The Unity Tactical FAST Micro Mount elevates red dot optics to an optimal height for use with night vision devices and provides faster target acquisition with both eyes open shooting. This Flat Dark Earth finished mount transforms standard micro footprint optics into a more versatile sighting system.
What Makes This Different
The FAST (Flip-up Augmented Sight Technology) Micro Mount positions optics at a 2.26-inch centerline height, compared to standard mounts at 1.57 inches. This elevated position eliminates the need to crane the neck when using night vision goggles and promotes better shooting posture. The mount maintains zero repeatability through its precision-machined aluminum construction and proprietary clamping system.
Key Features
- 2.26-inch optical centerline height optimized for night vision compatibility
- Aimpoint Micro T-1/T-2/H-1 footprint compatibility
- 7075-T6 aluminum construction with Type III hard coat anodizing
- Integrated backup iron sight aperture for redundancy
- Quick-detach lever for rapid optic removal
- Flat Dark Earth finish matches FDE weapon systems
- Return-to-zero capability after remounting
Field testing demonstrates the mount's ability to maintain zero through repeated installations and harsh environmental conditions. The elevated height reduces fatigue during extended shooting sessions by promoting natural head position. Law enforcement and military units report improved performance in low-light scenarios when transitioning between day optics and night vision systems. The backup sight provides immediate target reference if the primary optic fails.
Technical Specs
- Height: 2.26-inch optical centerline
- Material: 7075-T6 aluminum alloy
- Finish: Type III hard coat anodized Flat Dark Earth
- Footprint: Aimpoint Micro (T-1, T-2, H-1, CompM5)
- Rail compatibility: Picatinny/MIL-STD-1913
- Weight: 2.4 ounces
- Country of origin: USA
Professional users choose Unity Tactical mounts for their proven durability and innovative design approach. The FAST Micro Mount addresses real operational needs while maintaining the reliability required for critical applications.