2014 Toyota Rav4 Le on 2040-cars
3232 Harper Rd., Indianapolis, Indiana, United States
Engine:2.5L I4 16V MPFI DOHC
Transmission:6-Speed Automatic
VIN (Vehicle Identification Number): 2T3BFREV2EW140263
Stock Num: 27998
Make: Toyota
Model: RAV4 LE
Year: 2014
Exterior Color: Magnetic Gray
Options: Drive Type: AWD
Number of Doors: 4 Doors
All Wheel Drive! All the right ingredients! How appealing is this superb-looking 2014 Toyota RAV4? What a perfect match! This fantastic Toyota RAV4 is available at the just right price for the just right person - You! This SUV is nicely equipped with features such as 4-Wheel Disc Brakes, 6 Speakers, ABS brakes, Air Conditioning, AM/FM radio, Brake assist, Bumpers: body-color, CD player, Driver door bin, Driver vanity mirror, Dual front impact airbags, Dual front side impact airbags, Electronic Stability Control, Fabric Seat Trim, Four wheel independent suspension, Front anti-roll bar, Front Bucket Seats, Front Center Armrest, Front reading lights, Illuminated entry, Knee airbag, Low tire pressure warning, MP3 decoder, Occupant sensing airbag, Outside temperature display, Overhead airbag, Overhead console, Panic alarm, Passenger door bin, Passenger vanity mirror, Power door mirrors, Power steering, Power windows, Radio data system, Rear anti-roll bar, Rear seat center armrest, Rear window defroster, Rear window wiper, Remote keyless entry, Speed control, Speed-sensing steering, Split folding rear seat, Spoiler, Steering wheel mounted audio controls, Tachometer, Telescoping steering wheel, Tilt steering wheel, Traction control, and Trip computer. Butler Toyota Scion is Indiana's largest Toyota Scion dealer. We have been doing business with integrity since 1966. Be sure to visit WWW.BUTLER-TOYOTA.COM for exclusive Butler website specials.
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Auto Services in Indiana
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Auto blog
Solid-state batteries: Why Toyota's plans could be a game-changer for EVs
Tue, Jul 25 2017Word out of Japan today is that Toyota is working on launching a new solid-state battery for electric vehicles that will put it solidly in the EV game by 2022. Which leads to a simple question: What is a solid-state battery, and why does it matter? Back in February, John Goodenough observed, "Cost, safety, energy density, rates of charge and discharge and cycle life are critical for battery-driven cars to be more widely adopted." And risking a bad pun on his surname, he seemed to be implying that all of those characteristics weren't currently good enough in autos using lithium-ion batteries. This comment is relevant because Goodenough, professor at the Cockrell School of Engineering at the University of Texas at Austin - it so happens, he turns 95 today - is the co-inventor of the lithium-ion battery, the type of battery that is pretty much the mainstay of current electric vehicles. And he and a research fellow at U of T were announcing they'd developed a solid-state battery, one that has improved energy density (which means a car so equipped can drive further) and can be recharged more quickly and more often (a.k.a., "long cycle life") than a lithium-ion battery. (Did you ever notice that with time your iPhone keeps less of a charge than it did back when it was shiny and new? That's because it has a limited cycle life. Which is one thing when you're talking about a phone. And something else entirely when it involves a whole car.) What's more, there is reduced mass for a solid-state battery. And there isn't the same safety concern that exists with li-ion batteries vis-a- vis conflagration (which is why at airplane boarding gates they say they'll check your carryon as long as you remove all lithium-ion batteries). Lithium-ion batteries may be far more advanced than the lead-acid batteries that are under the hood of essentially every car that wasn't built in Fremont, Calif., but as is the case with those heavy black rectangles, li-ion batteries contain a liquid. In the lithium-ion battery, the liquid, the electrolyte, moves the lithium ions from the negative to the positive side (anode to cathode) of the battery. In a solid-state design, there is no liquid sloshing around, which also means that there's no liquid that would freeze at low operating temperatures. What Toyota is using for its solid-state battery is still unknown, as is the case for the solid-state batteries that Hyundai is reportedly working on for its EVs.
Toyota updates Euro-market GT86 suspension, appearance
Thu, 24 Apr 2014While we were busy ogling the Scion FR-S Release Series 1.0 with its Yuzu yellow paint and a workover by Toyota Racing Development, and the Japanese Toyota 86 buyers were trying out their Playstation-compatible Sports Drive Logger telemetry system, the European 2015 Toyota GT86 got fitted with some new parts of its own. New on next year's model are stiffer mounts for the front suspension and rear shock absorbers, and new shocks in the back for better damping and less friction. Toyota says the result is sharper steering and less body roll.
Inside, the instrument panel and center console get decorated with a "carbon-fiber motif." There are new shades of pearl white and silver to dress up the outside, and the roof gets a shark-fin antenna for sharper looks and aero. It goes on sale this summer, and you can read everything we just told you in the press release below. We've reached out to Scion to see if we'll get the same upgrades on the FR-S this summer, too, company PR rep Nancy Hubbell telling us, "The European changes are among those being considered for the US model FR-S and we'll have final confirmation soon."
Toyota finds 10% MPG improvement in hybrid PCU
Wed, May 21 2014Keeping up its from-all-angles approach to efficiency, Toyota has found yet another way to eke out up to ten percent more precious MPGs in its hybrid vehicles, this time electronically. The automaker has announced the development of new silicon carbide (SiC) power semiconductors for use in power control units, which it will begin testing on Japanese roads within the next year. The PCU using the silicon carbide compound offers less electrical resistance, which improves efficiency when passing current between the battery and electric motor. It also loses less power after shutting off, and can operate at a higher frequency. The net power loss of the new PCU is just one-tenth of the current silicone-only version (the latter accounting for 20 percent of total electrical power loss in today's hybrids). The result, so far, is a claimed five-percent improvement in fuel economy in test vehicles, with the potential of ten percent by the time the new SiC power semiconductor comes to market. Additionally, the carbide wafers allow for smaller a power module, coil and capacitor, thus allowing the entire PCU to be 80 percent smaller (see the side-by-side comparison in the accompanying photo, which you can click to enlarge). We've got a while to wait before we start to see the carbide technology to start making a real-world impact. Toyota aims to begin using the SiC units in 2020. By then, with improvements in the company's other key efficiency factors - engine technology and aerodynamics - cars like the Prius will likely see significant gains in fuel economy. Read more in the press release below. Toyota Develops 'Diamond-like' Computer Chips to Boost Hybrid Mileage May 20, 2014 Toyota City, Japan – Toyota is using one of the hardest materials in nature after diamonds to develop a semiconductor chip it hopes will improve the fuel efficiency of its hybrids, such as the Prius, by as much at 10 percent. The company and its partners announced today that they have developed a silicon carbide (SiC) power semiconductor for use in automotive power control units. Toyota plans to begin test-driving vehicles with the technology on public roads in Japan within a year. The chips, made from carbide - one of the hardest materials in nature, theoretically have superior characteristics such as one-tenth the electrical power loss and 10 times the drive frequency. Toyota said the chips would also allow it to reduce the size of current automotive power control units by 80 percent.












