User guide

Table Of Contents
10 Parameter reference
10.2 Parameter list | C00003
237
Lenze · 8400 BaseLine C · Reference manual · DMS 1.6 EN · 01/2014 · TD05
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C00003
C00006
Parameter | Name:
C00003 | Status of last device command
Data type: UNSIGNED_8
Index: 24572
d
= 5FFC
h
Status of the device command carried out last (C00002).
Note:
Before switching off the supply voltage after carrying out a device command, check whether the device command
has been carried out successfully via the status display!
Drive control (DCTRL)
: Device commands
Selection list (read only) Info
0 Successful Device command has been carried out successfully.
1 Command unknown Device command is implausible or not known in the sys-
tem.
2 No access Access for requested device command is not approved.
3 Time-out Device command could not be processed in the defined
time (time-out).
Read access Write access CINH PLC STOP No transfer COM MOT Scaling factor: 1
Parameter | Name:
C00006 | Motor control
Data type: UNSIGNED_8
Index: 24569
d
= 5FF9
h
Selection of the motor control mode
Motor control (MCTRL)
: Select control mode
Selection list (Lenze setting printed in bold) Info
4 SLVC: Vector control This control type is used for sensorless vector control of
an asynchronous motor.
The control type requires motor parameters to be set
as exactly as possible!
Sensorless vector control
6 VFCplus: V/f linear This control type is used for the speed control of an asyn-
chronous motor via a linear V/f characteristic and is the
simplest control type.
• For setting the V/f characteristic, only the rated fre-
quency (C00089
) and the rated voltage (C00090) of
the motor have to be entered.
V/f characteristic control
8 VFCplus: V/f quadr This control type is used for speed control of an asynchro-
nous motor via a square-law V/f characteristic.
• For setting the V/f characteristic, only the rated fre-
quency (C00089
) and the rated voltage (C00090) of
the motor have to be entered.
V/f characteristic control
Read access Write access CINH PLC STOP No transfer COM MOT Scaling factor: 1