Daimler wants to expand cooperation with Tesla

Daimler would like to expand its cooperation with Tesla Motors, a top Daimler executive said on Thursday.

"I told my guys, go back to Tesla and look for other opportunities" to work together, Bodo Uebber, Daimler's chief financial officer, said at a press briefing. "We want to look for more cooperation."

Tesla is supplying electric motors and batteries to Daimler for its Smart Fortwo EV and the new Mercedes-Benz B-Class EV that goes on sale next year in the United States and Europe.

"We could use more" from Tesla, Uebber said, without providing specifics. Daimler holds a 4.3 percent stake in Tesla, which also provides EV components to Toyota Motor Corp.

Uebber said Daimler, which just launched its new CLA compact sedan and is preparing to add a second model, the GLA compact crossover, in early 2014, is already reviewing plans for its next generation of small vehicles, due around 2018.

Daimler is discussing "different strategies" for building the next-generation compacts in Mexico with partner Renault-Nissan , "but no decision has been made," Uebber said.

He said the CLA, the GLA and at least one more derivative in 2015 from the company's MFA modular platform were crucial to Daimler's growth, especially in the United States and China.

"We are a late comer" to the small premium segment, he said, but "we need compact cars to get a broader, younger customer base."

Subaru to reveal Viziv Evolution Plug-In Hybrid Concept @ Tokyo Motor Show

The Subaru Viziv Evolution concept, which was exhibited at the 2013 Geneva show, will be revealed at the 2013 Tokyo Motor Show in a closer to production form.

The Viziv Evolution we saw in Geneva utilized a diesel-hybrid set up, whereas this iteration is a plug-in hybrid that employs the same 1.6-liter DIT boxer engine in the Levorg concept.

The overall design carries over, though, with the engine connected to a continuously variable transmission, one electric motor up front and two additional electric motors connected to the rear wheels.

Technology is a big component of the innovative all-wheel drive Viziv Evolution concept, which will also come with a new autopilot system that previsions the future of fully-autonomous vehicles.

Major Specifications

  • Engine Type: 1.6-liter Horizontally-Opposed direct injection turbo "DIT" engine
  • Transmission Type: Lineartronic (CVT)
  • Electric Motor Type: Interior permanent magnet synchronous motor;
    1 front motor,
    2 rear motors
  • Drivetrain: Independent-rear-motor-driven Symmetrical AWD (All-Wheel drive) + Plug-in hybrid system
  • Battery Type: Lithium-ion batteries
  • Tesla Superchargers Enables Free Travel Between San Diego and Vancouver

    Tesla Motors today announced the opening of the West Coast Supercharger Corridor, energizing a network of stations that enable Model S owners to travel for free between San Diego, California and Vancouver, British Columbia.

    With stations along U.S. Highway 101 and Interstate 5, the West Coast's key routes, cities and destinations are connected by Tesla Superchargers. Model S customers can drive between San Diego, Los Angeles, Santa Barbara, San Francisco, Sacramento, Portland, Seattle, and Vancouver for free with minimal stops. More than 99 percent of Californians and 87 percent of Oregon and Washington owners are now within 200 miles of a Supercharger.

    Tesla Superchargers are substantially more powerful than any other charging technology in the world, capable of charging Model S 20x faster than most public charging stations. Superchargers deliver up to 120 kW DC (Direct Current) power directly to the Model S battery, providing half a charge in as little as 20 minutes. Superchargers are strategically placed along major highways connecting city centers. Stations are located where customers want to stop, near amenities like roadside diners, cafes and shopping centers, so owners can stop for a quick meal while their Model S charges for free.

    This morning in San Diego, two Model S will embark on a 1,750 mile #DriveFree road trip to Vancouver powered only by Tesla Superchargers. The journey will take them through Santa Barbara, San Francisco, Sacramento, Mt. Shasta, Portland, Seattle, and Vancouver, with stops at popular destinations such as the Santa Monica Pier, Monterey Bay and the world famous Pike Place Fish Market. Throughout the trip, Tesla will be hosting owner and media events and providing real time updates from the road on Twitter, Facebook and Instagram.

    Panasonic Agree to Supply Tesla with 2 Billion Battery Cells

    Panasonic Corporation and Tesla Motors today announced that the two companies have reached an agreement in which Panasonic will expand its supply of automotive-grade lithium-ion battery cells to Tesla. With this agreement, the two companies update and expand their 2011 arrangement to now supply nearly 2 billion cells over the course of four years. The lithium-ion battery cells purchased from Panasonic will be used to power the award winning Model S as well as Model X, a performance utility vehicle that is scheduled to go into production by the end of 2014.

    This agreement builds upon a multi-year collaboration between Panasonic and Tesla to develop next-generation automotive-grade battery cells and accelerate the market expansion of electric vehicles. Panasonic’s cells combined with Tesla’s proven EV battery expertise have already enabled more than 130 million customer miles driven in Tesla Roadsters and Model S.

    “This expanded agreement with Panasonic is important to Tesla as we continue to increase the pace of production,” said Tesla Co-Founder and CEO Elon Musk. “We look forward to strengthening our relationship with Panasonic, and I’m confident that this partnership will continue to be an integral part of Tesla’s success for years to come.”

    Together, Panasonic and Tesla have developed a next-generation battery cell technology that provides the highest energy density and best performance cells in the market. Panasonic’s cylindrical cell is a customized technology designed specifically for optimizing electric vehicle quality and life. These cells are integrated by Tesla into the battery pack in a way that enables an industry-leading range of approximately 265 miles for the Model S.

    “We are extremely proud to be a strategic partner of Tesla,” said Yoshihiko Yamada, president of the Automotive & Industrial Systems Company, an internal company of Panasonic. “Panasonic will increase its production capacity of lithium-ion battery cells to supply Tesla’s growing needs as it expands its production of EVs.”

    BMW Joins VW in Backing Germany’s 1 Million Electric-Car Goa

    BMW backed the German government’s goal to have 1 million electric cars by 2020 on the country’s roads, a week after Volkswagen said the target is achievable under broader terms for alternative drives.

    Developing the European Union’s electric-vehicle market will need the backing of authorities, though official support in the bloc is lagging behind initiatives in the U.S. and China, BMW Chief Executive Officer Norbert Reithofer said today in a speech at an industry conference in Munich.

    “I hope the ongoing discussions between national governments, the European Parliament and the European Commission lead to a package that’s viable,” Reithofer said at the conference sponsored by Handelsblatt newspaper. “At the moment, the commission’s proposals don’t offer incentives to speed up introduction of alternative drives.”

    Carmakers are promoting electric-powered models to comply with tightening regulations that apply to their fleets’ emissions across the globe. Munich-based BMW, the world’s biggest maker of luxury vehicles, is putting the 34,950-euro ($48,200) all-electric i3 city car into showrooms in Germany next month.

    VW CEO Martin Winterkorn said last week that the Wolfsburg, Germany-based manufacturer, Europe’s largest volume carmaker, will “contribute” to the German goal for electric vehicles to play a larger role in the market by 2020. Authorities’ plans are feasible as long as they include plug-in hybrids, which can switch between rechargeable battery power and conventional combustion engines, as the models offer the biggest market potential, he said.

    Volkswagen outlined plans in September to offer as many as 40 electric or hybrid models in the event that demand for low-emission cars takes off. The manufacturer will produce 14 vehicles with alternative drive through next year after introducing electric versions of the Golf hatchback and Up! city car at the Frankfurt auto show last month. VW also showed new plug-in hybrid versions of the Porsche brand’s Panamera four-door coupe and Audi’s A3 compact.

    Purely or partly battery-powered vehicles accounted for 4,157 new car registrations in Germany in 2012, about twice as many as the year before, according to the VDA auto-industry association. Germany’s new car market amounts to about 3 million vehicles a year.

    Volkswagen’s e-Up! went on sale in Germany this month for 26,900 euros. The model is “deliberately positioned” against BMW’s i3, Rudolf Krebs, head of electric-powertrain technology at VW, said on Sept. 4.

    BMW presented the i3 at the Frankfurt show, as well as a plug-in hybrid version of the X5 sport-utility vehicle. Reithofer reiterated today that the i8 plug-in hybrid sports car will be added to BMW’s lineup in 2014.

    Battery-powered driverless cars to be launched on UK streets by 2015

    Driverless cars will be trialled in Milton Keynes city centre from 2015, as part of a five year pilot scheme.

    100 pod devices will run on specifically marked out lanes between Milton Keynes Central train station, the centre:mk shopping centre and the offices in-between.

    They will be powered by an electric motor, and will travel along pavements at speeds of up to 12mph. Initially, they will be on separate lanes but the government may remove these lanes as the experiment progresses.

    The pods will be big enough to fit two passengers and luggage. They will also be fitted with sensors to avoid colliding with pedestrians and parked cars.

    A trial of the devices will begin in 2015, with a full rollout expected two years later. This will allow customers to hire pods from £2 a ride using smartphone apps to either hail or advance book one of the machines.

    The experiment is expected to cost £65million over the five year period, and has the backing of Business Secretary Vince Cable and Higher Education minister David Willets.

    Milton Keynes was chosen for the experiment because of its wide pavements. The trials will be the first driverless cars in operation on Britain’s streets.

    Tesla eyes 10,000 annual sales of Model S in Germany

    Tesla Motors is aiming to sell around 10,000 cars a year in Germany by 2015 as it builds out its networks of charging stations, its chief executive told a German paper.

    "I have confidence in the German consumer," Tesla Chief executive Elon Musk was quoted as saying in an interview with Welt am Sonntag.

    "Our fast charging stations should cover around half of Germany by the end of March 2014 and the entire country by the end of 2014," he said, adding he expected there to be 25 Tesla dealerships in Germany by the end of next year.

    Tesla's high performance, all-electric Model S went on sale in Europe in August, and even overtook Volkswagen's Golf as the bestselling car in Norway in September.

    Even vehicle sales of 10,000 would be only a small fraction of the German car market. Main industry association VDA expects sales to reach between 2.9-3.0 million cars this year from 3.08 million in 2012, and keep hovering at around 3 million vehicles in coming years.

    Germany was the biggest market outside the U.S. for Tesla Roadster sales. The Model S costs from 71,400 euros ($98,500) in Germany, according to the group's website.

    Graphene-Coated Silicon Supercapacitor could make batteries obsolete

    Solar cells that produce electricity 24/7, not just when the sun is shining. Mobile phones with built-in power cells that recharge in seconds and work for weeks between charges.

    These are just two of the possibilities raised by a novel supercapacitor design invented by material scientists at Vanderbilt University.

    It is the first supercapacitor that is made out of silicon so it can be built into a silicon chip along with the microelectronic circuitry that it powers. In fact, it should be possible to construct these power cells out of the excess silicon that exists in the current generation of solar cells, sensors, mobile phones and a variety of other electromechanical devices, providing a considerable cost savings.

    “If you ask experts about making a supercapacitor out of silicon, they will tell you it is a crazy idea,” said Cary Pint, the assistant professor of mechanical engineering who headed the development. “But we’ve found an easy way to do it.”

    Instead of storing energy in chemical reactions the way batteries do, “supercaps” store electricity by assembling ions on the surface of a porous material. As a result, they tend to charge and discharge in minutes, instead of hours, and operate for a few million cycles, instead of a few thousand cycles like batteries.

    These properties have allowed commercial supercapacitors, which are made out of activated carbon, to capture a few niche markets, such as storing energy captured by regenerative braking systems on buses and electric vehicles and to provide the bursts of power required to adjust of the blades of giant wind turbines to changing wind conditions. Supercapacitors still lag behind the electrical energy storage capability of lithium-ion batteries, so they are too bulky to power most consumer devices. However, they have been catching up rapidly.

    Research to improve the energy density of supercapacitors has focused on carbon-based nanomaterials like graphene and nanotubes. Because these devices store electrical charge on the surface of their electrodes, the way to increase their energy density is to increase the electrodes’ surface area, which means making surfaces filled with nanoscale ridges and pores.

    “The big challenge for this approach is assembling the materials,” said Pint. “Constructing high-performance, functional devices out of nanoscale building blocks with any level of control has proven to be quite challenging, and when it is achieved it is difficult to repeat.”

    So Pint and his research team – graduate students Landon Oakes, Andrew Westover and post-doctoral fellow Shahana Chatterjee – decided to take a radically different approach: using porous silicon, a material with a controllable and well-defined nanostructure made by electrochemically etching the surface of a silicon wafer.

    This allowed them to create surfaces with optimal nanostructures for supercapacitor electrodes, but it left them with a major problem. Silicon is generally considered unsuitable for use in supercapacitors because it reacts readily with some of chemicals in the electrolytes that provide the ions that store the electrical charge.

    With experience in growing carbon nanostructures, Pint’s group decided to try to coat the porous silicon surface with carbon. “We had no idea what would happen,” said Pint. “Typically, researchers grow graphene from silicon-carbide materials at temperatures in excess of 1400 degrees Celsius. But at lower temperatures – 600 to 700 degrees Celsius – we certainly didn’t expect graphene-like material growth.”

    When the researchers pulled the porous silicon out of the furnace, they found that it had turned from orange to purple or black. When they inspected it under a powerful scanning electron microscope they found that it looked nearly identical to the original material but it was coated by a layer of graphene a few nanometers thick.

    When the researchers tested the coated material they found that it had chemically stabilized the silicon surface. When they used it to make supercapacitors, they found that the graphene coating improved energy densities by over two orders of magnitude compared to those made from uncoated porous silicon and significantly better than commercial supercapacitors.

    The graphene layer acts as an atomically thin protective coating. Pint and his group argue that this approach isn’t limited to graphene. “The ability to engineer surfaces with atomically thin layers of materials combined with the control achieved in designing porous materials opens opportunities for a number of different applications beyond energy storage,” he said.

    “Despite the excellent device performance we achieved, our goal wasn’t to create devices with record performance,” said Pint. “It was to develop a road map for integrated energy storage. Silicon is an ideal material to focus on because it is the basis of so much of our modern technology and applications. In addition, most of the silicon in existing devices remains unused since it is very expensive and wasteful to produce thin silicon wafers.”

    Pint’s group is currently using this approach to develop energy storage that can be formed in the excess materials or on the unused back sides of solar cells and sensors. The supercapacitors would store excess the electricity that the cells generate at midday and release it when the demand peaks in the afternoon.

    “All the things that define us in a modern environment require electricity,” said Pint. “The more that we can integrate power storage into existing materials and devices, the more compact and efficient they will become.”

    Source: Nature

    Alain Prost teams up with Dams for Formula E entry

    Four-times Formula One world champion Alain Prost will be involved with a team competing in the new electric Formula E series due to start next year, organisers announced on Thursday.

    They said in a statement that the Frenchman, who made a failed attempt to run his own team in Formula One from 1997 to 2001, had linked up with compatriot Jean-Paul Driot to enter a new e.Dams team.

    Five teams have now been signed up from a planned field of 10 to race in city centres around the world starting in Beijing in September.

    "Being able to actively participate in the development of this new technology, which is 100 percent electric, is extremely motivating," said Prost.

    "As we've seen in other championships, 2014 will see a move towards more sustainable racing, proving more than ever that motorsport is the benchmark for the future."

    Driot's Le Mans-based DAMS teams have won petrol-engined championships in various junior series, including GP2, A1 GP, Formula Renault 3.5 and International Formula 3000.

    Tesla hires Segway / Apple VP to lead vehicle development

    Tesla Motors hired a former Apple executive to lead development of the electric carmaker's new vehicles.

    At Apple, Doug Field oversaw the development of products including the latest MacBook Air, MacBook Pro and iMac, Tesla said in a press release announcing the hiring on Thursday.

    Field, who began his career as a Ford Motor Co (F.N) engineer, was previously chief technology officer at Segway, the maker of the self-balancing, battery-operated Segway scooter. His title at Tesla will be vice president of vehicle programs.

    The Model S, Tesla's first attempt to reach a mainstream audience for electric cars, has enjoyed stronger than expected sales, helping Tesla shares more than quintuple this year.

    But for Tesla to reach an even broader market and silence electric car naysayers, Chief Executive Elon Musk must successfully develop a third-generation electric car by 2017 that will cost between $30,000 and $35,000.

    "Tesla's future depends on engineers who can create the most innovative, technologically advanced vehicles in the world," Musk said in a statement. "Doug's experience in both consumer electronics and traditional automotive makes him an important addition to our leadership team."

    Volvo Developing Wireless Charging for Electric Vehicles

    The Swedish car manufacturer has announced the development of an energy transfer technology that uses electromagnetic fields. Long term, Volvo sees the technology leading to cordless charging solutions for its hybrid and all-electric vehicles.

    In an official press release, Volvo's Vice President for Electric Propulsion Systems, Lennart Stegland, announced that “inductive charging has great potential” and is “a comfortable and effective way to conveniently transfer energy.” Volvo's tests also indicated that the method is safe, although there are currently no common standards for charging vehicles using induction, a fact that makes it difficult to bring it to mainstream consumers in the near future. Nonetheless, Volvo will continue researching the concept and will soon evaluate the feasibility of integrating it into future hybrid and all-electric cars.

    Inductive charging uses electromagnetic fields to transfer energy from one source to another. One induction coil, located in the power source, creates an alternating electromagnetic field, while a second coil draws the energy from the first to recharge the vehicle's battery. Charging begins automatically as soon as the vehicle is positioned over the charging apparatus, without requiring the use of cables or plugs. Volvo claims that the technology is already used today in a number of home appliances, such as electric toothbrushes.

    The research project was carried out in partnership with Flanders' Drive, an automotive industry think tank in Belgium. The study showed that it is possible to recharge the Volvo C30 Electric without the use of cables in 2 hours and 30 minutes.

    WiTricity Secures Additional $25 Million in Funding

    WiTricity announced today it has secured $25 million in Series E financing from new and existing investors, including Intel Capital and Hon Hai/Foxconn, one of the world’s largest consumer electronics manufacturers. The funding will support the company’s growth strategy as it further develops designs and products for wireless charging in the consumer electronics, electric vehicles, defense and medical device industries, as well as allowing WiTricity to pursue other strategic growth opportunities in the wireless power field.

    “WiTricity’s vision is to usher in a world where wireless power is so ubiquitous, you never have to think about plugging in again,” said WiTricity CEO Eric Giler. “In securing this funding from our investors we are even more effectively positioned to fulfill that vision and deliver game-changing wireless technology to partners and customers around the globe.”

    The announcement marks the next phase in WiTricity’s continued growth as a leader in the wireless power space. According to analyst firm IMS Research, the global market for wireless power will grow 86.5 percent annually to be worth $4.5 billion in 20161. As the inventor of Highly Resonant Wireless Power Transfer, WiTricity is poised to capture that market through existing and new partnerships with major manufacturers including Audi, Mitsubishi, Delphi, Haier, IHI, MediaTek and Thoratec.

    With this infusion of $25 million, WiTricity’s investment funding now totals $45 million. In addition, the company recently secured its 50th patent, positioning it even more strongly for growth and success in the global market.

    WiTricity have previously announced wireless electric vehicle charging partnerships with Audi, Toyota, Delphi, Mitsubishi and IHI.

    VW Says Germany’s 1 Million Electric-Car Goal Achievable

    Volkswagen says the German government’s goal to have 1 million electric cars on the country’s roads by 2020 can be achieved if partly battery-powered cars like hybrids are taken into account.

    “We will make our contribution toward this goal,” Volkswagen Chief Executive Officer Martin Winterkorn said today at a panel discussion at a ceremony near chemical producer BASF SE’s headquarters in Ludwigshafen, Germany.

    Plug-in hybrids “offer the biggest market potential,” and should help with a roll out of electric mobility on a larger scale, Winterkorn said.

    The CEO reiterated Wolfsburg, Germany-based Volkswagen’s plan to offer as many as 40 electric or hybrid models in the event that demand for low-emission cars takes off. The manufacturer will produce 14 vehicles with alternative drive through next year after introducing electric versions of the Golf hatchback and Up! city car at the Frankfurt auto show last month. Volkswagen also showed new plug-in hybrid versions of the Porsche brand’s Panamera four-door coupe and Audi’s A3 compact.

    VW’s move echoes initiatives by peers such as Nissan and General Motors to promote purely electric and hybrid cars, which help automakers comply with tightening fleetwide emission regulations across the globe.

    VW’s e-Up! went on sale in Germany this month for 26,900 euros ($37,000). The model is “deliberately positioned” against the battery-powered i3 city car that Munich-based BMW is bringing out, Rudolf Krebs, head of electric-powertrain technology at VW, said on Sept. 4.

    BMW, the world’s biggest luxury-vehicle manufacturer, presented the i3 in Frankfurt last month, as well as a plug-in hybrid version of the X5 sport-utility vehicle. The i3, priced at 34,950 euros, will enter showrooms in Germany in November.

    Plug-in hybrids have the most potential and BMW plans to eventually offer one in every model line, Herbert Diess, the automaker’s development chief, said in an interview last month. Cars with electromobility will make up 5 percent to 10 percent of the market by 2020 from well under 1 percent now, Diess said.

    Other alternative-drive vehicles shown at the Frankfurt auto show included an all-electric Mercedes-Benz B-Class crossover from Daimler that will use a drivetrain supplied by Palo Alto, California-based Tesla Motors, and a hybrid coupe prototype from Volvo Car Group.

    Nissan to Lead Rapid Charge Network Project

    Nissan is leading a consortium which aims to establish a network of rapid chargers for electric vehicles running the full length and breadth of the United Kingdom and Ireland.

    When complete, a total of 74 rapid chargers will have been installed, covering more than 1,100kms of major trunk routes and providing EV-friendly links to five seaports and five international airports.

    The project, named Rapid Charge Network (RCN), was presented at the Trans European Transport Network (TEN-T) event in Tallinn, Estonia, which was hosted by European Commission Vice President Siim Kallas. Estonia was the first country in the world to open a nationwide EV fast-charging network.

    Funding for the Rapid Charge Network (RCN) project is being led by Nissan and is co‑financed by the European Union through the TEN-T programme, with further contributions from fellow consortium members Renault, BMW and Volkswagen and ESB Ireland's Electricity Supply Board. It also draws on the network expertise of Zero Carbon Futures and Newcastle University

    "Nissan is delighted to be leading this important initiative. The UK's Rapid Charge Network will provide a vital sense of security for all EV drivers, not just those using the award-winning Nissan LEAF, as well as helping to promote the advantages of zero emission mobility to others," said Olivier Paturet, General Manager Zero Emission Strategy & Corporate Planning.

    Running on two priority road axes on the mainland, the network will link major ports and cities including Stranraer, Liverpool, Holyhead, Birmingham, Felixstowe, Leeds and Kingston upon Hull with connections to existing networks in Dublin and Belfast in Eire and Northern Ireland.

    Significantly, the rapid chargers being deployed will be the first state-of-the-art multi-standard units in public operation in Europe. This will ensure that every EV owner in the country can undertake long journeys secure in the knowledge that they will never be far from a rapid charger no matter what brand of car they drive. The units are compatible with cars using 44kW DC CCS, 44 kW DC Chademo or 43 kW AC systems. Installation of the rapid chargers is due to be completed by the end of 2014.

    By providing a network of chargers for EV drivers, the RCN project is designed to encourage further take up of electric vehicles in a bid to further decarbonize road transport.

    The network will also be used to gather strategic information from users, including customer charging behavior and changes in mobility patterns, to help plan the roll-out future rapid charging infrastructure in member states across Europe.

    The RCN project is one of 30 priority transport projects across Europe identified by TEN-T. The Projects were chosen according to the added value they offer to the European community and their contribution to the sustainable development of transport systems. They include rail, mixed rail-road, road and inland waterway projects, as well as a ‘motorways of the sea' scheme.

    Source: RCN

    Audi are World Endurance Champions in Japan

    Audi has defended its titles early in the FIA World Endurance Championship (WEC) in Japan. The success with the R18 e-tron quattro was achieved by Audi Sport Team Joest in odd circumstances: Heavy rain at Fuji meant that not a single lap could be completed under the Green Flag. In the end, the leaders of the standings, Loïc Duval/Tom Kristensen/Allan McNish (F/DK/GB), as the best Audi team took second place overall in the race, their team-mates Marcel Fässler/André Lotterer/Benoît Tréluyer (CH/D/F) were classified in fourth place in the LMP1 category. Consequently, the drivers’ classification will be decided between the two Audi squads at the remaining rounds.

    At the sixth of eight WEC rounds, difficult weather conditions prevailed. Steady rain had prompted race control to start the endurance race behind the safety car. But the 4.563-kilometer track at the foot of Mount Fuji was too wet for the race to be released in these conditions, so the stewards of the meeting interrupted the race after eight laps. A resumption behind the safety car after two and a half hours ended in another interruption 22 minutes later. Another two hours later, the participants again started behind the safety car before the race was finally stopped after just one lap. The stewards decided that force majeure had prevented a regular course of the race. As a result, the drivers, due to the shorter race distance, were awarded half the points equating to their positions – even if they had not been in the cockpit at all. With two remaining rounds, Audi is out of reach in the manufacturers’ World Championship with a 66.5-point advantage.

    As the best Audi squad in the race, the leaders of the standings, Loïc Duval/Tom Kristensen/Allan McNish, who had started from position four, achieved second place. They extended their lead in the Championship to 40.75 points. Among other things, the Audi designated as car number ‘2’ benefited from the fact that the number ‘8’ Toyota, which had qualified in position two, could not assume its place on the grid. As a result, the car had to start from the pit lane and was unable to overtake under safety car conditions.

    The number ‘1’ Audi suffered misfortune. André Lotterer/Marcel Fässler/Benoît Tréluyer initially led the race from position one on the grid. When debris impaired the intake duct of the engine Audi Sport Team Joest decided to perform a repair for safety reasons. The team used a second caution period to do so when there were prospects for a weather improvement and thus a resumption of the race. However, since this did not occur and the rain became heavier again, last year’s World Champions had to settle for fourth place in their class and 26th place overall. For the first time in almost exactly one year, the Audi LMP sports cars thus had to formally admit defeat. At Shanghai, the next WEC round will be on the agenda in three weeks from now. There, Audi could have another reason to celebrate, as an early title decision in the drivers’ classification is probable in China.

    New 1/4 Mile EV Record at 9.12 Seconds @ 145 mph [VIDEO]

    NEDRA President John Metric took his Miata, Assault and Battery to an all-time 1/4 mile record for an Electric door slammer at Royal Purple Raceway with a best time of 9.12 at 145 mph!

    The EV record has been held by Black Current III since 2010 with a 9.51 sec @135 mph pass of Santa Pod.

    The tube frame and tubbed 2002 Mazda Miata runs a 340 volt LiPo pack with 2x 2000 amp Zilla 2K-EHV controllers feeding dual brushed DC NetGain 9-inch motors, a Lenco 2 speed and double GV overdrive. For the record run the controllers were set to 170 volt & 1100 amps per motor.

  • 60ft 1.312
  • 330' 3.729
  • 660' 5.793 118.29mph
  • 1320' 9.161 144.23mph
  • BMW say i5 ‘already in the works’

    BMW could build a large battery powered sedan to compete head on with Tesla's Model S.

    Following the critical success being enjoyed by the Tesla Model S many within BMW's i project are already convinced that there is potential for a model larger than the i3.

    The company is still deciding whether the new car – likely to be called i5 – would be a crossover or a conventional sedan.

    'We are having these discussions right now,' said the senior BMW source, 'and no decision has been taken. In fact, there's still not an absolute decision that the car, if it is called i5, should even happen. Many, including myself, believe that there is potential. Then if we decide the car should happen, we need to decide if it is a regular sedan or something where the passengers are sitting slightly higher up.

    'Then after that we need to decide whether a car of this size can be a fully electric edition, like the i3, or whether it needs to be a range-extender – or perhaps even a plug-in hybrid. That could ultimately be the best solution for that model; we don't know yet.'

    BMW have already underestimated demand for their first fully electric i3 and have announced they are planning to have a plug-in hybrid in each and every model series. BMW have also already road tested an all electric X1 crossover, initially bound for Chinese production in a joint venture with Chinese partner Brilliance Auto, so perhaps an all electric 5 series or X5 is a logical next step.

    Source: WHATCAR?

    Nissan Dualis Crossover EV ‘likely’ for UK Production

    Nissan bosses have refused to rule out the introduction of an electric version of the next-generation Nissan Dualis (Qashqai in EU)

    According to Autocar Guillaume Cartier, Nissan's head of European sales and marketing says the Japanese automaker won't consider an electric-drive version of the model "for now," implying that there may be one in the future for Europe. He added that economies of scale are driving battery-electric powertrain production costs down, so Nissan is likely to expand the battery-electric option well beyond models such as the Leaf.

    The Qashqai has been built at Nissan's UK plant in Sunderland since December 2006. Nissan started production of the LEAF at Sunderland in March of this year.

    Cartier also said that Nissan's EV lineup will continue to grow, but EV technology will not be retro-fitted into existing models. New models will be designed with electric propulsion in mind from the outset.

    Source: Autocar

    Nissan ZEOD RC makes its first public run at Fuji Speedway [VIDEO]

    Japanese fans will have the first opportunity to see the revolutionary Nissan ZEOD RC in action when the car makes its public on-track debut at this year's Fuji Speedway round of the FIA World Endurance Championship.

    Running in pure electric mode, the Nissan ZEOD RC will undertake demonstration runs on October 18, 19 and 20 – all three days of the Japanese round of the WEC. The Fuji demonstration was announced today at the Nissan 360 global media event in California.

    The ZEOD RC (Zero Emission On Demand Racing Car) will make its race debut at next year's Le Mans 24 Hour. The global leader in electric vehicles for the road, Nissan will trial variants of new electric drive train technologies as part of its intended future return to LM P1 competition to challenge for overall victory at the world's most prestigious endurance race.

    The Nissan ZEOD RC will kick off its testing and development program soon in the UK with inaugural Nissan PlayStation GT Academy winner Lucas Ordóñez behind the wheel.

    Ordóñez and Krumm were teammates at Le Mans this year where they scored third place in the LM P2 class with 2011 GT Academy winner, Jann Mardenborough.

    Nissan is also enjoying a highly successful season in the FIA World Endurance Championship in the LM P2 class with pole position and victory at the first four rounds of the season at Silverstone, Spa-Francorchamps and Le Mans and Interlagos.

    "One of our goals with the Nissan ZEOD RC is to draw back the curtain for fans so they can see what goes on behind the scenes in the development of such a unique race car," said Nissan's Global Motorsport Director, Darren Cox.

    "As part of that philosophy, we thought it would be quite fitting that rather than just test behind closed doors, we give the fans the chance to see the car in action.

    "To be able to do that at such a great venue like Fuji Speedway only 90 minutes away from the home of Nismo in Yokohama was too good to pass up.

    "We'll be on track with many of the cars from the WEC at Le Mans next year so our demonstration runs will also give us some initial comparison data as well."

    After the Fuji events, the Nissan ZEOD RC will continue its development program in Europe with Lucas Ordóñez returning to the driver seat. The car is scheduled to make its race debut at next year's Le Mans 24 Hour where it will occupy Garage 56 – an additional entry reserved by the Automobile Club de l'Ouest for cars using new and innovative technology not previously seen in the French endurance classic.

    "Nissan has become a global leader in the development of zero emission automotive technology and the Nissan ZEOD RC will allow us to further develop those capabilities using the toughest endurance race in the world as a mobile test bed to test the potential of our planned LM P1 power train," said Andy Palmer, Executive Vice President and Executive Committee member at Nissan Motor Company Limited.

    "The ZEOD RC program is designed to develop multiple technologies to evaluate how they could be used for a future LM P1 class return of Nissan at the Le Mans 24 Hour."

    Nissan is already a global leader in the development of electric vehicles for the road. Launched in 2010, the Nissan LEAF has become the world's best-selling all-electric car. The LEAF won the 2010 Green Car Vision Award, the 2011 European Car of the Year, the 2011 World Car of the Year, and the 2011–2012 Car of the Year Japan.

    Nissan launched the Nissan LEAF RC in 2011 – a race car prototype powered by the same 107-hp electric motor that is used in the road car.

    The Nissan ZEOD RC is the next step in the electrification of motorsport. The new car will turn speeds faster than GTE class cars running purely on electric power with zero emissions.

    Bloomberg says BMW, Audi to Blitz Tesla With High-End Competition [VIDEO]

    Bloomberg reporter Matt Miller tries to make a case that BMW and Audi are going to squeeze out Tesla at the top-end of the market, but the analysis is fairly poor.

    Miller's argument starts by comparing BMW's two seater plug-in hybrid i8 sports car to Tesla's seven seater 100% battery electric Model S 4 door sedan? These cars aren't even in the same market segment!

    We're not even sure how Audi enters the competitive analysis as Audi admitted defeat and canned the R8 e-tron saying they couldn't figure out how to make a high performance battery only car economically viable and they have not announced any plans for a high performance battery only sedan to go up against the Model S.

    This is the kind of trash reporting that listed companies must endure, commentators constantly trying to talk the stock price up or down. At least it's good to see a 'real' analyst like Dougherty & Co.'s Andrea James who actually knows what's she's talking about get some air time.