Robot Training Equipment

Robot Training Equipment

DLIR-165 Mechatronics Intelligent Production Line

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Model:DLIR-165 Mechatronics Intelligent Production Line

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

2. System footprint: Length × Width × Height ≈ 3m × 2m × 2m (Width can be adjusted according to site conditions)

Platform dimensions: Length × Width × Height = 1.6 m × 1.1 m × 1.84 m

3.Total power: Approximately 5.0 KVA.

Altitude: ≤4000m.

4.Input power: AC220V±10%.

Output power: DC24V.

5.Environment: Vibration ≤0.5G, free from dust, corrosive gases, flammable gases, oil mist, water vapor, dripping water or salt, etc.

6.The system is reliably grounded: the grounding impedance is less than 4 ohms.

7.Compressed air pressure: 0.3-0.7MPa.


DLIR-165 Mechatronics Intelligent Production Line

Details introduction

Equipment Overview

DLIR-165 mechatronics intelligent production line is specifically designed for mechatronics majors and is a highly integrated and innovative training platform. This equipment integrates technologies from multiple fields such as mechanical transmission, electrical control, sensing and detection, and information management, closely aligning with the core knowledge system of mechatronics and providing comprehensive support for professional teaching and practice.

Based on an Industry 4.0 smart factory, the equipment highly replicates real-world production scenarios, allowing students to immerse themselves in industrial production processes on campus. Its modular design is a major highlight, simulating complete processes such as material sorting, assembly, testing, packaging, and warehousing . The system software includes PLC programming software and an industrial digital twin development platform. Students can learn and master relevant professional skills through this localized physical equipment system.


Training Project

Section 1: Electrical Wiring Training

1)Practical training in reading electrical drawings

2)Pneumatic circuit connectors and electrical wiring

Section 2, Electrical Application Training

3)Application of detection switches

4)Applications of multiple sensors

5)Pneumatic technology application

6)PLC Installation and Application

7)RFID Installation and Application

8)HMI configuration monitoring and interface design technology

Section 3. Equipment Communication Applications

9)Touch screen and PLC communication

10)Applications of major types of motor drive technologies;

11)Applications of motion control systems;

12)RFID application technology;

13)MOUDLEBUS communication between PLC and RFID;

14)Profinet communication between PLCs;

15)Applications of bus communication technology;

16)Applications of industrial automation networks;

Section 4. Industrial Digital Twin Applications

17)Product modeling application

18)Digital 3D Model Building and Layout

19)Basic electromechanical objects and common kinematic pair settings and applications

20)Common Sensor Signals and Signal Adapter Setup and Applications

21)Tecno and Virtual PLC Virtual Debugging Applications

22)Tecno and its application in virtual and real debugging with actual PLCs (physical devices)

23)Mechatronics co-simulation: mechanical interference, mechanism kinematics verification, mechanism dynamics verification;



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