Programmable controllers/drives for BLDC and Stepper Motors – Products

CLC servo drives from Nanotec: motor controllers for steppers and BLDCs with EtherCAT, CANopen, and Modbus RTU support.

CLC – Servo drives

The compact servo drives of the CLC series are designed for easy integration into industrial automation systems. Available in three power classes: 3 A, 6 A, 15 A.
  • Operating Voltage 12 VDC – 57.6 VDC
  • Rated Current (RMS) 3 A – 15 A
  • Peak Current (RMS) 3 A – 45 A
  • Matching Motors Brushless DC motors, Stepper Motors 
  • Fieldbus EtherCAT, CANopen, Modbus RTU 
CL3-E

CL3-E – Motor controllers/drives

Controller/drive for brushless DC motors and stepper motors with a flange size of up to NEMA 23. Due to its small size (40 x 60 mm), this board is ideally suited for integration into devices such as…
  • Operating Voltage 12 VDC – 24 VDC
  • Rated Current (RMS) 3 A
  • Peak Current (RMS) 3 A – 6 A
  • Matching Motors Brushless DC motors, Stepper Motors 
  • Fieldbus CANopen, Modbus RTU 
CL4-E

CL4-E – Motor controllers/drives

High-performance controller/drive for brushless DC motors and stepper motors. Available in a low-current version with 3 A rated current/6 A peak current and in a high-current version with 6 A rated…
  • Operating Voltage 12 VDC – 58 VDC
  • Rated Current (RMS) 3 A – 6 A
  • Peak Current (RMS) 6 A – 18 A
  • Matching Motors Brushless DC motors, Stepper Motors 
  • Fieldbus CANopen, Modbus RTU 
C5

C5 – Stepper motor controllers/drives

Controller for openloop operation of stepper motors with a size of NEMA 17 to NEMA 34. Control via clock-direction or through speed or position specification via the analog input. Quick and simple…
  • Operating Voltage 12 VDC – 48 VDC
  • Rated Current (RMS) 6 A
  • Peak Current (RMS) 6 A
  • Matching Motors Stepper Motors 
  • Fieldbus
C5-E

C5-E – Motor controllers/drives

Controller/drive for brushless DC motors and stepper motors with a flange size from NEMA 17 to NEMA 34. Available in a low-current version with 6 A rated current/6 A peak current and in a…
  • Operating Voltage 12 VDC – 48 VDC
  • Rated Current (RMS) 6 A – 10 A
  • Peak Current (RMS) 6 A – 30 A
  • Matching Motors Brushless DC motors, Stepper Motors 
  • Fieldbus Modbus RTU, CANopen, EtherNet/IP, EtherCAT, Modbus TCP 
N5

N5 – Motor controllers/drives

Universal controller/drive for brushless DC motors and stepper motors. Available in a low-current version with 12-72 V operating voltage and 10 A rated current/10 A peak current as well as in a…
  • Operating Voltage 12 VDC – 72 VDC
  • Rated Current (RMS) 10 A – 18 A
  • Peak Current (RMS) 10 A – 40 A
  • Matching Motors Brushless DC motors, Stepper Motors 
  • Fieldbus EtherCAT, CANopen, EtherNet/IP, Modbus TCP, Modbus RTU 
N6 motor controller for NEMA 14–34 stepper and BLDC motors with FOC and fieldbus compatibility

N6 – Motor controllers/drives

Compact motor controller/drive for integration into demanding automation applications. Supports Hall sensors, incremental encoders (QEI), and SSI encoders.
  • Operating Voltage 12 VDC – 57.6 VDC
  • Rated Current (RMS) 6 A
  • Peak Current (RMS) 6 A – 18 A
  • Matching Motors Brushless DC motors, Stepper Motors 
  • Fieldbus EtherCAT, CANopen, EtherNet/IP, Modbus TCP, Modbus RTU 

Programmable controllers/drives – Filter

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Benefits

performance controller bldc & Schrittmotoren

Maximum performance

Field-oriented torque, speed and position control provides optimum dynamic performance and cycle time –in combination with acceleration feed forward and jerk-limited ramps.
Many control options - programmable stepper motors, programmable brushless motors

Flexible control

Control via fieldbus, clock/direction or digital/analog inputs or integration in an existing control concept are among the options to choose from. Stand-alone operation is also possible.
Easy programmable controller for brushless DC motors, stepper motors

Easy to program

The controllers/drives are quick and easy to parameterize and program with the free software Plug & Drive Studio. Via the integrated oscilloscope, all values can be observed in a millisecond cycle.

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