning, appropriate duct construction, and temperature-rated components |
| 8 | Smoke and Heat Exhaust Fan | 2,000–60,000 m³/h | Medium to high pressure; commonly 500–2,000 Pa | Car parks, industrial facilities, atriums, tunnels, and smoke-control systems | Fire and smoke-control dutyLarge enclosed spacesVariable climates | Supports emergency smoke extraction and high-temperature ventilation when correctly certified | Must be selected and installed according to local fire codes, duty rating, controls, and emergency power requirements |
| 9 | Corrosion-Resistant Exhaust Fan | 500–20,000 m³/h | Low to medium pressure; approximately 100–800 Pa | Chemical rooms, battery rooms, wastewater facilities, coastal buildings, and industrial process areas | Coastal climatesSalt-laden airChemical exposure | Improves service life in aggressive atmospheres when housing, impeller, fasteners, and motor protection are properly specified | Identify the exact contaminants, concentration, temperature, and humidity before selecting materials and seals |
| 10 | Energy-Recovery Ventilator Exhaust Section | 200–20,000 m³/h | Medium pressure; approximately 200–900 Pa | Energy-efficient offices, schools, apartments, hotels, and tightly sealed commercial buildings | Cold climatesHot climatesConditioned buildings | Exhausts stale air while transferring part of its heat or cooling energy to incoming outdoor air | Requires balanced supply and exhaust airflow, filter maintenance, frost protection in cold climates, and condensate management |