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Lenze E84AVHC Series User Manual

Lenze E84AVHC Series
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8400 HighLine | Parameter setting & configuration
Motor control (MCTRL)
Sensorless vector control (SLVC)
138 L Firmware 05.00 - DMS 4.2 EN - 02/2010
5.6.2 Basic settings
The following "Initial commissioning steps" must be performed to commission the
sensorless vector control:
Tip!
Information on the optimisation of the control mode and the adaptation to the
real application is provided in the "Optimise control behaviour
" chapter. ( 116)
We recommend to use the flying restart function for connecting/synchronising the
inverter to an already rotating drive system.Flying restart function
( 171)
Parameterisable additional functions are described correspondingly in the
"Parameterisable additional functions
" chapter. ( 168)
Initial commissioning steps
1. Set the motor selection/motor data
When selecting and parameterising the motor, the motor nameplate data and the equivalent circuit
diagram data are relevant. Detailed information can be found in the "Motor selection/Motor data
"
chapter. ( 97)
Depending on the motor manufacturer, proceed as follows:
Lenze motor:
Selecting a motor from the motor catalogue in the
»Engineer«
- or -
1.Set the motor nameplate data
2.Automatic motor data identification
Third party manufacturer's motor:
1.Set the motor nameplate data
2.Automatic motor data identification
or set known
equivalent circuit diagram data manually:
C00082
: Motor rotor resistance
C00084
: Motor stator resistance
C00085
: Motor stator leakage inductance
C00092
: Motor magnetising inductance
C00095
: Motor magnetising current
2. Define the operating mode:
C00006
= 4 (SLVC: Vector control)
3. Define the type of control:
bTorquemodeOn = FALSE: Speed control with torque limitation
bTorquemodeOn = TRUE: Torque control with speed limitation
4. Set the slip compensation (C00021). Slip compensation ( 179)
efesotomasyon.com - Lenze

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Lenze E84AVHC Series Specifications

General IconGeneral
Product CategoryInverter Drive
SeriesE84AVHC
Frequency50/60 Hz
Protection ClassIP20
Output Voltage0 - Input Voltage
Control MethodV/f control
CommunicationCANopen, Ethernet
ProtectionOvercurrent, overvoltage, undervoltage, short circuit
Relative Humidity< 95 %, no condensation
Cooling MethodFan cooling

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