Showing posts with label Land Rover. Show all posts
Showing posts with label Land Rover. Show all posts

Land Rover Range Rover, 2010

Land Rover Range Rover, 2010





The 2010 Land Rover Range Rover has two brand new 5.0-liter LR-V8 engines - the top of the range 510 bhp supercharged unit, and the 375 bhp naturally aspirated version. Both engines were developed in-house by the Jaguar Land Rover powertrain team, with the requirements of the Land Rover Range Rover in mind from day one.

The LR-V8 engines have been developed to deliver more power and refinement but without a corresponding increase in consumption and emissions. The result is a pair of lightweight direct fuel injection engines with class-leading efficiency, which provide significantly more usable low end torque and superior dynamic responses without compromising power at higher RPM. Both engines are compliant with stringent U.S. ULEV2 emissions regulations.

The performance of the all-new naturally aspirated LR-V8 is now a virtual-match for the outgoing 4.2L supercharged engine. The new naturally aspirated vehicle completes the 0-60 mph sprint in 7.2 seconds (just 0.1 seconds off the pace of the outgoing supercharged unit). For those who want the ultimate performance Land Rover Range Rover, there is now the all-new LR-V8 5.0L Supercharged, which is propelled from rest to 60 mph in an impressive 5.9 seconds.

Direct injection - increased power and torque, lower emissions
One of the key features of the new LR-V8 is an industry first, centrally-mounted, multi-hole, spray-guided fuel injection system, delivering fuel at a pressure of up to 150bar (2,175 psi) directly to the cylinder. The positioning of the injectors ensures fuel is precisely delivered to the center of the combustion chamber, maximizing air-fuel mixing, and improving combustion control.

Fuel is delivered by twin, high pressure fuel pumps driven via an auxiliary shaft in the all new engine block. Delivery of fuel direct to the cylinder has substantially contributed to improved low speed, dynamic response which is particularly useful off-road while adding to driving pleasure on-road. The charge cooling effects of the direct injection fuel system have allowed the compression ratio of the naturally aspirated engine to be raised to 11.5:1, further improving the engine efficiency.

During the engine warm-up phase, the combustion system employs multiple injection mode strategies to deliver 50 percent more heat for fast catalyst warm-up and reduced emissions.

6th generation Eaton™ supercharger - quieter and more efficient.
A sixth generation, Eaton™ twin vortex system (TVS) supercharger is fitted to the 510 bhp engine. A compact Roots-type unit, it feeds air through twin intercoolers which in turn are water-cooled by their own cooling circuit. The high helix rotor design both improves the supercharger thermodynamic efficiency and improves noise quality to the point where the unit is virtually inaudible. The intercoolers reduce the temperature of the pressurized intake-air and so optimize power.

The air intake has been radically redesigned compared to the previous V8. The intake air path is a direct feed to the supercharger inlet from the centrally mounted front throttle body. Air is delivered through twin air boxes which reduce flow loss and further increase efficiency. Mechanically, the new supercharger and its intercoolers are efficiently packaged in the V of the engine to deliver a low overall engine height.

New variable camshaft timing system boosts engine torque, saves energy
A new type of variable camshaft timing system (VCT) on the V8 engine introduces another industry first. The four VCT units are activated by the positive and negative torques generated by opening and closing the intake and exhaust valves, instead of by oil pressure. This has allowed the engine oil pump to be reduced in size, saving energy and reducing fuel consumption.

VCT units work independently on all four camshafts with 62 degrees of authority on the inlet cams and 50 degrees of authority on the exhaust cams. Timing is optimized by the engine control unit for torque, power and efficiency at every point in the engine's speed range.

The response rate of the new VCT units is 25 percent quicker than before with actuation rates in excess of 250 degrees per second. This delivers a more immediate engine response to the driver's demand.

Camshaft profile switching - flexibility with performance
In addition to VCT, the naturally aspirated LR-V8 is also equipped with camshaft profile switching (CPS) on the inlet camshaft. Depending on the engine's running conditions and the requirements of the driver, the CPS will switch between a profile that is ideal for low speed driving, and another which gives increased valve lift for high performance. This feature helps endow the Land Rover Range Rover with ample low end torque in demanding terrain, yet fully exploits the potential of the 5.0-liter V8 when conditions allow.

An hydraulically-actuated two-piece tappet switches between profiles on the tri-lobe camshaft altering both the lift and duration. The cam lobe profile selected for engine speeds below 3000 rpm has a duration of 214 degrees and lifts the valves 5.5mm. This optimizes gas velocity for improved low-speed torque and reduces valve train friction for improved fuel efficiency. For high-speed driving, CPS switches to a cam lobe with a duration of 250 degrees and valve-lift of 10.5mm, allowing greater air flow into the engine for high power.

Warm up quickly with reverse flow cooling
The search for greater efficiency has in some areas led to a complete rethink of fundamental engine design concepts. An example is the innovative reverse flow cooling system which delivers thermodynamic and friction improvements. The new design means coolant is pumped through the cylinder heads before flowing through the block and returning to the radiator. Since the cylinder heads remain cooler, the knock threshold is pushed back allowing greater optimization of ignition timing for improved efficiency.

In addition, the 22 kW oil to water heat exchanger, packaged at the core of the engine, transfers heat from the coolant to the lubricating oil during warm up, bringing the oil up to operating temperature 14 percent faster than the previous cooling system. This 'reverse flow' approach substantially improves fuel consumption in the crucial engine warm-up period and helps warm the cabin more quickly.

Strong and compact
The new LR-V8 engines are built around a stiff, all new, aluminum block with cast-in iron liners and cross-bolted main bearing caps, to reduce noise, vibration and harshness. For the first time at Land Rover, the blocks are high pressure die-cast rather than sand-cast, providing a superior finish and dimensional greater accuracy. The engines also have aluminum heads, with four-valves per cylinder and strong, spheroidal-graphite cast-iron crankshafts and steel connecting rods. The cylinder heads and blocks are manufactured using recycled aluminum alloy for the first time, thus reducing the environmental impact of manufacturing the new engine.

The new direct injection engines are more compact than their predecessors. Overall engine length has been reduced by relocation of the oil pump within the engine architecture. Overall engine weight (fully dressed with all ancillaries) is 210kg for the naturally aspirated unit and 236kg for the supercharged unit.

Reduced internal friction combats CO2
Internal friction, a major contributor to increased fuel consumption and CO2 emissions, has been targeted by careful design of the engines' components. As a result, the Land Rover Range Rover's new LR-V8s achieve another best in class for crank train friction.

All engine bearings were the subject of an extensive optimization, reducing friction without compromising reliability. Diamond-Like Carbon Coating (DLC) has been used to reduce friction on the fuel pump tappets and a solid film lubricant has been used to coat the piston skirts.

Land Rover has developed a unique, intelligent oil-pump pressure relief valve (PRV) which senses oil pressure deep in the engine's oil galleries to more accurately control oil pump delivery. As a result, oil pump frictional losses are reduced during the warm-up period.

The engines have also been designed around a 5W-20 synthetic oil. The new oil has a lower viscosity, primarily at low temperatures, reducing parasitic losses in the engines and contributing to an extension in service intervals from 7,500 miles to 15,000 miles or 12 months. The new LR-V8 engines are also fitted with an electronic dipstick for added peace of mind.

Responsive new transmission
The 2010 Land Rover Range Rover's new engines are mated to the revised and super-smooth ZF HP28 6-speed automatic transmission. Its characteristics have been optimized by Land Rover engineers to provide rapid and refined shifts. The dramatic enhancement of both power and torque low down the rev range on the new engines have made it possible to actuate the transmission's lock-up clutch much earlier in each gear, reducing slip through the hydraulic torque converter, so helping with the improvements in both fuel consumption and CO2 emissions.

The transmission features an intelligent sport mode, which can sense and adapt transmission characteristics to particular driving styles.

Enhanced vehicle dynamics - both on- and off-road
The 2010 Range Rover benefits from a comprehensive program of refinements to its vehicle dynamics. The enhancements include features that will improve ride and handling during on-road driving, plus a series of measures that give greater capabilities when driving off-road or when towing.

Unique adaptive dynamics system improves ride and control

The 2010 Land Rover Range Rover has an advanced new Adaptive Dynamics system which further improves the Range Rover's peerless ride quality with greater refinement and superior body control.
It is the world's first production system to employ model-based predictive technology that continually optimizes damper settings for the widest possible range of conditions. Conventional dampers are replaced by precision DampTronic Valve Technology™ damper units, which incorporate continually adjustable damper valves.

The predictive technology enables damper settings on each wheel to be continuously refined between 'soft', comfort oriented settings and 'hard', firm body control settings; damper pressure on each wheel is monitored 500 times per second. The system optimizes the vehicle's body and ride control, instantly responding to both the demands of the prevailing driving style and of the terrain encountered, in both on- and off-road situations.

Braking system gets more power and feel
The Land Rover Range Rover is equipped with a new braking system which has been comprehensively updated to provide enhanced stopping power and improved driver feel.

The brakes for the naturally aspirated vehicle are based on the four-piston opposed caliper performance system from the outgoing Supercharged model. The updated system employs 14.2-inch (360mm) ventilated front discs with new twin piston cast-iron sliding calipers for enhanced pedal feel.

The rear features 13.8-inch (350mm) ventilated discs with lightweight aluminum single piston sliding calipers.

The braking system for the Supercharged model has been developed with performance brake specialists Brembo™. This system employs 15-inch (380mm) ventilated front discs with unique lightweight aluminum six-piston opposed action monoblock calipers. 14.3-inch (365mm) ventilated discs with single-piston sliding calipers are fitted at the rear.

Greater control and safety around corners
A refinement to the stability control system helps automatically slow the vehicle if taking a corner too fast, thus enhancing driver control.

Enhanced Dynamic Stability Control interfaces with the brake modulator and powertrain control module. If the speed is too great for engine torque reduction to control the vehicle, automatic braking intervenes to reduce the vehicle speed, with braking pressure applied according to the severity of the situation. At decelerations in excess of 0.7g the brake lights are automatically applied to warn following traffic.

This feature is complemented by the new Roll Stability Control system, which is designed to intervene in the unlikely case of an extreme situation in which the possible onset of a rollover is detected. In such situations, the system is designed to take over and perform very rapid, wheel specific braking, to help reduce speed and marginally widen the cornering radius.

Improved performance and stability off-road
The award winning Terrain Response™ system is subject to a whole series of improvements, including enhanced capabilities when tackling challenging terrain like sand or large rocks.

For soft sand - one of the most power-hungry surfaces - 'sand launch control' has now been introduced, which makes for noticeably easier drive-away. New, speed-dependent wheel-slip targets for the traction control system permit only very limited initial wheel-slip, helping to prevent the wheels digging down into the sand.

New for Land Rover Range Rover, revisions to the rock crawl program improve brake and traction control response times, helping to reduce the wheels rolling in an unintended direction when traversing boulders, and giving a more composed drive through rocky terrain.

Land Rover's much-acclaimed Hill Descent Control system is enhanced on the latest Range Rover with the addition of Gradient Release Control. This inhibits the initial rate of acceleration for descending very steep inclines, to increase control when braking is released at extreme angles.

More stable towing
For safer and more stable towing, the 2010 Range Rover incorporates Trailer Stability Assist. This system detects trailer oscillations by monitoring key vehicle behaviors, such as uninvited steering movements and slight vehicle swing in response to trailer behavior. In these circumstances, the system can initiate engine torque reduction and braking interventions to help bring the towing back under control.

Classic Land Rover Range Rover style with contemporary details
The 2010 Land Rover Range Rover features subtle revisions to the exterior design, introducing some attractive new design elements which enhance the classic Land Rover Range Rover style with more contemporary detailing.

New headlights feature the Land Rover Range Rover's trademark inter-locking circle design, but are more clearly visible, day or night, with LED lamp technology. The headlights are marginally shallower, and 'bookend' a deeper, more upright mesh grille.

A new bumper completes the smoother, more sculpted front end, reflecting the clean surface integration which is now characteristic of Land Rover Range Rover design. The fog lamps are relocated from the bumper skin to the lower front air-intake.

The side of the vehicle features new 'three-stripe' LED indicators and redesigned three-section fender vents. The same design theme is adopted by the rear LED light clusters, which incorporate 'three-stripe' directional indicators.

Interior showcases luxurious materials and revolutionary technologies
Superbly crafted new materials and some revolutionary display technologies help to improve a cabin that is already widely regarded as one of the automotive world's finest.
'Virtual' dials and graphic displays replace traditional instruments
One of the major innovations in the 2010 Land Rover Range Rover is found in the instrument cluster. Here, traditional physical instruments are replaced by a 12" Thin Film Transistor screen which presents all essential driver information via cleverly designed 'virtual' dials and graphical displays.

The system's message center (the area between rev counter and speedometer) can be customized by the driver to display personal prioritized information, from system warnings, outside temperature and vehicle information to less critical data such as audio and telephone displays.

Update Touch-screen Technology
The touch-screen retains all the functionality of the previous display, but the graphics and menus have been redesigned for easier and more intuitive operation, allowing the number of 'hard' buttons around the screen to be reduced by a third. As before, functions such as satellite navigation, DVD video, and audio systems can be controlled via the display.

An updated voice control system with enhanced voice recognition software complements the touch screen, and can be used to control a range of entertainment and comfort features such as the audio system and climate control.

Advanced vehicle technologies enhance convenience and safety
"The technologies built into the 2010 Land Rover Range Rover are designed to improve convenience and safety, reducing the stress of driving in modern motoring conditions, on all terrains. With technology sharing the workload, the result is a more relaxed, alert driver." Paul Walker, Chief Program Engineer

The 2010 Land Rover Range Rover incorporates a comprehensive selection of advanced vehicle technologies which enhance convenience and improve active safety for the driver.

Adaptive Cruise Control
The 2010 Range Rover features Land Rover's Adaptive Cruise Control system (ACC) for the first time. The system employs a 76GHz scanning radar to locate vehicles moving in the same direction, and is designed to maintain optimal vehicle speed by using acceleration, deceleration and braking to keep a specified distance from the traffic ahead.

ACC comes with four driver-selectable settings, designed to suit individual driving style and traffic / road conditions. The driver can select a 'headway' of between 1 to 2.2 seconds, with a default setting of 1.8 seconds; this equates to a 50 meter distance from the vehicle ahead when travelling at 62 mph (100km/h). The system is designed to operate at speeds of up to 112 mph (180km/h).

Enhanced safety and visibility
The 2010 Land Rover Range Rover has a blind spot monitoring system available which uses side-mounted radar sensors to detect vehicles and other solid objects in the vehicle's blind spot area. If an object is detected, a bright amber warning icon is illuminated in the driver's door mirror.

The patented 'reverse tow assist' function (selected from the touch-screen menu) helps perform accurate towing maneuvers. The wide fields of view on the side cameras give a clear view of the reversing trailer and the images are electronically manipulated to provide an undistorted view. Guide lines overlaid on the rear camera image illustrate both the vehicle and trailer's trajectory and these move in line with steering inputs, making it easier for the driver to predict where the trailer will move to, before performing the reversing maneuver.

The Land Rover Range Rover's front headlights incorporate optional high beam assist technology. This can automatically switch on high beam headlights where external light levels are below the system's threshold. Importantly, the system is also designed to detect preceding and approaching traffic, and in a split second will automatically switch back to low beam to avoid dazzling others.

All-new electrical architecture
The performance of many of the 2010 Range Rover's advanced technologies is enhanced by a completely new electrical architecture which supports more efficient integration between the various systems. Information is shared between electronic components via a high speed Controller Area Network (CAN), with a fiber optic Media Orientated System Transport (MOS

Land Rover Freelander 2 Sport, 2010

Land Rover Freelander 2 Sport, 2010




A unique two-tone interior is introduced on both derivatives, in contrasting Ebony and Storm. The derivative featuring the sports styling pack will offer a leather interior and the standard version with a cloth/leather interior.
The Sport emblem is embossed on the front and outer rear seat head restraints, with Storm coloured stitching on all seats and unique Ebony interior carpet mats with contrast piping feature throughout.

The Land Rover Freelander 2 Sport is available with the powerful and economical 2.2-litre TD4 diesel power unit. The manual diesel comes with Stop/Start technology delivering an 8% improvement on CO2 emissions compared to the previous manual diesel Land Rover Freelander 2 (from 194g/km to 179g/km) and fuel consumption is reduced (from 37.7 to 42.2mpg - an improvement of 4.5mpg).

Land Rover Discovery 4, 2010

Land Rover Discovery 4, 2010




The new, fourth generation of Land Rover's supremely versatile seven-seat vehicle gains a new name - Land Rover Discovery 4 - to go with its powerful and highly efficient new TDV6 diesel engine, fresh exterior identity and more premium cabin. The class-leading breadth of capability is extended even further with dynamic improvements for both road and off-road driving, and Land Rover has added a battery of user-friendly new technologies and features.

Star billing on the Land Rover Discovery 4 goes to the highly efficient and refined new LR-TDV6 3.0 twin turbo diesel engine. This delivers a 9 percent fuel economy improvement (EU combined cycle) and ten percent less CO2 emissions, at the same time as increasing power by 29%, all compared with the existing 2.7-litre engine. Torque increases even more, up 36% to 600Nm - believed to be the highest torque output of any 6-cylinder, production diesel, passenger vehicle engine in the world.

The power and torque are both accessible across the entire rev range, to deliver immediate throttle response and effortless cruising ability. The results include a 0-60mph time of 9.0 seconds, (0-100 km/h in 9.6 seconds), a 24 percent improvement over the 2.7-litre.

The iconic exterior design has been updated, most obviously with smoother and simpler surfaces at the front, including a new, more aerodynamic bumper. The sportier new lights help give the vehicle new character, and include LED technology front and rear. The sophisticated new front headlights include High Beam Assist, switching on or off, as conditions require.

The interior is completely redesigned, with a transformed dash and centre console, new seats and an array of new, user friendly features.

e-Terrain technologies boost economy and lower CO2 emissions
The new Discovery is packed with features aimed at reducing fuel consumption and reducing CO2 emissions. The new LR-TDV6 3.0 Sequential Turbo Diesel engine was designed from the outset to deliver class-leading fuel economy and improved low-end torque.

The parallel sequential turbocharging system of the 3.0-litre diesel makes use of its larger, primary turbo most of the time. The smaller secondary turbo remains dormant when higher power is not required, reducing pumping losses and consequently, fuel consumption. A highly efficient, third generation common rail injection system with piezo injectors and fuel metering, also makes a substantial contribution to fuel economy.

The new engine has been also been optimised for low-end torque as well as economy, making it possible to activate the lock-up clutch of the ZF HP-28 automatic transmission at lower speed. This reduces 'slip' in the hydraulic torque converter improving both fuel consumption and CO2 emissions. The higher torque at lower rpm also enables longer gearing for more economical cruising.

The Discovery incorporates several other energy saving features too. At standstill, the idle speed of the V6 has been reduced from 750rpm to 710rpm, giving a fuel saving without compromising refinement. An Intelligent Power Management System includes Smart Regenerative Charging, so whenever possible the alternator charges the battery when it is most economical to do so, such as when the car is coasting rather than accelerating.

Aerodynamic changes to the front end, with the revised front lower chin spoiler and new front wheel deflectors, help to reduce drag by increasing underfloor airflow.

The new air conditioning pump is driven through a clutch which disengages when the air conditioning is not in use reducing parasitic losses and delivering improvements in fuel consumption and CO2 emissions.

At the heart of the improvements introduced with Land Rover Discovery 4 is an exceptional and highly efficient new diesel engine. The LR-TDV6 3.0 sequential turbodiesel is based on the existing LR-TDV6 2.7-litre engine, but radically redesigned to deliver substantially higher performance, lower emissions and better fuel economy.

The 2.7-litre has won many admirers as one of the most refined diesels ever made. The new, twin turbocharger LR-TDV6 3.0 boasts substantial increases in both power - up 29 percent to 245PS - and torque, up 36 percent to 600Nm. The ability to deliver maximum torque at just 2,000rpm, combined with unparalleled throttle response, substantially enhances the Discovery's already acclaimed ability both on and off-road.

The new 3.0-litre diesel can significantly out perform its rivals by delivering 500Nm in only 500 milliseconds from idle. From the driver's perspective this means instantaneous access to 83 percent of maximum torque.

But despite this extra performance, engine emissions are dramatically reduced. When fitted with DPF, the new LR-TDV6 3.0 meets EU5 emissions requirements (not due to come into force until 2011) and with a CO2 figure of 244g/km, it undercuts the existing 2.7-litre automatic by ten percent. Fuel economy is also improved by 9 percent, delivering 30.4mpg (9.3 l/100km) on the EU Combined cycle.

The new 3.0-litre engine has been developed by a joint Jaguar Land Rover team, with base characteristics designed from the outset with the requirements of both brands in mind. High levels of torque and fast response from low revs perfectly suits both Jaguar and Land Rover DNA. The Jaguar version, the AJ-V6D Gen III S, was recently launched in the new Jaguar XF.

The LR-TDV6 engine has a deeper sump than its Jaguar sibling, to ensure the efficiency of the lubrication system is not compromised when venturing off-road. The oil scavenge system of the turbochargers has been enhanced for a similar reason, ensuring no oil collects in the turbochargers at extreme angles in off-road conditions.

For the Land Rover version, belt drives are waterproofed, as are the alternator, air conditioning compressor, power steering pump and starter motor. The engine is also tuned specifically to allow for the greater demands made on the Land Rover Discovery 4, particularly for towing and all-terrain driving.

Twin-turbos - immensely efficient, highly responsive
A key feature of the new LR-TDV6 3.0 is the unique, parallel sequential turbocharger system, the first of its type to be fitted to a V-engine anywhere in the world. Delivering high torque throughout the entire engine-rev range, improved throttle response and low CO2 emissions, the twin-turbochargers work sequentially to provide unrivalled response and best-in-class torque at low engine speeds, while also packing a huge punch at higher speeds.

Driving a turbocharger requires pressure from the exhaust, creating pumping losses in the engine and increasing fuel consumption. Under the control of the engine management system, valves isolate the secondary turbocharger both from the exhaust stream and the engine inlet tract when it is not required. A balance pipe connecting the two manifolds allows the gas from both manifolds to feed through the primary turbocharger.

The new 3.0-litre diesel can significantly out perform its rivals by delivering 500Nm in only 500 milliseconds from idle, unlike many diesels which can suffer turbo-lag at very low revs. From the driver's perspective this means instantaneous access to 84 percent of maximum torque.

Third generation common rail
A new common rail fuel-injection system delivers up to five injections on each cycle at a pressure of 2000bar. Each injector tip is perforated by seven holes through which finely atomised fuel is sprayed into the cylinders. The high-pressure injection increases power, improves economy and reduces both CO2 and particulate emissions. New, high-speed piezo injectors are designed to keep injection noise to a minimum.

Piezo crystal 'packs' operate each injector by expanding when an electric current is passed through them. They react virtually instantaneously but make a distinctive click when fired, which can add to diesel engine noise at idle. The crystals in Land Rover's new injectors are fitted nearer the tip meaning they are mounted deeper inside the engine providing better sound insulation and quieter operation.

Rugged yet lightweight
The two cylinder heads, with four valves per cylinder, are made from aluminium and the cylinder block is made from compact graphite iron (CGI) as before. The higher tensile strength of CGI makes it possible to cast a smaller block some 80mm shorter than a conventional 'grey' cast iron equivalent.

The new, water-cooled, exhaust gas recirculation system (EGR), important for reducing pumping losses and emissions of NOX in a diesel engine, is more efficient and consumes less power than its predecessor, with the valves allowing exhaust gas into the system being located on the 'hot side' of the engine nearest the exhaust manifolds. These valves never cool while the engine is running, so there is no condensation of combustion deposits which occurs on engines fitted with 'cold side' valves, hence the EGR system always works at maximum efficiency. Since the EGR cooling is so effective, exhaust gasses can bypass the system and return to the exhaust pipes, allowing faster engine warm-up from start-up and reducing emissions still further.

EU 5 emissions regulations have been achieved using conventional diesel oxidation catalysts and diesel particulate filters (DPFs). NOX levels are reduced sufficiently at source through the combustion system design, the addition of the new common rail injection system and the new EGR system with by-pass. As a result, specialised NOX exhaust after-treatment is unnecessary, avoiding a potential cost and the need to use additional precious metals in the exhaust system.

Increased refinement
The CGI cylinder block and new piezo injector design reduce combustion noise in the new engine. Multiple, precise injections of fuel on the combustion stroke also reduce combustion noise and all engine covers including camshaft covers, front covers and the sump have been optimised to subdue radiated noise.

The new diesel underwent analysis using the latest computer aided engineering techniques, followed by exhaustive rig testing. All the engine enclosures have been ribbed to minimise radiated noise.

Internal friction, a major contributor to unnecessary fuel consumption, has been addressed by careful optimisation of the crankshaft, valves and pistons. All these features combine to make the new LR-TDV6 3.0 Sequential Turbo Diesel one of the quietest premium diesels on the market today with increased service intervals of 16,000 miles.
Levels of refinement on the new LR-TDV6 engine are such that Land Rover's patented device for the diesel fuel filler neck, to reduce the risk of inadvertent fuelling with petrol, is fitted to the new Land Rover Discovery 4.

Responsive new transmission
The LR-TDV6 3.0 is mated to the revised and super-smooth ZF HP28 6-speed automatic transmission. Its characteristics have been optimised by Land Rover engineers to provide class-leading response, with rapid and refined shifts. The dramatic enhancement of both power and torque low down the rev range on the new engine have made it possible to actuate the transmission's lock-up clutches much earlier in each gear, reducing slip through the hydraulic torque converter, so helping with the improvements in both fuel consumption and CO2 emissions.

Dynamics transformed
Major dynamic advances introduced for the Land Rover Discovery 4 include revised suspension architecture, improved steering, larger brakes and enhanced versions of Land Rover's award-winning Terrain ResponseTM and Hill Descent Control systems.
The list of changes starts with new suspension knuckles, designed to reduce the separation between the suspension roll centre and the vehicle's centre of gravity (reduction of 42mm at the front and 62mm at the rear). This dramatically reduces the vehicle's natural body movements when cornering. These roll rates are further controlled by a stiffer and larger anti-roll bar.

In addition, new bushes and new front and rear dampers enhance ride quality.
The variable ratio steering rack is revised, complementing the improved ride quality by reducing 'twitchiness' around the centre line at high speed cruising and slightly increasing sensitivity at higher lock angles. This enhances the sense of driver involvement in high-speed manoeuvres, and also increases precision for low speed control and off-roading.

The redesigned front bumper also helps improve steering feel, as its new anti-drag lips help reduce aerodynamic lift at the front of the vehicle by up to 50% at higher speeds.

Increased stopping power
A new, larger brake system has been introduced along with the new engines, to cater for the Land Rover Discovery 4's enhanced performance and to improve braking feel.

This new system is derived from the four-piston, opposed-calliper performance system used on the Land Rover Range Rover Sport. It employs a 360mm ventilated front disc with a new, cast iron twin-piston sliding calliper - which serves to reduce the size of the front brake package while preserving its stiffness, which in turn helps achieve excellent pedal feel.

At the rear, a single piston sliding calliper operates on a 350mm ventilated disc, now manufactured in aluminium to help reduce vehicle weight. An additional advance to the braking system is the new emergency brake light function. When the vehicle undertakes severe or emergency braking, the brake lights flash, to reduce the risk of rear end collisions.

More control in the bends
A refinement to the understeer control system helps automatically slow the vehicle if taking a bend too fast, enhancing driver control.

The system operates according to steering inputs from the driver. In extreme cases, automatic braking intervenes to reduce the vehicle speed, with the braking pressure level applied according to the steering inputs. Automatic braking up to 'emergency stop' may be applied, if the inputs demand.

When picking a drive route through boulders, severe articulations can lead to the vehicle leaning in an undesirable direction, calling for simultaneous brake and accelerator engagement. New for Land Rover Discovery 4, revisions to the rock crawl program improve brake and traction control response times, helping to reduce the vehicle's tendency to roll when traversing boulders and giving a more composed drive through rocky terrain.

Land Rover's much-acclaimed Hill Descent Control system is enhanced on Land Rover Discovery 4 with the addition of Gradient Release Control. This inhibits the initial rate of acceleration when descending very steep inclines, to increase control and eliminate the potentially alarming lurch which can occur when braking is released at extreme angles.

The system operates automatically whenever Hill Descent Control is engaged, temporarily maintaining brake pressure after the driver releases the brake pedal. It then progressively eases braking pressure to control vehicle momentum and acceleration. Once the vehicle's target off-road speed is achieved, Hill Descent Control operates to take vehicle to the bottom of the slope in its customary composed manner.

A new face on a distinctive design
The Land Rover Discovery has evolved a distinct design heritage over 20 years and four generations of iconic, instantly recognisable vehicles. Land Rover Discovery 4 inherits the clean lines of the previous generation, but now subtly updated and given a more premium, more contemporary look.

Smoother, simpler surfaces are employed at the front, giving the vehicle its new character, emphasised by sportier looking front lights, with new LED position lamps configured in a unique, signature stepped profile around the main light units. New lights are also introduced at the rear of the vehicle, incorporating LED stop, tail and indicator technology.

All-new interior
The new interior for Land Rover Discovery 4 combines smooth, flowing surfaces with significant reduction in the complexity and number of controls. It provides a much softer, more premium all-round interior ambience, but still in keeping with the signature Discovery architectural theme.

New seating is introduced for rows one and two, with a new, extended front seat cushion profile to improve support and seating comfort and, for the first time, the front seats feature height-adjustable head restraints in place of the traditional seat mounted grab handles. HSE vehicles specified with the Premium Leather pack also feature electrically adjustable side seat bolsters, allowing front occupants to tailor their seating's support.

For convenience, the electric seat memory controls are relocated to the door casing.
New Interior Mood Lighting adds the finishing touch to the interior, with the introduction of white LED's to cast subtle halos around the metal-plated interior door handles and pockets. The fascia and centre console area, complete with soft-stitching, and switchgear highlighted in "Noble" finishers, also benefit from the interior mood lighting when vehicle lights are on.

Land Rover Freelander 2 TD4 e, 2009

Land Rover Freelander 2 TD4 e, 2009









The new Land Rover Freelander 2 TD4_e is Land Rover's most fuel-efficient vehicle to date. Featuring a new intelligent Stop/Start system, it is the first production vehicle to incorporate technologies from the company's programme of sustainable engineering initiatives, collectively named 'e_TERRAIN TECHNOLOGIES'.

On the standard EU4 cycle, the CO2 emissions of the Land Rover Freelander 2 TD4_e are reduced by 8 per cent, compared with the outgoing manual diesel Land Rover Freelander 2. Moreover, in additional tests, Land Rover engineers have measured fuel savings approaching 20 per cent in heavy urban traffic.

The 8 per cent improvement equates to a CO2 emissions reduction of 15 g/km compared with the standard Freelander 2 TD4 manual (from 194 g/km to 179 g/km). In terms of fuel efficiency, consumption is reduced from 7.5 l/100 km to 6.8 l/100 km, a saving of 0.7 litres of fuel every 100 km (62 miles).

These gains, coupled with the added benefits of the gearshift indicator light, software developments and efficiencies from low-rolling-resistance tyres, make the Land Rover Freelander 2 TD4_e the most fuel-efficient production Land Rover ever built.

Phil Popham, Land Rover's managing director, said: "The Stop/Start Freelander 2 is the first production vehicle to benefit from the massive £700 million investment in sustainable technologies by Jaguar and Land Rover. From mid-2009, the Stop/Start feature will be included as standard on all Land Rover Freelander 2 TD4 manual models, with no associated increase in list prices."

Land Rover's new Stop/Start system improves fuel efficiency in urban and stop-start driving. The vehicle automatically shuts down the engine in appropriate conditions, resulting in zero tailpipe emissions and saving fuel that would otherwise be used idling the engine when stationary. When the driver is ready to move off, the engine instantly re-starts.

Sophisticated controls ensure that the Stop/Start system does not compromise the needs of either the driver or the vehicle. For the engine to shut down, the vehicle must be stationary, the gearbox in neutral and the clutch pedal raised. To re-start, the driver simply depresses the clutch and the enhanced starter motor engages the engine, ready for when first gear is selected.

The Stop-Start system is automatically activated each time the ignition is turned on, although there is a switch on the fascia to disable the system, if the driver so desires.

Added fuel economy benefits
Along with the intelligent Stop/Start system, the Land Rover Freelander 2 TD4_e includes a series of additional enhancements that help to deliver fuel economy and CO2 benefits.

A new gearshift indicator light in the instrument pack advises the driver when to change gear if a higher gear will allow the vehicle to operate more fuel-efficiently. This is calculated by the Land Rover Freelander 2 TD4_e's fully mapped engine.
Software developments to the driveline systems on the Land Rover Freelander 2 TD4_e generate CO2 benefits without reducing Land Rover's renowned capability.

Land Rover engineers are also collaborating with tyre suppliers to drive improvements to fuel economy through reduced rolling losses. Tyre characteristics including rolling resistance are optimised for the entire range of available tyre sizes on Freelander 2 models.

Refined Stop/Start operation
Land Rover engineers have invested considerable effort in safeguarding levels of engine refinement. To reduce the engine shake associated with some diesel engines when stopping, the Land Rover Freelander 2 TD4_e features controlled throttle closing and ramps down fuel in a smooth fashion, while the alternator is also turned off during the shut-down procedure, reducing load on the engine. A software feature change and revised engine calibration further aid smooth shut-off, while engine shake on start-up is reduced by the Freelander 2's optimised engine-mounting strategy and inherent tuning.

Uncompromised durability
The increased frequency of stop-start cycles over the lifetime of the Land Rover Freelander 2 TD4_e will lead to increased use of the vehicle's affected components, so enhanced durability of these components was a priority for the Freelander 2's engineering team. They developed a new heavy-duty starter motor, a new ring gear, a new dual mass flywheel friction control plate and an absorption glass mat battery. These new features ensure that the Land Rover Freelander 2 TD4_e delivers characteristic Land Rover all-terrain performance and that the system's operation is always rapid and reliable.

Enhanced starter motor
The more frequent stop and start activity means that demands on the starter motor are forecast to increase up to threefold during the lifetime of the Land Rover Freelander 2 TD4_e. To accommodate the durability demands on the vehicle's 2 kW starter motor, a number of changes have been made.

The grease seals have been enhanced significantly and new hard-wearing copper contact material has been sourced and specified across the TD4_e range to enhance wear resistance within the starter solenoid.

New ring gear
An all-new ring gear is specified for all TD4_e models to cope with the increased frequency of starts. The ring gear is attached to the engine flywheel and comes into contact with the starter motor each time the engine is started. The new ring gear is manufactured from a harder grade of steel and contains over 25 per cent more carbon to improve durability.

Dual mass flywheel friction plate
Diesel-powered Freelanders with manual gearboxes have always featured a dual mass flywheel to ensure engine refinement at start, stop and low speeds. A new Polyetheretherketone friction control plate has been developed for the Land Rover Freelander TD4_e. This is able to withstand seven times the pressure of the outgoing plate, to ensure greater levels of refinement under even greater start and stop demands.

Absorption glass mat battery
New absorption glass mat technology has been developed, which offers deeper discharge and recharge characteristics and reduces battery deterioration under much heavier usage. Fine glassfibre matting has been introduced to sit pressurised between the new absorption glass mat battery plates. This aids the battery's longevity in two ways: by allowing the electrolyte to function normally under greater pressure and by providing mechanical support for the plates, reducing battery degradation.

Intelligent technologies
Land Rover engineers focus on the introduction of intelligent, appropriate technologies, and the Land Rover Freelander 2 TD4_e is no exception. In congested traffic, when the Stop/Start technology will shut down the engine frequently, other features and technologies will not be compromised, so in-car entertainment, climate control, Bluetooth, driver information and other electronic systems will continue to function.

Technologies such as the new voltage quality module, the battery monitoring system, the brake vacuum sensor and the enhanced climate control system have been developed to ensure that such services continue uninterrupted in a stop situation.

Voltage quality module
The voltage quality module maintains critical vehicle systems, safety and occupant comfort. It supplies a constant voltage around the vehicle's electronic components during a stop-start, ensuring that key services continue uninterrupted by the sudden outrush of amps from the battery.

This technology is effectively a direct current converter, which can convert low voltages, such as that experienced during a stop, to a stable higher level for short but crucial boosts, ranging from one to five seconds in duration.

Battery monitoring system
This system monitors the battery's 'state of health' to ensure that the Stop/Start feature functions reliably. The technology is constantly at work, measuring factors such as natural battery degradation, ambient temperature, charge and discharge activity and voltage, to make sure there is enough power available for an effective stop-start.

If any of these factors show a low measurement, the Stop/Start feature is overridden and the engine will continue running until more battery power is available.

Brake vacuum sensor
The Freelander 2's brake system is specified with significant vacuum reserves, but these reserves can become depleted for a number of reasons, such as use of the brake pedal when the engine is switched off. Ultimately this would lead to vacuum reserves becoming exhausted, which would affect the brake servo's operation and pedal loads, in some cases causing them to rise substantially.

To mitigate this, the brake vacuum sensor is specified on all Land Rover Freelander 2 TD4_e models, and if vacuum reserves fall to a level that will affect brake pedal loads, the system overrides the Stop/Start function until the brake vacuum is replenished - ensuring brake pedal loads are maintained.

Enhanced climate control system
A number of changes have been made to the Land Rover Freelander 2 TD4_e's climate control system to help ensure occupant comfort and reduce misting during stop-start situations.

One significant change is the introduction of an auxiliary water pump. On conventional vehicles, the water pump shuts down with the engine, but on TD4_e models, the introduction of the auxiliary water pump maintains the flow of coolant during engine shutdown, keeping a steady cabin temperature.

The climate control system monitors cabin temperature and maintains fan speed at a level that will protect the battery's state of charge when the engine is shut down. In extreme hot or cold conditions, extended stops, or if an occupant selects a higher fan speed during a stop, the engine will re-start if necessary to preserve occupant comfort.

Evaporator temperature, the factor that gives rise to screen misting, is also monitored and the enhanced climate control system will periodically cool the evaporator as necessary to mitigate misting during a stop-start. The system operates the windscreen defrost shutter and, if the evaporator is wet, the shutter will remain closed for a few seconds after an engine restart until the vapour is dissipated, again mitigating windscreen misting.

LAND ROVER e_TERRAIN TECHNOLOGIES
The Freelander 2 TD4_e is just one element of Land Rover's comprehensive green technology roadmap, which will drive the company to increasingly lower emissions and more sustainable technologies in the coming years. This is a key part of the £700 million investment in sustainable technologies being made by Jaguar and Land Rover.

Land Rover engineers are working on a series of advanced propulsion technologies and lightweight structures aimed at bringing CO2 emissions down to class-leading levels. This doesn't mean sacrificing core Land Rover values: the renowned all-terrain capabilities of its future vehicles could actually be improved by some of the exciting new powertrain technologies, such as the Electric Rear Axle Drive (ERAD) announced at the British International Motor Show in London earlier this year.

Land Rover Freelander 2, 2011

Land Rover Freelander 2, 2011


 
 

The 2011 Land Rover Freelander 2 model range, on sale in the UK from the end of September 2010, benefits from a new 2.2-litre diesel engine available with either 150PS or 190PS outputs, a new look exterior plus interior alterations including new instrument dials and a new Premium Pack option.

Land Rover's new turbo diesel engine is available in the 4WD TD4 150PS model featuring a manual transmission and intelligent Stop/Start technology as standard (an automatic gearbox without Stop/Start is available as a cost option), or the new SD4 model delivering 190PS (available in automatic transmission only).

This new engine is quieter, more efficient and both derivatives have 20Nm more torque than the outgoing engine. This means the 2011 Freelander 2 offers improved engine response and more mid-range strength for towing. CO2 emissions have been significantly reduced to 165g/km and 185g/km respectively with corresponding fuel economy benefits.

However, despite reductions in consumption and emissions, there has been no compromise in performance. The flagship 190PS Land Rover Freelander SD4 accelerates from rest to 60mph in 8.7 seconds with an increased top speed of 118mph. The Land Rover Freelander 150PS TD4 manual and automatic versions match the performance of their predecessors.

As well as being upgraded from EU4 to EU5, both versions have a new variable geometry turbocharger and have been extensively re-calibrated to deliver new levels of power, meet emissions regulations and reduce CO2 emissions. They are fitted with a catalysed diesel particulate filter as standard and are now compatible with 10 per cent biodiesel rather than 5 per cent.

As an addition to the Land Rover Freelander 2 range, Land Rover will also offer customers a 2WD derivative, available in the UK from January 2011. This will be called the Land Rover Freelander 2 eD4 and it will be the most efficient Land Rover ever produced, with fuel consumption of 47.2mpg combined, and CO2 emissions of just 158g/km.

This groundbreaking Land Rover Freelander 2 eD4 is powered by the new 2.2-litre turbo diesel engine, delivering 150PS. It is only available with a six-speed manual transmission featuring Stop/Start technology as standard.

The exterior of the latest Land Rover Freelander 2 gets a new look for 2011. Marked out by a new front bumper assembly incorporating new front fog lap bezels, a new front grille finish, improved headlights and tail lamps, new full width tailgate appliqué and new 18- or 19-inch alloy wheel styles. There are three new colour schemes for 2011 Kosrae Green, Baltic Blue and Fuji White.

Inside the cabin, Land Rover's design team have revised the instrument dials, and there are four new seat styles with the option of a Premium Pack that includes Windsor Leather upholstery, an 8/6 way electric seat, plus premium carpet mats and covered centre stowage.

Land Rover Freelander 2, 2011

Land Rover Freelander 2, 2011


 
 

The 2011 Land Rover Freelander 2 model range, on sale in the UK from the end of September 2010, benefits from a new 2.2-litre diesel engine available with either 150PS or 190PS outputs, a new look exterior plus interior alterations including new instrument dials and a new Premium Pack option.

Land Rover's new turbo diesel engine is available in the 4WD TD4 150PS model featuring a manual transmission and intelligent Stop/Start technology as standard (an automatic gearbox without Stop/Start is available as a cost option), or the new SD4 model delivering 190PS (available in automatic transmission only).

This new engine is quieter, more efficient and both derivatives have 20Nm more torque than the outgoing engine. This means the 2011 Freelander 2 offers improved engine response and more mid-range strength for towing. CO2 emissions have been significantly reduced to 165g/km and 185g/km respectively with corresponding fuel economy benefits.

However, despite reductions in consumption and emissions, there has been no compromise in performance. The flagship 190PS Land Rover Freelander SD4 accelerates from rest to 60mph in 8.7 seconds with an increased top speed of 118mph. The Land Rover Freelander 150PS TD4 manual and automatic versions match the performance of their predecessors.

As well as being upgraded from EU4 to EU5, both versions have a new variable geometry turbocharger and have been extensively re-calibrated to deliver new levels of power, meet emissions regulations and reduce CO2 emissions. They are fitted with a catalysed diesel particulate filter as standard and are now compatible with 10 per cent biodiesel rather than 5 per cent.

As an addition to the Land Rover Freelander 2 range, Land Rover will also offer customers a 2WD derivative, available in the UK from January 2011. This will be called the Land Rover Freelander 2 eD4 and it will be the most efficient Land Rover ever produced, with fuel consumption of 47.2mpg combined, and CO2 emissions of just 158g/km.

This groundbreaking Land Rover Freelander 2 eD4 is powered by the new 2.2-litre turbo diesel engine, delivering 150PS. It is only available with a six-speed manual transmission featuring Stop/Start technology as standard.

The exterior of the latest Land Rover Freelander 2 gets a new look for 2011. Marked out by a new front bumper assembly incorporating new front fog lap bezels, a new front grille finish, improved headlights and tail lamps, new full width tailgate appliqué and new 18- or 19-inch alloy wheel styles. There are three new colour schemes for 2011 Kosrae Green, Baltic Blue and Fuji White.

Inside the cabin, Land Rover's design team have revised the instrument dials, and there are four new seat styles with the option of a Premium Pack that includes Windsor Leather upholstery, an 8/6 way electric seat, plus premium carpet mats and covered centre stowage.

Land Rover Range Rover Evoque, 2011

Land Rover Range Rover Evoque, 2011

 
 

The Land Rover Range Rover Evoque has turned the much-acclaimed LRX concept car into reality, faithfully capturing the spirit of its landmark cross-coupé design.

Evolution of Range Rover design
The all-new Land Rover Range Rover Evoque takes its inspiration directly from the LRX concept car, which drew worldwide acclaim for its exciting new interpretation of classic Range Rover design cues.
Smart design in conjunction with meticulous engineering allowed the spirit of the LRX concept to be turned into reality without compromising the core Range Rover values of interior luxury, refined performance and all-terrain capability.

Impeccably crafted luxury interior
Beneath its dramatic exterior, the Land Rover Range Rover Evoque provides customers with an impeccably crafted luxury cabin, incorporating the premium quality materials and elegant design expected of a Range Rover interior.

Key product innovations that drive its green performance:
    * Compact size - at 4350 mm, the Range Rover Evoque is 430 mm shorter than a Range Rover Sport
    * Lightweight technologies - advanced materials used throughout the body and chassis
    * Efficient powertrain - state-of-the-art petrol and diesel engines, with high-efficiency features such as direct injection and stop-start
    * Low CO2 technologies - including Electric Power-Assisted Steering (EPAS), smart regenerative charging and optimised transmissions
    * Availability of front-wheel-drive - reducing weight and minimising driveline losses
    * Recycling and re-use - maximising use of sustainable and recycled materials, plus optimising end-of-life recyclability

Distinctively Evoque
Land Rover designers and engineers have developed a host of distinctive and innovative features, to ensure the Range Rover Evoque stands out from the crowd.
Lighting plays a big part in the Evoque's distinctive appeal. First to catch the eye is the powerful signature graphic in the front running lights, created by innovative LED light-blade technology. A similar graphic is repeated in the LED rear lights, with their jewel-like 3D petal design.

There are three main vehicle design themes, each of which has its own distinctive character, exterior treatment and carefully co-ordinated interior package. The three themes are:
    * Pure - combining the stunning concept-car exterior with a stylish, clean interior in neutral colours to highlight the pure, simple forms of the cabin architecture. Soft-touch, wrapped materials on the major surfaces contrast with the real-metal brushed aluminium trim.
    * Prestige - ultimate Range Rover luxury, combining a bespoke exterior that includes unique, 19-inch wheels and sparkling metallic details with an indulgent interior that is almost entirely leather-wrapped. Luxurious duo-tone colour schemes are embellished by premium leather, twin-needle stitching and real wood and metal finishes.
    * Dynamic - bold exterior with 20-inch wheels and unique bumpers, sills, grille and tailpipes for a more assertive, confident stance. Contrasting roof and spoiler colour is a no-cost option, while the premium sports interior offers a darker environment with splashes of bright contrast colour, together with perforated leather seats and unique sports detailing.

Other features available to Land Rover Range Rover Evoque:
    * Park Assist for automated parallel parking
    * Blind Spot Monitoring system
    * Surround Camera System with five digital cameras, including a reversing system
    * Full dual-zone automatic climate control, featuring a Timed Climate park heater facility
    * Hard-drive navigation system
    * DAB/FM/AM/Sirius tuners, with hard-drive virtual 10xCD multiplayer
    * Digital and Satellite TV, and DVD playback
    * Rear-seat entertainment package, with eight-inch video screens, digital wireless headphones and touch-screen remote control
    * Keyless entry system and powered tailgate
    * Adaptive headlamps with auto headlamp dipping
    * Heated windscreen, front seats and steering wheel

Classic Range Rover design cues, with a bold new interpretation
The Evoque's bold exterior features exciting new interpretations of classic Range Rover design cues, including the signature clamshell bonnet, the floating roof and the solid 'wheel-at-each-corner' stance.

Modern and sporting premium interior
The Evoque's interior takes the strong, clean architecture and premium quality materials of a traditional Range Rover, and applies them in a more contemporary and sporting fashion.
As in larger Range Rovers, the centrepiece of the cabin is the bold intersection between the solid horizontal elements of the instrument panel and the powerful vertical lines of the centre console.

The exquisite quality and craftsmanship of the materials is highlighted by the very contemporary, clean treatment of the interior surfaces, including the flush treatment of the air vents and horizontal roller shutter in the centre console.
Housed under a compact curved binnacle, the instrument cluster enhances the sporting, premium feel of the interior. The twin dials have an expressive three dimensional form with chunky illuminated chaplets and needles, and are set deep in sporty circular housings finished with bright chrome rims.

Range Rover craftsmanship, and Range Rover materials
The Evoque delivers Range Rover levels of quality and craftsmanship in every detail of the car. Particular attention has been given to selecting only the best, premium quality materials, and applying those materials with impeccable taste and care.

Perhaps the most visible example is the luxurious wrapped finish of the upper instrument panel. High series models use premium Windsor leather - beautifully soft high-grade hides which have been hand-picked for their exceptional touch and appearance - impeccably hand-finished with twin-needle stitching.

The fascia mid-section is also leather wrapped; this, together with the lavish leather trim on the door panels and seats, creates the ultimate luxury ambience. In total, over 10m2 of leather - equivalent to more than three full hides - is required to complete each vehicle. Every aspect of the stitching, even down to the size and shape of the needle, is also specified by Range Rover experts, to guarantee an immaculate finish, every time.

Even on models where leather is not specified, the instrument panel is still wrapped with a premium quality, soft-touch textured material with twin-needle stitching, for a sumptuous interior experience.

In bold contrast to the opulent leather and soft-touch surfaces, strong visual highlights are provided by authentic metal finishes on the horizontal strip on the fascia, the surrounds to the vent controls, and the striking curved elements each side of the centre console. Cold to the touch and exquisitely crafted, the metal finishes are a tactile and visual reminder of the superior interior quality.

The fastidious attention to detail in every facet of the Range Rover Evoque's construction can also be illustrated by the thousands of man hours spent finessing the way that all visible parts fit together, ensuring an impeccable quality and consistency of finish.

Turning the LRX Concept into reality
The Land Rover Range Rover Evoque is completely faithful to the style of the stunning LRX Concept, capturing its design almost to the millimetre.

Some of the features that helped to preserve the LRX Concept design include:
    * All-new body structure and suspension subframes, delivering the sleek, low profile of the LRX while providing excellent interior space and the traditional elevated Command driving position, with the full wheel travel required for comfort on- and off-road
    * Adoption of ultra-high-strength Boron steels in the A- and B-pillars to retain the slim profile of the pillars without compromising strength or safety
    * Detailed optimisation of the interior package including pedal positions, fuel tank height and door structures to deliver generous interior legroom and headroom while retaining the low coupé roofline
    * Integrating the radio antennae into the rear spoiler, to avoid the fitment of exterior aerials

Land Rover Range Rover Evoque, 2011

Land Rover Range Rover Evoque, 2011

 
 

The Land Rover Range Rover Evoque has turned the much-acclaimed LRX concept car into reality, faithfully capturing the spirit of its landmark cross-coupé design.

Evolution of Range Rover design
The all-new Land Rover Range Rover Evoque takes its inspiration directly from the LRX concept car, which drew worldwide acclaim for its exciting new interpretation of classic Range Rover design cues.
Smart design in conjunction with meticulous engineering allowed the spirit of the LRX concept to be turned into reality without compromising the core Range Rover values of interior luxury, refined performance and all-terrain capability.

Impeccably crafted luxury interior
Beneath its dramatic exterior, the Land Rover Range Rover Evoque provides customers with an impeccably crafted luxury cabin, incorporating the premium quality materials and elegant design expected of a Range Rover interior.

Key product innovations that drive its green performance:
    * Compact size - at 4350 mm, the Range Rover Evoque is 430 mm shorter than a Range Rover Sport
    * Lightweight technologies - advanced materials used throughout the body and chassis
    * Efficient powertrain - state-of-the-art petrol and diesel engines, with high-efficiency features such as direct injection and stop-start
    * Low CO2 technologies - including Electric Power-Assisted Steering (EPAS), smart regenerative charging and optimised transmissions
    * Availability of front-wheel-drive - reducing weight and minimising driveline losses
    * Recycling and re-use - maximising use of sustainable and recycled materials, plus optimising end-of-life recyclability

Distinctively Evoque
Land Rover designers and engineers have developed a host of distinctive and innovative features, to ensure the Range Rover Evoque stands out from the crowd.
Lighting plays a big part in the Evoque's distinctive appeal. First to catch the eye is the powerful signature graphic in the front running lights, created by innovative LED light-blade technology. A similar graphic is repeated in the LED rear lights, with their jewel-like 3D petal design.

There are three main vehicle design themes, each of which has its own distinctive character, exterior treatment and carefully co-ordinated interior package. The three themes are:
    * Pure - combining the stunning concept-car exterior with a stylish, clean interior in neutral colours to highlight the pure, simple forms of the cabin architecture. Soft-touch, wrapped materials on the major surfaces contrast with the real-metal brushed aluminium trim.
    * Prestige - ultimate Range Rover luxury, combining a bespoke exterior that includes unique, 19-inch wheels and sparkling metallic details with an indulgent interior that is almost entirely leather-wrapped. Luxurious duo-tone colour schemes are embellished by premium leather, twin-needle stitching and real wood and metal finishes.
    * Dynamic - bold exterior with 20-inch wheels and unique bumpers, sills, grille and tailpipes for a more assertive, confident stance. Contrasting roof and spoiler colour is a no-cost option, while the premium sports interior offers a darker environment with splashes of bright contrast colour, together with perforated leather seats and unique sports detailing.

Other features available to Land Rover Range Rover Evoque:
    * Park Assist for automated parallel parking
    * Blind Spot Monitoring system
    * Surround Camera System with five digital cameras, including a reversing system
    * Full dual-zone automatic climate control, featuring a Timed Climate park heater facility
    * Hard-drive navigation system
    * DAB/FM/AM/Sirius tuners, with hard-drive virtual 10xCD multiplayer
    * Digital and Satellite TV, and DVD playback
    * Rear-seat entertainment package, with eight-inch video screens, digital wireless headphones and touch-screen remote control
    * Keyless entry system and powered tailgate
    * Adaptive headlamps with auto headlamp dipping
    * Heated windscreen, front seats and steering wheel

Classic Range Rover design cues, with a bold new interpretation
The Evoque's bold exterior features exciting new interpretations of classic Range Rover design cues, including the signature clamshell bonnet, the floating roof and the solid 'wheel-at-each-corner' stance.

Modern and sporting premium interior
The Evoque's interior takes the strong, clean architecture and premium quality materials of a traditional Range Rover, and applies them in a more contemporary and sporting fashion.
As in larger Range Rovers, the centrepiece of the cabin is the bold intersection between the solid horizontal elements of the instrument panel and the powerful vertical lines of the centre console.

The exquisite quality and craftsmanship of the materials is highlighted by the very contemporary, clean treatment of the interior surfaces, including the flush treatment of the air vents and horizontal roller shutter in the centre console.
Housed under a compact curved binnacle, the instrument cluster enhances the sporting, premium feel of the interior. The twin dials have an expressive three dimensional form with chunky illuminated chaplets and needles, and are set deep in sporty circular housings finished with bright chrome rims.

Range Rover craftsmanship, and Range Rover materials
The Evoque delivers Range Rover levels of quality and craftsmanship in every detail of the car. Particular attention has been given to selecting only the best, premium quality materials, and applying those materials with impeccable taste and care.

Perhaps the most visible example is the luxurious wrapped finish of the upper instrument panel. High series models use premium Windsor leather - beautifully soft high-grade hides which have been hand-picked for their exceptional touch and appearance - impeccably hand-finished with twin-needle stitching.

The fascia mid-section is also leather wrapped; this, together with the lavish leather trim on the door panels and seats, creates the ultimate luxury ambience. In total, over 10m2 of leather - equivalent to more than three full hides - is required to complete each vehicle. Every aspect of the stitching, even down to the size and shape of the needle, is also specified by Range Rover experts, to guarantee an immaculate finish, every time.

Even on models where leather is not specified, the instrument panel is still wrapped with a premium quality, soft-touch textured material with twin-needle stitching, for a sumptuous interior experience.

In bold contrast to the opulent leather and soft-touch surfaces, strong visual highlights are provided by authentic metal finishes on the horizontal strip on the fascia, the surrounds to the vent controls, and the striking curved elements each side of the centre console. Cold to the touch and exquisitely crafted, the metal finishes are a tactile and visual reminder of the superior interior quality.

The fastidious attention to detail in every facet of the Range Rover Evoque's construction can also be illustrated by the thousands of man hours spent finessing the way that all visible parts fit together, ensuring an impeccable quality and consistency of finish.

Turning the LRX Concept into reality
The Land Rover Range Rover Evoque is completely faithful to the style of the stunning LRX Concept, capturing its design almost to the millimetre.

Some of the features that helped to preserve the LRX Concept design include:
    * All-new body structure and suspension subframes, delivering the sleek, low profile of the LRX while providing excellent interior space and the traditional elevated Command driving position, with the full wheel travel required for comfort on- and off-road
    * Adoption of ultra-high-strength Boron steels in the A- and B-pillars to retain the slim profile of the pillars without compromising strength or safety
    * Detailed optimisation of the interior package including pedal positions, fuel tank height and door structures to deliver generous interior legroom and headroom while retaining the low coupé roofline
    * Integrating the radio antennae into the rear spoiler, to avoid the fitment of exterior aerials
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