Price evolution
Product description
The essentials
This compact 1 inch ball mount holder is designed to simplify mounting and stabilise devices on motorcycles, ATVs and other vehicles. Its threaded mirror compatibility and 3/8-16 fit ensure a secure connection for RAM mounts, making it a practical choice for riders who value reliability and ease of use. Manufactured from aluminium with a rubberised surface, it resists rust and minimises slip, even in challenging conditions. The CNC precision finish provides a smooth, scratch-free surface and accurate sizing for dependable performance on every ride 🚲. You get a straightforward installation that saves time and reduces fiddling with tools, so you can focus on the road ahead. Overall, this adapter offers robust construction and straightforward operation ideal for daily use on two or four wheels.
Technical details
Precision engineered for durability and longevity, this portable tripod adapter features a 25.4 mm ball head covered with non-slip rubber to keep your accessory stable. The unit is designed for rear view mirrors with 3/8-16 threads and is fully compatible with RAM mounts, broadening its applicability across different brands and configurations. The mounting interface is easy to adjust, while the aluminium body keeps weight to a minimum without sacrificing strength. Expect a snug, well‑fitted connection that resists unwanted movement during vibration or high speeds, enhancing both safety and convenience on the move. While built to last, routine checks and gentle cleaning extend the life of the finish and prevent wear in high-use scenarios. If you are upgrading an existing RAM system or creating a modular mounting setup, this ball mount delivers a reliable bridge between components and your vehicle’s mirror assembly 🎯.
Especificaciones técnicas
- Clave: 1 inch ball head, 25.4 mm diameter
- Clave: Material: aluminium with rubber coating
- Clave: Thread compatibility: 3/8-16 rear view mirrors
- Clave: Compatibility: RAM mounts
- Clave: Finish: CNC precision, smooth surface









