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The Mitsubishi FRA7CN08 external heat sink is designed to efficiently dissipate heat for the A700 Series of variable frequency drives (VFDs). This heat sink supports a 460 VAC voltage and is rated for a maximum power output of 150 HP (112 kW), making it suitable for high-performance applications in 3-phase systems.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | FREQROL FR-A7 |
| Part Number | FRA7CN08 |
| Weight | 3.00 lbs (1.36 kg) |
| Product | External Heat Sink |
| Compatibility | A700 Series |
| Purpose | Heat Sink for VFD/Inverter |
| VFD/Inverter Voltage | 460 VAC |
| VFD/Inverter Power (HP) | 150 HP |
| VFD/Inverter Power (kW) | 112 kW |
| VFD/Inverter Phase | 3-phase |
| VFD/Inverter Current | 216 Amps |
| Operating and Storage Environment | No corrosive gases |
| Min. Ambient Operating Temp. | 0°C |
| Max. Ambient Operating Temp. | 55°C |
| Min. Ambient Storage Temp. | -10°C |
| Max. Ambient Storage Temp. | 75°C |
| Min. Ambient Operating Humidity | 10% RH (without condensation) |
| Max. Ambient Operating Humidity | 90% RH (without condensation) |
The FRA7CN08 by Mitsubishi is an external heat sink optimized for the FREQROL FR-A7 series, specifically for the A700 Series of frequency inverters. It is designed to dissipate heat effectively and is rated for a voltage of 460 VAC. This component is crucial for maintaining the efficiency and longevity of the VFDs, rated at a substantial power level of 150 HP, which translates to 112 kW.
This heat sink operates in 3-phase systems and can handle a maximum current of 216 Amps, ensuring that it meets demands in industrial applications. Functionality extends across diverse temperature conditions, with a minimum operating temperature of 0°C and a ceiling of 55°C. Furthermore, this unit is built with specific environmental considerations, as it is unsuitable for areas exposed to corrosive gases.
The heat sink can withstand temperatures from -10°C to 75°C for storage, providing flexibility in various storage situations. The ambient humidity levels for operation range from a minimum of 10% to a maximum of 90% RH, provided there is no condensation. This extensive tolerance for temperature and humidity ensures reliable performance in various operational contexts.