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Function library
Code table
10
401
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0190
*
(A)
Linking of main
and additional
setpoint
(PCTRL1−
ARITH1)
1
0
X + 0
Mathematical combination of
main setpoint (NSET1−NOUT) and
additonal setpoint (PCTRL1−NADD)
The result is provided in Hz
X = NSET1−NOUT
Y = PCTRL1−NADD
1
X + Y
2
X − Y
3
XY
C0011
4
X
Y

C0011
100
5
XC0011
C0011Y
C0191
(A)
Acceleration
time −
follow−up
controller
5.00
0.00
{0.02 s}
1300.00
Based on change 0 Hz ... C0011
C0192
(A)
Deceleration
time −
follow−up
controller
5.00
0.00
{0.02 s}
1300.00
Based on change C0011 ... 0 Hz
C0193
(A)
Follow−up
controller −
reset
5.00
0.00
{0.02 s}
1300.00
Based on change C0011 ... 0 Hz
Set the follow−up controller to "0"
C0194
(A)
Lower
threshold for
follow−up
controller
activation
−200.0
0
−200.00
{0.01 %}
200.00
Based on C0011
If the value falls below C0194:
Follow−up controller operates with
C0191 or C0192 towards −C0011
C0195
(A)
Upper
threshold for
follow−up
controller
activation
200.0
0
−200.00
{0.01 %}
200.00
Based on C0011
If C0195 is exceeded:
Follow−up controller operates with
C0191 or C0192 towards +C0011
C0196
*
Activation auto
DCB
0
0
Auto DCB active if PCTRL1−SET3 <
C0019
  292
1
Auto DCB active if PCTRL1−SET3 <
C0019 and NSET1−RFG1−IN < C0019
C0200
*
Software ID
Read only on PC
x = main version, y = subversion
82S8212V_xy000
8200 vector 0.25 ... 11 kW
82S8212V_xy010
8200 vector 15 ... 90 kW
C0201
*
Software
creation date
Read only on PC
C0202
*
Software ID
Output in keypad as string in four parts at four
characters each
Read only in keypad
1
82S8
2
212 V
3
_xy0
x = main version, y = subversion
4
zz
00 = 8200 vector 0.25 ... 11 kW
10 = 8200 vector 15 ... 90 kW
C0220
*
Acceleration
time −
additional
setpoint
(PCTRL1−NADD)
5.00
0.00
{0.02 s}
1300.00
Main setpoint  C0012
  286
C0221
*
Deceleration
time −
additional
setpoint
(PCTRL1−NADD)
5.00
0.00
{0.02 s}
1300.00
Main setpoint  C0013
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Function library
Code table
10
402
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0225
(A)
Acceleration
time − process
controller
setpoint
(PCTRL1−SET1)
0.00
0.00
{0.02 s}
1300.00
Ramp function generator for
process controller setpoint =
PCTRL1−RFG2
C0226
(A)
Deceleration
time − process
controller
setpoint
(PCTRL1−SET1)
0.00
0.00
{0.02 s}
1300.00
C0228
(A)
Fade−in time −
process
controller
0.000
0.000
{0.001 s}
32.000
0.000 = process controller output
information is communicated
without being displayed
C0229
(A)
Fade−out time −
process
controller
0.000
0.000
{0.001 s}
32.000
0.000 = fade−out switched off
(C0241)
C0230
(A)
Lower limit for
process
controller
output
−100.0
−200.0
{0.1 %}
200.0
Asymmetrical limitation of the
process controller output, based
on C0011
If the value falls below C0230
or exceeds C0231:
–Output signal PCTRL1−LIM =
HIGH after expiration of the
time set in C0233
Set C0231 > C0230
C0231
(A)
Upper limit for
process
controller
output
100.0
−200.0
{0.1 %}
200.0
C0232
(A)
Offset for
inverse
characteristic
of process
controller
0.00
−200.0
{0.1 %}
200.0
Based on C0011
C0233
*
(A)
Deceleration
PCTRL1−LIM=
HIGH
0.000
0.000
{0.001 s}
65.000
"Debouncing" of digital output
signal PCTRL1−LIM (limits for
process controller output
exceeded)
Sets PCTRL1−LIM = HIGH if the
following still holds true after
expiration of the set time:
–Value fallen below C0230 or
exceeded C0231
Transition HIGH  LOW
without deceleration
C0234
*
(A)
Deceleration
PCTRL1−SET=
ACT
0.000
0.000
{0.001 s}
65.000
"Debouncing" of digital output
signal PCTRL1−SET=ACT (process
controller setpoint = actual
process controller value)
Sets PCTRL1−SET=ACT = HIGH if
the following still holds true
after expiration of the set time:
–Difference between
PCTRL1−SET and PCTRL1−ACT
is within operating threshold
C0235
Transition HIGH  LOW
without deceleration
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Function library
Code table
10
403
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0235
*
(A)
Differential
threshold
PCTRL1−SET=
ACT
0.00
0.00
{0.01
Hz}
650.00 Operating threshold of digital
output signal PCTRL1−SET=ACT
(process controller setpoint =
actual process controller value)
If the difference between
PCTRL1−SET and PCTRL1−ACT is
within C0235:
–PCTRL1−SET=ACT = HIGH
after expiration of the time
set in C0234
C0236
(A)
Acceleration
time − lower
frequency
limitation 
0.00
0.00
{0.02 s}
1300.00
Based on C0011
Lower frequency limitation =
C0239
  281
C0238
Frequency
precontrol
2
0
No feedforward control (only process
controller)
Process controller has full
influence
  318
  322
1
Feedforward control (overall setpoint +
process controller)
Process controller has restricted
influence
2
No feedforward control (overall
setpoint only)
Process controller does not have
any influence (inactive)
Overall setpoint (PCTRL1−SET3) =
main setpoint + additional
setpoint
C0239
Lower
frequency
limitation
−650.0
0
−650.00
{0.02
Hz}
650.00
The value does not fall below
the limit independently of the
setpoint
If the lower frequency
limitation is active, automatic
DC injection braking (auto
DCB) must be deactivated with
C0019 = 0 or C0106 = 0
  281
C0240
(A)
Invert process
controller
output
(PCTRL1−INV−
ON)
(parameter
channel)
0
0
Not inverted
Set digital signal PCTRL1−INV−ON
(invert process controller output)
via keypad/PC or parameter
channel
1
Inverted
C0241
(A)
Fade−in/fade−
out process
controller
(PCTRL1−
FADING)
(parameter
channel)
0
0
Fade−in process controller
Set digital signal PCTRL1−FADING
(fade−in/fade−out process
controller) via keypad/PC or
parameter channel
1
Fade−out process controller
C0242
(A)
Activate
inverted
control for
process
controller
0
0
Regular control
Actual value increases  output
frequency increases
1
Inverted control
Actual value increases  output
frequency decreases
C0243
(A)
Deactivate
additional
setpoint
(PCTRL1−NADD
−OFF)
(parameter
channel)
0
0
PCTRL1−NADD active
Set digital signal
PCTRL1−NADD−OFF (activate
additional setpoint) via keypad/PC
or parameter channel
1
PCTRL1−NADD inactive
C0244
(A)
Root function
for actual
process
controller
value
0
0
Inactive
1
|PCTRL1−ACT|
Internal computing method:
1. Save sign of PCTRL1−ACT
2. Extract the root of the amount
3. Multiply result by the sign
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Function library
Code table
10
404
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0245
*
(A)
Comparison
value selection
for
MSET1=MACT
0
0
MCTRL1−MSET (C0412/6 or C0047)
Comparison value selection for
setting the digital output signal
MSET1=MACT (torque threshold 1
= actual torque value)
If the difference between
MCTRL1−MSET1 and
MCTRL1−MACT or C0250 is
within C0252:
–MSET1=MACT = HIGH after
expiration of the time set in
C0254
1
Value in C0250
C0250
*
(A)
Torque
threshold 1
(MCTRL1−
MSET1)
0.0
−200.0
{0.1 %}
200.0
Based on rated motor torque
C0251
*
(A)
Torque
threshold 2
(MCTRL1−
MSET2)
0.0
−200.0
{0.1 %}
200.0
Based on rated motor torque
Comparison value selection for
setting the digital output signal
MSET2=MACT (torque threshold 2
= actual torque value)
If the difference between
MCTRL1−MSET2 and
MCTRL1−MACT is within
C0253:
–MSET2=MACT = HIGH after
expiration of the time set in
C0255
C0252
*
(A)
Differential
threshold for
MSET1=MACT
0.0
0.0
{0.1 %}
100.0
C0253
*
(A)
Differential
threshold for
MSET2=MACT
0.0
0.0
{0.1 %}
100.0
C0254
*
(A)
Deceleration
MSET1=MACT
0.000
0.000
{0.001 s}
65.000
"Debouncing" of digital output
signal MSET1=MACT
Sets MSET1=MACT = HIGH if
the following still holds true
after expiration of the set time:
–Difference between
MCTRL1−MSET1 and
MCTRL1−MACT or C0250 is
within operating threshold
C0252
Transition HIGH  LOW
without deceleration
C0255
*
(A)
Deceleration
MSET2=MACT
0.000
0.000
{0.001 s}
65.000
"Debouncing" of digital output
signal MSET2=MACT
Sets MSET2=MACT = HIGH if
the following still holds true
after expiration of the set time:
–Difference between
MCTRL1−MSET2 and
MCTRL1−MACT is within
operating threshold C0253
Transition HIGH  LOW
without deceleration
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Function library
Code table
10
405
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0265
Motor
potentiometer
configuration
3
0
Starting value = power off
Starting value: output
frequency which is approached
with Tir (C0012) after mains
connection when the motor
potentiometer is activated:
–"Power off" = actual value
when the power is switched
off
–"C0010": minimum output
frequency from C0010. The
setpoint must have
exceeded C0010 previously.
–"0" = output frequency of 0
Hz
C0265 = 3, 4, 5:
–QSP also decelerates the
motor potentiometer along
the QSP ramp (C0105)
  307
1
Starting value = C0010
2
Starting value = 0
3
Staring value = power off
QSP if UP/DOWN = LOW
4
Starting value = C0010
QSP if UP/DOWN = LOW
5
Starting value = 0
QSP if UP/DOWN = LOW
C0304
Service codes
Alterations by Lenze service only!
...
C0309
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Function library
Code table
10
406
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0310
*
Functions for
special
applications 1
0
0
All functions switched off
A combination of functions can be
activated by entering the sum of
the selection values.
1
Behaviour in case of DC−bus
overvoltage
Function active:
Function switched−off:
TRIP "OUE" (Lecom no. 22) in case of
DC−bus overvoltage
Message "OU"
2
Threshold for message "DC−bus
undervoltage (LU)" (400 V
controllers only)
Function active:
Function switched−off:
Threshold = 400 V DC
Threshold = 285 V DC
4
Scaling for I2t monitoring
Function active:
Function switched−off:
Scaling to device utilisation (C0056)
Scaling to apparent current
(C0054)
8
Limitation to maximum frequency
(C0011)
Function active:
Function switched−off:
Limitation to maximum frequency
(C0011) inactive
Only use for applications with
parameter set changeover if the
parameter sets have different settings
for C0011!
Limitation to C0011 active
32
Behaviour of power−dependent
switching frequency reduction
Function active:
Function switched−off:
Switching frequency is reduced from
16 kHz to 8 kHz, after 8 kHz operation
for 1 s changeover to 4 kHz.
Switching frequency is
immediately reduced to 4 kHz.
64
Behaviour of the
temperature−dependent
switching frequency reduction
and the process controller output
Function active:
Function switched−off:
During operation at a switching
frequency of 16 kHz and if
C0144 = 0, temperature−dependent
switching frequency reduction to 4
kHz is not possible
During operation at a
switching frequency of 16 kHz,
reduction to 4 kHz is also
carried out if C0144 = 0
During operation with application
I/O, only the process controller
output is reset. The I component is
not reset.
During operation with
application I/O, the process
controller output and the I
component are reset.
128
Demagnetising time before the
DC injection brake is activated
Function active:
Function switched−off:
Up to a power of 2.2 kW = 1000 ms
From a power of 3 kW = 250 ms
Up to a power of 2.2 kW = 250 ms
From a power of 3 kW = 1000 ms
Function library
Code table
10
407
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0311
*
Functions for
special
applications 2
1
0
All functions switched off
A combination of functions can be
activated by entering the sum of
the selection values.
(C0156 from
software
version 3.1,
C0056 from
software
version 3.5)
1
Selection:
Reference variable for current
threshold C0156
Display value in C0056
Function active:
Function switched−off:
In the "V/f characteristic control"
operating mode
In the "V/f characteristic control"
operating mode:
C0156: rated controller current
C0156: rated controller current
C0056: device utilisation
(MCTRL−MOUT)
C0056: device utilisation
(MCTRL−MOUT)
In the "Vector control" or "Sensorless
torque control" operating mode:
In the "Vector control" or
"Sensorless torque control"
operating mode: rated motor
torque
C0156: rated controller current
C0156: rated motor torque
C0056: device utilisation
(MCTRL−MOUT)
C0056: actual torque value
(MCTRL-MACT)
(from software
version 3.1)
2
Influence of the S−ramp
Function active:
Function switched−off:
The S−ramp (C0182) does not affect the
quick stop ramp (C0105).
The S−ramp (C0182) also affects
quick stop.
(from software
version 3.5)
4
Selection of the flying restart
function
Function active:
Function switched−off:
Optimised flying restart function
active for two−pole motors
Standard flying restart function
active
(from software
version 3.7)
8
Delayed parameter set
changeover during operation
Function active:
Function switched−off:
Changeover between parameter sets
(as in software version 3.1) active
without delay
The first changeover between
parameter sets is carried out
without delay, any following
changeover will have a delay of 20
ms
16
Switch−on behaviour of the brake
transistor, depending on device
status TRIP
Function active:
Function switched−off:
The brake transistor is switched on if
the DC−bus voltage exceeds the brake
transistor threshold (C0174). It stays
switched off permanently if the TRIP
device status is active.
The brake transistor is also
switched on in the TRIP device
status if the DC−bus voltage
exceeds the brake transistor
threshold (C0174).
C0320
(A)
Actual process
controller value
(PCTRL1−ACT)
−650.00
{0.02
Hz}
650.00
Read only
C0321
(A)
Process
controller
setpoint
(PCTRL1−SET)
−650.00
{0.02
Hz}
650.00
Read only
C0322
(A)
Process
controller
output without
feedforward
control
(PCTRL1−OUT)
−650.00
{0.02
Hz}
650.00
Read only
Function library
Code table
10
408
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0323
(A)
Ramp function
generator
input (NSET1−
RFG1−IN)
−650.00
{0.02
Hz}
650.00 Read only
C0324
(A)
Ramp function
generator
output (NSET1−
NOUT)
−650.00
{0.02
Hz}
650.00
Read only
C0325
(A)
PID controller
output
(PCTRL1−PID−
OUT)
−650.00
{0.02
Hz}
650.00
Read only
C0326
(A)
Process
controller
output
(PCTRL1−NOUT)
−650.00
{0.02
Hz}
650.00
Read only
C0350
*
System bus
node address
1
1
{1}
63
Only for system bus function
module E82ZAFCC on the FIF
interface.
Change becomes effective
after "Reset−Node" command
Set the node address in C0009 for
operation with communication
modules 217x.
  375
C0351
*
System bus
baud rate
0
0
500 kbps
Only for system bus function
module E82ZAFCC on the FIF
interface.
Change becomes effective
after "Reset−Node" command
Set the baud rate in C0125 for
operation with communication
modules 217x.
  375
1
250 kbps
2
125 kbps
3
50 kbps
4
1000 kbps (function module
E82ZAFCC100 only)
5
20 kbps
C0352
*
Configuration
of system bus
node
0
0
Slave
Only for system bus function
module E82ZAFCC on the FIF
interface.
Change becomes effective
after "Reset−Node" command
  375
1
Master
C0353
*
System bus
address source
Only for system bus function
module E82ZAFCC on the FIF
interface.
Source of address for system
bus process data channels
  375
1 CAN1 (Sync)
0
0
C0350 is the source
Effective with sync control (C0360
= 1)
2
CAN2
0
1
C0354 is the source
3
CAN1 (time)
0
Effective with event or time
control (C0360 = 0)
C0354
*
Selective
system bus
address
0
{1}
513
Only for system bus function
module E82ZAFCC on the FIF
interface.
Single addressing of system
bus process data objects
  375
1
CAN−IN1 (sync)
129
Effective with sync control (C0360
= 1)
2
CAN−OUT1
(sync)
1
3
CAN−IN2
257
4
CAN−OUT2
258
5
CAN−IN1 (time)
385
Effective with event or time
control (C0360 = 0)
6
CAN−OUT1
(time)
386
Function library
Code table
10
409
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0355
*
System bus
identifier
0
{1}
2047
Only for system bus function
module E82ZAFCC on the FIF
interface.
Display only
  375
1
CAN−IN1
Identifier of CAN1 with sync
control (C0360 = 1)
2
CAN−OUT1
3
CAN−IN2
4
CAN−OUT2
5
CAN−IN1
Identifier of CAN1 with event or
time control (C0360 = 0)
6
CAN−OUT1
C0356
*
System bus
time settings
Only for system bus function
module E82ZAFCC on the FIF
interface.
  375
1
Boot−up
3000
0
{1 ms}
65000
Required for CAN interconnection
without master
2
CAN−OUT2
cycle time
0
0 = event−controlled process data
transfer
> 0 = cyclical process data transfer
3
CAN−OUT1
cycle time
0
0 and C0360 = 0: event−controlled
process data transfer
> 0 and C0360 = 1: cyclical process
data transfer
4
CAN delay
20
Waiting time until start of cyclical
transmission after boot−up
C0357
*
System bus
monitoring
times
Only for system bus function
module E82ZAFCC on the FIF
interface.
  375
1
CAN−IN1 (sync)
0
0
= monitoring
inactive
{1 ms}
65000
Active if C0360 = 1
TRIP CE1 with communication
fault
2
CAN−IN2
0
TRIP CE2 with communication
fault
3
CAN−IN1 (time)
0
Active if C0360 = 0
TRIP CE3 with communication
fault
C0358
*
Reset node
0
0
without function
Only for system bus function
module E82ZAFCC on the FIF
interface.
Configure system bus reset
nodal point
  375
1
System bus reset
C0359
*
System bus
status
0
Operational
Only for system bus function
module E82ZAFCC on the FIF
interface.
Display only
  375
1
Preoperational
2
Warning
3
Bus−off
C0360
*
Control process
data channel
CAN1
1
0
Event or time control
Only for system bus function
module E82ZAFCC on the FIF
interface.
1
Sync control
C0370
*
Activate
remote
parameterisati
on via system
bus (CAN)
0
deactivated
Only for system bus function
module E82ZAFCC on the FIF
interface.
Can only be read with all other
bus function module on FIF.
  233
  244
1...63
Activates the corresponding CAN
address
1 = CAN address 1
63 = CAN address 63
255
System bus (CAN) does not exist
Display only
Function library
Code table
10
410
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0372
*
Identification
function
module
0
No function module
Display only
1
Standard I/O or AS−i
2
System bus (CAN)
6
Other function module on FIF
e.g. Application I/O, INTERBUS, ...
10
No valid identification
C0395
*
LONGWORD
process input
data
Bits 0 ...
15
Control word of the controller
(mapping to C0135)
Only for bus operation
Transmission of control word
and main setpoint in one
telegram to the controller
Keypad: read only
(hexadecimal)
Bits 16
... 31
Setpoint 1 (NSET1−N1) (mapping to
C0046)
C0396
*
LONGWORD
process output
data
Bits 0 ...
15
Status word 1 of the controller
(mapping of C0150)
Only for bus operation
Reading of status word and
output frequency in one
telegram from the controller
Keypad: read only
(hexadecimal)
Bits 16
... 31
Output frequency (MCTRL1−NOUT)
(mapping of C0050)
C0409
Configuration −
relay output K2
Output of digital signals to relay K2
Relay output K2 only available
with 8200 vector 15 ... 90 kW
Only active during operation
with application I/O from
version E82ZAFA...XXVx2x
  348
255
255
Not assigned (FIXED−FREE)
Possible digital signals for C0409: see C0415
C0410
Free
configuration
of digital input
signals
Linking of digital signal sources to internal
digital signals
A selection in C0007 is copied to
the corresponding subcode of
C0410. A change in C0410 sets
C0007 = 255!
  343
1
NSET1−JOG1/3
NSET1−JOG1/3
/5/7 (A)
1
Digital input X3/E1
Selection of fixed
setpoints
C0410/1
C0410/
2
C0410/33
LOW
LOW
LOW
HIGH LOW
LOW
LOW
HIGH LOW
...
...
...
HIGH HIGH HIGH
Active
C0046
JOG1
JOG2
...
JOG7
2
NSET1−JOG2/3
NSET1−JOG2/3
/6/7 (A)
2
Digital input X3/E2
3
DCTRL1−CW/
CCW
4
Digital input X3/E4
CW = clockwise
rotation
CCW =
counter−clockwise
rotation
LOW
HIGH
4
DCTRL1−QSP
255
Not assigned (FIXED−FREE)
Quick stop (via terminal
LOW−active)
5
NSET1−RFG1−
STOP
255
Not assigned (FIXED−FREE)
Stop main setpoint of ramp
function generator
6
NSET1−RFG1−0
255
Not assigned (FIXED−FREE)
Set ramp function generator input
for main setpoint to "0"
7
MPOT1−UP
255
Not assigned (FIXED−FREE)
Motor potentiometer functions
8
MPOT1−DOWN
255
Not assigned (FIXED−FREE)
9
Reserved
255
Not assigned (FIXED−FREE)
Do not change 255!
10
DCTRL1−CINH
255
Not assigned (FIXED−FREE)
Controller inhibit (via terminal
LOW−active)
11
DCTRL1−TRIP−
SET
255
Not assigned (FIXED−FREE)
External fault (via terminal
LOW−active)
12
DCTRL1−TRIP−
RESET
255
Not assigned (FIXED−FREE)
Reset fault
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