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

2004 Porche Boxster **manager Special**convertible // 8000 on 2040-cars

Year:2004 Mileage:155717 Color: GT silver metallic /
 Cocoa
Location:

Pendleton, Indiana, United States

Pendleton, Indiana, United States
Advertising:
Transmission:Manual
Engine:3.2L 3179CC H6 GAS DOHC Naturally Aspirated
Vehicle Title:Clear
Fuel Type:Gasoline
For Sale By:Private Seller
VIN: WP0CB29854U661310 Year: 2004
Interior Color: Cocoa
Make: Porsche
Number of Cylinders: 6
Model: Boxster
Trim: S Convertible 2-Door
Warranty: Vehicle does NOT have an existing warranty
Drive Type: RWD
Mileage: 155,717
Exterior Color: GT silver metallic
Condition: Used: A 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. ... 

This beautiful example has been well cared for, is very clean and runs excellent.

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Auto blog

Porsche 911 GT3 RS spec sheet leaked, promises 500 hp

Mon, Feb 23 2015

Axis of Oversteer has three pages of what's purported to be the spec sheet for the Porsche 911 GT3 RS, and it's got a few bolded items noting key differences with the already spectacular 911 GT3. Prime among them is its output, pegged at exactly 500 horsepower and 339 pound-feet of torque, which looks at first blush to be a minor bump: just 25 hp and 14 lb-ft over the GT3, and the redline drops 200 rpm to 8,800 rpm. If the document is accurate, though, there will be a hefty dose of weight loss to make the most of it. The bodyshell and doors are aluminum, carbon fiber reinforced plastic is used for those vented front fenders (the vanes are plastic), the front trunklid, the rear engine cover, and the rear wing, while the roof is made of magnesium and the side windows are polycarbonate. The bucket seats, door entry guards, and other interior trim pieces are also fashioned from CFRP, and it gets lightweight door panels with pull-loops. Elsewhere around the coupe, the body grows wider by 50 millimeters in front and 30 mm in back over a track that's 36 mm wider. There's a pit-lane speed limiter for track days, tinted taillights, an optional Clubsport package with a six-point seatbelt, and GT3 RS logos everywhere. It's looking more and more like this car was developed to define the word "epic." Featured Gallery Porsche 911 GT3 RS spec sheet Related Gallery 2016 Porsche 911 GT3 RS News Source: Axis of Oversteer Geneva Motor Show Porsche Coupe Performance 2015 Geneva Motor Show porsche 911 gt3

Porsche 918 Spyder with Weissach package does 0-62 mph in 2.6 seconds

Mon, 18 Nov 2013

Porsche marketers are having a field day with the 918 Spyder after some last-minute tuning improved the car's performance. They now say that it's so fast it's already beaten itself. Let us explain: Using a Weissach package-equipped 918 as an example (which reduces the plug-in hybrid supercar's weight through the deletion of some interior items, more generous use of carbon fiber and magnesium wheels), the car's previous official 0-62 miles-per-hour time of 2.8 seconds has been cut to 2.6. Additionally, 0-124 mph takes 7.2 seconds and 0-186 mph is dispatched in 19.9 seconds, times that were reduced by half a second and 2.1 seconds, respectively.
In all-electric mode, a non-Weissach pack 918 does 0-62 mph in 6.2 seconds (with the package, 6.1 seconds), down from 6.9 seconds. Efficiency is also improved thanks to the final tuning. The New European Driving Cycle (NEDC) rating of a Weissach pack-equipped car equates to 94 miles per gallon, up three mpg compared to before. That's pretty good for a car with 887 horsepower!
Check out the press release below for more details on how Porsche's final tuning measures improved its flagship supercar.

First all-electric Porsche will use Le Mans 919 Hybrid tech

Thu, Jul 21 2016

Porsche has been testing and teasing all-electric vehicles for years, like the trio of experimental Boxsters in 2010 and a Pajun EV in 2015. Then came the Mission E, a gorgeous electric concept unveiled at the Frankfurt Motor Show late last year. Unlike previous test programs, this one was intended for the real world. Porsche is getting ready to ramp up its EV development, and has stated that its first all-electric vehicle, based on the Mission E, will arrive by 2020. For now, the future production version of the Mission E looks a lot like the Le Mans Prototype Porsche 919 Hybrid. Well, under the hood, anyway. Parts of the 800-volt powertrain in the Mission E are being used in the Le Mans prototype because, "The 919 served as the trial vehicle for the voltage level of future hybrid systems," Porsche says. During testing with the race car, Porsche says it is learning a lot about EV tech, including keeping the battery and electric motor cool and "extreme high-voltage" connectors. This news is not as exciting as a flashy new concept, but this is just the sort of thing that automakers need to do in the big transition from fossil fuels to electric drive. Related Video: Hybrid technology in the LMP1 Porsche 919 Hybrid Atlanta, Georgia. This weekend, the Le Mans Prototype Porsche 919 Hybrid has its only 2016 appearance in Germany. At the six-hour race to be held on the Grand Prix circuit of the Nurburgring, the fourth round of the FIA World Endurance Championship (WEC), the series' leader fights to defend its title. At the same time its mission is to revolutionize the technology of future sports cars. With the 919 Hybrid, Porsche has developed a new field of technology at racing speed. For the "Mission E", a fully electric road-going concept sports car unveiled in 2015, the designers adopted the 800-Volt technology from the prototype racer. Porsche has exhausted all possibilities in designing the two-time 24 Hours of Le Mans winner – especially in terms of the drive concept. It consists of a two-liter, V4 turbocharged gasoline engine – the most efficient combustion motor that Porsche has built up to now– and two different energy recovery systems. During braking, a generator at the front-axle converts the car's kinetic energy into electrical energy. In the split exhaust system, one turbine drives the turbocharger while another converts surplus energy into electrical energy.