Industry 4.0 Training System

Industry 4.0 Training System

DLIM-DT01A Digital Twin Technology Application Platform

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Model: DLIM-DT01A

1. Temperature: +5 to +45°; ambient humidity: ≤85% (25°C).

2. System area: not less than 850mm×730mm×1500mm.

3. Overall power: about 120VA.

4. Input power: single-phase three-wire AC220V±10% 50Hz.

5. Material: sheet metal, surface sprayed.

DLIM-DT01A Digital Twin Technology Application Platform
DLIM-DT01A Digital Twin Technology Application Platform
DLIM-DT01A Digital Twin Technology Application Platform

Details Introduction

Equipment Overview

DLIM-DT01A digital twin technology application training platform uses advanced simulation technology to reproduce the three-layer organizational structure of the industrial Internet collaborative manufacturing training platform, presenting the key technologies of the industrial Internet device perception layer, network transmission layer and application layer in all aspects and the skills students need to master .

The project of digital twin training equipment gives full play to the advantages and characteristics of digital twin technology, from point to surface, to create the field control level, production unit level, workshop level and factory level course content,

While mastering key technologies such as digital twin modeling and simulation, students also systematically learn key technologies and skills such as high-end CNC machine tools, industrial robots, machine vision, AGV and MES manufacturing execution systems involved in the integration of intelligent manufacturing systems, suit for engineer university, vocational college, education training centers etc.

Training System Composition

This training platform mainly consists of two parts: hardware system and software system.

The hardware system is mainly composed of console, PLC, touch screen, buttons and other human-computer interaction equipment, which are used for interactive operation with virtual scenes and equipment.

The software system is mainly composed of PLC programming software, configuration software, industrial robot off-line programming software and factory automation simulation software.

This Mechatronics Learning System is mainly used for practical training tasks such as 3D scene construction, mechanical motion attribute creation, electrical component attribute setting and association, production line virtual debugging and beat optimization.

Using virtual simulation, offline programming and combination of virtual and real technologies, through programming and debugging,

Students can learn to master the basic operation, programming and communication between equipment such as PLC, touch screen, industrial robot, AGV, laser marking machine, servo motor and stepper motor.

At the same time, the 3D modeling of mechatronics training kit can also save the cost of school equipment procurement, reduce equipment consumption in the teaching process, and carry out efficient teaching work.

Training Projects

The industrial engineering lab equipment training system can meet the requirements of "Digital Design and Manufacturing", "Intelligent Production Planning Management (MES)", "Programmable Logic Controller", "Industrial Robotics", "Industrial Robot Programming", "Industrial Robot Offline Programming and Simulation" " and other course teaching.


Available training projects include:

-  PLC programming and debugging

-  HMI configuration and debugging

-  Cognition and use of industrial robot teaching device

-  Offline programming and debugging of industrial robots

-  TCP/IP communication between PLC and six-axis industrial robot

-  Communication between MES and PLC

-  Application of vision technology

-  Digital 3D model building and layout

-  Industrial network communication and debugging

-  Application of MES system

-  Co-simulation of mechatronics: mechanical interference, mechanism kinematics verification, mechanism dynamics verification

-  Joint virtual commissioning of equipment automation: PLC program, HMI screen


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