Choosing the right hose when building an in-ground pool is essential, whether in terms of performance, reliability or environmental impact. This is why FITT is expanding its range with two premium models: FITT B-Active Flex and FITT Revix, designed to meet different needs and both reflecting Made in Italy quality.
Flexible PVC spiral hose with Chlorine Defence System
A flagship product in FITT's water suction and delivery hose range, FITT B-Active Flex has been specifically developed to ensure long-lasting performance. Its patented internal anti-chlorine protective layer, based on the Chlorine Defence System, combined with a reinforced spiral using D-Shape technology, provides exceptional resistance to crushing, mechanical stress and abrasion.

FITT B-Active: EVO TECH innovation, D-Shape patent, Chlorine Defence System patent
Reinforced spiral compliant with UNI EN ISO 3994
EVO TECH innovation further enhances spiral coverage, making it up to six times more resistant to cracking than standard hoses. This makes it an ideal solution for in-ground systems exposed to high levels of stress, ensuring reliability and durability even in demanding conditions. The product is certified in accordance with UNI EN ISO 3994 and comes with a 10-year warranty, backed by a 10-year product liability insurance. Key advantages for installers and end users alike.
The first eco-friendly flexible spiral hose
FITT Revix demonstrates FITT's strong commitment to sustainability, without compromising on technical performance. It is the first eco-friendly flexible spiral hose designed for water supply and suction in in-ground pools, incorporating 30% post-industrial recycled materials. This innovation reduces CO? emissions by approximately 10% compared to FITT Idroflex, helping to lower environmental impact while maintaining expected performance levels.

FITT Revix CoreShield: virgin PVC, post-industrial recycled material, rigid D-Shape PVC spiral
The patented CoreShield technology isolates recycled materials while ensuring strength, flexibility and optimal fitting adhesion.

