Mitsubishi Electric FR-E700EX Instruction Manual page 275

Sensorless servo drive unit, applied
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Operation panel
E.OV1
indication
Name
Regenerative overvoltage trip during acceleration
If regenerative energy causes the drive unit's internal main circuit DC voltage to reach or exceed the specified value,
Description
the protective circuit is activated and the drive unit trips. The circuit may also be activated by a surge voltage
produced in the power supply system.
Check point
 Check for too slow acceleration. (e.g. during downward acceleration in vertical lift load)
Corrective
 Decrease the acceleration time.
action
 Check that regeneration avoidance function (Pr.882, Pr.883, Pr.885, Pr.886) is used. (Refer to page 242)
Operation panel
E.OV2
indication
Name
Regenerative overvoltage trip during constant speed
If regenerative energy causes the drive unit's internal main circuit DC voltage to reach or exceed the specified value,
Description
the protective circuit is activated to stop the drive unit output. The circuit may also be activated by a surge voltage
produced in the power supply system.
Check point
 Check for sudden load change.
 Keep load stable.
Corrective
 Check that regeneration avoidance function (Pr.882, Pr.883, Pr.885, Pr.886) is used. (Refer to page 242)
action
 Use the brake resistor, brake unit or power regeneration common converter (FR-CV) as required.
Operation panel
E.OV3
indication
Name
Regenerative overvoltage trip during deceleration or stop
If regenerative energy causes the drive unit's internal main circuit DC voltage to reach or exceed the specified value,
Description
the protective circuit is activated to stop the drive unit output. The circuit may also be activated by a surge voltage
produced in the power supply system.
Check point
Check for sudden speed reduction.
 Increase the deceleration time. (Set the deceleration time which matches the moment of inertia of the load)
Corrective
 Longer the brake cycle.
 Use regeneration avoidance function (Pr.882, Pr.883, Pr.885, Pr.886). (Refer to page 242)
action
 Use the brake resistor, brake unit or power regeneration common converter (FR-CV) as required.
Operation panel
E.THT
indication
Name
Drive unit overload trip (electronic thermal relay function)
If the temperature of the output transistor element exceeds the protection level under the condition that a current not
Description
less than the rated drive unit current flows and overcurrent trip does not occur (230% or less), the electronic thermal
relay activates to stop the drive unit output. (Overload capacity 150% 60s, 200% 3s)
 Check that acceleration/deceleration time is not too short.
Check point
 Check the motor for use under overload.
 Check for too high surrounding air temperature.
 Increase acceleration/deceleration time.
Corrective
 Reduce the load weight.
action
 Set the surrounding air temperature to within the specifications.
Operation panel
E.THM
indication
Name
Motor overload trip (electronic thermal relay function)
The electronic thermal relay function in the drive unit detects motor overheat due to overload or reduced cooling
capability during low-speed operation and pre-alarm (TH display) is output when the integrated value reaches 85% of
Description
the Pr.9 Electronic thermal O/L relay setting and the protection circuit is activated to stop the drive unit output when the
integrated value reaches the specified value.
 Check the motor for use under overload.
Check point
 Check that torque limit operation setting is correct.
Corrective
 Reduce the load weight.
action
 Check that torque limit operation setting is correct. (Refer to page 111)

Resetting the drive unit initializes the internal thermal integrated data of the electronic thermal relay function.
Causes and corrective actions
FR-PU07
OV During Acc
FR-PU07
Stedy Spd OV
FR-PU07
OV During Dec
FR-PU07
Inv. Overload
FR-PU07
Motor Ovrload
5
273

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