B16F811

DTC B16F811 indicates an unintended electrical connection (short circuit) between body ground and the second circuit of a Supplemental Restraint System (SRS) sensor, typically the low-side drive line or signal return line — Seal 6 EV

Safety System

DTC B16F811 indicates an unintended electrical connection (short circuit) between body ground and the second circuit of a Supplemental Restraint System (SRS) sensor, typically the low-side drive line or signal return line.

In BYD’s SRS architecture, this usually indicates a wiring fault in the seat belt pretensioner igniter, side impact sensor, or seat occupancy recognition sensor.

The SRS control unit detects an abnormally low circuit resistance (approaching 0Ω) and triggers the safety protection mechanism.

This disables airbag and pretensioner deployment to prevent injury from accidental activation.

This constitutes a hard fault, indicating a very high probability of physical wiring damage or an internal component short circuit.

The B16F811 fault code on the Seal 6 EV indicates a short circuit between body ground and the second circuit of an SRS sensor circuit. This is a high-severity fault because it can disable airbag and seat belt pretensioner deployment. Common causes include a shorted seat belt pretensioner squib or damaged wiring insulation near seat rails, B-pillar trim, or under the carpet. Visit an authorised dealer for diagnosis and repair. Typical repair cost data is available.
3
Cases Logged
5
Causes
  • 1Seat belt pretensioner squib internal short circuit (failure to replace component after a collision or component aging causes the internal bridge wire to blow or short to ground)
  • 2Damaged wiring harness insulation causing a short circuit to vehicle body metal (commonly due to harness chafing at the seat rails, B-pillar trim panel, or under the carpet)
  • 3SRS control unit internal drive MOSFET or monitoring circuit fault (especially in accident-repaired vehicles with a repaired but unreplaced control unit)
  • 4Connector water ingress, corrosion, or misaligned pins causing a short circuit between the signal wire and ground wire (common in vehicles driven through water or after washing)
  • 5Tools or screws piercing the wiring harness during repair, causing a hidden short circuit (incorrect routing during accident repair resulting in the seat rail crushing the wiring harness).
  • 1
    Use the dedicated BYD diagnostic tool (VDS6000 or ED400) to read all DTCs. Check for accompanying DTC B16F511 (first circuit fault) or other related fault codes. Record freeze frame data to determine the fault location (driver/passenger seat belt pretensioner, left/right crash sensor).
  • 2
    Disconnect the battery negative terminal and wait at least 90 seconds to fully discharge the SRS capacitor and prevent accidental airbag deployment.
  • 3
    Inspect the target sensor connector (usually located near the seat belt buckle or below the B-pillar) for looseness, corrosion, or water ingress, and visually inspect the wiring harness for obvious damage.
  • 4
    Disconnect the SRS control unit. Use a multimeter to measure the resistance to ground on the second wire between the control unit and the sensor (typically the smaller terminal number). Normal resistance is greater than 1 MΩ. A reading near 0 Ω confirms a short to ground.
  • 5
    Inspect the wiring harness in sections: Check the harness routing step by step from the sensor end to the control unit end. Focus on wear-prone areas such as the seat rails, door sill trim panel, and B-pillar. Repair damaged insulation or replace the wiring harness.
  • 6
    If wiring is normal, measure sensor resistance (seat belt pretensioner is approximately 2-3Ω; crash sensor has a specific resistance range). If resistance is abnormal, replace the sensor assembly.
  • 7
    If the wiring and sensor are normal but the fault persists, the SRS control unit internal driver circuit is faulty. Replace the control unit and perform vehicle configuration (VIN writing and sensor matching).
  • 8
    Reconnect the battery, clear the fault code, and perform an SRS system self-check cycle to verify the fault code does not return and the airbag warning light turns off normally.
BYD DTC AI Analysis

2021 BYD Qin Pro petrol: Airbag fault after collision repair

Symptoms: The vehicle had been repaired following a collision. The dashboard displayed an 'airbag fault' warning light. A scan tool retrieved DTCs B16F511 (sensor line 1 short to ground) and B16F811 (sensor line 2 short to ground). The driver and passenger airbags had been replaced, the SRS ECU had been repaired, and both front seat belts had been replaced, but the fault codes could not be cleared. Diagnosis: The technician inspected the relevant wiring and found no issues. According to the DTC definitions, B16F511 and B16F811 indicate a seatbelt sensor or SRS wiring fault. After ruling out external wiring and connector issues, the technician diagnosed an internal fault in the SRS control unit. Resolution: Replace or repair the SRS control unit (airbag ECU), then reprogram it and clear the fault codes.
Original source ↗
BYD DTC AI Analysis

BYD multiple models seat belt pretensioner sensor wiring fault

Symptoms: Airbag warning light came on. Retrieved DTCs showed B16F811 (sensor line 2 short to earth), with some vehicles also logging B16F511 (sensor line 1 short to earth) simultaneously. Diagnosis: Checked seatbelt pretensioner connector for loose connections or corrosion; measured sensor circuit resistance to earth and confirmed a short; checked SRS control unit power supply and earth connections; investigated whether the vehicle had been in a collision or submerged. Resolution: Repaired or replaced the damaged wiring harness. If the harness tested normal, replaced the seatbelt pretensioner assembly. If both were normal, replaced the SRS airbag control unit.
Original source ↗
BYD DTC AI Analysis

BYD Qin Pro/Song Pro rear seat belt sensor fault (accident vehicle)

Symptoms After accident repairs, the dash continuously displays airbag system faults. DTC B16F811 cannot be cleared, accompanied by seatbelt pretensioner-related fault codes. Diagnosis Used a factory scan tool to read complete fault data. Inspected the seatbelt pretensioner connectors and found pin retraction or poor contact in some vehicles. Measured pretensioner resistance; normal value is approximately 2–3 Ω. Checked the SRS control unit software version and data integrity. Resolution For repaired airbag control modules, reflash the data or replace the unit. Replace damaged seatbelt pretensioners. Repair any short circuits in the wiring harness, then perform system configuration and calibration.
Original source ↗
Common problems reported for Seal 6 EVSeal 6 EV overview →
Data confidence: Official This information is for reference only. Always consult a qualified technician for diagnosis and repair. Do not attempt high-voltage system repairs yourself.