Contents Section: Communication Devices All sections

CAN Communication System (Diagnostics - Introduction): Overview Toyota Highlander II рестайлинг

Communication Devices 10 illustrations ~1087 words

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Scheme 5: PRECAUTION

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  1. PRECAUTION FOR DISCONNECTING THE BATTERY CABLE NOTE: When disconnecting the negative (-) battery terminal, initialize the following system after the terminal is reconnected. System Name See Procedure Power Back Door System Refer to «INITIALIZATION»(ref-422289-S16028026952011092600000)
  2. IGNITION SWITCH EXPRESSIONS HINT: The type of ignition switch used on this model differs according to the specifications of the vehicle. The expressions listed in the table below are used in this article. Expression Ignition Switch (position) Engine Switch (condition) Ignition Switch off LOCK Off Ignition Switch on (IG) ON On (IG) Ignition Switch on (ACC) ACC On (ACC) Engine Start START Start
  3. STEERING SYSTEM HANDLING PRECAUTIONS Care must be taken when replacing parts. Incorrect replacement could affect the performance of the steering system and result in hazardous driving.
  4. SRS AIRBAG SYSTEM HANDLING PRECAUTIONS This vehicle is equipped with an SRS (Supplemental Restraint System) which includes parts such as the driver airbag and front passenger airbag. Failure to carry out service operations in the correct sequence could cause unexpected SRS deployment during servicing and may lead to a serious accident. Before servicing (including removal or installation of parts, inspection or replacement), be sure to read the precautionary notice for the SRS. Refer to «PRECAUTION»(ref-422538-S20896246792011092600000) .
  5. BUS WIRE REPAIR After repairing a bus wire with solder, wrap the repaired part with electrical tape. NOTE: The CANL bus wire and CANH bus wire must be installed together at all times. When installing, make sure that they are twisted. CAN bus wires are likely to be influenced by electrical noise if the bus wires are not twisted. The difference in length between the CANL bus wire and CANH bus wire should be 100 mm (3.937 in.) or less. Leave approximately 80 mm (3.150 in.) loose in the twisted wires around the connector. Do not use bypass wiring between the connectors. NOTE: The ability of the twisted bus wires to resist interference will be lost if bypass wiring is used.
  6. CONNECTOR HANDLING When checking resistance with a tester, insert the tester probes from the backside (harness side) of the connector. Use service wires to check the connector if it is impossible to check continuity from the rear of the connector.
  7. PRECAUTIONS FOR INSPECTING OR REPLACING CAN JUNCTION CONNECTOR If the CAN junction connector is removed from the vehicle for inspection or replacement, make sure to install the CAN junction connector and all wire harnesses to their original locations with tape and the clamps.

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Scheme 9: ILLUSTRATION

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Scheme 12: SYSTEM DIAGRAM

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SYSTEM DESCRIPTION

  1. BRIEF DESCRIPTION Two different types of CAN buses are used. The CAN buses are classified into two types based on typical communication speed. The HS-CAN bus is a high speed communication bus that is used for powertrain, chassis, and some body electrical communication. The HS-CAN bus is referred to as "CAN No. 1 bus". It operates at speeds of approximately 500 kbps. Terminating resistors for the CAN No. 1 bus are located in the combination meter and ECM. The resistance of the CAN No. 2 bus cannot be measured from the DLC3 connector. The MS-CAN bus is a medium speed communication bus that is used for body electrical communication. The MS-CAN bus is referred to as "MS bus" and it operates at speeds of approximately 250 kbps. Terminating resistors for the MS-CAN bus are located in the main body ECU and the certification ECU (or the CAN junction connector RR). The resistance of the MS-CAN bus cannot be measured from the DLC3 connector. Communication between these networks is handled via the main body ECU (for the CAN MS bus), which acts as a gateway. By pairing the CANH and CANL bus wires, the CAN performs communication based on differential voltage. Many ECUs (sensors) installed on the vehicle operate by sharing information and communicating with each other. The CAN has two resistors of 120 ohms which are necessary to communicate with the main bus wire.
  2. DEFINITION OF TERMS Main bus wire The main bus wire is a wire harness between the two terminating resistors on the bus (communication wire). This is the main bus in the CAN communication system. Branch wire The branch wire is a wire harness which diverges from the main bus wire to an ECU or sensor. Terminating resistors Two resistors of 120 ohms are installed in parallel across the ends of the CAN main bus wire. They are called terminating resistors. These resistors allow the changes of the voltage differential between the CAN bus wires to be accurately judged. To allow proper function of CAN communication, it is necessary to have both terminating resistors installed. Since the two resistors are installed in parallel, a measurement of resistance between the two CAN bus wires should produce a reading of approximately 60 ohms.
  3. ECUS OR SENSORS WHICH COMMUNICATE THROUGH CAN COMMUNICATION SYSTEM ECM Combination meter Skid control ECU Yaw rate sensor Steering angle sensor Air conditioning amplifier Power steering ECU Center airbag sensor assembly Main body ECU Certification ECU (w/ Smart key system) Back door ECU (w/ Power back door system) Accessory gateway
  4. DIAGNOSTIC CODE FOR CAN COMMUNICATION SYSTEM DTCs for the CAN communication system are as follows: U0073, U0100, U0123, U0124, U0126, U0129, U0230 *2 , U0327 *1 , U1002 *1 *2 and B1499. *1 : w/ Smart key system *2 : w/ Power back door system
  5. TROUBLESHOOTING REMARKS DTCs for the CAN communication system can be checked using Techstream. The DLC3 is connected to the CAN communication system, but no DTCs exist regarding problems in the DLC3 or the DLC3 branch wires. If there is trouble in the DLC3 or the DLC3 branch wires, ECUs on the CAN network cannot output codes to Techstream. Trouble in the CAN buses (communication wires) can be checked by measuring the resistance between terminals of the DLC3. However, an open circuit in a branch wire other than the DLC3 branch wires cannot be checked from the DLC3. NOTE: Do not insert the tester probes directly into the DLC3. Be sure to use service wires.
  6. HOW TO DISTINGUISH THE CAN JUNCTION CONNECTOR In the CAN communication system, the shape of all connectors connected to the CAN junction connector is the same. The connectors connected to the CAN Junction connector can be distinguished by the colors of the bus wire and the connecting side of the junction connector. HINT: See "TERMINALS OF ECU". Refer to «TERMINALS OF ECU»(ref-422513-S21400920192011092600000) for bus wire color or the type of connecting surface.