Services
Services
Microfluidics and Labs-on-chips at any stage
Integrated solutions of small laboratory equipment
3D Design and Printing
Software development to automate the laboratory
Image analysis specializing in microscopy images
Microfluidics and Labs-on-chips at any stage
We support your project at any stage, from concept and design to prototyping, fabrication, and system integration. We handle the technical groundwork so your team can focus on validation, performance, and results.
High-resolution microfeatures
Features above 2 μm
Versatile materials
SU-8, PMMA, COC, and similar substrates
Rapid iteration
Fast response times to accelerate critical early-stage development
Custom-built solutions
Devices adapted to your workflow, validation strategy, and downstream integration
Microfluidics and Labs-on-chips at any stage
We support your project at any stage, from concept and design to prototyping, fabrication, and system integration. We handle the technical groundwork so your team can focus on validation, performance, and results.
High-resolution microfeatures
Features above 2 μm
Versatile materials
SU-8, PMMA, COC, and similar substrates
Rapid iteration
Fast response times to accelerate critical early-stage development
Custom-built solutions
Devices adapted to your workflow, validation strategy, and downstream integration
Integrated solutions of small laboratory equipment
We turn your laboratory concept into a custom-built system by combining electronics, sensing, 3D printing, laser cutting, and rapid fabrication methods adapted to your specific workflow.
Electronics integration
We integrate electronics and control systems to let you monitor, control, and measure any parameter your application requires.
Custom mechanical design
We develop custom mechanical parts and enclosures using SolidWorks, adapting every detail to your system requirements
Rapid prototyping
We use 3D printing and laser cutting to move quickly from concept to functional prototype
Tailored systems
Devices adapted to your workflow, validation strategy, and downstream integration.
Integrated solutions of small laboratory equipment
We turn your laboratory concept into a custom-built system by combining electronics, sensing, 3D printing, laser cutting, and rapid fabrication methods adapted to your specific workflow.
Electronics integration
We integrate electronics and control systems to let you monitor, control, and measure any parameter your application requires.
Custom mechanical design
We develop custom mechanical parts and enclosures using SolidWorks, adapting every detail to your system requirements
Rapid prototyping
We use 3D printing and laser cutting to move quickly from concept to functional prototype
Tailored systems
Devices adapted to your workflow, validation strategy, and downstream integration.
3D Design and Printing
We turn your ideas into custom 3D parts using SLA and FDM technologies
SLA and FDM printing
High-detail and functional 3D printing options for different needs.
Multi-material capability
Up to 5 print heads for more complex and customized parts.
Maximum build volume
Up to 36 x 36 x 36 cm.
Custom 3D design
From concept and design to prototyping, fabrication, and system integration
3D Design and Printing
We turn your ideas into custom 3D parts using SLA and FDM technologies
SLA and FDM printing
High-detail and functional 3D printing options for different needs.
Multi-material capability
Up to 5 print heads for more complex and customized parts.
Maximum build volume
Up to 36 x 36 x 36 cm.
Custom 3D design
From concept and design to prototyping, fabrication, and system integration
Software development to automate the laboratory
We build tailored software platforms that centralize resource management, ensure end-to-end traceability, and help organizations comply with the highest quality standards.
Instrument integration
We connect laboratory instruments, sensors, and devices into a single automated workflow.
Control and monitoring
We develop software to monitor, control, and record the parameters that matter in your process.
Workflow automation
We automate repetitive tasks and process steps to improve efficiency, consistency, and throughput
Database and cloud integration
We build software solutions that connect with databases and cloud-based applications to manage, visualize, and analyse your laboratory data.
Software development to automate the laboratory
We build tailored software platforms that centralize resource management, ensure end-to-end traceability, and help organizations comply with the highest quality standards.
Instrument integration
We connect laboratory instruments, sensors, and devices into a single automated workflow.
Control and monitoring
We develop software to monitor, control, and record the parameters that matter in your process.
Workflow automation
We automate repetitive tasks and process steps to improve efficiency, consistency, and throughput
Database and cloud integration
We build software solutions that connect with databases and cloud-based applications to manage, visualize, and analyse your laboratory data.
Image analysis specializing in microscopy images
We design custom microscopy image analysis pipelines based on classical morphological processing or neural network models, selected according to image quality, object complexity, and the final analytical objective.
Morphological image processing
We use operations such as filtering, thresholding, erosion, dilation, opening, and closing to extract robust information from suitable microscopy images.
Neural network-based analysis
For more complex datasets, we apply deep learning approaches to improve segmentation, classification, and feature extraction.
Segmentation and quantification
We identify relevant structures and convert microscopy images into measurable data for downstream analysis.
Custom workflows
We tailor each analysis pipeline to the image quality, sample type, and scientific question behind the dataset.
Image analysis specializing in microscopy images
We design custom microscopy image analysis pipelines based on classical morphological processing or neural network models, selected according to image quality, object complexity, and the final analytical objective.
Morphological image processing
We use operations such as filtering, thresholding, erosion, dilation, opening, and closing to extract robust information from suitable microscopy images.
Neural network-based analysis
For more complex datasets, we apply deep learning approaches to improve segmentation, classification, and feature extraction.
Segmentation and quantification
We identify relevant structures and convert microscopy images into measurable data for downstream analysis.
Custom workflows
We tailor each analysis pipeline to the image quality, sample type, and scientific question behind the dataset.
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