Intended for smart factory education and must meet that purpose; the system configuration should enable production of products suitable for commercial use while ensuring robustness and stability as training equipment
Using sensors and software required for the equipment’s functions, integrated management of all functions must be possible; data acquired during operations should be stored and monitored.
To ensure trainee safety throughout all processes, the system should be built as a smart factory setup
supporting control, maintenance, and workplace safety management, and it must be upgradable. Constructed to intelligently optimize manufacturing processes through the convergence of IoT based software development, communications, sensor application, development, and automatic control technologies.
Configured and manufactured as a convergence system applying IT, software, and IoT, enabling customized practice across all processes—parts supply, assembly, inspection—based on advanced manufacturing technologies such as IoT and process simulation.
Through dedicated software, the system must implement—from layout design and control design to production simulation and operation monitoring—within a single package.
The training system should allow easy on site checks via mobile devices with corresponding training support.
For user safety, provide a case housing; route electrical wiring and pneumatic hoses using ducts and cable chains.
All components must be brand new and unused
Designed to store finished products
Sliding type design for loading and storage
At least 10 storage sliders
Item detection sensor: 1 per slider
Control method: constant speed/speed control operation via PLC analog I/O and inverter closed loop control
Belt dimensions: ≥ 0.8 × 86 × 826 mm
Mechanism: PVC belt type
AC motor: AC 220 V
Ball bearings: ≥ 4 ea
Bracket: for motor mounting
Power transmission: round belt PULLEY (AL6061)
Equipped with drop prevention stoppers
Rated input: single phase 220–240 V; Motor capacity: 0.1 kW; Apparent power: 0.3 kVA