| DTC Code | DTC Name |
|---|---|
| P0C39-626 | DC / DC Converter Temperature Sensor "A" Range / Performance |
| P0C3C-625 | DC / DC Converter Temperature Sensor "A" Intermittent / Erratic |
DESCRIPTION
The MG ECU located in the inverter with converter assembly detects the temperature of the boost converter using the temperature sensor built into the boost converter. If necessary, the MG ECU will limit inverter output to help prevent boost converter overheating. The power management control ECU also detects malfunctions in the sensor based on the temperature sensor values. The inverter with converter assembly detects malfunctions in the boost converter temperature sensor and its wiring.
| DTC No. | INF Code | DTC Detection Condition | Trouble Area |
|---|---|---|---|
| P0C39 | 626 | Temperature calculated by power management control ECU and actual temperature are different for 10 seconds or more. |
|
| P0C3C | 625 | Unusual sudden change in boost converter temperature sensor (upper) output occurs and the offset continues, or unusual sudden change in boost converter temperature sensor (upper) output occurs repeatedly. |
INSPECTION PROCEDURE
CAUTION:
Before inspecting the high-voltage system or disconnecting the low voltage connector of the inverter with converter assembly, take safety precautions such as wearing insulated gloves and removing the service plug grip to prevent electrical shocks. After removing the service plug grip, put it in your pocket to prevent other technicians from accidentally reconnecting it while you are working on the high-voltage system.
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 Click here.
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 Click here.
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 if DTCs are output.
| Result | ||||||
|---|---|---|---|---|---|---|
|
| DTC No. | Relevant Diagnosis |
|---|---|
| P0A93-346 | Inverter Cooling System Performance |
| P0C73-776 | Motor Electronics Coolant Pump "A" Control Performance |
| P314A-828 | Inverter Coolant Pump Speed Signal |
Tech Tips
P0C39-626 or P0C3C-625 may be output due to a malfunction which also causes DTCs in the preceding table to be output. In this case, first troubleshoot the output DTCs in the preceding table. Then, perform a test to attempt to reproduce the problems, and check that no DTCs are output.
Turn the power switch off.
| B |
|
GO TO DTC CHART (HYBRID CONTROL SYSTEM) Click here |
| A |
|
CHECK CONNECTOR CONNECTION CONDITION (INVERTER WITH CONVERTER ASSEMBLY CONNECTOR)
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 connector connections and contact pressure of the low voltage connectors of the inverter with converter assembly Click here.
Note
Before disconnecting the connector, confirm that it is properly connected by checking that the locking claws are engaged and that the connector cannot be pulled out.
| *A | for LHD | *B | for RHD |
| OK |
|---|
| The connectors are connected securely and there are no contact pressure problems. |
Tech Tips
When connecting the connector, insert it with the locking lever in the raised position. Rotate the lever downward and make sure that the connector is pulled into its socket. When the locking lever is in its fully closed position, a click will be heard as its locking claws engage. After the click is heard, pull up on the connector to confirm that it is properly connected.
| NG |
|
CONNECT SECURELY |
| OK |
|
CHECK QUANTITY OF HV COOLANT
Check the HV coolant level in the inverter reserve tank.
Check for HV coolant leaks.
| Result | Proceed to |
|---|---|
| HV coolant leaks are not evident. A sufficient amount of coolant remains in the inverter reserve tank. | A |
| HV coolant leaks are not evident. No coolant remains in the inverter reserve tank. | B |
| HV coolant leaks are evident. | C |
Tech Tips
After repairing the HV coolant leaks and adding coolant, perform the "Activate the Water Pump" Active Test (HV Active Test item) and the "Control the Electric Cooling Fan" Active Test (Engine Active Test item) and make sure that there are no malfunctions.
| B |
|
ADD HV COOLANT |
| C |
|
INSPECT FOR HV COOLANT LEAK AND ADD HV COOLANT |
| A |
|
CHECK COOLANT HOSE
Check if the hoses of the cooling system are kinked or clogged.
| NG |
|
CORRECT THE PROBLEM |
| OK |
|
PERFORM ACTIVE TEST USING GTS (CONTROL THE ELECTRIC COOLING FAN)
Connect the GTS to the DLC3.
Turn the power switch on (IG).
Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Electric Cooling Fan.
Perform the "Control the Electric Cooling Fan" Active Test.
| OK |
|---|
| The cooling fan rotates. |
Turn the power switch off.
| NG |
|
CHECK COOLING FAN SYSTEM Click here |
| OK |
|
CHECK HV COOLANT (CHECK FOR CONDITIONS THAT MAY HAVE CAUSED FREEZING)
Connect the GTS to the DLC3.
Turn the power switch on (IG).
Enter the following menus: Powertrain / Hybrid Control / Trouble Codes.
Read the freeze frame data Ambient Temperature using the GTS.
Check if the freeze frame data Ambient Temperature is below freezing.
| Result | ||||||
|---|---|---|---|---|---|---|
|
Tech Tips
HV coolant (SLLC) with a 30% concentration freezes at -15°C (5°F) and HV coolant (SLLC) with a 50% concentration freezes at -35°C (-31°F).
If the HV coolant freezes in the HV radiator or HV water pump, the coolant temperature in the inverter with converter assembly rises because the HV coolant cannot circulate. As a result, a DTC may be stored.
A DTC is stored when the HV water pump impeller cannot rotate due to freezing of the HV coolant.
If a DTC is stored due to freezing of HV coolant, the problem cannot be reproduced. Judge whether freezing of HV coolant occurred according to the freeze point of the HV coolant, HV coolant change history and ambient temperature when the DTC was stored.
Turn the power switch off.
| B |
|
REPLACE INVERTER WITH CONVERTER ASSEMBLY Click here |
| A |
|
REPLACE HV COOLANT
Replace the HV coolant with coolant having an appropriate concentration (appropriate freeze point) for the vehicle usage conditions Click here.
| NEXT |
|
CHECK INVERTER WATER PUMP WITH MOTOR ASSEMBLY
Perform a road test and check that DTCs are not stored.
CAUTION:
Perform this road test only in an appropriate safe location, in accordance with all local laws.
| OK |
|---|
| DTCs are not stored. |
| NG |
|
REPLACE INVERTER WATER PUMP WITH MOTOR ASSEMBLY Click here |
| OK |
|
COMPLETED