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The Mitsubishi MDS-C1-V2-2010 is a functional 2-axis servo drive system that operates with diverse input voltage requirements and delivers high power output suitable for various applications. The device is designed to handle voltages between 270 and 311 V AC, and it produces output currents of 13.0 A and 6.8 A. This system efficiently handles a peak control power current of 0.2 A.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | MDS Servo Drives |
| Part Number | MDS-C1-V2-2010 |
| Weight | 12.00 lbs (5.44 kg) |
| Unit Type | 2-Axis Servo Drive System |
| Analog Output Channels | 0 to +5 V, 2 channels |
| Output Voltage | 155 V AC |
| Peak Control Power Current | 0.2 A |
| Input Voltage Range | 270 to 311 V AC |
| Frequency Range for Control Power | 50/60 Hz |
| Control Voltage Range | 200 to 230 V AC |
| Rated Power Output | 2.0 kW + 1.0 kW |
| Heat Emission at Nominal Load | 155 W |
| Maximum Surge Current | 35 A |
| Output Current | 13.0 A + 6.8 A |
| Input Current | 21 A |
| Cooling System | Forced Air with Heat Sink |
| Control Technique | Sine Wave PWM and Current Control |
Engineered for precision, the Mitsubishi MDS-C1-V2-2010 functions as a 2-axis servo drive system characterized by its excellent performance in demanding environments. With a weight of 4.3 kg, this unit is compact yet powerful, boasting a rated output capacity of 2.0 kW plus an extra 1.0 kW, catering to various motor control needs. It operates over a voltage range of 270 to 311 V AC, ensuring compatibility with numerous electrical standards.
The output voltage is sustained at 155 V AC, while the device supports an input current of 21 A, enabling it to manage substantial power loads efficiently. For control purposes, the system utilizes Sine Wave PWM alongside current control techniques, achieving precise motor control. The unit is equipped with two analog output channels capable of delivering signals ranging from 0 to +5 V, providing further flexibility in control applications.
In terms of current ratings, the MDS-C1-V2-2010 handles output currents of 13.0 A and 6.8 A, and it can withstand maximum surge currents of up to 35 A, enhancing its robustness in fluctuating conditions. The system’s performance is optimized through a cooling system that uses forced air integrated with a heat sink. Notably, at nominal load, this servo drive emits heat measured at 155 W, which is efficiently managed to maintain operational integrity. The frequency range for the control power is adaptable between 50 and 60 Hz, affirming its versatility in various setups.