The Weaver 48365 Four-Hole Skeleton Rings deliver precision scope mounting with reduced weight and enhanced rigidity. These 30mm medium-height rings feature a skeletonized design that cuts unnecessary material while maintaining structural integrity for consistent point of impact.
What Makes This Different
The four-hole skeleton construction removes excess aluminum without compromising strength, creating rings that weigh 20% less than solid alternatives. Each ring undergoes CNC machining to achieve precise tolerances within 0.001 inches, ensuring proper scope alignment. The medium height provides optimal cheek weld position for most rifle stocks while clearing standard barrel contours and objective lenses up to 44mm.
Key Features
- 30mm tube diameter accommodates modern tactical and hunting scopes
- Medium height (0.90 inches) suits most rifle configurations
- Four-hole skeleton design reduces weight while maintaining rigidity
- Matte black hard-anodized finish resists corrosion and glare
- Precision-machined 6061-T6 aluminum construction
- Cross-bolt design distributes clamping force evenly
- Compatible with Weaver and Picatinny rail systems
Field performance remains consistent across temperature extremes and recoil cycles. The skeleton cutouts allow for scope adjustment tool access without ring removal. Hunters appreciate the weight savings during extended carries, while competitive shooters rely on the repeatable zero retention through match cycles. The hard-anodized surface withstands harsh weather conditions without finish degradation.
Technical Specs
- Ring diameter: 30mm
- Height: Medium (0.90 inches center to base)
- Material: 6061-T6 aluminum
- Finish: Matte black hard-anodized
- Weight: 3.2 oz per pair
- Torque specification: 25 inch-pounds
- Rail compatibility: Weaver and Picatinny
- Country of origin: USA
Professional gunsmiths and serious shooters choose Weaver rings for their manufacturing precision and field-proven reliability. The 48365 model combines traditional Weaver quality with modern weight-saving engineering for optimal scope mounting performance.