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Operation and installation manual SOLIVIA 5.0 AP G3
Potential isolation
No conductive connection between two component parts.
Power dissipation
Power dissipation is designated as the difference between absorbed power and power of a device
or process yielded. Power dissipation is released mainly as heat.
PV cell
PV cells are large-surface photodiodes which convert light energy (generally sunlight) into electrical
energy. This comes about by utilization of the photoelectric effect (photovoltaics).
PV generator
System comprising a number of PV modules.
PV module
Part of a PV generator; converts PV energy into electrical energy.
RJ45
Abbreviation for standardized eight-pole electrical connector connection. RJ stands for Registered
Jack (standardized socket).
RS485 (EIA485)
Differential voltage interface on which the genuine signal is transmitted on one core and the ne-
gated (or negative) signal on the other core.
Separate grid system
Energy supply equipment which is completely independent of an interconnected grid.
Solar inverter
is an electrical device which converts DC direct voltage into AC voltage and/or direct current into
alternating current.
String
Designates a group of electrical PV modules switched in series.
String solar inverter (solar inverter concept)
The PV generator is divided up into individual strings which feed into the grid over their own string
solar inverters in each case. In this way, the installation is considerably facilitated and the gain de-
crease, which can arise from the installation or from different shading conditions of the PV modules,
is considerably reduced.
TAB (2000)
The TAB 2000 are the technical regulations governing connection to the low-voltage grid operated
by distribution system operators in Germany. These Technischen Anschlussbestimmungen or TAB
for short have been in force since the year 2000. They define the requirements imposed by DSOs
on the electrical systems operated by the end customers of utility companies.
Summary of Contents for SOLIVIA 5.0 AP G3
Page 1: ...Operation and installation manual for SOLIVIA 5 0 AP G3 5 0 AP...
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Page 42: ...40 SOLIVIA 5 0 AP G3 1 SOLIVIA 5 0 AP G3 AC 2 SOLIVIA 5 0 AP G3 9 18kg 5...
Page 43: ...41 SOLIVIA 5 0 AP G3 3 12 IP65 4 MPP 4 1 PC...
Page 44: ...42 SOLIVIA 5 0 AP G3 4 2 DC AC MPP MPP 150V 450V 540 VDC IP65 25 C 60 C RS485 EMC 4 6kVA...
Page 45: ...43 SOLIVIA 5 0 AP G3 4 3 1 2 3 RS485 EIA485 4 5 LED 1 4 5 2 3...
Page 53: ...51 SOLIVIA 5 0 AP G3 6 9 MPP DC DC DC DC DC A AC B C D 51 SOLIVIA 5 0 AP G3...
Page 68: ...66 SOLIVIA 5 0 AP G3 10 10 1 400 220V 400 230 V VNB Z 1 Z 2 1 2 400 220 V 400 230 V 4 6kVA...
Page 69: ...67 SOLIVIA 5 0 AP G3 400 220V 400 230 V VNB Z 1 Z 2 1 2 3 400 220 V 400 230 V 4 6kVA...
Page 71: ...69 SOLIVIA 5 0 AP G3 DC 1 2 3 L1 N PE L2 N PE L3 N PE L1 N n PE L2 L3 Solivia 5 0...
Page 73: ...71 SOLIVIA 5 0 AP G3 RJ45 8 RJ Registered Jack RS485 EIA485 DC AC TAB 2000 TAB 2000 2000 DSO...
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Page 79: ...77 SOLIVIA 5 0 AP G3 3 12 IP65 4 4 1 4 2 MPP Tracking 150V 450V 540V IP65 25 C 60 C...
Page 80: ...78 SOLIVIA 5 0 AP G3 4 3 1 2 3 RS485 EIA485 4 5 LED RS485 EMC 4 6 kVA 4 3 1 4 5 2 3...
Page 88: ...86 SOLIVIA 5 0 AP G3 6 9 1 2 3 Wieland 4 5 6 7 UPV 150V 8 S Setup 7 3 7 6 9...
Page 103: ...101 SOLIVIA 5 0 AP G3 10 10 1 400 220 400 230 VNB Z 1 Z 2 1 2 400 220 400 230 4 6...
Page 104: ...102 SOLIVIA 5 0 AP G3 VNB Z 1 Z 2 Z 3 400 220 400 230 400 220 400 230 4 6 1 2 3...
Page 106: ...104 SOLIVIA 5 0 AP G3 1 2 3 L1 N PE L2 N PE L3 N PE L1 N n PE L2 L3 Solivia 5 0...
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Page 116: ...114 SOLIVIA 5 0 AP G3 4 3 1 4 5 2 3 RS485 EMC 4 6 kVA 1 2 3 RS485 EIA485 4 5 LED...
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Page 141: ...139 SOLIVIA 5 0 AP G3 1 2 3 L1 N PE L2 N PE L3 N PE L1 N n PE L2 L3...
Page 143: ...141 SOLIVIA 5 0 AP G3 RJ45 RJ RS485 ELA485 TAB 2000 TAB 2000 TAB 2000 DSO...
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