The Warne 500M Maxima Horizontal Rings deliver precision scope mounting with steel construction and cross-bolt design. These 1-inch low rings provide zero MOA cant for shooters demanding reliable optic alignment across multiple shooting disciplines.
What Makes This Different
The Maxima series incorporates Warne's signature cross-bolt clamping system that distributes mounting stress evenly across the scope tube. Unlike standard rings that rely on side screws alone, the horizontal cross-bolt design prevents scope tube damage while maintaining consistent zero retention. The matte black finish eliminates glare and provides corrosion resistance in harsh field conditions.
Key Features
- Cross-bolt horizontal clamping system prevents scope tube damage
- Precision-machined steel construction with matte black finish
- 1-inch tube diameter with low height profile (0.885" center height)
- Zero MOA cant for true horizontal scope alignment
- Torx head screws prevent stripping and ensure proper torque values
- Compatible with Weaver and Picatinny rail systems
- Individual ring caps allow scope installation without rail removal
Field testing demonstrates the 500M rings maintain zero through repeated recoil cycles and temperature variations. The low profile suits tactical applications where cheek weld consistency matters, while the steel construction handles magnum caliber recoil forces. Competitive shooters benefit from the repeatable return-to-zero capability when swapping optics between rifles.
Technical Specs
- Ring diameter: 1 inch (25.4mm)
- Height: Low profile (0.885" center height)
- Material: Precision-machined steel
- Finish: Matte black oxide coating
- Mounting: Weaver/Picatinny compatible bases
- Cant: 0 MOA (no built-in angle)
- Hardware: Torx head mounting screws included
- Manufacturer: Warne Scope Mounts, USA
The 500M Maxima rings represent proven engineering focused on scope protection and mounting reliability. Professional gunsmiths and precision shooters choose Warne for applications where scope security cannot be compromised.