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Panasonic Inverter BFV00072G
Product Description and Specifications:
1) In the 200 V class part numbers a suffix “D” means there is no brake (no circuit and resister) and a suffix “G” means there is a brake (0.75 and 1.5 kW: built-in circuit and resistor: 0.4 kW: circuit is built in and resister is included by installed externally). All of the 400 V class have a built in brake circuit (Brake resistor is an externally installed dedicated option.).
2) The rated output current for the 200 V class indicates that the carrier frequency is 10 kHz or lower. Please use after reducing the rating to 95% when 12.5 kHz and to 90% when 15 kHz.
3) The rated output current 3.7 kW for the 400 V class indicates that the carrier frequency is 7.5 kHz or lower. Please use after reducing the rating to 90% when 10 kHz.
4) Regarding the rated output capacity: The 200 V class indicates that the output voltage is 230 V. The 400 V class indicates that the output voltage is 460 V.
5) Power supply capacity depends on power supply impedance. It should equal or exceed the capacity specified above.
BFV00072G Panasonic Inverter New in boxPanasonic Inverter BFV00072G
Product Description and Specifications:
1) In the 200 V class part numbers a suffix “D” means there is no brake (no circuit and resister) and a suffix “G” means there is a brake (0.75 and 1.5 kW: built-in circuit and resistor: 0.4 kW: circuit is built in and resister is included by installed externally). All of the 400 V class have a built in brake circuit (Brake resistor is an externally installed dedicated option.).
2) The rated output current for the 200 V class indicates that the carrier frequency is 10 kHz or lower. Please use after reducing the rating to 95% when 12.5 kHz and to 90% when 15 kHz.
3) The rated output current 3.7 kW for the 400 V class indicates that the carrier frequency is 7.5 kHz or lower. Please use after reducing the rating to 90% when 10 kHz.
4) Regarding the rated output capacity: The 200 V class indicates that the output voltage is 230 V. The 400 V class indicates that the output voltage is 460 V.
5) Power supply capacity depends on power supply impedance. It should equal or exceed the capacity specified above.
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