450'Ultra-high efficiency non-septum filter,H15
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450'Ultra-high efficiency non-septum filter,H15
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450'Ultra-high efficiency non-septum filter,H15
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Product Description
An ULPA filter with a U15 classification offers a high filtration efficiency, typically capturing particles as small as 0.12 microns. With an air volume capacity of 2400 m³/h, it ensures effective air purification in large spaces. The filter dimensions are 610mm x 915mm x 96mm, making it suitable for various commercial and industrial applications where high air quality is essential.
ULPA filters (Ultra Low Penetration Air filters) are highly efficient filters that capture 99.999% of particles as small as 0.1 microns. They are used in environments where air quality is crucial, including:
Clean rooms
Laboratories
Semiconductor manufacturing
Pharmaceutical production
Aerospace and electronics industries
These filters ensure the removal of fine particles, allergens, bacteria, and viruses, providing ultra-pure air in critical applications.
Design Features
High Efficiency: ULPA filters capture 99.999% of particles as small as 0.1 microns.
Superior Filtration: Offers more efficient filtration than HEPA filters, making it ideal for critical air quality environments.
Wide Application: Used in clean rooms, laboratories, hospitals, and industrial facilities requiring ultra-pure air.
Particle Removal: Effectively removes dust, allergens, bacteria, viruses, and other fine airborne contaminants.
Long-lasting Performance: Durable construction ensures consistent high filtration efficiency over time.
Improved Air Quality: Provides cleaner air by eliminating harmful pollutants in sensitive environments.
Low Pressure Drop: Designed to maintain airflow while providing high filtration performance.
photo
Material composition
Filter material | American HV ultra-fine glass fiber filter paper |
Sealing glue | PU two-component polyurethane AB glue |
Frame material | Aluminum profile frame, aluminum plate folding frame, galvanized frame, stainless steel frame |
Protective net | Plastic spray diamond mesh |
Separator | EVA hot melt glue |
Sealing glue strip | EVA or neoprene |
Filter efficiency | U15:99 999-99 9995%@0.12um |
Maximum operating temperature | 70℃ |
Maximum operating humidity | 100% |
Filter material | American HV ultra-fine glass fiber filter paper |
Sealing glue | PU two-component polyurethane AB glue |
Frame material | Aluminum profile frame, aluminum plate folding frame, galvanized frame, stainless steel frame |
Protective net | Plastic spray diamond mesh |
Separator | EVA hot melt glue |
Sealing glue strip | EVA or neoprene |
Filter efficiency | U15:99 999-99 9995%@0.12um |
Maximum operating temperature | 70℃ |
Maximum operating humidity | 100% |
Product dimensions parameters
All Sizes And Styles Can be customized | |||||
Model NO. | Actual Size | Air Flow | Media Area | Velocity | Efficiency |
HxWxD (mm) | (m³/h) | Flow (m²) | (m/s) | ||
K57-B-002 | 484*484*50 | 500 | 4.81 | 0.55 | H13-H14,U15 |
K57-B-006 | 610*915*50 | 1100 | 11.29 | 0.55 | H13-H14,U15 |
K57-B-028 | 305*610*69 | 500 | 4.92 | 0.75 | H13-H14,U15 |
K57-B-031 | 610*610*69 | 1000 | 10 | 0.75 | H13-H14,U15 |
K57-B-033 | 610*915*69 | 1500 | 14.84 | 0.75 | H13-H14,U15 |
K57-B-035 | 610*1220*69 | 2000 | 19.68 | 0.75 | H13-H14,U15 |
K57-B-041 | 610*915*96 | 2400 | 23.19 | 1.2 | H13-H14,U15 |
K57-B-042 | 610*1220*96 | 3200 | 30.76 | 1.2 | H13-H14,U15 |
K57-B-051 | 870*1170*69 | 2750 | 27.08 | 0.75 | H13-H14,U15 |
K57-B-052 | 1170*1170*69 | 3700 | 36.52 | 0.75 | H13-H14,U15 |
All Sizes And Styles Can be customized | |||||
Model NO. | Actual Size | Air Flow | Media Area | Velocity | Efficiency |
HxWxD (mm) | (m³/h) | Flow (m²) | (m/s) | ||
K57-B-002 | 484*484*50 | 500 | 4.81 | 0.55 | H13-H14,U15 |
K57-B-006 | 610*915*50 | 1100 | 11.29 | 0.55 | H13-H14,U15 |
K57-B-028 | 305*610*69 | 500 | 4.92 | 0.75 | H13-H14,U15 |
K57-B-031 | 610*610*69 | 1000 | 10 | 0.75 | H13-H14,U15 |
K57-B-033 | 610*915*69 | 1500 | 14.84 | 0.75 | H13-H14,U15 |
K57-B-035 | 610*1220*69 | 2000 | 19.68 | 0.75 | H13-H14,U15 |
K57-B-041 | 610*915*96 | 2400 | 23.19 | 1.2 | H13-H14,U15 |
K57-B-042 | 610*1220*96 | 3200 | 30.76 | 1.2 | H13-H14,U15 |
K57-B-051 | 870*1170*69 | 2750 | 27.08 | 0.75 | H13-H14,U15 |
K57-B-052 | 1170*1170*69 | 3700 | 36.52 | 0.75 | H13-H14,U15 |
FAQ
1. Can ULPA filters be used in commercial air purifiers?
Yes, ULPA filters can be used in commercial air purifiers. They are effective at removing ultrafine particles from the air, which makes them a suitable option for environments requiring high air quality, such as hospitals, clean rooms, and industrial spaces. These filters are typically used in systems that demand superior filtration performance, especially where allergens and dust are a concern.
2. How are ULPA filters maintained?
Maintaining ULPA filters requires regular inspection to ensure optimal performance. Over time, these filters can accumulate dirt and particles, which can reduce their efficiency. The maintenance process typically includes the following steps: - Checking for any visible damage or tears in the filter. - Replacing filters when they have reached their capacity or as per the manufacturer's guidelines. - Cleaning the housing and ensuring that there is no leakage around the filter. By keeping up with these tasks, ULPA filters continue to perform at their best.
3. What are the environmental impacts of ULPA filters?
ULPA filters have some environmental impacts primarily due to their material composition. When disposed of, they can contribute to waste, especially if they are not recycled properly. Some of the materials used in ULPA filters, such as fiberglass, are not biodegradable and can remain in landfills for extended periods. However, advancements in eco-friendly materials are being explored, aiming to reduce these impacts.
4. What is the efficiency rating of an ULPA filter?
ULPA filters are known for their high efficiency, typically with a rating of 99.999% for particles as small as 0.12 microns. This makes them significantly more effective than HEPA filters, which generally have an efficiency rating of 99.97%. The higher efficiency of ULPA filters makes them ideal for applications requiring the highest level of cleanliness and air purity.
5. How do ULPA filters improve air in clean rooms?
ULPA filters are critical in maintaining the cleanliness of air in clean rooms. They are able to remove very fine particles, including dust, bacteria, and viruses, which is essential in environments where even minute contaminants can compromise processes. In clean rooms, ULPA filters provide high-efficiency filtration, ensuring that the air remains free of particles that could interfere with sensitive work like semiconductor manufacturing or pharmaceutical production.
6. How do ULPA filters contribute to reducing the spread of airborne diseases?
ULPA filters play a key role in reducing the spread of airborne diseases by trapping pathogens such as bacteria, viruses, and mold spores. They are effective in environments where air quality is crucial, including hospitals, healthcare facilities, and laboratories. By removing these harmful microorganisms, ULPA filters help lower the chances of contamination and spread of diseases through the air.
7. Where are ULPA filters used?
ULPA filters are commonly used in a variety of environments that require high air quality, such as: - Clean rooms in semiconductor or pharmaceutical manufacturing. - Hospitals and healthcare settings, particularly in areas where infection control is essential. - Laboratories and research environments that need to maintain sterile air conditions. These applications depend on ULPA filters to provide superior filtration, ensuring that air is free from harmful particles.
8. What is the maximum efficiency of ULPA filters?
The maximum efficiency of ULPA filters is typically 99.999%, which means they can trap particles as small as 0.12 microns. This level of filtration is highly effective in environments where contamination control is critical, such as in clean rooms or hospitals. The high efficiency makes them one of the most powerful filtration options available in the market.
9. How do you choose the right ULPA filter for your system?
Choosing the right ULPA filter for a system involves considering several factors: - Airflow requirements: Ensure the filter is compatible with the system’s airflow. - Size and fit: The filter must fit the designated space in your equipment. - Particle removal needs: Consider the types and sizes of particles you need to filter out. By aligning these factors with the specifications of available ULPA filters, you can choose the one that best meets your needs.
10. Can ULPA filters be used in electronics manufacturing?
Yes, ULPA filters are commonly used in electronics manufacturing, particularly in clean room environments where contamination control is essential. These filters help protect sensitive electronic components from dust, static, and other contaminants that could compromise the manufacturing process.
11. Can ULPA filters remove formaldehyde?
ULPA filters are not specifically designed to remove gases like formaldehyde. Their primary function is to filter out particles such as dust, allergens, and microorganisms. However, some air purifiers may combine ULPA filters with activated carbon or other adsorbent materials to effectively remove gases and odors, including formaldehyde.
12. Can ULPA filters help reduce odors in the air?
While ULPA filters are excellent at removing particulate matter, they are not designed to target odors. For odor removal, air purifiers with activated carbon filters are more suitable. However, some systems combine both ULPA and activated carbon filters to provide comprehensive air purification, addressing both particles and odors effectively.
13. Are ULPA filters used in laboratories?
Yes, ULPA filters are commonly used in laboratories, especially in research environments where high levels of air purity are required. These filters help to remove fine particles that could interfere with experiments, ensuring a sterile and controlled environment. Laboratories that deal with sensitive or hazardous materials particularly benefit from ULPA filtration.
14. How do ULPA filters maintain airflow while providing high filtration?
ULPA filters are designed to maintain efficient airflow while providing high filtration efficiency. They achieve this by utilizing materials that allow air to pass through without significant resistance, despite their dense and fine filtration capabilities. This balance ensures that air quality remains high while not overloading the system's capacity.
15. Can an ULPA filter remove bacteria from the air?
Yes, ULPA filters can remove bacteria from the air. Their high efficiency allows them to capture particles as small as 0.12 microns, which includes many bacterial species. This makes them an excellent choice for environments where bacterial contamination must be minimized, such as in healthcare or laboratory settings.
16. How does an ULPA filter compare to a standard air filter?
Compared to a standard air filter, ULPA filters are much more efficient at trapping very fine particles. A standard air filter typically has an efficiency rating of around 80-90%, whereas ULPA filters have an efficiency of 99.999%, making them ideal for high-precision environments. ULPA filters are particularly useful in areas where even the smallest particles can have significant effects, such as in clean rooms or hospitals.
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