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Basic Program Logic Control Trainer Electrician Trainer Didactic Equipment Vocational Training Equipment
  • Basic Program Logic Control Trainer Electrician Trainer Didactic Equipment Vocational Training Equipment

Basic Program Logic Control Trainer Electrician Trainer Didactic Equipment Vocational Training Equipment

Item No.: MR174E
MR174E Basic Program Logic Control Trainer Electrician Trainer Didactic Equipment Vocational Training Equipment
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MR174E Basic Program Logic Control Trainer Electrician Trainer Didactic Equipment Vocational Training Equipment
1. Equipment introduction
1.1 Overview
This training device is a comprehensive teaching equipment designed to meet the needs of modern education. Its core components include Siemens 200 intelligent PLC (programmable logic controller), supporting training simulation modules and various control objects. Through carefully designed experimental projects, this device aims to help students deeply understand and master the operating principles, basic usage methods and programming skills of Siemens 200 intelligent PLC, while also becoming familiar with the application of related programming software.
In addition, through practical operations, students can combine theoretical knowledge with practical operations, thereby cultivating practical skills that adapt to the needs of industry development. This training device is suitable for educational institutions at different levels, such as universities, junior colleges, higher vocational and technical colleges, high schools, secondary vocational schools and technical schools, etc. It provides an ideal teaching and skills training and assessment platform for students in related majors .
1.2 Features
(1) The structural design of the training platform is scientific and reasonable. It adopts an aluminum alloy column frame combined with a stable workbench structure. It is not only beautiful and elegant, but also provides solid support. The built-in measuring instruments and practical power supply are installed in an integrated manner, which not only saves space on the training platform, but also facilitates students to make circuit connections and parameter measurements. Practical circuits and devices adopt a modular hanging box combination design to facilitate flexible matching of different experimental units. At the same time, this design is also easy to maintain and manage, which greatly improves the durability and safety of the equipment.
(2) The configuration of experimental circuits and devices is very complete and can meet diverse teaching needs. Students can complete practical training content involving basic circuits, sensor applications, control algorithms, communication technology and other subjects through the combination of different modules. This helps to improve students' comprehensive practical ability and lay a solid foundation for their future careers. solid foundation.
(3) Safety has always been an important consideration in practical training and teaching. Therefore, this trainer is designed with a complete safety protection system, including emergency stop button, short circuit protection, overload protection and other multiple safety measures to ensure the safety of students during operation. Allowing students to operate independently and complete experiments under the guidance of teachers, this opportunity for hands-on practice is crucial to cultivating students' ability to analyze and solve problems, while also enhancing their hands-on ability and innovative thinking.
To sum up, this Siemens 200 intelligent PLC training device is a comprehensive, safe and reliable teaching platform that is easy to operate and maintain. It is very suitable for professional course teaching and skills training in educational institutions at all levels. Through this device, students can gain hands-on experience and lay a solid foundation for future work and research.
2. Technical parameters
Input power: two-phase three-wire 220V±10% 50Hz
Weight: 170KG
Working conditions: Temperature: 10℃~+40℃ Relative humidity: <85% (25℃)
Size: 1460mm*780mm*1920mm


3. Components list and detailed introduction
3.1 Main part
No Name
1 Hanging box part
2 Training workbench
3.2 Power box part
No Name
1 4P circuit breaker module
2 AC 220V output module
3 AC 110V six-hole socket module
4 DC voltage and current measurement module
5 4-20mA analog output, 0-10V analog output and DC24V power output module
3.3 Equipment configuration list
No Name Qty
Component 1 PLC hanging box (Siemens 200-ST30) 1
Component 2 PLC button hanging box 1
Component 3 PLC relay hanging box 1
Component 4 Automatic feeding and loading of hanging boxes 1
Component 5 Tower of light hanging box 1
Component 6 Water tower water level hanging box 1
Component 7 Traffic light experimental hanging box 1
Component 8 Motor control hanging box 1
Component 9 Automatic washing machine hanging box 1
Component 10 Elevator experimental hanging box 1
Component 11 Mail sorting hanging box 1
Component 12 Automatic electroplating production line hanging box 1
Component 13 Automatic molding machine hanging box 1
Component 14 Vending machine hanging box 1
Component 15 Automatic rolling mill hanging box 1
Component 16 Multiple liquid mixing hanging box 1
3.4 Accessories
No Name Qty
1 Network cable 1.5 meters 1
2 2mm safety connection cable 100CM yellow 10
3 4mm safety connection cable 1 meter double-ended 5
4 2mm safety connection cable 100CM blue 10
5 2mm safety connection cable 100CM black 5
6 2mm safety connection cable 100CM red 5
7 U disk 1
8 Fuse 0.3A 5*20 2
9 Fuse 5A 5*20 5
3.5 Introduction to component functions
4. Experiment list
Experiment 1 Automatic feeding and loading simulation experiment
Experiment 2 Sky Tower Light Simulation Experiment
Experiment 3 Water tower water level simulation experiment
Experiment 4 Traffic light simulation experiment
Experiment 5 Motor Control Simulation Experiment
Experiment 6 Elevator Experiment Simulation Experiment
Experiment 7 Automatic mail sorting control simulation experiment
Experiment 8 Vending machine simulation experiment
Experiment 9 Automatic rolling mill control experiment
Experiment 10 Multiple liquid mixing simulation experiments