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Land Rover LR3 for Sale
2006 land rover lr3 hse 65,500 miles 1 owner.(US $19,900.00)
2007 land rover lr3 hse (silver/black)(US $19,000.00)
2007 land rover lr3, 4d se $wd,55,000 mi,(US $18,700.00)
Land rover lr3 v8 white/tan awd
Premium pkg harmon kardon 7 passenger sunroof climate pkg bluetooth leather 4wd(US $12,995.00)
4wd v8 lr3, nav, lighting pkg, cold climate pkg, premium sound, heat seats
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Auto blog
Is Land Rover developing an all-electric Tesla Model X rival?
Fri, Oct 31 2014Tesla will soon put its all-electric Model X crossover on sale, and if it's anywhere near as successful as the brand's four-door sedan the Model S, then it'll be a hell of an attention getter for mainstream automakers. Land Rover isn't waiting for proof of the Model X's success, though. According to reports, Land Rover could be preparing an all-electric Range Rover. Likely more crossover than full-size SUV, the new vehicle would probably be far more aerodynamic than current models. But the new EV would still take advantage of LR's high-tech aluminum structure, and could potentially be a close relative of the production Jaguar C-X17, according to Autocar. It seems unlikely that this new Land Rover EV will have the off-road chops of the brand's other models, but that doesn't mean that will be useless on the rough stuff. AC, citing Land Rover design boss Gerry McGovern, claims that a height-adjustable air suspension will allow a low, aerodynamic ride height for high-speed travel while it can easily be transitioned to a higher level for off-road duty. As for range, AC believes (and we agree) that a successful effort would need to get as close as possible to the Model S' 265-mile EV range. Autocar is anticipating a price of around 90,000 pounds, equivalent to $144,000, which roughly matches the cost of a UK-market Model S. If the Range Rover EV comes stateside, we'd wager that prices will start under six figures, much like the US-market Tesla.
Jaguar models could rev with inline-six engines again
Tue, Apr 19 2016Rumors are swirling once again that Jaguar might return an inline-six engine to its lineup. Autocar claims Jaguar Land Rover will use the modular Ingenium engine family to create a 3.0-liter straight-six. The new motor will replace the automaker's current V6. As with the Ingenium 2.0-liter four-cylinder, JLR will likely offer the powerplant in gasoline- and diesel-fueled versions. A rumor in May 2015 also suggested JLR would create an Ingenium-based turbocharged 3.0-liter inline-six and a 1.5-liter three-cylinder unit. According to Autocar, the engine bay in the XE, XF, and F-Pace can already fit the longer engine. The automaker isn't talking, though. "We can't comment on future product one way or another," company spokesperson Nathan Hoyt told Autoblog. Jaguar built much of its performance legacy with straight-six-powered vehicles. While the C-Type and D-Type were winning races with the engine layout, practically every Jaguar production model used them as well. Today, straight-sixes are less common. BMW continues to use them, and Mercedes-Benz reportedly also plans to offer one soon. While Autocar's report is still just a rumor, the move to an inline-six could be advantageous for JLR. For example, using an Ingenium-derived design could simplify manufacturing by allowing the company to build the powerplant in one factory alongside the 2.0-liter version. Returning to a design with such an important heritage for Jaguar would also make life easy for the brand's marketing team because it could link the new engine to past racing glory. Related Video:
Jaguar Land Rover reveals EV concepts, details green strategy
Fri, Sep 11 2015While it offers diesel models and even a couple hybrids, Jaguar Land Rover isn't quite as fleshed out on alternative powertrains as its luxurious German rivals. That should change pretty soon. JLR revealed three concepts at the CENEX Low Carbon Vehicle event in Millbrook, England, today. The Concept_e "research demonstrators" all use a new electric drive module, an EV system that the Indian-owned, British-based outfit claims will double the power and torque of today' electric motors. JLR says these modular EDMs can be paired with any of the company's engines or transmissions to create either a mild hybrid, a plug-in hybrid, or a pure EV. So yeah, this is kind of a big deal. Arguably the most exciting offering is a one-of-a-kind research vehicle. Riding on JLR's aluminium aluminum architecture, it ties together two electric motors – an 85-kW unit with a single-speed trans on the front axle and a 145-kW rear motor that's been mated to a two-speed transmission – with a 70-kWh li-ion battery that's mounted in the underbody of the car. There's also the Concept_e MHEV. This is a Range Rover Evoque that's been fitted with a mild hybrid system. Just a refresher, but a mild hybrid is very different than what's found in either a Chevrolet Volt or Toyota Prius, as it uses the electric motor and battery pack to simply assist the internal combustion engine, rather than for an electric driving mode. Reflecting that use, this particular Evoque uses a 15-kilowatt electric motor and a 48-volt, lithium-ion battery pack alongside a 90-metric-horsepower diesel-powered prototype. Finally, we have a Range Rover Sport-based plug-in hybrid. This brute uses a 300-metric-horsepower prototype gas engine and an eight-speed automatic alongside a 150-kilowatt electric motor. Energy is stored in a trunk-mounted, 320-volt, li-ion battery back. Partially funded by the British government, the EDMs are the result of a 16.3-million-pound ($25-million) research-and-development program. They're built in house by JLR, but were developed alongside 12 partners. While these concepts are exciting, don't get your hopes up to see a plug-in Jaguar XF or an all-electric Discovery Sport in your local dealer any time soon. "This is a long-term Jaguar Land Rover research project exploring all aspects of future hybrid and battery electric vehicle technology," JLR research and design boss Dr. Wolfgang Epple said in the attached statement.













































