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31
Connection Power Unit R6-N
4.4
Connection Power Unit R6-N
4.4.1
Power supply and regenerative operation at inverter current ≤ current of one COMBIVERT R6-N
L1’
L2’
L2
L3’
L1
L3
L1.2
L2.2
L2.1
L3.2
L1.1
L3.1
L2
L1
L3
++
++
- -
L22
- -
L12
L32
1
2
4
5
8
6
3
10
++/+PA
- - / -
PE
W
V
U
PE
10
11
Figure 15:
Power supply and regenerative operation at inverter current ≤ current of one
COMBIVERT R6-N
4.4.2
Power supply and regenerative operation at inverter current ≤ current of one COMBIVERT R6-N
L2
L1
L3
2
1
PE
L1’
L2’
L2
L3’
L1
L3
L1.2
L2.2
L2.1
L3.2
L1.1
L3.1
++
++
- -
L22
- -
L12
L32
3
4
5
9
8
6
11
7
11
++/
+PA
- -/
-
++/
+PA
- -/
-
PE
U V W
PE
U V W
10
10
10
10
1
Mains fuse type gR
5
COMBIVERT R6-N with DC fuses
2)
9
Frequency inverter
(FI type A1…C2 possi-
ble)
2
Line contactor with protec-
tive wiring
6
DC fuses type aR/gR
1) 2)
3
Radio interference filter E6
7
DC fuses type aR/gR
2)
10 Ferrite (optional)
4
Commutation reactor /
harmonic filter
8
Frequency inverter with I
N(8)
≥ I
N(9)
(FI type A1…C2 possible)
11 Motor
1)
The cable cross-section may not be smaller than 10 mm². It must be dimensioned for the DC rated cur-
rent of the load. Otherwise appropriate fuses in the DC bus (6) are required. The indicated maximum
protection for the connected frequency inverter must be observed !
2)
If R6 units without internal DC-fusing are used, fuses in accordance with annex B.1.2 must be used
to be conform according to UL. The specified fuses there refer to a maximum fusing of the R6 units.
Smaller fuses according to the connected inverter can be done with fuses of the same type.
Connection clockwise rotating field required !
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Содержание Combivert R6
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