Turning advanced materials, intelligent sensing and physical data into deployable technologies.
Oliveris develops and integrates sensing, photonics, electronics, printed technologies, industrial data acquisition, control, AI and Digital Twins - taking deep-tech concepts from research through system integration, validation and industrial deployment.
Capabilities
Solutions we deliver
From sensor interfaces and electronics to industrial data, control and validation, Oliveris provides the engineering layer that turns individual technologies into working systems.
Oliveris Innovation Framework
- Research
- Prototype
- Validation
- Scale-up
- Industrial Deployment
Technology Areas
Where our technology is applied
We combine the same core engineering capabilities differently for each physical system and industrial problem.
Geothermal & Industrial Heat
Sensing, process instrumentation, control and Digital Twin integration for geothermal extraction and industrial heat.
Environmental Monitoring
Compact multimodal sensing and data systems for air, water and contaminant monitoring.
Agritech & Biosecurity
Portable sensing and data analysis for rapid, non-contact pest and plant-health screening.
Photovoltaics & Renewable Energy
Advanced materials, manufacturing methods and digital engineering for emerging renewable-energy technologies.
Advanced Manufacturing
Printed electronics, prototype engineering, process development and validation for scalable production.
Health-Related Sensing
Multimodal sensing architectures for rapid, portable and data-driven diagnostic research applications.
Project evidence
Proven across European R&I programmes
Oliveris develops its capabilities through awarded collaborative programmes spanning photonics, environmental sensing, agritech, geothermal systems, scientific AI and materials. These projects provide the test environments, partner networks and validation pathways needed to move technology towards industrial use.
COMPAS
CO integration of Microelectronics and Photonics for Air and Water Sensors
Project
senseApest
Portable sensor platform for non-contact plant-pest detection
Project
GEOFLEXheat
Geothermal Extraction and Upgrade with Flexible Usage for Industrial Heat Applications
Project
SafeDrop
Multimodal Photonic-Electronic Sensor Platform for Rapid Health and Environmental Diagnostics
ProjectSimuLingua
Simulation-Powered Computational Linguistics for Materials Foundation Models
ProjectHow do you want to work with us?
Research & consortium partners
Engineering and consortium-development capability for European R&I programmes - from proposal contribution, technical specification and work-package definition through prototype development, delivery, integration and validation.
- Work-package leadership
- System architecture and integration
- Prototype and validation evidence
Industrial & commercial partners
Application-focused support where physical systems need better sensing, electronics, data, control or a route from prototype to deployment.
- Sensing and instrumentation
- Digital and control integration
- Validation and scale-up
Universities & research institutes
Complementary engineering, prototyping, integration, validation and exploitation capability.
Funders & regional stakeholders
A Cork-based deep-tech SME building technical capability, project evidence and a pathway towards industrial deployment.
Technical talent & specialists
Work across advanced sensing, electronics, industrial data systems, energy technologies and European R&I programmes.
Partners
Built through collaboration
Oliveris works with universities, research institutes, specialist SMEs and industrial partners across Europe to connect materials, sensing, electronics, AI and real-world validation.
Insights
Latest project and technical updates

SafeDrop project officially kicks off
The SafeDrop consortium met at Fraunhofer IAP on 18–19 June 2026 to launch a 48-month Horizon Europe programme developing a bio-inspired multimodal photonic-electronic sensor platform.

SimuLingua consortium launches in Brussels
The SimuLingua consortium gathered in Brussels on 15–16 June 2026 to begin work on an open multimodal scientific foundation model for materials discovery.

OptiDrill project concludes with real-time drilling intelligence platform
The OptiDrill consortium completed its Horizon 2020 programme, reporting a real-time geothermal advisory system that combines machine learning, advanced sensors and data analytics.
Work with us
Partner with Oliveris
Discuss a consortium role, an industrial application, or a general enquiry.





