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  2. Toyota Y engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_Y_engine

    The 2Y engine is an OHV, eight valve construction just like the 1Y. It shares that engine's 86 mm (3.39 in) bore, but stroke is increased to 78 mm (3.07 in) for a displacement of 1.8 litres (1,812 cc). There are also 2Y-J and 2Y-U engines with differing emissions control equipment. OHV, eight valves; Displacement: 1.8 L (1,812 cc)

  3. Toyota ZZ engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_ZZ_engine

    The Toyota ZZ engine family is a straight-4 piston engine series. The ZZ series uses a die-cast aluminium engine block with thin press-fit cast iron cylinder liners, and aluminium DOHC 4-valve cylinder heads. [1] The camshafts are chain-driven. The two 1.8 L members of the family, the 1ZZ and 2ZZ, use different bore and stroke.

  4. Toyota T engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_T_engine

    The '151E' engine used 4 valves per cylinder. [citation needed] The '100E' engine used twin spark plugs with 2 valves per cylinder but was used mainly by a Toyota works team. [citation needed] Italy Nova Corporation produced a 2.0 L engine based on the 2T-G that was used in most of the world F3 cars for a long time. [16] [17] [18] [19]

  5. Fiat E.torQ engine - Wikipedia

    en.wikipedia.org/wiki/Fiat_E.torQ_engine

    The E.torQ is a family of inline-4 gasoline automobile engines produced since 2010 by Fiat Chrysler Automobiles in Campo Largo, Brazil [1] in the former Tritec factory. [2] In November of 2022 Stellantis announced they were closing the Campo Largo factory ending production of the E.torQ 1.8 to focus on production of the newer FCA Global Small Engine.

  6. Mercedes-Benz M111 engine - Wikipedia

    en.wikipedia.org/wiki/Mercedes-Benz_M111_engine

    The M111 engine family is a straight-4 automobile engine from Mercedes-Benz, produced from 1992 to 2003. Debuted in the 1992 Mercedes-Benz E-Class , this engine family is relatively oversquare and uses 4 valves per cylinder. All engines in the family use a cast iron engine block and aluminum alloy cylinder head.

  7. Nissan CA engine - Wikipedia

    en.wikipedia.org/wiki/Nissan_CA_engine

    The engine was deemed too expensive to produce due to its cast-iron block, while it also no longer met the ever-changing Japanese emission standards emerging at the time. The 1.8 L and 2.0 L versions were replaced by the all-aluminium SR series as Nissan's primary four-cylinder engine, while the smaller 1.6 L version was replaced by the GA series.

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