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Specifications
Length: 5″ (125mm), 10″, 20″, 30″, 40″, 50″ (≥60″ can be customized).
OD: 2.5″ (≈64mm), 4.5″ (≈114mm), Niche: ∼6″ Large Diameter (≈152mm).
ID: Common ≈28–30mm (supported with/without support core).
Particle size range: 0.5, 1, 3, 5, 10, 20, 30, 50, 70, 100…150µm and other options.
Differential pressure capability:
Maximum 3.5–4.0bar at room temperature.
Recommended maximum pressure difference at high temperatures (≥80°C) ~2.4bar.
Working temperature: conventional PP filter element ≤80°C; customized models can withstand up to 90°C, and support steam sterilization ≤121°C.
Chemical stability: pH 1–13 resistance; compatible with most industrial chemicals.
End cap form: DOE, SOE (with 222/226 tablet or spring), C2/C3/C7/C8, etc.
Sealing materials: Buna-N, EPDM, silicone, Viton, fluorine-encapsulated Viton, etc.
Advantages and Features
Progressive depth filtration: high dust capacity, accurate filtration
Low voltage loss high flow: suitable for high flow systems with high efficiency
Strong chemical stability: No adhesive, suitable for a wide range of working conditions
Optional large-diameter version: increase throughput and reduce replacement frequency
Economical and practical: low price, single use or customized cleaning
Application scenarios
Water treatment system: crude water filtration, RO pretreatment
Food and beverage: drinking water, juice, dairy primary filtration
Chemical Industry/Pharmaceutical/Electronics: Solvent, Acid-Base Intermediate Filtration
Industrial fluid treatment: cooling water, ink, coating, chemical treatment
Select suggestions
Flow Requirement →: Select filter element length (10–40″) and diameter (2.5″/4.5″/6″);
Filtration accuracy: Select the filtering level (0.5–150µm) according to the system requirements;
Working temperature: If ≥80°C, you need to choose a model that supports steam disinfection;
Housing interface matching: consistent with the housing end cover form and sealing ring material requirements;
Pressure drop strategy: Recommended ≤35 psi (~2.4bar) core replacement to avoid overpressure losses.