The AC Phase Wound Slip Ring Motor Trainer is a specialized educational setup designed to help students understand the working principles, performance, and control of slip ring induction motors. Equipped with a complete control panel and measuring instruments, this unit allows learners to conduct experiments on torque, speed, starting current, and efficiency in real-time. It is widely used in engineering colleges, polytechnic institutes, and technical training centers as part of electrical machines laboratory equipment.
This slip ring induction motor trainer consists of an industrial-grade AC phase wound slip ring motor mounted with a dedicated control panel for easy operation. The setup includes provisions for starting, speed control, and performance analysis, making it ideal for both demonstration and detailed experiments.
Students can measure key parameters such as voltage, current, power, and slip, and plot motor characteristics under different load conditions. The system provides hands-on exposure to the behavior of slip ring induction motors, which are commonly used in heavy-duty industrial applications. Its durable structure, user-friendly controls, and safety features ensure reliable performance for repeated academic use.
Specification | Details |
---|---|
Power Supply | 230V / 415V AC, 50Hz (model specific) |
Motor Type | 3-Phase AC Phase Wound Slip Ring Induction Motor |
Control Panel | Integrated with protective devices & meters |
Measuring Instruments | Voltmeters, Ammeters, Wattmeter, Tachometer |
Experiments | Starting characteristics, Torque vs Speed, Load test |
Construction | MS powder-coated frame with castor wheels |
Our AC Phase Wound Slip Ring Motor Trainer is developed to meet the real requirements of electrical engineering education. By combining industrial-grade components with an academic-friendly design, we ensure durability, accuracy, and safety. This trainer bridges the gap between classroom theory and real-world applications, helping students gain practical knowledge and confidence in motor control and analysis.