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2010 Porsche Boxster 6 Speed Rare Speed Yellow Only 11k Miles 239-225-7601 on 2040-cars

Year:2010 Mileage:11442 Color: Speed Yellow
Location:

Fort Myers, Florida, United States

Fort Myers, Florida, United States
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Auto Services in Florida

Zip Automotive ★★★★★

Auto Repair & Service, Truck Service & Repair
Address: 5630 Maloney Ave, Sugarloaf
Phone: (305) 292-6915

X-Lent Auto Body, Inc. ★★★★★

Auto Repair & Service, Automobile Body Repairing & Painting
Address: 1422 9th St W, Siesta-Key
Phone: (941) 747-0686

Wilde Jaguar of Sarasota ★★★★★

Auto Repair & Service, New Car Dealers, Used Car Dealers
Address: 4821 Clark Road, Tallevast
Phone: (941) 924-3019

Wheeler Power Products ★★★★★

Auto Repair & Service, Automobile Parts & Supplies, Automobile Machine Shop
Address: Julington-Creek
Phone: (904) 317-8099

Westland Motors R C P Inc ★★★★★

Used Car Dealers, Wholesale Used Car Dealers
Address: 3699 NW 79th St, Miramar
Phone: (305) 696-1116

West Coast Collision Center ★★★★★

Automobile Body Repairing & Painting, Truck Body Repair & Painting, Automobile Body Shop Equipment & Supply-Wholesale & Manufacturers
Address: 1444 Alternate Hwy 19, Holiday
Phone: (727) 937-5196

Auto blog

The mid-engine Porsche backstory

Thu, 09 Oct 2014

As an automaker's identity evolves over years, its signature becomes defined by any number of factors - heritage (Mercedes-Benz), image (Lamborghini), or market share (Toyota). In the case of Porsche, it was an engineering quirk that forged the German company's most enduring character trait.
Porsche would not have survived - let alone, thrived - in today's saturated landscape had it not been for the 911, and that slope-tailed sports car wouldn't have sprung to life without its predecessor, the 356. While phenomenal success of those rear-engine icons built the company, forays into the mid-engine configuration have played a significant part in establishing the brand's identity.
The Mid-Engine Prototype Of Ferry Porsche's Dreams

Porsche reveals new 911 Turbo Cabriolets, starting from $160,700*

Mon, 23 Sep 2013

Porsche has come a long way from the days when its entire model line revolved essentially around the 911, but its prototypical rear-engined sports car is still what it's known for best, and still keeps the German automaker pretty busy. With a seemingly endless array of variations on the theme, the 911s just keep on coming until a new generation arrives and then it starts all over again. And what we have here is the new king of the hill (for now, anyway).
Set to debut at the Los Angeles Auto Show a little less than two months from now are the new Porsche 911 Turbo Cabriolets. And no, that's not a typo: that's cabriolets, plural, because what you're looking at are two new models. First up is the 911 Turbo Cabriolet, whose 3.8-liter twin-turbo flat-six develops 520 horsepower, driving the droptop to 60 miles per hour in 3.3 seconds. That's Porsche's claim, and we have a feeling it's a bit conservative. But if that's still not enough, the 911 Turbo S Cabriolet adds an extra 40 hp for a total of 560 to drop the benchmark acceleration run down to 3.1 seconds.
That makes the new topless Turbos 30 horses stronger and 0.2 seconds quicker than the respective models they replace, but the weight penalty involved with replacing a fixed roof with a folding one (and the necessary structural reinforcement) does make the new 911 Turbo Cabs a smidgen more lethargic than their contemporary coupe counterparts, which run the gauntlet in 3.2 and 2.9 seconds in standard Turbo and upgraded Turbo S specs, respectively. They only lose a single tick on the top speed, though, which clocks in at a follicle-tickling 195 mph in either spec. Otherwise the specifications are as identical as you might expect.

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.