The Weaver 99498 Multi-Slot Base transforms your Savage 110 short action rifle into a precision long-range platform with its built-in 20 MOA cant. This extended aluminum base maximizes scope mounting options while providing the elevation adjustment needed for shots beyond 300 yards.
What Makes This Different
Unlike standard flat bases, this mount incorporates a 20 MOA downward cant that effectively adds 5.8 inches of elevation adjustment at 1000 yards. The extended multi-slot design spans the entire receiver length, distributing recoil stress across multiple mounting points rather than concentrating it on just two screws. Hard anodized aluminum construction resists corrosion and maintains zero under heavy recoil.
Key Features
- 20 MOA built-in cant for extended long-range capability
- Extended multi-slot design with multiple cross-slot positions
- Precision-machined from 6061-T6 aluminum alloy
- Type III hard anodized black finish for durability
- Fits Savage 110 short action receivers specifically
- Accepts standard Weaver/Picatinny rings
- Low-profile design maintains proper cheek weld
The multi-slot configuration allows precise scope positioning for optimal eye relief and cheek weld across different stock configurations. Hunters appreciate the additional elevation for long-range shots on open terrain, while competitive shooters benefit from the consistent return to zero after scope adjustments. The hard anodized finish withstands field conditions without showing wear or compromising the mounting surface.
Technical Specs
- Material: 6061-T6 aluminum alloy
- Finish: Type III hard anodized black
- Cant: 20 MOA downward
- Compatibility: Savage 110 short action only
- Ring compatibility: Weaver/Picatinny standard
- Mounting: Uses factory receiver holes
- Profile: Extended multi-slot design
This base represents a significant upgrade over factory mounting options for serious long-range applications. The combination of extended length, 20 MOA cant, and precision manufacturing delivers the foundation needed for consistent accuracy at distance.