5
-4
User Constants Settable in Quick Programming Mode
The minimum user constants required for Inverter operation can be monitored and set in quick programming
mode. The user constants displayed in quick programming mode are listed in the following table. These, and
all other user constants, are also displayed in advanced programming mode.
Refer to the overview of modes on page 3-4 for an overview of quick programming mode.
Con-
stant
Number
Name
Description
Setting
Range
Factory
Setting
Change
during
Opera-
tion
Control Methods
MEMO
BUS
Regis-
ter
V/f
V/f
with
PG
Open
Loop
Vec-
tor
Flux
Vec-
tor
A1-02
Control
method
selection
Used to select the control method for
the Inverter
0: V/f control
1: V/f with PG
2: Open loop vector
This constant is not initialized by the
initialize operation.
0 to 2
0
No
Q
Q
Q
Q
102H
0 to 3
b1-01
Reference
selection
Set the frequency reference input
method.
0: Digital Operator
1: Control circuit terminal (analog
input)
2: MEMOBUS communications
3: Option board
4: Pulse train input
0 to 4
1
No
Q
Q
Q
Q
180H
b1-02
Operation
method
selection
Set the Run Command input
method.
0: Digital Operator
1: Control circuit terminal
(sequence input)
2: MEMOBUS communications
3: Option board
0 to 3
1
No
Q
Q
Q
Q
181H
b1-03
Stopping
method
selection
Used to set the stopping method
used when a Stop Command is input.
0: Deceleration to stop
1: Coast to stop
2: DC injection braking stop (Stops
faster than coast to stop, no
regenerative operation.)
3: Coast to stop with timer (Run
Commands are disregarded
during deceleration.)
0 to 3
*1
0
No
Q
Q
Q
Q
182H
C1-01
Accelera-
tion time 1
Sets the acceleration time to acceler-
ate from 0 to the maximum output
frequency, in 1-second units.
0.0 to
6000.0
*2
10.0 s
Yes
Q
Q
Q
Q
200H
C1-02
Decelera-
tion time 1
Sets the deceleration time to deceler-
ate from the maximum output fre-
quency to 0, in 1-second units.
Yes
Q
Q
Q
Q
201H
C6-01
CT/VT
selection
0: CT (low carrier, constant torque,
150% per minute)
1: VT (high carrier, variable torque,
120% per minute)
0 or 1
1
*3
No
Q
Q
Q
Q
223H
0
*3
3: Flux vector