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McMurtry Spéirling Pure Debuts With Nearly 1,000 HP and Fan-Generated Downforce

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The McMurtry Spéirling Pure has officially entered production, bringing 986 horsepower, more than 4,400 pounds of downforce and a limited run of just 100 track-only hypercars.

McMurtry Spéirling Pure Debuts With Nearly 1,000 HP and Fan-Generated Downforce

The McMurtry Spéirling Pure is finally here. After years of breaking records with its prototype, the British automaker has unveiled the production version of its electric track-only hypercar, combining nearly 1,000 horsepower with one of the most advanced aerodynamic systems ever fitted to a production vehicle.

Limited to just 100 units worldwide, the McMurtry Spéirling Pure promises extreme performance through lightweight engineering, instant electric power and a revolutionary fan-assisted downforce system.

McMurtry Spéirling Pure delivers hypercar performance

Although it closely resembles the prototype, the production-spec McMurtry Spéirling Pure features 95 percent newly developed components.

Power comes from two rear-mounted electric motors producing 986 horsepower, allowing the hypercar to sprint from 0 to 60 mph in just 1.55 seconds. A larger 100-kWh battery pack replaces the previous 60-kWh unit, giving drivers enough energy to complete approximately 25 to 31 miles of flat-out track driving at LMP2 pace before recharging.

McMurtry has also upgraded the cooling system, redesigned several exterior components and refined the carbon-fiber monocoque to improve driver comfort while meeting international motorsport safety standards.

The McMurtry Spéirling Pure produces 986 horsepower and reaches 60 mph in just 1.55 seconds.

The McMurtry Spéirling Pure uses fan-generated downforce

The defining feature of the McMurtry Spéirling Pure is its innovative Downforce-on-Demand system.

Instead of relying solely on aerodynamic wings, the hypercar uses two high-speed fans mounted beneath the chassis to generate more than 4,400 pounds of downforce, even while the car is stationary. Working alongside a sealed skirt system, the fans allow the car to produce exceptional grip immediately upon acceleration.

According to McMurtry, the system enables the Spéirling Pure to generate up to 3G of lateral and braking force, giving it levels of cornering performance typically reserved for top-tier racing prototypes.

The dual-fan setup also provides redundancy, ensuring substantial downforce remains available even if one fan experiences a malfunction.

McMurtry’s fan system generates more than 4,400 pounds of downforce.

Only 100 McMurtry Spéirling Pure hypercars will be built

Exclusivity is another defining characteristic of the McMurtry Spéirling Pure.

Production will be limited to just 100 examples, each carrying a starting price of approximately $1.3 million. Buyers will also have access to factory-backed track support programs for competitive events.

The hypercar is expected to compete in events such as GT1 Sports Club, Global Time Attack in the United States and Time Attack Masters in Europe. Enthusiasts will also have their first opportunity to see the production model at the Goodwood Festival of Speed before it appears during Monterey Car Week later this year.

Production of the McMurtry Spéirling Pure is limited to only 100 units worldwide.

The McMurtry Spéirling Pure represents one of the boldest interpretations of an electric hypercar yet. By combining lightweight construction, nearly 1,000 horsepower and an innovative fan-assisted aerodynamic system, McMurtry has created a machine unlike anything else currently available. With only 100 examples planned, the Spéirling Pure is set to become one of the rarest and most technologically advanced track cars ever produced.

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Volvo Could Bring Electric Sedan and Wagon Back to the U.S.

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Volvo may reintroduce sedans and wagons to the U.S. with new all-electric models expected to arrive by 2028.

A new Volvo electric sedan could arrive in the United States within the next few years as the Swedish automaker reportedly considers bringing both an electric sedan and an electric wagon back to its North American lineup by 2028.

If approved, the move would mark Volvo’s return to a segment it exited after discontinuing its gasoline-powered sedans and wagons, signaling renewed confidence in electric passenger cars.

Volvo is reportedly planning to bring an electric sedan and wagon to the U.S. by 2028.

Volvo Electric Sedan Could Revive the Brand’s Passenger Cars

The upcoming Volvo electric sedan is expected to be based on the company’s next-generation SPA3 platform, the same architecture that will underpin the upcoming EX60 electric SUV.

The new platform features 800-volt technology, allowing faster charging and improved efficiency. Future models built on SPA3 are expected to offer driving ranges of around 400 miles and significantly shorter charging times.

Volvo’s next-generation SPA3 platform could underpin the future electric sedan and wagon.

Electric Sedan and Wagon Expected to Share Advanced EV Technology

Reports suggest the future Volvo electric sedan and wagon will likely share many components with the EX60, including advanced battery technology, fast-charging capability and high-performance electric powertrains.

The most powerful versions could produce as much as 670 horsepower, while charging from 10% to 80% may take as little as 19 minutes under ideal conditions.

Volvo’s future electric passenger cars are expected to feature 800-volt architecture and fast charging.

Volvo Eyes a Return to the U.S. Sedan Market

If the project moves forward, the Volvo electric sedan could revive iconic nameplates previously offered in North America while giving buyers another premium EV alternative. Although Volvo has not officially confirmed the program, the reported plan highlights the company’s continued investment in electric vehicles and its belief that demand for premium sedans and wagons could return in the U.S. market.

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Used Nissan Xterra Is the Best Off-Road SUV Under $10,000

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The Nissan Xterra remains one of the best-value used off-road SUVs, offering rugged capability and reliability for less than $10,000.

The Used Nissan Xterra has become one of the best bargains in the off-road SUV market. While models like the Toyota 4Runner and Jeep Wrangler continue to climb in price, the Xterra offers genuine four-wheel-drive capability, proven reliability and rugged styling for less than $10,000.

Built for adventure rather than luxury, the Xterra continues to attract buyers looking for a dependable SUV that can tackle trails without stretching the budget.

The Nissan Xterra remains one of the most affordable off-road SUVs on the used market.

Why the Used Nissan Xterra Stands Out

The second-generation Used Nissan Xterra, introduced for the 2005 model year, represented a major improvement over its predecessor. Built on Nissan’s F-Alpha platform, it shared its architecture with the Titan and Armada, delivering a stronger chassis, better interior space and improved off-road performance.

Power came from a durable 4.0-liter V6 engine, giving the SUV the capability needed for both daily driving and demanding off-road adventures.

The second-generation Xterra combines a rugged platform with a powerful V6 engine.

The Pro-4X Is the Model to Buy

Drivers searching for the most capable Used Nissan Xterra should focus on the Off-Road and later Pro-4X trims. These versions added Bilstein shocks, an electronic locking rear differential, skid plates, all-terrain tires and hill descent control.

Combined with body-on-frame construction and a part-time four-wheel-drive system, these upgrades transformed the Xterra into a serious off-road machine.

The Pro-4X trim adds premium off-road equipment for more challenging terrain.

A Hidden Gem Among Used SUVs

The Used Nissan Xterra remains one of the most underrated SUVs available today. While used Toyota 4Runners and Jeep Wranglers often command premium prices, clean Xterra examples continue to offer exceptional value.

For buyers looking to enter the off-road world without spending a fortune, the Nissan Xterra delivers durability, capability and reliability at a price that is becoming increasingly difficult to match.

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RACING

F1 Power Units Are Creating Bigger Driver Performance Gaps

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Formula 1 teams are discovering that modern power units can create significant performance gaps between teammates, even in identical cars.

Modern F1 power units are becoming one of the biggest factors separating teammates on track. According to McLaren Team Principal Andrea Stella, today’s hybrid systems can create noticeable differences in lap time even when two drivers are using identical cars.

The issue became particularly visible during qualifying at the Belgian Grand Prix, where small variations in energy deployment affected the performances of McLaren and Mercedes drivers.

Modern F1 power units can produce different performance levels even between identical cars.

Why F1 Power Units Affect Driver Performance

Unlike previous generations of Formula 1 engines, modern F1 power units rely on sophisticated software that constantly manages electrical energy deployment throughout a lap.

Instead of following a fixed strategy, the system makes calculations in real time based on multiple variables. That means two identical cars may not always deliver electrical power in exactly the same way, creating small but crucial differences in acceleration and top speed.

Teams continue working to optimize electrical energy deployment during each lap.

Andrea Stella Explains the Challenge

Andrea Stella explained that Oscar Piastri lost valuable time during qualifying because his power unit deployed electrical energy differently than Lando Norris’ system.

The McLaren boss also pointed to similar patterns inside Mercedes, where George Russell and Andrea Kimi Antonelli experienced comparable differences despite driving identical machinery.

Andrea Stella says energy deployment can influence qualifying performance.

Teams Continue Improving F1 Power Units

Formula 1 teams continue refining the software and simulation tools used to manage F1 power units before every race weekend. These systems help engineers optimize energy deployment, gearbox settings and driving techniques to maximize performance.

As hybrid technology becomes even more sophisticated, mastering power unit management could remain one of the biggest competitive advantages in Formula 1.

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