MDT 34MM HIGH (1.25'') PREMIER SCOPE RINGS BLACK
Mdt 34mm high (1.25'') premier scope rings black
4.5 out of 5
Est delivery:
Fri Jun 12 - Sun Jun 14
When purchasing Mdt or any other brand from eGoods365.com store, you can be sure that (a) you are purchasing from US based company with the most responsive and friendly customer service; (b) an authentic, not a counterfeit and not a refurbished product.
Purchased together
Mdt 34mm high (1.25'') premier scope rings black
103549-BLK
$ 110.45
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Est delivery:
Fri Jun 12 - Sun Jun 14
When purchasing Mdt or any other brand from eGoods365.com store, you can be sure that (a) you are purchasing from US based company with the most responsive and friendly customer service; (b) an authentic, not a counterfeit and not a refurbished product.
Modular Driven Technologies’ Premier Scope Rings are manufactured with precision to provide an exact fit and alignment with the scope tube, ensuring a firm grip that retains zero, even under heavy recoil or long periods of firing. In addition, these rings have a wide surface area that allows for maximum and even distribution of clamping force across the holding surface, promoting stability and accuracy.
Each ring is built in accordance with STANAG 4694 NATO specifications, guaranteeing a secure fit on the scope rail and equal pressure on the underside of the angled rail surface, thereby maintaining a strong interface that outperforms out-of-specification rails. These sleek rings are crafted from machined billet 6061 aluminum which imparts superb strength, while their extra thick clamp system ensures no bending, fatigue, or loosening factors are present even when the rings are subjected to frequent use.
The rings are machined in pairs for a precise match and can be mounted on out-of-spec rails. Before release, every piece of Modular Driven Technologies’ Premier Scope Rings are tested using a CMM check to 0.0000015” to provide maximum precision.
MDT's Premier Scope Rings STANAG attachment method has undergone comprehensive testing, which has demonstrated that the interface's robustness significantly improves alignment repeatability, leading to greater accuracy and reliability.