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6 TROUBLE SHOOTING
AC motor drive is provided with functions of warning and protection such as over voltage, low voltage and over
current. Once fault occurs, protection function shall act, AC motor drive output stop, fault contactor act and also
free running of motor shall stop. For causes and corrective measures of fault, display of fault shall be taken for
reference. The alarm records will be stored into the computer memory of AC motor driver. Attention shall be paid
that RESET key, would be available only after the fault has been eliminated.
6.1 Failures & Failure Elimination
Display
Description
Possible reason
corrective-measures
Short circuit fault
1. Accelerate too fast.
2. Internal damage of IGBT.
3. Malfunction caused by interference.
4. Whether the grounding is good.
1. Increase acceleration time.
2. Seek support.
3. Check whether the peripheral
equipment has a strong
interference source.
Overcurrent
during
acceleration
1. Accelerate too fast.
2. The input power voltage is low.
3. The power of the inverter is too small.
4. No parameter learning is performed
during vector control.
5. Manual torque boost or V/f curve is not
suitable.
6. The motor is rotating when starting.
7. There is a short circuit in the inverter
output circuit.
1. Increase the acceleration time.
2. Check the input power.
3. Select a inverter with a higher
power.
4. Perform parameter
self-learning.
5. Adjust manual lifting torque or
V/f curve.
6. Choose speed tracking or start
after the motor stops.
7. Eliminate peripheral faults.
Overcurrent
during
deceleration
1. Decelerate too fast.
2. Large load inertia torque.
3. The power of the inverter is too small.
4. No parameter learning is performed
during vector control.
5. There is a short circuit in the inverter
output circuit.
1. Increase the deceleration time.
2. Add appropriate energy
consumption brake components.
3. Select a frequency converter
with a higher power.
4. Perform parameter
self-learning.
5. Eliminate peripheral faults.
Overcurrent at
constant speed
1. Abrupt or abnormal load.
2. The input power voltage is low.
3. The power of the inverter is too small.
4. No parameter learning is performed
during vector control.
5. There is a short circuit in the inverter
output circuit.
1. Check the load or reduce the
sudden change of load.
2. Check the input power.
3. Select a frequency converter
with a higher power.
4. Perform parameter
self-learning.
5. Eliminate peripheral faults.
Overvoltage
during
acceleration
1. The input voltage is abnormal.
2. After a momentary power failure,
restart the rotating motor.
1. Check the input power.
2. Avoid restarting after stopping.
Overvoltage
during
deceleration
1. Decelerate too fast.
2. Large load inertia.
3. The input voltage is abnormal.
1. Increase the deceleration time.
2. Increase energy consumption
brake components.
3. Check the input power.
Содержание S3100A Series
Страница 1: ...S3100Aseries inverter General Open loop Vector Control IM User manual User Manual ...
Страница 23: ...19 Size 3 Unit mm S3100A 2T5 5G 2T7 5G S3100A 4T7 5G 11P 4T18 5G 22P Size 4 Unit mm S3100A 4T22G 30P 4T37G 45P ...
Страница 24: ...20 Size 5 Unit mm S3100A 4T45G 55P 4T110G Size 6 Unit mm S3100A 4T110G 132P 4T160G 185P ...
Страница 25: ...21 Size 7 Unit mm S3100A 4T185G 200P 4T220G Size 8 Unit mm S3100A 4T220G 250P 4T315G ...
Страница 26: ...22 Size 9 Unit mm S3100A 4T315G 355P 4T400G 450P Size 10 Unit mm S3100A 4T450G 500P 4T500G ...