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Home >> Toyota >> 2009 >> Highlander Limited, FWD >> Repair and Diagnosis >> External Pages >> Different variant/trim >> Section 20 (Engine Control System (1AR-FE) - DTC P0705 - P2A00, DTC U0101) >> DTC P2195 Oxygen (A/F) Sensor Signal Stuck Lean (Bank 1 Sensor 1); DTC P2196 Oxygen (A/F) Sensor Signal Stuck Rich (Bank 1 Sensor 1) >> Description

DTC P2195 Oxygen (A/F) Sensor Signal Stuck Lean (Bank 1 Sensor 1); DTC P2196 Oxygen (A/F) Sensor Signal Stuck Rich (Bank 1 Sensor 1): Description

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The air fuel ratio sensor generates a voltage* that corresponds to the actual air fuel ratio. This sensor voltage is used to provide the ECM with feedback so that it can control the air fuel ratio. The ECM determines the deviation from the stoichiometric air fuel ratio level, and regulates the fuel injection time. If the air fuel ratio sensor malfunctions, the ECM is unable to control the air fuel ratio accurately. The air fuel ratio sensor is the planar type and is integrated with the heater, which heats the solid electrolyte (zirconia element). This heater is controlled by the ECM. When the intake air volume is low (the exhaust gas temperature is low), a current flows into the heater to heat the sensor, in order to facilitate accurate oxygen concentration detection. In addition, the sensor and heater portions are the narrow type. The heat generated by the heater is conducted to the solid electrolyte through the alumina, therefore the sensor activation is accelerated.

In order to obtain a high purification rate of the carbon monoxide (CO), hydrocarbon (HC) and nitrogen oxide (NOx) components in the exhaust gas, a three-way catalytic converter is used. For the most efficient use of the three-way catalytic converter, the air fuel ratio must be precisely controlled so that it is always close to the stoichiometric level.

*: Value changes inside the ECM. Since the air fuel ratio sensor is a current output element, the current is converted into a voltage inside the ECM. Any measurements taken at the air fuel ratio sensor or ECM connectors will show a constant voltage.

Fig 1: Air Fuel Ratio Sensor Voltage Graph
G05404462Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
DTC DETECTION CONDITION CHART

DTC No. DTC Detection Condition Trouble Area
P2195 Conditions (a) and (b) continue for 5 seconds or more (2 trip detection logic)
  1. Air fuel ratio sensor voltage more than 3.8 V
  2. Heated oxygen sensor voltage is rises from below 0.21 V to 0.59 V or more
  • Open or short in air fuel ratio sensor (bank 1 sensor 1) circuit
  • Air fuel ratio sensor (bank 1 sensor 1)
  • Air fuel ratio sensor (bank 1 sensor 1) heater
  • Air fuel ratio sensor heater circuit
  • Intake system
  • Fuel pressure
  • Fuel injector assembly
  • ECM
While fuel-cut operation performed (during vehicle deceleration), air fuel ratio sensor current is 3.6 mA or more for 3 seconds (2 trip detection logic)
  • Air fuel ratio sensor (bank 1 sensor 1)
  • ECM
P2196 Conditions (a) and (b) continue for 5 seconds or more (2 trip detection logic)
  1. Air fuel ratio sensor voltage less than 2.8 V
  2. Heated oxygen sensor voltage falls from 0.59 V or higher to below 0.21 V
  • Open or short in air fuel ratio sensor (bank 1 sensor 1) circuit
  • Air fuel ratio sensor (bank 1 sensor 1)
  • Air fuel ratio sensor (bank 1 sensor 1) heater
  • Air fuel ratio sensor heater circuit
  • Intake system Fuel pressure
  • Fuel injector assembly
  • ECM
While fuel-cut operation performed (during vehicle deceleration), air fuel ratio sensor current is less than 1.0 mA for 3 seconds (2 trip detection logic)
  • Air fuel ratio sensor (bank 1 sensor 1)
  • ECM

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