Info Added 2017-10-06
| DTC Code | DTC Name |
|---|---|
| P0A949E | DC/DC Converter Stuck On |
| P0D3319 | DC/DC Converter Circuit Current Above Threshold |
DTC SUMMARY
MALFUNCTION DESCRIPTION
This DTC indicates that a large current flowed in the boost converter. The cause of this malfunction may be one of the following:
| Area | Main Malfunction Description |
|---|---|
| Hybrid vehicle transaxle assembly |
|
| Resolver | Open or short circuit in the motor resolver, generator resolver |
| Inverter |
|
| Inverter cooling system |
|
DESCRIPTION
For a description of the boost converter.
| DTC No. | Detection Item | DTC Detection Condition | Trouble Area | MIL | Warning Indicate |
|---|---|---|---|---|---|
| P0A949E | DC/DC Converter Stuck On | Boost converter fail signal detected (circuit malfunction) (1 trip detection logic) |
|
Comes on | Master Warning Light: Comes on |
| P0D3319 | DC/DC Converter Circuit Current Above Threshold | Boost converter fail signal detected: A malfunction is detected in any of the boost converter components (inverter, hybrid vehicle transaxle, motor generator control ECU, etc.). (1 trip detection logic) |
|
Comes on | Master Warning Light: Comes on |
*: w/ Grille Shutter
| DTC No. | Data List |
|---|---|
| P0A949E P0D3319 |
|
COMPONENT OPERATING RANGE
Tech Tips
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.
Connect the GTS to the DLC3.
Turn the power switch on (IG) and turn the GTS on.
Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
Turn the power switch off and wait for 2 minutes or more.
Turn the power switch on (IG) and turn the GTS on.
With power switch on (IG) and wait for 5 seconds or more.
Turn the power switch on (READY) and wait for 5 seconds or more.
Depress the accelerator pedal of the vehicle with the engine stopped and park (P) selected to start the engine.
Note
As the state of charge of the HV battery may be low after driving in fail-safe mode, it will automatically be charged for 5 to 10 minutes with power switch on (READY) after repairs have been performed.
Tech Tips
Check that there are no abnormalities (abnormal sounds, coolant leaks, etc.).
Enter the following menus: Powertrain / Motor Generator / Utility / All Readiness.
Check the DTC judgment result.
Tech Tips
If the judgment result shows NORMAL, the system is normal.
If the judgment result shows ABNORMAL, the system has a malfunction.
If the judgment result shows INCOMPLETE or N/A, perform driving pattern again.
WIRING DIAGRAM
Refer to the wiring diagram for the Generator Resolver Circuit.
Refer to the wiring diagram for the Motor Resolver Circuit.
Refer to the wiring diagram for the Generator High-voltage Circuit.
Refer to the wiring diagram for the Motor High-voltage Circuit.
Refer to the wiring diagram for the Inverter Low-voltage Circuit.
Refer to the wiring diagram for the Cooling System.
CAUTION / NOTICE / HINT
CAUTION:
Before the following operations are conducted, take precautions to prevent electric shock by turning the power switch off, wearing insulated gloves, and removing the service plug grip from HV battery.
Inspecting the high-voltage system
Disconnecting the low voltage connector of the inverter with converter assembly
Disconnecting the low voltage connector of the HV battery
To prevent electric shock, make sure to remove the service plug grip to cut off the high voltage circuit before servicing the vehicle.
After removing the service plug grip from the HV battery, put it in your pocket to prevent other technicians from accidentally reconnecting it while you are working on the high-voltage system.
| *a | Without waiting for 10 minutes |
After removing the service plug grip, wait for at least 10 minutes before touching any of the high-voltage connectors or terminals. After waiting for 10 minutes, check the voltage at the terminals in the inspection point in the inverter with converter assembly. The voltage should be 0 V before beginning work.
Tech Tips
Waiting for at least 10 minutes is required to discharge the high-voltage capacitor inside the inverter with converter assembly.
Note
After turning the power switch off, waiting time may be required before disconnecting the cable from the negative (-) auxiliary battery terminal. Therefore, make sure to read the disconnecting the cable from the negative (-) auxiliary battery terminal notices before proceeding with work.
PROCEDURE
CHECK DTC OUTPUT
Connect the GTS to the DLC3.
Turn the power switch on (IG).
Enter the following menus: Powertrain / Hybrid Control and Motor Generator / Trouble Codes.
Check for DTCs.
| Result | ||||||||
|---|---|---|---|---|---|---|---|---|
|
| Malfunction Content | System | Relevant DTC | |
|---|---|---|---|
| Insulation Malfunction | Hybrid control system | P1C7C49 | Hybrid/EV Battery Voltage System (A/C Area) Insulation Resistance Decreased |
| P1C7D49 | Hybrid/EV Battery Voltage System (Hybrid/EV Battery Area) Insulation Resistance Decreased | ||
| P1C7E49 | Hybrid/EV Battery Voltage System (Transaxle Area) Insulation Resistance Decreased | ||
| P1C7F49 | Hybrid/EV Battery Voltage System (Direct Current Area) Insulation Resistance Decreased | ||
| System Main Relay or High Voltage Circuit Malfunction | Hybrid control system | P0AD911 | Hybrid/EV Battery Positive Contactor Circuit Short to Ground |
| P0AD915 | Hybrid/EV Battery Positive Contactor Circuit Short to Battery or Open | ||
| P0ADD11 | Hybrid/EV Battery Negative Contactor Circuit Short to Ground | ||
| P0ADD15 | Hybrid/EV Battery Negative Contactor Circuit Short to Battery or Open | ||
| P1C8449 | High Voltage Power Resource Circuit Short during Ready ON | ||
| HV Battery Malfunction | Hybrid control system | P0AFC16 | Hybrid/EV Battery Sensor Module Circuit Voltage Below Threshold |
| P0AFC96 | Hybrid/EV Battery Sensor Module Component Internal Failure | ||
| P1CBE1E | Hybrid/EV Battery Block 1 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CBF1E | Hybrid/EV Battery Block 2 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC01E | Hybrid/EV Battery Block 3 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC11E | Hybrid/EV Battery Block 4 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC21E | Hybrid/EV Battery Block 5 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC31E | Hybrid/EV Battery Block 6 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC41E | Hybrid/EV Battery Block 7 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC51E | Hybrid/EV Battery Block 8 (Voltage Difference) Circuit Resistance Out of Range | ||
| P1CC61E | Hybrid/EV Battery Block 9 (Voltage Difference) Circuit Resistance Out of Range | ||
| P301100 | Hybrid/EV Battery Block 1 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301200 | Hybrid/EV Battery Block 2 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301300 | Hybrid/EV Battery Block 3 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301400 | Hybrid/EV Battery Block 4 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301500 | Hybrid/EV Battery Block 5 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301600 | Hybrid/EV Battery Block 6 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301700 | Hybrid/EV Battery Block 7 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301800 | Hybrid/EV Battery Block 8 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| P301900 | Hybrid/EV Battery Block 9 (Internal Resistance Difference) Circuit Resistance Out of Range (Extreme) | ||
| U029A87 | Lost Communication with Hybrid/EV Battery Sensor Module Missing Message | ||
| Malfunction Content | System | Relevant DTC | |
|---|---|---|---|
| Microcomputer malfunction | Motor generator control system | P0A1A47 | Generator Control Module |
| P0A1A49 | Drive Motor "A" Control Module | ||
| P0A1B1F | Drive Motor "B" Control Module | ||
| P1C2A1C | Hybrid Powertrain Control Module | ||
| P1C2A49 | Generator A/D Converter Circuit | ||
| P1C2B1C | Drive Motor "A" A/D Converter Circuit | ||
| P1C2B49 | Drive Motor "B" A/D Converter Circuit | ||
| P313383 | Generator Control Module Malfunction | ||
| P313386 | Drive Motor Control Module Malfunction | ||
| P313387 | Drive Motor "B" Control Module Malfunction | ||
| P313483 | Generator Position Sensor Angle Malfunction | ||
| P313486 | Drive Motor "A" Position Sensor Angle Malfunction | ||
| P313487 | Drive Motor "B" Position Sensor Angle Malfunction | ||
| Hybrid control system | P0A1B49 | Generator Position Sensor REF Signal Cycle Malfunction | |
| Power source circuit malfunction | Motor generator control system | P06B01C | Generator Control Module Position Sensor REF Power Source Circuit Voltage Out of Range |
| P06D61C | Generator Control Module Offset Power Circuit Voltage Out of Range | ||
| Communication malfunction | Motor generator control system | P312487 | Lost Communication between Drive Motor "A" and HV ECU Missing Message |
| Hybrid control system | P312387 | Lost Communication with Missing Message | |
| Sensor and actuator circuit malfunction | Motor generator control system | P0A3F16 | Drive Motor "A" Position Sensor Circuit Voltage Below Threshold |
| P0A3F21 | Drive Motor "A" Position Sensor Signal Amplitude < Minimum | ||
| P0A3F22 | Drive Motor "A" Position Sensor Signal Amplitude > Maximum | ||
| P0A4B16 | Generator Position Sensor Circuit Voltage Below Threshold | ||
| P0A4B21 | Generator Position Sensor Signal Amplitude < Minimum | ||
| P0A4B22 | Generator Position Sensor Signal Amplitude > Maximum | ||
| P0A6012 | Drive Motor "A" Phase V Current (High Resolution) Circuit Short to Battery | ||
| P0A6014 | Drive Motor "A" Phase V Current (High Resolution) Circuit Short to Ground or Open | ||
| P0A601C | Drive Motor "A" Phase V Current (High Resolution) Circuit Voltage Out of Range | ||
| P0A6312 | Drive Motor "A" Phase W Current (High Resolution) Circuit Short to Battery | ||
| P0A6314 | Drive Motor "A" Phase W Current (High Resolution) Circuit Short to Ground or Open | ||
| P0A631C | Drive Motor "A" Phase W Current (High Resolution) Circuit Voltage Out of Range | ||
| P0BE512 | Drive Motor "A" Phase U Current Sensor Circuit Short to Battery | ||
| P0BE514 | Drive Motor "A" Phase U Current Sensor Circuit Short to Ground or Open | ||
| P0BE528 | Drive Motor "A" Phase U Current Sensor Signal Bias Level Out of Range / Zero Adjustment Failure | ||
| P0BE912 | Drive Motor "A" Phase V Current Sensor Circuit Short to Battery | ||
| P0BE914 | Drive Motor "A" Phase V Current Sensor Circuit Short to Ground or Open | ||
| P0BE928 | Drive Motor "A" Phase V Current Sensor Signal Bias Level Out of Range / Zero Adjustment Failure | ||
| P0BED12 | Drive Motor "A" Phase W Current Sensor Circuit Short to Battery | ||
| P0BED14 | Drive Motor "A" Phase W Current Sensor Circuit Short to Ground or Open | ||
| P0BED28 | Drive Motor "A" Phase W Current Sensor Signal Bias Level Out of Range / Zero Adjustment Failure | ||
| P0BFD62 | Drive Motor "A" Phase U-V-W Current Sensor Signal Compare Failure | ||
| P0C5013 | Drive Motor "A" Position Sensor Circuit "A" Circuit Open | ||
| P0C5016 | Drive Motor "A" Position Sensor Circuit "A" Circuit Voltage Below Threshold | ||
| P0C5017 | Drive Motor "A" Position Sensor Circuit "A" Circuit Voltage Above Threshold | ||
| P0C5A13 | Drive Motor "A" Position Sensor Circuit "B" Circuit Open | ||
| P0C5A16 | Drive Motor "A" Position Sensor Circuit "B" Circuit Voltage Below Threshold | ||
| P0C5A17 | Drive Motor "A" Position Sensor Circuit "B" Circuit Voltage Above Threshold | ||
| P0C6413 | Generator Position Sensor Circuit "A" Circuit Open | ||
| P0C6416 | Generator Position Sensor Circuit "A" Circuit Voltage Below Threshold | ||
| P0C6417 | Generator Position Sensor Circuit "A" Circuit Voltage Above Threshold | ||
| P0C6913 | Generator Position Sensor Circuit "B" Circuit Open | ||
| P0C6916 | Generator Position Sensor Circuit "B" Circuit Voltage Below Threshold | ||
| P0C6917 | Generator Position Sensor Circuit "B" Circuit Voltage Above Threshold | ||
| P0D2D16 | Drive Motor "A" Inverter Voltage Sensor (VH) Circuit Voltage Below Threshold | ||
| P0D2D17 | Drive Motor "A" Inverter Voltage Sensor (VH) Circuit Voltage Above Threshold | ||
| P0DFA62 | Generator Phase U-V-W Current Sensor Signal Compare Failure | ||
| P0E0012 | Generator Phase U Current Sensor Circuit Short to Battery | ||
| P0E0014 | Generator Phase U Current Sensor Circuit Short to Ground or Open | ||
| P0E0028 | Generator Phase U Current Sensor Signal Bias Level Out of Range / Zero Adjustment Failure | ||
| P0E0412 | Generator Phase V Current Sensor Circuit Short to Battery | ||
| P0E0414 | Generator Phase V Current Sensor Circuit Short to Ground or Open | ||
| P0E0428 | Generator Phase V Current Sensor Signal Bias Level Out of Range / Zero Adjustment Failure | ||
| P0E0812 | Generator Phase W Current Sensor Circuit Short to Battery | ||
| P0E0814 | Generator Phase W Current Sensor Circuit Short to Ground or Open | ||
| P0E0828 | Generator Phase W Current Sensor Signal Bias Level Out of Range / Zero Adjustment Failure | ||
| P0E3116 | DC/DC Converter Voltage Sensor "A" (VL) Circuit Voltage Below Threshold | ||
| P0E3117 | DC/DC Converter Voltage Sensor "A" (VL) Circuit Voltage Above Threshold | ||
| P0E5111 | DC/DC Converter Current Sensor Circuit Short to Ground | ||
| P0E5115 | DC/DC Converter Current Sensor Circuit Short to Battery or Open | ||
| P0E512A | DC/DC Converter Current Sensor Signal Stuck In Range | ||
| P1CAC49 | Generator Position Sensor Internal Electronic Failure | ||
| P1CAD49 | Drive Motor "A" Position Sensor Internal Electronic Failure | ||
| P1CAF38 | Generator Position Sensor REF Signal Cycle Malfunction Signal Frequency Incorrect | ||
| P1CB038 | Drive Motor "A" Position Sensor REF Signal Frequency Incorrect | ||
| Hybrid control system | P0C7600 | Hybrid/EV Battery System Discharge Time Too Long | |
| P0D2D1C | Drive Motor "A" Inverter after Boosting Voltage Sensor Circuit Voltage Out of Range | ||
| P0E311C | Drive Motor "A" Inverter before Boosting Voltage Sensor Circuit Voltage Out of Range | ||
| System malfunction | Motor generator control system | P0A9000 | Drive Motor "A" Performance |
| P0A9200 | Hybrid Generator Performance | ||
| P0BFF1D | Drive Motor "A" Circuit Current Out of Range | ||
| P0C1900 | Drive Motor "A" Execution Torque Performance | ||
| P0CA300 | DC/DC Converter Step Up Voltage Performance | ||
| P0E7100 | Generator Execution Torque Performance | ||
| P1CA51D | Hybrid Generator Circuit Current Out of Range | ||
| P314F1F | DC/DC Converter Voltage Sensor "A" (VL) Circuit Intermittent | ||
| P31531D | DC/DC Converter Current Sensor Circuit Current Out of Range | ||
| Hybrid control system | P0A9300 | Inverter "A" Cooling System | |
| P0AA649 | Hybrid/EV Battery Voltage System Insulation Resistance Decreased | ||
| P0C7396 | Motor Electronics Coolant Pump "A" Component Internal Failure | ||
| P314A31 | Motor Electronics Coolant Pump "A" No Signal | ||
| Relevant DTC | |
|---|---|
| P0A3F1F | Drive Motor "A" Position Sensor Circuit Intermittent |
| P0A4B1F | Generator Position Sensor Circuit Intermittent |
| P0A601F | Drive Motor "A" Phase V Current (High Resolution) Circuit Intermittent |
| P0A631F | Drive Motor "A" Phase W Current (High Resolution) Circuit Intermittent |
| P0C501F | Drive Motor "A" Position Sensor Circuit "A" Circuit Intermittent |
| P0C5A1F | Drive Motor "A" Position Sensor Circuit "B" Circuit Intermittent |
| P0C641F | Generator Position Sensor Circuit "A" Circuit Intermittent |
| P0C691F | Generator Position Sensor Circuit "B" Circuit Intermittent |
| P0D2D1F | Drive Motor "A" Inverter Voltage Sensor (VH) Circuit Intermittent |
| P0E311F | DC/DC Converter Voltage Sensor "A" (VL) Circuit Intermittent |
| P1C601F | Generator Control Module Position Sensor REF Power Source Circuit Intermittent |
| P1C621F | Generator Control Module Offset Power Circuit Intermittent |
| P1C641F | Generator Control Module Circuit Intermittent |
| P1C651F | Generator Control Module Circuit Intermittent |
| P1C671F | Drive Motor "A" Phase U-V-W Current Sensor Circuit Intermittent |
| P1C691F | Generator Phase U-V-W Current Sensor Circuit Intermittent |
| P31241F | Lost Communication between Drive Motor "A" and HV ECU Circuit Intermittent |
Tech Tips
P0A949E or P0D3319 may be output as a result of the malfunction indicated by the DTCs above.
The chart above is listed in inspection order of priority.
Check DTCs that are output at the same time by following the listed order. (The main cause of the malfunction can be determined without performing unnecessary inspections.)
If DTC P0A949E is output, replace the inverter with converter assembly after completing repairs.
Turn the power switch off.
| B |
|
GO TO DTC CHART (HYBRID CONTROL SYSTEM) Click here |
| C |
|
GO TO DTC CHART (MOTOR GENERATOR CONTROL SYSTEM) Click here |
| A |
|
CHECK FREEZE FRAME DATA AND DIAGNOSIS RELATED INFORMATION
Connect the GTS to the DLC3.
Turn the power switch on (IG).
Enter the following menus: Powertrain / Motor Generator / Utility / Diagnosis Related Information.
| Tester Display |
|---|
| Diagnosis Related Information |
Enter the following menus: Powertrain / Motor Generator / Trouble Codes.
Read the diagnosis related information and freeze frame data of DTC P0A949E or P0D3319.
| Result | ||||||||
|---|---|---|---|---|---|---|---|---|
|
Turn the power switch off.
| A |
|
GO TO DTC CHART (P312487) Click here |
| B |
|
GO TO DTC CHART (P321E9F) Click here |
| C |
|
CHECK FREEZE FRAME DATA
Connect the GTS to the DLC3.
Turn the power switch on (IG).
Enter the following menus: Powertrain / Motor Generator / Trouble Codes.
Read the freeze frame data of DTC P0A949E or P0D3319.
| Result | ||||||
|---|---|---|---|---|---|---|
|
Turn the power switch off.
| B |
|
CHECK CONNECTOR CONNECTION CONDITION (INVERTER WITH CONVERTER ASSEMBLY CONNECTOR) Click here |
| A |
|
CHECK COOLING SYSTEM
| Result | ||
|---|---|---|
|
| NEXT |
|
CHECK CONNECTOR CONNECTION CONDITION (INVERTER WITH CONVERTER ASSEMBLY CONNECTOR)
| Result | ||||||||
|---|---|---|---|---|---|---|---|---|
|
CAUTION:
Be sure to wear insulated gloves.
Check that the service plug grip is not installed.
Note
After removing the service plug grip, do not turn the power switch on (READY), unless instructed by the repair manual because this may cause a malfunction.
Check the connection condition of the low voltage connectors of the inverter with converter assembly and the contact pressure of each terminal. Check the terminals for deformation, and the connector for water and foreign matter.
Note
Before disconnecting the connector, confirm that it is properly connected by checking that the claws of the lock levers are engaged and that the connector cannot be pulled off.
| OK |
|---|
| - The connector is connected securely. |
| - The terminals are not deformed and are connected securely. |
| - No water or foreign matter in the connector. |
| Result | ||||||||
|---|---|---|---|---|---|---|---|---|
|
Tech Tips
When connecting the connector, connect it with the lock levers raised. Rotate each lock lever downward and make sure that the connector is securely connected. When a lock lever is fully lowered, a click will be heard as its claw engages. After the click is heard, pull up on the connector to confirm that it is securely connected.
| B |
|
CONNECT SECURELY |
| C |
|
REPAIR OR REPLACE HARNESS OR CONNECTOR |
| A |
|
CHECK GENERATOR RESOLVER CIRCUIT
| Result | ||
|---|---|---|
|
| NEXT |
|
CHECK MOTOR RESOLVER CIRCUIT
| Result | ||
|---|---|---|
|
| NEXT |
|
CHECK GENERATOR HIGH-VOLTAGE CIRCUIT
| Result | ||
|---|---|---|
|
| NEXT |
|
CHECK MOTOR HIGH-VOLTAGE CIRCUIT
| Result | ||
|---|---|---|
|
| NEXT |
|
CHECK INVERTER LOW-VOLTAGE CIRCUIT
Tech Tips
If the "Inverter Low-voltage Circuit" inspection results are normal, perform the next step.
| Result | ||
|---|---|---|
|
| NEXT |
|
REPLACE INVERTER WITH CONVERTER ASSEMBLY Click here |