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Terra Innovatum Partners with Sant’Anna University to Advance Autonomous Operations and AI Integration for SOLO™

(Positive)
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partnership AI

Terra Innovatum (NASDAQ:NKLR) announced a collaboration with Sant’Anna University to advance autonomous operations and AI integration for the SOLO™ Micro-Modular Reactor.

The partnership targets predictive maintenance, robotics for inspection and decommissioning, and advanced structural modeling to enhance performance, reliability, and lifecycle management for scalable SOLO fleet deployment.

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News Market Reaction – NKLR

+4.84%
8 alerts
+4.84% Session close to close
+2.4% Peak in 2 hr
$443.60M Market Cap
0.4x Rel. Volume

In the May 11 session, NKLR gained 4.84%, reflecting a moderate positive market reaction. Argus tracked a peak move of +2.4% during that session. Our momentum scanner triggered 8 alerts that day, indicating moderate trading interest and price volatility.

Data tracked by StockTitan Argus on the day of publication.

Market Context

This announcement extends Terra Innovatum’s SOLO™ strategy into advanced robotics and AI, targeting ...
Analysis

This announcement extends Terra Innovatum’s SOLO™ strategy into advanced robotics and AI, targeting predictive maintenance, non-destructive testing, and lifecycle management in collaboration with Sant’Anna. It builds on recent milestones in manufacturing, regulation, and test infrastructure for the micro‑modular reactor. Investors may track progress on these AI and robotics initiatives alongside resolution of the delayed Form 10‑K, regulatory engagement, and any updates related to going‑concern and commercialization plans.

Historical Context

5 past events · Latest: May 04 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
May 04 US HQ expansion Positive -3.0% Opened Pittsburgh HQ and added leaders to advance SOLO FOAK deployment.
Apr 29 Manufacturing partnership Positive -5.8% Signed Conuar agreement to improve core component manufacturing readiness.
Apr 27 Regulatory update Positive -4.5% Highlighted NRC draft Part 57 rule supporting factory-built microreactors.
Apr 21 Test infrastructure Positive +4.8% Secured helium circulator to expand SOLO test infrastructure and validation.
Apr 17 Filing delay update Negative -0.3% Updated on delayed Form 10‑K and Nasdaq delinquency letter despite strong cash.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Recent strategic and regulatory updates have often been followed by negative price reactions, with multiple positive-sounding SOLO™ milestones met by selling pressure.

Recent Company History

Over the past month, Terra Innovatum has reported several SOLO™-related milestones, including a new U.S. headquarters in Pittsburgh on May 4, 2026, a manufacturing partnership with Conuar on April 29, 2026, NRC progress on draft Part 57 rules on April 27, 2026, and expanded test infrastructure on April 21, 2026. It also disclosed a Nasdaq delinquency notice tied to its 2025 Form 10‑K. Today’s AI and robotics collaboration extends that deployment-readiness and lifecycle-management narrative for the SOLO™ platform.

Key Terms

predictive maintenance, non-destructive testing, artificial intelligence, micro-modular reactor, +4 more
8 terms
predictive maintenance technical
"development of artificial intelligence solutions for predictive and condition-based maintenance"
Predictive maintenance involves using data and technology to monitor equipment or machinery in real time, identifying potential problems before they cause failures or breakdowns. By predicting when maintenance is needed, it helps prevent costly repairs and downtime. For investors, it highlights how companies can reduce expenses, improve efficiency, and maintain reliable operations, which can positively impact financial performance.
non-destructive testing technical
"robotic systems for non-destructive testing and inspection"
A set of inspection methods used to check the condition of equipment, structures or materials without harming them, like using X-rays, ultrasound or surface scans instead of cutting things open. Investors care because these tests reveal hidden wear, defects or safety issues that affect a company’s operating costs, regulatory compliance, asset life and downtime risk — information that can change expectations for future profits and liabilities.
artificial intelligence technical
"a leading institution in robotics and artificial intelligence"
Artificial intelligence is the ability of computers and machines to perform tasks that typically require human thinking, such as understanding language, recognizing patterns, or making decisions. For investors, it matters because AI can enhance efficiency, uncover new insights, and enable smarter strategies, potentially impacting the value and performance of companies that develop or utilize this technology.
micro-modular reactor technical
"developer of the SOLO™ Micro-Modular Reactor"
A micro-modular reactor is a very small, factory-built nuclear power unit designed to produce a modest amount of steady electricity or heat and to be combined with others as needed, like Lego blocks for a power plant. For investors it matters because these units promise lower individual upfront costs, faster factory production and flexible scaling, while also carrying regulatory, long-term construction and public-acceptance risks that affect returns.
micro-reactor technical
"future of easy-to-deploy micro-reactor nuclear technology"
A micro-reactor is a compact, factory-built system that carries out controlled reactions or generates heat and electricity on a much smaller scale than traditional industrial plants—think of a portable power plant or a kitchen-sized chemical lab. For investors, micro-reactors matter because their lower upfront cost, faster deployment and modular design can change project economics and risk profiles, affecting capital needs, revenue timing and regulatory oversight.
anomaly detection technical
"intended to enhance system reliability, enable advanced anomaly detection"
Anomaly detection is software that looks for patterns or datapoints that don’t fit expected behavior, like a smoke detector spotting an unusual signal in a room. For investors it flags unexpected events — sudden trading spikes, accounting irregularities, unusual customer behavior or operational problems — providing early warning of risk or opportunity so decisions can be made before small problems become big losses.
structural mechanics technical
"support structural mechanics analysis and advanced modeling activities"
Structural mechanics is the study of how buildings, machines, vehicles or components bear loads, bend, crack and ultimately hold together—think of it as understanding how a bridge or a bone responds to stress. For investors, it matters because solid structural design and testing reduce the risk of failure, costly recalls, regulatory problems and unexpected repair bills, while weak design can lead to reputational damage and higher future capital or legal costs.
decommissioning technical
"explore robotic applications for decommissioning, with the goal of enabling more automated"
Decommissioning is the planned process of taking a long-lived asset or facility out of service, making it safe, removing equipment, and restoring the site for future use or closure. Investors care because it often requires large, sometimes multi-year costs and legal obligations that reduce future cash flow and create liabilities or reserve requirements on a company’s balance sheet — like budgeting to dismantle and clean up an old factory or ship.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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Collaboration focused on predictive maintenance, robotics, and advanced modeling to enhance performance, and lifecycle management of the SOLO™ platform

Supports development of a data-driven operating models for scalable fleet deployment

Highlights Sant’Anna’s leadership in advanced robotics, including medical robotics, a field exemplified by globally recognized systems such as the da Vinci Surgical System

NEW YORK, May 11, 2026 (GLOBE NEWSWIRE) -- Terra Innovatum Global N.V. (NASDAQ: NKLR) (“Terra” or the “Company”), developer of the SOLO™ Micro-Modular Reactor, today announced that it has entered into a collaboration agreement with Scuola Universitaria Superiore Sant’Anna of Pisa (or “Sant’Anna”), a leading institution in robotics and artificial intelligence. Sant’Anna is widely recognized for its contributions to advanced robotics, including work in the broader field that produced systems such as the da Vinci Surgical System, one of the most widely deployed surgical robotics platforms in the United States.

20260511 NKLR Accordo finale Sant'Anna-Terra Innovatum

From left to right: Nicola Vitiello (Rector of Scuola Superiore Sant'Anna University), Alessandro Petruzzi, Marco Frey (Professor, Scientific responsible for the Terra-Sant'Anna Project), Marco Cherubini, Francesco Montomoli (Professor)

The collaboration will focus on the development of artificial intelligence solutions for predictive and condition-based maintenance, as well as robotic systems for non-destructive testing and inspection. These capabilities are intended to enhance system reliability, enable advanced anomaly detection, and support optimized maintenance planning across the operational lifecycle of the SOLO reactor.

In parallel, the collaboration will support structural mechanics analysis and advanced modeling activities to further validate and optimize key components of the SOLO system, reinforcing performance and design robustness as the platform advances toward deployment.

“The collaboration with Sant’Anna enables Terra Innovatum to work alongside a leading institute in robotics and artificial intelligence,” said Alessandro Petruzzi, Co-Founder and Chief Executive Officer of Terra Innovatum. “It supports the continued advancement of the SOLO platform across performance, operability, and lifecycle management. The initiative will also explore robotic applications for decommissioning, with the goal of enabling more automated and efficient end-of-life operations and stronger lifecycle integration.”

“This collaboration represents an important opportunity to apply our expertise in robotics and artificial intelligence to advanced energy systems in support of what we believe to be the future of easy-to-deploy micro-reactor nuclear technology,” said Nicola Vitiello, Rector and Associate Professor with The BioRobotics Institute at Sant’Anna. “We look forward to developing solutions that can enhance system performance, monitoring, and lifecycle management for the SOLO Micro-Reactor.”

Marco Frey, Professor and Scientific responsible for the Terra-Sant'Anna Project at Sant’Anna added, “We look forward to applying our expertise in robotics and artificial intelligence to advanced energy systems in ways that support enhanced performance, monitoring, and lifecycle management, with the potential to improve system reliability, reduce operating costs, and strengthen long-term asset performance.”

ABOUT SANT’ANNA

Sant’Anna School of Advanced Studies is a public university institute - with special autonomy - working in the field of applied sciences: Economics and Management, Law, Political Sciences, Agricultural Sciences and Plant Biotechnology, Medicine, and Industrial and Information Engineering. The School promotes the internationalization of didactics and research with innovative paths in the fields of university education, scientific research and advanced training.

The “Robotics & AI” Program is the result of a collaboration between the Institute of BioRobotics, the TeCIP Institute (Communication, Information and Perception Technologies), and the Institute of Mechanical Intelligence, positioning Sant’Anna School of Advanced Studies as a leading international center of excellence in advanced robotics and artificial intelligence.

The program aims to develop a new generation of autonomous, intelligent robotic systems capable of operating effectively in complex, real-world environments. By integrating artificial intelligence (AI), materials science and technology (MST), and advanced engineering, the initiative enables the design of cutting-edge solutions across key sectors, including ground and space transportation, energy, healthcare, agriculture, and emerging creative technologies.

ABOUT TERRA INNOVATUM & SOLO

Terra Innovatum's mission is to make nuclear power accessible. We deliver simple and safe micro-reactor solutions that are scalable, affordable and deployable anywhere 1 MWe at a time.

Terra Innovatum is a pioneering force in the energy sector, dedicated to delivering innovative and sustainable power solutions. Terra Innovatum plans to leverage cutting-edge nuclear technology through the SOLO™ Micro-Modular Reactor (SMR™) to provide efficient, safe, and environmentally conscious energy. With a mission to address global energy shortages, Terra Innovatum combines extensive expertise in nuclear industry design, manufacturing, and installation licensing to offer disruptive energy solutions. Committed to propelling technological advancements, Terra Innovatum and SOLO™ are dedicated to fostering prosperity and sustainability for humankind.

It is anticipated that SOLO™ will be available globally within the next three years. Conceptualized in 2018 and engineered over six years by experts in nuclear safety, licensing, innovation, and R&D, SOLO™ addresses pressing global energy demands with a market-ready solution. Built from readily available commercial off-the-shelf components, the proven licensing path for SOLO™ enables rapid deployment and minimizes supply chain risks, ensuring final cost predictability. Designed to adapt with evolving fuel options, SOLO™ supports both LEU+ and HALEU, offering a platform ready to transition to future fuel supplies.

SOLO™ will offer a wide range of versatile applications, providing CO2-free, behind-the-meter, and off-grid power solutions for data centers, mini-grids serving remote towns and villages, and large-scale industrial operations in hard-to-abate sectors like cement production, oil and gas, steel manufacturing, and mining. It also has the ability to supply heat for industrial applications and other specialized processes, including water treatment, desalination and co-generation. Thanks to its modular design, SOLO™ can easily scale to deliver up to 1GW or more of CO2-free power with a minimal footprint, making it an ideal solution for rapidly replacing fossil fuel-based thermal plants. Beyond electricity and heat generation, SOLO™ can also contribute to critical applications in the medical sector by producing radioisotopes essential for oncology research and cancer treatment.

To learn more, visit: https://investors.terrainnovatum.com/. Follow us on X: https://x.com/TerraInnovatum and LinkedIn: https://www.linkedin.com/company/terra-innovatum-solo/.

FORWARD LOOKING STATEMENTS

This press release includes “forward-looking statements” within the meaning of the federal securities laws, including, but not limited to, opinions and projections prepared by Terra Innovatum’s management. Forward-looking statements generally relate to future events or future financial or operating performance, including pro forma and estimated financial information, and other “forward-looking statements” (as such term is defined in the Private Securities Litigation Reform Act of 1995). For example, projections of future sales, EBITDA, Adjusted EBITDA and other metrics are forward-looking statements. The recipient can identify forward-looking statements because they typically contain words such as “outlook,” “believes,” “expects,” “ will,” “projected,” “continue,” “increase,” “may,” “should,” “could,” “seeks,” “predicts,” “intends,” “trends,” “plans,” “estimates,” “anticipates” or the negatives or variations of these words or other comparable words and/or similar expressions (but the absence of these words and/or similar expressions does not mean that a statement is not forward-looking). These forward-looking statements specifically include, but are not limited to, statements regarding estimates and forecasts of financial and performance metrics, projections of market opportunity and market share and the potential success of Terra Innovatum’s strategy and expectations. Forward-looking statements, opinions and projections are neither historical facts nor assurances of future performance. Instead, they are based only on current beliefs, expectations and assumptions regarding the future of Terra Innovatum’s business, future plans and strategies, projections, anticipated events and trends, the economy and other future conditions. Because forward-looking statements relate to the future, they are subject to inherent uncertainties, risks and changes in circumstances that are difficult to predict and many of which are outside of Terra Innovatum’s control. These uncertainties and risks may be known or unknown. Factors that may cause actual results to differ materially from current expectations include, but are not limited to: changes in domestic and foreign business, market, financial, political and legal conditions; failure to realize the anticipated benefits of the proposed business combination; risks relating to the uncertainty of the projected financial information with respect to Terra Innovatum; future global, regional or local economic and market conditions; the development, effects and enforcement of laws and regulations; Terra Innovatum’s ability to manage future growth; Terra Innovatum’s ability to develop new products and services, bring them to market in a timely manner, and make enhancements to its platform; the effects of competition on Terra Innovatum’s future business; and the outcome of any potential litigation, government and regulatory proceedings, investigations and inquiries. If any of these risks materialize or the Terra Innovatum’s assumptions prove incorrect, actual results could differ materially from the results implied by the forward-looking statements contained herein. In addition, forward-looking statements reflect Terra Innovatum’s expectations and views as of the date of this presentation. Terra Innovatum anticipates that subsequent events and developments will cause its assessments to change. However, while Terra Innovatum may elect to update these forward-looking statements in the future, each of them specifically disclaims any obligation to do so. Accordingly, you should not place undue reliance on the forward-looking statements, which speak only as of the date they are made.

CONTACTS

Giordano Morichi
Founding Partner, Chief Business Development Officer & Investor Relations
Terra Innovatum Global N.V.
E: g.morichi@terrainnovatum.com
W: www.terrainnovatum.com

Investor Relations
Simon Willcocks
Alliance Advisors IR
E: investors@terrainnovatum.com

Media Relations
Fatema Bhabrawala
Alliance Advisors IR
E: TerraIR@allianceadvisors.com

A photo accompanying this announcement is available at https://www.globenewswire.com/NewsRoom/AttachmentNg/1892bf00-734c-48ab-989d-0c8144152f08


FAQ

What is the Terra Innovatum (NASDAQ:NKLR) collaboration with Sant’Anna University for the SOLO micro-reactor?

Terra Innovatum and Sant’Anna University agreed to collaborate on AI and robotics for the SOLO micro-reactor. According to Terra Innovatum, the work targets predictive maintenance, robotics for inspection and decommissioning, and advanced modeling to improve performance, reliability, and lifecycle management.

How will AI be used in Terra Innovatum’s SOLO (NASDAQ:NKLR) collaboration with Sant’Anna University?

AI will be developed for predictive and condition-based maintenance of the SOLO reactor platform. According to Terra Innovatum, these solutions aim to enhance anomaly detection, improve system reliability, and support optimized maintenance planning across the operational lifecycle of SOLO micro-modular reactors.

What role will robotics play in the Terra Innovatum (NKLR) and Sant’Anna partnership for SOLO?

Robotics will be applied to non-destructive testing, inspection, and decommissioning of the SOLO reactor. According to Terra Innovatum, these robotic systems are intended to enable more automated inspections, support safe end-of-life operations, and strengthen lifecycle integration for micro-modular reactor fleets.

How does the Sant’Anna University partnership support lifecycle management of Terra Innovatum’s SOLO micro-reactor (NKLR)?

The partnership supports lifecycle management through predictive maintenance, robotics, and advanced structural modeling. According to Terra Innovatum, these activities aim to validate and optimize key components, improve monitoring, reduce operating costs, and reinforce long-term asset performance for SOLO micro-reactor deployments.

Why did Terra Innovatum (NASDAQ:NKLR) choose Sant’Anna University for SOLO AI and robotics development?

Terra Innovatum chose Sant’Anna for its recognized expertise in robotics and artificial intelligence. According to Terra Innovatum, Sant’Anna’s track record in advanced robotics, including work related to systems like the da Vinci Surgical System, supports high-level innovation for SOLO micro-reactor technology.

What technical areas will Terra Innovatum and Sant’Anna University focus on for the SOLO platform (NKLR)?

The collaboration focuses on predictive maintenance, condition-based monitoring, robotics, and structural mechanics modeling. According to Terra Innovatum, these efforts are intended to reinforce SOLO’s performance, design robustness, anomaly detection, and maintenance planning as the platform advances toward scalable deployment.