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Low-Pressure Air Compressors

Customized low pressure screw air compressor for low-pressure industrial conditions

Ultra-low power consumption and outstanding energy saving performance

Simple and robust structure supports long-time continuous running

Effectively cut daily comprehensive operation costs

Low-Pressure Air Compressors

Introduction

Low-pressure air compressors are customized for low-pressure working conditions with low power consumption and great energy efficiency. Simple, sturdy design suits long continuous operation to reduce operating costs.

 

Massive Energy Savings

Traditional compressors often over-compress air, wasting electricity. Our low-pressure models match precise pressure requirements, reducing energy bills by up to 30%.

 

Large Air Delivery

Adopted with low-pressure dedicated screw rotors, it achieves far higher air flow than conventional standard air compressors under the same power.

 

Longer Service Life

Low working pressure leads to less internal heat, ensuring more stable operation, reducing wear and tear and extending equipment service life.

 

Smart VSD Option

Paired with a Variable Speed Drive (VSD), the system can perfectly track factory air usage, achieving optimal efficiency under any workload./div>
Compressor Component Diagram 1
Compressor Component Diagram 2
  • Flexible hose
    The pre-filter before inlet valve traps dust and impurities, preventing contaminants from wearing rotors inside the screw compression air end.
  • Vacuum Inlet Valve
    It stably controls air intake with precise sealing, delivering fast response, zero leakage and minimum operational pressure loss.
  • Screw Vacuum End
    Rotating screws compress air while oil seals and lubricates; high-precision rotors ensure high output, low energy use and long service life.
  • Vacuum Inlet Dust Filter
    This front filter intercepts airborne dust and sundries, stopping pollutants from accessing internal parts and causing abrasion to rotating rotors.
  • Exhaust Cooler
    It cools pressurized air down to normal temperature. Large heat area achieves efficient cooling, less condensed water and better compressed air quality.
  • Motor
    It supplies power to drive the screw air end. High efficiency design ensures steady running, low loss, few faults and long service lifespan.
Thermostatic Valve Diagram
Air Receiver Tank Diagram
  • Thermostatic Valve
    Regulates the lubricating oil cooling circuit and controls oil temperature. Features fast thermostatic response and precise oil temperature regulation, preventing high-temperature damage to components and ensuring stable oil circulation.
  • Vacuum Buffer Tank
    Allows gravity settling of the oil-air mixture to achieve preliminary oil-air separation. Made of thickened explosion-proof material with strong pressure resistance. The internal flow-guiding structure provides excellent primary separation efficiency and reduces residual oil mist.
  • Compressor Component Diagram 1
    Vacuum Inlet Dust Filter
  • Vacuum Inlet Valve
  • Screw Vacuum End
  • Exhaust Oil Mist Filter
  • Vacuum Check Valve
  • Exhaust Cooler
  • Vacuum Buffer Tank (with automatic drain valve)
  • Vacuum Suction Port
Screw air end
Screw Vacuum End
Rotating screws compress air while oil seals and lubricates; high-precision rotors ensure high output, low energy use and long service life.
Air Filter
Vacuum Inlet Dust Filter
This front filter intercepts airborne dust and sundries, stopping pollutants from accessing internal parts and causing abrasion to rotating rotors.
Aftercooler
Exhaust Cooler
It cools pressurized air down to normal temperature. Large heat area achieves efficient cooling, less condensed water and better compressed air quality.
Motor
Motor
It supplies power to drive the screw air end. High efficiency design ensures steady running, low loss, few faults and long service lifespan.

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