Clean, consistent air for lifts, impact tools, spray preparation and workshop equipment.
We assess simultaneous tool use, peak demand and future bays before sizing the compressor, receiver, dryer and pipework.
Explore the application →Application-led engineering
Different industries create different demands for pressure stability, air quality, redundancy and maintenance access.
We assess simultaneous tool use, peak demand and future bays before sizing the compressor, receiver, dryer and pipework.
Explore the application →We design for actual demand, duty cycle, redundancy and maintainable pressure—not nameplate guesses.
Explore the application →We match dryers, filtration and condensate control to the application and required air quality.
Explore the application →We plan cooling, filtration, access, maintenance stock and redundancy around site conditions.
Explore the application →We size for peak-season demand and specify filtration, ventilation and service intervals accordingly.
Explore the application →We evaluate peak flow, air quality, receiver storage and redundancy for continuous production.
Explore the application →We combine efficient compressor selection with correctly sized ring mains and leak management.
Explore the application →Talk to a compressor specialist
Send us your current compressor details, required pressure and application. We’ll help you choose the right next step.
Practical answers
These answers cover common planning questions. Final recommendations are confirmed from the machine data and site conditions.
List every air consumer, its pressure, flow, simultaneous use and duty cycle. Add realistic growth and leakage allowances, then select from verified FAD data.
Redundancy is advisable when loss of compressed air stops production, affects safety or creates expensive recovery work. The standby strategy should match the consequence of failure.
Air quality depends on what the air contacts and the sensitivity of downstream equipment. Dryer type and filtration should be selected from the required dew point and contaminant limits.
Common causes include undersized piping, restrictive fittings, blocked filters, leaks, insufficient compressor capacity or inadequate receiver placement.
A correctly sized ring main can feed demand from more than one direction, reduce pressure loss and make future drops easier, but the layout still needs proper drainage and isolation.