MOTOR AND DRIVE TRAINING SYSTEM – IES-PCI-414

The Motor and Drive Training System is a comprehensive educational platform designed to provide hands-on understanding of industrial electric motor technologies and drive control methods used in modern automation systems. The training system enables learners to study the working principles, control strategies and performance characteristics of different motor types widely used in industrial automation, robotics and motion control applications. The platform integrates multiple motor technologies including servo motors, stepper motors, AC induction motors and DC motors within a modular training workstation. Each module demonstrates different drive control techniques such as speed regulation, torque control, positioning and feedback-based motion control.

KEY TECHNICAL SPECIFICATIONS

Multi-Motor Drive Training PlatformModular training system integrating multiple industrial motor technologies and drive control modules.

Servo Motor Training ModuleIndustrial servo motor with drive controller and encoder feedback for studying precision motion control and positioning.

Stepper Motor Training ModuleStepper motor system with pulse control driver for demonstrating step resolution, micro-stepping and motion control.

AC Motor Drive TrainerAC induction motor with variable frequency drive (VFD) for studying speed control using V/Hz and vector control techniques.

DC Motor Drive TrainerDC motor module for studying speed control, torque characteristics and analog control methods.

Linear Motion Axis UnitBall screw driven linear axis module for demonstrating industrial positioning and motion control applications.

Drive Control InterfacesMotor drive controllers with configurable parameters for experimentation with speed, torque and motion control.

Industrial Workbench StructureModular aluminium workstation designed for mounting motor modules and performing laboratory experiments.

Safety & Protection SystemIndustrial-grade motor protection and safe operating enclosure suitable for laboratory environments.

RANGE OF EXPERIMENTS

Servo motor positioning and feedback control experiments

Stepper motor step resolution and motion control analysis

AC motor speed control using variable frequency drive technology

DC motor speed regulation and torque characteristic studies

Linear axis positioning and homing operation experiments

Drive parameter configuration and motor performance analysis

Study of industrial motion control systems and automation drives

FEATURES

Integrated training platform covering multiple industrial motor technologies

Demonstration of servo, stepper, AC and DC motor drive systems

Industrial servo drive and encoder feedback based motion control

Variable frequency drive based AC motor control experiments

Linear axis motion module for positioning and automation study

Modular workstation design suitable for laboratory training

Industrial-grade components for technical education and skill development

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