Engineered to deliver exceptional filtration efficiency, antimicrobial protection, and compliance with the most stringent international standards.
Shenzhen Snow Peak Clean Technology Co., Ltd. is an integrated high-tech enterprise, specialized in air filtration products research and development, production, sales, import and export trade. We produce and supply: Pre-filter, pocket filter, HEPA filter, chemical filter; replacement HEPA filter, car cabin air filter, humidifier filter; pocket filter media, melt-blown composite filter media, and other high-performance filter materials; provide high quality air purification solutions and products for indoor air pollution control and air conditioning systems of civil and industrial buildings, microelectronics, pharmaceutical, laboratory, school, hospital clean room etc.
Combined with self-developed patented technology, our sterilizing antiviral HEPA filter can effectively filtrate fine particles, so that PM2.5 concentration down to 10 micrograms/m3, 5 times better than national standard; effectively inhibit the breeding of microorganisms, sterilization rate up to 99.9%, and no secondary pollution, removal of H1N1 virus efficiency as high as 99.99%.
In contemporary building design and mechanical ventilation, indoor air quality (IAQ) has progressed from a secondary comfort criteria to a primary risk-management factor. The 16x24x1 AC Filter represents one of the most widely implemented sizing architectures across commercial building segments, residential HVAC systems, and dedicated ventilation arrays. Sourcing high-quality, CE-certified units ensures that critical flow profiles, structural resistance, and particle retention curves comply with stringent European directives and global safety guidelines.
Modern mechanical engineering mandates clean air solutions that reduce energy footprint without forfeiting particle capturing metrics. Historically, mechanical filters relied on simple fiberglass configurations which primarily protected the HVAC equipment from large dust debris. Today, the industry has transitioned towards composite synthetic media, advanced meltblown fabrics, and electrostatic charge integration. This development targets sub-micron contaminants—specifically PM2.5, aerosols, and biological pathogens like H1N1 viruses.
Shenzhen Snow Peak Clean Technology Co., Ltd. has established a technical baseline where pleated filter media utilize dual-phase synthetic polymers. By embedding a structural support layer with an ultra-fine meltblown membrane, our 16x24x1 configurations achieve high dust holding capacity (DHC) while maintaining a low initial pressure drop, significantly reducing the energy consumption of HVAC blower motors.
Precise pleat geometries engineered using high-precision pleating lines guarantee uniform air velocity distributions, eliminating local airflow constriction and optimizing media utilization.
Deploying electrostatically charged microfibers allows our air filters to capture sub-micron particles with minimal mechanical airflow resistance.
Patented active formulation reduces biological pathogens by 99.99%, keeping the building environment safe from secondary microbial dispersion.
Industrial procurement departments face complex challenges when sourcing replacement filters at scale. In regions like North America and the European Union, requirements have transitioned from simple component replacement to holistic performance optimization. Enterprises look for partners that offer certified reliability, high-density manufacturing capacity, and total logistics integration.
To meet these procurement requirements, Shenzhen Snow Peak Clean Technology leverages advanced AMADA CNC machinery to guarantee dimensionally stable frames, ensuring bypass air leakages are completely eliminated. This translates into reliable operation, reduced HVAC degradation, and a stable indoor climate for high-occupancy commercial complexes, hospitals, and sterile laboratories.
Having 15 years of international air purification technology experience as the background, our company has standardized production workshops, dust-free filter workshops, and a first-class technological framework for HEPA filters production and inspection.
Applies precise adhesive beads to stabilize filter pleats, assuring structured shape even under extreme pressure changes.
Delivers perfect sizing geometry on cardboard and galvanized steel framing profiles, avoiding dimension errors.
Protects media junctions from degradation, preventing particulate bypass and safeguarding operational cleanrooms.
Combines multiple purification layers into a high-density matrix to deliver specialized VOC and particle filtration.
Folds composite materials into highly structured pleat packs, maximizing active filtration surface areas.
Final structural integration checking before assembling frames, ensuring uniform air resistance parameters.
From semiconductor manufacturing cleanrooms to complex public HVAC systems, our optimized 16x24x1 configuration adapts to demanding purification environments.
Industrial lithography and testing labs demand absolute control over particulate matter. Integrated 16x24x1 pre-filtration lines protect ultra-high efficiency terminal HEPA elements by catching large dust and process fibers, significantly reducing operating expenses.
Cleanroom dynamics inside clinics and pharmaceutical plants require sterile, biological mitigation. Utilizing our patented sterilizing antiviral media prevents bacteria and virus populations (H1N1 sterilization rate 99.99%) from nesting inside the HVAC system elements.
Public spaces experience massive occupancy spikes, triggering elevated CO2 and volatile organic compound (VOC) levels. Composite carbon and low-resistance synthetic pleats ensure clean air exchange cycles without overloading standard building blowers.
Essential engineering insights for global purchasing managers and system engineers regarding standard compliance, flow calculations, and material choices.
Highly durable solutions for variable air volume (VAV) systems, chemical gas removal, and high-temperature operating setups.