Sold: Exena MARS S3 SRC ESD Shoe
Shipped: Exena MARS S3 SRC ESD Shoe
PRODUCT LINE
Levity-X
UPPER
Soft, hydro-repellent full-grain leather designed to offer maximum comfort and durability.
LINING
Breathable synthetic fabric Top-Mesh, engineered to provide increased breathability and resistance to external stresses. Ideal for dynamic and outdoor environments.
TOE CAP
T-Alu, 200J aluminum, crafted for optimal balance between lightness and strength.
ANTI-PERFORATION
Synthetic SafeFlex Conductive conductive footwear synthetic midsole plate, capable of withstanding 1100N. Ensures safety against injuries caused by objects or hard surfaces.
INSOLE
Energy multi-layer PU insole, anatomically designed to provide optimal support and is removable. Also incorporates antistatic technology for protection against static charges.
SOLE
2D Air-Hole, made of soft dual-density polyurethane, SRC (Slip Resistance Class) certified non-slip, specifically designed to offer maximum stability during movements.
Protection Class: S3 SRC ESD
UNI EN ISO 20345:2022 Standard
The Exena MARS S3 SRC ESD Shoe is a versatile and safe product, ideal for dynamic and outdoor environments. The soft, hydro-repellent full-grain leather of the upper provides maximum comfort, while the breathable synthetic fabric Top-Mesh lining ensures greater breathability. The 200J aluminum toe cap provides an optimal balance between lightness and strength, ensuring stability to the feet during activities. The SafeFlex Conductive anti-perforation system ensures safety against injuries caused by objects or hard surfaces, with a resistance of 1100N. Additionally, the Energy multi-layer PU insole provides anatomical and removable support, also equipped with antistatic technology for defense against static charges. Finally, the 2D Air-Hole sole, made of soft dual-density polyurethane, SRC certified non-slip, ensures maximum stability during movements. The Exena MARS S3 SRC ESD Shoe complies with the UNI EN ISO 20345:2022 Standard and represents an excellent choice for dynamic and outdoor environments, thanks to the combination of advanced technology, effective safety, and maximum comfort.