2023 Ferrari F8 Spider 2dr Cnv on 2040-cars
Charlotte, North Carolina, United States
Engine:Twin Turbo Premium Unleaded V-8 3.9 L/238
Fuel Type:Gasoline
Body Type:Convertible
Transmission:Automatic
For Sale By:Dealer
VIN (Vehicle Identification Number): ZFF93LMA5P0291190
Mileage: 569
Make: Ferrari
Model: F8 Spider
Trim: 2DR CNV
Features: --
Power Options: --
Exterior Color: Bianco Cervino
Interior Color: Rosso Ferrari
Warranty: Unspecified
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Want to buy a worst-in-show-winning Faux Ferrari Fiero?
Mon, Aug 31 2020UPDATE: This heap sold for $5,001. But don't fret, there are more terrible cars out there for the taking if that's your thing. Today we bring you something truly terrible. It's not just a fake Ferrari built on the guts of an old Pontiac Fiero, it's actually the world's worst fake Ferrari built on the guts of an old Pontiac Fiero. And it's got the award from the Concours d'Lemons to prove it. It's so heinous, in fact, that it has somehow managed to become desirable, at least judging by the bidding history of this bright red affront to Maranello. Powered by a 140-horsepower 2.8-liter V6 engine (covered by an unconvincing and broken fake V12 cover) hooked to an automatic gearbox, this gloriously poor Prancing Horse won't be winning many stoplight drag races. There are bundles of stray wires hanging down from the dashboard, it has high mileage, most of its lights don't work, and it's ugly. Like, really ugly. And to top it off, this Fauxrarri can't currently be registered in its home state of California because it has failed its most recent smog test. Put simply, you're looking at a total piece of junk. But a piece of junk with internet notoriety, having been featured on an episode of Jay Leno's Garage after attending the 2019 Quail Motorsports Gathering — by mistake at first, and then earning a special place next to the porta potties — being the focus of a video series on YouTube and winning the aforementioned ribbon for Worst in Show at Lemons. Somehow, bidding has topped $4,000 at the time of this writing. This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings. If you want to earn the ire of your neighbors — and to be clear, we really wouldn't recommend it — click on over to Cars & Bids to view the auction. There are four days left to hit the "bid" button. Consider yourself warned. Related Video:
Watch a vintage Ferrari racing engine shoot blue flames on a dyno
Tue, Feb 7 2017It is exactly the kind of winter Tuesday that absolutely requires a three-liter Ferrari flat-12 screaming at almost 10,000 rpm. In case you have been looking for such footage, you are in luck: here is about a minute's worth of a Ferrari racing engine liberated from its chassis, revving its guts out. There are blue flames and wonderful sounds – it's perfect. The dyno numbers in the end show the 312B2 reaching 365 horsepower, and BangShift notes that it's most likely an endurance engine build, engineered to withstand use for a lot longer than the 1970s F1 races lasted. As the engine builder, Carobu Engineering says, it is "a standard rebuild on an existing engine platform with no additional modifications for power. The primary consideration was reliability and clean running. While not the most powerful vintage F1 engine, it has been very reliable and smooth." Carobu's video commentary also says that the engine was originally received with broken timing gears when they first rebuilt it years ago. The first build produced 289 horsepower at 9000 rpm, and the second rebuild made 365 horsepower at 9800 rpm thanks to improved injection system tuning and ignition optimization. Related Video: News Source: Carobu Engineering via BangShift, JalopnikImage Credit: Carobu Engineering Beijing Motor Show Ferrari Racing Vehicles Videos ferrari f1
Ferrari patents a fancy and fascinating electric turbocharger
Fri, Jul 20 2018While turbocharging has improved vastly over the years, and it has enabled cars to become both more powerful and more efficient, there's always room for improvement. Turbochargers scavenge exhaust gas pressure and use it to turn a compressor that forces intake air into the cylinders. However, as the patent points out, this means the intake compressor and the exhaust turbine are physically coupled, and have to spin at the same rate. Ferrari's design divorces the two, and it's a happy breakup. The key is hooking up the two components of the turbo to their own individual electric motors, with an energy storage device in between. It's different than the electric supercharger systems you have seen on certain Audi products, for example. Those systems recover energy like a hybrid, store it, and then use it to drive an intake compressor. It supplements conventional turbochargers that harvest energy from the exhaust. In systems like Audi's, the electric supercharger is supplementing the sequential conventional turbochargers when they're not operating efficiently, at very low RPM in particular. It works well, but it's complicated, and it is a workaround for the limitations of a conventional turbocharger. See below for an animation of the Audi system. This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings. Usually, optimizing a turbo is a compromise between figuring out what RPM is ideal for each side to spin at to generate power. A smaller compressor generates boost more quickly, but loses efficiency at higher RPM. But there's way more energy in high-RPM exhaust gasses. By hooking up the turbine to an electric motor instead, you can harvest energy from the exhaust throughout the rev range, and particularly when the engine is pushing lots of gasses through. And you can store that energy in a battery if it's not needed at that moment. The intake-side compressor also has a reversible electric motor attached. It is not physically connected to the turbine, so it can operate at any time the computers decide it's beneficial. As engine RPM increases, the compressor doesn't have to increase its speed beyond its optimal range, so there's less energy wasted. And at low RPM situations, when a conventional turbocharger wouldn't have enough exhaust gas passing through its turbine side to generate useful boost in the compressor side, the electric motor can spin up Ferrari's divorced compressor to provide some boost.