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Level 3 · Automotive Electronics CAN Bus Lesson 1/2 intermediate 10 min

CAN Bus Basics

Two wires, differential voltage and the messages that travel on them.

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What you will learn

  • Describe CAN-H and CAN-L and their typical voltages
  • Explain termination resistors and their purpose
  • Interpret common CAN communication DTCs
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CAN (Controller Area Network) is a two-wire, differential, multi-master bus. The dominant topology is a linear bus with a terminating resistor near each end — commonly around 120 Ω each, giving roughly 60 Ω measured across the pair when the bus is healthy and powered down. Exact values depend on the network design.

Because messages are shared, a fault on the bus or in one module can pull the whole network down. That is why a cluster of U-codes across unrelated systems should always make you reach for the bus, not the modules.

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TestMethodTraining expectation
Bus resistanceOhmmeter across CAN-H / CAN-L, ignition offRoughly 60 Ω on a healthy two-terminator bus
CAN-H voltageScope or breakout, bus activeAround 2.5 V idle, rising toward 3.5 V dominant
CAN-L voltageScope or breakout, bus activeAround 2.5 V idle, falling toward 1.5 V dominant
Short to groundResistance to chassisNo unwanted continuity
CAN voltage and resistance values are network-specific. These are common teaching figures for a 500 kbit/s high-speed CAN; verify against the manufacturer data before acting.

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Key points

  • CAN uses a twisted pair with differential signalling
  • Terminating resistors are typically about 120 Ω each
  • A shorted or open bus silences many modules at once
All values shown are training examples. Real thresholds depend on the manufacturer, engine, temperature and system — always confirm with the vehicle service documentation.
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