The BCM ORAT52513 A/T Optic Riser delivers precise height adjustment for tactical optics requiring elevated mounting positions. This 5.25-inch riser transforms standard rail configurations into optimized shooting platforms for specialized applications.
What Makes This Different
Unlike basic optic risers that offer limited adjustability, the BCM A/T series provides exact 5.25-inch elevation with integrated anti-rotation features. The 13-slot Picatinny configuration spans 6.5 inches of mounting surface, accommodating larger optics and accessories while maintaining zero retention. Military-grade anodizing resists corrosion and wear better than standard aluminum finishes.
Key Features
- 5.25-inch height elevation for absolute co-witness with backup iron sights
- 13 Picatinny slots provide 6.5 inches of continuous mounting surface
- Black hard-anodized 6061-T6 aluminum construction for lightweight durability
- Anti-rotation tabs prevent scope ring movement under recoil
- MIL-STD-1913 compliant rail interface ensures universal compatibility
- Precision-machined mounting surfaces maintain optical alignment
- Tool-free installation with standard Picatinny rail systems
Field performance remains consistent across temperature extremes and heavy use cycles. The elevated position accommodates night vision devices, thermal optics, and magnified scopes while preserving access to backup iron sights. Competition shooters benefit from improved sight picture geometry, while tactical users gain enhanced target acquisition speed.
Technical Specs
- Height: 5.25 inches above rail surface
- Length: 6.5 inches (13 Picatinny slots)
- Width: Standard MIL-STD-1913 rail width
- Material: 6061-T6 aluminum alloy
- Finish: Type III hard anodized black
- Weight: Approximately 4.2 ounces
- Compatibility: All MIL-STD-1913 Picatinny rails
- Manufacturing: Precision CNC machined
Bravo Company Manufacturing's reputation for military-contract quality extends to every component detail. The ORAT52513 represents proven engineering for shooters demanding reliable optic positioning without compromise.