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Circuit Inspection

G14867771Courtesy of KIA MOTORS AMERICA, INC.
G14867772Courtesy of KIA MOTORS AMERICA, INC.
G14867773Courtesy of KIA MOTORS AMERICA, INC.
Module Circuit Inspection
Inspection Item Inspection Condition (+) Probe (-) Probe Specification
Connector Terminal Connector Terminal
Power inspection (Front radar ↔ Chassis ground)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from Front radar.
  3. Ignition "ON".
Front radar connector 6 (ON/START Input) Chassis ground - B+
Open in circuit inspection (Front radar ↔ Chassis ground)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from Front radar.
Front radar connector 1 (ground) Chassis ground - Approx. below 1Ω

Good 

No Good 

CAN communication circuit Inspection (A-CAN)
Inspection Item Inspection Condition (+) Probe (-) Probe Specification
Connector Terminal Connector Terminal
A-CAN oscilloscope (Front radar)
  1. Ignition "ON".
Front radar connector 2 (A-CAN high) Chassis ground - Fig.1 to 6
Front radar connector 3 (A-CAN low) Chassis ground -
Open in circuit inspection (Front radar ↔ ICU)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from Front radar, ICU.
Front radar connector 2 (A-CAN high) ADAS unit connector 9 (A-CAN high) Approx. below 1Ω
Front radar connector 3 (A-CAN low) ADAS unit connector 3 (A-CAN low) Approx. below 1Ω
Resistance inspection (Front radar, Front camera)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from Front radar, Front camera.
Front radar (component side) 2 (A-CAN high) Front radar (component side) 3 (A-CAN low) Approx. 120Ω
Front camera (component side) 9 (A-CAN high) Front camera (component side) 3 (A-CAN low) Approx. 120Ω

Information 

It is important to check CAN high and low at the same time to check the waveform of the CAN communication line. The CAN signal is in a bus idle state based on 2.5V (digital "1"), the high signal rises to 3.5V, the low signal falls to 1.5V, and the voltage difference between the high and low signals is "0" when 2V occurs. Is detected. In addition, it monitors whether the high and low signals have opposite voltages based on 2.5V like the waveform on the left, and monitors whether the current CAN signal is transmitted normally. In CAN communication, a continuous "0" signal of 6 bits or more means occurrence of an error. 1 bit can be easily determined by obtaining the time when "SOF" (Start Of Frame), indicating the start of the frame, occurs. Check if the "0" signal of 6 bits or more occurs continuously during CAN communication waveform check.

  1. Reference voltage about 2.5V. (high: 2.5V ↔ 3.5V rise, low: 2.5V ↔ 1.5V drop)
  2. Idle (2.5V) section of a certain period.
  3. Constant data frame time.
  4. High and low symmetrical frame shape.
G14867774Courtesy of KIA MOTORS AMERICA, INC.
G14867775Courtesy of KIA MOTORS AMERICA, INC.
G14867776Courtesy of KIA MOTORS AMERICA, INC.
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G14867778Courtesy of KIA MOTORS AMERICA, INC.
G14867779Courtesy of KIA MOTORS AMERICA, INC.

Good 

No Good 

CAN communication circuit Inspection (E-CAN)
Inspection Item Inspection Condition (+) Probe (-) Probe Specification
Connector Terminal Connector Terminal
E-CAN oscilloscope (ADAS unit ↔ Chassis ground)
  1. Ignition "ON".
ADAS unit connector 10 (E-CAN high) Chassis ground - Fig.1 to 6
ADAS unit connector 4 (E-CAN low) Chassis ground -
Open in Circuit Inspection (ADAS unit ↔ ICU)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from ADAS unit, ICU.
ADAS unit connector 10 (E-CAN high) ICU connector 17 (E-CAN high) Approx. below 1Ω
ADAS unit connector 4 (E-CAN low) ICU connector 18 (E-CAN low) Approx. below 1Ω
Resistance inspection (A/C module, ICU)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from ICU, A/C module.
ICU (component side) 17 (E-CAN high) ICU (component side) 18 (E-CAN low) Approx. 120Ω
A/C module (component side) 35 (E-CAN high) A/C module (component side) 34 (E-CAN low) Approx. 120Ω

Information 

It is important to check CAN high and low at the same time to check the waveform of the CAN communication line. The CAN signal is in a bus idle state based on 2.5V (digital "1"), the high signal rises to 3.5V, the low signal falls to 1.5V, and the voltage difference between the high and low signals is "0" when 2V occurs. Is detected. In addition, it monitors whether the high and low signals have opposite voltages based on 2.5V like the waveform on the left, and monitors whether the current CAN signal is transmitted normally. In CAN communication, a continuous "0" signal of 6 bits or more means occurrence of an error. 1 bit can be easily determined by obtaining the time when "SOF" (Start Of Frame), indicating the start of the frame, occurs. Check if the "0" signal of 6 bits or more occurs continuously during CAN communication waveform check.

  1. Reference voltage about 2.5V. (high: 2.5V ↔ 3.5V rise, low: 2.5V ↔ 1.5V drop)
  2. Idle (2.5V) section of a certain period.
  3. Constant data frame time.
  4. High and low symmetrical frame shape.
G14867780Courtesy of KIA MOTORS AMERICA, INC.
G14867781Courtesy of KIA MOTORS AMERICA, INC.
G14867782Courtesy of KIA MOTORS AMERICA, INC.
G14867783Courtesy of KIA MOTORS AMERICA, INC.
G14867784Courtesy of KIA MOTORS AMERICA, INC.
G14867785Courtesy of KIA MOTORS AMERICA, INC.

Good 

No Good 

CAN communication circuit Inspection (C-CAN)
Inspection Item Inspection Condition (+) Probe (-) Probe Specification
Connector Terminal Connector Terminal
C-CAN oscilloscope (IEBU)
  1. Ignition "ON".
IEBU connector 25 (C-CAN high) Chassis ground - Fig.1 to 6
IEBU connector 26 (C-CAN low) Chassis ground -
Open in circuit inspection (IEBU ↔ ICU)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from IEBU, ICU.
IEBU connector 25 (C-CAN high) ICU connector 21 (C-CAN high) Approx. below 1Ω
IEBU connector 26 (C-CAN low) ICU connector 22 (C-CAN low) Approx. below 1Ω
Resistance inspection (ICU, SRSCM)
  1. Ignition "OFF".
  2. Disconnect the connector(s) from ICU, SRSCM.
ICU (component side) 21 (C-CAN high) ICU (component side) 22 (C-CAN low) Approx. 120Ω
SRSCM (component side) 27 (C-CAN high) SRSCM (component side) 26 (C-CAN low) Approx. 120Ω

Information 

It is important to check CAN high and low at the same time to check the waveform of the CAN communication line. The CAN signal is in a bus idle state based on 2.5V (digital "1"), the high signal rises to 3.5V, the low signal falls to 1.5V, and the voltage difference between the high and low signals is "0" when 2V occurs. Is detected. In addition, it monitors whether the high and low signals have opposite voltages based on 2.5V like the waveform on the left, and monitors whether the current CAN signal is transmitted normally. In CAN communication, a continuous "0" signal of 6 bits or more means occurrence of an error. 1 bit can be easily determined by obtaining the time when "SOF" (Start Of Frame), indicating the start of the frame, occurs. Check if the "0" signal of 6 bits or more occurs continuously during CAN communication waveform check.

  1. Reference voltage about 2.5V. (high: 2.5V - 3.5V rise, low: 2.5V - 1.5V drop)
  2. Idle (2.5V) section of a certain period.
  3. Constant data frame time.
  4. High and low symmetrical frame shape.
G14867786Courtesy of KIA MOTORS AMERICA, INC.
G14867787Courtesy of KIA MOTORS AMERICA, INC.
G14867788Courtesy of KIA MOTORS AMERICA, INC.
G14867789Courtesy of KIA MOTORS AMERICA, INC.
G14867790Courtesy of KIA MOTORS AMERICA, INC.
G14867791Courtesy of KIA MOTORS AMERICA, INC.

Good 

No Good