Description
Engineered for high-performance CNC and multi-axis motion control architectures, the MDS-C1-V2-3535 functions as a highly reliable dual-axis servo drive designed to regulate and drive two independent servo motors simultaneously. This unit utilizes an advanced sine-wave PWM (Pulse Width Modulation) control system to deliver high-precision current and position control within demanding manufacturing environments. Incorporating integrated forced air cooling, the drive ensures stable thermal performance even under continuous high-load operations.
The unit is designed for seamless integration with compatible Mitsubishi Electric CNC controllers and power supply modules, operating on a DC common bus configuration. Its dual-output design significantly reduces panel space requirements and simplifies wiring compared to single-axis drive layouts, making it an efficient option for complex retrofits and standardized multi-axis automation systems.
Features
- Independent dual-axis control output within a single space-saving housing.
- High-efficiency sine-wave PWM current control system for smooth torque delivery and positioning.
- Forced air cooling system to optimize heat dissipation and protect internal power electronics.
- Direct DC bus power configuration for efficient energy distribution and regenerative sharing capability.
Applications
- Multi-axis CNC milling and turning centers.
- Automated tooling machinery and metalworking systems.
- Industrial robotics and coordinated gantry motion systems.
- High-speed pick-and-place packaging machinery.
Technical Specifications
| Manufacturer |
Mitsubishi Electric |
| Part Number / Model |
MDS-C1-V2-3535 |
| Series |
MDS-C1 Series |
| Control System |
Sine-wave PWM control system / current control system |
| Cooling Type |
Forced air cooling |
| Rated Output Power |
3.5 kW + 3.5 kW (Dual Axis) |
| Output Rated Voltage |
155 VAC |
| Output Rated Current |
16.0 A + 16.0 A |
| Input Rated Voltage |
270 to 311 VDC |
| Input Rated Current |
34 A |
| Weight |
6.5 kg |
Installation Guidelines
For safe and optimal performance of the drive, adhere to the following standard engineering guidelines:
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Mounting Orientation: Install the drive vertically on a flat, non-flammable backplate to allow natural and forced air circulation to escape freely through the cooling vents.
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Clearance Requirements: Ensure minimum top and bottom clearances are met as specified in the drive series installation manual to prevent thermal bottlenecks.
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Wiring and Grounding: Connect a low-impedance protective earth (PE) ground to the chassis grounding terminal to minimize electromagnetic noise and secure electrical safety.
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Cable Separation: Route power cables (DC bus and motor outputs) separate from low-voltage signal and feedback encoder cables to avoid signal cross-talk and erratic feedback.