Super Sharp (( Moonroof...leather...2.5l V6...loaded )) No Reserve on 2040-cars
Merchantville, New Jersey, United States
Engine:2.5L 152Cu. In. V6 GAS DOHC Naturally Aspirated
For Sale By:Dealer
Body Type:Sedan
Transmission:Automatic
Fuel Type:GAS
Make: Jaguar
Options: Leather, Compact Disc
Model: X-Type
Safety Features: Anti-Lock Brakes, Driver Side Airbag
Trim: Base Sedan 4-Door
Power Options: Air Conditioning, Cruise Control, Power Windows
Drive Type: AWD
Doors: 4
Mileage: 110,606
Engine Description: 2.5L V6 SFI DOHC
Sub Model: 2.5
Number of Doors: 4
Exterior Color: Green
Interior Color: Tan
Number of Cylinders: 6
Warranty: Vehicle does NOT have an existing warranty
Jaguar X-Type for Sale
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Auto blog
2018 Jaguar updates include a new 247-hp four for XE, XF, and F-Pace
Wed, Feb 15 2017Jaguar has announced changes and updates to its 2018 XE, XF, and F-Pace models, and the big one is a brand-new Ingenium four-cylinder engine. It replaces an older four-cylinder that was available on the 2017 XE line, and it will be the first gasoline four available on both the bigger XF sedan and the F-Pace crossover. This latest Ingenium engine is a turbocharged 2.0-liter gasoline four-cylinder like the older Jag engine it replaces; this one has its exhaust manifold integrated into the cylinder head, and it uses a twin-scroll turbocharger. It produces 247 horsepower and 269 pound-feet of torque, which are improvements of 7 hp and 18 lb-ft over the XE's old turbocharged four. Plus, peak torque is also available a bit lower than with the previous engine, at 1,200 rpm versus 1,750. It shares its architecture with the Ingenium diesel four-cylinder. The XE also gets some powertrain love at the top of the range, borrowing an engine from its bigger siblings. Jaguar is introducing a new XE S model with the 380-horsepower supercharged 3.0-liter V6. Previously, the most powerful engine available on the XE was the 340-horsepower version of that V6, which will still be available. The XE gets another upgrade in the form of an available 12.3-inch instrument panel display, when optioned with the Jaguar Touch Pro infotainment system that's also available on the other models. The big news for the XF is that its base price drops ever so slightly now that a four-cylinder model has been added. The rear-drive model with the new Ingenium engine starts at $48,770 as opposed to $49,245 for the cheapest 2017 XF, which had a diesel four-cylinder and rear-wheel drive. The downside is that diesel buyers will be paying $50,270 for the 2018 version of the same car. Some other technology upgrades have permeated the lineup as well. These 2018 Jaguars will be available with a forward cross-traffic alert and a system that will show steering angle and distance to objects on screen during slow forward maneuvering. The latter seems mainly useful for tight parking spaces. These features are available with Jaguar's Surround Camera System. Jaguar also introduced a system that will allow users to pay for gas (or diesel) from the car's touch screen using Apple Pay, Android Pay, or PayPal. The system will be introduced first in the UK and later this year in other markets, and it can only be used at Shell gas stations. Related Video:
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).
Driving Jaguar's Continuation Lightweight E-Type
Thu, Sep 24 2015Something has happened to sports cars over the past 15-20 years. While reaching ever-higher levels of quantitative dominance the driving experience continues to become more sterile. Stability control, torque vectoring, variable electronic steering racks, lightning-quick dual-clutch automatic transmissions – all these make it easier to harness more power and drive faster than ever before. And yet too often it feels like something is missing. There is a growing divide between the capabilities of the modern performance car and the driver's sense of connection to the experience. In an era like the one we're in now, the Jaguar Lightweight E-Type hits you like a slap in the face. The story of the Lightweight E-Type goes back to 1963, when Jaguar set aside eighteen chassis numbers for a run of "Special GT E-Type" cars. These were factory-built racers with aluminum bodies, powered by the aluminum-block, 3.8-liter inline-six found in Jaguar's C- and D-Type LeMans racecars of the 1950s. Of the eighteen cars slated for production, only twelve were built and delivered to customers in 1964. For the next fifty years, those last six chassis numbers lay dormant, until their rediscovery a couple of years ago in a book in Jaguar's archives. In an era like the one we're in now, the Jaguar Lightweight E-Type hits you like a slap in the face. Jaguar Heritage, a section of Jaguar Land Rover's new Special Vehicle Operations (SVO) division, took on the task of researching the original Lightweight E-Types and developing the methods to create new ones. Every aspect of the continuation Lightweight E-Type, from the development of the tools and molds used to build the cars, to the hand-craftsmanship, reflects doing things the hard way. They may not build them like they used to, but with these six special E-Types, Jaguar comes awfuly close, if not better. Working alongside the design team, Jaguar Heritage made a CAD scan of one side of an original Lightweight E-Type body. That scan was flipped to create a full car's worth of measurements. That ensured greater symmetry and better fit than on the original Lightweight E-Types (which could see five to ten millimeter variance, left-to-right). The scan was also used to perfect the frame, while Jaguar looked through notes in its crash repair books to reverse-engineer the Lightweight E-Type's suspension. The team repurposed a lot of existing tooling for the continuation cars, and developed the rest from analysis of the CAD scan.