Industry 4.0 Training System

Industry 4.0 Training System

DLIM-103MA Internet Collaborative Manufacturing Production System

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Model: DLIM-103MA 

1. Working power supply: AC220V±10%, 50Hz.

2. Land size: 7.6×3.5×2.02m or so (L×W×H overall layout size)

3. Working environment: temperature 5°C-+40°C, relative humidity <85% (25°C).

4. Safety protection: It has multiple protections for short circuit, overload, sound and light alarm lights, and emergency stop.

DLIM-103MA Internet Collaborative Manufacturing Production System
DLIM-103MA Internet Collaborative Manufacturing Production System
DLIM-103MA Internet Collaborative Manufacturing Production System
DLIM-103MA Internet Collaborative Manufacturing Production System

Details Introduction

Equipment Overview

The hardware platform of industrial engineering lab equipment DLIM-103MA Internet collaborative manufacturing production system consists of network layer suite, training platform, bookmark feeding module, industrial vision inspection module, six-axis industrial robot handling and assembly module, bookmark box feeding module, RFID electronic tag reading and writing unit, industrial engineering lab equipment consists of automated storage module, AGV mobile trolley and control system. The software platform of industrial engineering lab training equipment is composed of MES production information management system.

Features

1) Fieldbus control: the production line needs data flow transmission, the traditional hard wiring mode can not meet the requirements of a large number of data transmission, the equipment module and module all adopt fieldbus control.Reduce failure rate and increase equipment stability.

2) Modular design: in the past, the principle design was emphasized, while the consideration of field line construction was ignored. It was easy to increase the burden of wiring workers, and it was difficult to trace the fault.The control system of this equipment fully adopts the design concept of function module.Each node has a graph to rely on and locate the fault point accurately and quickly.

3) Flexible structure: the system adopts modular structure, which makes the use and combination of the system more flexible, and can meet the requirements of experiments, training and assessment.

4) Strong system integration: this platform integrates PLC, six axis industrial robot, AGV car, MES system and visual system, which can simulate various common control modes in industrial field, enable students to learn automation control systematically, and avoid being familiar with single electrical components, but not mutual controlPhenomenon.

5) Equipment safety: equipped with corresponding leakage, overload and short circuit protection devices, which can effectively protect the safety of users.

Training Projects

- Communication between PLC and remote I/O modules;

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

- Profinet communication between PLC and RFID;

- Profinet communication between PLC and PLC;

- Wireless communication between PLC and AGV trolley;

- Communication between MES and PLC;

- Installation, commissioning and programming of industrial robots;

- HMI and servo applications;

- Application of bus communication technology;

- Application of industrial automation network;

- Application of PLC technology;

- Application of motor drive technology;

- Application of vision technology;

- Application of motion control system;

- AGV trolley control system application;

- Use of laser marking technology;

- Application of MES system.


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