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  2. Toyota Highlander - Wikipedia

    en.wikipedia.org/wiki/Toyota_Highlander

    The Toyota Highlander, ... Initially the sole powertrain for the 2008 Highlander was a 201 kW ... While the 3.5-liter engine has 41 kW (55 hp; 56 PS) more than the ...

  3. Toyota AR engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_AR_engine

    The AR engine family is an Inline-4 piston engine series by Toyota, first introduced in 2008 for the RAV4, and subsequently for the Highlander, Venza, Camry and Scion tC. The AR series uses a die-cast aluminium engine block and aluminium DOHC cylinder head.

  4. List of Toyota engines - Wikipedia

    en.wikipedia.org/wiki/List_of_Toyota_engines

    Other manufacturers may modify the engine after it has left the Toyota factory but the engine still keeps the original Toyota designation. For example, Lotus added a supercharger to the 2ZZ-GE in some versions of the Lotus Elise and Exige, but the engine is still labelled 2ZZ-GE, not 2ZZ-GZE. Examples: 3S-GTE 3S – Third model in the S engine ...

  5. List of Toyota model codes - Wikipedia

    en.wikipedia.org/wiki/List_of_Toyota_model_codes

    Toyota Highlander / Toyota Kluger / Toyota Crown Kluger (2019–present) XU80. Toyota Harrier / Toyota Venza (2020–present) ACU Platform (2AZ engine) 2007–present Toyota Harrier; 2002–2007 Toyota Kluger; ASU Platform (1AR engine) 2007–2013 Toyota Highlander; 2007–2013 Toyota Kluger; GSU Platform (2GR engine) 2003–2009 Toyota Harrier

  6. Toyota GR engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_GR_engine

    The Toyota GR engine family is a gasoline, open-deck, piston V6 engine series. The GR series has a 60° die-cast aluminium block and aluminium DOHC cylinder heads.This engine series also features 4 valves per cylinder, forged steel connecting rods and crankshaft, one-piece cast camshafts, a timing chain, [1] and a cast aluminium lower intake manifold.

  7. Toyota MZ engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_MZ_engine

    Toyota sought to enhance the drivability pattern of the engine (over the 3VZ) at exactly 3000 rpm, since that was the typical engine speed for motors cruising on the highway. The result was less cylinder distortion coupled with the decreased weight of rotating assemblies, smoother operation at that engine speed, and increased engine efficiency.

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