Find or Sell Used Cars, Trucks, and SUVs in USA

2012 Ford F150 Xlt on 2040-cars

US $33,995.00
Year:2012 Mileage:15597 Color: Oxford White /
 Steel Gray
Location:

7726 North Point Blvd, Winston Salem, North Carolina, United States

7726 North Point Blvd, Winston Salem, North Carolina, United States
Fuel Type:E-85/Gasoline
Engine:5.0L V8 32V MPFI DOHC Flexible Fuel
Transmission:6-Speed Automatic
Condition: Used
VIN (Vehicle Identification Number): 1FTFW1EF2CFA24538
Stock Num: J9596A
Make: Ford
Model: F150 XLT
Year: 2012
Exterior Color: Oxford White
Interior Color: Steel Gray
Options:
  • 1st and 2nd row curtain head airbags
  • 4 Door
  • 4-wheel ABS Brakes
  • ABS and Driveline Traction Control
  • Anti-theft alarm system
  • Automatic locking hubs
  • Clock: In-radio display
  • Coil front spring
  • Cupholders: Front and rear
  • Door pockets: Driver
  • Door reinforcement: Side-impact door beam
  • Double wishbone front suspension
  • Engine immobilizer
  • Fixed antenna
  • Fold-up cushion rear seats
  • Front Head Room: 41.0"
  • Front Hip Room: 60.5"
  • Front Independent Suspension
  • Front Leg Room: 41.4"
  • Front Shoulder Room: 65.9"
  • Front suspension stabilizer bar
  • Front Ventilated disc brakes
  • Fuel Capacity: 36.0 gal.
  • Fuel Consumption: City: 14 mpg
  • Fuel Consumption: Highway: 19 mpg
  • Fuel Type: Flexible
  • Gross vehicle weight: 7,350 lbs.
  • Independent front suspension classification
  • Instrumentation: Low fuel level
  • Leaf rear spring
  • Leaf rear suspension
  • Left rear passenger door type: Conventional
  • Max cargo capacity: 60 cu.ft.
  • Overall Width: 79.2"
  • Overhead console: Full with storage
  • Passenger Airbag
  • passenger and rear
  • Power remote driver mirror adjustment
  • Power remote passenger mirror adjustment
  • Power windows
  • Rear center seatbelt: 3-point belt
  • Rear door type: Tailgate
  • Rear Head Room: 40.3"
  • Rear Hip Room: 64.6"
  • Rear Leg Room: 43.5"
  • Rear Shoulder Room: 65.5"
  • Regular front stabilizer bar
  • Remote activated exterior entry lights
  • Right rear passenger door type: Conventional
  • Rigid axle rear suspension
  • Seatbelt pretensioners: Front
  • Side airbag
  • SiriusXM Satellite Radio
  • Spare Tire Mount Location: Underbody w/crankdown
  • Speed-proportional electric power steering
  • Split rear bench
  • Stability control with anti-roll control
  • Steel spare wheel rim
  • Tachometer
  • Three 12V DC power outlets
  • Tire Pressure Monitoring System
  • Tires: Prefix: P
  • Tires: Speed Rating: S
  • Transmission hill holder
  • Type of tires: AT
  • Variable intermittent front wipers
  • Vehicle Emissions: LEV II
Drive Type: 4WD
Number of Doors: 4 Doors
Mileage: 15597

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Ford F-100 'Snakebit' shown off by Gene Simmons and Shannon Tweed at SEMA

Tue, 05 Nov 2013

Ford, along with KISS bassist Gene Simmons and his wife, Shannon Tweed, used SEMA as a backdrop to pull the covers off Snakebit, a 1956 Ford F-100 pickup truck that's been updated with Shelby Mustang-derived styling bits and a 5.4-liter supercharged V8 engine. All 550 horsepower are funneled through a six-speed manual gearbox to the rear wheels.
Underneath the custom bodywork sits a chassis that's been stretched five inches and a bed widened and bedecked with billet machined pieces that are supposed to look like wood. The 20-inch rear and 18-inch front wheels ape those of past Shelby Mustang models. The interior is swathed in two-tone leather with a bench seat designed to look - try to act surprised - like a Shelby Mustang.
Like what you see? Bidding for the truck will take place in 2014 at an unspecified Barrett-Jackson event (we'd assume Scottsdale). Proceeds will be used to help build a children's hospital in Saskatoon, in the province of Saskatchewan, where Ms. Tweed grew up. See the high-res gallery above and the press release down below for more.

Ford Green Zone works magic with GPS to make your drive smarter, cleaner

Fri, Aug 29 2014

For the most part, plug-in hybrids rely on the power stored in the battery until that charge is depleted. Unless the switch can be changed manually, it's only then that the cars fire up the internal combustion engine and begin using the fossil fuels on board. This is ideal, of course, when one's drive isn't long enough that the car needs to start sipping gasoline at all. On longer commutes, when it's certain that the route is longer than the car's all-electric range, this isn't necessarily the most efficient use of energy. Ford's Green Zone system is designed to save some of that juice for the parts of the drive that require slower speeds. Ford is working on a smart system, based on Nokia mapping technology, that uses GPS data to use both the electricity and conventional fuel more efficiently. Since battery power is less efficient at highway speeds, Ford's Green Zone system is designed to save some of that juice for the parts of the drive that require slower speeds, rather than just using up all the electrons right at the beginning of the drive. Using a website or the in-car navigation system, the driver can pinpoint the parts of the route, highlighted in green, where using battery power would be more effective, and set the car to automatically switch to electricity for those sections. Depending on the route, the car could automatically switch back and forth between the two power sources multiple times, particularly if the drive is a mix between city and highway driving. Of course, Green Zone will be go beyond that. The program is being developed to take traffic and road grade into account, details that allow the car to be make even smarter choices to improve efficiency. Ford even hopes to have Green Zone learn driver habits, and respond accordingly depending on who is driving the car. The system could control other features as well, such as anticipating corners and shifting the headlights to better illuminate the road ahead. Green Zone could also potentially use information from vehicle-to-vehicle networking to control functions in the car. The Green Zone system still has a few years before it will be ready to be put into production vehicles, but Ford is confident it will make its way onto the road eventually. As with other innovations that improve efficiency and make our vehicles smarter, we can expect to see similar technology from other manufacturers, until it becomes a regular part of driving in the future.

Ford Mustang Mach-E fails Sweden's moose test

Wed, Sep 29 2021

The infamous moose test has claimed another casualty. This time it's the Ford Mustang Mach-E AWD Long Range, which was tested in an electric four-way alongside the Tesla Model Y, Hyundai Ioniq 5 and Skoda Enyaq iV (an electric utility vehicle closely related to the Volkswagen ID.4 that is sold in the United States). According to the Swedish testers at Teknikens Varld, Ford's electric car not only failed to hit the speed necessary for a passing grade, it didn't perform well at slower speeds, either. To pass the outlet's moose test, a car has to complete a rapid left-right-straight S-shaped pattern marked by cones at a speed of at least 72 km/h (44.7 miles per hour). The test is designed to mimic the type of avoidance maneuver a driver would have to take in order to avoid hitting something that wandered into the road, which in Sweden may be a moose but could just as easily be a deer or some other member of the animal kingdom elsewhere in the world, or possibly a child or car backing into the motorway. Not only is the maneuver very aggressive, it's also performed with weights belted into each seat and more weight added to the cargo area to hit the vehicle's maximum allowable carrying capacity. The Mustang Mach-E only managed to complete the moose test at 68 km/h (42.3 mph), well below the passing-grade threshold. Even at much lower speeds, Teknikens Varld says the Mach-E (which boasts the highest carrying capacity and was therefore loaded with more weight than the rest of the vehicles tested in this quartet) is "too soft in the chassis" and suffers from "too slow steering." Proving that it is indeed possible to pass the test, the Hyundai and Skoda completed the maneuver at the 44.7-mph figure required for a passing grade and the Tesla did it at 46.6 mph, albeit with less weight in the cargo area. It's not clear whether other versions of the Mustang Mach-E would pass the test. It's also unknown if Ford will make any changes to its chassis tuning or electronic stability control software, as some other automakers have done after a poor performance from Teknikens Varld, to improve its performance in the moose test. Related video: