VFD DRIVES TROUBLESHOOTING.pptx

CONTROLS SYSTEMS
CONTROLS SYSTEMSAutomation Enginner
CONTROLS AND SYSTEMS
CONTROLS AND SYSTEMS
1. Drive does not start
Causes:
 Drive not ready,
 Drive not receiving a Run Signal,
Not Ready Causes:
 Active fault,
 DC bus too high or low,
 Run enable input not present,
Run Signal not present:
• Control place not correct Example trying to
start from I/O when active control place is
keypad.
CONTROLS AND SYSTEMS
2. Drive does not get to speed
Causes:
 Missing reference,
 Preset speed or jog speed active,
Missing Reference:
 Check analog input monitor.
 Check that the drive is programmed to
follow the correct input.
 Ensure the drive is not hitting any other
limits.
 Check frequency reference compared to
output frequency.
CONTROLS AND SYSTEMS
3. Over Current
Causes:
 Incorrect motor parameters,
 Mechanical fault,
 Electrical fault,
 Current measurement error,
Solution:
 Check wiring and motor for insulation failures
and proper connections.
 Check for mechanical overload, Locked rotor,
 Check for proper drive size.
CONTROLS AND SYSTEMS
4. Current Limit Controller
Causes:
 Incorrect motor parameters,
 Mechanical fault,
 Electrical fault,
 Current measurement error,
Solution:
 Not all models have an indication when the
current limit is reached.
 Current limit will reduce output frequency
to reduce output current to at or below the
current limit setting.
CONTROLS AND SYSTEMS
5. Ground Fault
Causes:
 Faulty motor,
 Electrical fault,
 Current measurement error,
Solution:
 Check for loose or high resistance
connections to the motor.
 Test motor for electrical failure.
 Disconnect motor leads or apply known
good motor to verify current
measurements.
CONTROLS AND SYSTEMS
6. Output Phase Fault
Causes:
 Loose Motor Connections,
 Faulty Motor,
 Current measurement error,
Solution:
 Caused by current imbalance on the output
of the VFD.
 Look for loose connections or fault in motor
windings.
CONTROLS AND SYSTEMS
7. Over Voltage Fault
Causes:
 High Line Voltage,
 Regenerated voltage from load,
 Excessive line side harmonics,
Solution:
 If Fault occurs during deceleration or stop
command, then increase deceleration time or
brake chopper may be needed.
 Cyclic loads may need regen unit or brake
chopper.
 Excess harmonics may be overcharging DC link
capacitors.
CONTROLS AND SYSTEMS
8. Over Voltage Controller
Causes:
 High Line Voltage,
 Regenerated voltage from load,
 Excessive line side harmonics,
Solution:
 Trouble shooting is the same as for the
overvoltage fault, the overvoltage
controller will increase the reference in an
attempt to bleed off excess voltage.
 Not all series of VFD’s have an indication of
when this controller is active.
CONTROLS AND SYSTEMS
9. Under Voltage Fault
Causes:
 Low Line Voltage,
 Improperly sized drive,
Solution:
 Check for low line voltage or drops in line
voltage under load.
 Check for damaged input rectifiers with
static checks.
 Check for even current draw on input when
drive is running.
CONTROLS AND SYSTEMS
10. Unit Over Temperature
Causes:
 High Ambient temperature,
 Insufficient airflow,
 Plugged heat sink,
 Failed cooling fan,
Solution:
 Check Main cooling fan for rotation.
 Ensure unobstructed heat sink and airflow.
 Check ambient temperature is below the
drives ratings.
CONTROLS AND SYSTEMS
11. Motor Over Temperature
Causes:
 Overloaded Motor,
 Operating Motor at high load at low speeds,
 Undersized Motor,
 Incorrect Motor Parameters,
Solution:
 Check Motor Parameters.
 Observe current and speed.
 Current should be nearly proportional to speed,
if running half speed at FLA drive will protect
motor from increased thermal stress from
reduced cooling.
CONTROLS AND SYSTEMS
12. Input Phase Fault
Causes:
 Missing Input phase,
 Damaged Drive,
Solution:
 Check for Line Voltage imbalance.
 Check for loose connections or blown fuses.
 Check for damaged input rectifiers with static
checks.
 Single phase input drives need to have this
protection disabled.
 Check for even current draw on input when
drive is running.
CONTROLS AND SYSTEMS
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VFD DRIVES TROUBLESHOOTING.pptx

  • 2. CONTROLS AND SYSTEMS 1. Drive does not start Causes:  Drive not ready,  Drive not receiving a Run Signal, Not Ready Causes:  Active fault,  DC bus too high or low,  Run enable input not present, Run Signal not present: • Control place not correct Example trying to start from I/O when active control place is keypad.
  • 3. CONTROLS AND SYSTEMS 2. Drive does not get to speed Causes:  Missing reference,  Preset speed or jog speed active, Missing Reference:  Check analog input monitor.  Check that the drive is programmed to follow the correct input.  Ensure the drive is not hitting any other limits.  Check frequency reference compared to output frequency.
  • 4. CONTROLS AND SYSTEMS 3. Over Current Causes:  Incorrect motor parameters,  Mechanical fault,  Electrical fault,  Current measurement error, Solution:  Check wiring and motor for insulation failures and proper connections.  Check for mechanical overload, Locked rotor,  Check for proper drive size.
  • 5. CONTROLS AND SYSTEMS 4. Current Limit Controller Causes:  Incorrect motor parameters,  Mechanical fault,  Electrical fault,  Current measurement error, Solution:  Not all models have an indication when the current limit is reached.  Current limit will reduce output frequency to reduce output current to at or below the current limit setting.
  • 6. CONTROLS AND SYSTEMS 5. Ground Fault Causes:  Faulty motor,  Electrical fault,  Current measurement error, Solution:  Check for loose or high resistance connections to the motor.  Test motor for electrical failure.  Disconnect motor leads or apply known good motor to verify current measurements.
  • 7. CONTROLS AND SYSTEMS 6. Output Phase Fault Causes:  Loose Motor Connections,  Faulty Motor,  Current measurement error, Solution:  Caused by current imbalance on the output of the VFD.  Look for loose connections or fault in motor windings.
  • 8. CONTROLS AND SYSTEMS 7. Over Voltage Fault Causes:  High Line Voltage,  Regenerated voltage from load,  Excessive line side harmonics, Solution:  If Fault occurs during deceleration or stop command, then increase deceleration time or brake chopper may be needed.  Cyclic loads may need regen unit or brake chopper.  Excess harmonics may be overcharging DC link capacitors.
  • 9. CONTROLS AND SYSTEMS 8. Over Voltage Controller Causes:  High Line Voltage,  Regenerated voltage from load,  Excessive line side harmonics, Solution:  Trouble shooting is the same as for the overvoltage fault, the overvoltage controller will increase the reference in an attempt to bleed off excess voltage.  Not all series of VFD’s have an indication of when this controller is active.
  • 10. CONTROLS AND SYSTEMS 9. Under Voltage Fault Causes:  Low Line Voltage,  Improperly sized drive, Solution:  Check for low line voltage or drops in line voltage under load.  Check for damaged input rectifiers with static checks.  Check for even current draw on input when drive is running.
  • 11. CONTROLS AND SYSTEMS 10. Unit Over Temperature Causes:  High Ambient temperature,  Insufficient airflow,  Plugged heat sink,  Failed cooling fan, Solution:  Check Main cooling fan for rotation.  Ensure unobstructed heat sink and airflow.  Check ambient temperature is below the drives ratings.
  • 12. CONTROLS AND SYSTEMS 11. Motor Over Temperature Causes:  Overloaded Motor,  Operating Motor at high load at low speeds,  Undersized Motor,  Incorrect Motor Parameters, Solution:  Check Motor Parameters.  Observe current and speed.  Current should be nearly proportional to speed, if running half speed at FLA drive will protect motor from increased thermal stress from reduced cooling.
  • 13. CONTROLS AND SYSTEMS 12. Input Phase Fault Causes:  Missing Input phase,  Damaged Drive, Solution:  Check for Line Voltage imbalance.  Check for loose connections or blown fuses.  Check for damaged input rectifiers with static checks.  Single phase input drives need to have this protection disabled.  Check for even current draw on input when drive is running.
  • 14. CONTROLS AND SYSTEMS Follow Our Social Media’s Please Follow Our Slide Share

Notas del editor

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