Stamisol Advanced FA
Facade membranes
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Stamisol Advanced FA façade membrane
Resistencia a la radiación UV
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Black
Stamisol Advanced FA
Technical breather membrane for ventilated and open-jointed façade cladding
Stamisol Advanced FA is a high-performance membrane for ventilated and open-jointed façades with joints up to 50 mm and an open area of up to 50%, ideal for architects and building professionals. Designed to withstand UV exposure, wind and extreme weather conditions, it ensures long-term durability and optimises thermal insulation performance on all types of substructures (timber frame, metal structure, etc.).
Stamisol Advanced FA: long-lasting performance and high resistance
Stamisol Advanced FA stands out for its key benefits:
- High resistance to UV, weathering and extreme conditions (snow, wind, cold)
- High breathability, reducing the risk of condensation
- Strong resistance to tearing and bonding failure
- Available in FA 2TAPE version with integrated adhesive strips
- Quick and easy installation, even in wet or winter conditions
- Compatible with all substructures
- Wide range of accessories for a reliable finish
- 10-year warranty
- RF2 fire classification
A premium façade solution for demanding projects
Choosing Stamisol Advanced FA, made in Switzerland, means opting for innovation and safety in façade design.
Its long-term durability and intuitive installation make it an ideal solution for building professionals seeking lasting performance and high-quality aesthetic results. Suitable for all types of substructures and façade cladding systems, it gives architects great creative freedom.
A flexible system for technical façades
The system is compatible with Stamcoll Tape or available in a 2TAPE version with two integrated self-adhesive strips for simplified installation. It includes a complete range of accessories designed to effectively handle critical details such as corners, penetrations and junctions. RF2 fire classification provides enhanced safety in case of fire. Its weather resistance allows up to 12 months of exposure during the construction phase without loss of performance.