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

1993 Volkswagen Eurovan Mv Standard Passenger Van 3-door 2.5l on 2040-cars

Year:1993 Mileage:157000 Color: White /
 Gray
Location:

Auburn, Maine, United States

Auburn, Maine, United States
Transmission:Manual
Body Type:Standard Passenger Van
Engine:2.5L 2459CC 150Cu. In. l5 GAS SOHC Naturally Aspirated
Vehicle Title:Clear
Fuel Type:GAS
For Sale By:Private Seller
VIN: WV2MC0703PH018830 Year: 1993
Number of Cylinders: 5
Make: Volkswagen
Model: EuroVan
Trim: MV Standard Passenger Van 3-Door
Warranty: Vehicle does NOT have an existing warranty
Drive Type: FWD
Options: CD Player
Mileage: 157,000
Power Options: Cruise Control, Power Windows
Sub Model: MV Westfalia
Exterior Color: White
Interior Color: Gray
Condition: UsedA vehicle is considered used if it has been registered and issued a title. Used vehicles have had at least one previous owner. The condition of the exterior, interior and engine can vary depending on the vehicle's history. See the seller's listing for full details and description of any imperfections.Seller Notes:"1993 Eurovan MV Westfalia has serverd our family well on trips to Bar Harbor, Mt. Katahdin in Baxter State Park, and most recently to Washinton DC. Recently replaced CV Axle, Exhaust, Starter, Coil and Ignition Switch. The AC does not work and the Fuel and Temp gauge seem to only work when they feel like it. (Not uncommon from what I am told) This has all the charm and "Character" that any 20 year old vehicle would have and has some body imperfections and rust here and there but nothing that I have been told is "major" The drivetrain is a 2.5 liter 5 cylinder with 157,000 miles and has a 5 speed transmission. Please let me know if you have any questions, however I will be unavailable to answer email Saturday the 17th until the evening of the 20th."

Auto Services in Maine

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Auto blog

Recharge Wrap-up: Tesla details factory expansion; Ford and SunPower raise money for Sierra Club

Thu, Nov 20 2014

Tesla has revealed the details of the upgrade of its Fremont, CA factory. One major change is the addition of a dedicated production space for the dual-motor P85D version of the Model S. Robots will be doing the battery installation on the Model S to save some time, and new export docks allow Tesla to get the cars out the door and on the way to their new owners more quickly. The new robots that move the cars around the factory have been named after X-Men characters, which makes our inner geeks smile. Check out the factory upgrade in the time-lapse video below and read more at Teslarati or at the Tesla Motors Blog. A program in Beijing for privileged registrations for EVs hasn't had much success. Of the 1,424 lottery winners, only about 30 percent went on to register an electric car despite a two-month extension of the deadline to do so. Buyers are likely discouraged by the lack of charging infrastructure, which the city hopes to ameliorate with the addition of 1,000 new charging stations by the end of the year, and by requiring new and renovated developments to set aside parking specifically for EV charging. Read more at Green Car Reports. The UC Davis Institute of Transportation Studies suggests that laws designed to protect dealers and consumers are stymieing the adoption of EVs. Laws like the ones certain states have in place that block or otherwise restrict Tesla's direct-to-consumer business model are not helpful for companies that want to introduce new products to the market. They prevent companies from passing on savings to customers for whom they would likely make the difference in a purchasing decision. One possible solution would be to allow exemptions to certain selling restrictions for a certain number of vehicles sold. "This could give automakers the degree of control needed to work out kinks with early customers, develop scalable processes for supporting PEVs, and ensure that effective dealer performance standards are in place before handing the reins over to wholly independent retailers," according to UC Davis ITS. Read more at the UC Davis website. Volkswagen says its environmental program, called "Think Blue. Factory," is meeting the automaker's own sustainability targets. The main purpose of the program is to move toward eco-friendlier carmaking at each of its plants worldwide.

Volkswagen Cross Coupe GTE concept previews new midsize CUV... again

Sun, Jan 11 2015

Volkswagen has taken a big step towards the long-awaited second model to be built at its Chattanooga, TN factory, introducing the two-row Cross Coupe GTE Concept at the 2015 North American International Auto Show. The relatively handsome two-row crossover borrows its basic styling language from the CrossBlue Concept that launched at the 2013 Detroit show (that we later had a brief chance to drive), and the CrossBlue Coupe from that year's Shanghai Motor Show. To be entirely frank, it just looks like a much more production-ready version of the Shanghai concept. The more aggressive elements of that model, like its rear taillights, rounded wheel arches, and aggressive front and rear fascias, have been toned down considerably. In other words, this concept almost wouldn't look out of place on the average road. Changes in the cabin are similarly minor, with the same basic design as the CrossBlue, complemented by a 12.3-inch digital instrument cluster and a 10.1-inch touchscreen display. While it's still quite clearly a concept car interior, it's not hard to imagine VW transitioning this cockpit into a production model. Riding atop the Volkswagen Group's MQB architecture – making it a relative, albeit distant, of cars like the VW Golf, Audi TT and the Euro-market Passat – the Cross Coupe GTE is motivated by a 3.6-liter VR6 that's been mated to not one, but two electric motors (one on each axle). The gas engine offers up 276 horsepower and 258 pound-feet of torque, while the front axle's electric motor generates 54 hp and 162 lb-ft of torque, and the rear can deliver a more robust 114 hp and 199 lb-ft of torque. That cacophony can be easily boiled down to this: the Cross Coupe GTE has a total system output of 355 hp and 280 pound-feet of torque, which is good enough to get the five-seater to 60 miles per hour in six seconds, on to a top speed of 130 miles per hour. As a plug-in hybrid, though, there's more to the Cross Coupe GTE then just its power output. Range plays a big role, and in that regard, this concept is fairly average. It can cover 20 miles when its 14.1-kilowatt-hour lithium-ion battery is charged up. Beyond that, the drivetrain can be set to a number of modes to optimize the behavior of plug-in-hybrid powertrain. In E-Mode, which can be locked in via a battery hold/battery charge mode, all 20 miles of range are available, although the Cross Coupe's driver will only have the 114-hp rear axle electric motor to work with.

VW invests in QuantumScape for potentially fireproof, long-range EV batteries

Mon, Dec 8 2014

VW might be getting ready to push its plug-in technology in a big way thanks to an investment in the battery startup QuantumScape. Key point: the solid-state battery is said to be fireproof and will offer tremendous range advantages. Details are not abundant yet, but according to Bloomberg, VW of America bought a five-percent stake in QuantumScape (and has an option to raise its holding). The tech could "more than triple" the EV range of VW, Porsche and Audi plug-in vehicles as soon as the middle of 2015, according to unnamed sources that Bloomberg talked to. Former Stanford University researchers started QuantumScape in 2010. The bare-bones QuantumScape website (there's nothing there other than some contact information) doesn't offer many hints about what's happening at the company, but GigaOM's Katie Fehrenbacher notes that QuantumScape is licensing tech from the "All Electron Battery" project at Stanford a few years ago. It certainly sounds amazing: [It's] a completely new class of electrical energy storage devices for electric vehicles that has the potential to provide ultra-high energy and power densities, while enabling extremely high cycle life. The All-Electron Battery stores energy by moving electrons, rather than ions, and uses electron/hole redox instead of capacitive polarization of a double-layer. ... If successful, this project will develop a completely new paradigm in energy storage for electrified vehicles that could revolutionize the electric vehicle industry. If that's what's coming in a future e-Golf or E-Tron, sign us up.