GEAR: NEW LONGBOARD SHAPES IN FULL CARBON TECHNOLOGY!
Our longboard range is expanding with three distinctive shapes: the Moodgun, the Hyperdrive, and the Frank!
Born from our passion for surfing and the constant drive to innovate, our lineup blends retro and modern shapes. Today, we’re introducing three bold new designs inspired by standout models in our range:
- The Hyperdrive and Moodgun, both drawing lines from the iconic Moodrive, offer unique riding experiences. The Hyperdrive delivers a highly modern and radical feel of a 2+1 setup, while the Moodgun is built for powerful conditions and committed drops.
- The Frank, positioned between a Deano and an Incredible, embraces traditional noseriding while enhancing it with daring design choices and cutting-edge technology.
All three models feature EPS Pro full carbon construction, providing an exceptional level of stiffness and responsiveness rarely seen in longboards.
Full Carbon EPS Pro Construction
Constructed entirely from carbon over an EPS core, the construction of the Frank, Hyperdrive and Moodgun is revolutionary in the world of classic longboards. It provides remarkable stiffness and energy, setting a new benchmark in its category. Contrary to what one might expect, this rigidity doesn’t compromise the glide. On the contrary, it enhances finesse and precision in every maneuver while delivering subtle yet invaluable accelerations in the most critical sections.
- On a design as specialized as the Frank, this technology makes perfect sense. It turns the board into a precise and efficient tool, perfectly suited for small waves. Where the Deano already shines, the Frank goes even further—a Deano +++ that takes the noseriding experience to its peak.
- This construction ensures a lightweight yet ultra-reactive feel, exactly what you need for the purpose the Hyperdrive is designed for. This results in blistering acceleration, precise control in the air, and a seamless glide that enhances every nose ride.
- On a Moodgun, it provides outstanding rigidity and dynamism, which is crucial for handling heavy waves. Its lightweight, ultra-responsive nature enables razor-sharp precision when engaging the wave, while optimizing acceleration in critical sections.