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

Chrysler Crossfire-2004 Model Year on 2040-cars

US $12,000.00
Year:2004 Mileage:9867
Location:

Tomkins Cove, New York, United States

Tomkins Cove, New York, United States
Advertising:
Engine:6 CYL,3.2 L(188 CID)
Vehicle Title:Clear
Condition:

Used

VIN (Vehicle Identification Number)
: 1C3AN69L94X024966
Year: 2004
Make: Chrysler
Drive Type: 5 Speed Automatic
Model: Crossfire
Mileage: 9,867
Trim: 2 Door

2004 Chrysler Crossfire

Garage ( Heated ) Kept-9867 Miles

Blaze Red Crystal Pearl Coat Paint

Interior: Dk/Med Slate Grey Leather High Back Bucket Seats

3.2-Liter V6 Sohc 18 Valve Engine-5 Speed Automatic Transmission 

There is a picture of the original window sticker

Very small door ding on the drivers side-I tried to take a picture of it.

Minimal Rim damage-you can see on the picture.( Hit a curb)

There are a few tiny paint chips on the hood.

I did lose the Title and applied for a new one before I put the car up for sale( I did get a new Title)

I am the original owner of this car. This was bought for me as a second car but had a small child during the years I owned this car and didn't want to put her in the car so it pretty much sat in the garage.




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Address: 104 W Genesee St, Chittenango
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Auto blog

Audi's diesel-electric supercar is codenamed 'Scorpion'

Mon, 15 Apr 2013

Speculation continues as to the final nature of the diesel-hybrid Audi supercar said to arrive in 2016 or 2017. A previous report in Automobile had the halo coupe, based closely on the R18 etron quattro endurance racer, codenamed R20 and pegged to look like a Le Mans winner for the street with around 700 horsepower and 737 pound-feet of torque from a twin-turbo V6. Now Car and Driver has updated the gossip with a report that the car is internally called "Scorpion," and it will be even closer to the R18 than supposed.
CD says the heart of the car will use the R18 etron quattro's carbon fiber tub and its engine will be "taken directly" from the race car. That means a 3.7-liter V6 with a single turbo that, in ACO-spec restricted form, outputs 500 hp and 625 lb-ft - CD suspects production output could get to 600 hp - and drives the rear wheels, aided by hybrid motors driving the front wheels. And remember, at Le Mans the R18's hybrid motors can't kick in until they're above a certain speed in order to prevent Audi from getting an advantage coming out of slow corners. A street car wouldn't face that restriction.
The Scorpion would be a fulsome and undiluted example of the technologies Audi has created during its return to sports car racing. Its exterior design hasn't been finalized, with CD citing either the convoluted concept of "a retro take on the future of racing" or packaging that would adhere to the R18's looks. To make sure it is properly appreciated and sells well, production could be limited to the same 333 units as the R8 GT and A1 Quattro.

Audi scores 100th LMP win

Tue, 24 Sep 2013

Loïc Duval, Tom Kristensen and Allan McNish took the No. 2 Audi R18 E-Tron Quattro to victory at this weekend's Six Hours of Austin at the Circuit of the Americas, marking the 12th victory for the R18 body and the 100th LMP overall victory for Audi since 2000. The milestone victory also saw a second R18, driven by Marcel Fässler, André Lotterer and Benoît Tréluyer, take third place.
Audi's LMP boss, Chris Reinke pointed out the poignancy of snagging the brand's 100th victory in the US, saying, "For Audi, it's a very special result because it was the 100th victory in LMP racing. We celebrated the first victory int he USA as well, in 2000. What could be sweeter than achieving this milestone here?" It wasn't all easy going, though, as the team was racing at COTA for the first time, and the No. 1 car had more than a few difficulties.
This victory marked the 12th for the R18 since it started racing in 2011. For comparison, the R15 TDI only managed three victories between 2009 and 2011, and the R10 TDI took 22 wins between 2006 and 2008. Those cars are overshadowed by the original Audi R8 racecar, which won 63 races between 2000 and 2006. Take a look below for the full press release from Audi, and additional quotes from team members.

Audi bringing matrix 'organic' LED concept to Frankfurt

Wed, Jul 29 2015

Audi has announced that it's bringing a new concept to the upcoming Frankfurt motor show in September, and now it is teasing the taillights. They adopt organic light-emitting diode technology, which takes advantage of several benefits. For one, it uses a relatively low amount of electricity, between three and four volts. It's also incredibly thin, made up of two layers, each less than a thousandth of a millimeter thick. It casts no shadows, requires no reflectors or any other elements, and emits very little heat. Plus the lights can be formed into different shapes, opening up new possibilities for designers. This isn't the first time we've seen Audi focus on lighting technology, and in recent years it's showcased matrix LED and matrix laser headlights. The company runs through the history of the evolution of its lighting tech in the video above. We'll have to wait a little longer to find out what the team from Ingolstadt will be putting these new taillights on. Audi presents latest lighting technology at the IAA in Frankfurt - Matrix OLED technology makes its debut in a concept car at the IAA - Light attains a new level of homogeneity - Flat light sources open up new design possibilities Audi is presenting its next step in automotive lighting technology at the IAA in Frankfurt. The new Matrix OLED lights enable a previously unattainable level of lighting homogeneity, opening up further creative opportunities for design. As the leading brand in automotive lighting technology, Audi has systematically developed all aspects of OLED technology over the years. Matrix OLED lights combine high-tech engineering and design ideally – initial projects are currently underway to implement OLED technology in production tail lights. They are being shown for the first time in a concept car at the IAA. OLED is an English acronym for "organic light emitting diode." In each OLED unit, two electrodes – of which at least one must be transparent – incorporate numerous thin layers of organic semiconductor materials. A low DC voltage – between three and four volts – activates the layers, each of which is less than one-thousandth of a millimeter thick, to light them. The color is based on the molecular composition of the light source. In contrast to point light sources – such as LEDs – which are made of semiconductor crystals, OLEDs are flat light sources. Their light attains a new level of homogeneity, and its dimming is continuously variable.