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The Toyota Dynamic Force engine is a family of internal combustion engines developed by Toyota under its Toyota New Global Architecture (TNGA) strategy. These I3 , I4 and V6 engines can be operated with petrol (gasoline) or ethanol ( flex-fuel ) and can be combined with electric motors in a hybrid drivetrain.
It is turbocharged by a Toyota CT20 Turbo (the same unit as used in the 2L-T diesel) to generate 160 PS (118 kW; 158 hp) at 6,000 rpm and 206 N⋅m (152 lb⋅ft) at 4,800 rpm. This was the first turbocharged twin-cam engine built in Japan.
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 ...
Toyota Motor Corp.’s quarterly profit through September totaled 573.7 billion yen ($3.7 billion), down from nearly 1.28 trillion yen the same quarter last year. ... Hit by scandal, Japan's top ...
The L is the first L engine produced. Toyota solely refers to it as the L engine, not the 1L engine. 2.2 L (2,188 cc), four-cylinder diesel engine. [7] Bore and stroke are 90 mm × 86 mm (3.54 in × 3.39 in), with compression ratios of around 21.5:1 [8]
A 2.7 L version of the AR family, first released in the Venza [1] and Highlander in late 2008. [2]The 1AR-FE most likely ended production in 2020. No official statements were made by Toyota about the engine's status, however, no new cars used this engine after 2020.
The 1HD-FT is a 4.2 L (4,164 cc) straight-6 24 valve SOHC turbocharged direct injection diesel engine. Bore and stroke is 94 mm × 100 mm (3.70 in × 3.94 in), with a compression ratio of 18.6:1.
Toyota Corolla Cross 2ZR-FXE Hybrid engine (2023) The Toyota 2ZR-FXE is a 1.8 L (1,797 cc) Atkinson cycle variant of the 2ZR-FE. [9] It has the same bore and stroke, but the compression ratio is increased to 13.0:1, and the inlet valve closing is late-staged. The net result is that the engine has a greater effective expansion than compression.