You need to choose options for product.
-
files/1042A313-400-Asics-Womens-Solution-Speed-FF-4-Night-Energy-Tennis-Shoes-Blue-Fade-Gunmetal-right.0.jpg
-
files/1042A313-400-Asics-Womens-Solution-Speed-FF-4-Night-Energy-Tennis-Shoes-Blue-Fade-Gunmetal-angle.0.jpg
-
files/1042A313-400-Asics-Womens-Solution-Speed-FF-4-Night-Energy-Tennis-Shoes-Blue-Fade-Gunmetal-left.0.jpg
-
files/1042A313-400-Asics-Womens-Solution-Speed-FF-4-Night-Energy-Tennis-Shoes-Blue-Fade-Gunmetal-top.0.jpg
-
files/1042A313-400-Asics-Womens-Solution-Speed-FF-4-Night-Energy-Tennis-Shoes-Blue-Fade-Gunmetal-sole.0.jpg
-
files/1042A313-400-Asics-Womens-Solution-Speed-FF-4-Night-Energy-Tennis-Shoes-Blue-Fade-Gunmetal-heel.0.jpg
-
Asics Women's Solution Speed FF 4 Night Energy Tennis Shoes (Blue Fade/Gunmetal)
SKU: 1042A313-400
The Asics Women's Solution Speed FF 4 Night Energy Tennis Shoes are a fusion of speed and quickness. The Night Energy collection fuses advanced technology with eye-catching designs in a striking colorway with details that glimmer under the spotlight.
The updated, softer FlyteFoam midsole helps deliver more cushioning, a high-energy return while remaining lightweight. A meticulously engineered Speedtruss technology harnesses your connection with the court so you can accelerate quickly. Durability is increased thanks to a PU loop at the top of the upper's medial side. It's also equipped with eyelet loops on the medial side to help prevent the shoelaces from breaking during abrupt movements.
Features:
- FlyteFoam Technology - A lightweight midsole foam that delivers a comfortable cushioning experience.
- Speedtruss Technology - Improves quickness and cutting motions.
- Precision Sole with AsicsGrip - Technology in the toe area offers excellent traction prior to toe-off.
- PU Loop and Eyelet Loops - Equipped on the upper's medial side to help prevent the shoelaces from breaking.
The sockliners for the Asics Women's Solution Speed FF 4 Night Energy Tennis shoes are produced with the solution dyeing process that reduces water usage by approximately 33% and carbon emissions by approximately 45% compared to the conventional dyeing technology.