Purpose

I will try my best to provide detailed info on various cars and what is like to live with them, I have already produced a few for Jaguar-car-forums, I will do my best to be unbiased, but it will be hard for some cars. I will re-produce press releases and copy from other motoring news.

Tuesday, 5 March 2013

GENEVA - Porsche 911



  • Purpose-built normally-aspirated 3.8-litre flat six engine develops 475 hp, rev limit 9,000rpm
  • Seven-speed PDK double-clutch transmission with unique steering wheel paddle-shift
  • Innovative active rear-wheel steering increases cornering agility and enhances high speed stability
  • Acceleration from 0-62 mph in 3.5 seconds; top speed 196 mph
  • Sub-7 min 30 secs lap time around Nürburgring-Nordschleife
  • Available to order 4 March, priced from £100,540 – first UK RHD deliveries November 2013

The Porsche 911 celebrates its 50th anniversary in 2013, and there is perhaps no better way to begin the celebrations than by opening a fresh chapter in the arena of high performance sports cars with the new 911 GT3.


In 1999, the then-new 911 GT3 set the benchmark for road-going sports cars with the fastest ever production car lap of the Nürburgring-Nordschleife, and established a reputation for itself as the definitive circuit-bred sports car. A total of 14,145 GT3 cars have since been built, over four generations.

Now, the fifth generation of the 911 GT3 makes its debut at the Geneva Salon, and is set to take on the pole position among thoroughbred Porsche sports cars with naturally aspirated engines.

The engine, transmission, body and chassis are entirely new, extending the breadth of ability offered by the previous 911 GT3 by an impressive margin. Together, they ensure that the proven characteristics of this track-inspired sports car are preserved, while also allowing more sophisticated day-to-day suitability – not to mention a highly emotional ‘fun factor’.

The powertrain of the new 911 GT3 comprises a 3.8-litre flat engine developing 475 hp (350 kW) at 8,250 rpm, a Porsche Doppelkupplung (PDK) double-clutch gearbox, and high-traction rear-wheel drive.

The six-cylinder engine is based on that fitted in the 911 Carrera S, but shares only a few common parts. All other components, particularly the crankshaft and valve train, were specially adapted or developed for the GT3. For example, Porsche is once again using titanium connecting rods attached to forged pistons. These basic modifications set the stage for an extreme high-revolution engine capable of reaching up to 9,000 rpm. The dual-clutch gearbox is another feature specially developed for the GT3, with characteristics inspired by the sequential gearboxes used in motor racing, thus granting the driver further benefits when it comes to performance and dynamics.

The new 911 GT3 is designed for further gains in precision and lateral dynamics throughout. Porsche is using active rear-wheel steering for the first time. Depending on the speed, the system steers in the opposite or the same direction as the front wheels, thereby improving agility and stability. Among the other new driving dynamics features are the electronically-controlled, fully variable rear differential lock, and the dynamic engine mounts.

The height, toe and camber of the newly-developed all-aluminium suspension is still adjustable. The new, 20-inch forged alloy wheels with central locking are used for optimal contact with the road. Traditionally, the 911 GT3 comes as a two-seater based on the lightweight body of the current-generation 911 Carrera. However, the front and rear part are always model-specific. For this latest generation, the 911 GT3 is 44 millimetres wider than a 911 Carrera S across the rear axle. Another clear identifying feature is the large, fixed rear wing. This makes a decisive contribution to the exemplary aerodynamics of the new 911 GT3, which combines low air resistance with a further increase in negative lift (downforce).



As a result, the new 911 GT3 once again sets fresh record performance values. At full acceleration from a standstill, 0-62mph is passed after just 3.5 seconds, and 124 mph in less than 12 seconds. The top speed of 195 mph is reached in seventh (and thus top gear) of the PDK transmission. The lap time on the Nürburgring-Nordschleife is even more impressive: the new 911 GT3 completed this track, commonly regarded as the most difficult in the world, in less than 7:30 minutes. While every Porsche is proven around the Nürburgring, this credential is particularly relevant for the new model as around 80 per cent of 911 GT3 customers also drive their cars on race tracks.

Completely new sports engine with high-revving concept

The Porsche Motorsport Department has an entirely new engine for the 911 GT3. This characteristic flat-six is a synthesis of the previous GT3 high-performance engine, the potential of which had been largely exhausted, and the new powertrain generation of the current 911 Carrera series. For instance, the new engine comes with typical motor sports characteristics, such as dry sump lubrication, a high-revving capability and forged titanium components. These are combined with cutting-edge technologies of production engines such as direct petrol injection, demand-controlled oil pump, and lightweight design and materials. The resulting engine weighs around 25 kg less than the previous unit, and exudes motor sports performance values, thanks to a power output of 125 hp/litre of displacement.

The structural changes to the base engine had one principal goal: to develop the characteristic high-revving concept of the 911 GT3 further still. High engine speeds enable high performance gear changes, whereby the revolutions remain in the range of maximum power after shifting up.

The consistent development focus made it possible to increase the maximum engine speed to 9,000 rpm, enabling the 911 GT3 to reach peak performance values among street-legal vehicles.



Valve control by rocker lever

The foundation for this outstanding performance is the low moving mass of the crankshaft and valve train. As with the previous model, the new 911 GT3 features forged aluminium pistons and forged titanium connecting rods. Forging these highly stressed components means that they are particularly strong, and yet lightweight. Furthermore, besides the hollowed valves, the new valve rocker arm control was a prerequisite for getting up to very high speed ranges. The low moving masses mean that the 911 GT3 engine also has unique speed dynamics with excellent response across the entire rev range.

The focus of the new development was the cylinder heads, which differ fundamentally from those of the base engine, and were specifically developed for the 911 GT3. To enable peak performance and engine speeds, the new cylinder heads feature large intake and exhaust ports, large valves, and separate valve control with rocker arm. Cooling and oil supply are also particularly powerful to account for the high loads.

The valve actuation via rocker arms with hydraulic valve clearance compensation is another unique feature. The concept embodied in the 911 GT3 engine originates from racing and allows very high engine speeds on the one hand, while the other cams with performance-oriented profiles permit large strokes and long valve opening times. The advantage of the rocker arm control is mainly in the low moving masses that allow high engine speeds, and the large contact area between the cam and rocker arm.

As was the case in the previous-generation engine, Porsche is once again using the variable valve control system VarioCam. The continuous angle adjustment of the camshafts allows both high torque and high performance levels, and contributes to the meeting of emissions laws. The vane adjuster is made of aluminium to reduce weight. Each cylinder head is equipped with an integrated actuator for one of the high-pressure pumps of the direct petrol injection system. Unlike the base engine, which is supplied by an axially-arranged high pressure pump, the new 911 GT3 therefore comes with two radially-driven high pressure pumps.

First GT3 engine with direct petrol injection boosts power, efficiency

For the first time, Porsche has opted for a 911 GT3 engine with direct petrol injection. Compared with the previously used conventional manifold injection, this technology has proven itself in Porsche sports cars, since it permits higher power and torque, as well as yielding higher efficiency and lower CO2 emissions.

For use in the 911 GT3, this technology has been developed further, specifically with performance in mind, and features a specially developed injection system with multi-hole injectors and significantly higher injection pressure. Compared with the swirl injectors of the 911 Carrera models, multi-hole injectors provide a larger usable range of fuel quantity injected. The new GT3 comes with six-hole injectors, which permit sensitive injection with small throughputs and high maximum throughput for high engine performance.

The two fuel pumps generate a system pressure of up to 200 bar. This means more fuel can be injected, which is also sprayed more finely. As the designated sports car for the race track, a dry sump oil supply continues to be used for the 911 GT3. This meant that the oil pan had to be entirely re-developed. Just like the base engine, the high-performance engine is equipped with four suction points in the cylinder heads, an extraction in the oil pan, and an oil pressure pump. The engine of the 911 GT3 has two additional suction points in the oil pan at the front and rear, so as to be able to safely transfer oil to a separate oil tank during heavy acceleration and braking phases.

Dynamic engine mounts fitted as standard

The standard equipment of the new 911 GT3 now includes a more advanced generation of the previously optional dynamic engine mounts, which were specially tuned. The controller uses the present 911 GT3 sensors to detect a particularly dynamic driving style, and consequently stiffen the normally elastic engine mount. For this purpose, the bearings are filled with a sealed liquid containing magnetic particles, which changes in viscosity when an electric field is passed through. This emphasises comfort in everyday driving; on the race track, on the other hand, disturbing mass impulses from the engine during cornering and braking are compensated. Another advantage is the improved traction when accelerating from a standstill.



The intake system of the new 911 GT3 engine is also a synthesis of high-performance components that are based on the basic design. The air inlet is a specific plenum on the rear engine lid, which operates according to the ram-air principle and uses the air flow across the body for increased intake manifold pressure. From the double-flow air filter, this is followed by the flow and resistance-optimised air intake system, which was largely adopted from the current-generation 911 Carrera up to the throttle valve.

The plastic resonance intake manifold is also completely new. It is not only lighter than the aluminium system of the predecessor model, but also larger with further aerodynamic improvements. The induction system principle already ensured a fuller torque curve in the previous model. This was further developed and specifically tuned for the new engine.

As was the case with the predecessor, the new 911 GT3 also offers the driver the possibility of increasing the pull of the engine in the mid rev-range at the press of a button. When activated, the back-pressure in the sports exhaust system is further reduced, improving gas exchange and thus increasing the torque between 3,000 rpm to 4,000 rpm by up to 35 Nm.

Switchable sports exhaust system with special exhaust manifolds

Naturally, the new 911 GT3 still comes with a sports exhaust system, which was largely adopted from the previous model. This means that a high-performance system with powerful fan-type exhaust pipes and two catalysts is used, which are close to the engine and integrated into the manifolds. The two switchable front silencers and a common rear silencer with two central tailpipes ensure that the 911 GT3 meets the requirements for road use.

Porsche Doppelkupplung (PDK) with special 911 GT3 layout

The dual-clutch transmission (Porsche Doppelkupplung -- PDK) originates from Porsche racing, and with the 911 GT3 it returns to the racetrack. The motor sports engineers have revised the PDK extensively both in terms of mechanics and control technology for the new car. The resulting transmission provides the driver with all the essential driving dynamics of the previous manual transmission, complemented with the performance benefits of the dual-clutch transmission. During race track use, it can therefore be driven much like a sequential manual gearbox – with even more performance and emotional driving fun.

Two modes are available to the driver: manual shifting or the adaptive shift programme. Manual shifting is achieved using two paddles on the steering wheel, the left-hand for upshifts and the right-hand for downshifts. Shorter shifting travel and optimised actuating force result in even faster gearshifts with concise feedback, similar to the operating characteristics of the 911 GT3 Cup race car. Alternatively, the driver can also shift using the selector lever, with a shift pattern based on that used in professional motor sports: shifting up is done by pulling the lever back, shifting down by pushing it forward.

Ready for the racetrack: ‘lightning shifts’ with extremely short reaction and gearshift times

Gear-shifting strategy and response times of the 911 GT3 PDK have been consistently designed for maximum performance, and both are fundamentally different to other Porsche sports cars. This becomes apparent to the driver during manual upshifts in the form of a ‘lightning shift’, which permits reaction times of less than 100 milliseconds. To enhance driving performance, lightning shifts are implemented with a torque overshoot, and the gear change is conducted with a highly dynamic adaptation of the engine speed to the newly selected gear. The switching times are in a range that was previously reserved for the world of motor sports.

Paddle-neutral: the de-clutching function of the 911 GT3 PDK

The dynamics of a sports car driven to achieve optimum lap times is also determined by the clutch. That is why the PDK comes with a ‘paddle-neutral’ feature. If the driver pulls both shift paddles simultaneously, the clutches of the PDK are opened, and the flow of power between the engine and drive is cut off. Once both shift paddles are released, the clutch engages very rapidly if the PSM is switched off. With PSM switched on, the clutch is closed quickly, but in a less pulsed manner.



This function offers two principal advantages: the driver can, for example, neutralise the driving behaviour of the vehicle when understeering in a wet curve by pulling the paddles, and thus ‘dip the clutch’ and re-direct additional cornering force to the wheels of the front axle.

The second aspect relates to individual influence of the driving dynamics due to the pulsed onset of the driving force when engaging the clutch. Comparable to a traditional clutch with a manual transmission, the rear of the vehicle can be consciously destabilised for dynamic leaning into the curve. Furthermore, the driver can use the paddle-neutral for accelerating from a standstill. As is the case with manual transmission vehicles, the driver alone decides on how to accelerate using clutch and accelerator foot, without any assistance from drive and dynamic handling control systems.

Adaptive shifting with sports strategies

For the first time, the PDK provides the driver of the new 911 GT3 with the alternative of leaving gear shifts to the adaptive transmission control. In principle, the PDK of the new 911 GT3 only comes with two switching strategies: Sport and Race Track. This means that the gear changes are always fast. Gear shifts and shift points are adapted to the dynamic style of the driver. Race Track mode is activated by pressing the correspondingly labelled button on the centre console. In this mode, the PDK uses shift maps that are tailored to the requirements of pure race track operation. Gears are held longer, and upshifts occur at higher engine speeds. The race track optimisation also entails that the shifting programme is still performance-oriented, even at a moderately sporting driving style. The car is therefore always running at the performance-oriented operating points, and increased traction is available at any time without the driver having to shift gears.

Shorter gear ratios

The mechanical changes primarily relate to the internal structure of the PDK. For instance, the use of lighter gears and wheels optimally support the engine speed dynamics of the high-revving motor. Moreover, the total weight of the PDK transmission has been reduced by about two kilogrammes. Shorter gear ratios provide completely new characteristics, meaning that the maximum speed is reached in the seventh and highest gear. In conjunction with the rear axle ratio, which was shortened by 15 per cent, the new 911 GT3 therefore comes with significantly shorter gear ratios than the transmission ratios of a 911 Carrera models – in all gears.

Even faster lap times: 911 GT3 with new rear-wheel steering

Just as much as the engine, the chassis of the new 911 GT3 combines the strengths of the previous design with those of the current 911 Carrera chassis. The extended wheelbase and wider track width improve the support base, thereby increasing both longitudinal and transverse stability.

All developments had only one goal in mind, namely to increase the driving dynamics even further. With the new car, the performance package of the 911 GT3 has been extended by yet another new feature: active rear-wheel steering. The system comprises two electro-mechanical actuators, which are used at the left and right side of the rear axle instead of the conventional control arms. These allow the steering angle of the rear wheels to be varied by up to about 1.5 degrees, depending on the speed.

At speeds of up to 31 mph (50 km/h), the system steers the rear wheels into the opposite direction of the front wheels. The 911 GT3 enters the curve faster, which permits more dynamic cornering. The ‘virtual shortening’ of the wheelbase by around 150 millimetres also results in significant improvements in agility and everyday usability; the turning radius is reduced, and manoeuvring and parking become much easier.

At speeds above 50 mph (80 km/h), the system steers the rear wheels parallel to the front wheels. This results in a geometric virtual wheel extension of about 500 millimetres, thereby increasing stability particularly at high speeds. Simultaneously, the side force on the rear axle triggered by the steering input of the driver is built up much faster than with a non-steered rear axle, which leads to a more spontaneous and harmonious initiation of the change in direction.

This variability means that the rear-wheel steering contributes significantly to resolve the inherent conflict of driving dynamics between agility and driving stability. This results in advantages when it comes to agility, driving safety and practicality, as well as increased driving performance. The rear-wheel drive thus played a decisive role in the further improvement of lap times at the Nürburgring.

Independent all-aluminium chassis lowered by 30 millimetres

The chassis of the new 911 GT3 is a largely new design based on the chassis of the 911 Carrera, lowered by 30 mm. The Porsche Active Suspension Management (PASM) variable damping system with two pre-selected specially tuned maps is part of the standard equipment, as was the case with the predecessor model. At the front axle, independent wheel mounts, as well as extended wheel bearings and hubs, provide greater stability and strength. The transverse control arm at the front axle is also a new development that yields additional stability and reduced weight.

The consistent lightweight design also involves to the use of lighter springs and damper struts with an aluminium outer tube. These two measures alone resulted in a weight reduction of over three kilogrammes compared to standard components.

The multi-link rear axle was also largely developed solely for the 911 GT3. Again, independent wheel mounts and wheel hubs, as well as larger mounts, result in increased stability and strength. The subframe of the car, including side panels and control arms, are exclusively made from a hollow aluminium casting, which brings about a weight saving of around 3.9 kg, as well as increased strength. The rear axle now also uses a spring-damper element with a so-called helper spring.

Leaving curves with more traction: PTV Plus

The rear axle of the new 911 GT3 is equipped with Porsche Torque Vectoring Plus (PTV Plus) as standard. The system, which was adapted specifically for the GT3, consists of an electronically-controlled, fully variable locking rear differential and selective braking interventions at the rear wheels. Together, these features provide high traction on changing road surfaces, an improvement of lateral dynamics, more precise cornering, and increased driving stability.

The electro-mechanical steering system was also modified for the new car. The use of characteristics specially developed for the 911 GT3 ensures that the direct steering feel with an appropriate response was preserved in all conditions.

The bespoke wheels complete the package of measures for a further improvement of driving dynamics. Compared with the 19-inch wheels of the previous model, the current 20-inch GT3 wheels are not just one inch bigger, but also half an inch wider at the front. The tyres on the front axle are also wider. The new 911 GT3 therefore rolls on 9 J x 20 wheels with 245/35 ZR 20 sports tyres on the front axle, and 12 J x 20 wheels with 305/30 ZR sport tyres on the rear axle.

The wheels are made of forged aluminium for the first time, offering low weight and high strength. Despite their larger dimensions, the total weight of the wheels including special UHP (Ultra High Performance) tyres is less than that of the previous model. This reduces not only the vehicle weight, but also unsprung mass to enhance driving dynamics. Again, the wheels come with a central locking system, which has been optimised further.



Further increase in braking power

Quintessentially Porsche: In the new 911 GT3, more dynamic driving performance goes hand in hand with further improvements in braking performance. At the rear axle, larger brake discs of 380 mm diameter are deployed, the ventilation holes of the discs have been redesigned, and cooling was improved by ways of additional brake cooling ducts on the rear axle. To further reduce unsprung weight, the new 911 GT3 offers the option of racing-derived ceramic composite brake discs with friction rings made of cast iron and aluminium pots, just like its predecessor. The two components are still connected by stainless steel pins.

Body and aerodynamics

The wide body, the special front and rear design with a large wing, and the larger wheels make the new 911 GT3 unmistakable at first glance. In addition, the new high-performance sports car is also available with a new generation of headlights that exclusively consist of LED light sources, giving the coupé a special appearance.

In visual terms, the full LED headlights differ significantly from the standard Bi-xenon system. Instead of a cone-shaped light housing with round projection lens, two tube-shaped light housings are arranged in stages, and the lens contour is truncated at the top and bottom. The basic module in the upper tube is part of the low beam and illuminates the road in a wide and homogeneous manner. The second part of the low beam is located underneath in the Porsche Dynamic Light System (PDLS). Thanks to its swivel function and variable light distribution, this permits various functions such as dynamic cornering lights and country light, motorway light and high beam. The auxiliary high beam in the upper part of the full-LED headlight consists of two components to the left and right of the base module. Its high position provides an even better illumination of the road. The daytime running light consists of four LED spots and a revolving light ring.

Higher torsional stiffness due to new lightweight body

The body of the new 911 GT3 is a development based on the latest 911 Carrera. The extensive use of aluminium in the front and rear body, as well as the floor assembly, reduces the shell weight by around 13 per cent over the previous model. Roof and wings, front boot lid and doors are also made of the alloy. In addition, the torsional rigidity was increased by about 25 per cent. Both factors become immediately apparent when it comes to vehicle dynamics.

The front apron has been newly designed for the GT3. In addition to the integration of the new front lights, the larger holes improve air supply to the radiator compared with the 911 Carrera. The conspicuous element of the particularly pronounced spoiler lip is the laterally raised spoiler contour. It comprises of three parts: the continuous horizontal middle spoiler element, as well as the lateral continuations before the wheel arches. All three elements have a scoop-shaped, drawn-out lip, which improves the downforce generated by the front axle.

The distinctive identifying feature of the rear of the new 911 GT3 is its engine cover with fixed wing. The completely newly-developed rear engine lid is made of a composite material consisting of glass fibre and carbon fibre. Wing supports, the large ram-air intake for the air supply of the engine, and the spoiler lip are all integral components of the design. The rear wing is mounted on the supports, which remains individually adjustable for use on the race track.

Further characteristic features of the 911 GT3 here are the exhaust vents in the rear bodywork, with two on the side and one under the rear boot lid.

Downforce on the front and rear axle

The front and rear design are the result of consistent aerodynamic tuning of the new 911 GT3. This establishes a new balance between the three main requirements of low drag, reliable cooling of drivetrain and brakes, as well as sporting downforce levels at higher speeds. Front spoiler and rear wing provide downforce at the front and rear axle, complemented by the underbody panel, which provides an additional diffuser effect due to its rising contour in the engine area.

Monday, 4 March 2013

More great news from JLR


Jaguar Land Rover is set to deliver a huge boost to the automotive sector by revealing it is doubling the size of its new engine plant in the West Midlands.

The rapidly expanding car giant is going to create 700 extra jobs at its new i54 plant in Wolverhampton by investing £500 million to double capacity – before it has even opened.



Insiders say the move came after global demand has continued to rise since the plans were first announced.

Initially the company said it would invest more than £350 million in the factory, creating more than 700 jobs, but the new plans will now see up to 1,500 jobs created.

An insider told the Birmingham Post: "Sales are going incredibly well. Market share is up and they believe they need to act quickly, even though the first phase is not constructed yet."

The factory on the i54 site, between Wolverhampton and Telford, will build engines for Jaguars and Land Rovers and is expected to be ready to start engine production in 2014.

The Gaydon-based luxury car maker is planning to more than double the number of its vehicles made annually to 600,000 by 2020



New F-Type recreates historic sprint from Belgium to Switzerland.



  • Jaguar ‘Bloodline’ collection of sports cars together in unique convoy from Jabbeke, Belgium to Geneva, Switzerland
  • F-TYPE V8 S goes from Zero-179-Zero mph in two mile sprint test
  • A second F-TYPE V8 S achieves 35.6 mpg (7.9 l/100km combined) on 519-mile (835km) journey across Northern Europe
  • High quality video featuring sprint test and epic cross country drive event now available to view, share and embed at:http://youtu.be/RFc42QkiurE




Sixty years after Jaguar’s legendary test driver Norman Dewis achieved a world record average flying mile speed of 172.4mph in a modified XK 120*. Jaguar returned to Jabbeke, Belgium**, on Saturday 2 March for another sprint test, this time with a new Jaguar F-TYPE V8S and 1988 Le Mans 24 hour race-winning driver Andy Wallace.  With just two miles available to Wallace to explore the F-TYPE’s straight-line speed from a standing start, and bring it to a stop again,  the car hit almost 180mph*** and achieved 0-62mph in an impressive 4.2 seconds.



The celebratory event marked the beginning of an epic drive event in which classic Jaguar XK 120, C-type, D-type and E-type sports cars joined the new 495 PS F-TYPE in a ‘Jaguar Bloodline’ sports car convoy en route to Geneva, Switzerland, prior to this year’s 2013 Salon d’Auto, where the new F-TYPE takes pride of place on the Jaguar stand.

Speaking after the sprint test, Wallace said: “I was delighted to be invited by Jaguar to be the first to undertake a public sprint test in the new F-TYPE. Our result today is amazing considering the original sprint test road was five miles in length and today we had less than half that to achieve 179mph. The car was still accelerating toward its top speed when I had to brake.****”



Marking the return of Jaguar to the Belgian proving roads, Adrian Hallmark, Global Brand Director, said:

“The original Jabbeke sprint runs marked the start of an exciting chapter in our history. The XK 120 combined seductive design and innovative technologies with incredible sporting performance, as Norman Dewis proved on that famous day in 1953.



“Those core elements of our DNA are embodied in the new Jaguar F-TYPE, and I can think of no more fitting way to pay tribute to the achievement of one of our most famous roadsters than to return to Jabbeke to celebrate the successful test and set a new Jaguar benchmark.”

Following the Jabbeke speed run, an identical F-TYPE V8 S was driven the 519-miles (835km) to Geneva by a specialist in frugal driving, recording an average fuel consumption of just 35.6 mpg (7.9 l/100km).

The all-new F-TYPE is on sale now throughout Jaguar dealers across Europe and will be available to view in showrooms from April. Prices in the UK for the new two-seater start at £58,500 for the 340PS V6 F-TYPE, rising to £67,500 for the 380PS V6 F-TYPE S and £79,950 for the range-topping 495PS F-TYPE V8 S.

McLaren 12C GT3 eligable to enter North American race series


  • 12C GT3 is eligible to race in the Pirelli World Challenge Series
  • Pirelli World Challenge supports the IZOD IndyCar series
  • McLaren has claimed five back-to-back Can-Am titles (1967-71) and three Indy500 victories (1972, 1974, 1976) in an illustrious racing history in the North American market
The 12C GT3 enjoyed a promising 2012 season, claiming 19 victories and a further 19 podium finishes, and has been enhanced further for the 2013 season. These upgrades are designed to further optimise the performance of the car in the more varied conditions found in global championships. The enhancements are evident through the updated bonnet and ducting, designed to ensure that the 12C GT3 can run competitively in higher temperatures than those experienced during 2012.

The Pirelli World Challenge, now in its 24th consecutive season, is one of North America's leading production car-based racing championships, and is a support series for the IZOD IndyCar calendar. Each race is a 50 minute sprint, and sees the grid visit some of the leading purpose-built tracks and street circuits across the USA and Canada. The series is sanctioned by SCCA Pro Racing and races at North America's premier road and temporary street courses.
McLaren Group CEO Martin Whitmarsh said: ‘McLaren has a very distinguished racing history in the United States, contesting and dominating the iconic Can-Am series with a record 43 race victories and five championships from 1967 to 1971, courtesy of our founder Bruce McLaren himself and his team-mate Denny Hulme.
‘We also won the legendary Indy 500 race three times – in 1972, 1974 and 1976 – courtesy of Mark Donohue and Johnny Rutherford.
‘Bearing in mind the Stateside successes of those four McLaren legends, it’s particularly pleasing to note that the McLaren 12C GT3 has now been approved to run in the Pirelli World Challenge – the sports car racing series that follows the IndyCar calendar.
‘The 12C GT3 enjoyed plenty of success throughout the last year, proving itself to be a true contender and claiming victories in a number of different championships across the world.
‘It will be a true testament to the enduring power of Bruce McLaren’s legacy to see the McLaren brand make a return to racing in North America on a regular basis throughout 2013, the year in which we’re celebrating the marque’s 50th anniversary.’

2013 McLaren 12C GT3 technical specification
Chassis/Body
-       McLaren carbon fibre MonoCell with aluminium front and rear sub-frames
-       Bespoke lightweight carbon fibre body panels
-       Left hand drive
-       FIA approved safety roll cage   
Aerodynamics
-       Front splitter
-       Rear wing, fully adjustable with gurney
-       Front and rear diffusers
Engine/Management
-       Race prepared 3.8L V8 twin turbo McLaren M838T
-       McLaren Electronics ECU interfacing with Bosch ABS and Shiftec transmission control units
Transmission
-       Six-speed sequential motorsport transmission pneumatically actuated via steering wheel mounted paddles
Electrical System
-       Lightweight motorsport specification wiring and connectors
-       Electronic power management system
-       Membrane type switch panel
Data System
-        McLaren Electronics ‘ATLAS’ data system
-        Digital dash display
Front/Rear Suspension
-       Double wishbone adjustable for ride height, camber and toe
-       Four-way adjustable dampers with coil over springs
-       Motorsport axles with single wheel retaining nut
-       Adjustable anti-roll bars
-       Forged aluminium wheels: Front 12” x 18”, Rear 13” x 18”
Steering
-       Electro-hydraulic power assisted steering
-       Unique McLaren GT steering wheel developed from MP4-24 Formula 1 steering wheel
Fuel System
-       Motorsport ‘bag tank’ system with 120L capacity
-       Motorsport ‘quick-fill’ system
Lubrication
-       Mobil 1 engine and transmission lubrication
Brake System
-       Akebono monoblock calipers with ventilated discs:
Front – 6 piston caliper, 378Ø x 36mm disc
Rear – 4 piston caliper, 355Ø x 32mm disc
-       Bosch motorsport ABS

Skoda and Ford both celebrate wins at the car buyer awards


The Ford Fiesta has been voted best small car in the 2013 CarBuyer Car of the Year awards.

CarBuyer.co.uk is the sister site of best-selling motoring weekly Auto Express whose review of the Ford Fiesta stated: “The Fiesta is a great all-rounder – and one of the best Fords ever…combining stylish good looks with a driving experience that simply isn’t bettered in the supermini class.”



Steve Fowler, editor-in-chief Auto Express & CarBuyer, said: “The Fiesta is a brilliant car that’s just been made even better – adding the 1.0-litre EcoBoost engine into the mix has given it an intoxicating spirit that you just don’t expect from a small, affordable car. It’s an exceptional all-rounder.”

The Ford Fiesta has been the UK’s best-selling car for the last four years, first taking sales leadership from the Ford Focus in 2009.  With the latest Fiesta model launched to great critical acclaim, this new model is looking to build further on the Fiesta’s sales success.  

Mark Ovenden, Ford of Britain managing director, said: “The Ford Fiesta is a proven sales success with great appeal to both business and private buyers.  This award from the experts at CarBuyer is a welcome endorsement of the Fiesta’s market-leading attributes.”

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Two of ŠKODA’s newest models have illustrated how the popular value-for-money brand is heading in the right direction… by winning coveted ‘Car of the Year’ awards.
The honours have been handed out by respected consumer motoring website CarBuyer,www.carbuyer.co.uk. The ŠKODA Citigo, launched just last summer, was voted ‘Best City Car’ while the new ŠKODA Octavia, which only recently arrived in showrooms, earned the title ‘Best Family Car’.

Steve Fowler, Editor-in-Chief of CarBuyer, commented: “The ŠKODA Citigo ticks all the right boxes for city car buyers… and then some. It’s cute, cheap to buy and run, and great fun to drive – great things come in small packages and this is a truly great car.”
He added: “ŠKODA cars have always offered that rare blend of more for less and the new Octavia is a prime example. It offers more quality, more space and more value than its rivals, yet still manages to be cheaper – it’s a brilliant family car.”

ŠKODA has a history of success in the CarBuyer awards. The Superb won ‘Best Estate Car’ two years ago and then retained the title in 2012.
Commented on the double win, Alasdair Stewart, Brand Director for ŠKODA UK, said: “Awards like these are always great to receive because they’re from a website which reflects what people are actually searching for online and buying from dealers. That two of our latest cars have beaten the competition is very satisfying.”

BMW i3 to premiere at Geneva


The BMW i3 Concept Coupe celebrates its European premiere in Geneva, while the BMW i8 Concept Spyder also makes an appearance. These two concept models reflect the current status of the ongoing development process and illustrate the potential breadth of an extended BMW i portfolio. At the same time they show how high-performance, zero-emission mobility is also able to deliver when it comes to emotional excitement and sheer appeal. Both models are built around BMW eDrive technology, which will provide a unique driving experience in all future BMW electric and plug-in hybrid models. These BMW eDrive powertrains, comprising the electric motor, lithium-ion battery and intelligent powertrain management, form the core of all BMW i models.

The BMW Group will start supplying customers with driver-friendly, premium-quality electric mobility later this year with the BMW i3, whose technology is a response to the social, ecological and economic challenges of our times.
Two principal challenges still faced by electric mobility are what are considered to be the short driving range of electric vehicles and an inadequate charging infrastructure. With the world’s biggest electric mobility field trial, the BMW Group has therefore been exploring these issues in depth since 2008. In the meantime more than 20 million kilometres (12.5 million miles) of testing by well over 1,000 pilot customers in ten countries has been conducted and scientifically evaluated. These trials, which took place with BMW ActiveE and MINI E vehicles in Asia, Europe and the USA, produced three main findings:
  • The distances covered by the electric vehicles showed very little difference from the distances covered by conventional cars, at somewhat over 40 kilometres (25 miles) a day on average.
  • On average, the pilot customers charged their vehicle two to three times
    a week, for the most part at home or at their workplace.
  • At the start of testing, more than 70 per cent of users said that access to public charging stations was very important to them. In actual practice, however, public infrastructure was used for less than 10 per cent of all charging.


Based on the field trial results, BMW i set out to design a BMW eDrive powertrain for the BMW i3 which in typical commuting use between home and workplace would only require the battery to be recharged once every two to three days. The BMW i3 goes well beyond this target, with a range of between 130 and 160 kilometres (80 to 100 miles) in day-to-day operation. This also allows it to cope comfortably with out-of-town journeys.
The drive system and all other vehicle functions in the BMW i3 are powered by a specially developed high-voltage lithium-ion battery. One of the hallmarks of this battery is that its energy output, and thus the range of the vehicle, is less affected by fluctuations in temperature than is typical of such batteries today. The technology behind this is an intelligent heating/cooling system which always keeps the battery at an optimal operating temperature. This improves the everyday practicality, stable performance and life expectancy of the battery.

A further priority in designing the BMW i3 was to reduce the energy consumption of electrical components. The cabin heating operates on the heat pump principle, which results in 30 per cent energy savings in city driving compared with a conventional electrical heating system, while the internal and external lighting uses energy-saving LEDs. Together, these two measures make a significant contribution to “range security” in the BMW i3.
Battery and consumer size and management are not the only measures BMW i is adopting to address range issues. The BMW i3 will also be the world’s first electric vehicle to feature full connectivity and will consequently be equipped with innovative BMW i ConnectedDrive services catering specifically to the needs of electric mobility.
These functions, which are specially adapted to BMW eDrive technology, provide drivers with a realistic range estimate for their journey before they even set out. The internet-enabled navigation system is based on a dynamic range display which takes into account all the relevant parameters for the planned route and is therefore able to provide precise, reliable range predictions. In addition to the battery charge level, driving style, use of electric convenience systems and choice of drive mode, the calculations also take into account route topography and the current traffic situation. The system can identify energy-intensive uphill gradients on the route ahead and reduces the range computation accordingly. The same goes for energy-depleting stop-go conditions or traffic jams, since detailed real-time traffic data is also taken into account.

The dynamic range display appears in the central information display, inside the navigation map. Based on the vehicle’s current location, all destinations reachable on the battery’s current charge level are shown in the form of a spidergram. Since the vehicle’s energy consumption, and therefore also its range, can be actively altered by the driver by changing to a different drive mode, the system always computes two different versions of the range graph. The range displayed depends on whether the driver has selected COMFORT, ECO PRO or ECO PRO+ mode. Depending on the destination, the Range Assistant if necessary recommends that the driver switch to ECO PRO or ECO PRO+ mode in order to increase the driving range. In the standard sporty but comfortable COMFORT mode, the BMW i3 already offers a range of 160 kilometres (100 miles). ECO PRO mode, on the other hand, selects a different accelerator pedal mapping, which uses less power and increases the driving range by around 10 per cent. In ECO PRO+ mode, all settings are geared to achieving the maximum possible range. In this mode the maximum speed of the BMW i3 is limited to 90 km/h (56 mph) and electrical consumers such as the heating and air conditioning are switched to energy-saving mode. As a result, the driving range is increased by approximately 25 per cent compared with COMFORT mode.
The driver can also ask the display to show charging stations within easy reach of his or her destination, and can reserve a slot at one of these locations at a further press of a button. The system also informs the driver how long it will take to charge the vehicle for the return journey, or to travel to a further destination. As a rough guide, in the time it takes to stop for a cup of coffee enough charge can be stored – using “fast charging” mode – to give an additional 120 kilometres (75 miles) of range.

The BMW i3 can also be supplied with an optional range extender, which increases the driving range to approximately 300 kilometres (186 miles).
If it is likely that, even using all the measures listed above, it will not be possible to reach an intended destination in the BMW i3, BMW i also offers additional mobility modules which allow even longer distances to be covered – for example a conventional BMW vehicle can be provided on a given number of days per year.

A motorshow would not be complete without something wacky and weird, Geneva has this !



  • Toyota i-ROAD, a new form of transport, making its debut at Geneva
  • Compact, all-electric, three-wheeled personal mobility vehicle (PMV) with a comfortable, enclosed two-seater cabin
  • New Toyota ‘Active Lean’ technology automatically balances the vehicle when cornering or travelling over stepped surfaces
  • 850mm width is no greater than a conventional two-wheeler, making i-ROAD as easy to manoeuvre as a scooter or motorcycle through urban traffic.
  • Zero emissions, near-silent EV powertrain gives a range of up to 30 miles, with recharging from a conventional power supply taking just three hours

Toyota’s new i-ROAD personal mobility vehicle (PMV) makes its world debut at the Geneva motor show, a new, flexible form of transport designed for city streets.



Seating two in tandem and under cover, i-ROAD is an electric vehicle with a range of up to 30 miles (50km) on a single charge. Using ‘Active Lean’ technology, it is safe, intuitive and enjoyable to drive, with no need for driver or passenger to wear a helmet.

It’s the latest concept to emerge from Toyota’s 40 years of research and development of vehicles that use less energy, place less of a burden on the environment and are practical in meeting people’s everyday transport needs. i-ROAD takes the company closer to its goal of creating the ultimate range of eco cars.



Toyota is paving the way for several types of eco car to co-exist in the future, by adapting its Hybrid Synergy Drive technology for use in plug-in hybrid electric vehicles (PHEVs), electric vehicles (EVs) and fuel cell vehicles (FCVs). While hybrids, plug-in hybrids and FCVs are ideal for mainstream use over medium to long distances, Toyota believes in the feasibility of EVs to serve as a main mode of transport for short urban journeys, and has 10 years’ experience in the research and development of PMVs.

People using this kind of vehicle want something that is more comfortable, offers better weather protection and is safer than a two-wheeler such as a scooter or motorcycle, but has similar benefits of low running costs, easy parking and around-town manoeuvrability.



The ultra-compact, three-wheel i-ROAD measures 2,350mm long and 1,445mm high and has a 1,700mm wheelbase. It’s most significant dimension, though, is its width: at only 850mm, it is no wider than a conventional two-wheeler. Not only does this make for easy manoeuvring through congested traffic, it also means four can be parked in a single parking bay.

The zero-emissions, all-electric powertrain uses a lithium-ion battery to power two 2kW motors mounted in the front wheels, giving brisk acceleration and near-silent running. Driving range is around 30 miles, after which the battery can be fully recharged from a conventional domestic power supply in three hours.

Toyota’s new and entirely intuitive Active Lean technology is the key to i-ROAD’s high levels of stability, safety, comfort and fun-to-drive character. The system uses a lean actuator and gearing mounted above the front suspension member, linked via a yoke to the left and right front wheels. An ECU calculates the required degree of lean based on steering angle, gyro-sensor and vehicle speed information, with the system automatically moving the wheels up and down in opposite directions, applying lean angle to counteract the centrifugal force of cornering.



The system also operates when the PMV is being driven in a straight line over stepped surfaces, the actuator automatically compensating for changes in the road to keep the body level. The minimum turning circle is just three metres.

No special skills are needed to pilot i-ROAD; the Active Lean system offers a unique driving experience with the enjoyment of riding a two-wheeler, but with no need for the driver to stabilise the vehicle when manoeuvring at low speed, or when stationary.

As the driver doesn’t have to put his or her feet on the road surface at any time, i-ROAD can be fitted with a safer, weatherproof, closed body and so can be driven without wearing a helmet. This design also allows for a more car-like environment on board, with the potential for features such as lighting, heating, audio and Bluetooth to be provided.



Toyota envisages its i-ROAD concept has the potential to play a significant role in reducing urban traffic congestion and air pollution. Commuters can use public transport or conventional private vehicles to travel to urban perimeter transportation hubs where they will transfer to the Toyota i-ROAD to complete their journeys into the city centre.

The new Toyota PMV’s compact size, manoeuvrability, easy parking, rapid charging and choice of an open or closed cabin make it an ideal urban vehicle, designed to reduce congestion and CO2, NOx and particulate emissions without compromising individual freedom of mobility.

Probably the best cars in the world......



  • World premiere of all new Flying Spur
  • European debut of world’s fastest four-seat convertible, GT Speed Convertible
  • Enhanced specification luxury flagship 2014 model year Mulsanne unveiled
  • Continental GT V8 and W12  complete display

The new Bentley Flying Spur, the world’s most refined performance sedan, makes its global debut at the Salon International de l’Auto in Geneva. Bentley’s showcase of luxury and performance continues with the European debut of the GT Speed Convertible, an enhanced specification for the flagship Mulsanne, and the Continental GT V8 and GT W12 on display.



Commenting on Bentley’s global debut at Geneva, Dr.Wolfgang Schreiber, Chairman and Chief Executive, says:

“The new Bentley Flying Spur marks a big step forward. We have re-designed and re-engineered almost every part of the car. In simple words, we have created the best luxury sedan in the world – a perfect combination of exquisite refinement, effortless performance, elegant styling and state of the art technology.

“The Flying Spur meets the desires of our customers perfectly and is a car only Bentley could make – timeless design inside and out, elegant lines, ultimate material quality, attention to detail, class leading refinement and, of course, effortless performance.”

Establishing a new luxury sedan benchmark
With its unrivalled blend of effortless driveability, exquisite luxury and craftsmanship, sculpted design and state-of-the-art technology, the new Flying Spur takes the worldwide success of its iconic predecessor further.

Bentley’s styling team has developed an athletic design for the new Flying Spur that combines traditional Bentley styling cues with a sporting stance and contemporary details. Sharp feature lines complement muscular rear haunches, while LED day-time running lights, dipped headlights and taillights characterise the front and rear profiles. The interior designers have created a luxurious, spacious cabin that dresses advanced acoustic and electronic technologies in exquisite hand-crafted leather hides and wood veneers.

Driver and passengers alike interface with the car and the outside world through touch-screen infotainment, mobile connectivity including Wi-Fi, a Rear Seat Entertainment suite and a new bespoke hand-held Touch Screen Remote which allows rear-cabin occupants to control an extensive range of features from the comfort of their seat. An eight-channel, eight-speaker audio system with Balanced Mode Radiators provide high quality sound clarity, with the 1100W Naim® for Bentley premium system available as an option.

Powering the new Flying Spur is Bentley’s renowned 6.0-litre, twin turbo W12 engine, coupled to a ZF eight-speed transmission. Developing 625 PS (616 bhp) and 800 Nm of torque, the new Flying Spur features more power than any other Bentley four-door in history. A 14 per cent improvement in the power-to-weight ratio over the outgoing model delivers a breath-taking 0-60 mph time of 4.3 seconds and a top-speed of 200 mph (322 km/h). In the modern Bentley tradition, power is delivered to the road via all-wheel drive with a 40:60 rear-biased torque split for a sure-footed, engaging drive in all road and weather conditions.



New open-top performance flagship
Also on the Bentley stand and making its European show debut is the new GT Speed Convertible, combining the sensory pleasures of roof-down luxury touring with the shattering performance of a 625 PS (616 bhp) twin-turbocharged 6.0 litre W12, while delivering a 15 per cent improvement in fuel efficiency. The close-ratio eight-speed transmission, uprated and lowered suspension and retuned steering provide exhilarating acceleration and sharp, communicative handling without detriment to the renowned ride comfort of Bentley’s Continental convertible. Permanent all-wheel drive ensures optimum traction and power delivery whatever the road conditions.

Taking its place at the pinnacle of the Bentley Continental range, the new GT Speed Convertible has a top speed of 202 mph (325 km/h) and in true Bentley style, no compromises have been made in craftsmanship, luxury or refinement to deliver this unrivalled performance.

Bentley Mulsanne: the pinnacle of British luxury motoring
A range of new luxury features have been added to the Mulsanne and are on display for the first time in Geneva, offering a new suite of entertainment and communication system options.

A new Comfort Specification, including comfort headrests, footrests and duck down filled loose cushions has been introduced to reaffirm Mulsanne’s reputation as a truly bespoke grand tourer.

Additional enhancements include privacy curtains, which promise to broaden the experience for the Mulsanne rear cabin occupants, allowing them to maximise work or rest as they travel.  

An Entertainment Specification incorporates the latest in technological developments, with picnic tables designed for an iPad and wireless keyboard, with the cabin of the Mulsanne becoming a Wi-Fi Hotspot.

Other additions include three new paint options, extending the Mulsanne palette, and new bespoke fitted luggage.

Dynamic luxury performance coupe

Complementing the GT Speed Convertible on stand is the Continental GT V8 and the Continental GT W12, widening the appeal of the latest generation of Continental GT and GTC, while retaining the power and performance one associates with the Bentley Continental.

The GT V8, powered by a 4.0 litre, twin turbocharged V8 engine achieves exceptional standards for power-to-emissions in the high luxury sports car sector.

The engine delivers maximum power of 500 bhp (507 PS / 373 Kw) at 6000 rev/min and an extraordinary peak torque of 660 Nm (487 lb ft) which is available across virtually the entire rev range, providing exhilarating performance and effortless power delivery in the Bentley tradition. This translates into a 0-60 mph sprint time of 4.6 seconds for the GT coupe (0-100 km/h in 4.8 seconds) and a top speed of 188 mph (303 km/h).

At the same time, the V8 Continental models achieve outstanding levels of fuel efficiency and CO2 emissions for the luxury performance sector and are capable of travelling over 500 miles (800 km) on a single tank of fuel. The instantly recognisable growl of the new 4.0 litre V8 engine sets it apart from its Bentley siblings.

The W12 GT marked the birth of a new product range for Bentley in 2003 and is still going strong today. Bentley’s acclaimed 6-litre, 12-cylinder, twin-turbocharged powertrain now has a raised power output of 575 PS (567 bhp/423 kW) and 700 Nm (516 lb ft) of torque.

The engine is coupled to an all-wheel drive system with a sporty 40:60 rear-torque bias (compared with the 50:50 bias of the original Continental GT), minimising understeer during hard cornering and allowing the experienced driver to control the car’s line and balance via precise throttle control.

Stunning Kia models for Geneva debut



  • 230 kph top speed for most performance-focused Kia models ever
  • Turbocharged 1.6-litre engine produces 201bhp and 265 Nm
  • Designed, developed and manufactured in Europe
  • pro_cee’d GT 1st Edition – High-spec version limited to 500 units

The all-new high-performance Kia pro_cee’d GT and cee’d GT make their global debuts at the 83rd Salon International de l’Automobile in Geneva on Tuesday 5 March.  This new duo powers Kia into one of the most high-profile market segments in Europe, and they are the brand’s most performance-focused production cars ever.



The two models are powered by a new version of Kia’s 1.6-litre GDi (Gasoline Direct Injection) engine equipped with a twin-scroll turbocharger and strengthened internal components.  Power and torque outputs are dramatically increased (compared with the non-turbo engine), with maximum power up 51 per cent to 204 ps (201bhp), and torque up 61 per cent to 265 Nm.  The Kia pro_cee’d GT and cee’d GT each deliver fuel consumption of 7.4l / 100km and emit 171g/km CO2.

Fitted with a six-speed manual gearbox as standard, the front-wheel drive models can accelerate from 0 to 100 kph (62mph) in 7.7 seconds and reach a top speed of 230 kph (143 mph).  They can also accelerate from 60-100 kph in fourth gear in 5.4 seconds, 80-120 kph in fifth gear in 7.3 seconds and 80-120 kph in sixth gear in 8.8 seconds.



“The world premiere of Kia’s new pro_cee’d GT and cee’d GT highlights the diversity of our current product line-up and underpins the natural expansion of the brand into the performance car market, an important step forward for Kia,” comments Michael Cole, Chief Operating Officer, Kia Motors Europe.  “The new Kia pro_cee’d GT will have great appeal for motorists looking for style, performance and dynamism in their next car – and the cee’d GT adds an extra level of practicality for buyers who prefer five doors.”

Designed in Europe under the direction of President and Chief Design Officer, Peter Schreyer, the Kia pro_cee’d GT and cee’d GT feature new front grilles and lamp clusters, deeper bumpers, jewel-like four-point LED daytime running lights, new fog lights, dual-exhaust pipes, larger 18-inch alloy wheels, eye-catching red brake calipers and a range of special paint finishes.



Inside, the GT models are equipped with Recaro sports seats, alloy pedals, bespoke surface materials and a seven-inch racing car-inspired TFT instrument cluster to create an engaging, performance-oriented ambience for the driver and passengers.

Developments to the suspension system ensure that the high performance credentials of these more powerful models are matched by exceptional dynamic characteristics, while retaining an outstanding ride quality, ensuring that both GT models are well suited for every day driving.

Kia pro_cee’d GT 1st Edition

Kia is celebrating the arrival of its first high-performance model with a limited edition variant that features a host of unique interior and exterior styling enhancements.  With a production run of just 500 units across Europe, the ‘Kia pro_cee’d GT 1st Edition’ is based closely on the all-new Kia pro_cee’d GT.



This limited-run model, of which only a handful are to be allocated to the UK, features a very high level of standard specification over and above the, mechanically identical, pro_cee’d GT.

Items such as Adaptive Xenon headlights, automatic air conditioning, satellite navigation and a large sunroof will be amongst the items on the spec list.  Unique GT 1st Edition features will include black high-gloss 18-inch wheels and door mirror housings, stainless steel scuff plates with red illuminated GT badging and unique numbering, red cabin-footwell lighting and premium-quality velour floor mats with red double stitching.



Production of the Kia pro_cee’d GT and cee’d GT, the newest members of the cee’d family, is scheduled to start at Kia’s Zilina plant in Slovakia in May 2013, with cars going on sale across Europe from mid-year.

New Kia concept car for Geneva



  • Kia’s latest concept hints at potential future B-segment vehicle
  • 1.6 T-GDi engine develops 204 ps
  • Hybrid electric system adds another 45 ps as required
  • Features Kia’s first seven-speed DCT transmission

Looking every centimetre a road-legal racer, Kia’s new provo concept, unveiled at the 83rd Salon International De l’Auto in Geneva, mixes ultra-modern technology with a self-confident and agile look to deliver an exciting new B-segment car for enthusiasts.



The sleek, low, yet muscular coupe-style hatchback mixes a petrol-fuelled turbo-charged engine with clever regenerative-electric motors to bring a smart-hybrid solution to this fun-focused concept that points to Kia Motors’ future B-segment expansion plans.

This is a car designed for fun – pure and simple.  Every curve, crease and line combines to bring provo to life with a single purpose – to delight and entrance its owner and to bring a smile to the driver's face.  The car is meant to be cheeky and cheerful in its compactness and to hint at the fun awaiting on the open road.



Created to deliver a new interpretation of the DNA from sporting coupes of the past  with all the advantages of up-to-the-minute technology and materials, provo blends a clean, simple yet muscular exterior with a stunning interior treatment mixing high-tech and luxury materials that will set pulses racing whether on busy city streets or at the race-track.

From its steep leading edge featuring an aero-style splitter, carbon-fibre panels and tiny LED cluster front lights, over the long bonnet and sculpted flanks, visor-look windscreen to the sharply cut-off rear treatment (also featuring an aerodynamic splitter with an adjustable vent system to direct airflow), the provo looks every inch a purposeful performer.



Described by Gregory Guillaume, Chief Designer at Kia’s European styling base in Frankfurt, as “an emotional and muscular car aimed at delivering pure fun and performance for today’s city-based enthusiast driver who longs for the curves of the open road,” the Kia provo isn’t just a styling exercise.  It combines a 1.6-litre Turbo GDi engine producing 204 ps with smart-4WD-hybrid technology from an electric motor delivering an additional power surge to the rear wheels when required and also allowing low-speed electric-only motion.  A seven-speed DCT transmission – Kia’s first – completes the impressive technical package.

Guillaume went on: “This is entirely a car for European tastes and conditions.  Designed purely at our Frankfurt studios the provo was conceived as a confident and single-minded statement of dynamism and energy to deliver a new sense of fun into the B-segment.  The potent shaping displays a balanced and refined outline within a compact overall shape and the tiny front and rear overhangs enhance the balance within its proportions.”



Clearly a car from Kia, the compact provo which is 3.88-metres long, 1.77-metres wide and 1.35-metres tall, introduces itself with a steep front nose and carbon fibre lower valance that immediately convey a sense of purpose.

Hidden behind a single piece of glass is the latest take on the Kia’s ‘tiger nose’ grille treatment linking straight into the Schreyer-inspired headlamp units that are made up of more than 850 tiny LEDs.  The programmable LEDs can be used to provide daytime running lights, full beam or even race-style configurations – as well as more humorous and decorative displays to add to provo’s sense of fun!

This thin, sharp glass panel is echoed at the rear of provo’s body and separates a purposeful splitter-style lower valance from the long, flat bonnet panel sculpted with twin creases to hint at, but not slavishly copy, the muscle cars of old.



A wrap-around front screen hides the A-pillars and frameless doors, giving a visor-style appearance to the cabin glass with the clamshell-like roof floating above.  This is divided at the rear by different colour sections rising up from the C-pillars in an almost roll-over bar appearance.

Colour is used on the provo to enhance the almost-masculine stance with sharp points echoed throughout the design.  High-intensity blood-orange accents contrast with the grey-green ‘Storm Metal’ body colour to draw the eye to particular aspects of the structure and equipment, while carbon fibre surfaces interplay with traditional materials and high-gloss or anodised aluminium to strengthen the connection to the track cars that inspired provo.

Planting provo firmly in touch with the road are distinctive 225/40-shod, 19-inch milled-alloy wheels with a traditional ‘cast’ look fixed by single centre nuts finished in anodised blood-orange.  And with just a 2.53-metre wheelbase, exciting handling and road-holding is guaranteed.



Backing up those performance credentials, provo utilises an ingenious Smart 4WD Hybrid power train.  The four cylinder turbocharged 1.6-litre GDI (Gasoline Direct Injection) engine is tuned to deliver is 204 ps rapidly and progressively allowing provo to deliver an injection of speed and performance often absent from the more functional B-segment mainstream.

But, this potent internal combustion engine also benefits from a regenerative-powered electric motor driving the rear wheels either automatically when required during cornering and in strong acceleration – giving a power boost of as much as 45 ps – or in a button-activated creep-mode at low speeds to avoid emissions in city traffic or when ‘stealth’ is required.  The regenerative system captures its power during braking when in normal use.

Moving inside, the Kia Europe Design team was able to let imaginations run free although in typical Kia fashion it delivers clear functionality with exuberant style – essential if provo is to go into production at some point in the future.

Guillaume commented: “The interior is very, very black – as we believe it should be to allow drivers to focus on the experience.  But we have also looked to make the functional aspects of the car fit the modern demands of today’s motorists.”



Opening the two side doors – via flush-fitting push-up electronic handles that operate with a satisfying electric click – reveals that the polished aluminium panels featured in the external sculpted flanks extend to create a relatively high-level two-step sill into the car – cut-away at the leading edge to allow easier ingress and exit.

The next surprise is the door construction itself – the doors are made from three individual panels – the outer panel, a carbon-fibre inner panel and a neoprene-covered inner section that also features the Storm Metal body colour.  The inner door releases are reassuringly solid polished aluminium.

The dashboard is made from a single expanse of carbon fibre, but does not extend down to the floor – deliberately – in order to keep the footwells clear and uncluttered except for polished aluminium footrests and pedals.

Echoing the sculpted flanks of the provo, the dashboard has a business-like main binnacle containing large analogue dials on a digital display and a smaller central display of other minor gauges, but because the display is digital it can be programmed to offer a selection of functions.  Set on the centre tunnel are two control hubs – the engine stop-start button and drive selector for the seven-speed DCT transmission and a Multi-Media Interface control.



This latter control allows the driver to select a variety of screen displays – as well as controlling infotainment functions.  In ‘normal’ mode the driver sees a speedometer, rev counter and sat-nav route instructions.  In ‘cruise’ the display is centred on a large scale map, route instructions and a speedometer, while in ‘track’ mode the display features just a large rev counter, a track-map and a lap-timer.  There is also a full ‘entertainment’ mode allowing visuals of music, radio and other information.

The centre-mounted display provides appropriate gauges to the mode with a series of aluminium toggle switches set underneath – including an anodised blood-orange toggle for the hazard warning lights.

Modern materials allow the front seat construction to be made from a single wave-like panel running from one door sill to the other – covered in quilted leather.  The seat backrests are cleverly mounted on a rotating aluminium track so that instead of folding forward, they spin into the centre of the vehicle allowing easy access to the admittedly occasional-use rear seats.

Guillaume commented: “The whole interior concept was designed around not having a big centre console, but instead using latest technology to provide excellent functionality in a clean, clear and attractive manner.

“By using a DCT gearbox we were able to get rid of the floor-mounted gear-shift and use paddles behind the steering wheel, which has blood-orange stitching and a race style straight-ahead indicator, allowing us to use the floor space for other controls resulting in a much tidier environment.  And because the seats are fixed we have full electric adjustment for the pedal box and steering column – further simplifying the interior and giving a perfect-fit for any driver.”

Completing the moody cockpit feel are tiny red LEDs set in the multi-layered doors, in the air vents and also in roof to give a low-glow ambient illumination.  The roof panel also incorporates aluminium window toggle controls.

Whilst no specific production schedule for provo is on the calendar, the arrival later this summer of the new Kia pro_cee’d GT makes it clear that the company remains committed to delivering desirable, dynamic and stunningly attractive vehicles that will deliver affordable enjoyment to real, everyday motorists.  The provo could be just such a car.