© 2025 TITVA Project – Toate drepturile rezervate
This section is dedicated to the implementation phase of the project (System based on Artificial Intelligence and Optical, Photonic, and Electrochemical Sensors for Monitoring Wastewater in High-Risk Environments).
It provides access to the official project documents, technical reports, and progress updates prepared by ROVISOPTICS SRL and its partners during the execution of the project.
Here, we will periodically publish new materials reflecting the project’s evolution, achievements, and technical milestones reached throughout its development.
In December 2025 , ROVISOPTICS SRL received the official document “Anexa 10 – Business Plan (SISMED)”, which marks the first step in the implementation phase of the SISMED project.
The document contains the complete description of the SISMED project, titled: “System based on Artificial Intelligence and Optical, Photonic, and Electrochemical Sensors for Monitoring Wastewater in High-Risk Environments.”
It includes:
Project objectives.
Investment details.
Implementation stages.
Expected results.
Marketing strategy.
Financial analysis and projections.
Contributions of the project partners: LIGHTNING NET, ROVISOPTICS, and EQUINOX EVOLUTION.
Performance indicators and expected technical outcomes (TRL8 maturity level)
In November 2025, ROVISOPTICS SRL have prepared this final technical report as part of the SISMED project “System based on Artificial Intelligence and Optical, Photonic, and Electrochemical Sensors for Monitoring Wastewater in High-Risk Environments”.
1. Sensor Module Configuration:
Presentation of the project background, objectives, and the collaboration framework among partners.
2. Types of Developed Sensors:
Electrochemical and plasmonic sensors designed for detecting chemical and biological species in complex liquid environments.
3. Technical Methodology:
Implementation of processes such as PVD, HiPIMS, Thermal Evaporation, Lithography, and material characterization techniques.
4. Preliminary Results and Evaluation:
Morphological and electrical characterization of the developed thin films and sensing layers.
5. Conclusions:
Establishment of an integrated technological platform for the fabrication of high-sensitivity and high-precision sensors, achieved in collaboration with INOE 2000, LIGHTNING NET SRL, and EQUINOX EVOLUTION SRL.