RM38T0EC _51 Engine / Hybrid System _144957 HYBRID / BATTERY CONTROL _0604232 HYBRID CONTROL SYSTEM J

HYBRID / BATTERY CONTROL  HYBRID CONTROL SYSTEM  Motor Resolver Circuit  


DESCRIPTION

The cause of this malfunction may be the motor resolver.

Check the motor resolver internal resistance and the connection condition from the inverter to the resolver.

Related Parts Check
Area Inspection
Wire harness and connector between the inverter and motor resolver Check for short circuit between wire harness and +B side.
Resolver, wire harness, connector Check the internal resistance of resolver (including wire harness), body ground resistance, and connector connection condition.
Resolver Check for open or short circuit of the resolver

SYSTEM DESCRIPTION

A resolver is a sensor that is used to detect the position of the magnetic poles of the rotor of a motor. Knowing the position of the poles is indispensable for ensuring precise control of the motor (MG2).

Each resolver contains a stator that has an excitation coil and 2 detection coils (S, C). The gap between the stator and rotor changes as the rotor turns because the rotor is oval shaped. An alternating current with a predetermined frequency flows through the excitation coil, and detection coils S and C output alternating currents in accordance with the sensor rotor position.

The MG ECU, which is built into the inverter with converter assembly, detects the absolute position of the rotor according to the phases of detection coils S and C and the heights of their waveforms. Furthermore, the CPU calculates the amount of change in the position within a predetermined length of time, in order to use the resolver as a revolution speed sensor.

The MG ECU monitors signals output from the motor resolver and detects malfunctions.

A221242E07
1.406,3.25 0.76,4.542 false 2.229,3.667 1.76,4.844 false 4.5,2.104 4.333,2.417 false 4.521,3.552 3.917,4.156 false 1.323,3.469 1.51,3.719 0.188,0.25 10 -S 1.729,2.188 1.917,2.438 0.188,0.25 10 -S 0.875,2.677 1.115,2.885 0.24,0.208 10 +S 2.156,3.052 2.417,3.25 0.26,0.198 10 +S 1.198,2.219 1.385,2.427 0.188,0.208 10 -C 1.813,3.458 2,3.667 0.188,0.208 10 -C 0.865,3.188 1.073,3.396 0.208,0.208 10 +C 2.135,2.552 2.344,2.76 0.208,0.208 10 +C 0.542,4.563 1.01,4.792 0.469,0.229 10 Rotor 1.323,4.875 2.302,5.115 0.979,0.24 10 Excitation Coil 6.01,0.313 6.99,0.552 0.979,0.24 10 Excitation Coil 5.969,2.031 7.125,2.271 1.156,0.24 10 Detection Coil S 5.969,3.5 7.083,3.74 1.115,0.24 10 Detection Coil C 4.542,2.01 5.646,2.26 1.104,0.25 10 Virtual Waveform 4.552,3.469 5.656,3.719 1.104,0.25 10 Virtual Waveform

WIRING DIAGRAM

A456057E36
0.74,0.385 2.531,0.698 1.792,0.313 10 false Excitation Coil 0.698,2.594 1.979,2.792 1.281,0.198 10 false Motor Resolver 2.594,0.49 3.365,0.688 0.771,0.198 10 false MRF 2.49,0.823 3.26,1.021 0.771,0.198 10 false MRFG 2.583,1.156 3.354,1.354 0.771,0.198 10 false MSN 2.479,1.458 3.25,1.656 0.771,0.198 10 false MSNG 2.573,1.802 3.344,2 0.771,0.198 10 false MCS 2.479,2.125 3.25,2.323 0.771,0.198 10 false MCSG 3.01,0.5 3.781,0.698 0.771,0.198 10 false 6 3.01,0.833 3.781,1.031 0.771,0.198 10 false 9 3.01,1.146 3.781,1.344 0.771,0.198 10 false 4 3.01,1.458 3.781,1.656 0.771,0.198 10 false 5 3.01,1.792 3.781,1.99 0.771,0.198 10 false 10 3.01,2.125 3.781,2.323 0.771,0.198 10 false 14 4.792,0.51 5.583,0.729 0.792,0.219 10 false 1 4.792,0.823 5.583,1.042 0.792,0.219 10 false 2 4.792,1.156 5.583,1.375 0.792,0.219 10 false 9 4.74,1.469 5.531,1.688 0.792,0.219 10 false 10 4.729,1.792 5.521,2.01 0.792,0.219 10 false 15 4.729,2.125 5.521,2.344 0.792,0.219 10 false 16 4.823,2.719 5.615,2.938 0.792,0.219 10 false 6 5.01,0.51 5.781,0.708 0.771,0.198 10 false MRF 5.01,0.833 5.781,1.031 0.771,0.198 10 false MRFG 5.01,1.24 5.781,1.438 0.771,0.198 10 false MSN 5.01,1.583 5.781,1.781 0.771,0.198 10 false MSNG 5.01,1.896 5.781,2.094 0.771,0.198 10 false MCS 5.01,2.24 5.781,2.438 0.771,0.198 10 false MCSG 5.01,2.813 5.781,3.01 0.771,0.198 10 false DRN6 5.656,0.552 6.813,0.896 1.156,0.344 10 false Oscillation Circuit 4.969,3.24 6.958,3.719 1.99,0.479 10 false Inverter with Converter Assembly (MG ECU) 0.573,3.063 1,3.281 0.427,0.219 10 false C144 4.969,3.104 5.74,3.302 0.771,0.198 10 false C142 0.583,3.24 3.146,3.438 2.563,0.198 10 false Hybrid Vehicle Transaxle Assembly

CAUTION / NOTICE / HINT

This diagnostic procedure is referenced to in the diagnostic procedure of several DTCs.

If the result of this diagnostic procedure is normal, proceed as directed in the procedure for the DTC.

CAUTION:

Refer to the precautions before inspecting high voltage circuit.

Click hereEngine / Hybrid System>HYBRID / BATTERY CONTROL>HYBRID CONTROL SYSTEM>PRECAUTION


NOTICE:
·

After the ignition switch is turned off, there may be a waiting time before disconnecting the negative (-) auxiliary battery terminal.

Click hereGeneral>SETUP>WHEN DISCONNECTING OR RECONNECTING BATTERY TERMINAL>BEFORE DISCONNECTING BATTERY

·

When disconnecting and reconnecting the auxiliary battery

HINT:

When disconnecting and reconnecting the auxiliary battery, there is an automatic learning function that completes learning when the respective system is used.

Click hereGeneral>SETUP>WHEN DISCONNECTING OR RECONNECTING BATTERY TERMINAL>AUTOMATIC LEARNING CHART




HINT:
·

If the problem symptom cannot be reproduced, performing a road test on a road on which the vehicle tends to vibrate will make it easier to reproduce the symptom.

·

If the resolver is malfunctioning, the vehicle may not drive smoothly.

·

When inspecting the connectors, if it is difficult to judge if a connector was disconnected, deformed or improperly secured, disconnect and reconnect the connector and then check for DTCs again. Check if the same DTC is output. If the same DTC is not output, improper connection of connectors is suspected.

·

As a malfunction detection threshold may be exceeded when performing the vibration or heat connector inspections, make sure to perform the following inspection to check that the DTC was not stored due to the malfunction of a part.



PROCEDURE

1.CHECK HARNESS AND CONNECTOR (INVERTER WITH CONVERTER ASSEMBLY - MOTOR RESOLVER)
CAUTION:

Be sure to wear insulated gloves.


a.

Check that the service plug grip is not installed.

NOTICE:

After removing the service plug grip, do not turn the ignition switch to ON (READY), unless instructed by the repair manual because this may cause a malfunction.



b.

Disconnect the inverter with converter assembly connector.


c.

Connect the cable to the negative (-) auxiliary battery terminal.


d.

Turn the ignition switch to ON.


e.

Measure the voltage according to the value(s) in the table below.

Standard Voltage:
Tester Connection Condition Specified Condition
C142-1 (MRF) - Body ground Ignition switch ON Below 1 V
C142-2 (MRFG) - Body ground Ignition switch ON Below 1 V
C142-9 (MSN) - Body ground Ignition switch ON Below 1 V
C142-10 (MSNG) - Body ground Ignition switch ON Below 1 V
C142-15 (MCS) - Body ground Ignition switch ON Below 1 V
C142-16 (MCSG) - Body ground Ignition switch ON Below 1 V


NOTICE:

Turning the ignition switch to ON with the inverter with converter assembly disconnected causes other DTCs to be stored. Clear the DTCs after performing this inspection.



f.

Turn the ignition switch off.


g.

Disconnect the cable from the negative (-) auxiliary battery terminal and wait for 2 minutes or more.


h.

Reconnect the inverter with converter assembly connector.


Result:
Proceed to
OK
NG



OK

2.CHECK MOTOR RESOLVER

NG

REPAIR OR REPLACE HARNESS OR CONNECTOR

2.CHECK MOTOR RESOLVER
CAUTION:

Be sure to wear insulated gloves.


a.

Check that the service plug grip is not installed.

NOTICE:

After removing the service plug grip, do not turn the ignition switch to ON (READY), unless instructed by the repair manual because this may cause a malfunction.



b.

Disconnect the inverter with converter assembly connector.


c.

Measure the resistance according to the value(s) in the table below.

Standard Resistance:
Tester Connection Condition Specified Condition
C142-1 (MRF) - C142-2 (MRFG) Ignition switch off 8.9 to 14.9 Ω
C142-9 (MSN) - C142-10 (MSNG) Ignition switch off 16.2 to 28.2 Ω
C142-15 (MCS) - C142-16 (MCSG) Ignition switch off 18.1 to 30.1 Ω


HINT:

To correct the variation of the measured resistance due to temperature, use the following formula to calculate the resistance at 20°C (68°F).

R20 = Rt / {1 + 0.00393 X (T - 20)}

The calculation is based on the following:

R20: Resistance at 20°C (68°F) (mΩ)

Rt: Measured resistance (mΩ)

T: Temperature when the resistance is measured (°C (°F).)


Standard Resistance (Check for Short):
Tester Connection Condition Specified Condition
C142-1 (MRF) or C142-2 (MRFG) - Body ground and other terminals Ignition switch off 1 MΩ or higher
C142-9 (MSN) or C142-10 (MSNG) - Body ground and other terminals Ignition switch off 1 MΩ or higher
C142-15 (MCS) or C142-16 (MCSG) - Body ground and other terminals Ignition switch off 1 MΩ or higher
C142-6 (DRN6) - Other terminals Ignition switch off 1 MΩ or higher



d.

Reconnect the inverter with converter assembly connector.


Result:
Proceed to
OK
NG



OK

MOTOR RESOLVER CIRCUIT NORMAL (PERFORM NEXT STEP FOR REFERENCED DTC)

NG

3.CHECK CONNECTOR CONNECTION CONDITION (RESOLVER CONNECTOR)
3.CHECK CONNECTOR CONNECTION CONDITION (RESOLVER CONNECTOR)
a.
A517713N11
2.563,1.531 2.99,1.792 0.427,0.26 2.594,1.552 2.969,1.75 0.375,0.198 10 true C144

Check the connection condition of the resolver connector and the contact pressure of each terminal. Check the terminals for deformation, and check the connector for water ingress and foreign matter.

Click hereGeneral>INTRODUCTION>HOW TO TROUBLESHOOT ECU CONTROLLED SYSTEMS>ELECTRONIC CIRCUIT INSPECTION PROCEDURE

OK:

- The connector is connected securely.

- The terminals are not deformed and are connected securely.

- No water or foreign matter in the connector.



Result:
Result Proceed to
OK A
NG (The connector is not connected securely.) B
NG (The terminals are not making secure contact or are deformed, or water or foreign matter exists in the connector.) C



A

4.INSPECT HYBRID VEHICLE TRANSAXLE ASSEMBLY (MOTOR RESOLVER)

B

CONNECT SECURELY

C

REPAIR OR REPLACE HARNESS OR CONNECTOR

4.INSPECT HYBRID VEHICLE TRANSAXLE ASSEMBLY (MOTOR RESOLVER)
a.

Disconnect the resolver connector.


b.
A467898C31
0.302,1.083 0.76,1.344 0.458,0.26 0.781,0.49 1.25,0.99 true 1.667,1.281 2.021,1.885 true 1.323,0.385 1.469,0.99 true 2.031,0.427 1.635,1 true 1.417,1.271 0.708,1.688 true 1.458,1.448 1.219,1.896 true 0.135,0.083 0.448,0.281 0.313,0.198 10 false *a 0.49,0.385 0.948,0.583 0.458,0.198 10 false MRF 1.875,1.906 2.333,2.104 0.458,0.198 10 false MRFG 2.073,0.302 2.531,0.5 0.458,0.198 10 false MSN 1.104,0.229 1.563,0.427 0.458,0.198 10 false MSNG 0.375,1.656 0.833,1.854 0.458,0.198 10 false MCS 0.99,1.917 1.448,2.115 0.458,0.198 10 false MCSG 0.365,1.115 0.823,1.313 0.458,0.198 10 false C144
*a Component without harness connected
(Motor Resolver (Hybrid Vehicle Transaxle Assembly))


Measure the resistance according to the value(s) in the table below.

Standard Resistance:
Tester Connection Condition Specified Condition
C144-6 (MRF) - C144-9 (MRFG) Ignition switch off 8.8 to 14.8 Ω
C144-4 (MSN) - C144-5 (MSNG) Ignition switch off 16.1 to 28.1 Ω
C144-10 (MCS) - C144-14 (MCSG) Ignition switch off 18.0 to 30.0 Ω


HINT:

To correct the variation of the measured resistance due to temperature, use the following formula to calculate the resistance at 20°C (68°F).

R20 = Rt / {1 + 0.00393 X (T - 20)}

The calculation is based on the following:

R20: Resistance at 20°C (68°F) (mΩ)

Rt: Measured resistance (mΩ)

T: Temperature when the resistance is measured (°C (°F).)


Standard Resistance (Check for Short):
Tester Connection Condition Specified Condition
C144-6 (MRF) - Body ground and other terminals (except C144-9 (MRFG)) Ignition switch off 1 MΩ or higher
C144-9 (MRFG) - Body ground and other terminals (except C144-6 (MRF)) Ignition switch off 1 MΩ or higher
C144-4 (MSN) - Body ground and other terminals (except C144-5 (MSNG)) Ignition switch off 1 MΩ or higher
C144-5 (MSNG) - Body ground and other terminals (except C144-4 (MSN)) Ignition switch off 1 MΩ or higher
C144-10 (MCS) - Body ground and other terminals (except C144-14 (MCSG)) Ignition switch off 1 MΩ or higher
C144-14 (MCSG) - Body ground and other terminals (except C144-10 (MCS)) Ignition switch off 1 MΩ or higher



c.

Reconnect the resolver connector.


Result:
Proceed to
OK
NG



OK

REPAIR OR REPLACE HARNESS OR CONNECTOR

NG