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Friday, March 27, 2009

Mazda 3 (2010) with pictures and wallpapers



Mazda 3 (2010) details



When the first-generation Mazda 3 was released, it introduced a level of driving pleasure and sense of quality which exceeded its class. Five years later, total sales have surpassed 1.8 million units and the Mazda 3 has won a total of 90 automobile awards around the globe. The new Mazda 3 builds on the virtues of the first generation and reflects increasing worries about environmental issues, the rapid expansion of motorization, and growing diversity in the criteria people use to value cars. Development was carried out by R&D staff in Japan, the US, and Europe working together to reflect Mazda's long-term vision for technology development, "Sustainable Zoom-Zoom," which aims to achieve harmony between driving pleasure and environmental and safety features. As a result, the all-new Mazda 3 evolves the original model's acclaimed sporty driving and design, and achieves top class environmental and safety performance.


Exterior design - expressive and emotional styling

A distinctive new front fascia is formed by the 5-point grille and openings at the front corners. These design cues combine with the sculpted shape of the hood and the bold, expressive lines that connect the hood to the front pillars. All the lines seem to flow into the center just below the 5-point grille, which creates a stronger expression of power and dynamism. From the side, the front fender line smoothly morphs into the beltline, clearly identifying the vehicle as a Mazda and communicating dynamism. The line of the side sill curves up and seems to connect with the rear spoiler to emphasize the vehicle's compact size and express its agility. In order to make the surface more expressive, Mazda designers slightly elaborated the depth of the hood edge, front fenders and the three-dimensional shape of the protruding body sides, carefully crafting curves that subtly reflect changes in natural light.


Interior design - sophisticated, sporty, and high quality

Inside the all-new Mazda 3 is a sporty yet highly refined cabin. The dashboard sweeps out from the center toward both sides with dynamic flair as though it is flexing powerful muscles. The large center display and controls are laid out around the driver to deliver just the right feeling of snugness. The angle of the center panel was adjusted after careful analysis of the driver's hand movement, producing a more stylish and dynamic design. A soft, wood grained surface with minimized parting lines on the top of the dashboard enhances the interior quality. The new interactive lighting control enhances the driver's connection with the vehicle.


Driving dynamics - The evolution to a more sophisticated sporty ride

The development theme for the all-new Mazda 3's dynamic performance was "exhilarating driving." It refers to the satisfaction derived when a car acts in perfect concert with the driver's intentions. It could also be described as the sense of accomplishment derived when the driver can handle the car easily and have it respond exactly as desired to their will.

Toward this end, the development team didn't settle for merely adding small changes to the already high levels of body rigidity and driving performance. Rather, they made every effort to completely eliminate all negative aspects, from the engine noise, vibration in the body and road noise. At the same time, the team retained all positive aspects including the sound of the engine, the feeling of acceleration, the quality of brake response and control and the road holding sensations.


Catalyst that uses single nanotechnology

The MZR 2.0-litre petrol engine underfloor catalyst is the world's first vehicle catalyst to be constructed with single nanotechnology, which controls even finer materials structures than nanotechnology. It is used to embed individual particles of precious metals, which are less than 5 nanometers in diameter, into the catalyst base material. This new development enables Mazda to reduce the amount of expensive precious metals such as platinum and palladium by 70 to 90 percent without impairing catalyst performance. The catalyst is an important part of Mazda's efforts to reduce reliance on limited resources.

Power steering, suspension and brake systems

To deliver just the right balance between fuel economy, light steering-wheel operation and a feeling of stability, all configurations of the all-new Madza3 are equipped with the Electro-Hydraulic Power Assist Steering system (EHPAS) that has earned high acclaim on the first generation Mazda 3. The suspension is based on the first generation Mazda 3 system, and has been enhanced to ensure even nimbler response to steering wheel operation, and also to improve roll control and maintain a flatter ride by strengthening the suspension damping. In the brake system, the vacuum booster has been tuned and the feeling of initial brake application has been optimized. The overall result is outstanding response and reassuring linearity under all braking conditions.

New welcoming functionalists

The interactive lighting control increases anticipation of a Zoom-Zoom driving experience. For example, when the driver unlocks the car door, the cockpit spotlight, room lamp and lights in the door handles illuminate in sequence, along with the meters and centre display, to gently welcome the driver and passengers (depending on grade). The illumination even responds when the driver operates the controls, strengthening the interactive communication between driver and car.

Safety

As well as improving passive safety technologies, Mazda focused on enhancing active safety equipment that supports the recognition and avoidance of hazards. Specifically, the cutting edge active safety technologies featured on the all-new Mazda 3 include ABS, Electronic Brake Force Distribution (EBD), Dynamic Stability Control (DSC) and Emergency Stop Signaling system(ESS) as standard equipments, and bi-xenon headlights with a pivoting adaptive front lighting system (option). New features include the Rear Vehicle Monitoring system (RVM), Tyre Pressure Monitoring System (TPMS) and Heated Wind Shield (option). The new model's passive safety systems are comprehensive and include Mazda proprietary highly-rigid and safe vehicle body technology, the Mazda Advanced Impact-energy Distribution and Absorption System, as well as front seat active headrests and a complement of six airbags, placing the all-new Mazda 3 at the level of the top marks in collision safety testing around the world.

Tesla Model S Concept (2009) with pictures and wallpapers

Tesla Model S Concept (2009)

Tesla Motors is now taking orders for the Tesla Model S, an all electric family sedan that carries seven people and travels 300 miles per charge.

The Tesla Model S, which carries its charger onboard, can be recharged from any 120V, 240V or 480V outlet, with the latter taking only 45 minutes. By recharging their car while they stop for a meal, drivers can go from LA to New York in approximately the same time as a gasoline car. Moreover, the floor-mounted battery pack is designed to be changed out in less time than it takes to fill a gas tank, allowing for the possibility of battery-pack swap stations.

Tesla expects to start Tesla Model S production in late 2011. The company believes it is close to receiving $350 million in federal loans to build the Tesla Model S assembly plant in California from the Dept of Energy's Advanced Technology Vehicle Manufacturing Program.

Building on Proven Technology

Tesla is the only production automaker already selling highway-capable EVs in North America or Europe. With 0-60 mph in 3.9 seconds, the Tesla Roadster outperforms almost all sports cars in its class yet is six times as energy efficient as gas guzzlers and delivers 244 miles per charge. Tesla has delivered nearly 300 Roadsters, and nearly 1,000 more customers are on the wait list.

Teslas do not require routine oil changes, and they have far fewer moving (and breakable) parts than internal combustion engine vehicles. They qualify for federal and state tax credits, rebates, sales tax exemptions, free parking, commuter-lane passes and other perks. Tesla Model S costs roughly $5 to drive 230 miles - a bargain even if gasoline were $1 per gallon.

The anticipated base price of the Tesla Model S is $49,900 after a federal tax credit of $7,500. The company has not released options pricing. Three battery pack choices will offer a range of 160, 230 or 300 miles per charge.


Convenience and utility bullet points:

Up to 300-mile range

45-minute QuickCharge 

5-minute battery swap

Charges from 110V, 220V or 440V 

Seating for 5 adults + 2 child seats

Unique hatch for oversized items

60/40 flat-folding rear seat

2nd trunk under hood

EPA Roominess Index 121.6

More room than station wagons

17-inch infotainment touchscreen 

3G wireless connectivity

Tesla Model S powertrain includes a liquid-cooled 9-inch motor, floor-mounted battery pack and a single-speed gearbox, delivering effortless acceleration, responsive handling and quiet simplicity - no fancy clutchwork or gear-shifting required. Tesla Model S costs as little as $4 to fully charge - a bargain even if gasoline dropped to $1 per gallon. You can have affordable fun while being socially responsible.

Technical specs:

0-60 mph in 5.6 seconds

¼ mile in 14 seconds

120 mph top speed

Braking 60-0 mph 135 feet

42 kWh battery storage system standard 

70 kWh and greater battery storage systems optional

9- inch liquid cooled electric motor

Single-speed transaxle gearbox

Curb Weight 3825 lbs

Overall Length 196"

Wheelbase 116.5"

All-wheel-drive available (option available in future production models)

Right hand drive available

The Tesla Model S Concept is a drivable vehicle that exemplifies Tesla's "no compromises" philosophy - an elegantly refined luxury sedan delivering optimal performance without sacrificing efficiency. Designed by Franz von Holzhausen, the car's aggressive stance gives way to a modern silhouette, with minimal front and rear overhangs for maximum space efficiency. The car's mature face defines the future of the Tesla brand and incorporates the touches from the Tesla Roadster. .

Other details:

Panoramic roof with sliding moon roof 

Retracting door handles for improved aerodynamics 

Full-time 3G connectivity with Internet, HD and satellite radio

Push button "gear" selector 

Brembo brakes 

Automatic rear lift gate

21-inch wheels, Front Tires 245/35ZR21, Rear Tires 285/30ZR21

17-inch haptic touchscreen and customizable vehicle information display 

Fully digital instrument cluster 

LED and neon headlight and taillights, with xenon Hella low beams

Smart-key power and push button gear selector 

Brembo brake system with new one-piece monobloc calipers and integral stiffening bridge to

optimize performance

Front brake system: 

Brembo Gran Turismo

Brembo 6-piston Monobloc Calipers

Brembo 405x34mm 2-Piece Floating Slotted Discs with Billet Aluminum Hats 

Rear brake system: 

Brembo Gran Turismo

Brembo 4-piston Monobloc Calipers

Brembo 380x28mm 2-Piece Slotted Discs with Billet Aluminum Hat

Monday, March 23, 2009

Flying car of new world




Flying car

A flying car or roadable aircraft is a vehicle which can travel on roads and in the air. It is both an aircraft and an automobile. All the working examples have required some manual or automated process of conversion between the two modes of operation.

A slightly different concept that is sometimes referred to as a "flying car", particularly in science fiction, is that of an aircraft that would be practical enough for every day travel, but would not necessarily be drivable on the roads.[1]





Old development

In the 1950s, the western world was recovering from World War II and everything seemed possible. The flying car was a vision of transportation in the 21st century, and a common feature of science fiction futures.

Several designs (such as the Convair flying car) have flown, none have enjoyed commercial success and those that have flown are not widely known about by the general public. The most successful example, in that several were made and one is still flying, is the 1949 Taylor Aerocar. One notable design, Henry Smolinski's Mizar, made by mating the rear end of a Cessna Skymaster with a Ford Pinto, disintegrated during test flights, killing Smolinski and the pilot.

In the 1950s, Ford Motor Company performed a serious feasibility study for a flying car product. They concluded that such a product was technically feasible, economically manufacturable, and had significant realistic markets. The markets explored included ambulance services, police and emergency services, military uses, and initially, luxury transportation. Some of these markets are now served by light helicopters. However, the flying car explored by Ford should have been at least fiftyfold less expensive.

When Ford approached the U.S. Federal Aviation Administration (FAA) about regulatory issues, the critical problem was that the (then) known forms of air traffic control were inadequate for the volume of traffic Ford proposed. At the time, air traffic control consisted of flight numbers, altitudes and headings written on little slips of paper and placed in a case. Quite possibly computerized traffic control, or some form of directional allocation by altitude could resolve the problems. Other problems would also need to be resolved in some ways, however, including intoxicated drivers or motorists that drive without a license. Furthermore, there would be serious concerns among the public in built up urban areas, that malfunctioning or incorrectly operated flying cars could crash into houses, shopping districts or pedestrian areas, severely damaging buildings or killing civilians.

Historic flying cars and roadable aircraft

  • Waterman Aerobile - 1937 two examples in museums as of 2004
  • Fulton Airphibian - 1946, one example in Canada Aviation Museum.
  • Aerocar - 1949, one example still flying as of 2006; two examples in museums
  • Aerauto PL.5C - early 1950s
  • AVE Mizar - 1973, Cessna Skymaster/Ford Pinto hybrid. Crashed, killing developer.
  • Roadable Times web site details many more.





Modern development

There is an active movement in the search for a practical flying car. Several conventions are held yearly to discuss and review current flying car projects. Two notable events are the Flying Car forum held at the world-famous EAA Airventure at Oshkosh, Wisconsin, and the Society of Automotive Engineers (SAE) conventions held at various cities.

Flying cars fall into one of two styles; integrated (all the pieces can be carried in the vehicle), or modular (the pieces to fly are left at the airport when the vehicle is driven).



Tata's Cheapest car for commmon people


Latest Tata Nano


WIKIPEDIA


Manufacturerent copany:Tata Motors
Pare: Tata Sons(Also called The People's Car)
Production: 2008—present
Predecessor: none
Class: City car
Body style: 4-door hatchback
Layout: RR layout
Wheelbase: 2,230 mm (87.8 in)
Length: 3100 mm (122 in)[1]
Width : 1500 mm (59.1 in)[1]
Height : 1600 mm (63 in)[1]
Kerb weight: 580 kg (1,300 lb)-600 kg (1,300 lb)[2]
Fuel capacity: 15 L (4 US gal; 3 imp gal)[2]
Designer: Girish Wagh, Justin Norek of Trilix, Pierre Castinel[3]

The Tata Nano is a rear-engined, five-passenger city car built by Tata Motors, aimed primarily at the Indian market.

Tata has sought to produce the least expensive production car in the world aiming for a starting price of Rs.100,000 (approximately US$2,000). Tata Motors commercially launched Nano on March 23, 2009, with bookings from April 9 to April 25.




Price

Tata initially targeted the vehicle as "the least expensive production car in the world" aiming for a starting price of 100,000 rupees or approximately US$2000 (using exchange rate as of March 22, 2009) despite rapidly rising material prices at the time.

As of August 2008, material costs had risen from 13% to 23% over the car’s development,and Tata faced the choice of:
  • introducing the car with an artificially low price through government subsidies and tax-breaks, or
  • forgoing profit on the car, or
  • using vertical-integration to artificially boost profits on cars at the expense of their materials industries, or
  • partially using inexpensive polymers or biodegradable plastics instead of a full metal-body, or
  • raising the price of the car

Subsequently however material prices dropped dramatically as a result of the financial crisis of 2007–2009.



Technical specifications

According to Tata Group's Chairman Ratan Tata, the Nano is a 33 PS (33 hp/24 kW) car with a 623 cc rear engine and rear wheel drive, and has a fuel economy of 4.55 L/100 km (21.97 km/L, 51.7 mpg (US), 62 mpg (UK)) under city road conditions, and 3.85 L/100 km on highways (25.97 km/L, 61.1 mpg (US), 73.3 mpg (UK)). It is the first time a two-cylinder non-opposed petrol engine will be used in a car with a single balance shaft.Tata Motors has reportedly filed 34 patents related to the innovations in the design of Nano, with powertrain accounting for over half of them. The project head, Girish Wagh has been credited with being one of the brains behind Nano's design.

Rear mounted engine

The use of a rear mounted engine to help maximize interior space makes the Nano similar to the original Fiat 500, another technically innovative "people's car". A concept vehicle similar in styling to the Nano, also with rear engined layout was proposed by the UK Rover Group in the 1990s to succeed the original Mini but was not put into production.[56] The eventual new Mini was much larger and technically conservative. The independent, and now-defunct, MG Rover Group later based their Rover CityRover on the Tata Indica.


Tata is also reported to be contemplating offering a compressed air engine as an option

Engine: 2 cylinder petrol with Bosch multi-point fuel injection (single injector) all aluminium 33 horsepower (25 kW) 624 cc (38 cu in)
Value Motronic engine management platform from Bosch
2 valves per cylinder overhead camshaft
Compression ratio: 9.5:1
bore × stroke: 73.5 mm (2.9 in) × 73.5 mm (2.9 in)
Power: 33 PS (33 hp/24 kW) @ 5500 rpm[58]
Torque: 48 N·m (35 ft·lbf) @ 2500 rpm
















Layout and Transmission Rear wheel drive
4-speed manual transmission
Steering mechanical rack and pinion
Performance Acceleration: 0-70 km/h (43 mph): 14 seconds
Maximum speed: 120 km/h (75 mph)
Fuel efficiency (overall): 20 kilometres per litre (5 litres per 100 kilometres (56 mpg-imp; 47 mpg-US)
Body and dimensions Seat belt: 4
Trunk capacity: 15 L (0.53 cu ft)
Suspension, Tires & Brakes Front brake: disc
Rear brake: drum
Front track: 1,325 mm (52.2 in)
Rear track: 1,315 mm (51.8 in)
Ground clearance: 180 mm (7.1 in)
Front suspension: McPherson strut with lower A arm
Rear suspension: Independent coil spring
12-inch wheels

































Diesel

Together with Diesel Engine specialist FEV Tata Motors is developing a 684 cc diesel engine for the Nano. It was earlier reported by media that Tata was producing an 800 cc Common Rail diesel engine. Diesel Variant will be available in September, 2009. Diesel variant Nano will sell for Rs2 lakh (200,000 rupees). Nano will have the smallest Common Rail Turbocharged Diesel engine in the world.




Supplier Product
Bosch Gasoline injection system (diesel will follow), starter, alternator, brake system
HSI AUTO Static sealing systems (Weather Strips)
Caparo Inner structural panels
Continental AG Gasoline fuel supply system, fuel level sensor
Delphi Instrument cluster
Denso Windshield wiper system (single motor and arm)
FAG Rear-wheel bearing
Ficosa Rear-view mirrors, interior mirrors, manual and CVT shifters, washer system
Freudenberg Engine sealing
GKN Driveshafts
INA Shifting elements
ITW Deltar Outside and inside door handles
Johnson Controls Seating
Mahle Camshafts, spin-on oil filters, fuel filters and air cleaners
Saint-Gobain Glazing
TRW Brake system
Ceekay Daikin/Valeo Clutch sets
Vibracoustic Engine mounts
Visteon Air induction system
ZF Friedrichshafen AG Chassis components, including tie rods
Behr HVAC for the luxury version

Bugatti Veyron Fbg par Hermes



Bugatti Veyron Fbg par Hermes Specifications

Drivetrain
Layout : Mid-Engine, AWD
Transmission : 7 Speed DSG Sequential Manual


Engine

Engine Type : Quad-Turbocharged 16 Cylinder
Horsepower : 1001 hp @ 6000 rpm
Torque : 922 lb-ft. @ 2200 rpm
Compression Ratio : 9.00:1
Displacement : 7993 cc


Exterior

Curb Weight: 4162 lb.
Height : 47.4 in.
Length : 175.7 in.
Wheelbase : 106.7 in
Width : 78.7 in.


Performance

0-60 mph: 2.46 sec
1/4 mile: 10.2 sec
Braking, :62-0 mph 2.3 sec
Fuel Consumption: EPA est. 7 mpg city/ 10 mpg highway
Top Speed : 253 mph


Base Price

Bugatti Veyron Fbg par Hermes: Good luck.

Bugatti Veyron Sang Noir


Bugatti Veyron Sang Noir


Drivetrain

Layout : Mid-Engine, AWD
Transmission: 7 Speed DSG Sequential Manual


Engine

Engine Type : Quad-Turbocharged 16 Cylinder
Displacement : 7993 cc
Horsepower: 1001 hp @ 6000 rpm
Torque : 922 lb-ft. @ 2200 rpm
Compression Ratio : 9.00:1


Exterior

Curb Weight: 4162 lb.
Width: 78.7 in
Length: 175.7 in
Height : 47.4 in
Wheelbase: 106.7 in



Performance

0-60 mph: 2.46 sec
Top Speed: 253 mph
Fuel Consumption: EPA est. 7 mpg city/ 10 mpg highway
Braking, 62-0 mph: 2.3 sec
1/4 mile : 10.2 sec




Base Price
Bugatti Veyron Sang Noir - Contact manufacturer.

2008 Bugatti Veyron 16.4 Pur Sang Edition


Bugatti Veyron 16.4 Pur Sang Edition 2008


Chassis

Brakes F/R: ABS, vented disc/vented disc
Tires F-R: 265-680 ZR500A - 365-710 R540A (PAX System)
Driveline: All Wheel Drive



Engine

Type: Quad-Turbocharged W16
Displacement cu in (cc): 488 (7993)
Power bhp (kW) at RPM: 1001(736) / 6000
Torque lb-ft (Nm) at RPM: 923(1250) / 2200-5500
Redline at RPM: 6500


Exterior

Length × Width × Height in: 174.2 × 77.9 × 47
Weight lb (kg): 4162 (1888)


Performance

Acceleration 0-60 mph s: 2.5
Top Speed mph (km/h): 253 (407)
Fuel Economy EPA city/highway mpg (l/100 km): n.a. (24.1)


Base Price
2008 Bugatti Veyron 16.4 Pur Sang Edition Approx $1,500,000

2009 Ford Focus RS


Ford Focus RS 2009
Drivetrain
Layout: Front Engine, FWD
Differential : Standard Limited Slip
Transmission: Getrag Dual-clutch Sequential Manual
Engien
Horsepower: More than 277 hp
Torque : More than 295 lbs.-ft
Engine Type: Turbocharged 4 cylinder
Displacement: 2.5 Liters


Base Price
2009 Ford Focus RS - TBA

2009 Ford Mustang GT



Ford Mustang GT

Drivetrain

Layout: Front Engine, RWD
Transmission: 5-speed manual (Tremec 3650)
Final Drive Ratio: 3.55:1
Front Brakes: 316 (12.4 in) x 30 mm vented disc, twin-piston 43-mm floating aluminum calipers
Rear Brakes: 300 (11.8 in) x 19 mm vented disc, single piston 43 mm floating iron calipers


Engine

Engine Type: 90-degree SOHC 24V V-8
Displacement: 4.6 Liters
Redline: 6250 rpm
Horsepower: 300 bhp @ 5750 rpm
Torque: 320 lb-ft. @ 4500 rpm


Exterior

Curb Weight: 3,356 lb.
Wheelbase : 107.1 in.
Length: 188.0 in.
Width: 73.9 in.
Height: 55.7 in.
Body Type: 2+2, Coupe, Convertible or Glass Roof Coupe


Performance

0-60 mph: 5.2 sec
Top Speed: 149 mph
Fuel Economy : 15 city /23 highway EPA est.


Base Price
2009 Ford Mustang GT : $27,200

2010 Ford Mustang


Ford Mustang 2010

Drivetrain

Layout: Front Engine, RWD
Transmission: 5 Speed Manual


Engine

Type: Naturally Aspirated V8


Engine & Transmission

Displacement cu in (cc): 4.6 liters
Power bhp (kW) at RPM: 315 hp @ 6000 rpm
Torque lb-ft (Nm) at RPM: 325 lb-ft @ 4250 rpm

Exterior

Body Type : 2 Door, 4 Seat Coupe
Curb Weight: 3533 lbs.


Base Price

Unreleased. Outgoing Mustang GT model: $27,200

2010 Ford Shelby GT500




Ford Shelby GT500
Chassis
Wheels: 19 inch special to GT500
Tires Front: Goodyear F1 Supercar 255/40R19
Tires Rear : Goodyear F1 Supercar 285/25R19

Drivetrain

Layout: Front Engine, RWD
Transmission: 6 Speed Manual, Dual 250mm clutch
Final Drive Ratio: 3.55:1

Engine

Type: Supercharged and Intercooled V8



Engine & Transmission

Displacement cu in (cc): 5.4 liters
Power bhp (kW) at RPM: 540 bhp at 6200 rpm
Torque lb-ft (Nm) at RPM: 480 lb-ft. @ 4500 rpm
Redline at RPM: 6250 rpm



Exterior

Body Type: 2 Door, 4 Seat Coupe
Curb Weight: est. 3900 lbs.


Base Price
2010 Ford Shelby GT500: Est. $45,000

2010 Ford Taurus SHO

Ford Taurus SHO

Chassis
Wheels: 19 inch (optional 20 inch) alloy
Front Suspension: MacPherson strut
Rear Suspension : Multilink independent, stabilizer bar


Drivetrain

Layout: Front Engine, AWD
Transmission: 6 Speed Paddle-Shifted Automatic
Final Drive Ratio: 3.16:1

Engine

Type: SHO EcoBoost Twin Turbo V6
Displacement : 3.5 liters
Horsepower : 365 bhp
Torque: 350 lb-ft.

Exterior

Tires : F-R Goodyear Eagle F1 (optional)
Body Type: 4 Door, 5 Seat Sport Sedan



Base Price
2010 Ford Taurus SHO: $37,995

2009 Porshe 911 Carrera S Coupé


Chassis
Brakes F/R: ABS, vented disc/vented disc

Drivetrain

Transmission: 6 Speed Manual
Transmission : Available 7-Speed Sequential Dual-clutch Manual with Launch Control
Layout: Rear Engine, RWD

Engine

Horsepower: RPM 385


Performance

Fuel Economy: est. 20 mpg
Top Speed : 186
0-60 mph : 4.1 seconds

Base Price
$123,103

2009 Porsche Cayman


Porsche Cayman Latest


Chassis
Brakes: Pre-Loading
Wheels: 19 inch
Drivetrain
Layout: Mid-Engine, RWD
Transmission: 6 Speed Manual or 7 Speed Porsche PDK DSG
Differential: New Standard Limited Slip
Engine
Type: 6 Cylinder Horizontally Opposed "Boxer"
Engine & Transmission
Displacement cu in (cc): 3.4 liters
Power bhp (kW) at RPM: 320 bhp



Exterior

Body Type : 2 Door, 2 Seat Coupe
Interior
Audio: CDR-30 CD radio
Navigation : Porsche Communication Management (PCM) 3.0 complete with hard disc navigation
Connectivity: iPod®, USB stick, or Bluetooth


Performance

Acceleration: (0-100 km/h) 4.9 seconds
Base Price
Not yet released.

2009 Porsche Cayman S Sport

Porsche Cayman S Sport

Drivetrain
Layout : Mid-Engine, RWD
Transmission: 6 Speed Manual

Engine

Engine Type: Sport-Tuned Flat-6 "Boxer" Engine
Displacement: 3.4 Liters
Horsepower: 303 hp



Exterior

Wheels : 19 in. Painted "Sport" Alloy
Length: 172.1 in.
Width: 70.9 in.
Height : 51.4 in.
Body Type: 2 Seat, Fixed Roof Coupe



Performance

0-60 mph < style="font-weight: bold;">Top Speed > 170 mph

Base Price

2009 Porsche Cayman S Sport :£49,890 (U.K. Release First)