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Motion Control SW
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As a next motor cabling test step, one single end of a phase is set to half of the motor supply
voltage. At this time, the current into the drive has to be below the Phase Test Max Incurrent
value. An error will be generated otherwise.
Parameter Name
UPID
Description
Phase Test Max
Incurrent
102Eh
If the current rises above this limit if one edge of a phase is
set to a voltage en error will be generated.
7.4.3 Regeneration Resistor
The regeneration resister terminals on X1 can be used for energy dissipation, when the
motor is decelerating.
Parameter Name
UPID
Description
Enable
101Dh
The regeneration resistor output cab be activated with this
parameter:
•
0: Disable
•
1: Enable
In the configuration section the switch on and off voltage levels for the regeneration resistor
can be defined. The turn on voltage has to be at minimum 0.5V higher than the turn off
voltage. Ensure that the idle motor supply voltage is lower than the turn off voltage!
Parameter Name
UPID
Description
Turn On Voltage
101Eh
If the Motor Supply Voltage rises above this limit the low
side switch of the regeneration output is activated.
Turn Off Voltage
101Fh
If the Motor Supply Voltage sinks below this limit the low
side switch of the regeneration output is turned off.
With the RR Temp Calculated section, the temperature model of the regeneration resistor is
parameterized. This is used for avoiding damages to the regeneration resistor if the energy
dissipation rises over the resistor’s capabilities.
Parameter Name
UPID
Description
RR Resistance
1022h
Resistance value of the regeneration resistor. This value is
used for calculating how much heat energy is generated in
the resistor at the current DC link voltage.
Warning Temp
1024h
If Calc Temp RR Winding (UPID1C0Dh) of the calculated
temperature model rises above this value, bit 10 of the Warn
Word is set.
Error Temp
1025h
If Calc Temp RR Winding (UPID1C0Dh) of the calculated
temperature model rises above this value, the drive goes to
error state with the error 15h.
NTI AG / LinMot
User Manual Motion Control SW/ 06/12/2013
Page 79/91