SEW-Eurodrive braking resistor
Use for DC-link overvoltage faults only after matching resistance, wattage, and duty cycle to the drive.
SEW-Eurodrive VFD fault guide for MOVITRAC/MOVIDRIVE alarms, F07, F08, braking resistors, encoders, cooling fans, and drive checks.
SEW-Eurodrive VFD fault guide for MOVITRAC/MOVIDRIVE alarms, F07, F08, braking resistors, encoders, cooling fans, and drive checks.
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Use for DC-link overvoltage faults only after matching resistance, wattage, and duty cycle to the drive.
Helps long motor-cable installations that create output overcurrent or insulation-stress faults.
Useful for local fault memory, reset, and parameter access on compatible MOVITRAC and MOVIDRIVE units.
Match connector, conductor count, shield style, and encoder supply voltage before replacing feedback wiring.
SEW-Eurodrive manufactures gearmotors, variable speed drives, and servo systems used extensively in material handling, conveyor systems, packaging, and industrial automation. Their drive product lines include MOVITRAC (basic VFDs), MOVIDRIVE (servo and vector drives), MOVIMOT (integrated motor/drive units), and the newer MOVI-C platform.
Fault codes appear on the seven-segment display as a capital F followed by two digits (F01, F10, etc.). Warning codes appear as a lower-case r or H prefix in some firmware versions.
Product families covered:
Keypad (DBG60B or built-in):
MOVITOOLS MotionStudio (PC software):
Key parameter numbers for fault information:
What it means: Output current exceeded the overcurrent shutdown threshold (typically 150–200% of rated current).
Causes (in order of frequency):
Diagnosis:
Fix:
Parameter to check: P130 (ramp-up time), P131 (ramp-down time)
What it means: DC bus voltage exceeded the limit (typically 800–850VDC for 480V drives, 420VDC for 240V drives).
Causes:
Diagnosis:
Fix:
Parameter to check: P131 (ramp-down time), P740 (braking resistor type/P741 braking resistor value)
What it means: A direct short circuit detected at the drive output terminals. The drive detects this through zero-crossing current measurement.
Causes:
Diagnosis: Isolate the motor completely, check motor terminal box, inspect cable for damage.
What it means: Phase-to-earth (phase-to-ground) current exceeded the monitoring threshold.
Causes:
Diagnosis: Megohm test — disconnect motor from drive, measure each phase to ground. Should be >1MΩ at 500VDC test voltage.
What it means: DC bus voltage dropped below the operational minimum during run.
Causes:
Fix: Check incoming voltage. Verify all power connections are tight. If mains power is unreliable, add an input line reactor for ride-through.
What it means: Actual speed deviated too far from commanded speed, or encoder/tachometer feedback was lost.
Causes:
Parameter to check: P140 (maximum speed), P341 (encoder pulses per revolution), P342 (encoder supply voltage)
What it means: The heatsink or internal temperature exceeded the shutdown limit (typically 80–85°C heatsink).
Causes:
Fix: Clean drive heatsink fins. Verify cabinet cooling fan. Check mounting orientation (drives must mount vertically). Derate the drive for high-ambient installations.
What it means: The motor’s embedded thermistor (PTC or NTC type) reported motor temperature above the trip limit.
Causes:
Parameter to check: P120 (motor thermistor monitoring enable/type)
What it means: The mechanical brake integrated with the gearmotor did not confirm open/closed state within the expected time.
Causes (SEW gearmotors with integrated brake):
Diagnosis: Measure voltage at brake coil terminals during an open command. Should equal rated brake voltage (typically 24VDC or 205VAC).
Parameter to check: P830 (brake function), P831/P832 (brake opening/closing delay times)
What it means: Encoder supply voltage or signal levels are outside tolerance. Typically: no signal, or signal level too low.
Causes:
What it means: Encoder count direction doesn’t match expected, or count error detected.
Causes:
Parameter to check: P341 (encoder pulses/rev), P342 (encoder supply), P345 (encoder direction reversal)
What it means: The drive expected a command from the fieldbus (PROFIBUS, DeviceNet, CANopen, EtherNet/IP) but didn’t receive one within the watchdog timeout.
Causes:
Fix: Verify PLC is running and outputting process data. Check cable. Increase watchdog timeout (P883).
Parameter to check: P883 (bus timeout), P885 (bus response on timeout)
What it means: SEW’s internal synchronous bus (MOVILINK) between drive and option card lost communication.
Causes:
Fix: Reseat option card. Verify firmware versions match.
MOVIMOT units transmit fault codes via the connected fieldbus (AS-Interface, PROFIBUS, etc.). The fault code appears in the status word.
MOVIMOT common faults:
Reset MOVIMOT faults: cycle power or send reset command via fieldbus.
Manual reset:
Auto-reset (P630): SEW drives support automatic fault reset after a configurable delay. Set P630 to the number of auto-reset attempts allowed. Use carefully — auto-reset on mechanical faults can cause damage.
Factory reset: Parameter P700 — restores all parameters to factory defaults. Use only as last resort.
| Component | Application | Notes |
|---|---|---|
| Braking Resistor | Overvoltage prevention | Size per drive kW and duty cycle |
| Output Reactor (Choke) | Long cable protection | Required for cables >50m |
| DBG60B Keypad | Local operation/programming | Plug-in, works across drive families |
| Encoder Cable | Speed feedback | Shielded, twisted pair, shield at drive end |
| Brake Rectifier | Integrated brake supply | Match motor brake voltage rating |
| Fieldbus Option Card | Communication | Match fieldbus type: PROFIBUS, EtherNet/IP |
| Fan Module | Drive cooling | Model-specific, available as replacement part |
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.
SEW-Eurodrive service: 1-864-439-7537 (US). MOVITOOLS MotionStudio is free for download from SEW’s website.
Read the active F-code and fault memory first. F01, F02, F07, F21, and fieldbus faults point to very different causes, so do not replace the drive before checking the stored fault and operating state.
F01 is commonly caused by a shorted motor cable, motor insulation failure, too-short acceleration ramp, jammed load, or a failed output stage. Isolate the motor and cable before condemning the drive.
A braking resistor is usually needed when DC-link overvoltage happens during deceleration on high-inertia or overhauling loads. Match the resistor to the drive rating and braking duty.