Product image is representative; revision or series may vary. Contact us to request a specific version.
The Mitsubishi FR-F746-00052-EC is a three-phase drive designed for variable torque applications such as pumps and fans. It operates efficiently at supply voltages of 400/415 VAC and has a power rating of 2.2 kW.
We sell industrial automation parts backed by our free 2-Year DO Supply Warranty.
Same-day domestic and fast international shipping with UPS, FedEx, DHL, and more.
AMEX, Visa, MasterCard, Discover, wire transfer, net terms, and more.
Repairs and exchanges are available for all automation products.
Drop shipping, blind shipping, and account shipping with no extra fees.
| Manufacturer | Mitsubishi |
|---|---|
| Product Line | FREQROL FR |
| Part Number | FR-F746-00052-EC |
| Supply Voltage | 400/415 VAC |
| Power Rating (kW) | 2.2 kW |
| Current (Amps) | 5.2 A |
| IP Rating | IP54 |
| Number of Phases | Three Phase |
| Duty | Variable Torque |
| Communication Protocol | RS485 |
| EMC Filter | Built-in |
| Input Voltage | 380-480V |
| Best for Use With | Pumps & Fans |
The FR-F746-00052-EC model by Mitsubishi is a variable torque drive tailored for demanding applications such as pumps and fans. This three-phase unit operates at supply voltages of 400 or 415 VAC, ensuring versatility for various electrical systems. It delivers a notable power rating of 2.2 kW while managing a current of 5.2 A, providing reliable performance in its operational environment.
With an input voltage range of 380-480V, this drive adapts to numerous setups. It features an integrated EMC filter that provides enhanced electromagnetic compatibility, minimizing interference with other electrical devices. Users benefit from its RS485 communication protocol, which facilitates seamless integration into existing control systems.
The IP54 rating highlights resistance against dust and moisture, contributing to prolonged durability in industrial settings. This model is specifically engineered for applications requiring variable torque, affirming its ideal placement in processes involving fluid movement and ventilation.