New Balance FuelCell SuperComp Trail v1 Gray Yellow AW24 Women's Shoes
New Balance FuelCell SuperComp Trail v1 Women's Shoes - Conquer the Terrain in Style
The New Balance FuelCell SuperComp Trail v1 Shoes for Women are designed to maximize energy return, offering an unparalleled trail running experience. With a lightweight and stable design, these shoes ensure breathability and a perfect fit while providing impressive grip and traction on wet and dry terrain.
- Surface: Trail
- Shoe type: Neutral
- Use: Training, Competition
- Weight: 214 grams
- Drop: 10mm
- Plate: Carbon fiber plate
- Damping: FuelCell
Highlighted Features of the New Balance FuelCell SuperComp Trail v1 Women's Shoes
These shoes are perfect for runners looking for performance and comfort with every step.
Midsole and Cushioning Technology
The FuelCell midsole provides a feeling of propulsion that helps you move forward with greater energy. Incorporating the Energy Arc system, these shoes are designed to maximize energy return, offering superior performance on any terrain.
Upper Details
The light and stable upper has an elegant design that ensures breathability and comfort. The bootie construction and closed mesh material provide a perfect fit and support every time.
Sole
Vibram® Lightbase and Megagrip sole technologies offer impressive grip and traction, ensuring durability and performance in both wet and dry conditions. This allows the shoes to adapt to any terrain, providing safety and stability with every step.
Comfort and Fit
Weighing only 214 grams, these shoes are extremely light, allowing greater freedom of movement. The FuelCell construction and carbon fiber plate ensure a comfortable fit and optimal performance during all your races.
Additional Information
Made with high-quality synthetic materials, the New Balance FuelCell SuperComp Trail v1 Shoes for Women are designed to withstand the rigors of trail running. With their innovative design and advanced technology, these shoes are the perfect choice for any runner looking to improve their performance.