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CTA Precision Filters – Multi-Stage Protection, Reliable Performance.
Multi‑stage glass fiber filters for general industrial use. Available in grades C, T, A – from 5 μm to 0.01 μm particle removal, oil carry‑down to 0.01 ppm.
Low pressure drop, long element life, easy cartridge change. Protect your valves, instruments, and sensitive processes. Plug‑and‑fit reliability for daily industrial operation.
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These models provide a typical return on investment between 6 to 24 months.
Plug-and-play system can be installed easily with minimum cost and interruption.
Compact design allows installation in spaces too small for twin tower generator systems.
C-Class Precision Filter
Material: Multi-layer Glass Fiber
Filtration Rating: 5 MICRON
Residual Oil Content: 5 PPM
Max.Pressure: 16 kg/cm²
Max.Temperature: 65°C
Typical Pressure Differential: 0.2 KG/CM²
Max.Pressure Differential: 0.7 KG/CM²
T-Class Precision Filter
Material: Multi-layer Glass Fiber
Filtration Rating: 1 MICRON
Residual Oil Content: 0.5 PPM
Max. Pressure: 16 kg/cm²
Max. Temperature: 65°C
Typical Pressure Differential: 0.17 KG/CM²
Max.Pressure Differential: 0.7 KG/CM²
A-Class Precision Filter
Material: Multi-layer Glass Fiber
Filtration Rating: 0.01 MICRON
Residual Oil Content: 0.01 PPM
Max. Pressure: 16 kg/cm²
Max. Temperature: 65°C
Typical Pressure Differential: 0.275 KG/CM²
Max.Pressure Differential: 0.7 KG/CM²
A nitrogen generator is a device that produces nitrogen gas (N₂) from compressed air. It uses separation methods, such as Pressure Swing Adsorption (PSA) and Membrane Technology, to remove oxygen and other gases, leaving purified nitrogen gas.
Cost savings: Long-term savings are achieved by eliminating the recurring costs of purchasing bottled nitrogen.
Convenience: Continuous on-site nitrogen generation eliminates the need for deliveries and reduces the risk of running out of nitrogen.
Customization: On-demand nitrogen generation allows you to tailor the flow and purity to your needs.
PSA (Pressure Swing Adsorption): Uses carbon molecular sieves to separate nitrogen from other gases in compressed air under varying pressure.
Membrane Technology: This technology uses selective permeable membranes to separate nitrogen from oxygen based on the size of the molecules.