DTC B160C indicates the SRS (Supplemental Restraint System) control unit detects the driver-side front airbag (steering wheel main airbag) ignition circuit resistance exceeds the normal upper limit (normal range: 2 — Qin Plus
DTC B160C indicates the SRS (Supplemental Restraint System) control unit detects the driver-side front airbag (steering wheel main airbag) ignition circuit resistance exceeds the normal upper limit (normal range: 2.0–3.0 Ω; fault threshold: ≥4.0 Ω or open circuit).
This hard or intermittent fault indicates a high-resistance condition in the airbag ignition circuit.
Poor contact, loose wiring connections, or component aging can cause this condition.
Excessive resistance reduces circuit current.
During a collision, the ACU (Airbag Control Unit) may fail to generate sufficient ignition current to trigger the gas generator, causing airbag deployment failure and severely compromising occupant protection.
This DTC illuminates the SRS warning lamp, forces the system into a degraded protection mode, and disables airbag deployment for this circuit.
- 1Broken internal flat cable or worn carbon brush in the clock spring: Frequent steering wheel rotation causes fatigue fractures in the internal flexible circuit, creating intermittent or continuous high resistance.
- 2Poor contact at the airbag connector (yellow double-lock waterproof plug): plug not fully locked, oxidized terminals, backed-out terminals, or loose connections causing increased contact resistance.
- 3Driver airbag module (DAB) internal igniter resistance drift: Oxidation of the bridge wire inside the gas generator or poor welding causes increased resistance.
- 4Worn or poorly connected wiring harness below the steering wheel: Long-term twisting and friction of the wiring harness inside the steering column partially breaks the copper strands, creating a high-resistance connection.
- 5SRS control unit (ACU) internal sampling circuit fault: faulty detection chip or voltage divider resistor causing a false alarm (less common)
- 1Safety preparation: Disconnect the 12V battery negative terminal and wait at least 3 minutes for the SRS capacitor to fully discharge to prevent accidental airbag deployment.
- 2Visual inspection: Verify the yellow airbag connector under the steering wheel is fully inserted and locked. Inspect the wiring harness for damage, pinching, or signs of water ingress.
- 3Initial measurement: Use a dedicated airbag resistance tester (or a digital multimeter with a 2kΩ resistor in series) to measure the total resistance of the airbag circuit and confirm the resistance is high (>4Ω).
- 4Segmented isolation diagnosis: Disconnect the airbag module connector. Separately measure the resistance of the airbag module itself (normal: 2-3Ω) and the circuit resistance from the lower end of the clock spring to the ACU to locate the faulty section.
- 5Clock spring inspection: Disconnect the lower clock spring connector. Measure continuity between the upper and lower terminals. Turn the steering wheel lock-to-lock and check for open circuits or resistance fluctuations.
- 6Cleaning and tightening: If the connector is oxidized, clean the terminals with electrical contact cleaner, apply conductive grease, and fully engage the secondary locking mechanism.
- 7Component replacement: Based on diagnostic results, replace the clock spring, repair the wiring harness, or replace the airbag module (never use a second-hand airbag module).
- 8System verification: Reconnect all connectors and the battery. Use the diagnostic tool to clear the fault code. Perform static and dynamic tests (turn the steering wheel) to confirm DTC B160C does not return and the SRS warning light turns off.
BYD Qin Pro DM clock spring wear causes intermittent high resistance
Corroded airbag connector caused high resistance in BYD Tang EV
Internal resistance drift in BYD Yuan EV airbag module
BYD Song MAX steering column wiring harness worn, intermittent connection
BYD Qin fuel version low voltage false positive B160C