Slanvert Servo Drive 750W 220V 1PH EtherCAT

Slanvert Servo Drive 750W 220V 1PH EtherCAT

R 2,777.25
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Slanvert Servo Drive 750W 220V 1PH EtherCAT

Slanvert Servo Drive 750W 220V 1PH EtherCAT

R 2,777.25
15% VAT Included. Shipping will be calculated at checkout.
N3RE-4R2SA-E-00
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Specifications:
Supply Voltage: 220V Single Phase
Rated Power: 750W
Communication Bus: EtherCAT (To be used with SH500 Series PLC's)

The Slanvert N3 (N3RE) EtherCAT Servo Drive (380V 1-Phase) is a high-speed, digital motion controller engineered to deliver sub-millisecond precision for demanding automated machinery. Operating on standard 220V single-phase power, this compact drive serves as the intelligent brain that drives the high-torque KMT Series Servo Motor, translating complex motion paths into flawless physical execution.

Built natively on the ultra-fast EtherCAT industrial Ethernet fieldbus, the N3 drive allows for real-time, multi-axis synchronization with zero network latency. This makes it a perfect processing partner for Slanvert SH Series PLCs and X86 Industrial Panel PCs running advanced SCADA or motion control logic.

Key Technical Specifications:

  • Power Input: 220V Single-Phase (1PH), making it highly versatile for facilities without three-phase utility access or for localized control panels.
  • Bus Communication: Native EtherCAT interface with high-speed clock synchronization for smooth, simultaneous coordination across multi-axis machine layouts.
  • Intelligent Control Algorithms: Equipped with advanced notch filtering, vibration suppression, and friction compensation to prevent machine resonance and ensure smooth mechanical stops.
  • Rapid Response Loop: High-frequency velocity response loops that minimize position error during rapid acceleration and deceleration cycles.
  • Seamless Encoder Support: Natively decodes various high-resolution encoder types fitted to KMT motors for absolute position tracking and closed-loop reliability.
  • Effortless Commissioning: Features built-in auto-tuning functions that automatically analyze mechanical load inertia and adjust stiffness parameters on the fly.

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