Output voltage (depending
on the country setting)
Nominal output voltage
Max. output current
Max. inrush current
RMS short-circuit current
Nominal output current
Nominal output
Max. apparent power
Nominal frequency
Network type
Mains frequency (depend-
ing on the country setting)
Power loss in night mode
Feed-in phases
Harmonic distortion (cos φ
= 1)
cos φ power factor
Characterisation of the operating behaviour
Max. efficiency
European efficiency
MPP efficiency
Own consumption
Power de-rating at full
power from
Switch-on power
Breaking capacity
Max. efficiency
European efficiency
MPP efficiency
Own consumption
Power de-rating at full
power from
Switch-on power
Breaking capacity
Safety
Protection class
Partitioning principle
Network monitoring
Insulation monitoring
Residual current monitor-
ing
Polarity protection
0020273404_00 VPV I Installation and maintenance instructions
VPV I 6000/1 400V
320 ... 480 V
400 V
≤ 10 A
16 A (for 10 ms)
3.82 A
(for 60 ms)
RMS
8.7 A
6,000 W
6,000 V⋅A
–
50 Hz
–
60 Hz
L
/L
/L
/N/FE (functional earth)
1
2
3
45 ... 65 Hz
< 3 W
Three-phase
< 1%
0.8 capacitive; 0.8 inductive
VPV I 3000/1 400V
≤ 98.6 %
97.9 %
> 99.0% dynamic; > 99.8% static
< 8 W
50 °C
TAMB
10 W
8 W
VPV I 6000/1 400V
≤ 98.7 %
98.3 %
> 99.0% dynamic; > 99.8% static
< 8 W
45 °C
TAMB
10 W
8 W
VPV I 3000/1 400V
II
No galvanic partitioning, trans-
formerless
Yes, integrated
Yes, integrated
Yes, integrated (by design, the
inverter cannot cause a DC fault)
Yes
VPV I 4000/1 400V
≤ 98.6 %
98.1 %
> 99.0% dynamic; > 99.8% static
< 8 W
50 °C
TAMB
10 W
8 W
VPV I 4000/1 400V
II
No galvanic partitioning, trans-
formerless
Yes, integrated
Yes, integrated
Yes, integrated (by design, the
inverter cannot cause a DC fault)
Yes
Appendix
VPV I 5000/1 400V
≤ 98.7 %
98.2 %
> 99.0% dynamic; > 99.8% static
< 8 W
50 °C
TAMB
10 W
8 W
VPV I 5000/1 400V
II
No galvanic partitioning, trans-
formerless
Yes, integrated
Yes, integrated
Yes, integrated (by design, the
inverter cannot cause a DC fault)
Yes
39