The i-Run team says
Ideal for your sporting performances, the La Sportiva Sky tank top for women accompanies you during your intensive training sessions.
Classified as L1 - Base Layer, this garment is capable of managing excess sweat buildup and evacuating it during effort. It integrates HeiQ Smart Temp, which acts like a thermostat that regulates your body temperature and cools you when the intensity increases.
The whole piece is combined with a very airy fabric and mesh inserts to allow for constant air circulation.
Lightweight and stretchy, its material guarantees you maximum freedom of movement and total absence of chafing.
The Polygiene treatment prevents the proliferation of bacteria to delay the onset of odors, contributing to your well-being.
Our model Natacha is 1.75m tall and wears a size S.
Key points of the La Sportiva Sky tank top
- L1 - Base Layer: sweat wicking
- HeiQ Smart Temp: thermoregulation
- Airy fabric and mesh inserts: breathability
- Lightweight and stretchy material: ease of movement
- Wide armholes: freedom of movement
- Polygiene treatment: anti-odor
- Recycled Fabric: eco-friendly
- Colors: sky blue, white, and red
Technologies
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L1 : Base Layer
Layer in direct contact with the skin. Promotes the elimination of sweat for better climate comfort during physical activity.
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HeiQ Smart Temp
The HeiQ Smart Temp process responds to body temperature and perspiration to ensure constant coolness and increased comfort. This innovative technology activates when the heat rises to cool the body, and it stops once the process is complete. It acts like a personal thermostat as intended.
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Recycled Fabric
La Sportiva introduces fibers and padding made from the reuse of recycled and certified RePET® polyester, derived from the recycling of end-of-life plastic bottles. Garments bearing the ?FABRIC RECYCLED? label ensure that:
- each petrochemical derivative has been replaced by fibers obtained from recycled polyester
- the garment helps reduce the impact on the planet
- durability and quality over time
- production of lower quantities of CO2 (approximately 54% lower than the production of traditional fibers) in the process of producing recycled polyester fibers