This DTC indicates the IPB (Intelligent Power Brake) electro-hydraulic control module detects the brake booster motor drive circuit supply voltage exceeds the calibrated threshold (typically >16V) — Qin Plus
This DTC indicates the IPB (Intelligent Power Brake) electro-hydraulic control module detects the brake booster motor drive circuit supply voltage exceeds the calibrated threshold (typically >16V).
In BYD DMi models, the 12V low-voltage system powers the IPB, which uses motor direct-drive brake assist (without a vacuum booster).
Faults in the DC-DC converter, generator, or IPB internal power management circuit causing voltage increases trigger this DTC.
Continuous overvoltage can overheat and damage the IPB internal MOSFETs or motor driver chip.
This triggers system protection mode, resulting in a hard brake pedal, reduced brake assist, or restricted ABS/ESC functions.
Severe cases force the vehicle into limp mode.
- 1DC-DC converter fault: High-voltage to 12V DC-DC module failure causes output voltage to rise abnormally (>15-16V), exceeding the IPB supply voltage limit.
- 2IPB electro-hydraulic module internal fault: A fault in the IPB internal power regulation circuit, voltage sampling circuit, or motor drive circuit causes actual overvoltage or a false overvoltage report.
- 312V charging system fault: On DM-i models, a generator regulator fault or abnormal DC-DC control strategy causes overvoltage charging of the low-voltage system.
- 4Wiring harness short circuit or cross-circuit: Brake booster motor power wire makes abnormal contact with the high-voltage harness or shorts to another high-voltage source.
- 5Battery and ground faults: Excessive battery internal resistance, battery aging, or poor ground connections cause abnormal voltage fluctuations, triggering sampling circuit protection.
- 1Fault Confirmation and Data Reading: Use VDS2000/3000 to read all DTCs, freeze frame data (record the actual voltage when the fault occurred), and the live data stream. Verify if the actual IPB supply voltage remains continuously above 16V.
- 2Low-voltage system voltage check: Measure the 12V battery static voltage (normal: 12.4-12.8V) and dynamic voltage (starting/generating state, normal: 13.5-14.8V, must not exceed 15.5V). Check for overvoltage.
- 3DC-DC output check: With the vehicle in READY mode, measure the voltage at the DC-DC converter output terminal and the waveform to ground. If the output voltage is >15.5V or the waveform is abnormal, replace the DC-DC converter assembly.
- 4IPB circuit inspection: Check the continuity (<1Ω) and insulation resistance (>10MΩ) of the IPB module power wires (constant B+, IGN power) and ground harness. Inspect the connector terminals for burning, pin push-out, or corrosion.
- 5IPB module diagnosis and replacement: If the external supply voltage is normal (13.5-14.8V) but the IPB still reports C059000, update the IPB software (if a newer version is available). If the fault persists, replace the IPB electro-hydraulic module assembly, then perform brake system bleeding, calibration, and ESC matching.
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