Warne Skyline Precision M-LOK Bipod - Quick Adjustable, Panning & Cant for Rifles

Warne

MSRP: $459.99
$367.99
(You save $92.00 )
(No reviews yet) Write a Review
SKU:
7904M
UPC:
656813114634
manufacturer:
Warne
model:
Skyline
size:
6.9-9.1
type:
Bipod
color:
Black
Warne Skyline Precision Bipod, Anodized Finish, Black, M-LOK Quick Detach Mount, 5 Position Leg Rotation, 6.9-9.1 7904M

The Warne Skyline Precision Bipod, model 7904M, is engineered to deliver exceptional stability and versatility for precision shooters. Designed specifically for M-LOK interface systems, this bipod offers quick, one-handed height adjustments, allowing shooters to adapt swiftly to changing conditions. Its ergonomic design ensures ease of use during critical moments, providing reliable support across various terrains and shooting positions. Whether you're on uneven ground or aiming from less stable positions, the Skyline bipod's smooth cant and panning capabilities enable precise target acquisition and maintain consistent accuracy. Constructed from high-quality materials, it delivers strength and durability while maintaining a lightweight profile for ease of transport and handling. The black finish complements a variety of firearm styles, making it suitable for both tactical and hunting applications. With a size adjustable range of 6.9 to 9.1 inches, it accommodates a wide range of shooting scenarios, ensuring optimal positioning and stability. This bipod's robust build and innovative features make it a reliable choice for serious shooters seeking performance and durability in the field or range.

Features:

  • Quick height adjustment: Makes it easy to adapt to different shooting positions with one hand
  • M-LOK compatibility: Attaches securely to M-LOK interface systems for versatile mounting
  • Smooth cant and panning: Allows precise adjustments on uneven terrain or unstable surfaces
  • Durable construction: Built with high-quality materials to ensure strength and longevity
  • Lightweight design: Facilitates easy handling and transportation without sacrificing stability