Concave Volt IN - White/Silver
With a lightweight synthetic upper for better control on the ball, the Concave Volt IN soccer shoes feature a non-marking outsole for reliable traction on indoor surfaces.
Created to expose space on the field, the Concave Volt shoes boasts a soft touch PU synthetic upper, which is cushioned to provide a reliable first touch on the ball and improved durability.To increase your power and accuracy, the Volt’s Powerstrike Technology sits on the upper part of the laces to provide a larger sweet spot when striking the ball, while its F3 (Football Form Fit) dual-lacing system ensures a long-term and supportive fit.For consistent comfort, the inside of the Volt features a textile and PU synthetic lining, while its removable shock-absorbing sock liners provide added cushioning.Specifically designed for indoor use, the soleplate features a non-marking outsole for superior grip.
Cleat Class - Team
Concave
There’s a reason their cleats are marketed as the most powerful in the world: keepers don’t stand a chance if you connect sweetly wearing Concave.
Features
Additional Information
- Quick Ref: 181111
- Man. Ref: VOVSINWHESIR183
Ground Type Guide
Selecting the correct sole plate for the surface you are playing on is crucial, not only for the performance and longevity of your cleats, but also to avoid the risk of injury.
Using an outsole that isn't designed specifically for the surface on which you are playing may cause premature wear and/or damage that will not be deemed as a fault of manufacture and will prevent the retailer accepting them for a refund or exchange.
Indoor
Indoor surfaces are used for small-sided games such as 5-a-side and Futsal and are usually flat, extremely hard and unforgiving. Indoor outsoles (sometimes known as IN, IT – Indoor Trainer or IC – Indoor Court or Indoor Competition) use non-marking materials such as moulded gum rubber (can be clear or coloured) and provide cushioning, traction, flexibility and durability.
Indoor shoes use pivot points, flex grooves and herringbone patterns for optimum movement and traction.