| SKU | Designation | French Law | Length (cm) | Height (cm) | Weight (g) | Mounting | MSRP | Stock | |
|---|---|---|---|---|---|---|---|---|---|
| SKU IMP0404 | Designation picatinny/blaser rail for TIKKA T1X | French Law Vente libre | Length (cm) 16 | Height (cm) 0.8 | Weight (g) 135 | Mounting 11mm rail |
MSRP
255.00 € incl. tax
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- |
Out of stock
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INNOMOUNT develops mounting solutions renowned for their precision , robustness , and versatility . The German brand designs reliable products, built to last and adapt to the demands of the field. In use, this quality of machining and mechanical precision is immediately apparent.
The INNOMOUNT Multirail for Blaser Tikka T1x combines a Picatinny rail with Blaser mount compatibility. This hybrid solution allows you to use multiple systems on a single base, while maintaining excellent rigidity. In use, this versatility is appreciated, truly simplifying setups, even on a lightweight platform.
The INNOMOUNT Multirail allows you to equip a Tikka M55 with modern optics while maintaining great flexibility. It combines a classic Picatinny rail with Blaser mount compatibility - a practical and future-proof solution.
This hybrid rail allows the use of both Picatinny accessories and Blaser mounts. The result: a wide range of choices to adapt your optics to your needs.
The precision-machined profiles ensure consistent optical support. Even under stress, positioning remains reliable - this is exactly the kind of detail that is validated in the field.
Made from bronzed steel , this rail offers excellent resistance to mechanical stress. Even under intensive use, the assembly remains stable and durable.
This system allows for easy upgrades to your equipment. You can switch from one setup to another without a complete overhaul - a flexibility that is appreciated in the long run.
Yes, this model is specifically designed for the Tikka M55 rifle.
It allows the use of both Picatinny and Blaser mounts, offering great flexibility of use.
Yes, its steel construction guarantees excellent resistance and optimal stability over time.