Contents Section: Charging System All sections

Hv Battery Control System: Overview Toyota Prius I рестайлинг

Charging System 15 illustrations ~1105 words

Troubleshooting Flow Chart. Scheme 1

Scheme 1: Troubleshooting Flow Chart

Prius Problem Check Sheet (1 Of 2). Scheme 2

Scheme 2: Prius Problem Check Sheet (1 Of 2)

Prius Problem Check Sheet (2 Of 2). Scheme 3

Scheme 3: Prius Problem Check Sheet (2 Of 2)

Removing Service Plug. Scheme 4

Scheme 4: Removing Service Plug

Scheme 5

Scheme 5: PRE-CHECK

Scheme 6

Scheme 6

Scheme 7

Scheme 7

Scheme 8

Scheme 8

Scheme 9

Scheme 9

Scheme 10

Scheme 10

Scheme 11

Scheme 11

Scheme 12

Scheme 12
  1. Precaution To distinguish a trouble and replace a defective part, take necessary preventive measures against an electric shock. See GENERAL INFORMATION. Some portions of the wiring harness in the THS vehicle have the circuits, to which a high voltage is applied. To prevent an electrical shock, be sure to observe the following: Wear insulated gloves during inspection. Remove a service plug and do not start any repair operation before 5 minutes have passed, then confirm that the voltage at the output terminals has dropped down to 12 V or less. Use insulated tools during inspection. When disengaging wiring connectors, hold the connector bodies to avoid pulling the wires. When engaging wiring connectors, be sure to engage them securely. Do not leave tools or parts (bolts, nuts, etc.) inside the cabin. Do not carry metallic objects such as mechanical pencils or scales. (Scheme 5): Identifying Warning Lights
  2. Diagnosis System Description The HV Battery ECU has a self-diagnosis system by which malfunction in the computer itself or in Hybrid System is detected and the master warning light in the combination meter and the Hybrid system warning light in the multi-information display lights up. (Scheme 6): Connecting Toyota Hand-Held Tester To Data Link Connector 3 (DLC3) On Vehicle To check the Diagnostic Trouble Codes (DTC), connect the TOYOTA hand-held tester to the Data Link Connector 3 (DLC3) on the vehicle. The TOYOTA hand-held tester also enables you to erase the DTC and check freeze frame data and various forms of THS data. Freeze frame data: Freeze frame data records the battery condition when a malfunction is detected. When troubleshooting, this is useful for knowing the battery condition. (Scheme 7): Identifying DLC3 Connector Terminals NOTE: If your display shows UNABLE TO CONNECT TO VEHICLE when you have connected the cable of the TOYOTA hand-held tester to the DLC3, turned the motor switch ON and operated the tester, there is a problem in the vehicle or tool. If communication is normal when the tool is connected to another vehicle, inspect the DLC3 on the original vehicle. If communication is still not possible when the tool is connected to another vehicle, the problem is probably in the tool itself, so consult the Service Department. (Scheme 8): DLC3 Terminal Condition Chart Check the DLC3. The HV control ECU conforms to ISO 14230 for communication. The terminal arrangement of the DLC3 complies with SAEJ1962 and matches the ISO 14230 format.
  3. Inspect Diagnosis Check the auxiliary battery. Measure the voltage of the auxiliary battery. Voltage: 10 - 15 V (Scheme 9): Identifying Master Warning Light Inspect the auxiliary battery, fuses, fusible links, wiring harness, connectors and ground. Check the master warning light. NOTE: If the master warning light does not come on, suspect a burnt fuse, burnt bulb, or open in wiring harness. (Scheme 10): Identifying Ready Light Turn the ignition switch ON and confirm that the master warning light comes on. When the READY light is ON, the master warning light should go off. If the lamp remains on, the diagnosis system has detected a malfunction or abnormality in the system. (Scheme 11): Connecting Toyota Hand-Held Tester To DLC3 Check the DTC. Prepare a TOYOTA hand-held tester. Connect the TOYOTA hand-held tester to the DLC3. Turn the ignition switch ON and push the TOYOTA hand-held tester main switch ON. Use the TOYOTA hand-held tester to check the DTC and freeze frame data and note them down. (For operating instructions, see the TOYOTA handheld tester operator's manual). Since the HV battery ECU stores DTC and freeze frame data, when troubleshooting, check all of the DTC, write down the freeze fame data and perform inspection according to the procedures of Circuit Inspection. Because the HV battery ECU is communicating with the HV ECU, if any DTC is stored in the HV battery ECU, check and record DTC stored in the HV ECU. For tables for DTC, see PRE-CHECK. See a related article to confirm details of the DTC. (Scheme 12): Identifying Toyota Hand-Held Tester And DLC3 NOTE: Before clearing, check that DTC for the HV battery ECU, DTC for the ECU which is related with freeze frame data and the freeze frame data are recorded. Clear DTC after completion of repair. Connect the TOYOTA hand-held tester to the DLC3. Operate the TOYOTA hand-held tester to erase the DTC (See the TOYOTA hand-held tester operator's manual.).
  4. CHECK FOR INTERMITTENT PROBLEMS NOTE: In the simulation test, reproduce the condition at trouble occurrence based on the customer's comments and the freeze frame data recorded with the DTC. Perform a simulation test ( HOW TO PROCEED WITH TROUBLESHOOTING ). CHECK THE CONNECTOR AND TERMINAL..HANDLE THE CONNECTOR.
  5. Toyota Hand-Held Tester Display Items TOYOTA HAND-HELD TESTER DISPLAY MEASUREMENT ITEMS TOYOTA hand-held tester display Measurement Item BATTERY SOC Battery State of charge ONB CHARGE TIME Cumulative number of times of on-board equalizing charging BATTERY LO TIME Cumulative number of times of battery dies DC INHIBIT TIME Cumulative number of times of discharge inhibition IB MAIN BATTERY IB main battery current (with correction) BATT BLOCK V# Battery block voltage BAT BLOCK MIN V Battery block minimum voltage MIN BAT BLOCK # Minimum voltage battery block BAT BLOCK MAX V Battery block maximum voltage MAX BAT BLOCK # Maximum voltage battery block BATT INSIDE AIR Ambient temperature inside battery pack BATTERY TOO HI # Cumulative number of times of too-high battery voltage VMF FAN VOLTAGE Battery cooling fan voltage AUX. BATT V Auxiliary battery voltage WIN Charge restriction value WOUT Discharge restriction value DELTA SOC Difference between MAX. and MIN. values of SOC at every battery block. SBLW FAN ST RQS SBL cooling fan stop request signal COOLING FAN HI Cooling fan operation in high speed COOLING FAN MID Cooling fan operation in middle speed COOLING FAN LO Cooling fan operation in low CCTL Off-board equalizing charge control signal EQCO DF RELAY EQCO dead front relay EQTR CHARGE ST EQTR uniform charging start signal ONBORD CHARGE On-board equalizing charging status PREONBORDECH Pre-On-board charging status NORMAL STATUS Normal status INSIDE RESIST # Inside resistance BATT TEMP# Battery temperature ECU CODE ECU code IG OFF HOUR Average time of IG OFF IGON HOUR Average time of IG ON ETOFFCHGHR Estimation of time to finish OFF BOARD DTC The number of stored DTC

Diagnostic Trouble Code Chart. Scheme 13

Scheme 13: Diagnostic Trouble Code Chart
DTCDescription
P1600Back Up Power Source Circuit Malfunction
P3001Battery ECU Malfunction
P3002HV ECU Communication Malfunction
P3005High Voltage Fuse Snapped
P3006Battery SOC Are Uneven
P3009Leak Detected
P3010Battery Total Resistance Malfunction
P3011-P3029Battery Block # Malfunction
P3030Battery Voltage Detective line Snapped
P3060Battery Temperature sensor Circuit Malfunction
P3076Abnormal Air Flow by Battery Cooling Fan
P3077Battery Cooling Fan Motor Circuit Malfunction
P3115HV Battery Current Sensor Malfunction

DIAGNOSTIC TROUBLE CODES

Scheme 14: Identifying HV Battery Control System Parts Location

Identifying Battery ECU Terminals. Scheme 14

Scheme 14: Identifying Battery ECU Terminals