Last updated at 18/07/2025 07:03:32
Cushion | Soft |
Heel/toe drop | 6 Mm Drop** |
Synthetic materials Style # | W880K15 |
Cushion | Soft |
Heel/toe drop | 6 Mm Drop** |
Synthetic materials Style # | W880K15 |
The New Balance Fresh Foam X 880 V15 returns with an increased stack height and more Fresh Foam X then ever. Constructed with an engineered mesh upper paired with a gusseted tongue, the New Balance 880 offers a firm and secure lockdown whilst remaining breathable as you log your daily kilometres. By utilising SRL (Statistical Relational Learning), New Balance have developed the 880 v15 with an outsole specifically designed to deliver smooth transitions.
The New Balance Fresh Foam X 880 V15 returns with an increased stack height and more Fresh Foam X then ever. Constructed with an engineered mesh upper paired with a gusseted tongue, the New Balance 880 offers a firm and secure lockdown whilst remaining breathable as you log your daily kilometres. By utilising SRL (Statistical Relational Learning), New Balance have developed the 880 v15 with an outsole specifically designed to deliver smooth transitions.
in 5 offers
The New Balance Fresh Foam X 880 V15 returns with an increased stack height and more Fresh Foam X then ever. Constructed with an engineered mesh upper paired with a gusseted tongue, the New Balance 880 offers a firm and secure lockdown whilst remaining breathable as you log your daily kilometres. By utilising SRL (Statistical Relational Learning), New Balance have developed the 880 v15 with an outsole specifically designed to deliver smooth transitions.
The New Balance Fresh Foam X 880 V15 returns with an increased stack height and more Fresh Foam X then ever. Constructed with an engineered mesh upper paired with a gusseted tongue, the New Balance 880 offers a firm and secure lockdown whilst remaining breathable as you log your daily kilometres. By utilising SRL (Statistical Relational Learning), New Balance have developed the 880 v15 with an outsole specifically designed to deliver smooth transitions.
Size