The Amend2 AICS MOD3 magazine delivers reliable feeding for precision rifles chambered in 308 Winchester and 7.62x51 NATO. This 12-round magazine features advanced polymer construction engineered to withstand demanding field conditions while maintaining consistent performance.
What Makes This Different
Unlike standard steel magazines that add unnecessary weight, the MOD3 utilizes high-strength polymer construction that reduces overall system weight by 40% compared to metal alternatives. The magazine body incorporates reinforced feed lips and a corrosion-resistant finish that maintains function in adverse weather conditions. Internal geometry optimizes cartridge presentation for smooth bolt cycling across multiple rifle platforms.
Key Features
- 12-round capacity for 308 Winchester/7.62x51 NATO cartridges
- AICS-pattern compatibility fits Accuracy International and similar chassis systems
- High-impact polymer construction weighs 60% less than steel magazines
- Anti-tilt follower prevents binding and ensures consistent feeding
- Textured grip panels provide secure handling in wet conditions
- Reinforced feed lips resist deformation under pressure
- Drop-free design enables rapid magazine changes
Field testing demonstrates reliable function across temperature ranges from -20°F to 140°F. The magazine maintains dimensional stability during extended storage while loaded, making it suitable for tactical applications and long-range precision shooting. Competition shooters benefit from the consistent cartridge presentation that supports sub-MOA accuracy potential.
Technical Specs
- Capacity: 12 rounds
- Caliber: 308 Winchester/7.62x51 NATO
- Material: High-impact polymer construction
- Pattern: AICS-compatible magazine well
- Weight: Approximately 4.2 ounces empty
- Finish: Matte black polymer
- Country of Origin: United States
- Manufacturer: Amend2
The MOD3 represents proven engineering focused on function over unnecessary features. Professional shooters and serious enthusiasts recognize the value of reliable feeding systems that perform when accuracy matters most.