Turntide axial flux motors power Fering's new long-range hybrid off-road vehicle.

Turntide Technologies has announced a major partnership with Fering, a maker of rugged off-road vehicles, to power the company's next generation of hybrid vehicles The Whig. Turntide supplied axial flux motors and inverters—compact electric components with high power density—that let Fering build vehicles with longer range and more flexible capabilities. The complete electric propulsion package reduces the space needed inside the vehicle while delivering the power Fering's demanding applications require.
Axial flux motors are smaller and more powerful than traditional electric motors. Their compact design gave Fering the space it needed to integrate a complete hybrid system without sacrificing cargo capacity or interior room Owen Sound Sun Times. This matters for off-road vehicles that need to carry equipment, weapons, or personnel across difficult terrain.
Fering's vehicle uses a parallel hybrid design, which means the electric motor and gas engine work together Pembroke Observer. This approach maximizes efficiency during normal driving and extends total range for long missions. The parallel setup lets Fering support heavy-duty work cycles while keeping fuel consumption low.
Turntide Technologies specializes in electric and hybrid propulsion for vehicles that work in extreme conditions Leader Post. The company's axial flux technology is gaining traction in industries that need high power in tight spaces. Fering's selection underscores growing demand from defense, emergency, and commercial sectors for vehicles that combine traditional fuel engines with electric power.
The partnership positions Fering's vehicles for deployment across multiple sectors and tough environments Montreal Gazette. Long-range capability and flexible hybrid power make the vehicles suitable for remote operations where refueling is difficult. The technology opens doors for defense, exploration, and emergency response teams that depend on reliable vehicles in harsh conditions.
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