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The Okuma MIV06-3-V5 unit is a high-performance component categorized under the MIV Series. This device operates with a power rating of 6.0 kW and is equipped with an ICB3 inverter control board, utilizing a Type 5 control ROM for efficient functionality.
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| Manufacturer | Okuma |
|---|---|
| Product Line | MIV Series |
| Part Number | MIV06-3-V5 |
| Weight | 1.13 lbs (0.51 kg) |
| Power Rating | 6.0 kW |
| Control Board | ICB3 inverter control board |
| Control ROM Type | Type 5 |
| Mounting Type | Rack-mounted |
| Input Voltage | 200 VAC |
| Phase | 3-Phase |
| Cooling Method | Forced air cooling |
| Protection Features | Overcurrent, overvoltage, and thermal protection |
| Status Indicators | LED Indicators |
| Standards Compliance | Adheres to industrial safety and performance standards |
| Motor Type | VAC/ IPM Motor |
| Ambient Temperature during Operation | -25 to 55 °C |
The part number MIV06-3-V5 from Okuma's MIV Series is designed for industrial applications that demand reliable motor control. With a compact footprint of 380 mm x 100 mm x 325 mm, it is optimized for rack mounting and weighs just 2.43 pounds. The unit performs optimally with a power capability of 6.0 kW.
This device employs an ICB3 inverter control board, paired with a Type 5 control ROM, to deliver precise control over motor functions. To function efficiently, it requires an input voltage of 200 VAC and operates on a three-phase power supply. The ambient temperature range for reliable operation spans from -25 to 55 °C, enabling it to suit a variety of environmental conditions.
For thermal management, forced air cooling is employed, ensuring optimal performance during extended use. Additional features include comprehensive protection against overcurrent, overvoltage, and thermal events, safeguarding the unit's operation. Status is readily available through LED indicators, providing instant feedback on the system's condition. Adhering to recognized industrial safety and performance standards, the MIV06-3-V5 is engineered to meet rigorous operational demands while facilitating effective motor control.