
VLT
®
6000 HVAC
82
★ = factory setting. ( ) = display text [ ] = value for use in communication via serial communication port
MG.60.B1.02 - VLT is a registered Danfoss trade mark
NB!
It is important that the values set in parameters
102-106 Nameplate data correspond to the
nameplate data of the motor with respect to either
star coupling Y or delta coupling ∆.
102 Motor power, P
M,N
(MOTOR POWER)
Value:
0.25 kW (0.25 KW) [25]
0.37 kW (0.37 KW) [37]
0.55 kW (0.55 KW) [55]
0.75 kW (0.75 KW) [75]
1.1 kW (1.10 KW) [110]
1.5 kW (1.50 KW) [150]
2.2 kW (2.20 KW) [220]
3 kW (3.00 KW) [300]
4 kW (4.00 KW) [400]
5,5 kW (5.50 KW) [550]
7,5 kW (7.50 KW) [750]
11 kW (11.00 KW) [1100]
15 kW (15.00 KW) [1500]
18.5 kW (18.50 KW) [1850]
22 kW (22.00 KW) [2200]
30 kW (30.00 KW) [3000]
37 kW (37.00 KW) [3700]
45 kW (45.00 KW) [4500]
55 kW (55.00 KW) [5500]
75 kW (75.00 KW) [7500]
90 kW (90.00 KW) [9000]
110 kW (110.00 KW) [11000]
132 kW (132.00 KW) [13200]
160 kW (160.00 KW) [16000]
200 kW (200.00 KW) [20000]
250 kW (250.00 KW) [25000]
300 kW (300.00 KW) [30000]
★ Depends on the unit
Function:
This is where to select the kW value P
M,N
that
corresponds to the rated power of the motor.
At the works, a rated kW value P
M,N
has been selected
that depends on the type of unit.
Description of choice:
Select a value that equals the nameplate data on the
motor. There are 4 possible undersizes or 1 oversize
in comparison with the factory setting.
Also, alternatively it is possible to set the value for
motor power as an
infinitely variable value, see the
procedure on page 73.
103 Motor voltage, U
M,N
(MOTOR VOLTAGE)
Value:
200 V [200]
208 V [208]
220 V [220]
230 V [230]
240 V [240]
380 V [380]
400 V [400]
415 V [415]
440 V [440]
460 V [460]
480 V [480]
500 V [500]
★ Depends on the unit
Function:
This is where the rated motor voltage U
M,N
is set for
either star Y or delta ∆.
Description of choice:
Select a value that equals the nameplate data on the
motor, regardless of the mains voltage of the VLT
frequency converter.
Furthermore, alternatively it is possible to set the value
of the motor voltage
infinitely variably, see also the
procedure on page 73.
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