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  2. Air–fuel ratio meter - Wikipedia

    en.wikipedia.org/wiki/Af-ratio-meters

    1 Benefits of airfuel ratio metering. 2 Sensor types. Toggle Sensor types subsection. 2.1 Zirconia oxygen sensor. ... 4 Which type of airfuel ratio meter to be ...

  3. Air-fuel ratio meters - Wikipedia

    en.wikipedia.org/wiki/Airfuel_ratio

    Also called airfuel ratio gauge, airfuel meter, or airfuel gauge, it reads the voltage output of an oxygen sensor, sometimes also called AFR sensor or lambda sensor. The original narrow-band oxygen sensors became factory installed standard in the late 1970s and early 1980s.

  4. Oxygen sensor - Wikipedia

    en.wikipedia.org/wiki/Oxygen_sensor

    The ECU is a control system that uses feedback from the sensor to adjust the fuel/air mixture. As in all control systems, the time constant of the sensor is important; the ability of the ECU to control the fuelair ratio depends upon the response time of the sensor. An aging or fouled sensor tends to have a slower response time, which can ...

  5. Lucas 14CUX - Wikipedia

    en.wikipedia.org/wiki/Lucas_14CUX

    The value read from the map is offset by other environmental factors (such as coolant temperature). This corrected value is then used to meter fuel by pulse-width modulating the fuel injectors. Because each bank of the V8 feeds an exhaust line with its own oxygen sensor, the air/fuel ratio can be monitored and controlled for the banks ...

  6. Exhaust gas temperature gauge - Wikipedia

    en.wikipedia.org/wiki/Exhaust_gas_temperature_gauge

    An exhaust gas temperature gauge (EGT gauge or EGT sensor) is a meter used to monitor the exhaust gas temperature of an internal combustion engine in conjunction with a thermocouple-type pyrometer. EGT gauges are found in certain cars and aeroplanes. By monitoring EGT, the driver or pilot can get an idea of the vehicle's air-fuel ratio (AFR).

  7. Lean-burn - Wikipedia

    en.wikipedia.org/wiki/Lean-burn

    Lean-burn refers to the burning of fuel with an excess of air in an internal combustion engine. In lean-burn engines the airfuel ratio may be as lean as 65:1 (by mass). The air / fuel ratio needed to stoichiometrically combust gasoline, by contrast, is 14.64:1. The excess of air in a lean-burn engine emits far less hydrocarbons.

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