The Weaver 48364 Four-Hole Skeleton Rings deliver secure scope mounting with reduced weight for tactical and hunting applications. These 30mm low-profile rings feature a skeletonized design that maintains strength while eliminating unnecessary material.
What Makes This Different
The four-hole skeleton construction removes material from non-critical areas while maintaining structural integrity at stress points. This design approach reduces overall weight by approximately 25% compared to solid ring designs without compromising holding power. The precision-machined aluminum construction provides consistent return-to-zero performance across temperature variations and recoil cycles.
Key Features
- 30mm tube diameter accommodates modern tactical and hunting optics
- Low height profile positions scope closer to bore axis for improved sight alignment
- Four-hole skeleton design reduces weight while maintaining 30 inch-pounds torque rating
- Matte black anodized finish eliminates glare and resists corrosion
- Cross-bolt design distributes clamping force evenly around scope tube
- Precision-machined from aircraft-grade aluminum alloy
- Compatible with Weaver and Picatinny rail systems
Field testing demonstrates these rings maintain zero through extended shooting sessions and environmental changes. The low mounting height works particularly well with AR-platform rifles and bolt-action hunting rifles where cheek weld consistency matters. The skeleton cutouts provide visual confirmation of proper scope tube seating while allowing access for cleaning and maintenance.
Technical Specs
- Ring diameter: 30mm
- Height: Low profile
- Material: Aircraft-grade aluminum alloy
- Finish: Matte black hard anodized
- Mounting system: Cross-bolt with hex screws
- Torque specification: 30 inch-pounds maximum
- Weight: Approximately 3.2 oz per pair
- Rail compatibility: Weaver and Picatinny
These rings represent proven engineering focused on performance rather than aesthetics. The combination of weight reduction and maintained strength makes them suitable for applications where every ounce matters without sacrificing reliability.