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The MRH15KBS72P52, part of Mitsubishi's MELSERVO MR-H series, is an AC servo amplifier with a substantial power capacity of 15 kW and a voltage rating of 200V AC. This unit includes an intuitive regenerative braking capability, enhancing operation efficiency and control.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | AC Servo Amplifier |
| Product Line | MELSERVO MR-H |
| Part Number | MRH15KBS72P52 |
| Weight | 32.00 lbs (14.51 kg) |
| Voltage Rating | 200V AC |
| Power Capacity | 15 kW |
| Brake Feature | Integrated regenerative braking |
| Torque Adjustment | Configurable via analog input or parameter tuning |
| Network Interface | SSC-compatible communication protocol |
| Encoder Support | Compatible with absolute position encoders |
| Operating Temperature Range | 0°C to 55°C (non-freezing) |
| Humidity Tolerance | Up to 90% RH without condensation |
| Overcurrent Safeguard | Built-in circuit for overload protection |
Mitsubishi's MRH15KBS72P52 is a robust AC servo amplifier belonging to the MELSERVO MR-H series. This amplifier can handle a power capacity of 15 kW while being rated for 200V AC operation. A significant feature is its integrated regenerative braking system, which allows for enhanced energy efficiency.
Torque adjustments can be easily configured by using analog inputs or through parameter tuning. This adaptability makes it suitable for various applications requiring precise control. The device also supports absolute position encoders, ensuring accurate feedback for motion control.
Communication with other devices is facilitated through an SSC-compatible protocol, making it versatile in system integration. The operating temperature range is specified from 0°C to 55°C, offering flexibility in different working environments, provided no freezing occurs. Furthermore, the unit tolerates humidity levels up to 90% RH without the risk of condensation, ensuring functionality in moist conditions.
Safety features include an overcurrent protection circuit to guard against overloads, thus enhancing system reliability during operation.