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situation, the grid quality, the surrounding walls and the properties of the room
in general.
EMC measures
In certain cases, even though a device complies with the standard limit values for
emissions, it may affect the application area for which it was designed (e.g. when
there is sensitive equipment at the same location, or if the site where the device
is installed is close to either radio or television receivers). If this is the case, then
the operator is obliged to take appropriate action to rectify the situation.
Backup power
This system has backup power functions. This enables a replacement power sup-
ply to be established in the event of a failure in the public grid.
Where an automatic backup power supply is installed, a
(https://www.fronius.com/en/search-page, item number: 42,0409,0275)
must be fitted on the electrical distributor.
Maintenance and installation work in the home network requires both disconnec-
tion on the utility side and deactivation of the replacement power mode by open-
ing the integrated DC disconnector on the inverter.
Depending on the insolation conditions and the battery state of charge, the
backup power supply is automatically deactivated and activated. This can cause
the backup power supply to unexpectedly return from standby mode. Therefore,
installation work can only be performed on the home network when the backup
power supply is deactivated.
Influencing factors on the total power in backup power mode:
Reactive power
Electrical loads with a power factor not equal to 1 also require reactive power in
addition to effective power. The reactive power also loads the inverter. Therefore,
to correctly calculate the actual total power, it is not the rated power of the load
that is relevant, but the current caused by effective and reactive power.
Devices with a high reactive power are mainly electric motors such as:
-
Water pumps
-
Circular saws
-
Blowers and fans
High starting current
Electrical loads that need to accelerate a large mass usually require a high start-
ing current. This can be up to 10 times higher than the nominal current. The max-
imum current of the inverter is available for the starting current. Loads with too
high starting currents therefore cannot be started/operated, even though the
nominal power of the inverter suggests that they can. When dimensioning the
backup power circuit, the connected load power and any starting current must
also be taken into account.
Devices with high starting currents are, for example:
-
Devices with electric motors (e.g. lifting platform, circular saws, planing
bench)
-
Devices with large transmission ratio and flywheel mass
-
Devices with compressors (e.g. compressed air compressors, air conditioning
systems)
IMPORTANT!
Very high starting currents can cause short-term distortion or a drop in output
10
Содержание Primo GEN24 3.0
Страница 2: ......
Страница 7: ...Dimensions of the inverter 187 Fronius Primo GEN24 3 6 kW 189 Fronius Primo GEN24 3 6 kW 189 7 EN...
Страница 12: ...12...
Страница 13: ...General information 13...
Страница 14: ...14...
Страница 18: ...Fronius recommends testing the Internet connection on site according to the minimum requirements 18...
Страница 34: ...34...
Страница 35: ...Backup power variant PV Point OP 35...
Страница 36: ...36...
Страница 38: ...38...
Страница 39: ...Backup power variant Full Backup 39...
Страница 40: ...40...
Страница 48: ...48...
Страница 49: ...Installation 49...
Страница 50: ...50...
Страница 57: ...Do not install the inverter on the ceiling 57 EN...
Страница 101: ...Settings user interface of the in verter 101...
Страница 102: ...102...
Страница 132: ...132...
Страница 133: ...Options 133...
Страница 134: ...134...
Страница 143: ...2 Set the DC disconnector to the On switch position Switch on the auto matic circuit breaker 143 EN...
Страница 144: ...144...
Страница 145: ...Appendix 145...
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Страница 173: ...Circuit diagrams 173...
Страница 174: ...174...
Страница 175: ...Circuit Diagram PV Point OP Circuit Diagram 175 EN...
Страница 176: ...Fronius Primo GEN24 and BYD Battery Box Premium HV Circuit Diagram 176...
Страница 177: ...Fronius Primo GEN24 with two BYD Battery Box Premium HV connected in parallel Circuit Diagram 177 EN...
Страница 178: ...Fronius Primo GEN24 with three BYD Battery Box Premium HV connected in parallel Circuit Diagram 178...
Страница 179: ...Automatic switch to backup power 1 pin double separation e g Austria Circuit Diagram 179 EN...
Страница 180: ...Automatic switch to backup power 1 pin single separation e g Australia Circuit Diagram 180...
Страница 181: ...Automatic switch to backup power 2 pin double separation e g Germany Circuit Diagram 181 EN...
Страница 182: ...Automatic switch to backup power 2 pin single separation e g France Spain Circuit Diagram 182...
Страница 183: ...Automatic switch to backup power 2 pin double separation e g UK Circuit Diagram 183 EN...
Страница 185: ...Fronius Primo GEN24 with Enwitec Box Circuit Diagram 185 EN...
Страница 186: ...Wiring diagram surge protective device SPD Circuit Diagram 186...
Страница 187: ...Dimensions of the inverter 187...
Страница 188: ...188...
Страница 189: ...Fronius Primo GEN24 3 6 kW Fronius Primo GEN24 3 6 kW 189 EN...
Страница 190: ...190...
Страница 191: ...191 EN...
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