Professional supplier of AI and robot teaching equipment
Available on backorder
The Desktop Intelligent Manufacturing Production Line is a compact and integrated training platform designed for education in robotics, machine vision, and smart manufacturing. It combines three six-axis robots, an industrial vision system, dual conveyor modules, and a PLC control unit to simulate real-world production processes such as assembly, inspection, sorting, and material handling. With an open architecture and full source code access, the system supports C++, Python, and OpenCV for flexible development and secondary innovation. Built-in AI algorithms, including object detection, classification, and OCR, enable rapid development of vision-guided robotic applications. Its modular and cost-effective design delivers essential industrial functions in a desktop format, making it ideal for classroom teaching, group training, and research. The Desktop Intelligent Manufacturing Production Line is widely applicable to courses in robotics, machine vision, PLC control, and Industry 4.0 technologies.
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1. Open Experimental Environment
Supports Python and OpenCV for image processing, machine vision, and application development. Provides full access to image processing functions and enables parameter-based configuration or custom project development. Built-in vision tools support object detection, OCR, and defect inspection, allowing real-world industrial training such as measurement, inspection, and classification.
2. Fully Open Source
Offers full access to software frameworks and algorithm-level source code, supporting secondary development. Includes comprehensive documentation, experiment guides, and system architecture references.
3. Graphical Interaction Software
Equipped with a graphical vision platform featuring drag-and-drop operation, real-time status monitoring, and modular design. Supports extensive image processing tools, multi-platform compatibility, and integration with various cameras. Simplified interfaces reduce development effort and support common industrial communication protocols.
4. Vision-Based Positioning, Inspection, and Recognition
Implements positioning, defect detection, and object recognition. Robots perform material handling based on vision guidance, while inspection and sorting are completed through coordinated system operation.
5. Robot Hand-Eye Calibration
Supports vision-guided robotic operation through hand-eye calibration. The system adopts an eye-to-hand configuration, enabling efficient object detection and flexible application scenarios.
6. Vision-Guided Robotic Applications
Supports applications such as sorting, palletizing, object recognition, and OCR, simulating real industrial inspection and handling processes.
7. Intelligent Manufacturing System Integration
Integrates multiple robots, conveyors, vision system, and sensors using standard industrial communication protocols to achieve a complete automated workflow including feeding, inspection, assembly, and sorting.