Forsete

Men's Natural Flannel Shirt

$299

Burnt Russet

Fit: Regular fit Size Guide
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Forsete is a warm flannel shirt made from organic cotton and merino wool. Read More
Hiking
Hiking
Wind Resistant
Wind Resistant
Merino Wool
Merino Wool
Product Description
Equipment No: 20648M02
Forsete is a warm flannel shirt made from organic cotton and merino wool. Designed for winter trails but works just as good for everyday life. Inspired by the Klättermusen classic shirt first introduced in 1983, the Forsete shirt is reinforced for extra durability in the abrasion areas such as shoulders and lower arms with post-consumer recycled polyester. It is the perfect shirt to take on fall and winter trails.

Advantages

  • Collar can be locked in raised position to block wind
  • Reinforced shoulders and bottom sleeves
  • Button closure in front, attached with webbing
  • Mid-layer in natural fibers
  • Adjustable sleeve hems with slits for ventilation & folding
  • Chest pocket
  • Zipped safety pocket
Wind Resistant

Wind Resistant

MFR 4

MFR 4

Fair wind resistance.

Weight

485 g

Usages

Hiking
Hiking
Everyday
Everyday
Materials & Care
Hirsutum®

Shirt

Hirsutum® - 80% Organic Cotton,
20% Merino Wool, 249 g/m²
Mulesing free
Icebreaker

Reinforcement

Ice breaker® - 100% Post-consumer Recycled Polyester, 155gr/m² - Shoulders, Lower arms, Pocket flap
Washing and care

Washing & Care

Machine wash at 30°C. Do not bleach. Iron at low temperature.

Size and Fit
  • Fits true to size. Take your normal size
  • Regular fit for layering
  • Medium size center back length: 75 cm
  • Regular hem for tight coverage
  • Regular sleeve length for versatile comfort
  • Mid-weight, breathable fleece, with stretchy fabric
Size help and equipment measurements

The Mass Flow Resistance System

The Mass Flow Resistance (MFR) system helps you decide which wind and waterproof equipment to select for your next adventure. MFR combines the technical aspect of how easily air can pass through a fabric, and how much surrounding air will cool you, as well as how efficiently heat will be transported away.

MFR