Danfoss VLT HVAC Basic Drive FC 10 Quick Manual page 15

Table of Contents

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Quick Guide
1
1
The FC 101 Start-up Wizard for Open Loop Applications
No & Name
0-03 Regional Settings
1-20 Motor power
1-22 Motor Voltage
1-23 Motor Frequency
1-24 Motor Current
1-25 Motor Nominal Speed
4-12 Motor Speed Low Limit [Hz]
4-14 Motor Speed High Limit [Hz]
3-41 Ramp 1 Ramp up time
3-42 Ramp 1 Ramp down time
1-73 Flying Start
6-19 Terminal 53 mode
6-10 Terminal 53 Low Voltage
6-11 Terminal 53 High Voltage
6-12 Terminal 53 Low Current
6-13 Terminal 53 High Current
3-02 Minimum Reference
3-03 Maximum Reference
5-40 Function Relay [0] Function relay See 5-40 Function Relay No function Select the function to control output relay 1
5-40 Function Relay [1] Function relay See 5-40 Function Relay No function Select the function to control output relay 2
1-29 Automatic Motor Adation
14
VLT HVAC Basic Drive FC 101 Quick Guide
Range
Default
[0] International
0
[1] US
0.12-110kW/0.16-150Hp Size related Enter motor power from nameplate data
50.0 - 1000.0V
Size related Enter motor voltage from nameplate data
20.0 - 400.0Hz
Size related Enter motor frequency from nameplate data
0.01 - 10000.00A
Size related Enter motor current from nameplate data
100.0 - 9999.0 RPM
Size related Enter motor nominal speed from nameplate data
0.0 - Hz
0 Hz
0.0 - Hz
65 Hz
0.05 - 3600.0 s
3
0.05 - 3600.0 s
3
[0] Disabled
0
[1] Enabled
[0] Current
1
[1] Voltage
0-10V
0.07V
0-10V
10V
0-20mA
4
0-20mA
20
-4999-4999
0
-4999-4999
50
Off
®
MG.18.A1.02 - VLT
is a registered Danfoss trademark
Function
Enter the minimum limit for low speed
Enter the maximum limit for high speed
Ramp up time from 0 to rated motor frequency par. 1-23
Ramp down time from rated motor frequency par. 1-23 to 0
Select Enable to enable the drive to catch a spinning motor
Select if terminal 53 is used for current- or voltage input
Enter the voltage that corresponds to the low reference value
Enter the voltage that corresponds to the high reference value
Enter the current that corresponds to the low reference value
Enter the current that corresponds to the high reference value
The minimum reference is the lowest value obtainable by
summing all references
The maximum reference is the lowest obtainable by summing all
references
Performing an AMA optimizes motor performance

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