U01000D

U01000D is a BYD-specific subtype of ISO standard communication fault code U0100 (suffix 0D is a hexadecimal identifier) — Seal 6 EV

Braking System

U01000D is a BYD-specific subtype of ISO standard communication fault code U0100 (suffix 0D is a hexadecimal identifier).

It indicates a failure to receive a valid data frame via the CAN network between the IPB (Intelligent Power Brake system) and the ECM (Engine Control Module) within a specific cycle (typically 100ms-500ms, depending on calibration).

This triggers the timeout counter to reach its threshold (6th timeout).

In the DM-i hybrid architecture, the IPB must retrieve real-time engine torque, engine speed, and brake energy regeneration request status from the ECM.

Communication interruption degrades the brake energy regeneration function, disables ESC coordinated control, and in severe cases, triggers Limp Home mode.

The basic hydraulic braking function remains available.

5
Cases Logged
5
Causes
  • 1Intermittent open circuit, short circuit, or short to ground/power in the ECM or IPB CAN-H/CAN-L circuits, especially at damaged wiring harness sheathing in high-temperature areas of the engine compartment.
  • 2Abnormal ECM power supply circuit (including constant power B+ and ignition switch power IG1/IG2) or excessive ground circuit resistance (>1Ω), causing intermittent ECM restarts.
  • 3CAN bus termination resistance deviation between IPB and ECM (standard value 60Ω, allowable range 58-62Ω), or branch line length exceeding 0.3m causing signal reflection.
  • 4Hardware fault in ECM internal transceiver or IPB gateway module preventing response to Network Management (NM) messages.
  • 5Aftermarket equipment (such as a dash cam or inverter) connected to the CAN bus causes excessive bus load or signal interference.
  • 1
    Use the VDS1000 or DiLink diagnostic tool to perform a 'Vehicle Scan'. Record the Freeze Frame data for U01000D and verify the vehicle speed, SOC, and communication status bits at the time of the fault.
  • 2
    Inspect ECM connector BYD-121PIN (front left of the engine compartment) and the IPB connector (in front of the engine compartment firewall). Verify no backed-out pins, oxidation, or signs of water ingress. Apply electrical contact protectant and reconnect.
  • 3
    Measure the resistance between pin 6 (CAN-H) and pin 14 (CAN-L) at the OBD diagnostic connector: with the vehicle OFF, the resistance must be 60±2Ω. Measure the voltage to ground: CAN-H 2.6-2.8V, CAN-L 2.2-2.4V. Use an oscilloscope to check the waveform for distortion or bit errors.
  • 4
    Check ECM power supply: Measure pin A01 (constant power); voltage should be 12V±0.5V. Measure pin A02 (IGN power); voltage should be ≥12V with ignition switch ON. Check ground connection: Measure resistance between pins A03/A04 and body ground; resistance should be <1Ω.
  • 5
    Perform 'Communication Test': Disconnect the ECM connector and connect a terminal resistor simulator (120Ω) in parallel to the IPB-side CAN line. If the fault code changes to U010087 (permanent loss), diagnose an internal ECM fault. If it remains U01000D, check the IPB gateway and wiring harness.
  • 6
    After clearing the fault code, perform a road test: simulate regenerative braking at different vehicle speeds (0-60-120 km/h) and observe the data stream to verify 'ECM_Torque_Request' and 'IPB_Recup_Torque' update synchronously.
  • 7
    Upon confirming an ECM fault, perform 'Online Coding' to match the VIN and immobilizer key. For wiring harness issues, repair the harness, wrap it with waterproof tape (3M Scotch 33+), and secure it in the original clip position.
BYD DTC AI Analysis

Song PLUS DM-i: Intermittent full illumination of instrument panel and hard brake pedal

Vehicle: 2021 Song PLUS DM-i 110km Flagship, 23,000 km. Symptoms: While driving at highway speeds, the dashboard suddenly displayed "Check Engine System" and "Check Brake System" warnings, the ESC light came on, and the brake pedal went hard but still had braking. Diagnosis: VDS read code U01000D (current fault) from the IPB system; the ECM had no communication. Technicians found fretting wear on pin 45 (CAN-H) of the 121-pin ECM connector—contact resistance spiked to 5 Ω under vibration. Repair: Replaced the ECM connector assembly (part number BYD-3724010), re-crimped the terminals, measured CAN bus resistance at 60 Ω, and road-tested 20 km with no recurrence.
Original source ↗
BYD DTC AI Analysis

Aftermarket dash cam installation caused CAN network failure on Tang DM-i

Vehicle: 2022 Tang DM-i 252KM Premium. Symptoms: After the owner installed an aftermarket 360-degree surround-view camera, the vehicle frequently set DTCs U01000D and U010104 (lost communication with TCU) and failed to enter READY mode. Diagnosis: Removing the aftermarket equipment cleared the fault. Further inspection found the device tapped power from the OBD port and was spliced in parallel into the CAN bus without authorization. Repair: Removed the non-factory wiring harness, restored the original CAN bus topology, and re-grounded the shield at the BCM. Fault eliminated. Recommendation: Never connect aftermarket devices in parallel to the Powertrain CAN.
Original source ↗
BYD DTC AI Analysis

Qin PLUS DM-i ECM internal transceiver fault causing communication timeout

Vehicle: 2021 BYD Qin PLUS DM-i 55KM Flagship, 41,000 km. Symptoms: Cold start normal; DTC U01000D triggers at operating temperature (coolant >90°C) with engine shake. Diagnosis: Oscilloscope captured CAN waveforms at the ECM; CAN-H amplitude dropped from 2.8V to 1.2V under high temperature. ECM internal CAN transceiver (TJA1043 chip) thermal stability failure. Repair: Replaced ECM assembly (PN BYD-3610000B), performed online programming and immobilizer matching, flashed IPB control logic with software version 20230815 to increase communication fault-tolerance delay.
Original source ↗
BYD DTC AI Analysis

Song Pro DM-i wiring harness chafes against body, causing intermittent open circuit

Vehicle: 2022 Song Pro DM-i 110km, 18,000 km. Symptom: Intermittent U01000D on rough roads; normal on smooth surfaces. Diagnosis: Lifted vehicle and inspected chassis harness. Found ECM-to-IPB CAN harness chafing against metal burrs at firewall penetration. Insulation wore through, partially fracturing conductors (only 2 strands remained connected). Repair: Repaired harness using 0.5mm² twisted-pair shielded cable (20mm twist pitch). Installed rubber grommet (part number BYD-33316) at penetration point. Re-secured routing to maintain >50mm clearance from body.
BYD DTC AI Analysis

Seal DM-i IPB gateway module software bug caused false alarm.

Vehicle: 2023 Seal DM-i 1.5L 121km, 500 km. Symptoms: No driving abnormalities, but instrument cluster reports U01000D after every fast charge; clears after 5 minutes of driving. Diagnosis: Data stream analysis showed high BMS load during fast charging occupied powertrain CAN bandwidth; IPB gateway priority configuration caused ECM message packet loss. Repair: Upgraded IPB control software to V2.3.1 (BYD internal TSB-2023-BR-09) and adjusted Network Management (NM) message transmission cycle from 20ms to 10ms. Fault eliminated.
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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.