Robot Training Equipment

Robot Training Equipment

DLIR-379K Industrial Robot Digital Technology Training Platform

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Model: DLIR-379K Industrial Robot Digital Technology Training Platform

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

2.System footprint: Length × Width × Height ≈ 3m × 2m×1.6m (Width can be adjusted according to site conditions)

Platform dimensions: Length × Width × Height = 1.8 m × 1.1 m × 1.7 m

3.Total power: Approximately 3.0 KVA.

4.Altitude: ≤4000m.

5. Input power: AC220V±10%.

Output power: DC24V.

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

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

8.Compressed air pressure: 0.3-0.7MPa.


DLIR-379K Industrial Robot Digital Technology Training Platform

Details introduction

Equipment Overview

DLIR-379K Industrial Robot Digital Technology Training Platform is an industrial robot professional skills assessment platform developed based on the national vocational skills standards for "Industrial Robot System Operators" and "Industrial Robot System Maintenance Personnel". It integrates training, assessment, and evaluation.

The platform is based on KUKA KR4 R600 industrial robots and SIEMENS S7-1200 PLCs, and is equipped with Hikvision industrial vision (2D color) touch screens, RFID reading and writing modules, basic operation assessment modules, machining automation task units, intelligent transfer-sorting-palletizing task units, gift packaging task units, welding task units, grinding and polishing task units, digital twins and industrial gateways, etc.

The platform can provide skills training and assessment for industrial robots, including coordinate calibration, trajectory programming and operation, assembly, handling, palletizing, packaging, welding, grinding and polishing , gluing, and industrial vision inspection, which are closely related to industrial applications. It can also be used to assess digital technologies such as simulation, digital twins, and industrial gateways.

The skills that students can learn and master using this platform include sensor detection technology, visual inspection technology, RFID reading and writing technology, electrical control technology, motor drive technology, industrial robot technology, PLC technology, configuration technology, production line process design, system maintenance and fault detection technology, industrial Ethernet communication technology, digital twin technology, and industrial gateway technology.


Training Project

Section 1: Robot Training

1)Installation of industrial robots

2)Installation of industrial robot teach pendant

3)Installation of end-effector tools for industrial robots

4)Setting parameters for industrial robots

5)Practical training on industrial robot operation modes and manual speed

6)Viewing frequently used information about industrial robots

7)Introduction to Industrial Robot Programming Instructions

8)Backup and recovery of industrial robot programs

9)Practical training on the calibration of industrial robot coordinate system

10)Industrial robot fault diagnosis and maintenance

Section 2 , Electrical Application Training

11)Practical training in reading electrical drawings

12)Pneumatic circuit connectors and electrical wiring

13)Application of detection switches

14)Applications of various sensors

15)Application of pneumatic components

16)PLC Installation and Application

17)RFID Installation and Application

18)Touchscreen installation and application

Section 3 : Practical Training on Equipment Communication Applications

19)Robot and PLC communication

20)Touch screen and PLC communication

21)Servo system and PLC communication

22)Communication between frequency converter and PLC

23)Practical training in industrial robots and visual communication

24)PROFINET communication for PLC and remote I/O

25)MODBUS-RTU communication between PLC and weighing instrument

Section 4. Comprehensive Equipment Task Training

26)Industrial robot planar drawing task

27)Industrial robot curved surface working tasks

28)Application of quick-change tools for industrial robots

29)Industrial robot handling and palletizing tasks

30)Industrial robot gift packaging assembly tasks

31)Industrial robot machine tool loading and unloading tasks

32)Industrial robot grinding and welding tasks

33)Robot assembly and disassembly training using robot simulation software

34)RFID reader communication application programming and debugging

Section 5. Digital Twin Training

35)Product modeling application

36)Model import and assembly application

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

38)Common Sensor Signals and Signal Adapter Setup and Applications

39)Digital twin and virtual PLC virtual debugging applications

40)Digital twin and actual PLC (physical device) virtual-physical debugging application

Section 6. Virtual Disassembly and Assembly Training of Industrial Robots

41)One-axis and two-axis disassembly and assembly training

42)Three-axis and four-axis assembly and disassembly training

43)Five-axis and six-axis disassembly and assembly training


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