2023 Toyota 4runner Limited on 2040-cars
Tomball, Texas, United States
Engine:6 Cylinder Engine
Fuel Type:Gasoline
Body Type:--
Transmission:Other
For Sale By:Dealer
VIN (Vehicle Identification Number): JTEKU5JR4P6177600
Mileage: 2074
Make: Toyota
Trim: Limited
Drive Type: 4WD
Features: --
Power Options: --
Exterior Color: White
Interior Color: Other
Warranty: Unspecified
Model: 4Runner
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Auto Services in Texas
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Auto blog
Next Toyota Prius coming in 60-mpg 'Eco Grade' version?
Tue, Sep 23 2014There's some mystery surrounding the fuel economy level of the next-generation Toyota Prius. The closest we've had to an official number is 55 miles per gallon, which was hinted at by Toyota Motor Corporation's managing officer, Satoshi Ogiso, last year. That number wasn't an official target, but the company even provided a graphic (above) showing how each next generation Prius beat the previous one by four or five mpg. Since the current, third-gen model gets 50, well, we have been left to guess that 55 is the next logical target. But, according to a new report in Automotive News, the new, fourth-generation Prius that's due next year will come in two versions, with one having a bigger ego – sorry, eco – than the other. AN says that the model will arrive with a standard nickel-metal hydride battery pack in a version that gets "about 55 mpg" and then a new "eco grade" version with a li-ion battery that "will be rated at more than 60 mpg." AN says this information came from company executives who were speaking at an August meeting with Toyota dealers. Our sources within Toyota say that they haven't heard anything about two high-efficiency models, so we'll take this with the requisite grain of salt. The current version of the Prius Plug-In Hybrid does use lithium-ion batteries, but this is the non-plug model the dealers are talking about. We think. The dual-battery strategy is certainly a rumor we've heard before. We had thought that the li-ion pack would be for an extended EV range (the current Prius has a barely noticeable EV-only range), but such a pack would be lighter and could boost efficiency, too. In other words, we look forward to hearing more during the upcoming auto show season.
180,000 new vehicles are sitting, derailed by lack of transport trains
Wed, 21 May 2014If you're planning on buying a new car in the next month or so, you might want to pick from what's on the lot, because there could be a long wait for new vehicles from the factory. Locomotives continue to be in short supply in North America, and that's causing major delays for automakers trying to move assembled cars.
According to The Detroit News, there are about 180,000 new vehicles waiting to be transported by rail in North America at the moment. In a normal year, it would be about 69,000. The complications have been industry-wide. Toyota, General Motors, Honda and Ford all reported experiencing some delays, and Chrysler recently had hundreds of minivans sitting on the Detroit waterfront waiting to be shipped out.
The problem is twofold for automakers. First, the fracking boom in the Bakken oil field in the Plains and Canada is monopolizing many locomotives. Second, the long, harsh winter is still causing major delays in freight train travel. The bad weather forced trains to slow down and carry less weight, which caused a backup of goods to transport. The auto companies resorted to moving some vehicles by truck, which was a less efficient but necessary option.
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.