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Home >> Toyota >> 2019 >> RAV4 XLE, FWD >> Repair and Diagnosis >> External Pages >> Different variant/trim >> Section 105 (Hybrid Control System (AWD, W/ Nickel Metal Hydride Battery) - Circuit Tests (2 Of 2)) >> HYBRID CONTROL SYSTEM (for AWD with NICKEL METAL HYDRIDE BATTERY) >> Cooling System [02/2019 - ] >> Procedure

Cooling System [02/2019 - ]: Procedure

WARNING: This page is about a different variant/trim than selected.
  1. CHECK VEHICLE CONDITION 
    1. Make sure that the front side of the radiator grille is not blocked with anything.
    2. Ask the customer if the front side of the radiator grille was blocked with anything.

      Result

      Result Proceed to
      Not blocked. A
      Is/was blocked. B

      HINT: 

      If the radiator grille is blocked, the inverter coolant temperature will increase and this DTC may be stored.

    Result: 

    IF EQUIPPED, EXPLAIN TO CUSTOMER THAT OPTIONAL COMPONENTS WILL BE REMOVED 

    Result: 

    See step  2

  2. CHECK QUANTITY OF HV COOLANT 
    1. Check the HV coolant level in the inverter reserve tank.
    2. Check for HV coolant leaks.

      Result

      Result Proceed to
      No leaks are found and the HV coolant level in the inverter reserve tank assembly is above the low line. A
      No leaks are found and the HV coolant level in the inverter reserve tank assembly is below the low line. B
      HV coolant leaks are evident. C

      HINT: 

      • After repairing the HV coolant leaks and adding coolant, perform the Active Tests "Activate the Inverter Water Pump" (Hybrid Control System) and "Control the Cooling Fan Duty Ratio" (Engine Control System) and make sure that there are no malfunctions.
      • If there are signs of coolant leakage around the connecting parts of a hose and the inverter with converter assembly, replace the hose with a new one.

    Result: 

    ADD HV COOLANT 

    Result: 

    INSPECT FOR COOLANT LEAK AND ADD COOLANT 

    Result: 

    See step  3

  3. CHECK COOLANT HOSE 
    1. Check that the cooling system hoses are not kinked or clogged.

      OK

      The cooling system hoses are not kinked or clogged.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    REPAIR OR REPLACE COOLANT HOSE 

    Result: 

    OK 

    See step  4

  4. PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE ENGINE COOLING FAN DUTY RATIO) 
    1. Connect the Techstream to the DLC3.
    2. Turn the ignition switch to ON.
    3. Enter the following menus: Powertrain / Engine / Active Test / Control the Engine Cooling Fan Duty Ratio.

      Powertrain > Engine > Active Test 

      Tester Display
      Control the Engine Cooling Fan Duty Ratio
    4. Perform the "Control the Engine Cooling Fan Duty Ratio" Active Test.

      OK

      Techstream Operation Fan Operation
      30 - 100% Cooling fan operates
      0% Cooling fan stops

      Result

      Result Proceed to
      Cooling fan operate A
      Cooling fan does not operate B
      Cooling fan do not stop
    5. Turn the ignition switch off.

    Result: 

    CHECK COOLING FAN SYSTEM 

    Refer to Cooling Fan Circuit [02/2019 - 08/2020] , or refer to Cooling Fan Circuit [08/2020 - 12/2021] , or refer to Cooling Fan Circuit [12/2021 - ]

    Result: 

    See step  5

  5. PERFORM ACTIVE TEST USING TECHSTREAM (GRILLE SHUTTER OPERATION) 
    1. Connect the Techstream to the DLC3.
    2. Turn the ignition switch to ON.
    3. Enter the following menus: Body Electrical / Grille Shutter / Utility / Grille Shutter Control Mode Switching.
    4. According to the display on the Techstream, change the grille shutter control mode from normal mode to maintenance mode.

      Body Electrical > Grille Shutter > Utility 

      Tester Display
      Grille Shutter Control Mode Switching
    5. Enter the following menus: Body Electrical / Grille Shutter / Active Test / Shutter Closing Operation Lock Detection / Data List / Shutter Operation Lock Detection Result for Active Test.
    6. According to the display on the Techstream, perform the Active Test and read the value of Data List item Shutter Operation Lock Detection Result for Active Test.

      Body Electrical > Grille Shutter > Active Test 

      Active Test Display
      Shutter Closing Operation Lock Detection
      Data List Display
      Shutter Operation Lock Detection Result for Active Test

      OK

      "Normal" is displayed.

    7. Enter the following menus: Body Electrical / Grille Shutter / Active Test / Shutter Opening Operation Lock Detection / Data List / Shutter Operation Lock Detection Result for Active Test.
    8. According to the display on the Techstream, perform the Active Test and read the value of Data List item Shutter Operation Lock Detection Result for Active Test.

      Body Electrical > Grille Shutter > Active Test 

      Active Test Display
      Shutter Opening Operation Lock Detection
      Data List Display
      Shutter Operation Lock Detection Result for Active Test

      OK

      "Normal" is displayed.

      HINT: 

      When the value of Data List item Shutter Operation Lock Detection Result for Active Test is "Normal", it can be determined that the grille shutter system is normal.

    9. Enter the following menus: Body Electrical / Grille Shutter / Utility / Grille Shutter Control Mode Switching.
    10. According to the display on the Techstream, change the grille shutter control mode from maintenance mode to normal mode.

      Body Electrical > Grille Shutter > Utility 

      Tester Display
      Grille Shutter Control Mode Switching
    11. Turn the ignition switch off.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    CHECK GRILLE SHUTTER SYSTEM 

    Refer to HOW TO PROCEED WITH TROUBLESHOOTING [02/2019 - 12/2021] , or refer to HOW TO PROCEED WITH TROUBLESHOOTING [12/2021 - ]

    Result: 

    OK 

    See step  6

  6. PERFORM ACTIVE TEST USING TECHSTREAM (ACTIVATE THE INVERTER WATER PUMP) 
    NOTE:
    • Make sure that the HV coolant level is above the low line of the inverter reserve tank.
    • Be sure to perform the inspection with the auxiliary battery voltage at 12 V or more.

    HINT: 

    When the auxiliary battery voltage is low, the inverter water pump assembly may not operate.

    1. Connect the Techstream to the DLC3.
    2. Turn the ignition switch to ON.
    3. Enter the following menus: Powertrain / Hybrid Control / Active Test / Activate the Inverter Water Pump.

      Powertrain > Hybrid Control > Active Test 

      Active Test Display
      Activate the Inverter Water Pump
      Data List Display
      Inverter Water Pump Revolution
    4. Select the Data List item "Inverter Water Pump Revolution".
    5. According to the display on the Techstream, perform the Active Test "Activate the Inverter Water Pump" and check the value of the Data List item "Inverter Water Pump Revolution".

      OK

      Tester Display Condition Specified Condition
      Inverter Water Pump Revolution Ignition switch ON
      During Active Test
      3176 to 8617 rpm

      HINT: 

      • Perform the Active Test with the inverter coolant temperature between -15 and 65°C (5 to 149°F).
      • When the inverter water pump assembly is not operating, the Data List item "Inverter Water Pump Revolution" displays a value 200 rpm or less.
    6. Turn the ignition switch off.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    See step  9

    Result: 

    OK 

    See step  7

  7. READ VALUE USING TECHSTREAM (DATA LIST) 
    1. Connect the Techstream to the DLC3.
    2. Turn the ignition switch to ON (READY) and wait for 1 minute with the engine stopped.
    3. Enter the following menus: Powertrain / Hybrid Control / Data List / Generator Inverter Calculated Temperature, Motor Inverter Temperature, Rear Motor Inverter Temperature, Boosting Converter Temperature (Upper), Boosting Converter Temperature (Lower) and Inverter Coolant Water Temperature.

      Powertrain > Hybrid Control > Data List 

      Tester Display
      Generator Inverter Calculated Temperature
      Motor Inverter Temperature
      Rear Motor Inverter Temperature
      Boosting Converter Temperature (Upper)
      Boosting Converter Temperature (Lower)
      Inverter Coolant Water Temperature
    4. Read the Data List with the engine stopped.

      Result

      Result Proceed to
      Other than below. A
      "Inverter Coolant Water Temperature" value is higher than the displayed temperature of any other Data List item by 20°C (68°F) or more. B

      HINT: 

      The lower limit temperature that can be displayed for "Generator Inverter Calculated Temperature", "Motor Inverter Temperature", "Boosting Converter Temperature (Upper)" and "Boosting Converter Temperature (Lower)" is 0°C (32°F). The lower limit temperature for "Inverter Coolant Water Temperature" is -40°C (-40°F). The "Inverter Coolant Water Temperature" value displayed on the Techstream may be lower than the others, but this is not a malfunction.

    5. Turn the ignition switch off.

    Result: 

    REPLACE INVERTER WITH CONVERTER ASSEMBLY 

    Refer to REMOVAL [02/2019 - 10/2019] , or refer to REMOVAL [10/2019 - 06/2020] , or refer to REMOVAL [06/2020 - 08/2020] , or refer to REMOVAL [08/2020 - 12/2021] , or refer to REMOVAL [12/2021 - 10/2022] , or refer to REMOVAL [10/2022 - 10/2023] , or refer to REMOVAL [10/2023 - ]

    Result: 

    See step  8

  8. CHECK HV COOLANT (CHECK FOR CONDITIONS THAT MAY HAVE CAUSED FREEZING) 
    1. Connect the Techstream to the DLC3.
    2. Turn the ignition switch to ON.
    3. Enter the following menus: Powertrain / Hybrid Control / Trouble Codes.

      Powertrain > Hybrid Control > Trouble Codes 

    4. Read the freeze frame data item "Ambient Temperature" using the Techstream.
    5. Check if the freeze frame data item "Ambient Temperature" is below the freezing temperature of the HV coolant.

      Result

      Result Proceed to
      Ambient Temperature value is above freezing temperature of the HV coolant. A
      Ambient Temperature value is below freezing temperature of the HV coolant. B

      HINT: 

      • 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 inverter 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 inverter water pump impeller cannot rotate due to freezing of the HV coolant.
      • If DTCs are output due to freezing of the LLC, the problem symptom cannot be reproduced. Check the LLC replacement history and whether the LLC was frozen based on the ambient temperature when the DTCs were stored.
    6. Turn the ignition switch off.

    Result: 

    COOLING SYSTEM NORMAL (PERFORM NEXT STEP FOR REFERENCED DTC) 

    Result: 

    REPLACE HV COOLANT 

    Refer to REPLACEMENT [11/2018 - 12/2021] , or refer to REPLACEMENT [12/2021 - ]

  9. CHECK CONNECTOR CONNECTION CONDITION (HYBRID VEHICLE CONTROL ECU ASSEMBLY CONNECTOR) 

    Refer to PROCEDURE - Step 1

    Result

    Proceed to
    OK
    NG

    Result: 

    NG 

    CONNECT SECURELY 

    Result: 

    OK 

    See step  10

  10. CHECK CONNECTOR CONNECTION CONDITION (INVERTER WATER PUMP ASSEMBLY CONNECTOR) 
    1. Check the connector connections and contact pressure of the relevant terminals for the inverter water pump assembly connector.

      Refer to ELECTRONIC CIRCUIT INSPECTION PROCEDURE [11/2018 - ]

      GTY922258Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

      OK

      The connector is connected securely, the terminals are not deformed or corroded and there are no contact problems.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    CONNECT SECURELY 

    Result: 

    OK 

    See step  11

  11. CHECK HARNESS AND CONNECTOR (HYBRID VEHICLE CONTROL ECU ASSEMBLY - INVERTER WATER PUMP ASSEMBLY) 
    1. Disconnect the A29 hybrid vehicle control ECU assembly connector.
    2. Disconnect the A53 inverter water pump assembly connector.
    3. Measure the resistance according to the value(s) in the table below.

      Standard Resistance (Check for Open)

      Tester Connection Condition Specified Condition
      A29-34 (IWP) - A53-3 (SWP) Ignition switch off Below 1 Ω

      Standard Resistance (Check for Short)

      Tester Connection Condition Specified Condition
      A29-34 (IWP) or A53-3 (SWP) - Body ground and other terminals Ignition switch off 10 kΩ or higher
      GTY855744Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *a Front view of wire harness connector
      (to Hybrid Vehicle Control ECU Assembly)
      *b Front view of wire harness connector
      (to Inverter Water Pump Assembly)
    4. Reconnect the A53 inverter water pump assembly connector.
    5. Reconnect the A29 hybrid vehicle control ECU assembly connector.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    REPAIR OR REPLACE HARNESS OR CONNECTOR 

    Result: 

    OK 

    See step  12

  12. READ VALUE USING TECHSTREAM (INVERTER WATER PUMP REVOLUTION) 
    NOTE:

    Be sure to perform the inspection with the auxiliary battery voltage at 12 V or more.

    HINT: 

    When the auxiliary battery voltage is low, the inverter water pump assembly may not operate.

    1. Connect the Techstream to the DLC3.
    2. Remove the INV W/P NO. 2 fuse from No. 1 engine room relay block and junction block assembly.
      GTY850378Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *1 No. 1 Engine Room Relay Block and Junction Block Assembly
      *2 INV W/P NO. 2 Fuse
    3. Turn the ignition switch to ON.
    4. Enter the following menus: Powertrain / Hybrid Control / Data List / Inverter Water Pump Revolution.

      Powertrain > Hybrid Control > Data List 

      Tester Display
      Inverter Water Pump Revolution
    5. According to the display on the Techstream, read the Data List.

      OK

      Tester Display Condition Specified Condition
      Inverter Water Pump Revolution Ignition switch ON 200 rpm or less
    6. Turn the ignition switch off.
    7. Install the INV W/P NO. 2 fuse.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    REPLACE HYBRID VEHICLE CONTROL ECU ASSEMBLY 

    Refer to REMOVAL [02/2019 - 10/2019] , or refer to REMOVAL [10/2019 - 08/2020] , or refer to REMOVAL [08/2020 - 12/2021] , or refer to REMOVAL [12/2021 - 10/2022] , or refer to REMOVAL [10/2022 - 10/2023] , or refer to REMOVAL [10/2023 - ]

    Result: 

    OK 

    See step  13

  13. CHECK HARNESS AND CONNECTOR (HYBRID VEHICLE CONTROL ECU ASSEMBLY - INVERTER WATER PUMP ASSEMBLY) 
    1. Disconnect the A29 hybrid vehicle control ECU assembly connector.
    2. Remove the INV W/P relay from No. 1 engine room relay block and junction block assembly.
      GTY930081Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *1 No. 1 Engine Room Relay Block and Junction Block Assembly
      *2 INV W/P Relay Holder
    3. Connect terminals 3 and 5 of the INV W/P relay holder.

      HINT: 

      Make a short circuit between terminals 3 and 5 to supply +B voltage to the inverter water pump.

    4. Measure the voltage according to the value(s) in the table below.
      GTY860829Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *a Component with harness connected
      (Hybrid Vehicle Control ECU Assembly)
      *b Front view of wire harness connector
      (to Hybrid Vehicle Control ECU Assembly)

      Standard Voltage

      Tester Connection Condition Specified Condition
      A29-34 (IWP) - A30-3 (E1) INV W/P relay holder terminals 3 and 5 connected
      Ignition switch off
      11 to 14 V
      NOTE:

      Make sure to check for and clear DTCs after performing this inspection.

    5. Install the INV W/P relay.
    6. Reconnect the A29 hybrid vehicle control ECU assembly connector.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    See step  15

    Result: 

    OK 

    See step  14

  14. CHECK HYBRID VEHICLE CONTROL ECU ASSEMBLY (CHECK WAVEFORM) 
    1. Connect an oscilloscope between the hybrid vehicle control ECU assembly terminals specified in the table below.
    2. Turn the ignition switch to ON.
    3. Check the waveform while turning the ignition switch to ON.
      GTY938607Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
      *a Component with harness connected
      (Hybrid Vehicle Control ECU Assembly)
      - -
      Item Content
      Terminal A29-34 (IWP) - A30-3 (E1)
      Equipment Setting 5 V/DIV., 50 ms./DIV.
      Condition Ignition switch ON

      OK

      Waveform duty ratio is between 3% and 9%.

    4. Turn the ignition switch off.

      Result

      Proceed to
      OK
      NG

    Result: 

    NG 

    REPLACE HYBRID VEHICLE CONTROL ECU ASSEMBLY 

    Refer to REMOVAL [02/2019 - 10/2019] , or refer to REMOVAL [10/2019 - 08/2020] , or refer to REMOVAL [08/2020 - 12/2021] , or refer to REMOVAL [12/2021 - 10/2022] , or refer to REMOVAL [10/2022 - 10/2023] , or refer to REMOVAL [10/2023 - ]

    Result: 

    OK 

    See step  15

  15. REPLACE INVERTER WATER PUMP ASSEMBLY 

    Refer to REMOVAL [11/2018 - ]

    Result

    Proceed to
    NEXT

    Result: 

    NEXT 

    See step  16

  16. ADD HV COOLANT AND PERFORM AIR BLEEDING 
    1. After replacing the inverter water pump assembly, add HV coolant and perform air bleeding.

      Refer to REPLACEMENT [11/2018 - 12/2021] , or refer to REPLACEMENT [12/2021 - ]

      Result

      Proceed to
      NEXT

    Result: 

    NEXT 

    END