59
MENU 7: ASSIGNMENT OF ANALOG INPUTS AND OUTPUTS
LEROY-SOMER
7.58
: ADI1 min. threshold
Adjustment range : 0 to 1.00
Factory setting
: 0
This parameter is a multiplication coefficient applied to the
max value of the ADI1 destination parameter. With an analog
input value of 0, it is used to obtain a different value from the
destination parameter min value.
Value 0 = (
7
7
.
.
5
5
8
8
x destination parameter max value) +
destination parameter min value.
Example: ADI1 is assigned to a parameter with an adjustment
range of 0 - 30000. If
7
7
.
.
5
5
8
8
= 0.01, 0 - 100% on ADI1
corresponds to 300 - 30000.
7.59
: ADI2 min. threshold
Adjustment range : 0 to 1.00
Factory setting
: 0
This parameter is a multiplication coefficient applied to the
max value of the ADI2 destination parameter. With an analog
input value of 0, it is used to obtain a different value from the
destination parameter min value.
Value 0 = (
7
7
.
.
5
5
9
9
x destination parameter max value) +
destination parameter min value.
Example: ADI2 is assigned to a parameter with an adjustment
range of 0 - 30000. If
7
7
.
.
5
5
9
9
= 0.01, 0 - 100% on ADI2
corresponds to 300 - 30000.
7.60
: ADIO3 min. threshold
Adjustment range : 0 to 1.00
Factory setting
: 0
This parameter is a multiplication coefficient applied to the
max value of the ADIO3 destination parameter. With an
analog input value of 0, it is used to obtain a different value
from the destination parameter min value.
Value 0 = (
7
7
.
.
6
6
0
0
x destination parameter max value) +
destination parameter min value.
Example: ADIO3 is assigned to a parameter with an
adjustment range of 0 - 30000. If
7
7
.
.
6
6
0
0
= 0.01, 0 - 100% on
ADIO3 corresponds to 300 - 30000.
Note:
This parameter only applies when ADIO3 is configured
as an input.
7.61
: Potentiometer min. threshold
Adjustment range : 0 to 1.00
Factory setting
: 0
This parameter is a multiplication coefficient applied to the
max value of the potentiometer input destination parameter.
With an analog input value of 0, it is used to obtain a different
value from the destination parameter min value.
Value 0 = (
7
7
.
.
6
6
1
1
x destination parameter max value) +
destination parameter min value.
Example: the potentiometer input is assigned to a parameter
with an adjustment range of 0 - 30000. If
7
7
.
.
6
6
1
1
= 0.01, 0 -
100% on the potentiometer input corresponds to 300 - 30000.
7.62
:Potentiometer input scaling
Adjustment range : 0 to 2.50
Factory setting
: 1.00
These parameters are used, if necessary, to scale the
potentiometer input. This rarely proves necessary since the
maximum input level automatically corresponds to the max.
value of the destination parameter.
7.63
:Potentiometer input invert
Adjustment range : 0 or 1
Factory setting
: 0
This parameter is used to invert the polarity of the
potentiometer input.
0 (OFF): Input not inverted.
1 (On):
Input inverted.
7.64
:Potentiometer input destination
Adjustment range :
0
0
.
.
0
0
0
0
to
2
2
1
1
.
.
5
5
1
1
Factory setting
:
0
0
.
.
0
0
0
0
Used to define the destination for the reference from the
potentiometer. With the local control option, the destination of
the potentiometer input is assigned to parameter
1
1
.
.
3
3
6
6
(analog reference 1).
In this case,
1
1
.
.
3
3
6
6
is unassigned from
7
7
.
.
1
1
0
0
(analog input 1).
The destination can then be modified at any time by the user.
In this case,
1
1
.
.
3
3
6
6
can then be assigned to another analog
input.
7.65
:PTC status
Adjustment range : 0 or 1
Indicates the status of the PTC sensor.
0 :
PTC not tripped.
1 :
PTC tripped.
7.66
:Internal braking resistor temperature
Adjustment range : 0 to 200.0 °C
Indicates the temperature measured on the braking resistor.
The drive passes into the trip state when the temperature
reaches 110°C and can be reinitialised when the temperature
falls back below 100°C.
7.67
:Local control potentiometer input
Adjustment range : 0 to 100.0%
Used to read the value of the potentiometer input from the
local controls.
7
7
.
.
5
5
8
8
7
7
.
.
5
5
9
9
7
7
.
.
6
6
0
0
7
7
.
.
6
6
1
1
7
7
.
.
6
6
2
2
7
7
.
.
6
6
3
3
7
7
.
.
6
6
4
4
7
7
.
.
6
6
5
5
7
7
.
.
6
6
6
6
7
7
.
.
6
6
7
7
Содержание PROXIDRIVE
Страница 8: ...8 ADVANCED USER GUIDE PROXIDRIVE IP66 variable speed drive LEROY SOMER 3756 en 05 2004 b Notes ...
Страница 24: ...24 ADVANCED USER GUIDE PROXIDRIVE IP66 variable speed drive MENU 2 RAMPS LEROY SOMER 3756 en 05 2004 b Notes ...
Страница 104: ...104 ADVANCED USER GUIDE PROXIDRIVE IP66 variable speed drive MENU 15 RESERVED LEROY SOMER 3756 en 05 2004 b Notes ...
Страница 121: ...121 ADVANCED USER GUIDE PROXIDRIVE IP66 variable speed drive OPERATION WITH MODBUS RTU LEROY SOMER 3756 en 05 2004 b ...
Страница 122: ...122 ADVANCED USER GUIDE PROXIDRIVE IP66 variable speed drive OPERATION WITH MODBUS RTU LEROY SOMER 3756 en 05 2004 b ...
Страница 123: ......
Страница 124: ......