Leave Your Message

China Stainless Steel Clean Laminar Flow Hood Factory - High Cleanliness, Low Operating Costs, Reliable Suppliers

Introducing our high-performance clean air solutions designed for industries that require superior cleanliness. This product is engineered to be flexibly hoisted above key process points, ensuring compliance with local high cleanliness standards, Our clean air box is available in various materials, including wall panels made of spray cold-rolled steel or fully stainless steel, making it versatile for different applications. It can function independently or be placed in parallel to create a continuous clean laminar flow belt, Experience reduced investment with our efficient solutions that deliver quick results, simple installation, and low operating costs. Our equipment ensures cleanliness of the highest standards, achieving a Class 100 rating with particle counts of less than 3.5 pieces/L for particles greater than 0.5 micrometers, Designed for optimal performance, the average wind speed ranges from 0.3 to 0.55 m/s, while maintaining a wind speed of no less than 0.25 m/s at 1000 mm below the outlet surface. Noise levels are kept below 64 dB(A), ensuring a comfortable working environment, As a leading manufacturer in China, our factory complies with stringent quality standards, making us a reliable choice among suppliers in the industry. Enhance your operation's cleanliness and efficiency with our innovative solutions today

    Application Area

    Application Area

    Widely used in electronics, biology, medicine, food, precision instruments and other industries of dust-free aseptic operating environment, providing local high cleanliness working environment.

    Structure Overview

    Clean Laminar Flow Hood Structure

    Material: Typically made of sprayed cold-rolled steel plate or stainless steel (SUS304, SUS316), known for high strength, corrosion resistance, and ease of cleaning.

    Design: Corners often feature rounded transitions to avoid dead angles, facilitating cleaning and preventing dust accumulation.

    Fan Unit

    Function: The "heart" of the laminar flow cabinet, providing the power for air circulation.

    Location: Typically located at the top of the unit (fan on top, referred to as a "top-mounted fan" structure).

    Components

    Fan: Usually employs high-efficiency, low-noise backward-curved centrifugal fans, capable of providing stable and adequate static pressure and airflow.

    Motor: Drives the fan operation. Often an EC Motor (Electronically Commutated Motor), enabling stepless speed control, offering energy savings and precise control.

    Air Filtration System

    This is the most critical part, determining the cleanliness effectiveness.

    Pre-filter (Primary Filter)

    Location: Positioned near the fan intake.

    Function: Filters larger airborne particles (e.g., dust, fibers) to protect the subsequent HEPA filter and extend its service life.

    Material: Typically non-woven fabric or nylon mesh, which can be washed or replaced.

    HEPA Filter

    Location: Located at the bottom of the enclosure, facing the work area directly.

    Function: Filters out particles ≥0.3µm with an efficiency of up to 99.99%. Ensures the discharged air is clean and sterile.

    Installation: Requires specialized sealing structures (e.g., liquid trough seal, mechanical clamping with gaskets) to ensure no leakage.

    ULPA Filter

    Location: Same as the HEPA filter.

    Function: Used for applications requiring higher standards, with a filtration efficiency of ≥99.999% for particles ≥0.12µm.

    Airflow Equalization System

    Function: Located above the HEPA filter, it ensures air is evenly distributed before passing through the filter, thereby creating a uniform and stable vertical laminar airflow at the air outlet.

    Filter Efficiency

    The Efficiency of HEPA Filter

    🌀
    HEPA
    Filtering efficiency ≥ 99.97% for particles ≥ 0.3μm. Ideal for electronics, pharmaceuticals, and food industries.
    ⚗️
    ULPA
    A higher-grade filter, efficiency ≥ 99.999% for 0.1–0.2μm particles. Used in ultra-high standard fields like semiconductors and biosafety laboratories.
    Stainless Steel Clean Laminar Flow HoodStainless Steel Clean Laminar Flow Hood
    Filter Lifespan

    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.

    Technical Parameters

    Technical Parameters

    Technical Parameters
    Remarks: (1) Initial resistance tolerance of ± 10%    (2) Support customer size
    Frequently Asked Questions
    What industries can benefit from a Clean Laminar Flow Hood?
    Clean Laminar Flow Hoods are widely used in electronics, biology, medicine, food processing, and precision instrument manufacturing industries. They provide a dust-free, aseptic local working environment to protect products and processes from contamination.
    What is the difference between a HEPA filter and a ULPA filter?
    A HEPA filter captures particles ≥0.3µm with an efficiency of ≥99.97%, while a ULPA filter captures particles ≥0.12µm with an even higher efficiency of ≥99.999%. ULPA filters are used in more demanding environments such as semiconductor fabrication and biosafety laboratories.
    What materials are used to construct the laminar flow hood enclosure?
    The enclosure is typically made from sprayed cold-rolled steel plate or stainless steel (SUS304 or SUS316). These materials offer high strength, excellent corrosion resistance, and are easy to clean. Rounded corner designs are used to prevent dust accumulation in dead angles.
    How does the EC Motor improve the performance of the laminar flow hood?
    The EC Motor (Electronically Commutated Motor) enables stepless speed control, allowing precise adjustment of airflow. This results in significant energy savings, lower noise levels, and more accurate cleanliness control compared to conventional motors.
    When should the HEPA or ULPA filter be replaced?
    The filter should be replaced when its airflow resistance increases to an unreasonable level due to dust accumulation. Additionally, if there is a risk that accumulated dust may become dislodged and re-enter the airflow, the filter must be replaced immediately to maintain cleanliness standards.
    Can the laminar flow hood be customized to specific dimensions?
    Yes. According to the technical parameters, customer-specified sizes are supported. The initial resistance tolerance is ±10%, and custom configurations are available to meet different production or laboratory space requirements.