Drive cooling fan
Common heat-related VFD and servo-drive failure point.
ABB VFD fault codes: complete reference for ACS310, ACS355, ACS550, ACS580, and ACS880 drives including 3130, 3210, and overcurrent faults.
ABB VFD fault codes: complete reference for ACS310, ACS355, ACS550, ACS580, and ACS880 drives including 3130, 3210, and overcurrent faults.
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Common heat-related VFD and servo-drive failure point.
Useful when the drive display or controls fail.
Price this on braking, deceleration, and overvoltage faults.
ABB drives display fault codes on the integral keypad panel as four-digit numbers or abbreviated text. Faults cause the drive to trip and stop the motor; alarms display but don’t stop the drive. The fault history is stored in the drive’s memory and can be retrieved via the control panel or Drive Composer software.
| Fault Code | Meaning | Common Fix |
|---|---|---|
| 0001 | Overcurrent | Check motor/cable; reduce accel ramp |
| 2201 | Overcurrent (short circuit) | Motor winding short or cable fault |
| 2310 | Overcurrent (peak) | Check for mechanical jam |
| 3130 | Input phase loss | Check all 3 input phases |
| 3210 | DC bus overvoltage | Extend decel ramp; add brake resistor |
| 3300 | DC bus undervoltage | Check input power supply |
| 4110 | Drive overtemperature | Clean cooling fan; check ambient temp |
| 5010 | Overload | Reduce continuous load; check motor FLA |
| 7121 | Analog I/O fault | Check signal wiring |
| 9300 | Communication fault | Check fieldbus adapter or wiring |
| AF10 | Heatsink overtemperature | Clean fan; check airflow |
One of the three supply phases (L1, L2, or L3) is missing or has significantly reduced voltage. Check the input fuses (one per phase) — a blown fuse on one phase is the most common cause. Also check the main contactor (if installed) for a burned contact. Measure phase-to-phase voltage at the drive’s L1/L2/L3 input terminals.
ABB drives will attempt to run on two phases briefly before tripping 3130. If the fault appears intermittently, check for a loose terminal screw or a contact with high resistance under load.
An instantaneous overcurrent trip — the drive output current exceeded the trip threshold. Causes: motor winding short, cable insulation failure, locked rotor (mechanical jam), or too-fast acceleration ramp. Start by megger-testing the motor and cable for insulation resistance (should be >1 MΩ at 500V). If insulation is good, check for mechanical issues and extend the acceleration time.
For model-specific checks, use the ABB ACS580 fault 2310 guide before replacing the drive.
Regenerative energy from a decelerating motor raised the DC bus above the trip threshold. Solutions: (1) extend the deceleration ramp in parameter group 23 (ACS550) or 01.13 (ACS880), (2) enable the flux braking feature (available on ACS880 — uses motor resistance to dissipate energy), (3) install a dynamic braking resistor and chopper module for high-inertia loads.
Input supply voltage dropped too low. Check incoming voltage at the drive terminals under load. On ACS550 and ACS880 with a 380–480V supply, the minimum is approximately 270V DC bus (~338V AC input). A weak transformer, long cable runs, or undersized input conductors all contribute.
The drive’s IGBT heatsink exceeded its temperature limit. Open the drive cabinet and inspect: (1) internal cooling fan — is it spinning? A failed fan is the #1 cause, (2) heatsink fins — clear with compressed air if clogged with dust, (3) ambient temperature — ACS550/ACS880 are rated to 40°C ambient without derating. Above that, the drive must be derated or better ventilation provided.
The drive output stage detected overcurrent above trip level. On ACS880, separate cause analysis is needed: fault 2201 (overcurrent on ground fault or winding short) is more serious than fault 0001 (transient overcurrent during starting). For 2201, use a megger before restarting — a shorted motor winding can damage the drive’s output IGBTs.
On ACS550/ACS880 drives with fieldbus adapters (Profibus, EtherNet/IP, Modbus), fault 9300 indicates loss of communication with the master. Check: adapter module is seated securely, fieldbus cable is connected, PLC/master is running and communicating. Fault 9300 can also mean the communication response time exceeded the configured watchdog timeout.
On ACS550: Navigate to parameter group 14 (FAULT HISTORY). Parameters 14.01–14.03 show the three most recent faults with time stamps.
On ACS880: Use the Drive Composer PC tool for the full fault log, or navigate to Menu > Diagnostics > Fault Log on the control panel.
| Part | Notes |
|---|---|
| Input fuses | ABB class J or gR fuses; size per drive catalog |
| Braking resistor | ABB catalog OHBR or third-party sized per drive kW |
| Cooling fan | Drive-specific; ABB part for ACS550 fan: 68518560 |
| Fieldbus adapter | FCAN-01 (CAN), FPBA-01 (Profibus), FENA-21 (EIP) |
Before ordering, match the drive part to the model number, electrical rating, and failure symptom. Check current prices on Amazon - prices and availability change frequently.
Faults 2201 (short circuit overcurrent) and any fault accompanied by a burning smell or blown fuses require qualified drive service. ABB’s regional service centers offer warranty and post-warranty repair.
Fault 3130 is input phase loss. One of the three supply phases (L1, L2, or L3) is missing or has significantly reduced voltage. Check the input fuses first, since a blown fuse on one phase is the most common cause.
Extend the deceleration ramp in parameter group 23 (ACS550) or 01.13 (ACS880), enable flux braking on ACS880 drives, or install a dynamic braking resistor and chopper module for high-inertia loads that regenerate energy back into the DC bus.
Both are overcurrent faults, but fault 2201 (overcurrent on ground fault or winding short) is more serious than fault 0001 (transient overcurrent during starting). For 2201, use a megger before restarting since a shorted motor winding can damage the drive's output IGBTs.
On ACS550, navigate to parameter group 14 (FAULT HISTORY); parameters 14.01-14.03 show the three most recent faults with timestamps. On ACS880, use the Drive Composer PC tool or Menu > Diagnostics > Fault Log on the control panel.