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Air Permeability Tester

Labnics Air Permeability Tester offers precise measurement of air permeability in various textiles and materials. These are equipped with precision pressure and differential pressure sensors for reliable measurements. These Permeability Testers can automatically process data and display real-time results. These consists of high-accuracy sensors for precise reading of data. Our Automatic Air Permeability Testers have a built-in microprocessor for data calculation.

Test pressure

1-4000Pa (spray nozzle), 1-1000Pa (sample)
1~4000Pa

Permeability range

1~9999mm/s, ≤±2%

Nozzle

Automatic change nozzle
Manually change nozzle

Fabric thickness range

≤12mm

Test area

5cm2, 20cm2, 50cm2, 100cm2,

FAQ for Air Permeability Tester

1: What is an Air Permeability Tester?

An Air Permeability Tester is a laboratory equipment designed to measure how a material allows air to pass. It evaluates resistance to airflow under defined conditions. The unit ensures accurate assessment of breathability. It provides dependable results in labs and industrial use. Such a system is vital for textiles, paper, and filtration research.

2: How does an Air Permeability Tester work?

Air Permeability Tester functions by pushing air through a sample under fixed pressure. A sensor measures flow rate to produce exact readings. The collected information reflects porosity levels. A digital interface shows outcomes immediately. Advanced design includes automatic calibration for accuracy.

3: What materials can an Air Permeability Tester evaluate?

An Air Permeability Tester can assess textiles, leather, paper, and nonwoven fabric. It checks how air passes through different densities. The unit supports analysis of coated untreated materials. It provides flexibility across industrial applications. One tester adapts to many material types.

4: How accurate is an Air Permeability Tester?

The Air Permeability Tester provides precise readings under controlled conditions. Accuracy depends on calibration, sensor quality, and sample preparation. Modern units reduce operator error with automated systems. Repeatability of measurements ensures confidence. Results are reliable when the system is maintained properly.


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