WINTER FENICE Safety Boot
Step into safety and comfort with the WINTER FENICE Safety Boot, designed to meet the rigorous demands of industrial environments. This ankle-high boot features a quick release system for easy wear and removal, while the glass fibre toecap and composite puncture-proof layer ensure maximum protection. The eco fur lining provides warmth, making it ideal for winter conditions. With a PU/PU sole that offers excellent traction and flexibility, this boot is perfect for navigating uneven terrains.
Key Features
- Upper Material: Printed grain leather
- Lining: Eco fur for warmth
- Toecap: Glass fibre for enhanced protection
- Footbed: Multi-perforated EVA with anti-shock properties
- Puncture-Proof: Composite layer
- Sole: PU/PU with high flexibility and excellent traction
- Quick Release System: For easy wear and removal
- Non-slip: SR grade for safety
- Comfort: Wide and comfortable shape
Certification
The WINTER FENICE Safety Boot complies with the EN ISO 20345:2022 S3S standard, ensuring it meets the highest safety requirements for protective footwear. This includes:
- Fuel/Oil Resistant (FO): Protects against fuel and oil spills.
- Leg Guard (LG): Provides additional protection to the leg area.
- Slip Resistant (SR): Ensures stability on slippery surfaces.
Specifications Table
Collection | Shoe & Boot |
---|---|
Flame Retardant | No |
Chemical Resistant | No |
High Visibility | No |
EN Standard | EN ISO 20345 (Safety footwear) |
Seasonality | Winter |
Color | Black |
Shoe Options | Antistatic, Shock Absorbing, Slip Resistant, Puncture Resistant |
Shoe Type | High |
Type of Nose | Composite |
Workshoe Safety Classes | S3S: S3 slip-resistant |
EN Extra Features | FO: Fuel/oil resistant, LG: Leg guard, SR: Slip resistant |
Instructions and Care
- Store clean footwear in a cool, dry place, away from heat sources and light.
- Before each use, check that the shoes are in perfect condition and replace them if they are not intact.
- Clean the shoes with a soft brush and water. Avoid using chemicals that could damage the materials.