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Electrical Training Equipment

Motor Experimental Kit With Resistive Load Didactic Equipment Electrical Laboratory Equipment

Item No.: ZE3436
ZE3436 Motor Experimental Kit With Resistive Load Didactic Equipment Electrical Laboratory Equipment
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Description

ZE3436 Motor Experimental Kit With Resistive Load Didactic Equipment Electrical Laboratory Equipment

1. Equipment introduction

1.1 Overview

This comprehensive training device brings together motors and industrial control components, and is designed with experiments as the core. It aims to enable learners to thoroughly understand the operating mechanism of motors and master the application skills of various control devices through practical operations. Through these carefully designed experiments, students can not only become familiar with the performance characteristics of motors, but also gain an in-depth understanding of control principles and technical methods for implementing precise control.
The experimental content of this device is rich, covering various control modes from basic to advanced, ensuring that students can fully master the necessary theoretical knowledge and practical skills.

1.2 Features

1. Modern and lightweight structural design:
It adopts lightweight aluminum profile columns, which are both strong and easy to move, in line with the aesthetics of modern industrial design.
Built-in integrated measuring instruments and practical power supply save space, simplify the operation process, and reduce the complexity of external wiring.
2. Modular experimental unit:
The experimental module is integrated into the platform in a box-type installation manner, which is easy to replace and maintain, improving convenience and flexibility of use.
This modular design enables the platform to adapt to a variety of different experimental needs, from basic circuit experiments to the development of advanced control strategies.
3. Support of comprehensive practical training programs:
The platform supports multi-level practical training, including basic operational skills training, advanced control strategy development, etc., providing learners with comprehensive practical opportunities.
Advanced hardware resources can meet the execution of projects of different complexity, allowing students to have access to cutting-edge technology and equipment in the industry.
4. Pay attention to safety:
A complete safety protection system is designed, including emergency stop button, short circuit and overload protection, etc. to ensure the safety of the experimental process.
By reducing unexpected risks, learners can focus on developing their skills and knowledge in a safe environment.
5. Multi-dimensional practice environment:
The platform not only provides practical opportunities for technical operations, but also encourages students to engage in exploratory learning and innovation and cultivate problem-solving abilities.
The teaching model that combines theory and practice helps students better understand knowledge points and improve their application abilities.
To sum up, this practical training platform is a multifunctional, efficient and safe modern teaching tool, suitable for use in various education and training institutions to help students and technicians improve their practical skills and theories in a safe environment. Knowledge.

2. Technical parameters

Input power: three-phase AC 380V 50hz
Weight:99Kg
Working conditions: Temperature: 10℃+40℃ Relative humidity: <85% (25℃)
Dimension: 1480mm*780mm*990mm

4. Experiment list

Experiment 1 Motor start and stop control
Experiment 2 Motor closed-loop control
Experiment 3 Forward and reverse control of three-phase asynchronous motor
Experiment 4 Effect of resistive load on motor performance
Experiment 5 Motor braking experiment