AUDI

Nuvolari: 1,001 hp and faster than a Lamborghini
To develop its most powerful supercar from scratch, Audi leveraged internal resources to have it ready in just 405 days (a little over a year) from the initial project approval meeting. Specifically, it turned to Lamborghini, utilizing the chassis and engine from the newly launched Temerario plug-in hybrid.
It was named after Tazio Nuvolari, an immensely talented Italian racing driver from the 1930s and 1940s who won motorcycle races, Le Mans, the Mille Miglia, and Grand Prix events. In the latter category, during the late 1930s, he drove single-seaters for Auto Union (the brand that would later become Audi).
Technologically, the concept is essentially similar to that of Formula 1 cars and modern endurance prototypes, combining the immense power of a combustion engine with electric assistance to enhance performance and traction, while also incorporating active aerodynamic elements. In this context, it is positioned to fulfill the old motorsport adage: "Win on Sunday, sell on Monday."
The Nuvolari is the first production vehicle to adopt Audi's new design philosophy (which chronologically debuted with the Concept C); it stands out for its taut surfaces and a mid-rear engine configuration that defines its proportions and monolithic volume.

The bodywork is equally striking in Audi's new exclusive "Titanium" color, also featured on the Audi Concept C and the Formula 1 car. Behind this more minimalist design philosophy—dubbed "Radical Next"—is Massimo Frascella. The Italian designer began his career at Bertone, worked for the Ford Group, led design at Jaguar Land Rover, and was hired in early summer 2024 to define the styling of future Audi models. “Every external element performs a clearly defined aerodynamic function, from the front wing to the rear diffuser. And everything is exactly what it appears to be—whether carbon fiber or aluminum, inside and out,” explains Gael Buzyn, head of Audi’s advanced design center in Malibu, USA, with whom I shared this first dynamic experience in the Nuvolari.
It is also notable that the bodywork is virtually devoid of sharp edges; yet, its clean, monolithic forms—unlike the styling seen on a Lamborghini—still hint at its exceptional performance.
“The collaboration between designers and engineers was crucial, ensuring that every element of the bodywork had a functional reason for existing,” adds the French designer, who has lived in the United States for 20 years.
In this regard, “input from Formula 1 drivers Nico Hülkenberg and Gabriel Bortoleto was vital during the project's development phase,” noted Viktor Underberg, Audi’s Director of Sports Car Performance, who served as my co-pilot during the roughly 10-kilometer exclusive drive in the Nuvolari.
Bortoleto, for instance, mentioned during dynamic testing at Nardò that what immediately struck him was the car’s precision and predictability in corners: “Basically, there is no understeer, which is impressive given the performance level. The balance remains very neutral and precise, providing the confidence needed to maintain speed through curves. You can clearly feel how the various systems—especially aerodynamics and torque distribution—work in unison,” the Brazilian explained.

Underberg (who worked at Audi prior to a recent stint at Lamborghini) emphasizes that “immense attention was paid to the balance between downforce and drag to maximize stability and, consequently, allow for precise control of the Nuvolari.” The chassis, suspension, and wheelbase are the same as those of the Temerario, with a slight increase in track width—1 cm at the front and 2 cm at the rear.
It features DRS, like a Formula 1 car, and generates over 400 kg of downforce. The front S-duct (which intakes air through the bumper and exhausts it through the hood) provides additional downforce, reducing lift at high speeds and improving engine cooling. However, the central element of the active aerodynamics system is the retractable, adaptive rear wing, which manages downforce and aerodynamic drag across three settings: closed, low downforce, and high downforce.
In the closed position, the rear wing retracts to minimize aerodynamic drag and improve efficiency. In high- and low-downforce configurations, varying levels of downforce are generated based on driving dynamics and the selected mode (the wing rises from the low-downforce closed position at 70 km/h, lowers at 50 km/h, and moves to the high-downforce position at 140 km/h).
In performance-oriented driving modes—such as Dynamic, Dynamic+, and Track—the rear wing is fully automatically actuated. On straightaways, the system switches to a low-drag position to optimize top speed and stability.
The Drag Reduction System (DRS), known for its use in Formula 1, can be manually activated (except in E-Hybrid mode) via a steering wheel button, enabling a top speed of 351 km/h. Additionally, the system automatically raises the wing during high-speed cornering, allowing active aerodynamics to contribute to greater driving efficiency.

Carbon fiber, electronic brakes, and technology inherited from Lamborghini...The Nuvolari combines an aluminum chassis with CFRP (carbon fiber-reinforced plastic) exterior panels. Manufacturing processes derived from motorsport—such as autoclave-cured pre-preg carbon fiber components—are employed to achieve maximum lightness and rigidity.
The Nuvolari also features forged wheels with a single-bolt center-lock system, a first for an Audi production model (though inherited from the Temerario). The tires are 255/35 ZR20 at the front and 325/30 ZR21 at the rear.
The braking system is electronic (brake-by-wire); consequently, the brake pedal has no physical connection to the wheels—unlike in conventional hydraulic systems—as the process is managed by an electronically controlled pump. This facilitates the combination of regenerative and hydraulic braking without altering pedal feel.
The brakes utilize carbon-ceramic discs with an internal cooling system that, according to German engineers, improves heat dissipation by 21% compared to conventional carbon-ceramic discs. They feature ten-piston fixed calipers at the front and four-piston calipers at the rear.
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