Showing posts with label Electric Car News. Show all posts
Showing posts with label Electric Car News. Show all posts

Honda delivers first electric Fit

Torrance, California – Honda has delivered a 2013 Fit EV electric vehicle to the city of Torrance. The delivery is one of the first major steps in the Honda Electric Vehicle Demonstration Program and a prelude to the retail market launch of the Fit EV to customers in California and Oregon this summer.

The Fit was delivered in a ceremony to Torrance mayor Frank Scotto by Steve Center, vice-president of the environmental business development office at American Honda.

“This is an exciting day as we take another important step toward Honda’s comprehensive vision for reducing CO2 emissions, while at the same time advancing our relationship with the city of Torrance,” Center said. “Honda has a long history with electric vehicles starting with the introduction of our first battery electric car, the EV Plus, nearly 15 years ago.”

Honda and the city have worked together over the past year to gather input from residents about potential recharging station locations and have jointly participated in several public awareness events. The two will continue these initiatives and also study local government fleet usage of an electrified vehicle. The city will also receive a Honda plug-in hybrid for additional testing at a later date.

Honda unveiled the 2013 Fit EV at the 2011 Los Angeles Auto Show and plans to lease vehicles to its U.S. customers in the summer of 2012. Honda will also test the Fit EV with Google Inc. and Stanford University as part of its demonstration program.

Source;
http://www.autos.ca/general-news/honda-delivers-first-electric-fit

Honda says it will make electric cars in China

Honda plans to build make electric cars in China starting next year 2012 as part of a plan to raise sales there 10% a year.

Honda, a Japanese automaker, isn't stopping at electrics in the drive to pout China on the forefront of the automotive revolution, Bloomberg News reports. It also will make hybrids eventually, Bloomberg quotes CEO Takanobu Ito as saying at the Shanghai auto show today.

It's not like Honda will have to ship in a lot of parts for the project. The batteries, motors and other core parts are already made by Chinese manufacturers to cut procurement costs, he said. It's unclear which car that Honda would use as a base, but it has announced plans to electrify the small Fit. That's an electric fit in the picture, above.

Honda expects to sell 730,000 vehicles in China this year, a growth rate of about 10%, Ito said.

Source;
http://content.usatoday.com/communities/driveon/post/2011/04/honda-says-it-will-make-electric-cars-in-china/1

Car and Driver: 2011 Chevrolet Volt Full Test - Road Test

I gotta say, this new Volt is a great looking car, I really hope it takes off....
BY DAVE VANDERWERP, PHOTOGRAPHY BY ROY RITCHIE
October 2010
Mass-produced electric cars are finally here. And, this time around, it appears they’re here to stay.

It’s irrelevant that, depending on how their electricity is produced, electric vehicles don’t come very close to living up to the zero-emission label they often receive. Also irrelevant is the point that battery packs with enough capacity to power a vehicle for any significant range are prohibitively expensive today. That’s because the trump card already has been played: It’s called government intervention. The Obama administration has started to unleash part of a planned $69 billion to thousands of clean-energy companies—through tax credits, loans, and grants—as well as to consumers, with a $7500 federal tax break for buying a car that has at least 16 kilowatt-hours (kWh) of energy stored in a battery pack. Do you think it’s a coincidence that the Chevrolet Volt’s lithium-ion pack contains exactly that amount?

But beyond the commonality of large battery packs, the Volt sets itself apart from the Nissan Leaf and the forthcoming EV crowd: It also has a gas engine that can step in to extend the Volt’s range when the battery’s energy is depleted.
This is why GM calls the Volt an “extended-range electric vehicle,” and the dual-power-source arrangement makes a lot of sense at a time when there’s precious little charging infrastructure.
Currently, 48 of 50 states have fewer than 10 charging stations, and even California’s relative abundance of 422 pales in comparison to its roughly 10,400 gas stations. In other words, it’s going to be some time before charging while at work or out on the town becomes the norm; for now, EVs’ batteries will be replenished largely at home. And with maximum ranges in the 100-mile neighborhood, good luck with any long- or even moderate-distance travel. And forget about having a pure electric as your only vehicle.
What if your family in California needs you to visit? While a pure EV—needing long recharging sessions every 70 miles or so—will transport you back to the era of the monthlong road trip, the Volt could easily drive across the country on gas when there’s no time or electricity available for recharging. Closer to home, if this writer had been driving a Leaf instead of a Volt, I would have had to deal a blow of rejection to a five-year-old nephew  whose birthday party was 60 miles distant, due to the lack of a place to charge while there. Do you think he would have understood?
And although the Volt has both a gas engine and two electric motors—one primarily to power the wheels and a second to generate electricity from the gas engine—it is unlike any gas-electric hybrid on the road today: If charged sufficiently, it can operate continuously, at any speed, as an EV, without ever needing to switch on the gas engine. Of course, this raises a whole new set of questions, ranging from: “Won’t the fuel go bad at some point?” and “Isn’t it beneficial for longevity’s sake to start the engine once in a while?” to “Hey, boss, when can we start expensing our home electricity bills?”

This is but a glimpse into the Volt’s complexity and why, after six weeks of electric-only operation, the Volt will start to ask the driver via the instrument panel if it’s okay to switch on the gas engine for a bit to keep it fresh. And the Volt makes sure to burn through a tank of fuel each year to ensure it never gets stale. Plus, in order to extend the life of the very expensive battery—sources say it costs as much as $10,000; GM won’t comment—it uses only about 9 of its 16 kWh for propulsion and requires its own coolant circuit in order to heat or cool the 288 cells to keep them in the optimal temperature range (32° to 90°F). There’s yet another circuit to cool the electric motors. Things get even more complex in the powertrain, more so than we were initially led to believe [see download].

Behind the wheel, however, it all operates seamlessly. Hit the glowing blue start button, and the seven-inch LCD-screen instrument panel, like the one used for the standard navigation, comes to life. It presents an estimated electric-only range, a gas range, and a total of the two. To the right is a graphic that provides driving feedback; the Volt is operating most efficiently when the spinning, green ball of leaves stays in the middle. Hit the gas too hard, and the ball elevates, shrinks, and turns yellow. Go for too much brake, and the ball does the opposite, slinging downward because energy that could have otherwise been recaptured regeneratively is being wasted. It’s a very straightforward and easy-to-follow setup. The center screen above the array of touch-sensitive controls on the dash keeps track of electrically and gas-driven miles separately, displays fuel economy (more on that later), and rates the efficiency of your driving.

Whether or not the gas engine is running, the Volt always has an EV-like demeanor. Which is to say there’s almost no waiting—and no downshifting—as it responds swiftly to throttle inputs. Acceleration is one continuous ooze of thrust—sort-of CVT-like, only without the engine drone. In fact, although the Volt isn’t slow compared with its peers—its 9.2-second 0-to-60-mph time beats both the Leaf and the Toyota Prius by 0.8 second—it feels quicker than the numbers suggest because, off the line, no matter what the driver does, the electric motor’s 273 pound-feet of torque rolls out modestly and averts wheelspin. The immediacy you feel shows up better in the 3.7-second 30-to-50-mph time, which is just a couple of ticks slower than a V-6 Mazda 6.

There’s not much noise, either. In EV mode, the cabin is as quiet as a Lexus RX350’s at 70 mph, and even with the engine running, it matches the Prius at 72 dBA. The point at which the engine fires is barely discernible—the reconfiguring of the digital dash when it transitions is far more obvious. When the driver hammers the Volt in range-extending mode, the engine revs more assertively but is never harsh or intrusive.
Beyond its impressive powertrain, the Volt drives surprisingly well, with a reassuringly steady suspension. The electric power steering is light but direct on-center, adding weight in proportion to angle. It’s neither totally natural nor terribly off-putting. Ditto the regenerative brakes, which work well at moderate levels, though they’ll never match the feel of a good ol’ vacuum booster. At low speeds and during near-limit applications, the brakes can feel disconnected and very nonlinear.

Naturally, the Volt sports various mileage-extending features, including the anticipated wind-swept shape and a front apron to help aerodynamic efficiency. That said, its coefficient of drag is 0.29, worse than the far-more slippery Prius’s 0.25. The forged aluminum wheels wear low-rolling-resistance Goodyear Fuel Max tires, which squeal loudly as they approach the limit but are surprisingly capable, delivering a solid 0.83 g on the skidpad—same as the frisky Honda Accord. The stability control can’t be disabled, but it operates deftly so as not to intrude on smooth excursions to the limit, where the Volt is actually reasonably balanced.

Another interesting tidbit is an automatic seat-heater function. Warming the car’s cabin can be a significant energy draw—at times even more than powering the wheels—so the Volt will sometimes heat the seats instead of cranking the HVAC system to save power. And the Volt is the first vehicle to feature Bose’s new Energy Efficient Series sound system. The seven-speaker stereo uses amplifiers that rapidly switch on and off to conserve power rather than always-on linear amplifiers, and—combined with higher-grade neodymium magnets—the Bose system is both lighter and uses 50 percent less energy than before. But, most important, its clean and punchy sound quality is competitive even with that of cars costing far more.
For the rest of the article, see the link below, with a lot of extra photo's too!;

L.A. auto show: Honda to reveal electric concept

Honda will unveil an electric-vehicle concept on Nov. 17 at the Los Angeles auto show. It will be accompanied by a new platform that shows off Honda's latest plug-in developments.

Honda Motor Co. Ltd. president and CEO Takanobu Ito will be at the press conference, marking the first time the company's global CEO has made a product reveal in Los Angeles.

The show is expected to feature about 20 global reveals, organizers said on Wednesday.

Source;
http://www.autoweek.com/article/20101027/LOSANGELES/101029900

We’ll See the New Toyota RAV4 EV Soon

Interesting....I think by borrowing tech from Tesla will help them pass GM's Volt in the race for a viable EV....

By Chuck Squatriglia

They are keeping very, very busy at Toyota, where engineers are frantically developing the RAV4 EV and the brass promise to deliver the plug-in Prius and a slew of new hybrids within two years.

The most tantalizing tidbit was a tweet saying the new RAV4 EV makes its worldwide debut at the Los Angeles auto show in November. Not much else was said — Toyota’s tweeter only had 140 characters to work with, of course, and he or she really needs to work on brevity. But Toyota executive vp Takeshi Uchiyamada said the RAV4 EV will roll into showrooms in 2012, about the same time we’ll see the plug-in Prius.

The timing suggests Toyota has been working frantically on the EV it announced in July. The car is being developed with some help from Tesla Motors, which is providing batteries, motors and other tech to help jump-start the program. Big push aside, don’t look for Toyota to go nuts with electrics. Uchiyamada says cars with cords will comprise but a small part of the fleet.

“Based on the current battery technology, it is not feasible to have all-electric vehicles” for the entire fleet, he said during a presentation in Detroit, according to the Wall Street Journal. “As battery technology gets better, that transition will lead to more pure electronic vehicles. Liquid fuels are still a superior fuel because of their energy density.”

As for the Toyota-Tesla partnership, Uchiyamada told reporters Toyota can be “slow” to innovate and tapping Tesla allows it to work “in a much quicker way” as it makes a prototype electric version of its RAV4 cute-ute (pictured).

The plug-in Prius rolls into North American showrooms in the “May/June 2012 time frame” and the goal is to sell 20,000 of them, Toyota said in another tweet. That’s not a lot in the grand scheme of things — the company sold 356,824 Camrys last year — but it’s twice the number of Chevrolet Volts that GM will build next year.

As if that weren’t enough, said the company also will roll out six new hybrids by 2012. Two will wear the Lexus badge, and they’ll be new models — not hybrid versions of existing vehicles.

Source (pic from Jalopnik);
http://www.wired.com/autopia/2010/09/rav4-ev-la-auto-show/

Tesla and Toyota to develop RAV4 EV, hope to launch in 2012

Toyota and Tesla have officially announced that the electric prototypes being developed by the California startup are based on the RAV4 crossover, and the two companies hope to have a production version ready by 2012. When we sat down with Toyota CEO Akio Toyoda last week, he revealed that an initial prototype was being built with a Tesla electric powertrain. Since then, Tesla CTO JB Straubel revealed that his engineering team was preparing two vehicles based on an existing Toyota platform for delivery by the end of July.

If the project comes to fruition, it will be great news for fans of the original RAV4 EV which debuted in the late 1990s. Several hundred of those vehicles are still on the road today and regularly turn up for sale on eBay Motors at premium prices.

The new RAV4s will use Tesla's liquid cooled lithium ion battery configuration that contains thousands of commodity laptop cells. The first prototype is already running and a larger fleet will be prepared this year for durability testing by Toyota.

Source;
http://www.autoblog.com/2010/07/16/tesla-and-toyota-to-develop-rav4-ev-hope-to-launch-in-2012/

So You Think Buying Electric Over Gas Will Save You Money? Think Again!

Interesting look at the Cost of Ownership from a different view....
One of the common beliefs surrounding Electric cars is that you don't need to buy fuel anymore and that very quickly negates any added costs to the vehicle. Thus making purchasing an electric car both an emotionally appealing purchase and an economically sensible purchase as well.

Well, why don't we have a look at the numbers and see exactly how long it will take to reimburse these costs.

First, some assumptions
-Gas cost is $3/gallon
-Electricity cost is $0.08/kWh
-Recharging Batteries is 80% efficient

Now the vehicles and their quick specs.
Nissan Leaf $32,750 -> Corrected to $25,280 thanks to the American tax payer
24kWh battery
100 miles per charge
$2200 Quick Charger

Chevrolet Volt~$40,000 -> Corrected to $32,500 again thanks to the American tax payer
16kWh battery -> Run at 8.8kWh to ensure battery life
40 miles per charge
~$2000 Quick Charger (note, prices not revealed, but since it has to store less of a charge I allotted a smaller price tag.)

Tesla Model S$57,400 -> Corrected to $49,900
90kWh battery
300 miles per charge
~$5000 Quick Charger, (price not released but the thing is gonna be massive to store enough energy to charge a ~90kWh battery)

And their competition...

Toyota Prius (Hybrid Competitor)$22,800
50mpg Combined

Ford Fiesta (Economy Car Competitor)$13,320
33mpg Combined

BMW 5 Series (Model S's luxury Competitor)$45,950
25mpg Combined

Now for the calculations...

Nissan Leaf
24kWh/(80% charge efficiency)=30kWh to charge30kWh*($0.08/kWh)=$2.40 Per Charge$2.40/(100 miles)=$0.024 Per Mile

Chevrolet Volt8.8kWh/(80% charge efficiency)=11kWh to charge11kWh*($0.08/kWh)=$0.88 Per Charge$0.44/(40 miles)=$0.022 Per Mile

Tesla Model S90kWh/(80% charge efficiency)=112.5kWh to charge112.5kWh*($0.08/kWh)=$9 Per Charge$9/(300 miles)=$0.030 Per Mile

Toyota Prius($3/gallon)/(50miles/gallon)=$0.060 Per Mile

Ford Fiesta($3/gallon)/(33miles/gallon)=$0.091 Per Mile

BMW 5 Series($3/gallon)/(25miles/gallon)=$0.12 Per Mile

Clearly the Electric cars do hold an advantage for every mile they drive, but how long will it take to get their fuel economy advantage back?

Check The Graph Abovre.

Things to note from it
-The quickest payback is the Tesla when compared to the 5 series, but this only happens after a whopping 100,000 miles.
-The Nissan Leaf beats the Prius in monetary terms after about 140,000 miles.
-Then the Nissan Leaf beats the Fiesta after a about 250,000 miles.
-The Chevy Volt, Ford Fiesta, and Toyota Prius, all hit the same cost to own just over 300,000 miles.

Unfortunately, the jury is still out on the lifespan of these new batteries. But from my perspective, electric cars are feasible this day and age, but they still haven't beaten good old fashioned gasoline.

Source;
http://www.autospies.com/news/So-You-Think-Buying-Electric-Over-Gas-Will-Save-You-Money-Think-Again-55024/

Details on Nissan Leaf battery pack, including how recharging speed affects battery life

Interesting....
Nissan broke ground on a new battery plant in Smyrna, Tennessee yesterday (figuratively, anyway, the actual bulldozing doesn't start for a few weeks). For now, we will call this the U.S. Leaf battery plant, but it's really part of Nissan's strategy to electrify more and more of its vehicles. As we mentioned yesterday, once it is up and running at the end of 2012, the plant will have the capacity to make 200,000 battery packs a year. The nearby vehicle assembly facility where the U.S.-built Leafs will come to life will have a maximum capacity to make 150,000 Leafs a year alongside other Nissan vehicles like the Altima and Pathfinder. The extra capacity, if used, could be sold to other automakers or go into non-Leaf Nissan products.

In Smyrna yesterday, Nissan's director of product planning, Mark Perry, gave AutoblogGreen some more information on the Leaf battery pack. As we know, Nissan says the 24 kWh pack gives the Leaf a 100-mile range on the gentle LA4 cycle (meaning it probably isn't a totally reliable guide to estimate real-world driving). Still, this means the test packs have been charged and discharged a lot, because Perry said Nissan has done "hundreds of thousands" of miles of reliability testing on the battery packs, including dunking them in a pool and freezing them. Not that we'd expect him to say anything different, but Perry is confident that the battery pack is totally safe.

What's in the pack? 48 modules, each with four cells (so, 192 cells total) arranged in a big square. The part that sits under the real seat is a little taller than the rest, as the modules are stacked vertically while the other modules lay horizontal under the front seats and floor. The entire pack weighs around 600 pounds and contains around 9 pounds of lithium. How will people use the Leaf? Find out Nissan's expectations after the jump.

Once out in the real world, Nissan expects most Leaf charging to be done using Level 2 (240V) units, because that's what most people will get at home and what will be used in public chargers. Level 2 chargers can get the pack from zero to 100 percent in about eight hours. Level 3/direct quick charging could happen, but it's not widely available yet. Meanwhile, Level 1, aka recharging from a standard 110V outlet, will be "more for emergencies," Perry said. It'll also take ages (think 20+ hours).

How you recharge the pack will affect its life. Nissan has said it expects to Leaf drivers to have around 70 to 80 percent capacity left in the pack after ten years. What will get drivers to the upper or lower end of that range? The amount of fast charging one does. With regular Level 2 charging, drivers should expect 80 percent live left in the battery. With a lot of Level 3 charging – two or three times a day – the pack will only be at the 70 percent level. Level 3 charging is appealing because it can get the battery from zero to 80 percent full in under 30 minutes, but there is a very clear drawback if it becomes a habit. Perry said that most people will be happy with 240V home charging:

The people who drive EVs today, they talk about charging like this: "Charging to me is five seconds. I plug it in, I walk away and forget about it." To them, it's really pretty simple.

What might be coming down the road? Perry said there is no Moore's law in battery production, but did say Nissan is seeing about an eight percent improvement in things like cost reduction, range and efficiency, year over year. Whether this results in cheaper packs or lighter/smaller/better ones will depend on what the early adopters do with their Leafs and what they tell Nissan they want. What's your preference?

PRESS RELEASE
Type: Laminated lithium-ion battery
Total capacity (kWh): 24
Power output (kW): Over 90
Number of modules: 48
Battery pack contents:
-Positive electrodes
– Lithium manganate-Negative electrodes
– Carbon-Cells-Modules-Assembly parts
Charging times:
-Quick charger DC50kW (0 to 80%): apx. 30 min
-Home-use AC240V charging dock (0-100%): less than 8 hrs
Battery layout: Under seat & floor
Battery life: After 10 years, the battery is expected to have 70-80 percent of its original storage capacity.

Source;
http://green.autoblog.com/2010/05/27/details-on-nissan-leaf-battery-pack-including-how-recharging-sp/

Honda turns to China to develop electric vehicles

Historically, Honda has been identified as a leader in environmentally friendly and high-efficiency vehicles, but recently the automaker has struggled to deliver class-leading products, and due to policy choices, risks falling further behind the competition.

Toyota has established itself as a strong leader in the hybrid market, offering numerous hybrid vehicles, including the class-leading Prius gas-electric hybrid. Honda, by contrast, lagged behind Toyota and the rest of the market introducing hybrid vehicles, and those it has introduced have failed to make meaningful impacts either technologically, or in sales.

Other automakers, such as Ford with its Escape and Fusion hybrids – both class-leading in fuel economy, and Nissan, with its upcoming electric Leaf which is already sold out for 2010, are moving ahead with advancement previously thought to be exclusively available to Toyota and Honda.

Honda took a gamble when it decided that pure electric and hybrid vehicles would not be important vehicles in the near future, and as those markets expand the Japanese automaker is forced to play catchup. According to Reuters, Honda’s CEO, Takanobu Ito, told reporters Tuesday that he believed, “There needs to be a major breakthrough in battery technology [for electric vehicles to be viable].”

Ito also suggested that it will likely take 10-20 years before purely electric, battery-powered vehicles would be viable mainstream alternatives to fossil-fuel powered vehicles. As a direct result of Ito’s beliefs, the automaker has fallen behind in the development of partnerships and technology for cutting-edge electric vehicles, and as such, hopes to tap into the resources available in China to potentially find a way to catch up to the competition.

“If there is a suitable chance, we hope to work with China to (develop) batteries,” Ito said.

Honda does have an existing partnership with a potential partner to develop batteries for pure electric cars, but that partner is based in Japan and currently produces lithium-ion batteries for Honda’s gas-electric hybrid vehicles, as well as electric vehicles for Mitsubishi.

Source;
http://www.leftlanenews.com/honda-turns-to-china-to-develop-electric-vehicles.html

Nissan planning to offer wireless charging for its upcoming EVs

Now, this sounds cool....
Not only is Nissan developing a wireless charging bay, it also hopes to one day let electric cars charge as they are driven over a series of plates installed into the surface of designated lanes on the roads and highways, The Guardian reports.

The wireless charging system borrows from the concept of inductive charging, similar to the electromagnetic field technology used to charge an electric toothbrush. Nissan’s Zero Emission Vehicle (ZEV) electric car is able to charge in a compatible parking bay without the use of wires. Referring to its plan to put plates on the road, Nissan says that it still doesn’t know the costs, the length of the designated lane, nor how long the car has to be on the lane for the battery to be recharged. David Bott, director of innovation programs at the Technology Strategy Board, said that what’s likely to happen is that at night the electric cars will be plugged while during the day, the cars will be using inductive recharging. Nissan’s ZEV is a five-seater family-sized car with a top speed of 90mph and a battery range of around 100 miles. It is set to go on sale in the US and Japan next year, before arriving in the UK and the rest of Europe by 2012. Pricing has not been announced yet.

Source;
http://www.4wheelsnews.com/nissan-planning-to-offer-wireless-charging-for-its-upcoming-evs/

Honda president downplays BYD electric car

Photo taken from Autoblog.com, I love it, "MEH"
Shanghai, November 25 (Gasgoo.com) In a recent interview by auto163.com, Honda President Takeo Fukui said he didn’t think highly of BYD’s research and development of electric cars.
Speaking of the electric vehicle (EV) development, Fukui said as the EV technology is still not mature, it is impossible to push out the electric cars now. The key point is it is hard to solve the problems of battery, especially for the extension of battery life. The existing electric cars now can only reach as far as 100 km, reflecting a difficult situation for mass production and commercialization.
Fukui said he didn’t expect BYD’s research and development of electric cars to be good. Apart from that, Fukui showed his confidence in the Chinese auto market in 2009. He noted that despite the global financial crisis, Chinese auto market will maintain a 5% growth next year as a direct result of the overall economic growth in China.
Compared to Europe and some other neighboring countries, China was relatively less affected by the financial crisis. Fukui predicted that the Chinese auto market will see sales volume at around 9.4 million units for this year.
Honda will continue to put emphasis on the Chinese market and also increase investment in China in the coming years, Fukui said.
Source;
via Autoblog article;

Technical details for Mini ‘E’ electric vehicle

Here's a look at what BMW and Mini are doing in there search for a viable alternative fuel.
Mini has released the full technical details for the all-electric version of its two-door Cooper hatch, which is set to be delivered in an initial batch of 500 examples to customers in the United States later this year. BMW is using its Mini brand to test the waters with its electric powertrain technology but the vehicle was also developed in order to meet new California regulations that require carmakers to offer zero emission vehicles.

Power comes from an electric motor that is mounted in the former engine bay and is rated at 204hp (150kW) and 162lb-ft (220Nm) of torque. Drive is sent to the front wheels via a single-stage helical gearbox nearly without a sound and entirely free of emissions. The Mini factory located in Oxford, England, supply cars without powertrains to a team located in Munich, Germany, which then adds the electric running gear.

The car has also gone through the major phases of product development for mass-produced vehicles and passed numerous crash tests on the way. Aspects investigated besides passenger protection were the impact of collision forces on the lithium-ion battery and finding a non-hazardous location for it in the car.

BMW has gone with a lithium-ion battery pack with an overall capacity of a 35kW/H. This sits in the rear of the car and leaves only 60L of trunk space. Acceleration from 0-100km/h takes 8.5 seconds for the 1,465kg electric vehicle and top speed is electronically limited to 152km/h. The car’s range is about 250km on a single charge, which takes about 2.5 hours. To help improve this range it is also fitted with a brake-energy-recovery system.

All will be painted silver but are easily distinguished by their absent exhaust pipes and yellow electric-plug decals. The cars will be offered on a one year lease with full maintenance and servicing by specially trained technicians. The electric drive's high-voltage technology requires that maintenance work be done by qualified personnel using special tools not found in your standard service station. In light of this, a service base will be set up on both coasts, with regular service scheduled to take place every 5,000km.

The Mini E will be on show at this week’s Los Angeles Auto Show and the company is hoping to eventually expand the project to Europe sometime next year.

If you find the idea of an all-electric Mini appealing but couldn't get on the 500 car shortlist, a company in Nevada can build you one complete with a 105hp (78kW) brushless AC motor and lithium-ion batteries. Nevada’s Hybrid Technologies has in fact been producing the electric Minis for the past year and claims that charging up the car’s batteries takes about 8-10 hours from a regular household power outlet. Top speed is only around 130km/h but driving at a slower speed preserves battery-life and means owners will be able to travel up to 200km on a single charge.

Source with more pic's;
http://www.motorauthority.com/mini-e-electric-vehicle-revealed-ahead-of-la-debut.html

60 Minutes: The Race for the Electric Car

Here's a nice read with a lot of good information on the electric car race.
(CBS) The price of oil is up, gas guzzling cars are out, and a race for a fuel-free, practical electric car is on.

It includes the usual suspects: Detroit, Japan, and Germany. But as correspondent Lesley Stahl reports, a surprising newcomer with no experience at building cars has entered the race: Silicon Valley.

The jury is still out on whether electric cars can ever be really practical, but the computer geeks in California are betting that their inventiveness can beat out Detroit's cumbersome bureaucracy in producing a viable e-car.

One of the reasons electric cars have never taken off has been battery technology. A few years ago, someone wondered: why not use the batteries they put in laptop computers called lithium-ion batteries? That's when the environmentally-conscious hi-tech industry in California jumped in.

The first all-electric sports car is called the "Roadster" and is made by Tesla Motors, a small start-up in Northern California.

The chairman of Tesla, Elon Musk, says the Roadster can accelerate from zero to 60 in four seconds. It is propelled by over 6,000 finger-sized lap top batteries, and not a single drop of oil.

Musk made his fortune by inventing PayPal, the online banking service. He launched Tesla five years ago, with no experience at all in the car business. Now he has over 1,000 orders for the Roadster from people like George Clooney and Gov. Schwarzenegger. They can afford it.

Musk says the Roadster sells for $109,000, and tells Stahl, with a smile, that the car is "a deal." "And our car's twice the efficiency of a Prius. So a Prius is a gas-guzzling hog by comparison with our cars," he says.

Musk says the Roadster can go over 200 miles before you have to plug it in to any ordinary wall outlet. It can take anywhere from four to 30 hours for a full charge.

"It’s very easy. It’s like plugging in a hairdryer. It’s so simple," Musk explains.

From the beginning, Musk wanted to prove that innovative and nimble Silicon Valley could build a better green car than lumbering, bureaucratic Detroit.

"Out of Detroit everybody thinks that Detroit is dumb," comments Bob Lutz, the vice chairman of General Motors.

"Or they think you’re hide-bound," Stahl remarks.

"Yeah. Same thing," Lutz says.

Lutz is the man in charge of developing GM's new products, and he says he owes Tesla and its Roadster a debt of gratitude. "If a small Silicon Valley start up believes that they can do a commercially viable electric car, are we going to sit here at General Motors and say, 'Well, a guy in California can do it, but we can't?' Well, that didn't sound very good."

Lutz admits that's embarrassing.

And so, the race was on, with Lutz overseeing the research and development of the Chevy Volt, which is a four-door family electric car.

The Volt is not purely electric - it's called a "plug-in hybrid." It'll drive on battery power alone for 40 miles; go beyond that, and a small gasoline engine kicks in to recharge the battery while you keep driving.

"Seventy eight percent of trips in the United States are under 40 miles a day," Lutz tells Stahl. "If all those people had Volts, you would have 78 percent of Americans basically never using another drop of gasoline."

Everything about the Volt, he says, works like a conventional car, except there's no noise. "There's one thing we can do, for people who miss the sound of the engines, we sell them a CD…with various engine sounds. So you'll be able to pick a Ferrari V12 or, you know, Le Mans Corvette," Lutz explains.

GM is already touting the car in TV ads, even though they don't yet have a working prototype. "The real trick on the car is software. The car needs to know where home plate is. So if you, for some reason, have gone from work instead of directly home, you've gone shopping, and you're starting to run out of battery on the way home, the computer will tell the gas engine, 'Look, he's five miles from home, only run for three minutes, because he only needs enough to get home,'" Lutz explains.

What about safety? In 2006, Dell was forced to issue the biggest recall in electronics history when its lithium-ion batteries burst into flames. Lutz says GM has solved that problem with its batteries, but they need a lot more testing to check how durable and reliable they are in extreme weather and real-road conditions. Still, Lutz insists the Volts will be in dealerships by 2010.

"We've spoken to people who say, 'Lutz is crazy.' … they cannot do this by then. It's just not going to happen," Stahl says.

"Right. We'll see. Somebody's going to have egg on their face," Lutz replies.

The rest of the article continues onto page 2, here's the link;
http://www.cbsnews.com/stories/2008/10/05/60minutes/main4502448_page2.shtml