Extra Cab 4 Dr 4x4 6.4 Turbo Diesel Automatic Loaded Great Work Truck!!!!!!!!!!! on 2040-cars
Saint Petersburg, Florida, United States
Body Type:Pickup Truck
Vehicle Title:Clear
Engine:6.4 DIESEL TURBO
Fuel Type:Diesel
Make: Ford
Model: F-250
Cab Type (For Trucks Only): Extended Cab
Trim: EXTRACAB
Options: 4-Wheel Drive
Drive Type: 4X4
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag
Mileage: 103,500
Power Options: Air Conditioning, Cruise Control, Power Locks
Exterior Color: White
Interior Color: Tan
Warranty: Unspecified
Number of Cylinders: 8
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Auto Services in Florida
Y & F Auto Repair Specialists ★★★★★
X-quisite Auto Refinishing ★★★★★
Wilt Engine Services ★★★★★
White Ford Company Inc ★★★★★
Wheels R US ★★★★★
Volkswagen Service By Full Throttle ★★★★★
Auto blog
Ford Australia launches Falcon GT F 351, last of its line [w/video]
Sun, 15 Jun 2014It's always best to go out with a bang rather than a whimper, and Ford Performance Vehicles is doing just that in Australia with the Falcon GT F 351. It's the most powerful road car the Aussie performance brand has ever made with a supercharged 5.0-liter V8 pumping out 471 horsepower (351 kilowatts) and 420 pound-feet of torque. It's joined by the FPV Pursuit Ute with the same powerplant tuned to 422 hp and 402 lb-ft. Sadly, the last F in this Falcon's name stands for Final.
The GT F 351 is a monumental way to go out, though. It harkens back to the old days of Aussie muscle Fords, and the 351kw output is meant to reference the classic Falcon GT and its 351-cubic-inch V8. In addition to the massive power, the F has the improved suspension from the R-Spec model and Brembo brake calipers.
FPV is building just 500 GT F sedans for Australia and 50 more for New Zealand, plus 120 Pursuit Utes. They feature a blacked-out hood and black stripes over the hood and sides, plus gloss black accents around the headlights, door handles and mirrors.
Ford and Mercedes join Renault in French emissions investigation
Thu, Jan 21 2016The French government is investigating certain models from Ford, Mercedes-Benz, and Renault because they allegedly produce more nitrogen oxide than the country's pollution rules allow, according to Automotive News, citing a French newspaper. After VW's emissions scandal, French regulators began checking more vehicles for evidence of defeat devices and excessive real-world pollution. According to Automotive News, the Mercedes S350 allegedly showed inconsistent results across these tests, and a Ford C-Max had NOx levels five times over the limit. The Renault Captur crossover, Espace, and an unnamed utility vehicle also had results that were too high. The French testing for this investigation includes an on-road emissions check that's not part of the EU's normal evaluations, which some automakers claim is unfair. "Unofficial on-road testing has varying conditions and can produce significantly different results," a Ford of Europe spokesman told Automotive News. Renault representatives met with French officials on January 18 to explain the situation. The company later submitted a plan to recall 15,800 examples of the diesel Captur, and said it would offer a voluntary software upgrade for about 700,000 other vehicles, according to Automotive News. Representatives from Ford and Mercedes will meet with the government soon, too. Renault's stock price plunged last week after investors heard that French regulators searched three of the automaker's sites as part of the emissions investigation. The stockholders feared an environmental scandal like the one currently embroiling Volkswagen. There's one major difference – as of now, there's no evidence Renault equipped any of the polluting models with defeat devices. Related Video:
8 automakers, 15 utilities collaborate on open smart-charging for EVs
Thu, Jul 31 2014We're going to lead with General Motors here. GM is one of eight automakers working with 15 utilities and the Electric Power Research Institute (EPRI) at developing a "smart" plug-in vehicle charging system. Why did we start with GM? Because it's the first automaker whose press release we read that mentioned the other seven automakers. Points for sharing. For the record, the collaboration also includes BMW, Toyota, Mercedes-Benz, Honda, Chrysler, Mitsubishi and Ford. The utilities include DTE Energy, Duke Energy, Southern California Edison and Pacific Gas & Electric. The idea is to develop a so-called "demand charging" system in which an integrated system lets the plug-ins and utilities communicate with each other so that vehicle charging is cut back at peak hours, when energy is most expensive, and ramped up when the rates drop. Such entities say there's a sense of urgency to develop such a system because the number of plug-in vehicles on US roads totals more than 225,000 today and is climbing steadily. There's a lot of technology involved, obviously, but the goal is to have an open platform that's compatible with virtually any automaker's plug-in vehicle. No timeframe was disclosed for when such a system could go live but you can find a press release from EPRI below. EPRI, Utilities, Auto Manufacturers to Create an Open Grid Integration Platform for Plug-in Electric Vehicles PALO ALTO, Calif. (July 29, 2014) – The Electric Power Research Institute, 8 automakers and 15 utilities are working to develop and demonstrate an open platform that would integrate plug-in electric vehicles (PEV) with smart grid technologies enabling utilities to support PEV charging regardless of location. The platform will allow manufacturers to offer a customer-friendly interface through which PEV drivers can more easily participate in utility PEV programs, such as rates for off-peak or nighttime charging. The portal for the system would be a utility's communications system and an electric vehicle's telematics system. As the electric grid evolves with smarter functionality, electric vehicles can serve as a distributed energy resource to support grid reliability, stability and efficiency. With more than 225,000 plug-in vehicles on U.S. roads -- and their numbers growing -- they are likely to play a significant role in electricity demand side management.





















