Trespass Skylar Half Zip Fleece - Blue - XXL - Regular


The Trespass Skylar Half Zip Fleece is a versatile mid-layer designed for women who need reliable warmth and easy layering for daily activities or light outdoor pursuits. Crafted from 130gsm microfleece, it provides essential insulation without excessive bulk, though its lightweight construction means it is better suited as a layering piece than as a standalone outer shell in extreme wind or rain.
| Gender | Female |
|---|---|
| Age Group | adult |
| Colour | Blue |
| Fit | Regular |
| Material | Polyester |
| Size | XXL |
| Brand | Trespass |
No, the microfleece material is breathable and does not feature a windproof membrane, making it best suited as a mid-layer.
It is designed as a mid-layer. While suitable for mild days, it will not protect you against heavy rain or harsh wind.
GSM stands for grams per square meter. 130gsm indicates a lightweight, thinner fleece density that is perfect for layering.
The standard Skylar model focuses on a clean profile and does not include external or internal pockets.
It is best to store it on a hanger to keep the fabric shape or folded neatly in a drawer to avoid unnecessary stretching.
The Skylar features a regular fit. If you plan to wear thick base layers underneath, you may find the regular sizing accommodating; otherwise, it fits true to typical women's sizing.
Ensure you are washing the garment inside out and avoiding harsh detergents or excessive heat in the dryer.
Check the track for stray lint or fabric fibers; gently clean with a soft brush and apply a small amount of dry lubricant if necessary.
As a layering garment, the Trespass Skylar pairs best with a moisture-wicking base layer. It is machine washable, though it is recommended to wash on a cool, gentle cycle to preserve the integrity of the microfleece. Avoid using fabric softeners, as these can impact the breathability and the anti-pilling properties of the synthetic polyester material. Always hang dry or tumble dry on a very low heat setting to prevent material shrinkage.