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Showing posts with label 2011 Geneva. Show all posts
Showing posts with label 2011 Geneva. Show all posts

Tuesday, March 1, 2011

Gumpert Tornante by Touring





Touring Superleggera and Gumpert have chosen the 2011 Geneva Motor Show stage for the world premiere of the Gumpert Tornante. Touring Superleggera provided the design and body engineering while Gumpert will take care of manufacturing and sales of the next model, complementing the Gumpert range as of 2012. The Tornante is showcased at the stage of 1:1 static style model in the best Italian tradition.

Fast Tourer
Gumpert have gained a reputation for their impressive street legal racing cars. They addressed Touring Superleggera with a call for elegance, more passengers and luggage space, improved comfort, access and ventilation, and noise reduction. However, the fundamentals of performance and dynamic properties had to be respected without compromise.
At Touring, designers and body engineers started then a process of creative elimination to define the true essentials of all the parameters involved, limiting unnecessary weight and volume. The result is still a thoroughbred, just a few grades more civilized, with some extra skills for an enjoyable voyage. It is called a Fast Tourer. However, let there be no misunderstanding about its intentions.
Project development
When selecting the partner for the new model's body design, Gumpert recognised that elegance is part of the genetic code of Touring Superleggera's creations. Even more remarkably, the paradigm of elegance was applied by Touring to the race cars too. This distinctive approach was at the basis of many masterpieces, like the 1940 Mille Miglia winner BMW 328 Berlinetta, the Ferrari 166 and 340 and the inspiring Alfa Romeo 8C2900. They all were redoubtable race machines with singular grace.



In turn, Touring was intrigued by the challenge from the young, vital and ambitious sports car manufacturer, known for uncompromised orientation to efficiency, high quality engineering and the constant quest for better performance. In the development work, the teams from the two companies discovered soon that they share the same respect for efficiency and essentiality. This facilitated the subsequent stages of engineering and feasibility study, and the merger of body and chassis required only minor adjustments from both sides.


Architecture
The space frame chassis is a derivative of the apollo and features the same central engine layout. However, the requirements of accessibility and inner space have dictated a number of important changes to the rolling chassis:
  • the lateral member of the chassis is lowered by 80 mm in the door area
  • the A pillar and the windshield are rotated vertically by 2.5°
  • the B pillar is moved backwards with 100 mm allowing for 1120 mm wide gull-wing doors
  • the H point is displaced by 210 mm in height and 46 mm in length
  • the overall height is now 1215 mm
Thanks to the thorough frame engineering, the outstanding combination of lightness and torsional stiffness of the original chassis is preserved. The engineers target 100 kg and slightly lower than 40.000 Nm/degree, but the passenger compartment volume is now increased by 25% and the luggage compartment capacity is brought to 200 l.
Other modifications aim at enhanced ride comfort and driveability:
  • the floor height is increased by 20 mm
  • the shell seats are fully adjustable, heated, with 4-point belts
  • the paddle shifters are standard feature
  • sound and heat insulation material is fitted on the floor and between the cabin and the engine compartment
  • glasses are double layer for better heat and noise insulation
  • the ventilation system capacity is improved
A crash box in the front section, adapted from Formula-1 technology, absorbs the impact energy in case of a crash, improving the passive safety. Featuring composite body panels over the light chrome-molybdenum steel space frame with carbon fibre monocoque, the construction principle mirrors the original method patented by Touring in 1936, and authorizes the symmetrical Superleggera badges on the bonnet.


Design
Unlike other Touring creations, the Gumpert Tornante is not rooted into a specific model of the Italian designer's heritage. Aesthetically, the project started from a white sheet of paper, allowing the designer's full and free focus on the challenging package of the rolling chassis and its hard points. The new model should not only offer ample performance and superb dynamic properties and aerodynamics, but also adequate levels of comfort, interior space and ergonomics. The spirit of a true dream car, but with sufficient practical features to become a safe and useable sports car in today's traffic.
The Touring accent of the Gumpert Tornante originates from specific proportions and the balance of muscular elegance and introvert power, rather than formal language. The bodywork preserves its movement even when the car stands still, and when on the move, it expresses unique, elegant fluidness.
The prominent grille within the balanced front wings characterizes the Tornante's front area. The air intakes are pronounced, reflecting the care given to the air intake surface and the overall airflow.
The well-defined waistline reflects the functional separation between the greenhouse and the lower body. The top is a light area offering extended space for driver and passenger, overall visibility and sportive but comfortable 'life on board'. The muscular, though elegant shoulders announce the stunning performance of the power unit. Both the Gumpert Tornante's doors and the boot lid open with gull-wing movement, providing easy access to the interior, the mechanics and the luggage compartment.
From the rear, the low quarter panels outline the powerful curve of the roof. Below the waistline, the very visible air diffuser evokes the research of the maximal downforce.
The overall design breaths superior potential and performance in an elegant and slightly understated way, faithful to the Touring tradition.


Power Unit
The Gumpert Tornante has the genes of the Gumpert apollo and inherits its impressive V8 biturbo engine. Weighing only 196 kg, the engine plays a major role in ensuring the ideal weight and the fascinating driving dynamics of the Tornante. An angle of 90° between the two cylinder banks is a sign of a classic 8-cylinder engine.
Starting from the pure block from Audi, the engine is a complete in-house development. Thus, the manufacturing process contains among others all the moving parts, air and fuel management, turbo chargers, charge air-duct and dry sump lubrication. In the basic version this engine delivers 700 HP. In comparison to the apollo, the configuration will be optimized for the Fast Touring mission. This means more comfort and more suitability for daily use.
Alongside the V8 power unit, an alternative powered Gumpert Tornante is also planned for 2012.


Driveline
The fully synchronised, automatic six-speed transmission guarantees efficient utilization of the remarkable energy at the back wheels. The arrangement of the gears in a longitudinal direction in the path of travel ensures a very low centre of gravity and optimum weight distribution.
Extremely short gearshifts up to 40 milliseconds (torque-to-torque) are provided by the precise TT40e transmission of the apollo, where "e" stands for electronic gear system. Gear changes are faster thanks to rocker switches on the steering wheel. The Formula 1-type technology promises the ultimate in comfort along with best driving performance.


Suspension
The apollo derived built-in suspension ideally complements the body's sophisticated aerodynamics. The Tornante owes the finely tuned sensitivity of the suspension system and the optimised exertion of power to its double transverse control arm pushrod configuration at front and rear.
The double wishbones ensure that the tires maintain optimum contact to the road surface, independently of the bound rate of suspension system. As the suspension elements are linked to the main frame, the system ensures a responsive reaction and precise handling.


Chassis
Made of top-quality and highly stable chrome-molybdenum-steel with an integrated safety cell, the round tube frame is the base and symbolic backbone of the Gumpert Tornante. Providing additional space and comfort for its passengers compared to the apollo, the Tornante will be as safe as its racetrack-dedicated brother is. The Gumpert Tornante succeeds in combining low weight and rigidity with finest driving dynamics and comfortable Fast Touring.


TECHNICAL DATA
2-seater sports car with a mid-engine arrangement, chrome-molybdenum steel chassis with an integrated safety cell, doors and the boot lid open with gull-wings, carbon body, 100 l stainless steel tank behind the passenger cell with integrated catch tank, long and pushrod-operated double transverse control arm suspension with fully adjustable dampers (front and rear) and anti roll bar in front, ground clearance adjustable between 60 and 140 mm, two circuit ABS brake system with six piston callipers, inside ventilated discs (378 x 32 mm) at front and rear
Dimensions
  • Length: 4,475 mm
  • Width: 1,971 mm
  • Height: 1,215 mm
  • Wheel base: 2,700 mm
Track
  • front: 1,648 mm
  • back: 1,600 mm
Boot volume: ca. 200 l
Weight
  • Kerb weight (depending on equipment components): 1,300-1,400 kg
Engine
V8 cylinder biturbo engine with 90° cylinder angle, closed-deck light metal crankcase, light metal cylinder heads with five valves per cylinder, four overhead camshafts, variable time of ignition (Vario Cam direct) on the intake, hydraulic valve clearance compensation, dry sump lubrication, double-flow exhaust system with 3-way catalytic converter, four Lambda probes for gas mixture and diagnostics, on-board diagnostic system, two Intercoolers, electronic ignition with a rested ignition distribution (eight ignition coils), sequential multipoint fuel injection, electronic accelerator system (drive-by-wire)
  • Cylinder: 8
  • Type: 90°-V
  • Valves per cylinder: 5
  • Cubic capacity: 4,163 cc
  • Stroke: 93 mm
  • Bore: 84,5 mm
  • Nominal output: 515 kW / 700 HP @ 6,500 rpm
  • Max. torque: 900 Nm / 663.7 lb ft @ 4,000 rpm
  • Maximum: 7,400 rpm
  • Litre performance: 123.7 kw per liter / 168.1 HP per liter
  • Compression: 9.3
  • Recommended fuel type: 98 ROZ / 88 MOZ
  • Emission standard: Euro 5
Gearbox
automatic six-speed gear box TT40e with synchronization and oil cooling, operated with paddle shift controls, twin plate clutch configuration (diameter 240 mm), Torsen differential lock
Wheels
  • Tires: Michelin Pilot Super Sport
    • front: 265/35 ZR19
    • back: 345/30 ZR20
  • Wheel dimension
    • front: 10 J
    • back: 13 J
Wheel rim type: aluminium cast or forged wheels with centre lock


PERFORMANCE FIGURES
Top speed: >300 km/h (estimated)

Ferrari FF


Ferrari FF

The 81st Geneva International Motor Show played host to the unveiling of two major new Prancing Horse innovations: the revolutionary Ferrari FF, a four-wheel drive four-seater with a mid-front V12 that is the most powerful and versatile car Ferrari has ever built, and the 458 Italia sporting the HELE (High Emotions Low Emissions) System which cuts CO2 to just 275 g/km.
The Ferrari FF makes its eagerly-waited debut at Geneva after the huge build-up of expectation and interest created by the client premiere at Maranello broadcast online by www.ferrari.com.
The revolutionary Ferrari FF offers a completely new take on the sporting Grand Tourer theme. It is not only the first Ferrari with four-wheel drive, but, more significantly, a model that hails a major break with the past, effortlessly melding extreme sports car performance with the versatility and usability of a genuine GT and boasting an extremely innovative design.
Every single area of the Ferrari FF brims with innovation, not least its engine, the first GDI V12 to be coupled with the seven-speed F1 dual-clutch gearbox. The V12 unleashes a massive 660 CV at 8,000 rpm, and maximum torque of 683 Nm at 6,000 rpm with 500 Nm already available at just 1,000 rpm. This ensures the performance figures of an extreme sports car, with the 0-100 km/h sprint covered in 3.7 seconds and a top speed of 335 km/h. Efficiency has been significantly boosted too, with fuel consumption now standing at just 15.4 litres per 100 km, and CO2 emissions at 360 g/km, a 25 per cent reduction compared to the previous V12s, thanks in part to the HELE (High Emotions- Low Emissions) System which incorporates Stop&Start technology.





Uniquely, the Ferrari FF also guarantees this exceptional performance on terrain with very low grip coefficients, thanks to Ferrari's own patented 4RM four-wheel drive system. Torque is still delivered by the rear wheels, but the PTU (Power Transfer Unit) ensures that as much as is required is also transferred to the front wheels when necessary on low grip surfaces. The Ferrari FF intelligently distributes torque to each of the four wheels individually, thanks to the fact that all of the dynamic vehicle controls (E-Diff, F1-Trac and PTU) have been integrated into a single CPU.
Exceptional sporty driving is guaranteed by the Ferrari FF's transaxle architecture (mid-front engine with gearbox over the rear axle) and the positioning of 53% of weight to the rear of the car. Meticulous attention has been taken in lightening the engine (new castings), bodyshell (new aluminium alloys and production processes) and a host of other components. The interior has also been optimised through the use of high-tech materials such as magnesium for the seats. Third generation Brembo carbon-ceramic brakes are now lighter and longer-lasting, with virtually negligible wear during normal use on the road. All of these innovations have combined to produce an absolutely exceptional weight-power ratio of 2.7 kg/CV, a new benchmark for this kind of car.
Styled by Pininfarina, the Ferrari FF's lines effortlessly reflect its signature uncompromising balance of sportiness and versatility. It can comfortably accommodate four in its bodyhugging seats and spacious cabin. Its 450 litre boot can also be extended to 800 litres as the rear seats fold down independently. This means that the Ferrari FF offers more luggage space not only than any other car in its category, but also many four-door saloons, too.


Everything aboard the Ferrari FF is tailored specifically to the needs and tastes of its driver with a choice of six exclusive colours and the finest Frau aniline leathers specially treated to enhance their natural softness. The Ferrari FF's exceptional specification enhances in-car enjoyment for all four occupants. Features include a new rear-seat infotainment system with two screens for watching TV and DVD and a 1,280 Watt, 16-channel stereo system with Dolby Surround Sound.
The three FFs on the stand in Geneva are joined by a 458 Italia, the 599 GTB Fiorano with the sporting HGTE package, and a Ferrari California in an elegant Blu Tour De France finish. The Ferrari California is enjoying incredible sales success and is also the model subject to the widest range of personalisation requests in Ferrari's line-up. The V8- engined convertible is, in fact, very popular in the special two-tone and three-layer paint option finishes, with additional original interior combinations of materials, colours and trim solutions. The extraordinary success of the Ferrari California testifies to its enduring and sophisticated appeal.
Ferrari FF TECHNICAL SPECIFICATIONS
  • Engine
    • Type: 65° V12
    • Total displacement: 6262 cc
    • Bore/stroke: 94 mm x 75,2 mm
    • Maximum power: 660 CV @ 8000 rpm
    • Maximum torque: 683 Nm @ 6000 rpm
    • Specific power: 77 kW/litre - 105 CV/litre
    • Maximum revs: 8000 rpm
    • Compression ratio: 12,3:1
  • Dimensions and weight
    • Length: 4907 mm
    • Width: 1953 mm
    • Height: 1379 mm
    • Wheelbase: 2990 mm
    • Front track: 1676 mm
    • Rear track: 1660 mm
    • Dry weight: 1790 kg
    • Kerb weight: 1880 kg
    • Weight distribution: 47% front, 53% rear
    • Boot volume: 450 litres
    • Fuel tank capacity: 91 litres
  • Wheels and tyres
    • Front: 245/35 ZR 20 8,5 J x 20"
    • Rear: 295/35 ZR 20 10,5 J x 20"
    • Rear (winter tyres): 285/35 ZR20 10,5 J x 20"
  • Brakes
    • Front: 398 mm x 38 mm
    • Wheel: 360 mm x 32 mm
  • Transmission and gearbox
    • 4RM (four-wheel drive) and 7-speed dual-clutch transmission
  • Electronic controls
    • 4RM control (full integration of all controls: F1-Trac, E-Diff and PTU); ABS/EBD; ESC
  • Suspension
    • SCM3
  • Performance
    • Top speed: 335 km/h
    • 0-100 km/h: 3,7 sec
    • 0-200 km/h: 11 sec
    • 100-0 km/h: 35 m
    • Weight/power ratio: 2,7 kg/CV
    • Consumption and emissions (ECE + EUDC combined cycle)
    • Consumption: 15,4 l/100 km
    • CO2 emissions: 360 gr/km

The Next Z Cues? Nissan Esflow


Press Release


It may be a concept, but the Nissan ESFLOW electric sports car proves it's possible to remain environmentally sympathetic without having to give up the joy of driving.

It looks like a sports car, handles like a sports car and performs like one too. But Nissan ESFLOW Concept is different to every other sports car yet built: it's electric. Using technology pioneered in the award-winning Nissan LEAF, the EV concept shows that driving can still be as much fun tomorrow as it is today.
Nissan has a reputation for creating some of the most exhilarating sports cars on the market. Nissan has also developed the world's first practical Zero Emission family car, the Nissan LEAF.
Now Nissan has put that expertise together. It has captured the excitement of a sports car and the environmental benefits of an electric vehicle and blended them into one dramatic two-seater concept: ESFLOW.
Nissan ESFLOW Concept has been created from the ground up as a pure electric vehicle, to give an idea how a Zero Emission sports car of the future might look. Living ecologically has often been seen as an act of austerity - to save one's environmental conscience sacrifices must be made. ESFLOW is here to address that misconception.
Owning an ecologically sound car does not have to come at the expense of driving enjoyment. The briefest glance at the Nissan ESFLOW Concept is enough to tell you what kind of car it is: a long bonnet leading into a steeply raked, wrap around windscreen, the compact cabin placing the occupants bang on the car's centre of gravity, hunched arches over ultra-low profile tyres wrapped around six spoke wheels. ESFLOW is unmistakably a sports car, and those in the know will recognize its heritage - hints of classic and contemporary Nissan sports cars abound.





Vitally, ESFLOW is not an existing ICE (internal combustion engine) powered vehicle that has been adapted to run on electricity, but a sports car that's been designed from the outset as a Zero Emission vehicle. This means that Nissan's forward thinking designers have had free rein to place the power train and batteries in the optimum positions to benefit the car's handling and performance and enhancing the thrill of driving.
The Car
The Nissan ESFLOW Concept is based on existing technology, implemented in innovative ways. An attractive, head turning composite body covers an aluminium chassis, incorporating its own roll cage. The powertrain unit, which employs the same technologies installed in the Nissan LEAF, is tuned to offer a sporty driving experience.
The Powertrain
Nissan ESFLOW Concept is rear-wheel drive and it runs on two motors. The car's graceful proportions allow the twin electric motors to be placed above the axis of the rear wheels, in a mid-ship position,. These motors independently control the left and right wheels, and so the torque is optimized to ensure outstanding vehicle stability and control as well as efficient power regeneration. The motors produce enough torque in an instant for it to reach a 100kph in under 5 seconds.
Power for the motors comes from the same laminated lithium-ion battery packs used in the Nissan LEAF, but in ESFLOW the packs are located along the axis of the front and rear wheels. This centralizes the mass of the car, and thus its rotation point, close to the driver's hips. These cleverly positioned batteries enable the car to travel over 240km on one charge.


The Chassis
An aluminium chassis has been built around the drive train, taking full advantage of the opportunities that Zero Emission electric propulsion provides. Power cells are incorporated in such a way that they benefit ESFLOW's strength and poise, not detract from them. Indeed, unlike a conventional fuel tank, batteries do not get lighter as they provide energy, so the car's weight distribution remains constant throughout a drive.
The high waistline afforded by the Nissan ESFLOW Concept's classic sports car proportions allows strong, yet unobtrusive roll bars incorporated in to the structure behind the seats to safely take the entire load of the car in the event of a roll over, negating the need for obtrusive, thick, reinforced A-pillars and the blind spots they inevitably create.
This almost unobstructed view ahead will not be unfamiliar to fighter pilots, and just as such pilots speak of "strapping their planes on to their backs", we hope ESFLOW owners will also feel the car to be an extension of their bodies, reacting to their slightest whims. The driver must be at the centre of the sports car both physically and metaphorically.


The Body
The Nissan ESFLOW Concept is undoubtedly an attractive car. Crisp, clean lines not only convey the purity of its sporting potential, but suggest the clarity of electric power. The colour scheme chosen for the concept car is inspired by glaciers - highly reflective solidified liquid with blue tints in its shadows. Like its ZEV concept forebears and contemporary stable mate the ESFLOW's headlights and Nissan emblem are tinted cool blue. The six spoke wheels contain blue carbon inserts while the same material adorns the side sill, roof mounted lip spoiler and lower rear bumper.
Blue LEDs accentuate the futuristic lights slashed into the bodywork both front and rear. Where the Nissan LEAF's protrusive headlights are used to guide airflow around the door mirrors, this is not needed on Nissan ESFLOW Concept as the mirrors have been replaced with minute rear view cameras at the base of its A-pillars. The ESFLOW's front lights do protect a secret of their own however: flip out charging points built in to the air ducts beneath.
The Interior
Ecological minimalism need not come at the expense of luxury. The cabin of the Nissan ESFLOW Concept is clean and open and weight saving has been a priority throughout its design, but it is still a comfortable and pleasant place to sit. By far the heaviest components in modern cars' interiors are the steel framed, thickly upholstered and increasingly motorized seats. In ESFLOW the seats are sculpted into the rear bulkhead of the car, negating the need for a heavy frame. This of course means that they are immobile, but this is of no consequence as the fly-by-wire steering and pedals adjust electrically to the best spot to suit each individual driver's size and preferred driving position.
The seats themselves are upholstered in gold leather and perforated gold suede while the doors are trimmed in dark blue leather and suede. The blue and gold motif, the colour of sparks, is continued across the dashboard, which is also adorned with silver carbon trim, and features four multifunction illuminated LCD displays.
The Driver
Daniel, an ESFLOW owner, works in tech, but lives for the weekend. On Friday night after work, he gets behind the wheels of his ESFLOW which instantly links with his pocket PDA and determines the fastest route to his girlfriend's home. Finding street side parking is a synch as the Nissan ESFLOW Concept's compact dimensions allow it to slip in to the narrowest of spaces. On Saturday he drives to a popular club to exhibit his DJ skills and his friends are impressed by his cool EV sports car.
On Sunday he drives through the mountains for leisure. ESFLOW's superb weight distribution and unobstructed view ahead enables him to effortlessly nail every apex, every time. His descent from the mountains is more relaxed and he allows the ESFLOW to overrun on the long sweeping curves, turning the potential energy he and the car gained climbing up the gradients back in to electrical energy he can use once he hits the roads around Barcelona.
As his ESFLOW sips energy in its garage Daniel prepares himself for the week ahead, batteries fully recharged.



Etherea Revealed!


Infiniti Etherea Concept

Making its world debut at the 2011 Geneva Motor Show, the Infiniti Etherea Concept re-imagines the compact luxury car for a discerning new generation of younger buyers, while providing a glimpse of a future European Infiniti line-up where the brand's convention-defying distinctiveness reaches into the compact class for the first time.
"Etherea is about a new type of luxury," said Toru Saito, Corporate Vice President and Leader of the Global Infiniti Business Unit.
"It is for younger buyers who do not want a smaller version of a typically conservative and traditional luxury car. It is for people who want a car that defines who they are, not who their parents were."
Encapsulating everything that Infiniti stands for - including no-compromise hybrid power and maximum driving pleasure - in a car 4.4m long, Infiniti Etherea Concept proposes a bold new approach to the premium compact segment. Its dynamic character and highly sculptural, near mono-volume form provide a silhouette unlike anything currently in the class.
"Etherea is completely different from current luxury compact cars," said Senior Vice President of Design, Shiro Nakamura. "That is appropriate for a new generation of drivers who think of themselves as different.
"As an exploration into what a future entry-level Infiniti may be like, Infiniti Etherea Concept is highly significant and a breakthrough in what Infiniti thinks about itself."
Francois Bancon, General Manager of Exploratory and Advanced Product, said: "We think the market - and buyers of compact cars - is ready for a car like this, especially in Europe. As a vehicle to single out its owner as progressive, self confident and a little off the beaten path, Infiniti Etherea Concept fits very well with what Infiniti is all about."



Performance
Infiniti Etherea Concept's segment-busting appeal is based on the coming together of several vehicles styles. It is part elegant coupé, part spacious sedan, part practical hatchback and even part tall crossover. And being an Infiniti, there is also a large helping of sports car in the way it drives.
Like all Infinitis, Etherea puts driving pleasure high up alongside design. The concept car has been designed for a potent yet highly efficient hybrid drivetrain based around an in-house platform and the innovative one electric motor/twin clutch system used in the Infiniti M35h, the marque's first hybrid currently going on sale around Europe.
A supercharged 2.5-liter 4-cylinder petrol engine developing 245 PS provides quick response and strong acceleration throughout the performance range. Boosting power when more is needed, and providing silent, emission-free driving at low speeds, is an electric motor. The transmission is a continuously variable (CVT) type and, in an Infiniti first, drive is to the front wheels.
Like the M35h, the hybrid powertrain is designed to use clean electric power more often, for longer periods and at higher speeds than hybrids generally manage, endowing Infiniti Etherea Concept with a hybrid's advantages out on the open road as well as in busy city streets. This maximises efficiency and cuts CO2 emissions even further while imposing no compromises on the driving front.
Independent suspension, regenerative braking and advanced drive-by-wire electric/hydraulic steering further enhance the balance between performance and greenness.


Design
Designed in Japan under the direction of Shiro Nakamura, Etherea is more coupé than hatchback in inspiration, with many Infiniti flourishes first seen on the Essence concept supercar. However, Infiniti Etherea Concept's elegant profile is not at the expense of practicality. Despite appearances, Etherea boasts a large lift-up tailgate.
Utilising an in-house platform developed for use by Infiniti, the long wheelbase and minimal overhangs guarantee characteristic Infiniti visual poise and sporting appeal. The bonnet may not be as long as that of rear-drive Infinitis, but the proportions are just as finely judged and the overall look just as balanced, with the unique crescent C-pillar offering a dynamic, and very distinctive, Infiniti signature.
The spacious four-seat cabin offers all the luxury that Infiniti owners expect plus unrivalled ease of access and egress, boosted by an H-point which is higher than that of the average compact luxury car. Four wide opening doors, rear-hinged at the back, and an absence of B-pillar offer an unprecedented feeling of openness.
Familiar Infiniti design language has evolved to meet the challenge of the concept car. The headlights, for example, define the Infiniti "face" more clearly than ever. With a subtly curving shape, the lamps incorporate daytime running lights formed out of a crescent of LEDs. Going forward, the new lights are destined to become a familiar Infiniti characteristic.
"Other elements of exterior design and interior craftsmanship are set to have an important influence on future production models," said Shiro Nakamura.
Project leader and exterior designer, Giichi Endo, says Etherea can be summed up as a "four-door coupé with five-door practicality - a hatchback that doesn't look like a hatchback." Key was managing the new front-wheel drive architecture - all very different from the rear-drive FM platform that Infiniti designers are used to working with - to provide the traditional Infiniti "seductive lustre" to the design while delivering the interior roominess crucial for a car in the 4.4m class.
Wide opening doors, the rear doors hinged at the back, and no B pillar were central to the idea of being able to make the cabin as open and welcoming as possible. Access is further eased by the car's height. Infiniti Etherea Concept is not a crossover but with a driver H (hip) point higher than in a regular compact car, it does hint at the easy access and commanding driving position that distinguish an Infiniti such as the FX. The designers have dubbed the slightly elevated body style the "Lift-up".
The front of Infiniti Etherea Concept offers an unmistakable impression of solidity. In a design that instantly links it to the rest of the Infiniti family, the high bonnet line is fronted by a deep grille. An updated version of Infiniti's familiar double arch design, the grille's translucent mesh finish with illumination is both entirely functional and highly artistic.
Shiro Nakamura says in profile there is a suggestion of a mono-volume design - very different from current contenders in the compact luxury segment.
The design highlight for Nakamura, however, is the area around the base of the A-pillar - as he says, one of the most complex areas for a designer to get right in any car. In Etherea, this area is executed in a style unlike that of any other car - apart from Essence, which again provides the inspiration. Key to making it work is the front fender whose exaggerated length extends to the A-pillar in a highly sculptural coming together of planes. A small quarter window in the A-pillar guarantees a clear view out. It all makes for a contemporary and innovative design that injects energy into the whole car.


Comfort, space and craftsmanship
Just as the front-wheel drive platform presents new design opportunities for an Infiniti on the outside, so too does it allow a bold new approach in the cabin. With its flat floor and welcoming openness, Infiniti Etherea Concept's interior is designed for comfort and space while offering the luxury and craftsmanship Infiniti buyers expect. As Francois Bancon says, "Your first premium luxury car experience should feel like this."
The B-pillar-less design and opposing doors opens up the cabin and highlights its easy access and excellent roominess. With no transmission tunnel and a flat floor, the welcoming openness of Etherea's cabin extends throughout the car, with only elegantly slender consoles between the four seats to act as armrests and house ancillary controls.
Like any Infiniti the driving position is sporting. The control layout is very driver centric, though not in a way that excludes passengers. Here is a concept where the luxury and sportiness can be shared by all. For example, the centre of the dashboard features twin screens, both as easily accessible to the front seat passenger as the driver. The lower, nearer display is a touch-screen for control of functions such as climate control and entertainment, while the screen further away is used purely to display information.
"Hamon" is the Japanese word for the dashboard dials. It refers to the ripples on a pond that radiate outward when a pebble is thrown into the water. In the same way, the dials radiate outward from the central tachometer. It is an elegant, as well as highly ergonomic, solution.
Harmonious design and materials are central to Infiniti Etherea Concept's interior, just as they are to any Infiniti. Features making their debut on Etherea include Kumihimo, the kimono-inspired piping on the seats, and Inuyarai, the striking vertical strips on the inside of the doors. Etherea also debuts Infiniti's newest trim, a version of the parchment paper-style finish known in Japanese as Washi. The new finish is called Kasane-Washi and introduces a new way of layering the paper, enhancing its texture. The craftsmanship in Infiniti Etherea Concept is inspired by Japanese culture and re-interpreted through leading-edge technologies.
As an exploration of a future entry-level Infiniti production model, Etherea breaks free of existing market segments while showing that Infiniti, with the help of its Alliance partners, is serious about competing in both the compact luxury class and in Europe.
Francois Bancon said: "Etherea represents a redefinition, not a revolution - a car for buyers whose idea of luxury is very different from the stereotypes. Infiniti Etherea Concept is not a stereotype. It is a little bit borderline. It is an expression of identity and personality. It adds new values, as well as conveying existing ones. More than anything it is not just another luxury compact car."

Rolls-Royce 102EX Phantom Experimental Electric revealed




102EX - PHANTOM EXPERIMENTAL ELECTRIC

INTRODUCTION
"Today, Rolls-Royce Motor Cars begins an exploration into alternative drive-trains, seeking clarity on which technology may be suitable to drive Rolls-Royce motor cars of the future. The alternative drive-train we choose must deliver an authentic Rolls-Royce experience. It must be a technology that is right for our customers, our brand and which sets us on a sound footing for a sustainable future. That is why this project is so important." - CEO Torsten Müller-Ötvös.

Rolls-Royce Motor Cars proudly presents 102EX, a car that represents one of the most significant initiatives taken by the company in recent years. It is the world's first battery electric vehicle for the ultra-luxury segment and continues a tradition of experimental cars running through the model generations.

Rolls-Royce produces cars that represent the pinnacle in luxurious motoring for the world's most discerning customers. However, the company also recognises the need to look to the future and to plan for long-term sustainable growth. An investigation into alternative drive-train options is an important step in that process.

With 102EX, also to be known as the Phantom Experimental Electric (EE), it is the company's intention to carefully test the opinions and reactions to alternative drive-train options of a range of stakeholders including owners, enthusiasts, members of the public and the media.

Throughout 2011 Phantom EE will serve as a working test bed, giving owners, VIPs, the media and enthusiasts the opportunity to experience an established alternative drive-train technology and to feed back their experiences, thoughts and concerns directly.

The bank of research gathered from a global drive programme that will include Europe, the Middle East, Asia and North America will be crucial to decisions affecting alternative drive-trains for Rolls-Royce Motor Cars.

There are no plans to build a production version of this car. Phantom EE's role is as a test bed, designed to explore established BEV technologies, to pose as well as to answer questions.

Can Phantom EE deliver an acceptable range for customers without frequent re-charging? Is there confidence in its ability to operate in extreme conditions? Will reliability and quality be consistent with expectations of the world's pinnacle automotive brand?

Phantom EE also poses more fundamental questions: Is an all-electric drive-train able to deliver an authentic Rolls-Royce experience for customers, an experience that truly befits the marque?

Whether all-electric or another alternative drive-train option is right for Rolls-Royce will become clearer when the test programme is complete at the end of the year.

102EX - PHANTOM EXPERIMENTAL ELECTRIC (EE)

Reinvention is part of being timeless and Phantom EE is the latest in a line of experimental vehicles from Rolls-Royce Motor Cars. It builds on a legacy which dates back to 1919 and 1EX.

Experimental models are used to test and evaluate new technologies and applications which could shape future Rolls-Royce products. Unlike a concept car, Rolls-Royce experimental models are always fully functioning, drivable vehicles using tangible materials such as wood, leather and metals rather than clay and foam or other concepts.

They present engineers and designers with the opportunity for real-world innovation and are used not only to showcase new components and engineering techniques but also to evaluate them.

The latest in this line of experimental projects began with a Rolls-Royce Phantom, a strikingly modern and immaculately proportioned car in which high technology and hand-craftsmanship combine to produce something extraordinary.

Phantom EE features the car's ground-breaking aluminium spaceframe, so important to dynamic prowess, as well as the sense of calm and tranquillity enjoyed by occupants. However, the naturally aspirated 6.75-litre V12 petrol engine and 6-speed gearbox have been replaced by a lithium ion battery pack and two electric motors mounted on the rear sub-frame. These motors are connected to a single speed transmission with integrated differential.

Each motor is power rated to 145kW, giving Phantom EE a maximum power output of 290kW and torque of 800Nm available over a wide band. This compares with 338kW for standard Phantom with maximum torque of 720Nm, delivered at 3,500rpm.

The Nickel Cobalt Manganese battery chemistry holds around 230Wh/kg,a high energy density which is important in achieving an acceptable range between re-charges. Pre-launch tests suggests Phantom EE should run to a range of up to 200km. Delivered on an effortless wave of torque, 0-60mph will be achieved in under eight seconds (5.7 seconds in standard Phantom), with top speed limited to 160kph.

This is the first application of the technology in a GKL++ segment (super luxury vehicles priced at more than €200,000) and the battery pack is thought to be the largest ever fitted to a road car.

Evaluation of technology is an important part of the test programme. However, more fundamentally the car will seek answers to questions posed of Rolls-Royce owners: what their needs might be for the future considering factors such as range, performance and re-charging infrastructure.

The feedback from customers - as well as media, stakeholders and enthusiasts via the website www.electricluxury.com - will prove essential in evaluating the appropriateness of battery electric technology for Rolls-Royce.

It will help inform a decision on whether all-electric, or another alternative drive-train technology, will be most appropriate for the world's best cars of the future.

DESIGN

"It's a credible design concept that perfectly complements the experimental nature of the car, exploring options in light, space and use of materials. Had we changed the overall aesthetic, the concept would have lost credibility; our audience would assume it was simply a styling exercise. The reality is that this is an experimental vehicle in its truest sense, challenging perceptions, emotions and values - as well as exploring alternative drive-train technology." - Ian Cameron, Chief Designer Rolls-Royce Motor Cars.

102EX bears the famous hallmarks of the Rolls-Royce Phantom on which it is based, such as hand craftsmanship, fine detailing and iconic design cues like the pantheon grille and the Spirit of Ecstasy which celebrates its centenary in 2011. However, at the core of its design is the essence of an experimental vehicle, establishing this car's status as a test bed, while subtly alluding to its electric power plant.

The design creates a different aesthetic, experimenting with interior space and materials, as well as trims and illumination. These are framed around functional considerations for a battery electric Rolls-Royce - how the car is likely to be used and the changes that the technology brings in terms of interior space and exterior detailing. Naturally, these changes are executed in a way that affirms the car's credentials as a Rolls-Royce.

ATLANTIC CHROME EXTERIOR

Our designers were challenged with creating a finish for Phantom EE which immediately signified a special car, distinguishing it from standard Phantom models in the absence of many overt design changes. Not an easy task, since all Phantom models are special - with customers benefitting from a range of bespoke paint options running to some 45,000 colours.

Extensive research however had revealed a highly reflective paint using ceramic nano particles. Under a microscope these mimic the impression of a silver metal, but are between 8,000 and 80,000 times smaller than the thickness of a hair or 1,000 times smaller than the size of a normal metallic paint particle.

Test parts were produced and the design team were impressed with the results, knowing that the larger the object covered the better it would look. But they were under no illusions as to the task ahead.

In all sixteen coats of paint were needed, of which four were Atlantic Chrome, and many hours of time dedicated to ensuring a perfect end result. The finish is a striking one. Phantom EE commands the stage, with taut almost chiselled lines giving a wet impression to the car. This only grows in character as light conditions change.

ILLUMINATED SPIRIT OF ECSTASY

As well as the launch of 102EX, 2011 marks another milestone in the history of Rolls-Royce Motor Cars. On 6 February 1911, the design for Charles Sykes' Spirit of Ecstasy was first registered, signalling the start of a 100 year period in which this famous icon has adorned the prow of Rolls-Royce cars, from the famous Silver Ghosts, Clouds and Shadows of the 20th Century to today's hand-built Phantom and Ghost models.

Phantom EE's Spirit of Ecstasy, sits atop the radiator grille above the red double-R badge applied to EX models. Made of Makrolon, rather than stainless steel, it will be bathed in blue LED light, hinting at the electric technology beneath the bonnet. This stunning image complements the keynote graphic of website - www.electricluxury.com - where Rolls-Royce Motor Cars will expand the debate on the question of electric luxury to the online community, taking views from enthusiasts, media and members of the public.

INTERIOR DETAILING

Atlantic chrome-finished dashboard dials echo the exterior colour, providing a sense of interior-exterior balance and their analogue displays maintain the timeless architecture that every Phantom interior commands.

Other changes hint at further evolutionary designs applied to the car. For example, some dials have been subtly modified to provide information needed by the driver of an electric vehicle. The fuel gauge in particular has been replaced by an elegant battery charge indicator.

One of the most pleasing features of every Rolls-Royce Phantom interior is the power reserve dial located beside the speedometer. This reveals how much of the V12 engine's power remains at a driver's disposal. Phantom EE takes this concept a step further.

It features a regeneration symbol which takes the dial beyond the normal 100% line of standard Phantom. Depending on the momentum gathered, it conveys the degree of re-charge taking place as the vehicle is in motion.

EXTERIOR RE-CHARGING POINT

Re-charging is undertaken with a plug and five-pin socket which takes the place of the normal fuel filling mechanism for Phantom.The standard fuel filler cap has been replaced by a design featuring a clear window, displaying the RR logo and 102EX motif. The window frames rear-mounted, tricolour LEDs which present the car's charging status.

On start up, the socket is bathed in blue light. This begins to flash as charging commences. When completely charged, the display turns green, then flashing green as the solenoid is disengaged. A potential fault in the system is indicated by either constant or flashing red light.

Charging can be halted via a switch located adjacent to the plug. The process can also be operated inside the vehicle using controls accessed beneath the centre console, for example when induction charging is taking place.

CENTRE CONSOLE DETAIL

A key identifier for Phantom EE is the design of the centre console charging and display, sited below the central arm rest. A simple switch is used to start and halt charging, while the display itself features a bright plate with an image of a battery, lit by LEDs.

Reflecting the lights applied to the exterior charging point, this image changes colour according to the charge status of the car. A blue-lit battery shows the vehicle is on standard charge, while pulsating blue indicates that inductive charging is taking place. Green indicates a fully charged battery while red notifies engineers of a potential fault in the system.

CORINOVA LEATHER

"At Rolls-Royce we pride ourselves in producing an authentic and natural product for customers, the quality of which is second to none. Seton Corinova is an experimental vegetable-tanned leather that allows us to celebrate more of the curves, creases and other features that are part and parcel of the life of the animal. It's a more sympathetic process that stretches our understanding of Rolls-Royce interior expectations. Owners' reactions will prove fascinating during the tour." - Andrew Monachan, Rolls-Royce Motor Cars General Manager, Leathershop.

Interior wood veneers present Phantom owners with unique grains, patterns and detail adding weight to the fact that every model leaving Goodwood is as unique as the finger print of its owner. Phantom EE takes this concept a step further.

Its leather interior is derived from a natural vegetable tanning process christened Corinova. This gives life to the car, adding definition to the seats, floor and arm rests.

Most leather produced for automotive applications is chrome tanned. This is an important constituent that helps to stabilise animal hides and transfer collagen into leather fibres. The barrel-dyeing process used to colour Phantom interior leathers gives a rich, uniform pigmentation while maintaining the natural feel and softness.

An experimental leather, Corinova distinguishes itself by being entirely chrome free. It starts with a preparation of Glutardialehyde to prepare for tanning. Chestnut extract, sustainably sourced from Southern Europe and Tara powder from crushed fruit of the Tara bush in South America are used for drum-spun colouring. Fruits are harvested without damage to the plant and the product is finished with a combination of natural binders and high tech polymers.

The process lends itself only to certain earthy colours - in the case of Phantom EE a chestnut colour for seat covers and Quebracho Brown for other areas such as the floor and trunk lining, both of which are made of durable saddle leather.

As well as aesthetic differences, Corinova leather presents a number of practical benefits. It uses less paint finish than in standard chrome-tanned leather and creates less waste. It negates the use of petrol-refined products and with further development, it may be possible to use recycled Corinova leather in agriculture to aerate soil.

Rolls-Royce fully expects perceptions to be challenged and first impressions will no doubt focus on appearance, as features that define the life of the animal are more clearly visible in areas like seats and armrests than in production Phantom interiors. A change from the sumptuous finish applied to Phantom leather may imply a compromise to some owners, but others may welcome distinguishing features that stretch individualisation for Rolls-Royce Phantom models ever further.

As well as gauging owner feedback, the leather will be tested for its durability and performance after several months on tour.

INTERIOR PANELS


The interior of Phantom EE represents a departure from the traditional wood sets that define the majority of cars delivered to customers, providing a unique finish to the car. It features a distinctive aluminised foil weave that lifts the environment of the interior, contrasting sharply with the darker natural leather within. As is the case with Corinova leather, the aim is to challenge traditional perceptions of what might constitute a Rolls-Royce interior design scheme.

BATTERY PACK

Phantom EE is thought to have the largest passenger car battery in the world. Peak current is 850A, delivered at 338V DC. Overall capacity is 71kWh.

The pack is comprised of large-format NCM pouch cells. NCM (Lithium-Nickel-Cobalt-Manganese-Oxide) is a variant of lithium-ion chemistry that has particularly high energy and power densities.

The Phantom EE battery pack houses five modules of cells, a 38-cell module, a 36-cell module, and three smaller ones of ten, eight and four arranged in various orientations within an irregular shaped unit. This resembles the overall shape of the original engine and gearbox.

Each of the 96 cells was individually tested before assembly into modules to determine their characteristics and capacity. Sub-assemblies were further tested under load to verify that the power connections between each cell perform to specification.

The electronic sensing units for each group of cells were tested and calibrated prior to assembly and put through a rigorous temperature cycling regime designed to provoke failure of weak components. The main electronic box, which contains the switching and control gear, was tested in isolation from the other components to verify correct operation.

Three separate charger units (3kW each) are fitted to the battery, which allow both single-phase (20 hours) or three-phase charging (8 hours); for a passenger car this is unique. A fourth induction charger is also fitted to enable wireless charging, a technology being trialled in Phantom EE.

The battery pack would be expected to last over three years were it to be used every day. Part of the programme however will be to test this assumption in a real world environment and deliver a more robust answer to the question of battery lifespan.

INDUCTION CHARGING

Concerns about lack of available re-charging infrastructure in towns and cities are well documented and critics of electric motoring point to the additional inconvenience of trailing cables connected between power source and vehicles.

To present Rolls-Royce owners with a vision of a potential solution to these problems, Phantom EE is testing a technology called induction charging. This allows re-charging to take place without any physical connection, delivering greater convenience for owners and hinting at the potential for a network of remote charging facilities.

There are two main elements to induction charging; a transfer pad on the ground that delivers power from a mains source and an induction pad mounted under the car, beneath Phantom EE's battery pack. Power frequencies are magnetically coupled across these power transfer pads.

The system is around 90 percent efficient when measured from mains supply to battery and it is tolerant to parking misalignment. For example, it is not essential to align the transmitter and Phantom receiver pads exactly for charging to take place. While pads are capable of transmitting power over gaps of up to 400mm, for Phantom EE the separation is in the region of 150mm.

The coupling circuits are tuned through the addi­tion of compensation capacitors. Pick-up coils in the receiver pad are magnetically coupled to the primary coil. Power transfer is achieved by tuning the pick-up coil to the operating frequency of the primary coil with a series or parallel capacitor.

The pick-up controller is an essential part of the technology because it takes power from the receiver pad and provides a controlled output to batteries. It is required to provide an output that remains independent of the load and the separation between pads. Without a controller, the voltage would rise as the gap decreases and fall as the load current increases.

The transmitter pad has been constructed to shield magnetic fields to prevent EMI egress to bystanders and the system operates well within internationally agreed limits.

ELECTRIC CARS AND THE FOUNDING FATHERS OF ROLLS-ROYCE

Charles Rolls, Henry Royce and Claude Johnson played their part in an electrical revolution that pre-empted the establishment of internal combustion as the dominant car engine technology.
Henry Royce had developed a career as an accomplished electrical engineer before turning his expert hands to car manufacturing.

His business F.H. Royce and Co, which began selling simple lights and bell sets in the 1890s, became prosperous through the design and delivery of dynamos, electric motors and industrial cranes. Royce's many innovations include the patent for the bayonet bulb holder, a design that endures today.

One of Royce's clients was Pritchett and Gold, a company based in Feltham in Middlesex. As well as manufacturing accumulators they had developed a two-seater electric car, at least one of which was powered by a Royce electric motor.

The Honourable Charles Rolls also toyed with electric motoring in the years before the two men met. He had negotiated for the selling rights of an electric brougham, through C.S Rolls and Co, in Conduit Street, London which latterly established exclusive rights to sell Rolls-Royce models.

It is likely that this car was part of the City and Suburban Electric Car Project, a joint venture of two men, Paris Singer and one Claude Johnson. The project had a short life and Johnson left to join the rapidly expanding business of Rolls, latterly taking the role of managing director of Rolls-Royce. He became known as ‘the hyphen in Rolls-Royce', with a pivotal role in its success.

Charles Rolls was on record outlining the merits of electric drive-trains - as well as raising prescient concerns about range and re-charging. He regarded a model called the Columbia as the best of its type, commenting in Automobile Journal:

"They are perfectly noiseless and clean. There is no smell or vibration and they should become very useful for town use when fixed charging stations can be arranged. But for country use I do not anticipate they will be very serviceable - at least not for many years to come."

Later, when the first exports of petrol powered Rolls-Royce models were made to America, some authorities refused to believe they were not electrically powered, thanks to their legendary near-silent running.

In the 21st Century silence remains a key signature for Rolls-Royce cars. Other attributes of all-electric drive-trains also allude to famous Rolls-Royce characteristics. Power at low speeds is one example.

Thanks to improvements in battery technology, it may be that the serviceability to which Rolls referred more than a century ago is now sufficiently developed to re-visit all-electric motoring as an option.

And to pose a 21st Century question of customers, enthusiasts and the media:
Electric luxury - can it be perfection or does it present an unacceptable compromise for Rolls-Royce Motor Cars?


Monday, February 28, 2011

2012 Rolls-Royce Phantom 102EX Electric at GENEVA 2011

Volkswagen Giugiaro Tex Concept


ITALDESIGN GIUGIARO PRESENTS TEX AND GO!:
THE VOLKSWAGENS OF THE FUTURE FOR THE A0 SEGMENT


A Coupé and MPV powered by the Blue-e-motion and Twïn Drive systems mark the debut of the company based in Moncalieri, Italy within the Volkswagen Group.

The world preview of GO! and Tex at the 81st edition of the International Motor Show in Geneva marks the debut of Italdesign Giugiaro as part of the Volkswagen Group.
The two prototypes are the Giugiaro's interpretation for the Volkswagens of the future designed for the A0 segment.

"Italdesign is a figurehead of Italian design and engineering creativity. We have been working together closely in a spirit of partnership for many decades, said Prof. Dr. Martin Winterkorn Chairman of Volkswagen Group. As a full member of the global Volkswagen Group, Italdesign, now more than ever, is a creative center for fresh ideas and new concepts for our brands. The integration of Italdesign is a building block in our effort to take Volkswagen to the top of the automotive industry by 2018. That is why the outstanding know-how and capacity of Italdesign in design and engineering are so important for our Group".

"We conducted a research study imagining the Volkswagens of the upcoming future, cars for the most part designed for the city with our highly personal interpretation, for our debut within the Group," declared Giorgetto Giugiaro. "Go! is an MPV that continues that subject owing to its improved ergonomics and passenger room while keeping the smaller exterior size that has distinguished a large part of my career. It is a vehicle that is no more than 4 metres long, is eco-friendly, and is able to guarantee the utmost in terms of ergonomics and luxury, with an abundant loading volume. Tex on the other hand is our interpretation of tomorrow's sporty Volkswagen."

The two concept cars are powered by Volkswagen systems. Blue-e-motion is the totally electrical system of the Go!, while the plug-in Twïn Drive hybrid is fitted on the Tex. Thanks to these technologies, the two prototypes guarantee performance ever-attentive to the environment. The Go! is able to travel 240 km at zero emissions, while the Tex can run 35 km in electric mode.

"The Go! and Tex are the first concrete result of Italdesign Giugiaro's integration within the Group," added Walter de' Silva, Head of VW Group Design. In actual fact, they depict the Group's philosophy and at the same time the reason that led us to want Italdesign to join us. These two concept cars are the outcome of an independent research study carried forth by Giorgetto and Fabrizio Giugiaro on a topic strategic for the Group: solutions for the urban mobility of tomorrow. The GO! and Tex come out of the discussions and observations that Volkswagen and Italdesign have been working on. The first is a people mover that is compact but very roomy. The coupé instead follows Volkswagen's long sporting tradition".

ONE ARCHITECTURE, TWO PROPOSALS: MADE IN WOLFSBURG
The Go! and Tex have a least common denominator labelled Volkswagen.
These platform proposals, developed by Volkswagen, show the future potential of the modular transverse architecture (MQB= Modularer Quer-Baukasten). The first vehicles, based on the MQB, will be launched next year.

In future this architecture will indeed be able to house an electrical plug-in system, a hybrid system, a classical internal combustion engine powered by petrol, diesel, LPG, CNG and even hydrogen fuel cells without distinction.

EXTERIORS
Designed for the city, the Go! together with the sporty Tex could increase the wide range of Volkswagen products to A0 segment even more.
With the same wheelbase as that of the Passat – 2700 mm – the Go! is a hatchback boasting a total length of 3990 mm thanks to its smaller overhangs. The battery pack is housed underneath the front and rear seating positions. This vertical package allows for the Go! a weight distribution of 58% on the front and 42% on the rear.

"With this exercise I wanted to continue the design of a car able to offer maximum utilisation of its interior," Giorgetto Giugiaro stated. "The project started with the 1976 New York Taxi, and continued with the 1978 Megagamma, the 1998 Structura and then came to maturity with the 2010 Emas. The Go! is less than 4 metres long, but offers more passenger room than that of a large SUV and has a 400 up to 525-litre boot, ideal for city use."

The design of the exteriors is dominated by extensive glass surfaces, in clear contrast with the trends of recent years of providing cars with increasingly smaller windows. In addition to filling the passenger compartment with light and giving its occupants the chance to thoroughly enjoy city scenery, also thanks to its totally glass roof, this design offers the driver with maximum visibility while driving.
The A pillar is in particular considerably farther forward than its traditional position, and the bulk of the door mirrors is eliminated by using cameras. The side windows also extend beneath the waistline - markedly high and optically taken up again by adding a longitudinal structure that crosses the side windows - drawing on a solution introduced in 1988 with the Asgard prototype.

This lets the driver benefit from maximum visibility even during manoeuvres and when taking tight curves.

Like in the Emas, only the lower part of the windows (the part beneath the longitudinal structure) can be electrically lowered. This solution reduces the weight that the electric window mechanism has to support to a minimum, and is in any case necessary for meeting all of the essential operations such as paying tolls or refuelling.

The seat H point (corresponding to the passenger hip position) is located higher than that of mass-produced cars but lower than that of an SUV. This solution makes getting in and out of the passenger compartment extremely comfortable.

An electronically driven system pushes the door outwards and pulls it back parallel to the vehicle body for gaining access to the rear seats. This mechanism, which draws on the one used on the VW Milano Taxi (presented in May 2010), offers the advantageous practicality of sliding doors but without sacrificing their section (room is found inside for a comfortable armrest) and makes it possible to do away with the unattractive tracks on the body typical of this solution.

Without sacrificing the family feeling typical of the Golf and the Golf Plus, the Go! offers innovative solutions both in the front and back that combine aesthetic pleasure with practical functionality.

The grille, dominated by the large VW badge in the centre, incorporates the front light clusters with Xenon/LED technology. The air intake is placed at the height of the fog lights and horizontally splits the front spoiler, adjusting the air flow necessary for cooling the front electric motors.
The tailgate reintroduces the theme of the glass surfaces interrupted by a longitudinal insert that not only optically takes up the theme characterising the side view, but conceals the windscreen wiper and rear cameras that turn on when the reverse gear is engaged.

To make loading luggage easier, the tailgate can be operated electronically for both opening and closing. A sensor that activates the opening mechanism by simply moving the foot is also fitted underneath the bumper.
The light clusters are positioned under the glass surface and are invisible when the panel is off. When the tailgate is opened, they are repeated by two additional taillights located in the lower part of the bumper, beside the rear air intake, which also house the rear fog lights.

INTERIORS
Ergonomics is certainly the word that best describes the concept of the Go!'s interiors.

All of the elements have been styled and designed while keeping man in mind. Every single detail - from entering the car and using its controls to the shape of the seats and the instruments - has been designed from an ergonomic point of view.

The driver and three passengers sit on four identical and electronically adjustable seats. Those in the rear can also be folded down using an electronic adjustment mechanism and with remote control, and they form a single surface on the rear floor panel level to increase the maximum loading volume to 525 litres.

A storage console/sliding armrest sits between the front seats. If completely pulled back, it aids the driver when getting out from the passenger side. This solution is particularly useful if parking is narrow or if there are objects blocking the opening of the left door.

What's really new is the unprecedented positioning of the control panel. Once again with maximum ergonomics in mind, the most important information such as speed, fuel consumption and fuel level is placed at the base of the windscreen, in the rear of the deep dashboard. Giugiaro was extremely keen on this solution. "With the controls positioned in this way, the driver does not have to continuously change his focal length between the foreground of the dashboard and the long surface of the road in front of him. With this layout he can keep his eyes set on the road, distraction-free, and have all of the information necessary for driving available at all times."

The monitors of the rear view cameras are also at the base of the windscreen, but at the two side ends.

The dashboard contains a touchscreen monitor in the classic position. It groups together all of the auxiliary controls, the infotainment system, the satellite navigation system and, when the reverse gear is engaged, the images of the camera for manoeuvring.


ECO-FRIENDLY ESSENCE
The Go! is equipped with the electrical Blue-e-motion system totally designed and developed by Volkswagen.
Ideal for city traffic, the blue-e-motion system lets the Go! travel roughly 240 km in the combined cycle without emitting even a single gram of CO2.

Besides the one for cars, Walter de' Silva, Fabrizio and I share another passion: the one for Italian comics hero, ranger Tex Willer, said Giorgetto Giugiaro. We wanted to name the coupé after the legendary ranger, as a homage to the men who wrote and drew important pages on our popular culture. Thanks to Mr. Sergio Bonelli's kindness and helpfulness we finally could realize this unique operation. And, in the end, our prototype, just like the real Tex, has a strong heart and a gentle soul».

EXTERIORS
Four real seats, front wheel drive and a gently aggressive line, the Tex fits into a long tradition of Volkswagen brand sports cars.
"We designed the Tex in actual fact thinking to the Volkswagen sports cars of the years to come," commented Fabrizio Giugiaro, deputy chairman and style manager of Italdesign Giugiaro. "We intentionally kept a family feeling that would immediately identify it as a Wolfsburg product close to production. No visionary or futuristic choice was made, but it is rather a natural evolution of today's canons with the addition of a few technologies that will shortly become available on the market."

Compact, very low (1355 mm in height) and 1750 mm wide, the Tex at first glance looks like a sports car with great grip on the road, stressed by the large 19" wheels at the ends and generous wheel arches.
Its set-up is that of a classic two-door coupé whose clearly sporty personality is emphasised by an aggressive front and its rear flaunting two spoilers.

The side view is marked by lines that sculpt the doors next to the air exit of the front wheels and its waistline that rises up toward the tail.

The front is distinguished by a slender grille that encloses the light clusters in an unprecedented trapezoidal shape and three air intakes in the bumper/spoiler zone, necessary for cooling the brake discs and 1.4-litre turbo engine. The VW badge sits in the centre of the grille and is optically underscored by the V-shaped groove of the bonnet. Windscreen and roof are a single piece of glass that becomes dark electronically.
The large rear window dominates the rear and accommodates two spoilers, with the windscreen wiper housed in one at the bottom. Like the Go! previously, the light clusters are under the windscreen and are invisible when the panel is off. Access to the luggage compartment is permitted by raising just the rear window and, once it is open, the light indicators are repeated by the two supplementary tail lights located in the lower part of the bumper, at the sides of the rear air intake that also contains the rear fog lights.


INTERIORS
As in the Go!, the Tex's interiors have also been designed to offer the occupants maximum space and maximum ergonomics. The passenger compartment is definitely geared to the driver. All of the instruments are positioned in a functional manner and wrap around the driver so as to leave the passenger an incredible sensation of space. The large dashboard containing the controls and driving information grows smaller as it approaches the door panels so as to make getting in and out of the passenger compartment easier.

"We designed the interiors so that the first sensation would be that of entering a sports car," continued Fabrizio Giugiaro. "The driver has to be able to find himself, and this is why we chose finish details and elements that refer back to the classic idea of the sports car. We have adopted the large gear knob and leather interiors, with the speedometer and rev counter situated in the classic position behind the steering wheel and with 'analogue' graphics, precisely for that reason".

If the outfitting is classic in style, the contents are instead full of the maximum technology available today. All of the controls and indicators are housed in LCD screens, as is the infotainment console put on a touchscreen in the centre of the dashboard, set in a transparent structure that lays bare the structure.

The dashboard is separated from the central tunnel, an unusual solution for a car, but wraps around the driver with a graphic and colour continuity.

The two rear seats are independent and can be folded down.

STRONG HEART, GENTLE SOUL
The Tex is fitted out with the hybrid plug-in system called Twïn Drive conceived and developed by Volkswagen.

The Twïn Drive couples a 1.4-litre turbo internal combustion engine with a battery-powered 85 kW peak electrical system capable of developing 400 Nm when used combined together.

It has front-wheel drive with a 7-gear Direct Shift gearbox with gearshifting on the steering wheel.

Its performance is that of a pure sports car. The Tex is able to reach 100 km/h from a standstill in about 6 seconds, and reach a top speed of 220 km/h.

However, in this case sportiness and eco-friendliness are not worlds apart. The Tex is able to cover approximately 35 km in the totally electric mode, mostly enough for getting around during the day.