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According to the United States Environmental Protection Agency (EPA), the V6 model has a fuel economy rating of 17 miles per US gallon (14 L/100 km; 20 mpg ‑imp) in the city and 28 miles per US gallon (8.4 L/100 km; 34 mpg ‑imp) on the highway. [87] The V6 Mustang was discontinued in January 2017 as part of the 2018 model year refresh. [88 ...
Turbochargers returned to Formula One for the 2014 season, with turbocharged 1.6 L (98 cu in) V6 engines replacing the naturally aspirated 2.4 L (146 cu in) V8 engines that were previously used. The turbocharging combined with more powerful energy recovery systems kept the power level similar to the previous V8 engines, despite the smaller ...
The fifth-generation Ford Mustang, is a two-door four-seater pony car manufactured and marketed by Ford from 2004 to 2014, for the 2005 to 2014 model years — carrying the internal designation S197 and marketed in coupe and convertible body styles.
The Cyclone engine, also branded Duratec, is Ford Motor Company's latest DOHC family of gasoline V6 engines introduced in 2006. [1] The Cyclone succeeds Ford's previous V6 engine families, including the Canadian built Ford Essex engine introduced in 1981, the Ford Vulcan engine introduced in 1985, the original Duratec V6 introduced in 1993, and the Ford Cologne V6 engine, whose design dates ...
Tremec TR-3650 transmission – 2001–2010 Mustang GT; 2003–2004 Mustang Mach 1; Tremec TR-6060 transmission – 2007–2014 Ford Shelby GT500, Ford Falcon I6T, 5.4L and 5.0L supercharged V8; Getrag transmissions Getrag MT-285 6-Speed Manual - 2002-2004 Focus SVT; Getrag MT-82 - 2011–present Mustang GT
The F-series EcoBoost 3.5L V6 uses two BorgWarner K03 turbochargers which can spin up to 170,000 rpm and provide up to 100 kPa (15 psi) of boost. The transverse EcoBoost 3.5L V6 uses two Garrett GT1549L turbochargers and provides up to 76 kPa (11 psi) of boost. The turbos are set up in a twin-turbo configuration.
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A mechanically driven supercharger offers exceptional response and low-rpm performance, as it does not rely on pressurization of the exhaust manifold (assuming that it is a positive-displacement design, such as a Roots-type or twin-screw, as opposed to a centrifugal supercharger, which does not provide substantial boost in the lower rpm range), but is less efficient than a turbocharger due to ...