Push the limits of what's possible with the The North Face Vectiv Infinite shoe for women. It enhances your trail sessions to help you tackle every challenge with brilliance.
Unique in its kind, the Vectiv process is the result of years of research and testing. This innovative construction features a dual-density 3D Pebax plate that guarantees an energy return capable of propelling you swiftly to the peaks. To ensure exceptional stability, it extends to strategic areas of the upper so you can confidently step on various surfaces.
Designed to further smooth your foot's roll, it is paired with a rocker-shaped midsole. Your effort is thus optimized, and you benefit from powerful propulsion during your exploits.
Fully covered with Matryx material, the upper offers you support with jeweler-like precision and breathability conducive to performance. The attached tongue wraps around your foot while midfoot reinforcements ensure reliable support.
Adapted to the female anatomy, the heel counter provides extra security, and the presence of pads at the collar reduces pressure on the Achilles tendon.
The Surface Control outsole promises you impeccable grip on many trails. It features 3.5 mm lugs that provide formidable traction on descents and extremely dynamic traction on ascents.
Key points of the The North Face Vectiv Infinite shoe
Ortholite allows for the provision of single, double, and triple density insoles, corresponding to increasing levels of comfort and protection.
The Vectiv technology combines a 3D plate with a rocker-shaped midsole to reward the energy of each stride with extremely dynamic propulsion.
Matryx is a patented technology that combines Kevlar and highly stretch-resistant polyamide. This ensures excellent abrasion resistance, comfortable support adapted to the morphology of the foot, exceptional breathability, and great lightness.
Rubber that offers optimized grip for trail running and hiking.
A dual-density Pebax plate that provides stability as well as better rebound with each stride for powerful propulsion.