1965 Ford Ranchero Base 2.8l on 2040-cars
Erie, Pennsylvania, United States
Body Type:U/K
Engine:2.8L 2786CC 170Cu. In. l6 GAS OHV Naturally Aspirated
Vehicle Title:Clear
Fuel Type:GAS
For Sale By:Private Seller
Number of Cylinders: 6
Make: Ford
Model: Ranchero
Trim: Base
Warranty: Vehicle does NOT have an existing warranty
Drive Type: U/K
Options: CD Player
Mileage: 79,800
Exterior Color: Blue
Interior Color: Black
The 1965 ford ranchero is in very good condition. It is a California car. The driver and passenger floor boards were replaced by previous owner. ( professional garage ) Very clean and solid vehicle. NO RUST. Recent paint and has mustang seats cloth bucket seats, custom console. New sony cd, stereo with remote. Centerline wheels and tires are like new. There is a run or two in the paint, other than that its very nice. Recently replaced steering wheel with Grant GT wheel. This is a six cylinder- automatic car. Starts and drives well. It has manual drum brakes and manual steering. Nice little cruiser...!
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Ford Fiesta ST in startling track battle against Toyota GT86
Wed, 26 Jun 2013On the surface, there's very little that the Ford Fiesta ST and Toyota GT86 (or the Scion FR-S that is sold in the US, or the largely similar Subaru BRZ) share in common. One is a hatchback with power coming from a turbocharged engine routed to the front wheels. The other is a coupe with power coming from a naturally aspirated four-cylinder boxer engine routed to the rear wheels.
Thing is, both of them are reasonably priced performance cars aimed at a similar segment of the automotive marketplace, so a comparison isn't out of the question. It is with all of this in mind that we direct you to the video below, in which the blokes from Evo pit the two manic little machines against one another on a race track. The result? Well, it can be summed up this way: Fast versus fun.
See how the track battle goes down in the video below.
Ford's Explorer-based Police Interceptor to get 365-hp EcoBoost option
Tue, 20 Aug 2013Speeders beware, the police are going to be getting quite a bit faster. Ford has just announced that it will be offering its 3.5-liter, twin-turbocharged, EcoBoost V6 in the Explorer Police Interceptor. The new engine will be joining the existing 3.7-liter V6. The 365-horsepower, 350-pound-foot mill should be familiar to consumers as the powerplant that's found in the Ford Taurus SHO (and its LEO equivalent, the Taurus Police Interceptor) and the Ford Explorer Sport. It should also provide quite a kick in the pants to officers used to the naturally aspirated 3.7 and its 304 ponies and 279 pound-feet of torque.
The move to the more potent powerplant was born out of all the equipment officers need to carry on a day-to-day basis. These days, there's so much stuff that police need on a regular basis, that there's a genuine market for a faster Police Interceptor Utility, as it's known officially. The Explorer-based cruiser has already accounted for 68 percent of Ford's LEO sales in 2013, and that's with just the 3.7, and we'd only expect that number to increase once the twin-turbo, 3.5-liter V6 is available. Ford won't offer up any indication of what the take rate will be on the new engine, but we're guessing it'll be fairly high.
The success of the Explorer PI couldn't have come at a better time for Ford. The decision to end Crown Victoria production was not a popular one with police, and combined with Chevrolet and Dodge diving into the LEO market feet first, Ford hasn't been performing as well as it's wanted to. The Explorer has been helping it turn around, though. And with the inclusion of the EcoBoost, Ford also has a legit competitor for the Chevrolet Tahoe on the big utility side of the police market.
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.






