MY CART

Your shopping cart is empty

gallery
gallery
gallery
gallery
gallery
gallery

SCOTT

SCOTT KINABALU RUNNING WOMEN SHOE

#417787

$240

gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery
gallery

SCOTT

SCOTT KINABALU RUNNING WOMEN SHOE

#417787

$240

Size

40.5

40

38.5

41

39

Color

DBMT

Quantity

1

Additional Information

Key Features

  • Most versatile trail outsole
  • Dual density foam for maximal cushioning
  • Rocker shape for running efficiency
  • Our Kinabalu trail running shoes have an extensive history. Now in its third generation, we have given it a full redesign to provide you with improved comfort, protection and running efficiency out on the trails. Run through the nearby forest, over smooth running trails in the mountains and enjoy every step of the way. No more excuses, no shortcuts!

  • Range of use

    Trail

  • Composition

    UPPER: Mesh/Thermoplastic Polyurethanes
    LOWER: Ethylene Vinyl Acetate/Rubber

  • Heel

    29.5mm

  • Forefoot

    22.5mm

  • Heel to forefoot drop

    7mm

  • Features

    Versatile Traction
    Dual Density Kinetic Foam
    ER2 - Evolved Rocker Technology
    Ripstop Mesh Upper
    Women-specific Ortholite Ultra Footbed
    Thermoplastic Polyurethane Support Cage
    Toe Guard

  • Size

    US 5.5-11/UK 3-8.5/EU 36-43

  • Approx. weight

    270g

  • Fit

    Performance

The SCOTT KINETIC FOAM is a lightweight and highly responsive foam. It returns 14% more energy than standard EVA (Ethylene-vinyl acetate), resulting in a plush but stable and more dynamic ride. You get more energy back so you can run faster for longer.

 

With its fully redesigned lugs the outsole bites into the different levels of rocks, roots and trail features to optimize the ground contact and enhance traction. This outsole is ideal for hardpack rolling trails.

 

Evolved Rocker2 (ER2) builds on 10 years of continued R&D, creating our most efficient running platform yet. ER2 applies our advanced understanding of biomechanical principles to promote a more dynamic running position, reducing heel strike impacts and increasing running efficiency. Simply put, you can run faster for longer, with less energy.