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  2. Honda E engine - Wikipedia

    en.wikipedia.org/wiki/Honda_E_engine

    The E-series was a line of inline four-cylinder automobile engines designed and built by Honda for use in their cars in the 1970s and 1980s. These engines were notable for the use of CVCC technology, introduced in the ED1 engine in the 1975 Civic, which met 1970s emissions standards without using a catalytic converter.

  3. Honda Ridgeline (second generation) - Wikipedia

    en.wikipedia.org/wiki/Honda_Ridgeline_(second...

    The Honda Ridgeline (YK2/YK3) is the second generation of pickup truck manufactured by Honda under the Ridgeline nameplate. The second generation Ridgeline took a different approach in design from the first generation Ridgeline by using Honda's new "global light truck platform," [3] found in the third generation Honda Pilot as well as other large Honda vehicles, [4] [5] [6] and made ...

  4. List of Honda engines - Wikipedia

    en.wikipedia.org/wiki/List_of_Honda_engines

    2006–2008 J35A9 - Ridgeline (YK1), Pilot (YF1) (4WD) (2005+) 2005–2018 3.5 L J35Z Debuted in the 2006 Honda Pilot FWD model. 2008–2012 J35A - Inspire (CP3) (2007+) VCM Japan market Inspire 35TL only. Engine is completely identical to J35Z2 in USDM Accord V6. 2006–2008 J35Z1 - Pilot (YF2) (FWD) (2005+) VCM; 2008–2012 J35Z2 - Accord ...

  5. VTEC - Wikipedia

    en.wikipedia.org/wiki/VTEC

    A Honda K24A Engine with i-VTEC. VTEC (described as Variable Valve Timing & Lift Electronic Control, but stands for Valve Timing Electronically Controlled) is a system developed by Honda to improve the volumetric efficiency of a four-stroke internal combustion engine, resulting in higher performance at high RPM, and lower fuel consumption at low RPM.

  6. Honda J engine - Wikipedia

    en.wikipedia.org/wiki/Honda_J_engine

    In 2006 Honda created the J30A5 to mark the 30th anniversary of the Accord. It boosted output to 244 hp (182 kW) (SAE Net 08/04) and 211 lb⋅ft (286 N⋅m) (SAE Net 08/04) of torque. According to Honda, horsepower gains were achieved with improvements to the airflow of the intake and exhaust system.

  7. Honda F engine - Wikipedia

    en.wikipedia.org/wiki/Honda_F_engine

    The single-over-head-camshaft design requires less under-hood space than the more conventional dual overhead camshafts normally used with 16-valve, 4-cylinder engines. The adoption of a sophisticated knock control system optimizes ignition timing and allows for a higher compression ratio (9.3:1 from 8.8:1). Unleaded regular fuel is specified.