Showing posts with label Fast. Show all posts
Showing posts with label Fast. Show all posts

Hannessey Venom GT - The Fastest Sport Car in The World

2014 Hennessey Venom GT Specifications



Performance

0-60 mph
0-100 mph
0-300 km/h
0-200 mph
¼ mile
Standing half mile
Standing mile
Verified speed
Est. top speed
2.7 sec.
5.6 sec.
13.63 sec. – Guinness World Record
14.51 sec. – Hypercar World Record
9.92 sec. @ 163 mph
206 mph
253 mph
270.49 mph
278 mph

Engine

Type
Valvetrain
Block/heads
Forced induction
Horsepower
Torque
Displacement
Compression ratio
Redline
Lubrication
Fuel injection
90-degree V8
overhead valve, 2 valves/cyl
iron /aluminum
twin precision ball bearing turbochargers
1244 bhp @ 6600 rpm (cockpit-adjustable to 800, 1000 & 1244 bhp)
1155 lb-ft @ 4400 rpm
7000 cc/427 cu. in.
9.2:1
7200 rpm
dry sump system
electronic sequential multi-port

Chassis

Layout
Body/frame
Brakes, f & r
Wheels
Tires
Steering
Suspension, f&r
Springs/shocks
Ride height
mid-longitudinal engine/rear drive
carbon fiber & composite/aluminum hybrid monocoque-space frame
15.0 x 1.3-in. carbon-ceramic rotors, 6-piston Brembo fixed calipers
Hennessey H10 forged monoblock, 9.5 x 19 front, 12.5 x 20 rear
Michelin Pilot Super Sport; 265/30ZR19 front, 345/30ZR20 rear
rack & pinion, 6-position variable electric assist
unequal-length tubular A-arms, anti-roll bars
Penske 2-way-adjustable coilovers
adjustable; range of 2.4 in.

Drivetrain

TransmissionRicardo 6-Speed manual
Final Drive Ratio3.36:1
1st gear/max speed
2nd gear/max speed
3rd gear/max speed
4th gear/max speed
5th gear/max speed
6th gear/max speed
2.61:1 69 mph
1.71:1 105 mph
1.23:1 146 mph
0.94:1 191mph
0.77:1 233 mph
0.63:1 278 mph

Dimensions & Capacities

Length
Width
Height
Wheelbase
Track, front
Track, rear
Ground clearance
Curb weight
Fuel capacity
Weight distribution, f/r %
(with driver & passenger)
183.7 in./4655 mm
77.2 in./1960 mm
44.7 in./1135 mm
110.2 in./2800 mm
63.5 in./1612 mm
63.2 in./1604 mm
3.5 in. to 5.9 in./90 mm to 150 mm
2743 lb/1244 kg
18.5 gal./70 liters
44/56


Optional Upgrades

• Michelin Pilot Sport Cup ZP Tires
• Bare Carbon Fiber Finish
• Right-Hand Drive
• Stefano Ricci Bespoke Interior
• Stereo System Designed by Steven Tyler of Aerosmith


On February 14, 2014, the Hennessey Venom GT set a new world speed record for 2-seatsports cars by reaching a top speed of 270.49 mph (435.31 km/h). The test was performedat the John F. Kennedy Space Center on the 3.2-mile Space Shuttle landing runway. Brian Smith, Director of Miller Motorsports Park, drove the Venom GT to its record speed. A representative from Racelogic, world-renowned maker of VBox GPS data-acquisition systems, was on hand to independently verify and document the Venom GT's highest recorded speed. The Venom GT was powered with Pennzoil Platinum® with PurePlus™ Technology, a first of its kind synthetic motor oil made from natural gas.


Related post : Fastest Sport Car

The Fastest Cars 2012


#1. Bugatti Veyron Super Sport

267 mph, 0-60 in 2.4 secs. Aluminum, Narrow Angle 8 Liter W16 Engine with 1200 hp, base price is $2,400,000. Although the Bugatti Veyron lost the title to SSC Ultimate Aero on March 2007, Bugatti challenge the record in Germany on July 10, 2010 with the new 2010 Super Sport Version and the Veyron once again claims the title of the fastest car in the world at 267 mph. The original Bugatti Veyron has a top speed of 253 mph, priced at $1,700,000 and equipped with 1001 hp.

#2. Hennessey Venom GT


260 mph, 0-60 in 2.5 seconds, has a 6.2-liter LS9 Turbocharged V8 Twin Turbo V8 Engine producing 1200 hp, has a price tag of $950,000. The Venom GT has yet to be tested and proven, but could possibly hit a top speed of 275 mph. This might just be the Veyron Super Sport's closest competitor!

Look up the other cars here http://amayaku.blogspot.com/2008/08/fastest-sport-cars.html

FASTEST SPORT MOTORBIKE

Ducati Desmosedici RR



The Ducati Desmosedici RR is a limited production road-legal version of the Desmosedici MotoGP racebike. Ducati made 1500 Desmosedicis for public purchase. The bike was launched at the 2006 Italian MotoGP event. The entire 500 units for the United States sold out in five hours. In 2004, Ducati announced that they would be producing a low volume bespoke replica of the Desmosedici, available from 2006.



Termed the Desmosedici RR (Racing Replica), it was claimed to be the first true road replica of a MotoGP racing bike. Priority for ordering was given to Ducati 999R owners, with production projected at one bike per day at a retail cost of US$72,500 and GBP£40,000. The price includes a three year warranty and servicing, cover plus a racing kit including a "race only" exhaust system, a "slip-on" muffler and complimentary fuel and ignition mapping in a "race ECU". Production has been limited to 1500 motorcycles. It also includes sponsor stickers, enough to fill both sides of the bike.



The bike was eventually launched at the 2006 Italian MotoGP event at Mugello, with production beginning in December 2007 and the first customer orders delivered from January 2008. Ducati guaranteed customer orders would be fulfilled by the end of 2008.


Specifications

Engine
  • Type: Double L-Twin (4 cylinder Twin Pulse), liquid-cooled, DOHC, Desmodromic, four valves per cylinder, gear-driven camshafts
  • Displacement: 989 cc (60.4 cu in)
  • Power: 147.1 kW (197.3 bhp) @ 13,800 rpm[4]
  • Torque: 11.8 kg·m (85 ft·lbf) @ 10,500 rpm[4]
  • Fuel injection: Four 50 mm (2.0 in) Magneti Marelli throttle bodies, 12-hole "microjet" with injectors over throttle, manual idle control
  • Exhaust: '4-into-2-into-1' vertical exit exhaust/silencer
  • Emissions: Euro 3
Transmission
  • Gearbox: 6-speed; Cassette type
  • Clutch: Dry multi-plate slipper clutch, hydraulically actuated

Vehicle
  • Body: Full carbon fiber bodywork
  • Frame: Tubular steel trellis hybrid, carbon fiber seat support, aluminum swingarm
  • Front Suspension: Öhlins 'FG353' PFF forks USD 43 mm (1.7 in) pressurized, with preload, rebound and compression adjustment, TiN coated sliders
  • Front Wheel: Marchesini forged and machined magnesium alloy wheels, with 7 spoke design as GP6
  • Rear Suspension: Öhlins rear shock, with rebound, low/high speed compression adjustment, and hydraulic preload adjustment
  • Rear Wheel: Marchesini forged and machined magnesium alloy wheels, with 7 spoke design as GP6
  • Tires: Bridgestone, front 120/70 R17- rear 200/55 R16
  • Front Brake: Two Brembo radial "monoblock" calipers with four 34 mm (1.3 in) pistons; two semi-floating 320 mm (13 in) x 6 mm (0.24 in) discs, with machined flange: the same as GP6 wet race set-up
  • Rear Brake: 240 mm (9.4 in) fixed disc, fixed caliper with two 34 mm (1.3 in) pistons
  • Fuel tank: aluminum alloy
  • Dry Weight: 171 kg (377.0 lb)
  • Instruments: New lightweight Corse electronic multifunction dashboard with LCD 'bar' graph tachometer, trip/odometer, anti-theft immobilizer, lap time measurement, oil pressure, fuel reserve, EOBD, clock, air temperature, rev counter
Version
  • Colors: Two versions — 1) Desmosedici RR: Rosso GP with a white number plate on the tail section; 2) Desmosedici RR "Team Version": Rosso GP with broad white fairing stripe.
  • Versions: Single-seat with racing exhaust (102 dB) - without catalytic converter. A team sponsor decal kit will be provided with each bike.
Performance
  • Top speed 190mph
  • Average fuel consumption 33mpg
Video of Ducati Desmosedici :




Kawasaki Ninja ZX-14



The ZZR1400 (Kawasaki Ninja ZX-14 in North America) is a hyper sport motorcycle manufactured by Kawasaki Heavy Industries and is currently their most powerful sport bike. It was introduced at the Tokyo 2005 show and released for the 2006 model year as a replacement for the ZX-12R. Its direct competitor in the hyper sport segment is the Suzuki Hayabusa.



The ZZR1400 is capable of accelerating from 0–60 mph in 2.5 seconds. The top speed is electronically limited to 186 mph (299 km/h). This limit has been in effect on both Kawasaki and Suzuki sport motorcycles since 2001 when both companies realized that the speed war between them would only serve to bring about government regulation. However, the Ninja also has been reported at speeds of 210 mph with its limiter removed for all motorcycle needs. The motorcycle was featured in season 10 of Fifth Gear on October 30, 2006.

Motorcycle USA road tested the bike in its October 10, 2006, issue and posted the following stock results:
  • 60 ft.: 1.713 sec.
  • 330 ft.: 4.349 sec.
  • 1/8 mile: 6.447 sec., achieving 117.39 mph
  • 1/4 mile: 9.783 sec., achieving 147.04 mph (top speed 186 mph)


The manufacturer’s MSRP for the 2008 Kawasaki Ninja ZX-14 in the U. S. market is $11,699–11,999.

Colors
  • 2006: Passion Red, Ebony, and Candy Thunder Blue. (European model: Pearl Meteor Gray and Candy Thunder Blue.)
  • 2007: Diablo Black, Candy Plasma Blue, and Special Edition Pearl Crystal White.
  • 2008: Metallic Midnight Sapphire Blue, Atomic Silver, and Special Edition Metallic Flat Spark Black/Metallic Persimmon Red.
  • 2009: Candy Lime Green/Flat Super Black, Special Edition Candy Burnt Orange/Metallic Diablo Black

Specification
  • Manufacturer Kawasaki Heavy Industries
  • Also called ZZR1400 (Europe and Japan)
  • Production 2006-present
  • Predecessor Kawasaki Ninja ZX-12R
  • Successor none
  • Class hyper sport
  • Engine 1352 cc four-stroke, liquid-cooled, DOHC, four valve per cylinder, inline-four
  • BorexStroke: 84.0 x 61.0 mm
  • CR: 12.0:1
  • DFI with 4xMikuni 44 mm throttle bodies
  • Torque 113.5 ft·lbf / 153.9 Nm @ 7,500 rpm
  • Transmission 6-speed, X-ring chain
  • Suspension Front: 43 mm inverted cartridge fork with adjustable preload, stepless rebound and compression damping adjustments / 4.6 in travel
  • Rear: Uni-Trak with adjustable preload, stepless rebound and compression damping adjustments, adjustable ride height / 4.8 in travel
  • Brakes Front: Dual semi-floating 310 mm petal discs with dual radial-mounted four-piston calipers
  • Rear: Single 250 mm petal disc with twin-piston caliper
  • Rake, Trail 23 degrees / 94 mm
  • Wheelbase 57.5 in, 146.1 cm
  • Dimensions L 85.4 in, 216.9 cm W 29.9 in, 75.9 cm H 46.1 in, 117.1 cm
  • Seat height 31.5 in, 80 cm
  • Weight 474 lb, 215 kg (2007) / 485 lb, 220 kg (2008) (dry), 555 lb, 251.7 kg (2007) (wet)
  • Fuel capacity 5.8 US gallons (22 l)
Video of Kawasaki ZX-1400





Suzuki Hayabusa


The Suzuki Hayabusa (also known as the GSX1300R in some countries) is a hyper sport motorcycle originally introduced by Suzuki in 1999. It has a 1298 cc (79.2 cu in) inline-4 engine and was consistently tested as the fastest production motorcycle in the world before the 2001 detuning agreement referred below. The 2009 model has a MSRP of US$13,199.

The name Hayabusa translates directly from the Japanese as Peregrine Falcon, The bird is said to be capable of speeds of over 200 mph (322 km/h) — and predator of (perhaps not coincidentally) the common blackbird. The name is a subtle reference to Honda's competing Hawk models. When introduced in 1999, it overtook the Honda CBR1100XX Super Blackbird as the fastest production motorcycle. The first generation of the Hayabusa was called the GSX1300R and was powered by a 1299 cc (79.2 cu in) inline-4 liquid-cooled engine. It remained substantially unchanged up through the 2007 model year.

Competition in the hyper sport bike segment increased with the release of motorcycles like the Kawasaki Ninja ZX-14 and BMW K1200S. This increased competition led to Suzuki heavily revising the GSX1300R for the 2008 model year. Suzuki has dropped the GSX1300R designation in some countries and simply called the motorcycle the Hayabusa. The engine size was increased to 1349 cc (82.3 cu in) with the compression ratio increasing to 12.5:1. The revised engine has a claimed 12% increase in power to 194 hp (145 kW).



Fuel is now fed through a pair of new 44 mm (1.7 in) Suzuki Dual Throttle Valve (SDTV) throttle bodies. The Suzuki Drive Mode Selector (S-DMS), a technology introduced on the GSX-R line of motorcycles, provides three options of power delivery for a range of touring to wide open high performance. Some of the more notable features include a new 4-2-1-2 exhaust system meets Euro 3 and EPA Tier 2 emission regulations, a slipper clutch, and redesigned bodywork.

The motorcycle in stock form is capable of the following performance:
  • 1/4 mile (402 m): 9.34 seconds @ 149.7 mph (241 km/h)
  • 0–60 mph: 2.49 seconds
  • 0–180 mph: 15.9 seconds
  • Top speed: 188 mph (303 km/h) electronically restricted


Specification
  • Engine : 1349 cc (82 cu in), 4-stroke, four-cylinder, liquid-cooled, DOHC, 16-valve
  • Bore Stroke : 81.0 x 65.0 mm
  • Compression Ratio : 12.5:1
  • Power : 197 hp (147 kW)[5]
  • Torque : 102.3 lb·ft (139 N·m)[5]
  • Fuel System : Fuel Injection
  • Lubrication : Wet sump
  • Ignition : Digital/Transistorized
  • Transmission : 6-speed, constant mesh
  • Final Drive : #530 chain
  • Overall Length : 2195 mm (86.4 in)
  • Overall Width : 740 mm (29.1 in)
  • Overall Height : 1170 mm (46.1 in)
  • Seat Height : 805 mm (31.7 in)
  • Ground Clearance : 120 mm (4.7 in)
  • Wheelbase : 1485 mm (58.5 in)
  • Dry Weight : 220 kg (485 lb)
  • Suspension Front : Inverted telescopic, coil spring, fully adjustable spring preload, adjustable rebound damping and adjustable compression damping
  • Suspension Rear : Link-type, gas/oil damped, fully adjustable spring preload, adjustable compression & rebound damping
  • Brakes Front : 4-pot Tokico radial mount calipers on 310mm x 5.5mm disc
  • Brakes Rear : Single hydraulic disc
  • Tires Front : 120/70-ZR-17
  • Tires Rear : 190/50-ZR-17
  • Fuel Tank Capacity : 21 l (5.5 US gal) -- 20.0 l (5.3 US gal) CA. model





Related post :

  1. Fastest Plane in The World : The Lockheed SR-71 Blackbird
  2. Fastest Solar-Powered Car
  3. Fastest Scooter : Go-Ped ESR 750 EX & Xtreme X600
  4. Fastest Electric Bicycle : A2B
  5. Fastest Electric Motorcycle : The KillaCycle®
  6. Fastest Electric Cars
  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC
  9. MotoGP 2008`s Bike
[source : wikipedia - motorcyleusa.com - youtube.com]

Fastest Plane in The World : The Lockheed SR-71 Blackbird



The Lockheed SR-71 Blackbird is, to date, the fastest airplane ever to streak across the sky, even though it's more than 30 years old. Capable of speeds over 2200 miles per hour—that's more than three times the speed of sound—the SR-71 can fly at altitudes above 80,000 feet. What does it feel like to travel at Mach 3, 15 miles above the earth? Pilots report that, with no view out the window, there's an eerie sensation of motionlessness when cruising in the Blackbird.

To fly safely in this harsh, low-pressure environment pilots must wear a full-pressure suit for protection. Even though the temperature outside the aircraft hovers around -70 degrees F, the sheer friction of flying at Mach 3 heats the leading edges of the SR-71 to 800 degrees F. To help withstand this kinetic heat, the Blackbird's airframe is built almost entirely of titanium and is finished in a special heat-emitting black paint, which helps to cool the aircraft and gives it its nickname.

The SR-71 can operate for about an hour at top speed before it needs refueling—a feat that can be accomplished in mid-air with a special tanker aircraft. The Blackbird is powered by two Pratt and Whitney J-58 axial-flow turbojets with afterburners, each producing about 34,000 pounds of thrust. Studies have shown that when the aircraft is cruising at Mach 3 or above only about 25 percent of the total thrust is produced by the engines themselves. The balance is produced by the unique design of the engine inlet and housing, which is equipped with special afterburners.

The two-seat SR-71 was developed in the early 1960s by the U.S. Air Force as a strategic reconnaissance aircraft. The first flight of an SR-71 was in 1964 at a classified location in Nevada. The aircraft's first operational "sortie" was flown out of Okinawa, Japan in 1968. Most of the SR-71 fleet has now been retired, except for two Blackbirds currently on loan to NASA's Dryden Flight Research Center where the aircraft are being used as "test beds" for high altitude research."

Related post :

  1. Fastest Boat In The World : Spirit of Australia
  2. Fastest Solar-Powered Car
  3. Fastest Scooter : Go-Ped ESR 750 EX & Xtreme X600
  4. Fastest Electric Bicycle : A2B
  5. Fastest Electric Motorcycle : The KillaCycle®
  6. Fastest Electric Cars
  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC

Fastest Boat In The World : Spirit of Australia


The World Water Speed record, like the air speed record, is decades old. Australian Ken Warby set the record in 1978 when he averaged 317.60 mph in a 27-foot jet-powered hydroplane called "Spirit of Australia." The official speed test, which consists of two back-to-back runs over a one-kilometer straight-away, took place on Blowering Dam in New South Wales, Australia. And where did Warby design and build this hydraulic masterpiece? Underneath a tree in the back yard of a house he was renting in suburban Sydney. "There was a canvas sheet I used to throw over it when it rained," he told the press.

Attempts at beating Warby's record have come at a high price. In 1980, the previous water speed record holder, Lee Taylor, tried to reclaim his title in a 2.5 million dollar rocket-boat called "Discovery II." The missile-shaped craft was constructed of aluminum, titanium and stainless steel and was powered by a rocket engine that burned hydrogen peroxide fuel. On paper, the power plant generated 8,000 pounds of thrust—or 16,000 horsepower. Taylor believed his boat would surpass 600 mph.

The trial took place November 13, 1980 on Nevada's Lake Tahoe. Discovery II roared through its first pass at 269.85 mph and was decelerating when it appeared to hit a swell. Witnesses reported that the boat veered to the left and suddenly disintegrated, vanishing under the surface of the lake in a matter of a few seconds.

Craig Arfons, a former automotive drag racing champion, was the next to take up the challenge. In 1989, he put the finishing touches on a jet hydroplane called "Rain-X Record Challenger," which boasted a lightweight composite hull and a jet engine that could deliver 5,500 horsepower with the afterburner lit. Arfons calculated that the boat's favorable thrust-to-weight ratio would give it a 200 percent power advantage over Warby's record-setting boat.

The record attempt took place on Jackson Lake near Sebring, Florida. Members of Arfons' crew say his boat reached a speed of 263 mph before it became airborne and began to cartwheel across the mirror-smooth lake. Arfons tried to deploy a safety parachute, but the angle at which his boat was traveling prevented the parachute from opening. Arfons was killed as his boat shattered around him.

Recently Warby, now 58, has announced his intention to push his World Water Speed Record even higher with a new boat currently under construction. "I'm far too young to be in a rocking chair, so I thought I'd get back in the cockpit."

Related post :

  1. Fastest Plane in The World : The Lockheed SR-71 Blackbird
  2. Fastest Solar-Powered Car
  3. Fastest Scooter : Go-Ped ESR 750 EX & Xtreme X600
  4. Fastest Electric Bicycle : A2B
  5. Fastest Electric Motorcycle : The KillaCycle®
  6. Fastest Electric Cars
  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC

Fastest Solar-Powered Car

Nuna4

The Nuna4 is fourth in a line of single-seat racers built to conquer the annual Panasonic World Solar Challenge, an 1,865-mile sprint across Australia's vast sun-soaked outback. The three-wheeled Nuna4's 65-square-foot upper surface is encrusted with 2,318 photovoltaic cells. The cells charge a 66-pound lithium-polymer battery pack, which juices a 7.5-horsepower direct-drive electric motor in the rear wheel. 

To sustain 80 mph, the Nuna4 (a slight 420 pounds, plus driver) uses no more electricity than a household vacuum cleaner. Its alien design is the work of 11 students at Delft University of Technology in the Netherlands, where people know the importance of maximizing the sun's rays. This year's Solar Challenge gets underway on Oct. 21, springtime Down Under.

GM Sunraycer

The Sunraycer was a solar powered race car designed to compete in the world's first race featuring solar-powered cars. This race is now called the World Solar Challenge. The Sunraycer, a joint collaboration between General Motors, AeroVironment, and Hughes Aircraft, won the first race in 1987 by a huge margin. One of its drivers was Australian Touring Car racer, John Harvey.

The Sunraycer project started with a request from GM's Australian division to GM Headquarters to participate in the upcoming Solar Challenge. This race, to be held in Australia in late 1987 would feature purely solar powered cars. Roger Smith, the CEO of GM, was immediately interested in the idea and he agreed to fund a study to see if a solar powered car could be built within 10 months. Smith hired AeroVironment to do the study. A month later, AeroVironment engineers concluded that a highly competitive car could be built within the time available. AeroVironment, led by their famous owner/engineer Paul MacCready was given the contract to build what would be called the Sunraycer.

During the conceptual process, the constant goal was to create a very low-weight and ultra-low wind resistance vehicle. With this in mind, AeroVironment produced a design (resembling a futuristic streamlined cockroach) that proved to be very lightweight (only 585 lb (265 kg)) and created a very low drag co-efficient (Cd: 0.125). Sunraycer was fast and capable of a top speed of 109 km/h (68 mph).

A total of 8800 solar cells were manufactured and installed by a team, from Hughes Aircraft, which had a great deal of experience with photovoltaic cells used in the many communications satellites that they designed and built. At high noon, the car would generate about 1500 watts of power.

The engine was created for the Sunraycer by GM using a brand new magnetic motor based on Magnequench magnets recently invented by the GM physics department. This new motor was lightweight and efficient motor; GM stated its motor efficiency was around 92%.

Aside from the driver, the single heaviest element in the car was the Hughes battery pack that utilized silver-oxide batteries. These batteries were included to provide extra power when passing trucks, to smooth out the performance of the vehicle, and because the race rules mandated driving only between the hours of 8 AM to 5 PM, but the cars were allowed to charge their batteries from sunlight even when they weren't on the road. (So, the battery allowed driving during allowed hours even when the weather was overcast.)

The frame of the car weighed just 14 pounds. AeroVironment engineers made use of Kevlar for the shell of the car. The Sunraycer was tested through the spring and summer of 1987, and it had no problems. During the testing period, the team had the time to set a new world speed record with the Sunraycer, achieving a speed of 36 mph (58 km/h) from solar power alone (breaking the old record by 10 mph).

Related post :

  1. Fastest Boat In The World : Spirit of Australia
  2. Fastest Plane in The World : The Lockheed SR-71 Blackbird
  3. Fastest Scooter : Go-Ped ESR 750 EX & Xtreme X600
  4. Fastest Electric Bicycle : A2B
  5. Fastest Electric Motorcycle : The KillaCycle®
  6. Fastest Electric Cars
  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC

Fastest Scooter : Go-Ped ESR 750 EX & Xtreme X600

Go-Ped ESR 750EX


The 2009 Go-Ped "Electric Speed Racer" ESR 750EX is in a class by itself. It’s perfect for commuters, pleasure riders and electric enthusiasts who demand a first class riding experience. It's powered by a 1000+ watt advanced technology Go-Ped electric motor that offers state-of-the-art performance and reliability. Thrilling acceleration, speeds up to 20 mph and outrageous hill climbing are par for the course with this unique gliding machine. The Go-Ped ESR 750EX has a low center of gravity, stable ride and great maneuverability. It's extremely durable, reliable and easy to maintain. Innovative and high quality features abound with the Go-Ped ESR 750 EX, like carefully designed ergonomic controls, powerful "Mad Dog" disc brakes, a built-in smart charger and an ultra-modern programmable controller. The dual performance feature lets the rider chose an "Economy" or "Turbo" mode to go either "twice as far, half as fast", or "twice as fast, half as far". This gives you absolute control over your choice of speed and range. The ESR 750EX's lines are simple yet elegant. The molded "motorcycle style" rear fender gives it an aerodynamic look and super cool sense of style. The fit-n-finish on the Go-Ped ESR 750EX are impressive! It's superbly engineered down the smallest detail and built using only the finest components. As with all electric scooters, the ESR 750EX is clean, quiet and environmentally friendly. Go-Ped launched the motorized scooter craze nearly 20 years ago and has been designing the most high-end, innovative and refined scooting machines ever since. Go-Ped's are made in the USA and the company is world renown for its dedication to Go-Ped perfection.

Specification :

Motor 24V 1000 watt Brush D/C with Aluminum heat sink
* Maximum Speed 20 mph (turbo mode)
Dual Performance: Turbo and Economy Modes
Batteries (4) 12V SLA (sealed lead acid)
11Ah @ 10hr rate, 6Ah @ 15min rate
Power Controller Advanced Computerized and programmable Variable Speed Controller
Charger On board smart charger 110v-240v capability
* Range Econo Mode: 12+ miles / Turbo Mode: 8 miles (with 160lb rider, flat ground, non-stop)

Unmatched Hill Climbing ability
Transmission Chain Drive
Dimensions Not Folded: L-48" W-18" H-41" / Folded: L-48" W-18" H-17"
Weight 59 lbs
Max Load 400 lbs
Frame Aircraft quality 4130 Chromyl frame


Xtreme X600

The X-600 has it all including front and rear shocks, a hard abs deck with a cool design, 36 volts & 600 watts of power and it comes in 2 striking colors of red or blue. The X-600 also has the widest deck, the largest size wheels and it is chain driven to ensure a quiet pollution free ride

The X-600 is our best electric racing scooter we offer & is the only one that has both front & rear shocks, racing handle bars and a hardened ABS deck. Each X-600 comes standard with front vented disk brakes, rear drum brakes and a frame that is made of high tensile steel and will not break, even during rough riding or jumping.

This features the Lock -N- Carry mechanism that will allow you to fold the scooter by pulling the handle, then lock it into place so you can carry it like a brief case. The scooter easily unlocks and is ready for use in 2 seconds.

Specification :

Power: Electric
Watts: 600 True Wattage
Amps: 36+
Volts: 36
Controller: High output PMW, with Brake interrupt feature.
Batteries: Three 12 volt, 12amp, Heavy Duty, SLA
Tires: 10" Light Electric Vehicle
Charger: Smart Charger Included
Speed: Up to 23 mph*
Distance: Up to 20 miles per charge*
Climbing ability : Climbs a 6% to 10% grade*
Throttle Type: Twist grip, variable speed control
Power Switch: Toggle.
Seat Kit : Included (oversize with springs)
F. Suspension: Twin spring loaded shocks
R. Suspension: Unique offset mono shock
Brakes: Front Disc. Rear band brake.
Drive System: Chain
Foldable: Yes
Max. Frame Load: 330 lbs
Scooter Size : Length 44" Height 42"
In Box Weight: 70 lbs
Scooter Weight: 60 lbs
Indicator: Battery charge level

Related post :

  1. Fastest Boat In The World : Spirit of Australia
  2. Fastest Plane in The World : The Lockheed SR-71 Blackbird
  3. Fastest Solar-Powered Car
  4. Fastest Electric Bicycle : A2B
  5. Fastest Electric Motorcycle : The KillaCycle®
  6. Fastest Electric Cars
  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC

The Mission One , Fastest Electric Motorbike


A Californian company has unveiled the world's fastest production electric motorbike, the Mission One.

Manufactured by San Francisco-based Mission Motors, the bike is capable of 150mph - considerably quicker than the British-designed, pre-production TTX01 bike - and is on sale now to US customers, with deliveries due in 2010.

The bike's history has echoes of Tesla Motors' Roadster, the luxury electric sports car that was conceived, designed and built in California with funding from clean technology investors including Google founders Larry Page and Sergey Brin.

Mission Motors' founder, Forrest North, is a former Tesla employee who, in 2007, began work on converting a petrol-powered Ducati motorbike into an electric model, with the aspiration of combining the performance of petrol with zero exhaust pipe emissions.

"As a motorcycle enthusiast and engineer, I knew I could combine my passion for motorcycles with my passion for innovation and create a motorcycle that truly sets a new standard in the perception of electric vehicles," North said at the bike's launch at the TED conference in Long Beach, California.

North's bike is powered by lithium-ion batteries - the type found in laptops and mobile phones - and will reportedly run for 150 miles between recharging, which takes two hours.

The model demonstrated was a hand-built prototype. It is yet to be tested on the road at 150mph, but a Mission Motors' spokesman said they "have no doubt that this prototype will achieve its target speed".

Tesla and Mission Motors are targeting affluent green motorists, with the Tesla selling for £92,000 in the UK and the first 50 limited-edition Mission Ones likely to sell for $68,995 (£47,100). A cheaper version of the Mission One is due to be announced this summer.

UK bikers and electric vehicle fans will get their first glimpse of the Mission One at this summer's TTXGP, a motorbike race on the Isle of Man that bills itself as the world's first clean emissions grand prix. "Mission are really breaking the barrier on speed, and they also have a team of people that has a lot of experience in electric vehicles," said Azhar Hussain, TTXGP's founder.

Most of today's electric motorbikes in the UK are effectively scooters limited to speeds of 60mph or below, such as the high-end Vectrix VX-1 and budget Ego Street Scoota.

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Fastest Electric Bicycle : A2B


"YOU want to junk the car, but you're just too lazy to cycle"

Then this might just be the answer - the world's fastest electric bike. 

Already hugely popular in China, electric bikes are now available in the UK.
Strict rules governing vehicles in the UK mean they can not go faster than 15 mph on a public road or they will require road tax. 

So although a special 'boost' button is available to rocket you to a top speed of 25 mph on private property, it won't be legal to use it in traffic. 

The battery takes five hours to charge - which the manufacturers boast will cost a grand total of 7p - and let's you cover 20 miles. 

The catch is that the new creation will cost £2,000 - which is not far from the cost of a new scooter. It is not the lightest either - with a lithium ion battery weighing in at 6kg. 

But the creators of the A2B bikes believe they will help encourage consumers to have more thought for the environment. 

There's no doubt that it will turn heads. It's radical design and virtually noiseless motor caused more than one pedestrian to do a double take in our road test. 

Already 21 million bikes have been sold in China in the last year and they are becoming rapidly more popular in Germany. 

Last week Charlie Lloyd, cycling development officer from the London Cycling Campaign, said he was sceptical about its use in London.

He said: 'The disadvantage is that you have to charge it and the battery tends not to last very long if you go fast and push them hard. 

They are also much heavier than a bike and three or four times as expensive.' 

There was confusion over whether the new bicycle would comply with UK legislation because of the 'boost' button - giving it a top speed of 20mph. 

Simon Brimley.the service manager for Ultra Motor UK said yesterday: "This type of transport is still in its infancy and will get more and more powerful as it goes on. In just the same way as electric cars will develop."

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  5. Fastest Electric Motorcycle : The KillaCycle®
  6. Fastest Electric Cars
  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC

Fastest Electric Motorcycle : The KillaCycle®

The KillaCycle®, ridden by Scotty Pollacheck, made drag racing history AGAIN at Bandimere Speedway October 23rd, 2008. 7.89 seconds @ 168 MPH is a new official National Electric Drag Racing Association (NEDRA) record and makes KillaCycle® the world’s quickest electric vehicle of any kind in the quarter mile! This was the very last run down the strip for this season at Bandimere. What a great way to finish the year. 

Lightning struck twice on the mountain as we set the new mark for top speed in an earlier run that afternoon, 7.955 seconds@ 174.05 MPH. The M&H Racemaster tire really gripped the awesome track prep provided by Larry Crispe and the crew at Bandimere Speedway. We turned up the launch current to 1850 amps per motor, well beyond what we ever had before, and still did not slip the tire! (The all new temperature-controlled track surface provided the very best possible traction.) 

Jim Husted at Hi-Torque Electric did his magic to the motors and they were able to withstand more RPM, current, and voltage from the battery pack than we thought was even possible. This is what delivered the “back half” performance that made the new top speed record possible. 

The A123 Systems NanoPosphate batteries are changing the entire landscape for electric vehicles, and battery-powered devices in general. 

The History Channel recorded it all that day. The footage will air early in 2009, perhaps February or March.

Watch this video from YouTube below!



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Fastest Electric Cars

Shelby SuperCars Aero
The Aero EV debuted mid-2008 with some shocking statistics: a twin motor AESP producing 1,000 hp, 60 mph in a mere 2.5 seconds, and a top speed of 208 mph.

Shelby SuperCars already holds the distinction for the world’s fastest production car, the 2009 SSC Ultimate Aero (270 mph). While some of the claims for the new Aero EV seem outlandish, such as a 10 minute charge-time on a standard 110 outlet and a 150-200 mile range on a single charge, this doesn’t stop it from being the king of this list of high-performance machines.


The custom 1972 Electric Datsun

The 1972 Datsun pictured above inspired this list, after we posted about it recently. Ultimately, I wanted to see if this custom-mod was really the world’s fastest car, and it didn’t disapoint at 2nd place. From the outside, you wouldn’t expect a high-performance monster, but this thing rockets from 0 to 60 in 2.95 seconds, taking a quarter-mile in 11.46 seconds with a 114.08 mph trap speed. The top speed of the car is estimated to be 130 mph.

Unlike other cars on this list, the Datsun—even with expensive lithium-ion batteries—costs only $35,000.

Watch the video below!


Wrightspeed X1


The X1 uses a 3-phase AC induction motor and inverter from AC Propulsion, which catapults it from 0-60 in 3.07 seconds. There’s no clutch, no shifting, and first gear will take you all the way to 112 mph. The electrical system is powered by lithium polymer batteries, which is a variation on lithium-based systems we’ve highlighted before. The X1 has a 100 mile range and reaches an overall equivalent of 175 MPG.

You can see the X1 smoke a Ferrari and a Porsche in this video:

L1X-75

The carbon-fiber, 600hp L1X-75 is a confusing case because we’re not sure it really exists. Apparently, Popular Mechanics writers discovered it at the 2007 New York auto show, quoting pickup of 0-60 in 3.1s and a top speed of 175 mph. They even had a video to prove it, which is (sadly) no longer available.

According to Motor Authority, the car was developed as a joint venture between Hybrid Technologies Inc. and Mullen Motor Company, which makes a gasoline version ranked as the 7th fastest American production car.

But if you take a look at the Hybrid Technologies website, all you’ll find is something called the LiV RUSH, which would be knocked off this list for taking 5s to get to 60mph. Mullen Motor’s website shows a GTEV with 0-60mph acceleration time of 4.5s.

AC Propulsion tzero Roadster


The tzero (pronounced tee-zero) only needs 200 horsepower to rocket from 0 to 60 mph in 3.6 seconds, due to a light-weight body. Built by San Dimas, CA-based AC Propulsion, the car has apparently owned both Porsche 911s and Corvettes, and even a Ferrari F355 in 1/8-mile drag race.

AC Propulsion has apparently manufactured the car since 1997, starting with lead-acid batteries and then moving to lithium-ion which extended the range from 100 to about 300 miles per charge.

Don’t expect to see this one on the street: it’s a $220,000 prototype that probably won’t ever be more than a proof-of-concept.

Tesla Roadster

Tesla has been the darling of electric car afficionados for some time, mostly because they’ve produced a great car that is both available and, to some, affordable. Even though the Roadster’s top speed is electronically limited at 125 mph, it’s great to see it make a strong showing on this list with an acceleration of 0 to 60 mph in under 4 seconds.

Besides the roadster, Tesla has a sedan in the works (the Model S), which just debuted last week.

Check out the 248 peak horsepower output in this video (thanks Huddler):



Eliica



While it looks like something out of a bad scifi movie, the Eliica—even with 8 wheels—accelerates faster than a Porsche 911 Turbo. The Eliica (which stands for Electric Lithium-Ion Car) was built by a team at Keio University in Tokyo under the direction of the inventor, Hiroshi Shimizu.
Looks aren’t everything: the 640 hp eight-wheel drive hits 60 mph in 4 seconds and has been clocked at Italy’s Nardò High Speed Track at an impressive 230 mph. Under the right conditions, the Eliica team claims it could clear 250 mph.
Don’t expect to see this one anywhere. Price tag: $255,000 US

Rinspeed iChange



This is another concept car we profiled recently. Debuting at the 2009 Geneva Auto Show, the Rinspeed iChange has the unique distinction of actually being able to change it’s body shape to suit passengers numbers.
More importantly, it looks pretty badass, and can accelerate from 0-62 mph in just over four seconds, with a top speed of 137 mph. For more detail: Rinspeed iChange EV Changes Shape To Suit Passenger Numbers

Tango



Let me cut you off: I don’t believe it either. How can something that looks like this ever be taken seriously? Commuter Cars, the manufacturer of this vehicle, claims in all seriousness that this is the ‘world’s fastest urban car’.
Statistically speaking–if you take their word for it–this is true: 0-60mph in 4s and a top speed of 120mph. I’m not sure how this thing would bank sharp turns, though the company website said the Nascar roll cage is designed for 200mph crashes.
And yes, they do exist. George Clooney has one. Check out some really low-quality video here.
And check out everything you wanted to know in this 24-minute video:



Dodge Circuit EV



This may be one of the more controversial cars on the list: the Dodge Circuit EV has been called little more than a re-badged Lotus toy, since it’s actually a retooled Lotus Europa. It’s also been called by our very own Jo Borras a “marketing exercise (at best) and a con (at worst).”
Whether that’s true or not, the prototype has a 268 hp electric that produces 480 lb-ft of torque and a reported top speed fo 120 mph.
The Circuit appeared at the 2009 Detroit auto show and could portend future electric models in Chrysler’s lineup


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  5. Fastest Electric Bicycle : A2B
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  7. Fastest Wind-Powerd Car
  8. Fastest Car In The World : Thrust SSC
  9. FASTEST SPORT CARS

Fastest Wind-Powerd Car


A British engineer has smashed the world land speed record for wind powered vehicle,becoming the fastest naturally powered human on the planet.Richard Jenkins clocked 126.1 mph in Greenbird,harnessing winds of just 30mph in the futuristic vehicle.


The Greenbird that resembles a stretched missile with a giant fin,set the top speed on the dry bed of lake Ivanpah on the border of California and Nevada in the u.s.The team beat the previous American-held record of 116 mph,which was set by Bob Schumacher in the iron duck almost 10 years ago to the day at the same location.The fifth Generation Greenbird,which Jenkins designed and built on his 10 year quest to beat the record ,uses a combination of technology found in aircraft and Fomula 1 cars.
“ it has been a incredibly difficult challenge” he said.” Half the challenge is technical,having to create a more efficient vehicle than the previous record holder and then the rest is luck,being in the right place ,at the right time,with the right people watching”. I think this was an interesting information and I also think there will be an another one to beat this Beast…

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  5. Fastest Electric Bicycle : A2B
  6. Fastest Electric Motorcycle : The KillaCycle®
  7. Fastest Electric Cars
  8. Fastest Car In The World : Thrust SSC

Thrust SSC - Fastest Car In The World


ThrustSSC is the most powerful, most extraordinary car ever to be designed to attack the Land Speed Record, and as the SSC (SuperSonic Car) in the name indicates, it is also one of the first with genuine potential to breach the Sound Barrier.


Where Thrust2 used a 17,000 pound thrust Rolls-Royce Avon 302 engine from a Lightning fighter, ThrustSSC is the first car to use not one, but two turbojets. These will initially be Rolls-Royce Spey 202s from the Phantom fighter, each producing 20,000 pounds of thrust. Richard Noble has acquired two of them, but also has two even more powerful 205 units (25,000lb of thrust) for use when ThrustSSC has proved itself in transonic testing. ThrustSSC thus has the power of 1000 Ford Escorts, or 145 Formula One cars...

It will weighs 10 tonnes, and initial performance estimates suggest it will accelerate from standstill to 100mph (161kph) in four seconds or 0-600mph (1000kph) in 16 seconds. Within five miles (8 km) it will then reach its maximum speed of 850 mph within half a minute.

watch the video here (from metacafe) or here (from youtube)


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FASTEST SPORT CARS



Shelby Supercar Ultimate Aero - 257 mph (411 km/h)


Twin-Turbo V8 Engine with 1183 hp, base price is $654,400. Tested in March 2007 by Guinness world records

SSC Ultimate Aero Data
Base Price $654,400
Power 1183 hp
Zero to 60 mph in 2.7 s
Zero to 100 mph in 5.8 s
Top speed 257 mph (411 km/h)

HistoryShelby SuperCars (SSC), is an American supercar company founded in 1999 by automotive enthusiast, Jerod Shelby. SSC's headquarters in Tri-Cities, Washington, is also the hometown of Mr. Shelby and home to his dream. Fueled by his passion for racing and automotive culture SSC's success is a true representation of the American Dream.

SSC was created with the company goal of creating a world class automotive manufacturer. Seven years of development culminated in 2007 with the production of the Ultimate Aero. A major step in accomplishing the company goal was made on September 13th 2007 when the Ultimate Aero became the World's Fastest Production Car as verified by Guinness World RecordsTM.

Competing with the likes of Ferrari, Lamborghini, Bugatti, and Koenigsegg (to name a few), SSC has and continues to exponentially accelerate in its development and production of world class supercars. SSC has plans for a 220+ mph 4 door, luxury, sports sedan, which will also be the pinnacle of the class in which it belongs. Behind closed doors SSC is currently pioneering revolutionary Green Technology for implementation into its supercars in the near future.


TechnologyThe engine in the base Aero model is same as the previous year, but the Ultimate Aero has a 6.35-litre (387.2 cu in) engine, rated at 1,183 bhp (882 kW) at 6950 rpm and 1,094 lb·ft (1,483 N·m) torque at 6150 rpm, and the supercharger is replaced by a twin turbocharger with cabin adjustable boost pressure. The car is designed to use 91-octane gasoline. The 6-speed transmission is readjusted to increase the theoretical top speed to 273.75 mph (437 km/h) at 7200 rpm, however whether the vehicle is able to reach this speed is highly questionable and has never been tested.


Wheels on the base model are sized 18-inch at the front and 19-inch at the rear, while the Ultimate Aero TT has wheels an inch larger at each end.

The 2007 models are heavier, with the base model weighing 2,850 lb (1,290 kg), and Ultimate version 2,750 lb (1,250 kg). Unlike the previous year, base models have a navigation system, 10-speaker audio/CD/DVD system, video/DVD screen, back-up camera, air-conditioning, and trunk space as standard equipment. These come optional on the Ultimate.


The first production 2007 Ultimate Aero TT car was sold on eBay for US $431,100. Later cars are expected to cost US $654,000. Only 24 Ultimate Aero TT's are going to be produced from 2006-2007. The Ultimate Aero TT made its international debut on the International Show Circuit in November 2006, culminating with the world record top-speed competition held in Wolfsburg, Germany in May 2007.

SSC Ultimate Aero official site


Porsche 9FF GT9 - 254 mph (408 km/h)



Engineers at 9ff have the Bugatti Veyron clearly in their sights with their new Porsche GT9 set to enter the record books as the world’s fastest production car with a claimed top speed in excess of 408kmh (254mph). As far as production cars go, the GT9 is about as exclusive as it gets, with only 20 examples expected to see the light and each priced at €592,620 ($853,634).




Porsche 9ff GT9 data
Base Price $853,634
Power 987 hp
Zero to 60 mph in 4.2 s
Zero to 100 mph in -----
Top speed 254mph (408 km/h)

History
The car was recently on display at the Essen Motor Show in Germany, where officials revealed some of the final specs.


Technology
The engine features titanium con-rods and forged pistons, which was necessary to handle the 987hp output. Peak torque of 964Nm falls between 5,970 and 7,850rpm.
The 911 GT3 body, on which it’s based, has also been stretched by 300mm and has had the roof lowered by 120mm to maximize downforce at high speeds. Thanks to carbon-fiber and Kevlar construction, the entire vehicle will weigh in at just 1,326kg.
Although the car is loosely based on a Porsche 911, its mechanical package has been totally revised. Ditching the 911’s rear-engine layout, 9ff engineers created a custom mid-mounted engine design utilizing the tuner’s twin-turbo 4.2L flat-six engine.




Stranded somewhere between a racing car and everyday transport, the interior of the GT9 is, it has to be said, eye cancer material. Fatthauer's genial wife decided on the race suit-style dash and door trimmings and it makes you wonder what their house is like. Luckily it's a bespoke car, so the owners will get their choice of interior and it's hard to imagine anyone demanding this one. Still, it comes with a real stereo, passenger airbag and more, transplanted deftly from the interior of a 911, and Porsche owners will recognise most of the components on display - from the ignition slot right through to the handbrake and indicator stalks.



Review Porsche 9ff GT9 at MSN


Bugatti Veyron - 253mph (406 km/h)



1001PS, 16 cylinders, four turbos, 8.0-litres... the Veyron's numbers are staggering. It can hit 60mph in 2.5 seconds thanks to four-wheel-drive traction, shoots to 125mph in 7.3 seconds and reaches 200mph in less than 20. The Veyron 16.4 is the most powerful, most expensive, and fastest street-legal production car in the world , with a proven top speed of over 400 km/h (406 km/h or 253 mph top speed).

The obvious question: Why would anyone build such a car? Surely no one sees doing 250 mph on the highway. There can be no commercial logic behind such a crazy machine, even with the Veyron's price tag of one million euros (at the current exchange rate, that's $1.2 million). Not even as a "halo model" -- a reputation booster -- for the VW group that builds it does the Veyron make sense. No Bugatti owner wants it known he's driving a Volkswagen.

Bugatti Veyron Data
Base Price 1,000,000 euros (1,300,000 USD)
Power 1000 hp
Zero to 60 mph in 2.5 s
Zero to 100 mph in 6 s
Top speed 253 mph (406 km/h)

History
Development of the Veyron began with the 1999 EB 18/4 "Veyron" concept car . Introduced at the Tokyo Motor Show , it was similar in design and appearance to the final Veyron production car. One major difference was the EB 18/4's use of a W18 engine with three banks of six cylinders. The Veyron was designed by Hartmut Warkuss of Volkswagen rather than Giorgetto Giugiaro of ItalDesign who had handled the three prior Bugatti concepts.

Development continued throughout 2001 and the EB 16/4 Veyron was promoted to "advanced concept" status. In late 2001 Bugatti announced that the car, officially called the Bugatti Veyron 16.4 , would go into production in 2003. The car experienced significant problems, however. High-speed stability was difficult, with one prototype destroyed in a crash and another spun out during a press demonstration at the Monterey Historics event in Mazda Raceway at Laguna Seca . Production of the Veyron was delayed indefinitely.


After the release of the car, it has become known that while each Veyron is being sold for £840,000, the production costs of the car are approximately £5 million per vehicle. As Bugatti, and therefore Volkswagen, are making such a huge loss, it has been likened by influential journalist Jeremy Clarkson to Concorde ; both are largely impractical experiments in technology and ground-breaking performance created just to prove that it could be done. A car the like of the Bugatti Veyron may not be seen in production again for some time to come, if at all.

Technology
The Veyron features a W16 engine —16 cylinders in 4 banks of 4 cylinders, or the equivalent of two narrow-angle V8 engines mated in a vee configuration. Each cylinder has 4 valves , for a total of 64, but the narrow V8 configuration allows two camshafts to drive two banks of cylinders so only 4 camshafts are needed. The engine is fed by four turbochargers , and it displaces 8.0 L (7,993 cm³/488 in³) with a square 86 by 86 mm bore and stroke.



The Veyron's 16-cylinder engine is based on the innovative "W" design introduced in the 2003 Volkswagen Passat. The Veyron's version features two 90-degree V8s offset by 15 degrees. The offset allows each cylinder to be placed close to its neighbor, which reduces the total size of the massive 8.0-liter engine. A Formula 1?style dry-sump lubrication system keeps the engine moving smoothly. It's easier to spin many small turbochargers than one or two large ones, so Bugatti employs four turbos to reduce boost lag. The strategy works: The engine creates 922 lb.-ft. of torque at only 2,200 rpm.

Putting this power to the ground is a dual-clutch DSG computer-controlled manual transmission with 7 gear ratios via shifter paddles behind the steering wheel. Or it can be driven by full automatic transmission. The Veyron also features full-time all wheel drive , necessary given the output of the engine. It uses special Michelin PAX System run-flat tires, which had to be designed specifically for the Veyron, and which are capable of running at 402 km/h (253 mph).



The car's wheelbase is 2700 mm (106.3 in). Overall length is 4466 mm (175.8 in). It measures 1998 mm (78.7 in) wide and 1206 mm (47.5 in) tall. Curb weight is expected to reach 4300 lb (1950 kg) with a power to weight ratio of 513.3 hp per ton (metric) or 4.36 lb/hp (SAE).The Bugatti Veyron has a total of 10 radiators .

Bugatti official site


Saleen S7 Twin Turbo - 248 mph (399 km/h)



Saleen knows all about power. As in S281 Mustangs, N2O Focuses and the S7, America’s first (and still the only) mid-engine exotic supercar. When it went on sale in 2002, the S7 was the only street-legal car in the U.S. with more than 500 horsepower and 500 lb-ft of torque. The media and S7 owners have raved about the car since it first smoked the rear tires in anger. And it has been recognized by numerous automotive magazines as the fastest production car in the world. But during the past three years the automobile marketplace has witnessed an explosion of performance with models from manufacturers including Ferrari, Lamborghini, Mercedes-Benz, Porsche and Chevrolet touting power numbers above the once magic 500 level.

Saleen S7 Twin Turbo data
Base Price 585.000 USD
Power 750 hp
Zero to 60 mph in 3.2 s
Zero to 100 mph in ---
Top speed 248 mph (399 km/h)




History
Saleen is not an organization content to rest on yesterday’s 0-60 mph times or quarter-mile speeds. So in 2005, it was “goodbye S7” and “all hail the S7 Twin Turbo!” This is the first major change to the S7 since its introduction, and it is a big change as in 750 horsepower and 700 lb-ft of torque, numbers the competition will be chasing for a long while we predict.

While there are a number of different roads Saleen’s engine designers could have traveled down to achieve those high-altitude horsepower and torque figures, for this second edition of the S7 they decided to think beyond atmospheric. And because this is Saleen, they added a double twist to a tried and true racing technique for boosting power and torque: twin turbos.

Aerodynamics has also come under scrutiny in 2005. Unless you place the new S7 Twin Turbo next to one of the original 2002 models, you probably won’t notice that the 2005 version has a different diffuser/rear spoiler package and reshaped front fenders to enhance the S7s already sleek, swoopy and aerodynamic contours. To complement the Twin Turbo’s enhanced straight-line performance envelope the S7 chassis has also undergone a fair amount of tweaking. Virtually every suspension pickup point has been changed, and the suspension geometry has been modified for less squat and dive during acceleration and braking.

Technology
Designed by Saleen engineers, the S7's engine and drivetrain incorporate the latest in modern racing technology. The new all-aluminum V8 engine casting was engineered and tooled by Saleen to displace seven liters. Redline is 6500 rpm. Space age materials and engineering are used throughout, including stainless steel valves, titanium retainers, beryllium exhaust valve seats, an aluminum throttle body, Saleen designed aluminum CNC-machined cylinder heads and stainless steel exhaust system. An exclusive Saleen-designed Front Engine Accessory Drive (FEAD) system results in an extremely compact engine, allowing for better packaging and overall weight distribution. The V8 incorporates a unique Saleen-designed side-mounted water pump, a belt-driven camshaft drive and a Saleen-engineered dry sump oil delivery system. The engine's mid-chassis placement optimizes weight distribution and center of gravity, making room for an unusually tall engine that allows for a very efficient induction system. Air enters a roof intake, passes through a 90-mm mass air meter and feeds into a carbon fiber plenum. From the plenum the air is routed to the twin ball bearing turbos, is pressurized to 5.5 psi max and then passes through an oval-bore throttle body into an aluminum intake manifold with eight individual runners.



To feed juice to this setup, the injection system includes dual electric fuel pumps and high-capacity, return-less, 52 lb/hr fuel injectors. Neatly engineered and integrated into the S7’s stainless steel, dual, high-flow exhaust system are two, twin-ball-bearing, water-cooled Saleen-Garrett turbos, featuring 44-mm wastegates. The four exhaust pipes from each bank of cylinders merge into a race-car-like high-efficiency collector. In addition, the exhaust incorporates dual catalysts per cylinder bank, EGR and those aforementioned twin wastegates. And because Saleen believes in power and clean air, the emission control system features dual, heated oxygen sensors per cylinder bank and a high-volume evaporative emission system along with those four catalysts. Oh, and for good measure and clean air, the system is OBD-II compliant.

And if you need any more proof of how Saleen engineers sweat the details, the stroke of the already short-stroke shifter has been furthered shortened for improved shifting feel. Say that five times fast, once for each gear change.

The S7 chassis and suspension incorporate decades of Saleen’s experience in racing, racecar construction and high-performance road car manufacturing. The Saleen S7 architecture begins with a space frame chassis to which honeycomb composite reinforcing is grafted. The body is structural, aerospace-quality, autoclave carbon fiber. Suspension is via fully independent unequal-length double wishbones with coilover springs, lightweight aluminum dampers (shock absorbers) and stabilizer (anti-roll) bars front and rear. The uprights at each corner are CNC machined billet aluminum, flow-through designs that use air to help cool the bearings.

Chassis tuning also includes revised shock valving front and rear. Saleen-engineered Brembo-supplied lightweight aluminum six-piston mono-block calipers are fitted front and rear.

Geometry changes, along with new tires, result in about a 30 percent increase in mechanical grip... which is substantial. In a seeming contradiction to current performance tire practice, the 2006 S7 Twin Turbo is fitted with “taller” tires, 275/35 R19s up front and 335/30 R20s at the rear, replacing the 275/30 R19s and 345/25 R20s fitted to the normally aspirated S7. While the Michelin Pilot Sport PS2 tires have higher aspect ratios, they also lay tire patches that are nearly an inch wider up front and almost 1.5 inches wider at the rear.

The S7’s beautiful shape was “designed” by the wind. Optimal aerodynamics and top speed performance objectives were achieved with extensive wind tunnel work. Targets included a low coefficient of drag, optimum drag-to-lift ratio, and extreme down force. The S7 has “full tray” body sculpting underneath.

For the 2006 S7 Twin Turbo, the redesigned front and rear diffusers, along with the new rear spoiler, result in a 40 percent reduction in aero drag and a 60 percent increase in down force. Those of you who know anything about aero forces recognize the significance of that last statement. Typically, you would have to trade down force to reduce aero drag.

The mid-engine Saleen S7 has front and rear trunks and comes with Mulholland Brothers custom-made, 3-piece, fitted luggage. In true supercar style, the doors open up and away from the body.

Seats and other interior surfaces are covered in elegant leather and suede. Air conditioning, power windows, power door locks with remote keyless opening for the doors and both trunks, an electric-headed front windshield, variable intermittent windshield wipers, a leather-wrapped steering wheel and an AM/FM/CD/DVD/TV system are all standard. The Saleen S7 also has one unique interior feature: a video “rearview mirror” — there is a small video camera inconspicuously mounted in the rear of the car.



Saleen S7 Twin Turbo official website


Koenigsegg CCR - 242 mph (395 km/h)



Koenigsegg's design seeks to give an interpretation of strength and flowing motion. The body of a Koenigsegg is formed for one ultimate purpose; speed. Its beauty is the beauty of speed itself. The surfaces are shaped to perfectly aerodynamic, an appearance that does not deceive. All aspects of this machine serve its one fundamental objective. Both the body and chassis of a Koenigsegg are made of extremely lightweight carbon fibre composite, reinforced with Kevlar and aluminium honeycomb. Its race-bred suspension system brings the driver in control of all movement, even under the toughest racing conditions.

The car was styled by Christian von Koenigsegg himself but its shape is largely dictated by aerodynamics. It is not as striking as Pagani or Enzo. At some angles it even looks bulky, like a big whale. But the whale delivers a sense of power that you can't find in its rivals either. Because of the targeted top speed, the body is designed to be so smooth that it has a very low drag coefficient of 0.30. This is much lower than Enzo (0.36), SLR (0.37) and Carrera GT (0.39). Unsurprisingly, the downside is a rather low downforce, just 50kg at the front and 70kg at the back. For comparison, an Enzo generates 775kg while Pagani achieves 500kg.



The chassis is constructed like other supercars. Central to it is a carbon-fiber tub (Koenigsegg called it "semi-monocoque") attached with steel subframe up front and aluminum subframe at the rear for mounting engine, gearbox and suspensions. Chassis rigidity is 28,100Nm per degree despite of the targa roof. The whole bodyshell is also carbon-fiber. Koenigsegg claims a dry weight of 1175kg, which translates to 1275kg when fluid and fuel are loaded, i.e., what we usually refer to "kerb weight". In other words, CC8S is about as light as Pagani and Saleen S7, while being around 100 kilograms lighter than Enzo and Carrera GT.

Koenigsegg CCR Data
Base Price 595000USD
Power 806 hp
Zero to 60 mph in 3.2 s
Zero to 100 mph in N/A
Top speed 395+ km/h (242+ mph)


History
Koenigsegg, a small Swedish supercar maker, was founded by Christian von Koenigsegg in 1994. He was very young, just 22 years old then, but he succeeded to raise the required money to develop and polish the supercar in the following 8 years until the first CC8S delivered to client in March 2002. That's amazing. His biggest success was to get the Swedish public excited (it's the country's first supercar) and many Swedish component suppliers involved the project.



In 2005 was an unbelievable day: Koenigsegg CCR broke the 7-year-old top speed record held by McLaren F1. The swedish supercar lapped Fiat's Nardo test track at 241.0 mph (387.9 kph), edging out the McLaren's 240.1 mph which was set in 1998.


Technology



The Koenigsegg CC interior seems merged with the exterior; the dynamic flow of lines and surfaces continue into the cabin and naturally bind them together. The layout is strictly symmetrical, with its elements mirrored on the centreline. All details are refined and the surfaces are cleaned of unnecessary obstructions. The focal point is the circular main control panel with its zodiac of multicolour lights and stainless steel buttons. In the very midpoint of the car is the turned gear lever; a flagpole topped by a gemstone carved with the Swedish colours. The main instrument cluster is mounted conveniently around the steering rod so that it always faces the driver. It is designed to be fully visible through the upper spokes of the steering wheel, giving the driver a complete overview.

It includes tachometer, indicators and an LCD unit giving full feed-back to the driver. The metal parts are of machined and anodized aluminium, giving them a frostlike sheen that makes them stand out against the leather background. Suede covers the dashboard and the muscle-like lower sections of the doors, serving to reduce sun glare and provide contrast to the composition. Ergonomics-engineers designed the carbon fibre chairs, which are fitted with Tempur for utmost comfort and flexibility. Their compactness leaves space for tall drivers, and they can be adjusted to offer a perfect driving position. This design fulfills the basic objective; to combine wild racing performance and comfortable everyday driving. Designer Joachim Nordwall came up with the original design concept of this interior

Koenigsegg official website


McLaren F1 - 240.14 mph (392 km/h)



The McLaren F1 is one of the fastest, most powerful and most expensive road cars ever. It was developed by McLaren Cars Ltd, a subsidiary of one of the world's leading Formula One Teams. The philosophy behind the F1 road car was simple - to be the finest drivers car ever built, or ever likely to be built.

That is the opening statement McLaren Auto offers on their officle homepage. To make that statement true, McLaren set out to produce the McLaren F1;a car that would be suitable for everyday use plus weekend trips to the racetrack.
The F1 features an all carbon composite monocoque and body structure. McLaren chose this material because it offers lightweight for maximum speed and strength to protect its drivers.

McLaren F1 Data
Base Price $1,050,000
Power 627 hp
Zero to 60 mph in 3.4 s
Zero to 100 mph in 7.7 s
Top speed 240.14 mph

History
Emphasis on the design was to get the highest power to weight ratio possible in a comfortable, road worthy machine. Lightweight F1 composites and metals were used throughout the car. Every detail, such as weight and response of the Kenwood stereo components, were given close attention.

The McLaren F1 was the first production to use a complete carbon fiber chassis and body. Such lightweight construction, combined with the BMW S70/2, 620 horsepower engine, helped the McLaren achieve 240.14mph in its XP5 pre-production trim. The success didn't stop on the road however, with special GTR versions winning Le Mans outright in 1995 and taking two FIA GT World Championships.

After the initial production run 100 cars, McLaren have continued to maintain and add custom appointments to customer cars. Treatments such as new aerodynamic packages and custom interiors have been ordered by customers and McLaren has been happy to comply for right price. One such car is chassis #073 which has recently been sold by Christies Inc.


Technology
To power the car McLaren uses the BMW S70/2 engine, designed and built specifically for the F1. The engine is a 6.1 litre quad-cam, 48-valve V12 which produces no less than 627 bph and a top speed of 231 mph.



Some interesting features included on the McLaren F1 are a central driving position which offers space for two passengers and one driver, of course. Some other features are the intelligent brake cooling and Ground-Plane Shear'suspension geometry'.

McLaren Cars official website


Pagani Zonda R Clubsport - 220 mph (354 km/h)



This is what you get if Italian teams up with German engineering, the "Pagani Zonda".
This car is very unique in its own right but has some tail, tail, signs of other super cars on this page, see if you can spot them. This is a very, very rapidly fast car.

Pagani Zonda Data
Base Price US$1.2 million
Power 750 bhp
Zero to 60 mph in 3.5 s
Zero to 100 mph in 8.0 s
Top speed 220 mph

History
Horacio Pagani, an Argentina-born Italian, who formerly managed Lamborghini's composite department, founded Pagani Composite Research in 1988. This new company worked with Lamborghini on numerous projects, including the restyling of the 25th Anniversary Countach, the P140 design concept, and the Diablo. In the late 1980s, Pagani began designing his own car, then referred to as the "C8 Project". Pagani planned to rename the C8 the "Fangio F1" to honor five-time Formula One champion Juan Manuel Fangio.

In 1991 Pagani established Modena Design to meet the increasing demand for his design, engineering, and prototyping services. In 1992, he began construction of a Fangio F1 prototype, and by 1993, the car was being tested at the Dallara wind tunnel with positive results. In 1994, Mercedes-Benz agreed to supply Pagani with V12 engines.

The final car was named the Zonda C12; the Fangio F1 name was dropped out of respect for Fangio, who died in 1995. It was first presented at the 1999 Geneva Motor Show.

In 2005, Pagani announced that it planned to triple its production output within the next three years, and to enter the US market in 2007.

On the 25th of September 2007 Pagani claimed a new record for production super cars using the Pagani Zonda F Clubsport by completing the Nürburgring in 7:27:82




Technology
The central carbon chassis incorporates a roll cage and a rubber racing fuel cell with 4 fuel pumps and quick refuel filler cap, similar to GT race cars. The wheelbase has been increased by 47 mm (1.9 in) to increase stability. The front and rear subframes are brand-new, built to accommodate new suspension geometry, and produced in Avional. The slick-shod wheels are new forged-magnesium centre-lock models, which in conjunction with on-board pneumatic airjacks (again, like the FXX) allow rapid change of the entire wheel assemblies.

The car senses, displays and logs information about the amount of downforce that is generated at each wheel at all times. It is thought that this system will enable owners to adjust set-up according to track conditions and to improve their cornering technique.

Bodywork In addition to the wheelbase increase (47 mm), overall length has increased by 394 mm (15.5 in) and track by 50 mm (2 in). The bodywork and aerodynamics have been altered to offer maximum downforce, featuring a longer front bonnet with flaps, a closed underbody and a new rear overhang with adjustable rear wing and race-derived diffuser. These are intended to translate into increased aerodynamic efficiency and downforce for maximum cornering speed. It is also noted that the car's new rear bodywork is minimal in the extreme, being composed mostly of vent. This is thought to be symptomatic of the need to keep the engine cool enough, even under hard track use. Again, this is similar to the gutted bodywork of the Ferrari Evoluzione.

Engine Output has increased to 750 bhp (559 kW) at 8000 rpm and 523 lb·ft (709 N·m) of torque. A lightweight carbon fibre high performance intake system, racing multiple disc sintered clutch and Formula 1-style exhaust system, hydroformed in Inconel 625 and ceramic coated for optimal heat dissipation, have been added. The engine is combined with a 6-speed transverse-mounted manual sequential synchronized gearbox.



Interior The car's interior is spartan reflecting the car's racetrack aspirations and intended home, and features bespoke seats, customized to the driver to offer maximum support. As before, the Digitek instrumentation provides essential information and the sophisticated telemetry allows a variety of sensors to monitor numerous aspects of the car.



Pagani Zonda official website
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