2006 Jaguar Xj8 Base Sedan 4-door 4.2l - 1 Owner - Loaded - Navi - Nice on 2040-cars
Union Grove, Wisconsin, United States
Body Type:Sedan
Vehicle Title:Clear
Engine:4.2L 4196CC V8 GAS DOHC Naturally Aspirated
Fuel Type:GAS
For Sale By:OWNER
Make: Jaguar
Model: XJ8
Warranty: NONE
Trim: Base Sedan 4-Door
Options: NAVIGATION, SPORT MODE, SIRIUS RECEIVER, VALET MODE, 2 KEYS, ORIGINAL BOOKS, Sunroof, Leather Seats, CD Player
Drive Type: RWD
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag, Side Airbags
Mileage: 127,000
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows, Power Seats
Sub Model: XJ8
Exterior Color: Blue
Disability Equipped: NONE
Interior Color: Tan
Number of Cylinders: 8
Number of Doors: 4
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2016 Jaguar XF to hit 60 mph in 5 seconds, lead with cutting-edge infotainment
Wed, Apr 1 2015Since the second-gen XF's unveiling last week in an epic publicity stunt over London's Canary Wharf, the details on the new four-door have been rather scarce. That changes now, with the Jaguar revealing just about everything we could hope to know... aside from the price and fuel economy. As we covered in our original post, Jaguar has trimmed the weight for both rear- and all-wheel-drive variants by 132 pounds and 265 lbs, respectively. That means that, regardless of engine output, the two-wheel-drive model tips the scales at just 3,770 lbs, while the AWD XF slips in at 3,880. This was mainly done by way of aluminum construction – the 13th element constitutes 75 percent of the XF's structure – although ultra-high-strength steel also plays a role. Jag claims these elements not only reduce weight – which is almost perfectly distributed, with a "near" fifty-fifty ratio – but increases torsional rigidity by 28 percent. The new XF should be just as agile as the brand's namesake, thanks not only to the reduced weight and stiffer structure, but also to a new chain-driven all-wheel-drive system that's both lighter and more efficient than a traditional version. Impressive though that may be, the brand's Intelligent Driveline Dynamics system is the standout here. IDD manages the torque split, diverting power to the rear axle until it predicts, through factors like yaw rate, steering angle and lateral acceleration, when torque should be shifted to the front wheels. Moreover, the AWD system features Adaptive Surface Response, which takes the place of the old XF's winter driving mode. It monitors road conditions, modifying the behavior of the sedan's systems as needed. The second-gen sedan comes to the US in 340-horsepower and 380-hp variants – torque remains fixed at 332 pound-feet – courtesy of Jaguar Land Rover's familiar 3.0-liter, supercharged V6. The new XF's straight-line performance should be just as entertaining as it sounds, too. The rear-drive, 340-hp XF will hit 60 in 5.2 seconds, while the rest of the range can get there in 5.0. That marks a significant reduction compared to the first-gen V6 models, which used their 340 hp to sprint to 60 in a more leisurely 5.7 to 6.1 seconds. Regardless of output, the rear-drive XF will outrun both the BMW 535i and Mercedes-Benz E350 (we're still waiting on performance figures for the 329-hp E400, so Jag's RWD dominance may not last), which take 5.5 seconds and 6.5 seconds, respectively.
Watch a Jaguar F-Type R drag a parachute at 186 mph
Mon, Jun 15 2015With carbon-ceramic brakes on offer, the Jaguar F-Type R Coupe can shed off speed even faster than it can rack it up. Even the standard steel rotors do a pretty good job of it. But what would happen if you deployed a parachute out the back of the Jag at 186 miles per hour, like you might with a drag racer? That's what the British automaker has found out in this latest video. And just why would they do such a thing, you ask? Because Bloodhound, that's why. Jaguar is providing technical support to the Bloodhound SSC land speed record attempt, and one of the roles into which the F-Type has been pressed is to check the parachute that will (along with the air brakes and rotors) form an integral part of the jet- and rocket-powered vehicle's run. To make sure the chute would do its job, the team put Royal Air Force pilot Andy Green behind the wheel of the specially equipped F-Type at the RAF air base in Bentwaters, Suffolk, UK, had him speed down the runway up to the car's top speed and deploy the chute. Fortunately, as you can see from the minute-long clip, everything seemed to have gone according to plan – though we're not sure about the logic behind the assertion that if "it worked at 180, it will definitely work at a thousand miles an hour." Related Video: Jaguar F-TYPE Performs Mission Critical Parachute Deployment Test for British World Land Speed Record Challenger Bloodhound SSC 12 June 2015 - World land speed record holder Andy Green drives an F-TYPE R Coupe at top speed of 186mph to test Bloodhound SSC's parachute deployment system - The test continues Jaguar's technical partnership in the world land speed record attempt, following a high-speed communications test run in South Africa in 2014 - Jaguar will be at the heart of Bloodhound SSC providing its 5.0-litre 550PS supercharged V8 engine to power the rocket's oxidiser pump Today, Jaguar and the world land speed record holder RAF Wing Commander Andy Green performed vital high-speed parachute tests as part of the company's on-going technical support for this unique engineering adventure: creating a car that can cover a mile in just 3.6 seconds. The jet and rocket powered car, which aims to surpass the current record of 763.035mph before targeting 1000mph, has multiple braking systems including air-brakes ('doors' mounted on the side of the car which open to increase aerodynamic drag) and disc brakes (used when slowing down from 200mph).
Bloodhound SSC makes its speed-ready debut in London
Fri, Sep 25 2015Bloodhound SSC, the 1,000-mph land speed record contender, broke cover this week in Canary Wharf, London, in the heart of the Docklands financial district. "This is the best of British engineering meets the best of British banking," quipped Philip Dunne, MP, minister of state for defense procurement, which has provided backing for the team in terms of Army and Royal Air Force personnel and equipment. The team announced that Bloodhound will do its first test runs in Newquay, Cornwall, next spring before traveling to Hakskeen Pan in northwest South Africa in the fall. There, on October 15, 2016, it will make its first attempt on the land speed record, which currently stands at 763.035 miles per hour. That speed was set by Thrust SSC in the Black Rock desert on October 15, 1997 by Bloodhound's driver, Andy Green. Nineteen years later to the day, Green will be shooting for a speed over 800 mph. Over 8,000 people will come to Canary Wharf to see this extraordinary jet- and rocket-powered car over the next couple of days. This is the first-ever viewing of the machine in assembled form. The right-hand side is fully dressed in desert spec, complete with forged aluminum wheels and aerodynamics. The left-hand side is in 'naked' Newquay test spec, with panels removed for easy access and the whole thing riding on rubber tires that can run on tarmac. First impressions are of a big yet muscular car simply crammed with engines, jets, and rockets. The most recognizable thing, apart from the seven fire extinguishers, is the Jaguar AJ133 5.0-liter V8, lifted from an F-Type, which will run the fuel pumps that deliver over 211 gallons of high-test peroxide over the rocket motor's 20-second burn time. The EJ200 Typhoon military jet engine occupies the top floor and provides nine tons of thrust, and underneath is the single Nammo rocket motor providing an additional four tons. "When we go for 1,000 mph, we'll need another two rocket motors," says Mark Chapman, Bloodhound's chief engineer. "That total additional eight tons of thrust is what we'll need to get from 800 to 1,000 mph." He explains that the rear of the car will have to be redesigned to accommodate the two additional rocket motors, and the suspension might have to be adapted with longitudinal rear spring units like the fronts. There are still unknowns in the project, such as the area of vacuum that will follow the car several meters behind.




















