Alfheim Jacket Unisex
Alfheim is an oversized warming coat, perfect for putting on top of your other garments when belaying, or when you just need some extra warmth.
Price: 439 GBP, reduced from 439 GBP
- Fits true to size Take your normal size
- Regular fit for layering
- Medium size center back length: 99cm
- Free Shipping over £200
- Free Returns
- Product Lifetime Warranty
Alfheim is an oversized warming coat, perfect for putting on top of your other garments when belaying, or when you just need some extra warmth.
Alfheim is an oversized warming coat, perfect for putting on top of your other garments when belaying, or when you just need some extra warmth. The fit of the jacket is loose, and the length stops just above the knees. It features a two-way zipper for good ventilation and belaying possibilities.
Features
Water Repellant
Wind Resistant
Excellent for
Climbing
Wind resistance
10 / 10 Windproof & waterproof
Warmth
5 / 9 Core Warmth, 0°C to -20°C

Product Material
Alfheim combines advanced material engineering with lightweight warmth and reliable weather protection.
The main fabric is Cutan® Levitend®, a 2-layer construction made from 100% pre-consumer recycled polyamide with a PU membrane and DWR coating. This provides full waterproofing (>20 000 mm) and high breathability (>20 000 g/m²/24h) in a lightweight 20D mini ripstop fabric that is both durable and flexible.
The jacket is insulated with Primaloft® Gold Active, using 60 g and 80 g synthetic fill strategically placed for optimal thermal efficiency and mobility. The insulation is made from 55% polyester and 45% post-consumer recycled polyester, offering lightweight warmth even in damp conditions.
Reinforced polyamide panels at the shoulders and bottom hem enhance durability, while the bluesign® and GRS certifications guarantee responsible and sustainable sourcing.
The combination of recycled polyamide shell, synthetic Primaloft® insulation, and fluorocarbon-free protection makes Alfheim a versatile, weatherproof, and eco-conscious insulation jacket ideal for high-output and transitional conditions.






