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Saturday, June 30, 2012

Lotus Evora 414E Hybrid to debut @ Goodwood

Ahead of schedule, Lotus' new Evora 414E Range Extender Hybrid Electric Vehicle (REEV) has started its dynamic and durability testing at the Lotus HQ in Hethel, Norfolk.

The Lotus Evora 414E is a series hybrid technology demonstrator which shows some of the headline technologies that Lotus Engineering, one of the world' s leading automotive engineering consultancies, has within its portfolio.

The Evora 414E is powered by two electric motor packs driving the rear wheels through its Xtrac transmission with a battery pack that can be charged by the Lotus range extender engine or directly from mains electricity. The Lotus 3 cylinder range extender engine has been design protected to run on either gasoline or renewable bio alcohol fuels (methanol and ethanol). It drives an EVO electric generator which produces electrical energy to either charge the battery pack or power the EVO traction motors directly.

In normal driving, the Evora 414E will run purely on electricity stored in the battery pack for up to 30 miles (48 km). With the Lotus range extender and the electric traction motors powering the vehicle through an Xtrac 1092 transmission, the Evora 414E is targeted to produce just 55 g of CO2 / km emissions on the Northern European Driving Cycle (NEDC).

Should the driver require more performance, under hard acceleration, for example, the electricity will come from both the battery storage and the small range extender engine.

It's all Torque

Now that the car is undergoing testing, what does 1000 Nm in an Evora feel like? Simon Corbett, Principal Vehicle Dynamics Test and Development Engineer at Lotus Engineering, has been doing the majority of the development testing, over the last few weeks, "The Evora S has 400 Nm of torque which in such a lightweight car is already a healthy figure. But the Evora 414E has two and a half times that amount! The acceleration sensation is almost indescribable, the surge of torque is like an ocean wave!"

See under the skin of the Evora 414E at the Goodwood Festival of Speed As part of the REEVolution consortium, funded by the government's innovation agency, the Technology Strategy Board, Lotus will show a cutaway version of the Evora 414E, with the addition of regenerative braking, HALOsonic and realistic 7 speed paddle shift technologies at the Goodwood Festival of Speed, giving an unusual insight into this pioneering vehicle.

  • 1000 Nm (738 lbft) of Torque
  • 414 PS (408 hp)
  • 0-60 mph / 97 km/h in around 4 seconds
  • Top speed 130 mph (209 km/h)
  • Target emissions of just 55 g CO2 / km (NEDC)

  • Monday, December 20, 2010

    Lotus and Proton to build Supermini Hybrid City Car in 2013



    Lotus, in collaboration with parent company Proton and an undisclosed third automaker, will bring a supermini hybrid car to the Asian and European markets in October 2013, Lotus CEO Dany Bahar has told CAR magazine.

    Drawing power from a hybrid system that combines a 53 kilowatt electric motor with the range-extending 1.2-liter three-cylinder flex-fuel (methanol, ethanol and gasoline) motor found in the Lotus Evora 414E Hybrid concept, the Lotus City Car has a claimed top speed of 102 miles per hour and can reportedly reach 60 MPH in 9 seconds flat.

    The concept can travel about 39 miles in electric mode only but with the on-board gasoline generator can go an additional 288 miles before refueling is required.

    The little concept appeared on the Lotus platform at the recent Paris Auto Show, but was mostly overlooked by the presence of five larger, more exciting sports cars.

    Car Magazine

    Thursday, September 30, 2010

    2015 Lotus Eterne AWD hybrid sedan concept



    Enter the Lotus Eterne, the four door super saloon from Lotus. If the Elite is elegance incarnate then the Lotus Eterne is elegance redefined.

    The Lotus Eterne is a true four door, four seater sports GT. It's the ultimate expression of refined style, sophistication and grace. But wait. An elegant, graceful sports car? Surely not.

    A sports car by definition can't be graceful. Powerful, exciting, aggressive yes, but not graceful. Yet here it is, the ultimate paradox - the Lotus Eterne. Power and grace, performance and elegance, beauty and strength all in one stunning package.

    With a 5.0 litre pressure charged V8 engine delivering up to 620 PS the Lotus Eterne is aiming for best in class performance and efficiency.

    In keeping with the rest of the new line-up, the Lotus Eterne will benefit from hybrid technology.

    Dany Bahar, Chief Executive Officer of Group Lotus, said: "The Lotus Eterne is sensational to look and as with the rest of the range it also over delivers in all other aspects as well. Similar to the Elite, it's a car of perfect contradictions, it's compact yet spacious, high performing yet low emitting, relative lightweight yet still reassuringly solid."

    "We truly believe that there is a market for the Lotus Eterne, there is nothing else like it out there both in terms of design, capacity and performance. The biggest difference between the Lotus Eterne and it's class competitors is that it's not an evolution of an existing two-door model, it's a deliberate and considered stand-alone creation. It's the ultimate four door sports car." Sometimes there are no rules to be broken, so it is time to define them instead.

    Lotus Eterne Specification
    • Layout: 4 seater, front-mid-engined, rear wheel drive, all wheel drive is optional
    • Engine: Petrol, hybrid optional
    • Hybrid Technology: Hybrid gearbox with integrated electric motors and KERS
    • Cylinder: V8
    • Capacity: 5.0 litre
    • Power/Torque: 620 PS / 720 Nm
    • Rev limit: 8,500 rpm
    • 0-100 km/h: 4.0 seconds
    • Top speed: 315 km/h
    • CO? approx (CO?/km): 220 g/km**
    • Weight: 1,800 kg
    • Seats: 4
    • Transmission: Full Hybrid transmission
    • Drive: RWD, AWD optional
    • Start of production: Early 2015
    • Enters the market: Spring 2015
    • Price indication: Circa £120,000
    **Using optional hybrid

    Monday, September 20, 2010

    Lotus returns to supercars with 600+ hp Elite V8 hybrid

    The Elite will offer a 611-horsepower V8 engine with a hybrid regenerative braking system to deliver even more punch, pushing it from zero to sixty in about 3.5 seconds.

    On Monday, Lotus announced the Elite, a V8-powered supercar that will rocket the British manufacturer of pint-sized racers into competition with the likes of Ferrari, Lamborghini and Aston Martin.

    Unlike the current lineup of ultralight, low-slung coupes powered by four- and six-cylinder Toyota engines, the Elite will adopt a 5.0-liter V8 capable of putting out 611 horsepower. According to Lotus, that will fling the Elite to 62 miles per hour in 3.5 to 3.7 seconds.

    In the interests of keeping pace with the afore mentioned competition, the Elite will also be a hybrid. Although Lotus hasn’t advertised it for its gains in fuel efficiency, the Elite will use a kinetic energy recovery system, or KERS, which recovers energy in braking and boosts the car during acceleration via electric motors in the transmission.

    Styling takes a turn away from the spidery boy-racer look of Lotus’ smaller cars for a more mature, swept back look that reminds of a bit of offerings from Ferrari, Aston Martin, and even a hint of Fisker.

    Like the Lotus Evora, the Elite will offer a 2+2 seating arrangement, becoming the company’s largest car at just over 15 feet long.

    It’s also the most expensive. While the 2010 Evora starts at $72,990, the Elite will retail for £115,000 – about $180,000 USD. Lotus will officially unveil the Elite at the upcoming Paris Motor Show in October, but don’t sell your Ferrari just yet; the car won’t roll onto freshly waxed showroom floors until spring 2014.





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    Sunday, March 28, 2010

    Does a Lotus Elise use less energy than a Tesla Roadster?



    Does a Lotus Elise use less energy than a Tesla Roadster? I would've thought the answer to that question was a fairly obvious NO. An Auckland New Zealand publisher has produced a 168 page report that he's spent 3 years researching that says otherwise "the Tesla electric car is less efficient and more polluting than its petrol sibling and a Tesla would require over 25% more energy than the Elise"

    Normally we here at Electric Vehicle News don't re-publish such blatantly ignorant claims but I have exchanged emails with this 'self-appointed expert' on a previous occasion and I'd just like to add some cold hard facts to the debate.

    It’s simply impossible for an EV to use more energy than an ICE car. All gasoline fueled ICE powered cars are just 15% energy efficient at the wheels. They’re the road going equivalent of an incandescent light bulb as a product that converts the majority of the paid-for energy it consumes into useless waste heat.

    Comparing the Tesla roadster with the Elise is like comparing a 4 cyl against a V8 in performance terms. A standard Elise has a 100kw motor and does 0-60 in 5 sec, a Tesla Sport has 215 kw and does 0-60 in 3.7 sec.

    Yet despite the huge difference in performance, in terms of energy efficiency, a Lotus Elise consumes 9.6 Liters per 100 km. The energy content of petrol is 8.89 kwh per liter so to drive 100 km in an Elise requires 85.34 kwh worth of energy or approx 853.4 watt hours per kilometer (wh/km). A Tesla Roadster uses 110 wh/km so consumes only 11 kwh to drive 100 km. That’s 1/7th the amount of energy to drive the same distance. Quite literally the energy required to drive one lightweight, small 1.8L engined, Lotus Elise around town could power seven Tesla Roadsters driving the exact same distance.

    So the answer to the question is... a Tesla Roadster in fact uses 87% less energy than a Elise to do the same work, or looking at it the other way the Lotus Elise uses 775% more energy than a Tesla Roadster. That's exactly why EVN will not be re-publishing the fact-free Kiwi report any time soon.

    Wednesday, February 24, 2010

    Lotus Engineering unveil the Lotus Evora 414E Hybrid concept


    The Lotus Evora 414E Hybrid, so-named because this latest environmentally-focused technology demonstrator from Lotus Engineering produces 414 PS (306 kW) of power, promises breathtaking performance from a highly efficient propulsion system. The concept showcases new developments in plug-in, range-extended electric propulsion, new electronic technologies to enhance driver involvement, the adaptability of the Lotus Versatile Vehicle Architecture (VVA) that underpins the Evora 414E Hybrid and a dramatic new roof system and interior concept from Lotus Design. Through all of these aspects it ultimately demonstrates the exceptional ability of Lotus Engineering to integrate and develop advanced technologies for exciting, efficient, high performance niche vehicles.

    The range extended electric drive of the Evora 414E Hybrid consists of two electric motors driving each of the rear wheels independently via single speed geartrain, integrated into a common transmission housing, thus enabling torque vectoring for stability control of the vehicle. Electrical power is stored in a lithium polymer battery pack optimised for energy density, efficiency and high power demand, mounted in the centre of the vehicle for stability and safety. Additional range is provided by the Lotus Range Extender engine, an optimised 1.2 litre, three-cylinder engine, designed specifically for series hybrid vehicles. The drivetrain is designed to combine astonishing performance with efficient, low emissions driving.

    Driver involvement is enhanced by the incorporation of HALOsonic Internal and External Electronic Sound Synthesis technologies from Lotus and Harman International, which provide sound contouring within the cabin and improve pedestrian safety outside the vehicle. Integrated with the HALOsonic technology, the Evora 414E Hybrid also showcases a brand new technology from Lotus Engineering, a sports mode that simulates a 7 speed, paddle shift transmission that combines exceptional driver involvement for a hybrid sports car and optimised energy recuperation.

    The Evora 414E Hybrid has been designed to highlight Lotus’ innovative electric and hybrid vehicle technology without distracting from the pure sportscar character of the Evora. The solution is innovative, instantly recognizable, beautiful and sporty. It demonstrates Lotus DNA.

    Dr Robert Hentschel, Director of Lotus Engineering said: “Innovation has always been at the heart of Lotus and is needed now more than ever. The Evora 414E Hybrid is the perfect demonstration of Lotus Engineering’s core competencies: lightweight architectures, efficient performance, electrical and electronics integration and driving dynamics. The technology demonstrator represents an encapsulation of the advanced technologies that Lotus Engineering continues to develop to overcome the current environmental challenges facing the automotive industry and showcases the future direction that the sector is taking and why Lotus Engineering is perfectly placed to lead the technological development in this area.”

    The Drivetrain
    For the Lotus Evora 414E Hybrid, Lotus Engineering has developed a highly efficient, high performance drivetrain system consisting of twin motors each limited to providing 152 kW (207 PS/204 hp) of power and 400 Nm (295 lbft) of torque to each wheel via independent, single speed, reduction transmissions integrated into a single housing, enabling torque vectoring dynamic control of the vehicle.

    The vehicle energy storage system is made up of the latest Lithium Polymer battery chemistry providing 17 kWH energy storage capacity. The battery pack is optimised for energy density, efficiency and high power demand, with over 100 kW discharge capability.

    The Lotus Range Extender engine provides 35 kW (48 PS/47 hp) of power at 3,500 rpm via the integrated electrical generator and features an innovative architecture comprising an aluminium monoblock construction, integrating the cylinder block, cylinder head and exhaust manifold in one casting. This results in reduced engine mass, assembly costs, package size and improved emissions and engine durability. The engine uses an optimised two-valve, port-fuel injection combustion system to reduce cost and mass and can be operated on alcohol-based fuels and/or gasoline. The generator converts mechanical energy to electrical energy to replenish the battery pack charge and provides additional vehicle range in a small light weight package. The generator is also used as a motor to start the range extender engine. The low mass of the range extender unit (85 kg) and compact package makes it ideal for the series hybrid drivetrain in the Evora 414E Hybird.

    All the operation and management of the range extender engine, the power management of the batteries and motor control are controlled by Lotus’ electronic control units and software systems. Full energy management of all the operating systems is the key to maximising performance and operation while minimising energy consumption and CO2 emissions.

    For everyday commuting journeys, up to 35 miles can be travelled using battery power. The battery can be charged overnight using a conventional domestic mains supply through a socket concealed by the rear number plate. This permits the vehicle to operate with zero tailpipe emissions. For longer journeys, exceeding the battery capacity, the highly efficient range extender engine is used as a generator to supply the motor with electrical power and top up the battery.

    Lotus has used its own vehicle simulation tools to determine the size, capacity, power and performance of all the components in the drivetrain system to optimise the system operation. Overall this is far more energy efficient, weight efficient and cost effective than fitting the vehicle with a larger and more expensive battery, which for the majority of short journeys is a redundant weight, which increases energy requirements. With regard to the total lifetime CO2 emissions of the vehicle, including the energy required to manufacture and run it, the range extender solution has a lower overall CO2 footprint than a fully electric car of comparable performance and operating range running with a larger battery.

    The Package
    The Lotus Evora 414E Hybrid structure is the same award-winning, versatile vehicle architecture used on the Lotus Evora. The low volume architecture was designed with the upmost flexibility in mind. The Evora 414E Hybrid is a perfect example of how to integrate a compact packaged drivetrain, with excellent performance and range, while using this underpinning. The complete chassis has remained unchanged from the Evora which maintains the structural integrity and strength performance of the original car.

    The structure progresses the Lotus ‘bonded and riveted’ technology with new and unique extrusions and folded panels, whilst providing production build modularity and lower cost repairs. The chassis has been designed for scalability so that it can be extended in width, length and height. The strength and stiffness of the low volume VVA chassis can be modified cost effectively by varying the wall thickness of the extrusions, without altering the exterior dimensions. The ability to lengthen or shorten extrusions with the option to tailor the chassis stiffness vastly increases the number of vehicles that can be developed from this vehicle architecture.

    Driving Dynamics
    The Lotus Evora 414E Hybrid offers exhilarating, all-round dynamic performance and takes advantage of Lotus developed torque vectoring dynamics. Torque vectoring, which is the capacity to generate different torques at each of the driving wheels, is particularly suited to electric vehicles and significantly reduces the conflict between stability and response.

    A key benefit of separate motors to drive each rear wheel individually is that this facilitates a much higher level of vehicle dynamics control. Driving the wheels with different levels of torque can not only generate all the capabilities of a conventional ESP system using energy regeneration as opposed to brake application, but it can also actively drive each wheel forward at different rates, producing a turning moment at the rear of the vehicle in addition to the steering input.

    This can be used to enhance low speed manoeuvrability and ease of parking but can also be used to produce a much greater level of straight line high speed stability. Incorporating lateral sensors the system also provides stability control capabilities and levels of steering response normally only associated with heavy and expensive rear steer systems. This can provide automatic correction of both understeer and oversteer characteristics. In addition, the standard method to provide high speed stability of designing the rear wheels to toe-in is not required as the torque vectoring system automatically provides this stability control, with toe-in increasing rolling resistance, lowering fuel economy and increasing tyre wear. Lotus‘ long history of active suspension control provides the core capability to develop this technology and provides extraordinary driving pleasure on the Evora 414E Hybrid.

    Driver Interaction
    The Evora 414E Hybrid provides less of a psychological step change for people familiar with high performance cars compared to other electric and hybrid sports cars. The car has a simulated paddle shift gear change offering ultra quick gear changes reminiscent of a dual clutch transmission, while actually single speed. This enhances the driver interaction with the vehicle and provides a driving experience similar to current internal combustion engine high performance sports cars. The Evora 414E Hybrid uses a column mounted paddle shift to simulate the gear change and a synthesised engine sound changes frequency with virtual gear selection. The drive torque is also modulated to simulate a physical feeling of a gearshift jolt.

    The virtual gearshift simulation, like a conventional gearbox, is used to change the driving characteristics and response of the vehicle. The most significant aspect that this offers the driver is the ability to control the vehicle deceleration by simulating engine braking through a virtual downshift in gears. Unlike true engine braking, the Lotus system does not dissipate the energy of the moving vehicle through internal engine friction but uses the electric motors to regenerate the energy back into the battery. While many electric and hybrid vehicles provide engine braking, this is generally at a fixed rate or preselected rate. In some driving situations this can either be too aggressive, slowing the vehicle unnecessarily, or too light, requiring additional braking application. The Lotus system effectively allows the driver to select the appropriate level of regeneration by simulating stepping down by one, two or even three gears. The simulation of engine braking through both the gear noise change and the retardation of the vehicle is fully intuitive to a driver familiar with a conventional gearbox. The simulated gearchange capability can be selected for greater driving involvement or switched off for more relaxed driving.

    The Evora 414E Hybrid uses the Lotus Engineering and Harman International developed HALOsonic suite of noise solutions. The first of which is Electronic Sound Synthesis. This generates engine sounds inside the vehicle through the audio system where it provides an exciting sports sound in line with the brand and nature of the vehicle together with a high level of driver feedback in an intuitive manner. In addition, it also generates sound on the outside of the vehicle through speakers mounted at the front and rear to provide a warning to increase pedestrian safety, which is especially important for electric and hybrid vehicles which can be difficult to hear at slower speeds.

    There are four driver selectable engine sounds currently on the vehicle, two of which have been designed to have characteristics of a multi-cylinder conventional V6 and V12 engine. There is also a futuristic sound and a combination of a conventional engine and a futuristic sound, enhancing the brand identity of the vehicle as a step forward in electric vehicle design.

    The addition of this Lotus patented simulated gearshift concept not only provides for an exciting and involving driving experience that customers would expect from a Lotus, but also enhances the driver’s control of the vehicle while providing the capability for more efficient operation through a greater use of energy regeneration.

    The Design
    The distinctive colour scheme and ‘floating’ roof have been carefully designed to accent the cars electric vehicle technology whilst complementing the iconic lines of the Evora.

    Copper, a colour often associated with electrical systems, has been chosen for the car’s exterior and interior. A contemporary satin finish paint is complemented by electrical circuit inspired graphics that highlight the car’s key feature lines and the unique glazed roof panel. The newly extended glazed zone integrates seamlessly with the existing forms of the Evora whilst showcasing the key components behind the hybrid and electric vehicle technology.

    The signature copper theme is consistently carried throughout the car from the dramatic seat stripes and instrument panel inserts to the copper callipers that nestle behind the carbon grey forged wheels. Inside the cabin a sense of quality and richness has been created by carefully juxtaposing the different tactile qualities intrinsic to leather, Alcantara and metal

    Monday, October 26, 2009

    Who will manufacture the Tesla Model S?




    Tesla motors recently announced they have agreed terms for a lease on 350,000 sq/ft of manufacturing space formally occupied by Hewlett Packard. The Palo Alto facility is intended to be the powertrain production facility with assembly of the Model S at a separate, still as yet un-announced, plant. Tesla intend to spend $100 Million of their $465 M government loan to bring 'powertrain' manufacture in-house. The huge size of the facility seems to be pegged on securing more customers like Daimler who will incorporate Tesla made battery packs and chargers into their initial run of 1000 Smart EVs.

    The biggest questions about Model S production still remain. With a self imposed delivery deadline of late 2011, over 1000 orders taken and the vehicle assembly plant location still not selected, we're left to speculate about how much of the Model S Tesla is actually planning to manufacture themselves?

    With the chassis and most of the body panels for the Model S being specified in Aluminum it seems highly unlikely Tesla will bring manufacture of those parts in house. Currently the Tesla Roadster, which has an Aluminium chassis, is assembled by Lotus in the UK and delivered to Tesla as a completed vehicle minus the powertrain.

    The adhesive-bonded aluminium Tesla Roadster chassis is not made by Lotus but is manufactured by aluminum sub-contractor Hydro Raufoss Automotive, a division of Norsk Hydro, on the same production line as those of the Lotus Elise.

    Is Tesla planning to take over the vehicle assembly role currently filled by Lotus or will another company take their place and supply a finished Model 'S' minus powertrain using the same business models as used for the Roadster? There may be the option of having a 'glider' manufactured by a large subcontractor other than Lotus but Musk has made plenty of enemies in those circles to date.

    Who 'could' build it?

    Canadian firm Magna are one of the largest vehicle assembly subcontractors in the automotive business but as Tesla have already sued and been counter sued by them over the ill conceived 2 speed transmission, it would seems bridges have been burnt there already. Magna already has it hands full with a deal to make Focus EVs for Ford by 2011.

    Finland based Valmet have years of experience building aluminium chassis and body panels having been the main contractor for Porsche building Boxster and Cayman over the past decade, but EV rival Fisker already have a production contract for their Karma to be manufactured by Valmet and Tesla have made themselves unwelcome by suing Fisker as well. When the music stops will Tesla be left standing?

    There may be an option to have the Model S chassis manufactured by Hydro much as the Roadster chassis is although there are many technical differences between the two. While the Model S is a unibody the Roadster/Elise is a very unique bonded chassis constructed primarily from aluminium extrusions.

    Full aluminium unibody chassis, while more common in recent years, are still rare in the automotive business and are usually the reserve of low volume, high priced sports cars where higher manufacturing costs can be recouped. Tesla may not have that option because while the 'S' will be a low volume production vehicle, they are simultaneously attempting to make it an 'affordable' car with a monster battery pack, both strategies leaving very little room for margin.

    Powertrain

    Currently the Roadster battery pack and 3 phase AC motor are manufactured in Asia and shipped to California for installation into the Lotus based chassis. With the new Palo Alto facility slated to take over the battery pack assembly, with some question over whether AC motor manufacture will be brought in-house, there must be a very steep learning curve for Tesla Motors to grow from a small operation who currently manufacture nothing in-house to manufacturing the entire powertrain and chassis with their own plant and equipment in the space of the next 2 years.

    Some questions must also be raised about the engineering reality of offering different sized battery pack options for the Model S. Tesla says they will offer upgrade battery options for 230 miles (370 km) or 300 miles (480 km) on the standard 160 mile (256 km) range.

    While the 160 mile 'Standard' Model S will include a 42 kw/hr battery pack, the larger 300 mile battery pack will be 70kw/hr and weighs 1200lb (544 kg). There will be a significant weight difference across the range of battery sizes which may pose a challenge to the Tesla chassis engineers if the various sized packs can be “hot swapped”. Installing the larger 300 mile battery will be like putting a load into a truck - and will have adverse affects on the vehicles dynamics as it's almost double the weight of the smallest pack.

    Amongst the torrent of Tesla Press Releases there is virtually no news regarding Model S production. There was a recent company blog mention that the Model S chassis would be used as a base for derivatives including a minivan, cross-over utility vehicle and a utility van for fleets although these plans must be years off given the total lack of Model S production facilities to date.

    We certainly hope Tesla haven't bitten off more than they can chew and that the Model S isn't a very expensive example of EV vapourware. It will be very interesting to see them create a vehicle assembly plant and supply chain from scratch, presumably in California, and make the leap from glorified EV conversion company to full fledged auto maker within the next 24 months!

    Wednesday, July 22, 2009

    Lotus Esquive – A 4WD sports EV concept car


    Having not seen a good EV concept for a few weeks we've found one drawn by Mayeul Walser, a Transport Design student based in Paris. The vehcile is called a Lotus Esquive designed to be a mild off-road vehicle and along similar lines as the recently announced Mercedes SLS EV Supercar the Esquive concept comes with four wheel drive using in-wheel motors. The Esquive utilizes a carbon fibre monocoque chassis covered by fiberglass body panels.

    The proposed drive train for the Lotus Esquive is a set of four electric motors developing a total of 260 hp (190 kW). Driving the front wheels are a pair of 55 hp (40kW) motors, while at the rear a duo of 75 hp (55kW) motors power the back wheels. Not just four wheel drive, the Esquive has also been designed with four wheel steering in mind for sharper cornering.

    Dimensions of the Lotus Esquive:

    Length - 4,000 mm (13 feet)
    Height - 1,250 mm (4.1 feet)
    Width - 2,200 mm. (7.2 feet)