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Klättermusen Nal Shorts M's | Ash Rose

Nal

1 049 DKK

Shorts
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Shorts

Nal

Men's Ultramid® Shorts

149CHF

Ash Rose
    Fit: Regular Fit

    Free Shipping for Members within EU

    Free Returns

    Product Lifetime Warranty

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    Ultramid® Biomass

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    Climbing

    mfr4-icon

    MFR 4

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    Wind Resistant

    Equipment No: 15563M91256

    Windbreaker shorts made for high activity and free movement.

    The Nal shorts are stretchy, flexible and soft and will provide the right amount of wind protection for both high pace hiking and rock climbing in warmer temperatures. The shorts have two hand pockets, a back pocket for valuables and an adjustable waist band for a perfect fit. For increased visibility, triangular reflectors are added to both sides. The shorts are silent and lightweight, made from bluesign® approved Ultramid® Bio-Mass Balanced Polyamide.

    Advantages

    • Elastic mesh at waist for ventilation
    • Adjustable waist band
    • Hand pockets with reflective reinforcement at bottom opening
    • Zipped back pocket to keep valuables safe
    • Fused bottom hem seams
    • Light weight zipper pull
    • Attachment cord loops at back yoke
    • Protected seam allowances with edge fabric to avoid abrasion
    • Increased visibility with triangular reflectors on both sides
    Nal

    Nal Series M's

    Extend your windbreak wardrobe with additional Nal pieces. These airy and lightweight pieces with added safety features are the perfect choice for high-intensity activities and warm weather.

    Nal Series M's

    Extend your windbreak wardrobe with additional Nal pieces. These airy and lightweight pieces with added safety features are the perfect choice for high-intensity activities and warm weather.

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    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.