The Firefield FF26027 Impulse combines a precision 1x28mm red dot sight with an integrated red laser for rapid target acquisition at any range. This dual-optic system eliminates the need for separate mounting systems while maintaining zero across both sighting methods.
What Makes This Different
Unlike standalone red dot sights, the Impulse integrates both close-quarters laser targeting and magnified optic capabilities in a single housing. The 28mm objective lens provides 40% more light transmission than standard 20mm red dots. Dual reticle options include a precise 2 MOA dot for accuracy work and a 60 MOA circle for rapid engagement scenarios.
Key Features
- Integrated red laser and red dot sight eliminates multiple mounting points
- 28mm objective lens with multi-coated optics for enhanced clarity
- Dual reticle system: 2 MOA red/green dot and 60 MOA circle
- Unlimited eye relief with 1x magnification for both-eyes-open shooting
- Picatinny rail mount fits standard MIL-STD-1913 rails
- Matte black anodized aluminum construction
- Independent controls for dot brightness and laser activation
The sight maintains zero through repeated mounting and dismounting on quality rail systems. Brightness settings accommodate everything from indoor training to bright outdoor conditions. The laser provides instant close-range targeting for tactical applications while the red dot handles precision shots at extended distances. Weather-sealed construction protects internal components from moisture and debris.
Technical Specs
- Magnification: 1x with 28mm objective diameter
- Reticle: 2 MOA red/green dot, 60 MOA circle
- Eye Relief: Unlimited
- Mounting: Picatinny/Weaver rail compatible
- Construction: Anodized aluminum housing
- Finish: Matte black
- Power: CR2032 battery (laser), AA battery (optic)
- Weight: Approximately 12 ounces
The FF26027 Impulse delivers versatility for shooters who need both precision optics and rapid laser targeting without the complexity of multiple mounting systems. Quality construction and proven reliability make this an efficient solution for tactical applications.