Product Overview

  • Lowest initial resistance – Up to 50% lower
  • AAF’s high tensile strength ePTFE media is up to 8 times stronger than micro fiberglass 
  • Highly resistant to corrosive environments (acids, alkalis, and organic substances) 
  • Negligible off-gassing properties (boron, sodium, potassium, silicon) 
  • Withstands pressure up to 20 in. w.g. (5,000 Pa) 
  • 99.99% minimum efficiency at 0.3 μm  


Typical Applications

  • Commercial Buildings
  • Microelectronics
  • Healthcare
  • Pharmaceutical
Efficiency
  • HEPA
Filter Depth
  • 12"
Frame Material
  • Metal
  • Anodized Aluminum
Max Operating Temperature
  • 150˚F (66˚C)
Special Size Available
  • Yes
Single Header
  • No
Media Type
  • ePTFE

Energy Conservation=Energy Savings 

AAF ePTFE pleat pack resistance is up to 50% lower than conventional micro fiberglass media, a significant factor contributing to a great reduction in fan energy consumption. AAF ePTFE membrane media, combined with tapered aluminum separators, optimizes pleat pack resistance. With a reduction in fan energy consumption, overall energy savings can be realized.

Perfect Filter Media

Compared with micro fiberglass media, ePTFE membrane media provides superior benefits, including inert chemical properties, more uniform fiber distribution, smaller fiber diameters, and smaller pore size. As a result, reduced resistance and higher filtration performance provide substantial energy savings.


State-of-the-Art Design

Designed to combine maximum efficiency with lowest pressure drop, the MEGAcel I filter media pack is available in different depths, sizes, and cell side configurations, allowing for a variety of application requirements, including:
  • Healthcare 
  • Food Processing 
  • Pharmaceutical
  • Laboratory 
  • Electronic 
  • Semiconductor

ePTFE Membrane Media Developed by AAF Engineers

Groundbreaking ePTFE technology was engineered by AAF’s research and design teams. Media production, testing, and packaging are all performed in AAF’s ultra-modern ISO Certified controlled environment, eliminating the potential for contamination of the filter during manufacturing. 

For sizes and performance data:

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