Women's Thermal Ski Tights BL 500 - Black
- 2-year warranty
- 365 days to return for members
- moisture managementLOW: slightly breathable component.
- warmthGOOD: Brushed polyester component. 210 Gr/m2
- What type of fit is the women's BL SKI 500 base layer?The BL SKI 500 ski base layer has a standard straight cut that adapts to all body shapes.Not too loose so it’s efficient and keeps in the heat.
- What are the benefits of Polyester?Polyester is the most commonly-used fibre for base garments because it is relatively inexpensive and offers excellent performance in various respects, and especially because the fibres can be knitted to obtain a very lightweight and durable fabric. It actively absorbs moisture but does not dry particularly well when wet.
- This product is repairable.We commit to repairing your product free of charge for the duration of the warranty. Whatever it is, fixings, seams, etc. This service is offered in your usual store. However, if we can't repair your product (production defect), we will exchange it or reimburse you.
- To help you choose the right sizeThe model is wearing size M and is 1.73 m tall Their measurements are as follows: - Waist size 67 cm - Inside leg length 83 cm - Hip measurement 99 cm
Features
Summary
Design benefits
Design details
Specifications
Details
frequency | regular |
intensity | mid intensity |
place of practice | resort touring, outdoor, mountain |
weather conditions | cold weather |
fit | fitted |
reversible | not reversible |
without pocket | |
main material | polyester |
style | with pattern, plain |
number of pockets | pocket less |
type of length | long |
condition | new |
belt height | high waistband |
Composition
Main fabric: 9.0% Elastane, 91.0% Polyester |
Usage & care
Environmental impact
Ecodesign approach

Using this mass-dyeing process enables us to reduce CO2 emissions linked to the production of dyed textiles by at least 17% compared to conventional dyeing.

Using recycled polyester rather than conventional polyester reduces the CO2 emissions linked to the material by at least 17%.