ROKFORM Unveils Pro Ball Motorcycle Mount: Premium Quality, Secure Hold, and Infinite Adjustability
By William Fiyaz
ROKFORM, a leading innovator in premium handheld solutions for active enthusiasts, has unveiled the Pro Ball Motorcycle Mount, designed to withstand the harshest conditions while keeping smartphones secure. Featuring a dual rubber ball and socket mechanism, this mount offers unparalleled adjustability, enabling riders to position their devices for optimal visibility and access.
Jeff Whitten, CEO of ROKFORM, stated, “Our customers expect superior quality from our motorcycle mounts compared to those of our competitors. Our priority is always to meet and exceed these expectations. The Pro Ball Motorcycle Mount represents a significant advancement in our product line. After more than a year of careful development, we’ve created a mount that not only performs exceptionally but also complements the bike’s aesthetics seamlessly. We aim to provide a premium product that gives riders confidence in their phone’s security while maintaining a sleek, unobtrusive design that enhances the bike’s appearance.”
Constructed from top-grade aircraft aluminum and featuring stainless steel hardware, the Pro Ball Motorcycle Handlebar Mount is built to resist rust and corrosion. Its UV-anodized black aluminum finish retains its appearance even after prolonged exposure to sunlight.
The mount is compatible with handlebars ranging from 7/8″ (22mm) to 1.5″ (38mm), making it one of the most versatile options on the market. Riders can choose between an easy-to-adjust knob or a flush mount screw system, offering flexibility in installation and aesthetics.
A standout feature of this mount is its easy installation process, facilitated by an included tool that allows for quick setup in minutes. For added security, a removable safety lanyard is included, providing an extra layer of protection on and off the bike.
Additionally, the mount is compatible with ROKFORM’s Vibration Dampener, which protects the phone’s internal components from potential damage caused by prolonged vibration.