FILTROTEST-9000: Advanced Multi-Stage Filtration Performance Analyzer
Overview
The FILTROTEST-9000 is a cutting-edge system designed to evaluate the filtration efficiency, pressure drop, and durability of advanced filter media, including HEPA, ULPA, activated carbon, and composite materials. Engineered for laboratories and manufacturers of HVAC systems, cleanrooms, medical respirators, and industrial exhaust solutions, this instrument ensures compliance with global standards such as ISO 29903, EN 1822, and NIOSH 42 CFR Part 84. It provides comprehensive insights into particulate capture rates (0.1–50 µm), gaseous contaminant removal (VOCs, ozone), and long-term performance under simulated real-world conditions.
Core Features
- Multi-Stage Testing: Simulates complex filtration scenarios by evaluating up to three stages simultaneously (pre-filter, main filter, post-filter).
- Dynamic Flow Control: Adjustable airflow rates (10–1,000 m³/h) and particle concentrations (10³–10⁷ particles/cm³) using dry/wet aerosol generators.
- Precision Sensors: Laser photometers (±0.001% detection limit) and piezoelectric sensors measure pressure drop (ΔP) and penetration rates in real time.
- Environmental Simulation: Configurable temperature (5–60°C) and humidity (10–95% RH) chambers replicate industrial or tropical operating environments.
- Automated Reporting: Generates ISO-compliant reports with efficiency curves, particle size distribution graphs, and compliance pass/fail indicators.
Applications
- Medical PPE: Certify N95 respirators and surgical masks for bacterial filtration efficiency (BFE ≥99.9%).
- Industrial Filtration: Test HVAC filters for PM2.5/PM10 removal in cleanrooms (ISO 5–Class 1 standards).
- Environmental Protection: Evaluate activated carbon filters for VOC removal in chemical plants.
Compliance
ISO 29903, EN 1822, ASTM F2100, ASHRAE 52.2.
Optional Add-Ons
- High-flow pump systems (up to 5,000 m³/h).
- Multi-gas challenge modules (SO₂, NOx, formaldehyde).
- AI-driven lifespan prediction software.

2025-04-10 10:10