Ceitek zelula malgu bat du, produktuaren ikuskaritzara bideratutako hainbat teknologia probatzeko aukera ematen duena. - Metrologia eta egitura-osotasuna (akatsen azterketa) 2D eta 3D teknika optikoen bidez - Prozesuen monitorizazioa tenperatura altuetan - Materialen sailkapena - Automatismoen eta robotikaren programazioa, integrazioa eta egokitzea ikuskapen eta neurketa prozesura Zelula honek, ikusmen artifizialeko tekniken bidez, emandako prozesu baten pean ekoitzitako piezen dimentsio-datuak eta egitura-osotasuna aztertzea ahalbidetzen du. Piezak in-line ikuskatzeko aukera ere ematen du, zero-akats kontzeptua bermatuz, errefusa murriztuz eta produktibitatea handituz. Zelula honek robotak eta automatismo industrialak probatu eta txertatzeko gaitasuna du, ikuskapenari beharrezko malgutasuna emateko.
Flexibility for robotic applications
Manufacture and assembly of components by robots
Quality control with robots
2D Vision Metrology
To achieve high-precision 2D dimensional control (hundredth or thousandth of a mm), telecentric optics of different sizes and precision benches are available.
3D Vision Metrology
The laboratory has several laser profilometers (of different sizes and wavelengths) and area scanners that allow for acquiring a 3D reconstruction of the object's geometry. From the reconstruction, the facility has computational geometry algorithms to perform all types of dimensional controls on the geometry.
Defectology with 2D vision.
Luminaires and cameras operating in the visible spectrum, as well as a variety of optics to cover different object sizes, working distances, etc. Once the images of the product are obtained, artificial intelligence algorithms are applied for classification and defect detection.
Material classification
Hyperspectral camera that operates in the visible and infrared spectrum, allowing for the classification of materials based on their spectral signature (material response to these wavelengths).
Monitoring of high-temperature processes.
High-level thermographic camera that allows monitoring of temperatures up to 2,000 °C.
Artificial vision techniques are used to obtain the geometry of the object and perform dimensional control.
A detailed report of the product that the client wants to characterize (metrological dimensions, defects, temperature, etc.).
Test and validate technologies in which the client may be interested.
Artificial vision techniques are used for the detection of visual defects such as marks, dirt, etc.
Artificial vision techniques are used to measure different aspects of the object.