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According to the fundamental principles of Industry 4.0, SMARTTECH3D Robotized enables the digitization and optimization of processes within the enterprise while providing effective tools for communication between various user groups, such as engineers, management, and sub-suppliers. By eliminating the human factor, the measurements obtained are repeatable and of the highest quality.
Best quality data thanks to the new technology
SMARTTECH3D Robotized is an integrated ecosystem for automating quality control and reverse engineering processes. The device combines the advantages of a robotic arm and a high-resolution scanning head with a 20MP detector for the complete implementation of the designed measurement process. The system not only automates the creation of 3D models but also independently prepares an examination report in PDF format and displays a map of deviations from the CAD model directly onto the measured object. This functionality serves as a universal solution for industrial, archaeological, and research applications.
Scanning head with KUKA robotic arm
SMARTTECH3D Robotized is available in three models, each with different working volumes. Each model is equipped with a lightweight scanning head featuring a stereoscopic system of 20 MP resolution cameras, a KUKA robotic arm, workstations, a rotary stage, and advanced SMARTTECH3Dmeasure software with a robotic module.
Automatic calibration process
The entire SMARTTECH3D Robotized system is designed for maximum automation of all processes while minimizing the risk of human error. Automating the calibration process guarantees users the measurement accuracy declared by the manufacturer, regardless of the operator’s experience. This enhances the reliability of the entire system and allows for easy integration with quality systems within the enterprise.
Precise quality control and reverse engineering
The measuring station is managed by the SMARTTECH3Dmeasure software installed on an efficient workstation. This dedicated software controls the entire measurement process, starting from the monitoring of operating system parameters to saving the finished 3D model or the completed quality control report in PDF format.
Additionally, the software allows for the execution of various processes, including the transformation of the point cloud into advanced editing of created models and reports. Moreover, the program features an automatic quality control module. Its output can include a color point cloud with pass/fail annotations at specific points, along with an automatically generated report in PDF format. The user-friendly interface enables users to create measurement plans and edit results based on specific needs. Thanks to this flexibility, the system can be used for both reverse engineering and quality control, thus reducing the need to purchase two independent devices and minimizing additional costs.
