2012 Toyota Platinum on 2040-cars
Bedford, Ohio, United States
Vehicle Title:Clear
For Sale By:Dealer
Engine:5.7L 5663CC 345Cu. In. V8 FLEX DOHC Naturally Aspirated
Body Type:Sport Utility
Fuel Type:FLEX
Year: 2012
Make: Toyota
Model: Sequoia
Trim: Platinum Sport Utility 4-Door
Disability Equipped: No
Doors: 4
Drive Type: 4WD
Drivetrain: Four Wheel Drive
Mileage: 20,494
Sub Model: Platinum
Number of Cylinders: 8
Exterior Color: White
Interior Color: Tan
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Auto blog
Toyota launches BMW-powered Verso in Europe
Tue, 03 Dec 2013BMW makes some sweet-revving engines, but its own vehicles aren't the only ones running BMW engines. So do the latest from Rolls-Royce and Mini, of course, as well as a handful of Peugeots and Citroëns thanks to its joint engine program with PSA. Wiesmann uses BMW engines, as did the famous McLaren F1. And now we can add one more to the list.
That would be the Toyota Verso, a Corolla-based minivan which Toyota builds in Turkey and sells in Europe and a few other markets overseas. The Verso is also now officially the first beneficiary of the partnership between Toyota and BMW as the Japanese automaker has released the MPV with BMW's 1.6-liter turbodiesel four.
The 111-horsepower engine is coupled to a Toyota transmission and joins the Verso range as the fourth (and least powerful) engine in the lineup, alongside the 122hp 2.0 diesel and the gasoline options with 1.6 liters and 160 hp and 1.8 for 180. Future collaborations between the two automakers will include fuel-cell development, a new joint sportscar platform, lightweight bodywork research and a new generation of lithium-air batteries. See the press release below for further details.
Aston CEO claims Cygnet cancelled because Toyota is dropping iQ in 2014
Sun, 27 Oct 2013While slow sales and a $50,000 price tag may have been contributing factors to the Aston Martin Cygnet being cancelled last month, Aston Martin CEO Ulrich Bez is pointing the finger at Toyota for the demise of this luxurious little city car. In a discussion with Autocar, Bez is quoted as saying that the ultimate reason the Cygnet was cut is because Toyota plans on dropping the iQ (on which the Cygnet is based) in 2014 - a claim denied by the Japanese automaker.
Interestingly, the article also cites another publication reporting that a Toyota importer in the Netherlands heard the same news as Bez, and it has already stopped importing the cars. If the European Toyota iQ is cancelled, that would likely spell the end of the slow-selling Scion iQ in the US, which has sold just 3,365 units through September (a drop of 51 percent year over year).
Regardless of why production of the Cygnet ended, Bez also says that a lack of support from Toyota on the project prevented it from being offered in the US or receiving a supercharged engine, which are two factors that likely would have made the car appealing to more buyers.
Toyota to buck engine downsizing trend, may go larger and turbo-free
Mon, 14 Oct 2013Turbocharging isn't really Toyota's specialty, and the Japanese automaker isn't being shy about acknowledging it. Koei Saga, a senior managing officer in charge of drivetrain research and development, says that eschewing turbos and increasing displacement of engines using the Atkinson cycle can produce better power gains without sacrificing fuel economy, Automotive News reports.
Toyota is investing heavily in larger-displacement Atkinson-cycle engines in addition to turbocharged engines, but Saga doesn't think the automaker will use turbocharging across many product lines. He apparently remains unconvinced that the technology "makes the world better."
In Toyota's eyes then, Atkinson cycle engines do make the world better, and here's how. Their pistons complete four processes - intake, compression, power and exhaust - in one revolution of the crankshaft, and the power stroke is longer than the compression stroke. Traditional Otto cycle engines require two crankshaft revolutions to accomplish those same four operations and have equal-length compression and power strokes. Atkinson cycle engines are more efficient, but less power dense, though increasing displacement can offset that shortfall.
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