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The MDS-B-V24-3520 represents a dual-axis servo drive from Mitsubishi’s MDS Servo Drives series. It features a power rating of 3.5 + 2.0 kW, an output voltage of 155 V, and various current ratings for flexibility in operation.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | MDS Servo Drives |
| Part Number | MDS-B-V24-3520 |
| Weight | 16.06 lbs (7.29 kg) |
| Drive Type | Dual-axis Servo Drive |
| Power Rating | 3.5 + 2.0 kW |
| Output Voltage | 155 V |
| Nominal Output Current | 16 A (L), 13 A (M) |
| Continuous Operating Current | 25 A (L), 18.2 A (M) |
| Peak Output Current | 57 A (L), 42 A (M) |
| Control Method | PWM Sine Wave Control |
| Power Circuit System | Transistor Inverter with IGBT Module |
| Braking Type | Regenerative and Dynamic Braking |
| Maximum Load Inertia | Less than 2.5x motor inertia |
| Operating Temperature Range | 0 to 55°C |
| Allowable Humidity | Maximum 90%, without condensation |
| Shock Resistance | 49 m/s² (equivalent to 5G) |
The Mitsubishi MDS-B-V24-3520 is engineered as a dual-axis servo drive featuring an impressive power rating, combining values of 3.5 kW for one axis with 2.0 kW for the other. It delivers an output voltage of 155 volts, accommodating diverse applications that require precise control. The device assigns nominal current values of 16 amperes for the larger axis and 13 amperes for the smaller axis. In ongoing operations, the continuous currents are rated at 25 amperes and 18.2 amperes, ensuring robust performance.
This servo drive can handle peak output currents of 57 amperes for the large axis and 42 amperes for the smaller one, providing ample capability to tackle demanding tasks. The control method utilized is PWM sine wave control, optimizing the performance and efficiency of the drive. Further enhancing its functionality, the MDS-B-V24-3520 employs a transistor inverter featuring IGBT modules for the power circuit.
Braking capabilities include both regenerative and dynamic braking, supporting effective deceleration strategies and energy recovery. The system manages a maximum load inertia ratio of less than 2.5 times the motor inertia, emphasizing its suitability for tightly matched applications. Operating temperatures are supported from 0 to 55 degrees Celsius, making it adaptable to standard industrial settings.
The unit can tolerate humidity levels reaching 90% without condensation, broadening its applicability in various environments. Designed to withstand shocks, the drive has a resistance rating of 49 m/s², equivalent to 5G, ensuring durability during operation.