OXXA Essential Anika 0175 High Visibility Traffic Vest RWS
When you need reliable visibility on the job, this high visibility traffic safety vest delivers exactly what you're after. The OXXA Essential Anika 0175 RWS safety vest features certified Rijkswaterstaat striping that meets strict Dutch road safety requirements, ensuring you're spotted in any working condition. Built from breathable mesh polyester, this visibility vest keeps you comfortable throughout your shift whilst maintaining its reflective properties. The vest fastens easily with dual velcro closure, and the V-neckline provides practical everyday wearability. Meeting EN ISO 20471 Class 2 standards, this high visibility safety vest offers the protection your role demands without compromising on comfort or ease of use.
Key Features
- Certified RWS striping meets Rijkswaterstaat safety standards
- Breathable mesh polyester construction for all-day comfort
- Dual velcro closure for quick fastening and adjustment
- EN ISO 20471 Class 2 high visibility classification
- V-neckline design for practical everyday wear
Recommendations from our Unishore Expert
This traffic safety vest has been engineered with your working day in mind. The breathable mesh construction prevents heat build-up, so you stay comfortable whether you're out in warmer conditions or moving between indoor and outdoor spaces. The dual velcro fastening system is genuinely handy-no fiddling about with zips or buttons, just quick, secure closure over your other layers. The RWS striping pattern meets stringent Dutch road authority specifications, which means you're getting a vest that's been tested to keep you visible in demanding traffic environments. This is solid workwear that balances visibility with practicality.
Product Features
- Material - 100% polyester mesh
- Sluiting - Dual velcro closure
- Artikelnummer - 260175
Standards and Safety
- Meets EN ISO 20471 Class 2 high visibility standards
- Certified RWS striping for Rijkswaterstaat compliance
- Reflective striping ensures visibility in low-light conditions