







Hiking day shoes - Women -
The Moab Speed 2 Ltr Mid Wp Hazel W are day hiking shoes for women from Merrell.
Designed for demanding hikers, it offers optimal support thanks to its mid-cut upper made of moulded leather, synthetic material and waterproof fabric. Its classic lacing system ensures a precise and reliable fit throughout the day.
Thanks to the waterproof and breathable Gore Tex membrane, this shoe will protect you from the elements while wicking away moisture to keep you dry.
Its rubber sole Vibram TC5+ guarantees exceptional grip on all terrains, while the technology FlexPlate provides stability and protection, combining rigidity and flexibility for lasting comfort.
The durable foam midsole provides excellent cushioning, and the 100% recycled mesh insole improves breathability while contributing to a more responsible approach.
The Moab Speed 2 Ltr Mid Wp is ideal for adventures in the great outdoors where performance and comfort are essential.



- Heel: 34millimeters
- Toebox: 24millimeters
- Drop: 10millimeters
- Lugs: 4millimeters
Materials:
- Waterproof upper made of moulded leather, synthetic material and textile
- 100% recycled laces and straps
- 100% recycled mesh insole
- Durable foam midsole
- Durable rubber
| CLEANSPORT NXT | CLEANSPORT NXT™ is a natural odour control system. Its probiotic technology attaches itself to the lining fabric to reduce the substances responsible for unpleasant odours. |
| VIBRAM TC5+ | Vibram® TC5+ UNMATCHED GRIP FOR OUTDOOR TERRAIN Formulated exclusively for Merrell, the compound Vibram® TC5+ offers exceptional traction for outdoor multisport activities, backed by the outstanding durability that Merrell is renowned for Vibram®. |
| FLEXPLATE | FLEXPLATE™ – OPTIMAL STABILITY AND PROTECTION. The technology Merrell FlexPlate™ incorporates a lightweight stability plate covering the full foot, combined with strategically placed reinforcements under the exterior flange, for optimal stability, protection, durability and grip. The variable composition of the materials provides optimum rigidity at one end of the plate and optimum flexibility at the other. |
