The Power Electronic Trainer from AGN Enterprises is an educational laboratory system designed for the practical study of power semiconductor devices, controlled rectifiers, converters, inverters, choppers, triggering circuits, and power control techniques. It provides students with a structured platform for understanding the operation and applications of power electronic circuits through hands-on experiments.
Power electronics deals with the conversion and control of electrical power using semiconductor switching devices. Devices such as SCRs, TRIACs, DIACs, MOSFETs, IGBTs, and power diodes play an important role in modern industrial control and power conversion systems. Therefore, students can use the trainer to understand device characteristics and their behavior in suitable power circuits.
Moreover, depending on the supplied configuration, learners can perform experiments involving half-wave and full-wave controlled rectifiers, AC voltage controllers, DC choppers, inverter circuits, triggering methods, and semiconductor characteristics. Students can vary circuit parameters and observe input, gate, and output waveforms using suitable measuring equipment. Consequently, they develop a practical understanding of firing angle control, switching behavior, waveform characteristics, and power conversion.
The trainer also supports the study of phase control, pulse triggering, load characteristics, rectification, switching techniques, and AC-DC or DC-AC conversion principles. Furthermore, clearly arranged experimental sections help students make connections, take measurements, compare waveforms, and analyze circuit performance.
For additional technical resources related to power electronics, students can refer to the IEEE Power Electronics Society
Model No. | Types |
AGN-EI-548A | Data Formatting and carrier Modulation Transmitter Trainer |
| AGN-EI-548B | Data Reformatting & Carrier Demod Receiver Trainer |
The laboratory power electronics training system provides a convenient platform for studying semiconductor switching and power-conversion circuits. In addition, instructors can demonstrate practical relationships between triggering signals, switching devices, loads, and output waveforms.