The Warne V614M Horizontal Rings deliver precision scope mounting with zero MOA adjustment for shooters demanding reliable optic alignment. These 30mm medium-height rings feature Warne's proven horizontal mounting system that distributes clamping force evenly across the scope tube.
What Makes This Different
The V614M rings utilize Warne's horizontal clamping design instead of traditional vertical split rings, creating 360-degree contact with the scope tube. This eliminates stress points that can damage expensive optics while providing superior holding power under heavy recoil. The medium height positions scopes at the optimal eye relief distance for most rifle configurations.
Key Features
- 30mm tube diameter accommodates modern tactical and hunting scopes
- Medium height (0.900" center-to-rail) for proper scope positioning
- Horizontal clamping system prevents scope tube damage
- Matte black finish reduces glare and resists corrosion
- Precision-machined from aircraft-grade aluminum
- Torx head screws provide consistent, secure mounting
- Compatible with Picatinny and Weaver rail systems
These rings maintain zero through thousands of rounds across calibers from .223 to .300 Win Mag. The horizontal design distributes recoil forces evenly, making them suitable for precision rifle competition, long-range hunting, and tactical applications. Weather-sealed construction withstands temperature extremes and moisture without losing torque specifications.
Technical Specs
- Ring diameter: 30mm
- Height: Medium (0.900" center-to-rail)
- Material: Aircraft-grade aluminum
- Finish: Matte black anodized
- MOA adjustment: 0 (neutral)
- Mounting system: Horizontal clamp design
- Rail compatibility: Picatinny/Weaver
- Hardware: Torx head mounting screws included
- Weight: Approximately 4.2 oz per pair
- Country of origin: USA
The V614M rings represent Warne's commitment to precision manufacturing and field-proven reliability. Their horizontal design eliminates the guesswork in scope mounting while protecting valuable optics from mounting stress.