Joe S3 SRC CI ESD u-power High Safety Shoes RV10014

Features:
Every single shoe is a guarantee of true comfort and functionality in the name of "pure Italian design", because u-power cares about the well-being of the people who work, so it is constantly committed to the creation of safety devices that can satisfy even the most demanding workers.
This new year brings with it many novelties, such as the new Red Leve line with its u-power Joe S3 SRC CI ESD high safety shoes, footwear designed specifically for the autumn/winter season thanks to the upper in Putek Star, a water-repellent, extremely robust and highly protective fabric, with an extraordinary lightness. This technology uses newly developed yarns with very high abrasion resistance, woven directly into the fabric, obtaining very high performance in rubbing and water repellency.
But the exceptional features do not end there, in fact the Peter are equipped with a "no metal" anti-perforation midsole compared to the classic steel insoles it is lighter, more flexible and safer as it can be sewn directly onto the upper, it guarantees the protection of the entire sole of the foot; Let's see the other properties:
- Putek Star high tenacity, water-repellent, breathable upper and toe protection in anti-abrasion film
- Airtoe Aluminium toe cap, to protect the toe from crushing, while maintaining a high degree of waterproofing and comfort
- Save & Flex Plus anti-puncture midsole in fabric, with 1100 N puncture resistance of the bottom
- WOW insole, anatomical, in soft dynamic compound by BASF, breathable and antibacterial
- New generation PU compound sole , lightweight, anti-abrasion, oil-resistant, non-slip and antistatic
- Natural Comfort 11 Mondopoint fit with sizes available from 35 to 48 in black with yellow details
The Joe S3 SRC CI ESD high safety shoes are also equipped with ESD certification which gives the shoe greater safety making it suitable for use in ATEX environments with the presence of electronically controlled machinery and therefore high electrostatic dissipation is required.