The Power Electronics and Motor Drive Comprehensive Training Device is designed for experimental teaching in mechatronics and automation courses, including Motor Principles and Electric Drive, Power Electronics Technology, and Electric Drive Control Systems. This equipment enables completion of relevant experimental teaching tasks while providing sufficient expansion flexibility for future research requirements.
Key Features
Modular Design: Unique structural design combining fixed modules (loads, AC/DC power supplies) with hanging box modules, reducing instructor preparation time while facilitating functional expansion
Comprehensive Curriculum: Emphasizes modern power electronics devices and control theory alongside traditional experiments, enabling students to understand component applications and master popular circuits
Advanced Safety Protection: Comprehensive personal and equipment safety features including overcurrent protection, high-voltage protection circuits, and segregated experimental leads to prevent circuit damage
Specialized Motors: Experimental motors (100-200W range) with parameters and characteristics simulating small and medium-sized industrial motors
Technical Specifications
Unit Capacity
<1.5kVA
Power Supply
~3N/380V/50Hz/3A
Dimensions
1800mm * 750mm * 1650mm
Weight
<150kg
Experimental Projects
Power Electronics Experiments
Power Electronics Technology (Traditional Rectification)
Single-junction transistor trigger circuit and single-phase half-wave controlled rectifier circuit
Three-phase bridge full-controlled rectifier and active inverter circuit
Single-phase AC voltage regulation circuit
Three-phase AC voltage regulation circuit
Motor Drive Experiments
DC Motor Experiments
Motor knowledge experiment
DC generator experiment
Shunt-excited DC motor: Working characteristics, mechanical characteristics, speed regulation characteristics, direct method for determining efficiency
Asynchronous Motor Experiments
Three-phase cage-type asynchronous motors: No-load test, short-circuit test, load test
Starting and speed regulation of three-phase asynchronous motors
Single-phase capacitor-start asynchronous motors: No-load test, short-circuit test, load test
Automatic MS curve mapping of asynchronous motors
Motor Mechanical Characteristics
Mechanical characteristics of DC separately excited motors under various operating conditions
Mechanical characteristics of three-phase asynchronous motors under various operating conditions
MS curve mapping of three-phase asynchronous motors
Synchronous Motor Experiments
Operating characteristics of three-phase synchronous generators
Parallel operation of three-phase synchronous generators: Grid-connected experiment, active and reactive power regulation, V-shaped curve
Parallel operation of three-phase synchronous motors: Asynchronous starting, V Curve, working characteristics
Determination of three-phase synchronous generator parameters