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High-Efficiency EN779 Mini-Pleated F9 Air Filter - China Suppliers & Factory Offering Premium Quality Solutions

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Introducing our high-performance air filter, crafted from a selection of durable materials including extruded aluminum, aluminum sheets, galvanized steel sheets, stainless steel sheets, and cardboard. This product is proudly manufactured in China, where our experienced suppliers utilize cutting-edge technology in our state-of-the-art factory.

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Our filter media is made of Ulyra fine glass fiber, ensuring superior filtration efficiency. The face guard features robust aluminum mesh and coated mesh, adding an extra layer of protection.

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For maximum reliability, we use premium polyurethane sealant and a variety of gasket materials including CR, EVA, neoprene, and EPDM/gel seal to ensure leak-free performance.

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This air filter achieves remarkable efficiency ratings of 65% to 95% at 0.4µm, meeting the stringent EN 779 standards with classification levels F6, F7, F8, and F9.

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Our products are designed to operate under demanding conditions, with a temperature tolerance of up to 70℃ and humidity levels reaching 100% RH. Choose us for your air filtering needs and experience the quality from one of the leading suppliers in China.

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    Application Area

    Mainly used in central air conditioning and integrated air supply systems, it can be employed for primary and intermediate filtration in air conditioning systems to protect the HEPA filters and the system.

    Filter Media Materials

    These materials should effectively capture dust particles without imposing excessive resistance to airflow. A chaotic network of fibers creates numerous barriers to particles, while the wide spaces between fibers allow air to pass through smoothly. Commonly used materials include glass fiber, synthetic fiber, polypropylene fiber, polyester fiber, and plant fiber. Generally, Mini-pleated Medium filters use glass fiber.

    EN779 Mini-Pleated F9 Medium Air Filter (1)
    EN779 Mini-Pleated F9 Medium Air Filter (2)

    The Efficiency of Medium Filter

    The efficiency of currently available medium-efficiency filters ranges from 65% to 95%, and they can be selected based on specific requirements. The rational selection of filter efficiency and face velocity contributes to comprehensive economic benefits.

    For filters made of the same material, higher efficiency typically results in greater resistance and higher cost, while lower efficiency leads to reduced resistance and cost. Altering the air velocity will also affect resistance, efficiency, and the number of filters required, so appropriate selection should be made according to specific conditions.

    EN779 Mini-Pleated F9 Medium Air Filter (3)
    EN779 Mini-Pleated F9 Medium Air Filter (4)

    Service Life of Filters

    As dust accumulates on the filter media, the resistance increases. When the resistance reaches an unreasonable level, the filter must be discarded. Sometimes, excessive resistance can cause previously captured dust to become dislodged and re-enter the airflow; when this risk arises, the filter should also be replaced. The resistance of a filter increases with higher airflow rates. By increasing the surface area of the filter media, the relative velocity of air passing through the filter can be reduced, thereby decreasing the resistance.

    Wind speed relationship diagram

    Wind speed relationship diagram

    Product Parameters

    Product Parameters

    Remarks: (1) Initial resistance tolerance of ± 10% (2) Support customer size

    Frequently Asked Questions
    What are the main applications for medium-efficiency air filters?
    They are primarily used in central air conditioning and integrated air supply systems as primary or intermediate filtration to protect HEPA filters and the overall system.
    What materials are used in Mini-pleated Medium filters?
    While materials like synthetic, polypropylene, and polyester fibers are used in various filters, Mini-pleated Medium filters generally utilize glass fiber for effective particle capture.
    What is the standard efficiency range for these filters?
    Currently available medium-efficiency filters typically offer an efficiency range between 65% and 95%, which can be chosen based on specific air quality requirements.
    How does air velocity affect filter performance?
    Air velocity directly impacts resistance and efficiency. Higher velocity increases resistance, while increasing the surface area of the media can reduce relative velocity and lower resistance.
    When should a medium-efficiency filter be replaced?
    A filter should be replaced when the resistance reaches an unreasonable level or when there is a risk of captured dust becoming dislodged and re-entering the airflow.
    Can I order custom sizes for these filters?
    Yes, according to the product parameters, customer-specific sizes are supported to meet unique system requirements.