Amount Of Heat Generated By The Inverter; Cooling System Types For Inverter Enclosure - Mitsubishi Electric FR-A872-P Instruction Manual

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Especially when impacts are applied repeatedly, caution must be taken because such impacts may break the installation feet.
 Countermeasure
• Provide the enclosure with rubber vibration isolators.
• Strengthen the structure to prevent the enclosure from resonance.
• Install the enclosure away from the sources of the vibration.
2.3.2

Amount of heat generated by the inverter

When the heat sink is installed inside the enclosure, the amount of heat generated by the inverter unit and converter unit is
shown in the following tables.
Converter
FR-CC2-N[]-P
450K
500K
560K
Inverter
FR-A872-[]-P
05690
06470
07150
NOTE
• The amount of heat generated shown assumes that the output current is the inverter rated current for parallel operation, and
the carrier frequency is 2 kHz.
2.3.3

Cooling system types for inverter enclosure

From the enclosure that contains the inverter, the heat of the inverter and other equipment (transformers, lamps, resistors, etc.)
and the incoming heat such as direct sunlight must be dissipated to keep the in-enclosure temperature lower than the
permissible temperatures of the in-enclosure equipment including the inverter.
The cooling systems are classified as follows in terms of the cooling calculation method.
• Cooling by natural heat dissipation from the enclosure surface (totally enclosed type)
• Cooling by heat sink (aluminum fin, etc.)
• Cooling by ventilation (forced ventilation type, pipe ventilation type)
• Cooling by heat exchanger or cooler (heat pipe, cooler, etc.)
28
2. INSTALLATION AND WIRING
2.3 Installation of the inverter and enclosure design
Amount of heat generated (W)
690 V input
2960
3140
3470
Amount of heat generated (W)
690 V input
5310
4790
5790
5230
6450
5850
575 V input
2950
3130
3460
575 V input

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