| DTC Code | DTC Name |
|---|---|
| P0D2E-586 | Drive Motor "A" Inverter Voltage Sensor Circuit Range / Performance |
DTC SUMMARY
MALFUNCTION DESCRIPTION
The hybrid vehicle control ECU detects a VH sensor malfunction.
The cause of this malfunction may be one of the following:
Inside of inverter voltage sensor circuit malfunction
Voltage sensor malfunction
Motor generator control ECU (MG ECU) malfunction
Communication (wire harness) malfunction
High voltage system malfunction
Inverter with converter assembly malfunction
DESCRIPTION
For a description of the inverter.
The signal line from the inverter voltage (VH) sensor is connected to the MG ECU, which is built into the inverter with converter assembly. If this DTC is output, replace the inverter with converter assembly.
Tech Tips
The term "drive motor A" indicates the motor (MG2).
| DTC No. | Detection Item | DTC Detection Condition | Trouble Area | MIL | Warning Indicate |
|---|---|---|---|---|---|
| P0D2E-586 | Drive Motor "A" Inverter Voltage Sensor Circuit Range / Performance | Inverter voltage (VH) sensor performance malfunction: Difference between "VH-Voltage after Boosting" and "VL-Voltage before Boosting" is large and difference between "VH-Voltage after Boosting" and "Power Resource VB" is large. (1 trip detection logic) |
Inverter with converter assembly | Comes on | Master Warning Light: Comes on |
| DTC No. | Data List |
|---|---|
| P0D2E-586 |
|
CAUTION / NOTICE / HINT
Tech Tips
After the repair, clear the DTCs and perform the following procedure to check that DTCs are not output.
Turn the power switch on (READY) with the shift lever in P.
Confirm that the Data List item "Boost Ratio" is 0% when the accelerator pedal is not depressed. Check that the Data List items "VH-Voltage after Boosting" and "Power Resource VB" are almost the same.
PROCEDURE
CHECK DTC OUTPUT (HYBRID CONTROL)
Connect the GTS to the DLC3.
Turn the power switch on (IG).
Enter the following menus: Powertrain / Hybrid Control / Trouble Codes.
Check for DTCs.
| Result | ||||||||
|---|---|---|---|---|---|---|---|---|
|
| Malfunction Content | Relevant DTC | |
|---|---|---|
| Microcomputer malfunction | P0A1A-151, 658 | Generator Control Module |
| P0A1B-786 | Drive Motor "A" Control Module | |
| P0A1D-148 | Hybrid Powertrain Control Module | |
| P1C2A-155 | Generator A/D Converter Circuit | |
| P1CA6-156 | Generator Control Module Malfunction | |
| P1CA7-193 | Drive Motor Control Module Malfunction | |
| P2511-149 | HV CPU Power Relay Sense Circuit Intermittent No Continuity | |
| P3133-659 | Communication Error from Generator to Drive Motor "A" | |
| P3134-661 | Communication Error from Drive Motor "A" to Generator | |
| P324E-788 | MG-ECU Power Relay Intermittent Circuit | |
| Power source circuit malfunction | P06E6-164 | Sensor Power Supply "C" Circuit / Open |
| P1C73-512 | Sensor Standard Voltage "F" Circuit / Open | |
| Communication system malfunction | U0110 (all INF codes)* | Lost Communication with Drive Motor Control Module "A" |
| System malfunction | P0D2F-266 | Drive Motor "A" Inverter Voltage Sensor Circuit Low |
| P0D30-267 | Drive Motor "A" Inverter Voltage Sensor Circuit High | |
| P0E33-589 | DC/DC Converter Voltage Sensor "A" Low | |
| P0E34-590 | DC/DC Converter Voltage Sensor "A" High | |
| Malfunction Content | Relevant DTC | |
|---|---|---|
| Microcomputer malfunction | P0AFC-123 | Hybrid Battery Pack Sensor Module |
| Sensor and actuator circuit malfunction | P0B3D-123 | Hybrid Battery Voltage Sensor "A" Circuit Low |
| P0B42-123 | Hybrid Battery Voltage Sensor "B" Circuit Low | |
| P0B47-123 | Hybrid Battery Voltage Sensor "C" Circuit Low | |
| P0B4C-123 | Hybrid Battery Voltage Sensor "D" Circuit Low | |
| P0B51-123 | Hybrid Battery Voltage Sensor "E" Circuit Low | |
| P0B56-123 | Hybrid Battery Voltage Sensor "F" Circuit Low | |
| P0B5B-123 | Hybrid Battery Voltage Sensor "G" Circuit Low | |
| P0B60-123 | Hybrid Battery Voltage Sensor "H" Circuit Low | |
| P0B65-123 | Hybrid Battery Voltage Sensor "I" Circuit Low | |
| P0B6A-123 | Hybrid Battery Voltage Sensor "J" Circuit Low | |
| P0B6F-123 | Hybrid Battery Voltage Sensor "K" Circuit Low | |
| P0B74-123 | Hybrid Battery Voltage Sensor "L" Circuit Low | |
| P0B79-123 | Hybrid Battery Voltage Sensor "M" Circuit Low | |
| P0B7E-123 | Hybrid Battery Voltage Sensor "N" Circuit Low | |
| P0B83-123 | Hybrid Battery Voltage Sensor "O" Circuit Low | |
| P0B88-123 | Hybrid Battery Voltage Sensor "P" Circuit Low | |
| P0B8D-123 | Hybrid Battery Voltage Sensor "Q" Circuit Low | |
| P0B92-123 | Hybrid Battery Voltage Sensor "R" Circuit Low | |
| P308A-123 | Hybrid Battery Voltage Sensor All Circuits Low | |
Tech Tips
*1: If any INF codes are output for this DTC, refer to the corresponding diagnostic procedure.
P0D2E-586 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.)
Turn the power switch off.
| A |
|
REPLACE INVERTER WITH CONVERTER ASSEMBLY Click here |
| B |
|
GO TO DTC CHART (HYBRID CONTROL SYSTEM) Click here |
| C |
|
GO TO DTC CHART (HYBRID BATTERY SYSTEM) Click here |