Upgrade your Remington 700 short action rifle with the Evolution Gun Works HD Picatinny Rail Scope Mount, engineered for precision long-range performance. This one-piece 30 MOA rail delivers exceptional strength and stability, allowing shooters to achieve consistent accuracy at extended distances while maintaining a low-profile design.
Key Features
- 30 MOA cant optimized for 1000-1500 yard shooting, providing the elevation adjustment needed for long-range ballistics without excessive scope dialing.
- Machined from solid 7075 T6 aircraft-grade aluminum for superior strength-to-weight ratio and durability under recoil.
- Full-length Picatinny cross slots for flexible scope ring placement and accessory mounting, compatible with both Picatinny and Weaver rings.
- Ambidextrous bevel design with a low .35″ height for improved cheek weld and faster target acquisition.
- Includes mounting hardware (#6-48 and #8-40 screws) and T-10 bit; recommended torque of 20 in/lbs with blue Loctite.
Specifications
- Overall Length: 6.276 inches
- Center Spread: 3.627 inches
- Height (receiver to top of rail): 0.35 inches
- Weight: 2.5 oz
- Finish: Matte black hardcoat anodize
- Compatible models: Remington 700 Short Action, 722, 40x, Bergara B14, and select others
Why Choose This Product
Traditional two-piece bases can shift under heavy recoil, compromising zero. This EGW HD one-piece rail eliminates that risk with rigid construction and precise machining, ensuring your optic stays locked in place. The 30 MOA built-in cant solves the common pain point of running out of elevation adjustment on high-magnification scopes during long-range sessions, giving you more usable travel and faster follow-up shots.
Made in the USA with premium materials, this mount is the professional choice for tactical operators, precision rifle competitors, and serious hunters who demand reliability without added bulk.
Installation Notes
Direct drop-in fit for Remington short action receivers. Always verify hole spacing on your firearm and torque to specifications for optimal performance and safety.
