Those DTCs are designed to detect a deviation in the output characteristics of a pressure sensor.
| DTC No. | Detection Item | DTC Detection Condition | Trouble Area | MIL | Memory | Note |
|---|---|---|---|---|---|---|
| P106A62 | Evaporative Emission System Pressure / Intake Air Pressure Signal Compare Failure | The difference between the pressure of the canister pressure sensor (Vapor Pressure Pump*) and No. 2 turbo pressure sensor (Intake Manifold Absolute Pressure*) is higher than 12.4 kPa (1.80 psi) (2 trip detection logic). | ·
Canister pressure sensor (No. 2 charcoal canister sub-assembly) ·
No. 2 turbo pressure sensor |
Comes on | DTC stored | SAE Code: P106A |
| P106C62 | Evaporative Emission System Pressure/Barometric Pressure Signal Compare Failure | The difference between the pressure of the canister pressure sensor (Vapor Pressure Pump*) and atmospheric pressure sensor (Atmospheric Pressure*) is higher than 7.89 kPa (1.14 psi) (2 trip detection logic). | ·
Canister pressure sensor (No. 2 charcoal canister sub-assembly) ·
Atmospheric pressure sensor (ECM) |
Comes on | DTC stored | SAE Code: P106C |
| P106D62 | Evaporative Emission System Pressure Sensor - Turbocharger/Supercharger Boost Sensor Signal Compare Failure | The difference between the pressure of the canister pressure sensor (Vapor Pressure Pump*) and boost pressure sensor (Boost Pressure Sensor*) is higher than 12.4 kPa [1.80 psi] (2 trip detection logic). | ·
Canister pressure sensor (No. 2 charcoal canister sub-assembly) ·
No. 1 turbo pressure sensor |
Comes on | DTC stored | SAE Code: P106D |
*: Data List name
Those DTCs are stored when a deviation from pressure sensor characteristics is detected.
The pressure sensors* are checked approximately 50 minutes after the ignition switch is turned off. If the pressures detected by the pressure sensors* differ by a certain amount, the MIL is illuminated and a DTC is stored (2 trip detection logic).
*: P106A62 checks the canister pressure sensor and the No. 2 turbo pressure sensor. P106C62 checks the canister pressure sensor and atmospheric pressure sensor. P106D62 checks the canister pressure sensor and the No. 1 turbo pressure sensor (boost pressure sensor).
Correct judgment may not be possible when the altitude is 4000 m (13120 ft.) or more.
| Required Sensors/Components | Canister pressure sensor
Atmospheric pressure sensor (ECM) No. 1 turbo pressure sensor No. 2 turbo pressure sensor |
| Frequency of Operation | Once per driving cycle |
After repair has been completed, clear the DTC and then check that the vehicle has returned to normal by performing the following All Readiness check procedure.
When clearing the permanent DTCs, refer to the "CLEAR PERMANENT DTC" procedure.
Connect the GTS to the DLC3.
Turn the ignition switch to ON.
Turn the GTS on.
Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
Turn the ignition switch off and wait for at least 30 seconds.
Start the engine and idle for 10 seconds or more [A].
Turn the ignition switch off.
Leave the ignition switch off for 55 minutes [B].
Turn the ignition switch to ON.
Turn the GTS on.
Enter the following menus: Powertrain / Engine / Trouble Codes [C].
Read the pending DTCs.
If a pending DTC is output, the system is malfunctioning.
If a pending DTC is not output, perform the following procedure.
Enter the following menus: Powertrain / Engine / Utility / All Readiness.
Input the DTC: P106A62, P106C62 or P106D62.
Check the DTC judgment result.
| GTS Display | Description |
|---|---|
| NORMAL | ·
DTC judgment completed ·
System normal |
| ABNORMAL | ·
DTC judgment completed ·
System abnormal |
| INCOMPLETE | ·
DTC judgment not completed ·
Perform driving pattern after confirming DTC enabling conditions |
If the judgment result is NORMAL, the system is normal.
If the judgment result is ABNORMAL, the system is malfunctioning.
If the judgment result is INCOMPLETE, perform steps [A] through [C] again.
[A] to [C]: Normal judgment procedure.
The normal judgment procedure is used to complete DTC judgment and also used when clearing permanent DTCs.
When clearing the permanent DTCs, do not disconnect the cable from the battery terminal or attempt to clear the DTCs during this procedure, as doing so will clear the universal trip and normal judgment histories.
Refer to "Data List / Active Test" [Atmospheric Pressure, Intake Manifold Absolute Pressure, Vapor Pressure Pump and Boost Pressure Sensor].
Read Freeze Frame Data using the GTS. The ECM records vehicle and driving condition information as Freeze Frame Data the moment a DTC is stored. When troubleshooting, Freeze Frame Data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Connect the GTS to the DLC3.
Turn the ignition switch to ON.
Turn the GTS on.
Enter the following menus: Powertrain / Engine / Trouble Codes.
Read the DTCs.
| Result | Proceed to |
|---|---|
| DTC P106A62 is output | A |
| DTC P106C62 is output | B |
| DTC P106D62 is output | C |
| DTC P106A62 and P106C62, or P106C62 and P106D62 are output | D |
| DTC P106A62, P106C62 and/or P106D62 and other DTCs are output | E |
If any DTCs other than P106A62, P106C62 and/or P106D62 are output, troubleshoot those DTCs first.
A
B
C
D
E
Replace the No. 1 turbo pressure sensor.
| Proceed to |
|---|
| NEXT |
NEXT
Replace the ECM (atmospheric pressure sensor).
| Proceed to |
|---|
| NEXT |
NEXT
Replace the No. 2 turbo pressure sensor.
| Proceed to |
|---|
| NEXT |
NEXT
Replace the canister pressure sensor (No. 2 charcoal canister sub-assembly).
| Proceed to |
|---|
| NEXT |
NEXT
Connect the GTS to the DLC3.
Turn the ignition switch to ON.
Turn the GTS on.
Clear the DTCs.
Turn the ignition switch off and wait for at least 30 seconds.
| Proceed to |
|---|
| NEXT |
NEXT
Turn the ignition switch to ON.
Turn the GTS on.
Enter the following menus: Powertrain / Engine / Data List / Atmospheric Pressure, Intake Manifold Absolute Pressure, Vapor Pressure Pump and Boost Pressure Sensor.
| Tester Display |
|---|
| Atmospheric Pressure |
| Intake Manifold Absolute Pressure |
| Vapor Pressure Pump |
| Boost Pressure Sensor |
Confirm that the difference between Intake Manifold Absolute Pressure and Vapor Pressure Pump is 12.4 kPa (1.80 psi) or less.
Confirm that the difference between Atmospheric Pressure and Vapor Pressure Pump is 7.89 kPa (1.14 psi) or less.
Confirm that the difference between Vapor Pressure Pump and Boost Pressure Sensor is 12.4 kPa (1.80 psi) or less.
| Proceed to |
|---|
| NEXT |
NEXT