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Hoka Mach 7: speed and responsiveness for daily training
The Hoka Mach 7 are designed for runners looking for lightness, dynamism and efficiency in every stride. With a midsole of high-energy-return supercritical EVA foam, they offer a responsive and smooth ride ideal for fast asphalt workouts. Their new Creel jacquard upper with zoned ventilation improves breathability and fit, providing comfort and stability to help you beat your personal bests.
- Surface: Asphalt
- Shoe type: Neutral
- Use: Speed training
- Weight: 237 g
- Drop: 5 mm
- Cushioning: Supercritical EVA foam
Technical features
The Hoka Mach 7 continue the evolution of one of the brand's most versatile shoes, offering a balanced combination of lightness, responsiveness and comfort. Designed for fast running on asphalt, they incorporate materials and details focused on improving the runner's efficiency during dynamic workouts.
Supercritical EVA foam for a responsive ride
The midsole is made of supercritical EVA foam that provides lightweight cushioning with a high level of responsiveness. This material keeps the foot closer to the ground thanks to its optimized profile, promoting a quick transition and an efficient propulsion feel during the run.
Creel jacquard upper with strategic ventilation
The Creel jacquard upper is designed with specific breathability zones that improve foot ventilation. This technical structure helps evacuate heat and moisture, keeping the foot cool and comfortable even during demanding workouts.
Secure fit with internal reinforcement
The internal reinforcement of the upper provides an additional sense of support that helps keep the foot stable inside the shoe. In addition, the streamlined tongue lies flat over the foot, improving comfort and reducing potential pressure points.
Durable outsole with optimized traction
The outsole incorporates grippy rubber in the forefoot to improve traction during the propulsion phase. At the heel, the Durabrasion Rubber compound reinforces high-wear areas, increasing the shoe's durability without compromising its lightness.