BAYRIDE AND REV'IT | MATCH MADE!

Oxford Kickback 3.0 Men's Shirt - Khaki

  • Sale
  • Regular price $259.90
Tax included.

- This is our ONLINE STORE, not all Products are kept at our showroom location. To view stock in our Tauranga store please contact us with 3 days notice. Products purchased online will be shipped from our warehouse to your address within 3 days of purchase date.

- Any questions? Please call the friendly Bayride team on 07 571 3040.

- No returns on sale items.


The Oxford Kickback 3.0 Motorcycle Riding Shirt combines premium construction with durable materials to deliver enhanced protection and comfort on every ride. Its CE AA safety certification, aramid reinforcement, and advanced technical features work together to provide dependable performance and all-day wearability.

Features:

  • CE AA Certified (EN 17092-3:2020): Tested under rigorous abrasion and impact conditions, this shirt meets the EN 17092-3:2020 standard, ensuring proven protection levels that help reduce injury risk and provide reliable safety for everyday road use.
  • Level 2 CE Shoulder and Elbow Protectors (EN 1621-1:2012): Fitted with high-performance impact protectors that meet Level 2 standards, using energy-absorbing materials to reduce collision forces at key points for improved rider protection and confidence.
  • Reinforced Aramid Zoned Lining: Strategically placed aramid fibre panels deliver exceptional abrasion resistance in high-risk areas, maintaining crucial protection in the event of a slide or impact.
  • Triple-Layer Reinforced Elbows: A three-layer construction in the elbow area increases fabric strength and durability, enhancing protection in a zone prone to frequent contact and friction.
  • Wicking Mesh Liner: A breathable mesh lining with moisture-wicking properties draws sweat away from the skin and boosts airflow, keeping you cool and comfortable even on longer rides.
  • Airflow Back Vent: A fixed mesh rear vent channels air through the back panel for passive cooling, helping regulate temperature and prevent heat build-up in warmer conditions.