2000 Ford Starcraft E-250 Conversion Van on 2040-cars
West Palm Beach, Florida, United States
Body Type:Minivan, Van
Vehicle Title:Clear
Engine:5.7 TRITON
Fuel Type:Gasoline
For Sale By:Private Seller
Make: Ford
Model: E-Series Van
Trim: HI-TOP
Options: 3 ADDITION REAR FACING SEATS IN THE BACK, REAR TV SYSTEM, CUSTOM CURTAINS, KING SIZED MOTORIZED BED IN REAR, 2 CAPTAINS CHAIRS, HI-TOP ROOF, Leather Seats, CD Player
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag
Drive Type: E-250
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows, Power Seats
Mileage: 158,000
Sub Model: STARCRAFT HI-TOP CONVERSION VAN
Exterior Color: White
Disability Equipped: No
Interior Color: Gray
Warranty: Vehicle does NOT have an existing warranty
Number of Cylinders: 8
2000 FORD E-250 STARCRAFT HI-TOP CONVERSION VAN IN GREAT CONDITION. ALWAYS BEEN MECHANICALLY MAINTAINED. OIL CHANGES PERFORMED EVERY 3,000 MILES RECENTLY HAD BRAKE WORK DONE. MINOR REPAIR NEEDED TO DRIVER SIDE RUNNING BOARD. 6 CD CHANGER, MOTORIZED SEATS IN FRONT AND REAR, AUTOMATIC WINDOWS WITH REAR PRIVACY CURTAINS, GREY LEATHER IN VERY GOOD CONDITION, CUSTOM INTERIOR LIGHTING WITH REAR TV SYSTEM. ALL THE BELLS AND WHISTLES FOR AN EVERYDAY CAR OR FOR A TRAVEL VEHICLE. A MUST SEE TO APPRECIATE. LOW 158,000 MILES!!! SEATS 10 COMFORTABLY!!!
NO ACCIDENTS
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Auto blog
Why Edmunds took a sledgehammer to its 2015 Ford F-150
Tue, Jan 27 2015The discussion around repair bills for the aluminum-bodied 2015 Ford F-150 pickup continued from the beginning of last year to the end, and haven't abated; as an aside, some Tesla Model S owners have been shocked at disquieting repair estimates for minor damage to their aluminum wunder-sedans. Edmunds decided to inject some fact into the fray: it bought a $52,000 long-term 2015 F-150 and clouted it with an eight-pound sledgehammer. Twice. The rear of the bedside took the impacts since it couldn't be replaced, it would have to be repaired. To the pickup's credit, the only reason associate editor Travis Langness hit it twice was that the first sledgehammer blow didn't do as much damage as Edmunds wanted. After the second, the visible damage included the two direct impacts, a few creases, and a cracked taillight, so they drove the pickup to Santa Monica Ford to get an estimate, complete with a fictitious story about how the damage occurred and the mercy plea that Langness was paying for the repair out-of-pocket. In Part 2 Langness hits on some of the details with getting the truck fixed, such as the massively expensive taillight and the list of tools Ford recommends dealers have to work on aluminum. But he was promised he'd have his truck back in seven days, and Santa Monica Ford got it back to him in seven days. In Part 3 we get the bill. It's not small, but it's quite a bit less than it could have been if the service manager had charged Edmunds the official labor rate for aluminum. We're not going to spoil it here, so check out the videos above and below for the beginning and the end, and head over to Edmunds for the complete story about how it all happened and some riffing on the repair numbers. This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings. Related Video:
How Ford switched gears for the all-new F-150
Fri, Mar 6 2015Editor's Note: This story is authored by Julia Halewicz, a senior editor with AOL's Custom Solutions Group. She holds a Masters in Journalism from NYU and has spent her career as an editor of various newspapers, magazines and digital outlets. Last year on the Friday before Labor Day, the 2014 Ford F-150 pickup truck came off the Dearborn assembly line for the last time. After the last seam was welded, the F-150 that had been so beloved by American consumers would begin the transition from traditional steel manufacturing to an aluminum body, and the second phase of Ford's 2007 blueprint for sustainability would begin. Jobs would be created, and Ford would deliver a stronger product to its consumers. It was a moment Ford would call the biggest in the company's 111-year history. Breaking The Mold For some, the change was almost unfathomable. How could a truck be made with aluminum, and why change what clearly was working very well for the company? "We have a saying at Ford that leaders lead," said Doug Scott, the company's truck group marketing manager. "This was an ideal product to make with aluminum-alloy, because lightweighting made so much sense for a truck, because the extent to which you could take weight out of a truck, you could add more value to the customer in terms of more towing, more payload, more durability, more efficiency – so again all this required us to be out in front further out in front that we normally would be to make sure that we would deliver on all those expectations." Ford began the planning process about five years before the first aluminum F-150 would come to market. The company had a lot of questions. What was customer acceptance of aluminum, could they build the truck, and could the truck be repaired out in the field? Finally, Ford needed to determine if there were enough materials available to support the demand for the F-Series. Aluminum vehicles aren't unusual, but had never been built on the scale of the F-150 – approximately one every minute. Ford created two prototypes to determine if the product would meet and exceed consumer expectations. Any change to the vehicle had to be justified in performance, safety and economy. An aluminum truck needed to be safer, lighter, have increased payload, haul more, and have improved fuel efficiency. After driving the prototypes, Ford knew it was ready to move forward. Once the aluminum truck was ready to build, the next challenge was quickly transforming the plant.
Ford partnering with MIT, Stanford on autonomous vehicle research
Fri, 24 Jan 2014Ask any car engineer what's the biggest variable in achieving fuel economy targets, and he'll tell you "the driver." If one human can't understand human driving behavior enough to be certain about an innocuous number like miles per gallon, how is an autonomous car supposed to figure out what hundreds of other drivers are going to do in the course of a day? Ford has enlisted the help of Stanford and the Massachusetts Institute of Technology to find out.
Starting with the automated Fusion Hybrid introduced in December, MIT will be developing algorithms that driverless cars can use to "predict actions of other vehicles and pedestrians" and objects within the three-dimensional map provided by its four LIDAR sensors.
The Stanford team will research how to extend the 'vision' of that LIDAR array beyond obstructions while driving, analogous to the way a driver uses the entire width of a lane to see what's ahead of a larger vehicle in front. Ford says it wants to "provide the vehicle with common sense" as part of its Blueprint for Mobility, preparing for an autonomous world from 2025 and beyond.















