drv-dcr 

DC Motor drive module supplied by rectifier 

The DRV-DCR is an advanced Learning System specially designed to introduce the principles of DC motor drives fed by a three-phase rectifier.

Features

  •  Powers: 300w/1Kw/1.5kw/3Kw

  •  Thyristor controlled rectifier
  •  Built-in voltage and current sensors.
  •  Input voltage 3ph 380 rms AC.
  •  Built-in configurable excitation current generator
  •  Digital control system
  •  Open loop control
  •  Closed loop control
  •  Speed ​​measurement by taco-generator or encoder.
  •  Real-time voltage/current monitoring
  •  Parameter setting from PC via Ethernet
  •  Curve on PC of input / output currents and voltages over time.
  •  Export of graphs and measurement values
  •  Overload protection
  •  4mm secure terminal outputs.
  • DIN A4 box.

drv-dchb 

 DC Motor drive module powered by Chopper 

The DRV-DCHB is an advanced Learning System specially designed to introduce the principles of DC motor drives powered by a four-quadrant chopper.

Features

  • Powers: 300w, 1Kw, 1.5kw

  • Four quadrant chopper with IGBT (Mosfet SIC on option).
  • Built-in voltage and current sensors.
  • Input voltage 220 rms AC.
  • Built-in configurable excitation current generator
  • Digital control system
  • Open loop control
  • Closed loop control
  • Speed ​​measurement by taco-generator or encoder.
  • Real-time voltage/current monitoring
  • Parameter setting from PC via Ethernet
  • Curve on PC of input / output currents and voltages over time.
  • Export of graphs and measurement values
  • Configurable selectable PWM frequencies
  • Overload protection
  • 4mm secure terminal outputs.
  • DIN A4 box.

drv-vfim

Asynchronous motor drive module by scalar control

The DRV-VFIM is an advanced Learning System specially designed to introduce the principles of variable frequency drives (VFD) of asynchronous motors based on constant V/F scalar control.

Features

  • Powers: 300w/1kw/1.5kw/3kw
  •  Three-phase voltage inverter with IGBT (Mosfet SIC on option).
  •  Built-in voltage and current sensors.
  •  Input voltage 220 rms AC.
  •  Digital control system
  •  Open loop V/F control
  •  Closed loop V/F control
  • Vector modulation
  •  Speed ​​measurement by taco-generator or encoder.
  •  Real-time voltage/current monitoring
  •  Parameter setting from PC via Ethernet
  •  Curve on PC of input / output currents and voltages over time.
  •  Export of graphs and measurement values
  •  Configurable selectable PWM frequencies
  •  Overload protection
  •  4mm secure terminal outputs.
  • DIN A4 box.

drv-vcim

Asynchronous motor drive module by vector control 

The DRV-VCIM is an advanced learning system specially designed to introduce the principles of variable frequency drives (VFD) of asynchronous motors based on vector control (Rotor Flux Orientation).

Features

• Powers: 300w/1Kw/1.5kw/3kw

• Three-phase voltage inverter with IGBT (Mosfet SIC on option).

• Integrated voltage and current sensors.

• Input voltage 220 rms AC.

• Digital control system

• Closed loop control with sensor

• Sensorless Closed Loop Control (Optional)

• Vector modulation

• Speed ​​measurement by taco-generator or encoder.

• Real-time monitoring of voltages / currents

• Parameter adjustment from the PC via Ethernet

• Curve on PC of input/output currents and voltages over time.

• Export of graphs and measurement values

• Configurable selectable PWM frequencies

• Overload protection

• 4mm secure terminal outputs

DIN A4 box..

drv-dtcim

Asynchronous motor drive module by direct torque control 

The DRV-DTCIM is an advanced Learning System specially designed to introduce the principles of variable frequency drives (VFD) of asynchronous motors based on direct torque control (DTC).

Features

  • Powers: 300w/1Kw/1.5kw/3kw
  •  Three-phase voltage inverter with IGBT (Mosfet SIC on option).
  •  Built-in voltage and current sensors.
  •  Input voltage 220 rms AC.
  •  Digital control system
  •  Open loop DTC control
  •  Closed loop DTC control
  •  Speed ​​measurement by taco-generator or encoder.
  •  Real-time voltage/current monitoring
  •  Parameter setting from PC via Ethernet
  • Curve on PC of input / output currents and voltages over time.
  • Export of graphs and measurement values
  • Overload protection
  • 4mm secure terminal outputs.
  • DIN A4 box.

drv-sdsm

Self piloting synchronous magnet  motor drive module 

The DRV-SDSM is an advanced Learning System specially designed to introduce the principles of self-piloting based synchronous magnet motor drives.

Features

  • Powers: 300w/1Kw/1.5kw/3kw
  •  Three-phase voltage inverter with IGBT (Mosfet SIC on option).
  •  Built-in voltage and current sensors.
  •  Input voltage 220 rms AC.
  •  Digital control system
  •  Vector modulation
  •  Speed ​​measurement by taco-generator or encoder.
  •  Real-time voltage/current monitoring
  •  Parameter setting from PC via Ethernet
  •  Curve on PC of input / output currents and voltages over time.
  • Export of graphs and measurement values
  •  Configurable selectable PWM frequencies
  •  Overload protection
  •  4mm secure terminal outputs.
  •  DIN A4 box.

drv-vcsm

Synchronous magnet  motor drive module by vector control 

The DRV-VCSM is a state-of-the-art learning system specially designed to introduce the principles of synchronous magnet motor drives based on vector control (Rotor Flux Orientation).

Features

  • Powers: 300w/1Kw/1.5kw/3kw

• Three-phase voltage inverter with IGBT (Mosfet SIC on option).

• Integrated voltage and current sensors.

• Input voltage 220 rms AC.

• Digital control system

• Open loop V/F control

• Closed loop V/F control

• Vector modulation

• Speed ​​measurement by taco-generator or encoder.

• Real-time monitoring of voltages / currents

• Parameter adjustment from the PC via Ethernet

• Curve on PC of input/output currents and voltages over time.

• Export of graphs and measurement values

• Configurable selectable PWM frequencies

• Overload protection

• 4mm secure terminal outputs.

DIN A4 case

drv-sdbl

Self piloting brushless direct current motor drive module 

The DRV-SDBL is an advanced Learning System specifically designed to introduce the principles of self-driving brushless DC (BLDC) motor drives.

Features

• Powers: 300w/1Kw/1.5kw/3kw

• Three-phase voltage inverter with IGBT (Mosfet SIC on option).

• Integrated voltage and current sensors.

• Input voltage 220 rms AC.

• Digital control system

• Vector modulation

• Speed ​​measurement by taco-generator or encoder.

• Real-time monitoring of voltages / currents

• Parameter adjustment from the PC via Ethernet

• Curve on PC of input/output currents and voltages over time.

• Export of graphs and measurement values

• Configurable selectable PWM frequencies

• Overload protection

• 4mm secure terminal outputs.

DIN A4 case.

drv-dsp

Electric motor drive by DSP

Study of converters with all types of asynchronous motor control (V/F control, vector control, direct torque control)

Features

1x Power supply and protection unit.

  • Input voltage 3x230/400V rms AC.
  • Output voltage 3x230/400V rms AC.
  • Continuous voltage ±15V 3A.
  • Current 16A AC.
  • 6-16A adjustable overload, short circuit and differential protection.
  • 4mm secure terminal outputs.
  • Emergency stop

1x 1.5kVA three-phase isolation transformer (Optional)

  • Input voltage 3x400V
  • Isolated output 3x 96V or 48V
  • Power 1.5kVA

1x diode rectifier with filter

  • Input voltage 400V.
  • Output currents 10A.
  • Protection by fuses

1x DSP control unit

  • High performance DSP (800 MIPS)
  • Input for incremental sensor
  • 8 analog input -10/+10V 16bits
  • 6 PWM output (natural, vector modulation…)
  • 20 digital inputs/outputs
  • PC connection for viewing configuration, programming, etc.
  • Programming in C or Simulink
  • Pre-programmed regulator function for setting up regulated drives
  • Export of graphs and measurement values
  • Protection against manipulation errors with monitoring of voltages / currents by DSP

1x Three-phase IGBT voltage inverter

  • Integrated current and voltage measurement system
  • Supply voltage: up to 600V, Minimum output power: 1 kw (Available with other powers)
  • PWM frequencies configurable from 1kHz to 15 kHz;
  • Protection on current, overvoltage, overheating.

1x Three-phase asynchronous motor (Optional)

  • Voltage: 400/230V
  • Speed: 1420 rpm,
  • Power 1.1kW

1x Powder brake with power supply (Optional)

  • Voltage: 24V
  • Speed: 1500 rpm,
  • Torque 12N.m

 

1x 3-tier experiment frame, T-foot, 1500mm

1x Set of 4mm Safety Measurement Leads and 19/4mm Safety Connecting Plug


List of possible experiments:

  •  Four-quadrant DC motor drive
  •  Training of asynchronous motors: V/F open loop
  •  Training of asynchronous motors: V/F closed loop
  •  Training of asynchronous motors: Vector control with sensor
  •  Training of asynchronous motors: Sensorless vector control
  •  Training of asynchronous motors: DTC
  •  Drive of synchronous motors like: Autopilot
  •  Drive synchronous motors like: Sensorless vector control
  •  Training of synchronous motors like: Vector control with sensor
  • Drive brushless DC motors

drv-fpga

Electric motor drive by FPGA

Study of converters with all types of asynchronous motor control (V/F control, vector control, direct torque control)

Features

1x Power supply and protection unit.

  • Input voltage 3x230/400V rms AC.
  • Output voltage 3x230/400V rms AC.
  • Continuous voltage ±15V 3A.
  • Current 16A AC.
  • 6-16A adjustable overload, short circuit and differential protection.
  • 4mm secure terminal outputs.
  • Emergency stop

1x 1.5kVA three-phase isolation transformer (Optional)

  •  Input voltage 3x400V
  •  Isolated output 3x 96V or 48V
  •  Power 1.5kVA

1x diode rectifier with filter

  • Input voltage 400V.
  • Output currents 10A.
  • Protection by fuses

1x FPGA Control Unit

  • Xilinx 7 generation FPGAs
  • Input for incremental sensor
  • 8 analog input -10/+10V 16bits
  • 12 PWM outputs (natural, vector modulation, etc.)
  • 20 digital inputs/outputs
  • PC connection for viewing configuration, programming, etc.
  • Programming in VHDL, Simulink or LabVIEW.
  • Pre-programmed regulator function for setting up regulated drives
  • Export of graphs and measurement values
  • Display of graphs and measurement values ​​in glue on a model.
  • Protection against manipulation errors with monitoring of voltages / currents by FPGA

 

1x Three-phase IGBT voltage inverter

  • Integrated current and voltage measurement system
  • Supply voltage: up to 600V, Minimum output power: 1 kw (Available with other powers)
  • PWM frequencies configurable from 1kHz to 15 kHz;
  • Protection on current, overvoltage, overheating.

1x Three-phase asynchronous motor (Optional)

  • Voltage: 400/230V
  • Speed: 1420 rpm,
  • Power 1.1kW

1x Powder brake with power supply (Optional)

  • Voltage: 24V
  • Speed: 1500 rpm,
  • Torque 12N.m

 

1x 3-tier experiment frame, T-foot, 1500mm

1x Set of 4mm Safety Measurement Leads and 19/4mm Safety Connecting Plug

List of possible experiments:

  •  Four-quadrant DC motor drive
  •  Training of asynchronous motors: V/F open loop
  •  Training of asynchronous motors: V/F closed loop
  •  Training of asynchronous motors: Vector control with sensor
  •  Training of asynchronous motors: Sensorless vector control
  •  Training of asynchronous motors: DTC
  •  Drive of synchronous motors like: Autopilot
  •  Drive synchronous motors like: Sensorless vector control
  •  Training of synchronous motors like: Vector control with sensor
  • Drive brushless DC motors

drv-slrt 

Electric motor drive by Simulink platform

Study of converters with all types of asynchronous motor control (V/F control, vector control, direct torque control)

Features

1x Power supply and protection unit.

  •  Input voltage 3x230/400V rms AC.
  •  Output voltage 3x230/400V rms AC.
  •  Continuous voltage ±15V 3A.
  •  Current 16A AC.
  •  6-16A adjustable overload, short circuit and differential protection.
  •  4mm secure terminal outputs.
  •  Emergency stop

1x 1.5kVA three-phase isolation transformer (Optional)

  • Input voltage 3x400V
  • Isolated output 3x 96V or 48V
  • Power 1.5kVA

1x diode rectifier with filter

  • Input voltage 400V.
  • Output currents 10A.
  • Protection by fuses

1x SLRT control unit (Simulink real time)

  • Significant computing power (Quad cores + FPGA)
  • Input for incremental sensor
  • 8 analog input -10/+10V 16bits
  • 12 PWM outputs (natural, vector modulation, etc.)
  • 20 digital inputs/outputs
  • PC connection for viewing configuration, programming, etc.
  • Programming in Simulink
  • Pre-programmed regulator function for setting up regulated drives
  • Export of graphs and measurement values
  • Display of graphs and measurement values ​​in glue on a model.
  • Protection against manipulation errors with monitoring of voltages / currents by FPGA

 

1x Three-phase IGBT voltage inverter

  • Integrated current and voltage measurement system
  • Supply voltage: up to 600V, Minimum output power: 1 kw (Available with other powers)
  • PWM frequencies configurable from 1kHz to 15 kHz;
  • Protection on current, overvoltage, overheating.

1x Three-phase asynchronous motor (Optional)

  • Voltage: 400/230V
  • Speed: 1420 rpm,
  • Power 1.1kW

1x Powder brake with power supply (Optional)

  • Voltage: 24V
  • Speed: 1500 rpm,
  • Torque 12N.m

 

1x 3-tier experiment frame, T-foot, 1500mm

1x Set of 4mm Safety Measurement Leads and 19/4mm Safety Connecting Plug

List of possible experiments:

  •  Four-quadrant DC motor drive
  •  Training of asynchronous motors: V/F open loop
  •  Training of asynchronous motors: V/F closed loop
  •  Training of asynchronous motors: Vector control with sensor
  •  Training of asynchronous motors: Sensorless vector control
  •  Training of asynchronous motors: DTC
  •  Drive of synchronous motors like: Autopilot
  •  Drive synchronous motors like: Sensorless vector control
  •  Training of synchronous motors like: Vector control with sensor
  • Drive brushless DC motors

drv-lvrt 

Electric motor drive by LabVIEW platform

Study of converters with all types of asynchronous motor control (V/F control, vector control, direct torque control)

Features

1x Power supply and protection unit.

  • Input voltage 3x230/400V rms AC.
  • Output voltage 3x230/400V rms AC.
  • Continuous voltage ±15V 3A.
  • Current 16A AC.
  • 6-16A adjustable overload, short circuit and differential protection.
  • 4mm secure terminal outputs.
  • Emergency stop

1x 1.5kVA three-phase isolation transformer (Optional)

  • Input voltage 3x400V
  • Isolated output 3x 96V or 48V
  • Power 1.5kVA

1x diode rectifier with filter

  • Input voltage 400V.
  • Output currents 10A.
  • Protection by fuses

1x LVRT (LabVIEW Real Time) Control Unit

  • Significant computing power (Quad cores + FPGA)
  • Input for incremental sensor
  • 8 analog input -10/+10V 16bits
  • 12 PWM outputs (natural, vector modulation, etc.)
  • 20 digital inputs/outputs
  • PC connection for viewing configuration, programming, etc.
  • Programming in LabVIEW
  • Pre-programmed regulator function for setting up regulated drives
  • Export of graphs and measurement values
  • Protection against manipulation errors with monitoring of voltages / currents by FPGA


1x Three-phase IGBT voltage inverter

  • Integrated measurement system of 2 currents and 1 voltage
  • Supply voltage: up to 600V, Minimum output power: 1 kw (Available with other powers)
  • PWM frequencies configurable from 1kHz to 15 kHz;
  • Protection on current, overvoltage, overheating.

1x Three-phase asynchronous motor (Optional)

  • Voltage: 400/230V
  • Speed: 1420 rpm,
  • Power 1.1kW

1x Powder brake with power supply (Optional)

  • Voltage: 24V
  • Speed: 1500 rpm,
  • Torque 12N.m

 

1x 3-tier experiment frame, T-foot, 1500mm

1x Set of 4mm Safety Measurement Leads and 19/4mm Safety Connecting Plug

List of possible experiments:

  •  Four-quadrant DC motor drive
  •  Training of asynchronous motors: V/F open loop
  •  Training of asynchronous motors: V/F closed loop
  •  Training of asynchronous motors: Vector control with sensor
  •  Training of asynchronous motors: Sensorless vector control
  •  Training of asynchronous motors: DTC
  •  Drive of synchronous motors like: Autopilot
  •  Drive synchronous motors like: Sensorless vector control
  •  Training of synchronous motors like: Vector control with sensor
  • Drive brushless DC motors