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A VQ35DE in a 2007 Nissan Maxima Cylinder head of VQ35DE. The 3.5 L (3,498 cc) VQ35DE is used in many modern Nissan vehicles. Bore and stroke are 95.5 mm × 81.4 mm (3.76 in × 3.20 in). It uses a similar block design to the VQ30DE, but adds variable valve timing for the intake. It produces from 231 to 304 PS (170 to 224 kW; 228 to 300 hp) of ...
Nissan does not have a letter designation for the SOHC configuration so the camshaft configuration type is assumed as SOHC if no letter is present. Another example is the MR16DDT engine, which has feature designations that describe an engine with dual overhead camshafts, direct cylinder fuel injection and a single turbocharger.
Nissan VQ engine, Nissan RB engine The VR is a series of twin-turbo DOHC V6 automobile engines from Nissan with displacements of 3.0, 3.5, and 3.8 L. An evolution of the widely successful VQ series , it also draws on developments from the VRH , JGTC , and Nissan R390 GT1 Le Mans racing engines.
The first generation Nissan Murano was unveiled in production form for the model year of 2003, at the 2002 New York International Auto Show.It is powered by a 3.5-liter V6 producing 183 kW (245 hp) and 334 N⋅m (246 lbf⋅ft), also used in several other Nissan models like the Altima, Maxima, and Nissan 350Z, but specifically tuned for use in the Murano.
Nissan's Spanish subsidiary eventually built a bored out version of this as the Nissan A4.28 (or A428), including a turbocharged A428T model and the updated A428II. JA: P4: 1937–06 to 1967-05: Four-cylinder diesel engine. 97,390 engines were produced. JB: 4.192: 1958–05 to 1972-01: Four-cylinder, 192 cu. in. (3.1 L) indirect-injection ...
In 2010, Nissan updated the engine and the turbo (BV45 from GT2056V) for the D40 Navara and facelifted R51 Pathfinder to produce 140 kW (190 PS; 188 hp) and 45.9 kg⋅m (450 N⋅m; 332 lb⋅ft) of torque. [5] In 2011 the Nissan Murano was fitted with the updated engine. Applications. 2006–2014 Nissan Navara (D40)
Nissan QR25DE Engine The QR25DE is a 2.5 L (2,488 cc) variant built with cast steel connecting rods, a steel timing chain, counter-rotating balance shafts , and an aluminum intake manifold. The engine bore and stroke is 89 mm × 100 mm (3.50 in × 3.94 in) and a compression ratio ranging from 9.5:1 to 10.5:1 depending on the vehicle.
The license agreement terminated in the late 1950s and the Nissan G engine was a more compact replacement, which in turn became replaced by the (below) Nissan H engines. The 1H would also be de-stroked from 89mm to 59mm to become the 1.0 L (990 cc) to create the Nissan C engine at the suggestion of former Willys-Overland engineer Donald Stone.
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