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Toyota NZ engine (for 1.3 L and 1.5 L models) The Toyota E engine family is a straight-four piston engine series, and uses timing belts rather than chains. The E engines were the first multi-valve engines from Toyota designed with economy, practicality and everyday use in mind (rather than performance).
The Mercedes-Benz M282 is a 1.3 L (1,332 cc) inline-four 16-valve turbocharged petrol engine produced from 2018. It was jointly developed by the Renault–Nissan–Mitsubishi Alliance and the Mercedes-Benz Group, and is the successor to the 1.6L variant of the M270 engine. [1] The M282 has been sold as the H5Ht by Renault, and as the HR13DDT by ...
Oil Capacity: 3.5 L (3.7 US qt; 3.1 imp qt) EC 1975-1979 Honda Civic 4 doors; 1975-1979 Honda Civic Van (VB) ED ... The final E-family engine was the EW, presented ...
The 4HF1-CNG is a CNG engine of 4.334 L capacity (as based on direct injection diesel engine) with non-contact ignition system. Peak torque is 323 Nm, peak power is 120 PS (88 kW) at 1,500 rpm. Bore is 115 mm, stroke is 108 mm. The 4HV1 is a CNG engine of 4.570 L capacity with non-contact ignition system. Peak torque is 353 Nm, peak power is ...
The LE2 is the direct-injection 1.4 L turbocharged variant of the SGE, with a 74 mm × 81.3 mm (2.91 in × 3.20 in) bore and stroke for a total capacity of 1,399 cc (1.4 L). Compression ratio is 10.0:1 and the engine can run on regular grade gasoline.
The 1.3 L (1,348 cc) CGA3DE was built between November 1999 [4] and 2002. The engine produced 85 PS (63 kW) @ 6000 rpm and 120 N⋅m (89 lb⋅ft) @ 4000 rpm. This engine, although considered a 1.4 in the European market, was still marketed as a 1.3 engine in Japan due to the cubic capacity being 1.3 L (1,348 cc).
The HR13DDT is a 1.3 L (1,332 cc) all-aluminium direct injected and turbocharged straight-four engine equipped with lifetime timing chain, 16v DOHC, VVT, variable displacement oil pump, Stop-Start, regenerative braking, and Bore Spray Coating system (as installed in Nissan GT-R models), Bore: 72.2 mm (2.84 in), Stroke 81.3 mm (3.20 in). There ...
The engine has a high physical compression ratio of 13.0:1, but the closing of the inlet valve is delayed, for an effective compression ratio of 9.5:1. [7] The net result is that the engine has a greater effective expansion than compression—making it a simulated Atkinson cycle , rather than a conventional Otto cycle .
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