The Weaver Lever Lok 49326 scope rings deliver tool-free mounting and adjustment for 1-inch scope tubes with their innovative lever-actuated design. These high-profile rings position scopes at the optimal height for proper cheek weld while maintaining zero through repeated mounting cycles.
What Makes This Different
The Lever Lok system eliminates the need for screwdrivers or hex keys during scope installation and removal. Unlike traditional ring caps that require precise torque specifications, these rings use cam-actuated levers that provide consistent clamping pressure every time. The high-profile design offers 0.5 inches of clearance above the rail, accommodating larger objective lenses up to 50mm diameter.
Key Features
- Tool-free lever operation for quick scope mounting and removal
- 1-inch tube diameter compatibility with high-profile height
- Matte black finish reduces glare and resists corrosion
- Fits standard Weaver and Picatinny rail systems
- Precision-machined aluminum construction for lightweight durability
- Self-centering design ensures proper scope alignment
- Repeatable zero retention through multiple mount cycles
Field performance remains consistent across temperature extremes and recoil cycles. The lever mechanism maintains proper ring tension without over-tightening that can damage scope tubes. Hunters appreciate the ability to quickly remove optics for transport or cleaning, while competitive shooters benefit from the repeatable mounting system that preserves zero between matches.
Technical Specs
- Ring Height: High profile (approximately 0.5" above rail)
- Tube Diameter: 1 inch
- Material: Precision-machined aluminum alloy
- Finish: Matte black anodized
- Rail Compatibility: Weaver and Picatinny rails
- Weight: Approximately 3.2 ounces per pair
- Country of Origin: United States
The Lever Lok 49326 rings represent proven engineering for shooters who demand reliable optics mounting without compromising on convenience. Professional gunsmiths and experienced shooters recognize the value of consistent ring pressure and repeatable zero performance.