Titan 2 Connection:
The Titan 2 connection introduces a revised design to deliver even greater efficiency, rigidity, and reliability at the critical junction between the mast and foil.
Building on the compact, stiff, easy-to-assemble format that made the original Titan so effective, the Titan 2 now uses only two M8 screws and benefits from a reinforced structural connection. The result is improved precision and responsiveness, all while maintaining excellent hydrodynamic performance.
Riders will therefore benefit from a more direct feel underfoot, improved pumping, and a stronger connection to the foil in all conditions. This added stiffness also allows riders to stand higher on the mast, which helps reduce drag and optimize glide.
Pre-Preg Technology:
Pre-preg makes the foils stiffer and stronger. With pre-preg fabrics, the carbon fiber is directly impregnated with epoxy resin by its manufacturer. This guarantees a perfect ratio between epoxy and carbon and represents the highest quality process. It is then cured at high temperature, bringing strength and durability.
Quality control is much better and so is the working environment for the people building our foils. Pre-preg fabrics offer the lightest weight with the best mechanical properties of carbon fibre.
High Modulus Carbon:
The High Modulus Carbon fibre layup is 1.5x stiffer than the regular carbon fiber used in other constructions. The percentage of high modulus fiber has been carefully adjusted to obtain the best stiffness in both bending and torsion while keeping enough comfort for any kind of practice.
Spine Technology:
Spine internal structure ensures the best rigidity and control while riding.
Dynamic Structural Design:
Recognizing that the structural design (construction) of a foil is as critical as its geometrical design (shape), F-One applies its Dynamic Structural Design to transform foil performance by tailoring the carbon fibre layup to each foil’s specific program and use.
Through precise definition and control of fibre orientation, quantity, distribution, and type, each foil benefits from the most fine-tuned layup to achieve the desired characteristics, such as enhanced manoeuverability, comfort, stiffness, and pumping efficiency.
By mastering both the shape and the layup, this meticulous approach to foil design ensures that every size and span is optimized to deliver the best possible performance.