Introduced 2025 and engineered for ROAD riders, the Supertech R LE Pecco Bagnaia Vented Boots are motorcycle boots delivering ventilation and control for summer track use. Certified to CE EN13634:2017, they pair a laser‑perforated microfiber chassis with a redesigned TPU shin plate, replaceable sliders, and a 3D‑mesh biomechanical inner bootie for impact absorption and airflow. A TPU stretch panel, micro‑ratchet, and grippy rubber sole refine fit and peg feel.
TPU shin plate redesign — improves impact absorption and abrasion resistance in a critical zone for greater protection.
Replaceable shin slider — adds abrasion protection and easy serviceability to extend performance life.
TPU stretch panel with zip — enables easier entry/exit and delivers a closer, more optimized race fit.
Hook‑and‑loop zipper keeper — keeps the zipper puller secured in position while riding.
Micro‑adjustable top ratchet closure — fine‑tunes fit for a secure, personalized hold at speed.
Microfiber upper with laser‑perforation zones — maximizes breathability and abrasion resistance while maintaining flexibility.
Front flex area redesign — enhances impact/abrasion management while preserving natural forward/back movement.
Front flex ventilation — increases airflow through the flex zone for additional breathability in hot conditions.
Microfiber top gaiter with TPU over‑injection — improves grip and calf seal for a tidy, stable closure.
New synthetic microfiber panel on the medial side for enhanced abrasion resistance in the bike-contact area.
New TPU shifter for increased protection on the lower medial side.
Inner bootie with a new external toe area featuring soft TPU reinforcement for superior impact protection, plus additional ankle padding for increased protection.
According to European statutory law, the CE mark is a conformity requirement for the marketing of this product; the following standard applies: CE EN13634:2017.
Replaceable co-injected TPU/aluminum toe slider protects the toe area against abrasion.
New replaceable heel plate slider design offers increased sliding performance and protection in the event of a crash.
Sole constructed using a lightweight rubber compound.
Separate, internally updated bio-mechanical inner bootie constructed from 3D mesh for increased structural support.