Women's GT-2000 14 - Wide
Specs
Heel Drop: 8 mm
Weight: 240 g/8.46576 oz
Support: Stability
Cushion: High
Details
The GT-2000™ 14 shoe is designed to help provide a more energetic ride and a supportive running experience.
A trampoline-inspired forefoot pod is positioned on the medial side of the outsole. This helps produce better stability and a more balanced toe-off.
The midsole is updated with a FF BLAST™ MAX cushioning unit. Creating a more energized toe-off, this foam also offers cloud-like softness during the landing phase of your stride. ?
Tech & Materials
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Woven mesh upper
Breathable material helps keep your feet dry -
Asymmetric tongue wing
A tongue feature that provides a comfortable and secure feel around the midfoot while reducing tongue movement. -
Trampoline-inspired outsole pod
Our outsole and midsole design that captures more energy return for an enhanced foam bouncing effect during toe-off. -
3D GUIDANCE SYSTEM™
Adaptive, on-demand stability system achieved through platform geometry and controlled deformation. -
Rearfoot PureGEL™ technology
Softer, updated version of our GEL® technology. Approximately 65% softer vs standard GEL® technology. -
FF BLAST™ MAX cushioning
One of our most energetic midsole foams that's complemented with cloud-like softness and a responsive energy return in each step. -
OrthoLite™ X-30 sockliner
Sockliner that provides cushioning performance and moisture management for a cooler, dryer environment. -
AHARPLUS™ heel plug rubber
ASICS' pinnacle high abrasion resistant rubber located in the heel area that is approximately three times more durable than standard outsole rubbers. -
AHAR® LO outsole rubber
A lower-density rubber placed in key areas of the outsole for reliable grip and traction without sacrificing durability. -
Reflective details
Designed to help improve visibility in low-light settings -
At least 50% of the shoe's main upper material is made with recycled content to reduce waste and carbon emissions
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The sockliner is 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