2013 Range Rover Sport Autobiography Ed. W/23k Miles on 2040-cars
Whippany, New Jersey, United States
Engine:8 Cylinder
Fuel Type:Fuel Injected
For Sale By:Dealer
Body Type:SUV 4X4
Used
Year: 2013
Warranty: Vehicle has an existing warranty
Make: Land Rover
Model: Range Rover Sport
Options: CD Player, 4-WheelDrive, Sunroof
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag, Side Airbags
Mileage: 23,155
Power Options: Power Windows, Cruise Control, Air Conditioning, Power Seats
Sub Model: Autobiography w/Nav
Exterior Color: Black
Interior Color: Ivory / Ebony
Transmission Type: Automatic
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Auto blog
Jaguar Land Rover to cut $6.8 billion in costs
Tue, Nov 10 2015Jaguar Land Rover reduce costs by $6.8 billion and will push annual production volume to 1 million vehicles under a secret project called Leap 4.5, according to Reuters. The British automaker wants to achieve these ambitious goals by the end of the decade to compensate for the changing market in China and to counteract the price of meeting stricter emissions standards around the world. Leap 4.5 won't mean firing workers or cutting the automaker's $4.5 billion annual research budget. JLR will instead find savings by underpinning more models with modular platforms and by adjusting its supply chain. Future factories like the one in Brazil and the proposed plant in Slovakia also won't be affected by the new strategy. Globally, JLR continues to grow, and deliveries are up two percent through October 2015 to 390,965 vehicles. Business just last month was up 24 percent year-over-year to 41,553 units. However, the auto market's downturn in China has taken a bite out the automaker's success because volume dropped there 32 percent in the third quarter, Reuters reported. A global volume of 1 million vehicles will mean more than doubling 2014's 462,678 deliveries, but JLR has made significant investments to boost production recently. In addition to the future factories, it opened its first plant in China last year and an engine assembly site in the UK. The company also signed a deal with Magna Steyr in 2015 to build an upcoming model in Austria. Related Video:
Jaguar Land Rover offers (some) detail about new Ingenium engine
Thu, 10 Jul 2014Jaguar Land Rover officially announced its Ingenium family of engines with the unveiling of the 2.0-liter version in the Jaguar XE concept at the 2014 Geneva Motor Show, but it kept details very thin at the time. All we knew was that the new turbocharged mills could be configured to use gasoline or diesel, and be positioned longitudinally or transversely. Months later, JLR is finally letting some more info slip about its new baby, but there are still some big questions to be answered.
For the Ingenium project, Jaguar Land Rover gave its engineers a clean sheet of paper and told them not to worry about using any previous parts or machinery. In the end, the designers came up with a family of turbocharged, aluminum-block engines based around modular, 500cc cylinders to allow it to grow or shrink as the market demanded. The layout was also made adaptable enough to incorporate hybrid drivetrains, if needed. "Being configurable and flexible are the two key strands of Ingenium's DNA because we have future-proofed our new engines from the outset," said said Ron Lee, the company's director of Powertrain Engineering.
To maximize efficiency, Jaguar promises that all versions of the Ingenium engines come with computer-controlled, variable oil pumps and water pumps to use only as much energy as needed. They also get direct injection, roller bearings for the cams and stop/start. The diesel version alone has 17 percent less internal friction than the mill it replaces, the company claims. JLR is also promising class-leading figures for Ingenium's torque and horsepower too, but it's not giving away those specs just yet.
Jaguar Land Rover and Cambridge have developed a touchless touchscreen
Thu, Jul 23 2020Jaguar Land Rover and the University of Cambridge are working on new touchscreen technology that eliminates the need to touch the screen. Counterintuitive, right? It’s called “predictive touch” for now, in part because the system is able to predict what you might be aiming for on the screen. The video at the top of this post is the best way to understand how users will interact with the tech, but weÂ’ll do some more explaining here. You simply reach out with your finger pointing toward the item on screen that you want to select. ItÂ’ll highlight the item and then select it. HereÂ’s how it works, according to the University of Cambridge: “The technology uses machine intelligence to determine the item the user intends to select on the screen early in the pointing task, speeding up the interaction. It uses a gesture tracker, including vision-based or radio frequency-based sensors, which are increasingly common in consumer electronics; contextual information such as user profile, interface design, environmental conditions; and data available from other sensors, such as an eye-gaze tracker, to infer the userÂ’s intent in real time.” Cambridge claims that lab tests showed a 50 percent reduction in both effort and time by the driver in using the screen, which would theoretically translate to more time looking at the road and less time jabbing away at the screen. If the prediction and machine learning tech is good enough, we could see this resulting in a reduced number of accidental inputs. However, on a certain level it almost sounds more difficult to point at a screen while moving than it does to actually touch a section of that screen. Without using the tech and its supposedly great predictive abilities, we canÂ’t come to any grand conclusions. One comparison you may already be thinking of is BMWÂ’s Gesture Controls. ItÂ’s already been addressed with a subtle diss from Cambridge: “Our technology has numerous advantages over more basic mid-air interaction techniques or conventional gesture recognition, because it supports intuitive interactions with legacy interface designs and doesnÂ’t require any learning on the part of the user,” said Dr Bashar Ahmad of the University of Cambridge. Of course, this tech can be used for much more than just vehicle touchscreen control. Cambridge says it could be integrated into ATMs, airport check-in kiosks, grocery store self checkouts and more.
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