Mizuno WAVE DAICHI 5 GTX - Trail Shoes - Women's - phantom/black

More info

MIZUNO

Features

Use: trail


 

MAIN DETAILS:

  • Use: training and competition
  • Terrain: all types
  • Distance: medium and long 
  • Drop: 12 mm 
  • User weight: all
  • Water resistance: Gore-Tex membrane
  • Weight: 335 g (per shoe)

TECHNOLOGY:

  • Gore-Tex
  • AirMesh
  • DynamotionFit
  • XtaRide 
  • Mizuno Wave®
  • Michelin Tech soles
  • AP+

SPECIFICATIONS:

Upper:

  • Low-rise
  • AirMesh fabric
  • DynaMotion Fit upper
  • Gore-Tex membrane
  • Optimal fit 
  • Comfortable and breathable
  • Classic laces

Footbed:

  • Comfortable and cushioning

Midsole:

  • Built-in XtaRide and Mizuno Wave® technology
  • Energy return
  • Optimal cushioning

Outsole:

  • Sole developed in collaboration with Michelin
  • AP+ cushioning layer
  • Sole thickness (front/back): 17/29 mm
  • Reduces vibrations and increases flexibility
  • Optimal traction
  • Abrasion-resistant

More info

More info

TECHNOLOGY:


GORE-TEX®: Whatever the weather, Gore-Tex® shoes keep your feet dry and keep you comfortable. All Gore-Tex® shoes are waterproof and highly breathable.

Cold weather, an increase in weight, blisters: very often, as soon as your feet get wet, the activity stops being so fun. This is why shoes made with Gore-Tex® product technology are essential for trails and summits around the world

 

Michelin Tech Soles: Sole developed in collaboration with Michelin for optimal traction and grip.

 

AP+: Bouncy elastomer located in the sole for more dynamism, cushioning and a longer lifespan.

 

s

XTARIDE: This technology offers trail shoes that move with you. A global design that offers a stable stride and a grip specifically suitable for trail running.

 

DynaMotion Fit: Stretchy mesh to help the top of the shoe move with you. This reduces the tension endured by the shoe and prevents the tongue from moving.

 

AirMesh: Airy nylon upper for an optimal feel, breathability, and comfort.

 

Mizuno Wave: The Wave Plate improves distribution of the shock wave on impact for an ideal balance of cushioning and efficient stability.