Hyperspectral Food Quality Inspection and Sorting Solutions
We offer quality inspection and sorting solutions for your unique needs in the food industry, using hyperspectral and other imaging technologies combined with industrial robotics.
Our Food Quality Inspection and Sorting Solutions are designed to help you enhance the quality control processes in your food production facilities and ensure the highest standards of product quality and safety.
Using AI-boosted cutting-edge hyperspectral image processing algorithms and robotic technologies, we offer tailored solutions to meet the specific needs of the food industry. Our solutions enable the automatic identification and sorting of food products based on various criteria such as chemical features/composition, color, size, shape, and defects, ensuring consistent quality and compliance with industry standards.
With our customer-centric approach, we strive to understand your unique requirements and provide innovative solutions to address them effectively. Our team of engineers is dedicated to delivering reliable and efficient solutions that optimize your food production processes.
Our Hyperspectral Food Quality Analysis and Sorting Solutions include:
- Chemical composition, color, shape, and size analysis
- Foreign object detection and removal
- Defect detection and sorting
- Product classification and sorting
- Quality grading and reporting
Sample Applications
Foreign Object Detection in Hazelnut
Foreign Object Detection in Almond
Meat Quality Grading
Histamine Detection in Tuna Fish
Our Success Story
Detecting Allergens and Foreign Objects in Cashew with Hyperspectral Imaging
In this application, the system we developed according to our customer's needs utilizes hyperspectral imaging technology to automatically identify and remove allergens and foreign objects in cashew nuts. This ensures that our customer is confident that the cashews arriving at the food processing facility are free from allergens (e.g., peanuts) and foreign substances before proceeding to subsequent processing stages.