Tuesday, June 15, 2010

2010 edo Competition converts Aston Martin DB9 into a DBS


Engineers at tuning firm Edo Competition spent the last six months in their Ahlen, Germany, workshop developing a package that would turn a 2005 Aston Martin DB9 into an Aston Martin DBS.  Amongst the upgrades is a boost in engine output from 470 to 550 horsepower (350 to 410 kW).

Exterior modifications include a new carbon fiber front fascia, as well as a carbon rear diffuser.  The car uses a new bonnet, with extra venting, and has a wider, more squared stance.  It also appears as if the car is riding lower to the ground.  Behind the new wheels are a newly-designed set of brakes, with six-piston front, four-piston rear calipers and 405-millimeter front, 380-millimeter rear rotors.

The custom interior presented a unique challenge: The dashboard, center console, headliner, door panels and seats were refinished with utmost precision. The choice of materials and colors was left to the customer, who, in this case, opted for an Alcantara/leather interior with carbon fiber inserts and metal accents.

Bigger high performance brakes, uprated sport suspension and 20-inch DBS wheels are the last parts of this conversion kit. The thing is, we are not sure this package (along with the cost of the car) is actually cheaper than buying a factory-made DBS!


Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo Aston DB9 to DBS conversion package by Edo


Press Release

edo tuning program Aston Martin DBS

Power boost to 550 hp includes:
Electronic voting of the control unit, sports air filter and new sports catalysts
As a completely manufactured in stainless steel sport exhaust system with throttle control.
All work will be monitored and adjusted on the Leistungspru?fstand.

Only a sports exhaust system with throttle control completely made of stainless steel

The volume of the exhaust system can be controlled by remote control.
By pressing a button are two volume levels (and Super Sound Series) adjustable.

edo competition Sport-brake system
VA: 405mm disc with six-piston monobloc caliper and sport brake pads,
Rear: 380mm disc with four-piston monobloc caliper and sport brake pads,
Steel braided brake line set.

Interior: Carbon shift gate
Interior: Carbon Shift Knob
Leather work custom made individually.

21 "Racing wheels, three-piece with artificially aged castings, hand polished Edelstahlflachaußenbett, 39 stainless steel screws. Tire size such as serial or optional front 255/30 ZR 21, rear 295/25 ZR 21 Continental

If desired, the rim-painted

Edo sport suspension with adjustable compression train-in High and low speed, adjustable height

Option: Sport spring set 30 mm lower than series


Audi Sound Concept features 62 speakers


Audi Sound Concept is the most advanced project of the entertainment development engineers in Ingolstadt. The project is internally dubbed the Audi Sound Concept and is being tested on a Q7 model. This design boasts an insane 62 speakers in the vehicle, consisting of five woofers, five tweeters and fifty-two mid-range speakers in the instrument panel beneath the windshield, in the roof pillars, and in the doors.

The system consists of five tweeters spread between the dashboard and the rear seating area, a woofer in each of the four doors, a single subwoofer out back, and a whopping 52 midrange speakers wrapping the perimeter of the cabin and enveloping the passengers in 360 degrees of sound. You're definitely not going to want to crank this rig up to 11.

Moreover, five units are integrated into each door sill, thanks to modifications that included cutouts in the sheet metal, new bezels and lower interior door release handles.

Development of the system took place in both the €100,000 listening facility and the €10 million audio lab at Audi HQ in Ingolstadt.


Audi Sound Concept Audi Sound Concept Audi Sound Concept Audi Sound Concept Audi Sound Concept Audi Sound Concept


Press Release

New approaches to perfect sound - Hi-fi expertise at Audi

High-end quality for listening pleasure is a field of technology that is becoming increasingly important. Audi is taking the lead in the advancement of this technology. Audi's successful collaboration with premium suppliers Bang & Olufsen and Bose is already setting standards, and the Audi development engineers have also established broad-based proprietary know-how independent of these partnerships. Their latest project takes an entirely new technical approach - and could turn out to be the next revolution in the hi-fi sector.

62 speakers: the Audi Sound Concept project

Peter Gleim's eyes light up when he cranks up the volume. The engineer works in Infotainment Development at Audi in Ingolstadt, where he heads the Audi Sound Concept project. His test subject is a Q7: Standard on the outside, interior modifications have transformed it into a rolling hi-fi studio that takes a radically new approach.

The idea behind Audi Sound Concept is a physical principle called wave field synthesis, which states that the front of any individual wave can also be considered as superposition of individual waves. In the world of acoustics this means that a sound wave can be recreated by a multiplicity of small sound sources placed closely adjacent to one another along the wave front.

The principle was first put into practice by Dutch scientists in the late 1980s, and it can be experienced today in a movie theater in Ilmenau, in the German state of Thuringia. Each of the 192 individual speakers at the Linden Lichtspiele movie theater is driven separately by a fast computer - at the precise moment in which the virtual wave front would pass through its point in space. Some signals are delayed by milliseconds, depending on the location of the speaker. The result is fascinating: Each moviegoer experiences perfect audio spatialization in optimal sound.

One of the driving forces in the field of wave field synthesis is the Fraunhofer Institute for Digital Media Technology (IDMT) in Ilmenau. Audi began its development work in collaboration with the IDMT five years ago. The current status of the project is the Q7 prototype, which is parked in a workshop. A powerful amplifier takes up most of the space in the luggage compartment, and thick cables connect it to three PCs.

Installed in the Audi Q7 are 62 speakers - five woofers and five tweeters plus 52 mid-range speakers in the instrument panel beneath the windshield, in the roof pillars and in the doors. Five units are integrated into each door sill - with Audi-typical perfect workmanship. Specialists made cutouts in the sheet metal, fabricated new bezels and lowered the interior door release handles.

"Prepare to be amazed," says Gleim, as his eyes light up and he cranks up the volume. A sound like a thunderhead issues from the speakers - an artful mix of music, traffic noise and animal sounds. A female narrator guides the listener through the acoustic hubbub, dancing past the listener on the right and at other times on the left. The whole time the listener's ears are surrounded by the sounds of driving cars and roaring lions. A marching band seems to march from side to side through the Q7 before finally a helicopter flies a lap around the cabin below the headliner.

"That is specially created wave field material," says Gleim, "comprising up to 32 tracks, with specific spatial information for each of those tracks." There are no corresponding audio media available on the market because there are no playback devices, either. A few film studios are already producing films with the method, however."

New stereo sound: the wide virtual stage

Wave field synthesis is not dependent on special material to demonstrate its strengths, however. It also coaxes entirely new acoustic images out of conventional stereo signals. As Gleim explains, "We can simulate any wave front. With stereo, we can generate a sound as if the two speakers were located far outside the car. And we can also add any desired spatial impression computationally - not as a sound effect, but as a mathematically precise simulation."

The sample for this is also very convincing. The vocals come from far off to the left, seemingly from the corner of the workshop, with the guitar coming from the other corner. This impression remains the same regardless of whether the listener is behind the wheel or on the back right seat of the Audi Q7. And sound quality is always first class - with sparkling trebles, crystal-clear midrange and dry bass. Even the slight buzz as the guitarist's fingers hit the strings makes its way to the ear with extreme precision.

"Our goal was to show what is technically feasible; to explore the limits," explains Denis Credé, Head of Sound Development at Audi. "What we are learning will be integrated into the sound systems of tomorrow. It's like with racing: A lot of what is first tried out on the race tracks of this world later shows up in modified in production vehicles. The Audi Sound Concept project is like racing for sound systems."

Wide-ranging know-how: Entertainment Development at Audi

Audi Sound Concept is the most advanced project of the entertainment development engineers in Ingolstadt. Audi has accumulated broad-based know-how in hi-fi technology in just a short time. The brand began collaborating with the upscale American supplier Bose a good twenty years ago; the collaboration with Bang & Olufsen began around the turn of the millennium.

Audi began offering the advanced sound system from the Danish sound wizards in the A8 luxury sedan in fall 2005. The 14 active speakers, including two acoustic lenses with anodized aluminum grilles, and 1,100 watts of amplifier power brought high-end sound to the automobile direct from the factory for the first time. The openly proclaimed collaboration between the two companies was another first in the European automobile industry. It proved to be a tremendous success for both sides - the advanced sound system has a penetration rate of greater than 10 percent in both models, the A8 and Q7, in which it is available.

If a new Audi model is to be equipped with a new premium or advanced sound system, the development work is performed primarily at Bose or Bang & Olufsen. The Audi engineers prepare precise requirement specifications in which the system layout - the type, number and installation location of the speakers - plus the speaker characteristics, the design of the amplifier and a target sound appropriate for the vehicle are defined.

Prototype vehicles are sent to Esslingen, Germany, and Struer, Denmark, where the partners work on the speakers, enclosures, amplifiers and acoustic algorithms. The last step is fine-tuning the sound, which is performed together with the Audi specialists in Ingolstadt. The "Sound Commission," a body comprising representatives from all units of the company, is responsible for final acceptance and approval.

How close does the high-end sound in a new Audi A8 come to the reality of the recording? "The determining factors are always the installation locations in the car and the quality of the components," explains Gleim. "When you order a car with the advanced sound system, you get the best speakers available anywhere. Many of them have membranes made of a fiberglass composite, which has a very natural and linear sound."

Pure sound is technically feasible - but not desired. "A linear frequency response in the car would be boring," says Gleim. The tight interior does not allow the sound to spread out like in a living room. Cushions and upholstery absorb it, which is why the low frequencies must be overdriven to a certain extent. The electronic fine-tuning - the tweaking of the algorithms in the sound processor - handles this.

"We deliver a certain fun factor with our compact and sporty models," explains the sound development engineer. "In the A8 and Q7, however, the sound is more subtle and natural. There is no ultimate ideal, though, because each person perceives sound in their own unique way."

Proprietary development: the Audi sound systems

Below the high-end and premium systems, Audi offers additional systems such as the Audi sound system, which also uses impressive technology to produce excellent sound quality. Because Audi alone is responsible for the design and tuning of these systems, the development engineers have developed an extensive foundation of expertise.

The Electronics Center established at the Ingolstadt plant in 2003 includes a sound laboratory, where the sound systems undergo rigorous testing during the development phase. The engineers test the speakers and amplifiers offered by the suppliers, beginning with the very first sample level and assess the quality delivered, in part by means of exhaustive listening comparisons.

The laboratory features equipment valued at nearly €10 million - from the microphones and the special amplifier test bed custom-developed to Audi specifications to the laser vibrometer. The latter uses a laser to scan the surface vibrations that occur on the speaker membrane, the speaker housing or the door in which the speaker is installed.

The color graphics produced precisely indicate if the membrane does not oscillate properly across its entire surface. "Weaknesses in a speaker are very often a simple question of design," says Gleim's colleague, Wolfram Jähn. "In many cases, the manufacturer can resolve these with minor changes, such as details of the curvature or the overlap between the paper and the rubber at the bead."

Speakers are analyzed at the Audi sound laboratory in a testing room, which is a room-in-room construction. The testing room is mounted on thick elastomer bearings and is completely decoupled from the rest of the building. An absolute necessity given its direct proximity to a roller dynamometer.

All six sides of the testing room feature large fiberglass wedges covered in silk that break up the sound. A floating wire lattice serves as the floor.

The testing room is acoustically dead - the human voice loses its richness here. The room is also often used to refine operating noises in the cabin, i.e., to fine tune clicking rotary knobs and switches. "As far as we know, none of our competitors have such a facility," says Jähn.

The listening room: resetting your ears

Whereas the testing room is used for mathematical analysis, the adjacent listening room is tailored for the subjective experience. It, too, is an acoustically optimized room-in-room construction - the special wooden double walls backed with insulation only allow the linear reflections desired. The precisely calibrated, high-end sound system installed here costs around €100,000 and its tube-based end stages are the size of small refrigerators.

"The listening room is our acoustic magnifying glass," explains Jähn, "where we check what really is on a CD or DVD. This is important because your ears quickly get used to a sound and sometimes interpret errors as interesting effects. We test our sample speakers blind. We can compare them to the optimum and reset our ears."

Thanks to these detailed tests and comparisons, the sound development engineers at Audi can define detailed specifications for the speaker suppliers.

Another element for success is the tight networking between Technical Development, Production and Quality Assurance at Audi. This enables requirements from daily production work and the real-world customer experience to flow into the development of new sound systems.

The quality of the sound systems has gotten significantly better in recent years as a result, according to Gleim. And the engineers are constantly learning - at a rapid pace, day-in, day-out. Audi will further strengthen its leadership position in the high-end sector.


Monday, June 14, 2010

Audi runs R8 e-Tron prototype at 24 Hours of Le Mans


Audi's been promoting the fact that an "e-tron" would lap Le Mans this week as part of a demonstration of alternative fuel vehicles shown at speed just before the start of the 24 Hours of Le Mans. Joining cars like the Porsche GT3 hybrid and natural gas powered Volkswagen Scirocco that both ran Nurburgring, the Audi e-tron turned out to be an outwardly normal Audi R8 painted in a matte medium grey with bright green decals. 

Its battery sits behind the passenger cabin to optimise its centre of gravity, thus achieving a 42:58 weight distribution. Four motors drive the front and rear axles and maximum power is quoted at 230 kW (308 bhp/ 313 PS), while peak torque is an astounding 4,500Nm (3,319 lb-ft). About 70 percent of power goes to the rear. Audi says the R8-based e-tron will accelerate from 0 - 100km/h in just 4.8 seconds.

A cable and plug allow the Audi R8 E-tron’s energy storage to be powered by your household current of 230 volts/16 amperes. Charging time is about 6-8 hours when the battery has been completely depleted and goes down to about 2.5 hours when high voltage is used.


Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans Audi e-tron at Le Mans


Press Release

Audi e-tron at 24 Hours of Le Mans

  • Technology platform opens the 24-hour race
  • Five-time Le Mans winner Frank Biela at the wheel of the Audi e-tron
  • Le Mans vers le futur shows Audi concept for an electric sports car

Audi presents an Audi e-tron technology platform based on the R8 at the most important sports car race of the year. Racing legend
Frank Biela drove the purely electric powered high-performance sports car during the Le Mans vers le futur, a demonstration run for electric vehicles, giving Audi fans at the 24 Hours of Le Mans a peek at the fascinating future sporty electric cars.

Not one, but four motors - two each on the front and rear axles - power the wheels of the Audi e-tron, making the test vehicle a true quattro. With 230 kW (313 hp) and 4,500 Nm (3,319 lb-ft) of torque, the two-seater accelerates from 0 to 100 km/h (62.14 mph) in 4.8 seconds.

The test vehicle wrapped in the skin of an R8 demonstrates that the Audi e-tron belongs in the major leagues of electric sports cars. The package does justice to all of the specific realities of an electric vehicle: The battery is located directly behind the passenger cabin for an optimal center of gravity and axle load distribution.

The requirement specification for the production concept goes far beyond battery technology and the replacement of a combustion engine with an electric drive system. The interaction of all components has a decisive influence on efficiency, range and practicality. With the technology platform shown at Le Mans, Audi is providing an insight into the development work.

Design and package
The caliber of the car is apparent to the fans in Le Mans at first glance: Based on the R8, this Audi e-tron has a wide, powerful road stance. The trapeze of the single-frame grille dominates the front end and is flanked by two large air intakes.

1.90 meters (6.23 ft) wide while only 4.43 meters (14.53 ft) long and 1.25 meters (4.1 ft) tall - those are the proportions of a supercar. The wheelbase of 2.65 meters (8.69 ft) leaves ample room between the axles for people and technology. The sporty proportions offer enough room in front of the rear axle for the battery unit and the power electronics.

The special package of the Audi e-tron technology platform provides a 42:58 weight distribution between the front and rear axles and therefore ensures perfect balance and driving dynamics.

Systematic lightweight construction is a crucial prerequisite for efficiency and range - and this is also the case for electric vehicles. The Audi development engineers therefore draw on a core competence of the company for the e-tron. The body structure is based on Audi Space Frame (ASF) technology.

Driving dynamics
The normal distribution of the tractive power is clearly biased toward the rear axle. Similar to with a mid-engine sports car, roughly 70 percent of the power goes the rear and 30 percent to the front. If an axle slips, this balance can be varied by means of the four centrally controlled electric motors. The electric vehicle from Audi thus enjoys all of the advantages of quattro technology.

Via the four individual motors, which are each connected directly to the respective wheel via a short shaft, the e-tron also controls the lateral dynamics. Similar to the sport differential in conventional quattro vehicles, these motors allow torque vectoring - the targeted acceleration of individual wheels and thus an active distribution of tractive power. This boosts driving dynamics while simultaneously enhancing driving safety. Understeer and oversteer can be corrected by not only targeted activation of the brakes, but also by precise increases in power lasting just a few milliseconds. The concept car remains extremely neutral even under great lateral acceleration and hustles through corners as if on the proverbial rails.

The chassis has triangular double wishbones at the front axle and a trapezoidal-link rear suspension made of forged aluminum components - a geometry that has proven in motorsports to be the optimal prerequisite for high agility, uncompromising precision and precisely defined self-steering behavior. A taut setup was chosen for the springs and shock absorbers, but still offers a high level of comfort.

The direct rack-and-pinion steering gives finely differentiated feedback. Its electromechanical steering boost varies with speed. Fittingly, the technology platform rolls on 19-inch wheels.

Energy supply
The energy storage unit is charged with household current (230 volts/16 amperes) via a cable and a plug. The socket is behind what used to be the fuel cap. With the battery fully discharged, charging time is between six and eight hours. High-voltage (400 volts, 63 amperes) reduces this to around 2.5 hours.

The battery isn't only charged when the car is stationary, but also while driving. They keyword here is recuperation. This form of energy recovery and return to the battery is already available today in a number of Audi production models. During braking, the alternator converts the kinetic energy into electrical energy, which it then feeds into the onboard electrical system.

Interior and control concept
The interior evokes a luxury-grade racing atmosphere. As in the R8, its distinguishing characteristic is the monoposto - a large arc that sweeps around the instruments. Unlike the production R8, however, the Audi e-tron has a graphic display for indicating the driving mode located between two round-dial instruments showing the recuperation and boost level.

Similar to the new A8, the driver of this high-performance sports car can select the various driving modes using a stalk that is based on shift-by-wire technology.



Sunday, June 13, 2010

Spirra: A mid-engined supercar from South Korea


Spirra is the first supercar from South Korea, that has been in development since 2001. There have been many setbacks for the company, but finally the car is production ready with first cars reaching their owners already this summer.

Using a 2.7-liter V6 engine with four choices Hyundai energy. First, the very bottom, the engine generates 129 kW (175 PS) and torque 245 rpm Nm@6.000. The second option, a small turbo equipped engines that could power a 243 kW (330 PS) and 472 Nm of torque.

A third version with the highest use of turbo power 294 kW (400 PS) and the highest torque of 490 Nm. And, most powerful, using larger size turbocharger, produces 309 kW (420 PS).

The base Spirra N will run from 0 to 60 miles per hour in a ho-hum 6.8 seconds, but obviously, that number decreases as you add more power, and the EX will run that same jaunt in only 3.5 clicks, on its way to a top speed of 193 mph. And when you consider that the top-rung model only weighs in at 2,646 pounds, it means that this thing is certainly poised to be a real stunner when pushed hard.

The slick carbon fibre body is enveloped around a unique spaceframe chassis, so it certainly looks like a supercar should. The gearbox is a six-speed manual only, which keeps costs down both initially and from a long-term, servicing point of view.

There's no word yet on what the price tag for the Spirra will be, but having so many engine configuration options will likely complicate matters for Oullim. As for the release date, the carmaker plans to debut production this summer, meaning the roads might see the Spirra in the fall at the earliest.



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Press Release

Introducing the Spirra

Overview


  • Ultra stiff tubular spaceframe structure
  • Lightweight full carbonfiber bodywork
  • Midengine layout for optimum weight bias
  • Bespoke handcrafted assembly
  • Genuine racing technology adapted for road use
  • Lightweight, high performance V6 Turbo engines

History in brief

The history of the Spirra dates back to the beginning of the 1990s when Han-chul Kim and his wife Ji-sun Choi, both talented automotive experts, quit their jobs in leading Korean car companies to establish 'Proto Motors'.

Proto Motors was an automotive R&D firm specializing in developing advanced automotive concepts with industry clients and soon after settling down as a startup, ideas for a domestic developed supercar started to blossom.

Over several years, what began as an enthusiastic set of ideas developed into a full blown development project. In 2001, the 'PS-II' prototype was presented to the press with full commitment to bring it into production.

The difficulties in establishing a small scale, hand built production line of such exotic cars in an industry purely adapted to mass production was so great, the project saw several crisis that would nearly force it to a halt.

In July, 2006, Dong-hyuk Park, CEO of Oullim Group established Oullim Motors, absorbed Proto Motors and reshuffled the project to keep in on course for launch. In the end, it took a decade, 4 generations of complete re-engineering, certification and rewriting of legislature to bring our dream to the road.

As of March 2010, all legislature, homologation and certification was cleared for full production. We are expecting our first cars to be delivered this summer.

Why venture into volatile territory?

The geographic distance from Europe means that the European supercar ownership experience here is quite different to what manufacturers originally intended. It is marred by limited number of servicing centers, significantly higher repair costs due to shipping parts and having to ship the entire car to Europe for extensive damage repairs. This is inconvenient regardless of cost.

As of 2009, Korea is the fifth largest car manufacturing company in the world. But despite the history and technology in the auto manufacturing sector, we never did and still don't have a proper performance car that represents our country. Therefore, we set to establish a supercar brand of our own by introducing bespoke car manufacturing and servicing in Asia and become a permanent player in high performance Asian supercars.

Unmistakable presence

There's no point in speed if a supercar is unable to make people's heart race. Supercars are irrational, emotional cars and from the very first glimpse, a supercar shouldn't look ordinary. It should look extraordinary.

A dominating presence is the key to supercar design and we worked hard to achieve a look like nothing else from Korea. A new standard to which future Korean performance cars would be judged against.

The Spirra's design is aggressive in stance and proportion, but less aggressive in the details. This look is intended to inspire excitement, but not completely shout that it is a supercar. An elegant and natural looking supercar design was what we were looking for.

Full carbonfiber bodywork over tubular spaceframe

To meet our own performance standards, the Spirra had to be constructed as light as possible through a full carbonfiber body over a tubular spaceframe. Both are technologies beyond the realm of mass manufacturing due to high costs and difficulties in automation essential for mass manufacturing. The entire process is done by hand by our team of professional craftsmen and mechanics.

The benefits from all this effort is a very light and stiff construction which is useful for responsive high performance capabilities as well as providing superior impact protection to match the performance the Spirra is capable of. This type of technology is adapted from racing for the road and is a completely a unique approach to vehicle development compared to the existing Korean auto industry.

V6 Turbo engines for superior power to weight ratio


The stiff lightweight construction meant that we could rely less on the engine's power for performance to become a more efficient kind of performance machine. During development, the engine was changed from a naturally aspirated V8 for a turbocharged V6.

This would keep the engine's weight down to a minimum and still provide V8 levels of power as well as being kinder to the environment. Combining the lightweight construction with our turbocharged V6 results in an astonishing 2.4Kg/HP power to weight ratio. This design not only yields very quick straightline performance, it absolutely dominates in the corners with less weight to throw around. Extra grip is provided by 225/40R 19 front tires and 275/40R 19 rear tires.

Motorsports proven performance and engineering


Many of the technologies incorporated in the Spirra are derived from racing technology. The Spirra was developed with serious performance in mind and in order to make sure this design is completely functional, racing was part of the car's development program.

We took one of our prototypes with minimal homologation changes to race in the domestic GT Masters Championship taking two consecutive wins against such rivals as fully race prepared Porsche 911 GT3 RSRs, BMW M3s and Nissan 350Zs.

Experience from racing was applied back in our roadcar development by improving various aspects of the car such as suspension tuning, engine mapping and cooling.

Sophisticated Craftsmanship to ensure quality and precision

The same design principle applies to the interior where one can find full leather treatment throughout to maintain a high quality feel but without inhibiting the joy of driving. The driving feel is a higher priority than speed or luxury. The interior is designed to retain that balance between luxury and function.

Each Spirra is completely hand assembled by our team of professional craftsmen and mechanics in our dedicated production line. This production method ensures that each car meets our strict requirements in quality and precision.

The Spirra is our first of many future generations of supercars. Therefore, our efforts are concentrated in ensuring that our standards meet the expectation of our clients who are eagerly awaiting to be among the first to sit behind the wheel.

1959 Ferrari 250 GT LWB TdF Race Winner Auction in Monterey


One of the most glorious cars ever made and a mighty champion at that, a 1959 Ferrari 250 GT LWB Tour de France is on sale.

Stunning as it is in pristine condition with its original red and orange livery with original racing number, that only conveys the racing heritage behind this particular 1959 Ferrari 250 GT LWB Tour de France. In the same year as its construction, chassis number 1321 took first in its class and third place overall at Le Mans and won the 1000km Nurburgring race as well.

It has changed hands a few times only and has been maintained really well. It will now be auctioned by Mecum at Monterey, California. The auction will take place during the Pebble Beach concourse week, after it makes its first public appearance in almost 20 years.


1959 Ferrari 250 GT LWB Tour de France (chassis #1321) 1959 Ferrari 250 GT LWB Tour de France (chassis #1321) 1959 Ferrari 250 GT LWB Tour de France (chassis #1321) 1959 Ferrari 250 GT LWB Tour de France (chassis #1321) 1959 Ferrari 250 GT LWB Tour de France (chassis #1321)


Press Release

Mecum To Offer 1959 Ferrari 250 GT at Monterey Auction


Star Vehicle Took 1st Place in its Class at Le Mans in '59

Marengo, IL - June 4, 2010 --

A Le Mans-winning 1959 Ferrari 250 GT LWB TdF will headline the second annual Mecum Monterey Auction, August 13-14, 2010, at the Hyatt Regency Monterey Resort & Spa.

Driven by Jean Blaton and Leon Dernier, the Ferrari 250 GT – serial number 1321 – won 1st place in its GT class and 3rd overall at Le Mans in '59 as the No. 11 car. Earlier that same year, it took 1st place at the 1000 km Nürburgring endurance race. After its race career, the Ferrari was privately owned by only a few collectors – the most recent owning the car since the 1970s – and this 250 GT was last seen in public in the early 1990s at Road America.

"We are excited to offer collectors a chance to bid on this world class Tour de France 1959 Ferrari, the type of car that offers quality, provenance and is fresh to market," said President Dana Mecum. "The list of amazing vehicles continues to grow for our upcoming Monterey Auction. We have expanded it to two full days as more than 400 investment-grade collector cars, exotic vehicles and ultra rare boats are scheduled to cross the block."

Mecum's Monterey Auction takes place at the luxurious Hyatt Regency Monterey Resort & Spa. Cars will be displayed outside on the beautiful Del Monte Golf Course, while the bidding arena will be staged in a 10,000-square-foot ballroom. The auction is open to the general public. For a complete list of vehicles, visit www.Mecum.com.

The Mecum Auction Company has been specializing in the sale of collector cars for 23 years, now offering more than 5,000 collector cars per year. Consignment, bidder and event information is available online at www.Mecum.com or by calling 815.568.8888.


Mecum Monterey Auction
August 13-14, 2010
Hyatt Regency Monterey Resort & Spa
1 Old Golf Course Road
Monterey, CA 93940

Vehicle check-in:
Wednesday 9 a.m. – 6 p.m.
Thursday 9 a.m. – 6 p.m.

Preview:
Thursday 12 – 5 p.m.

Auction: Gates open Friday and Saturday at 9 a.m.

Auction begins Friday and Saturday at 10 a.m.